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Test:MRS UAV System - Test coverage reportLines:153312366064.8 %
Date:2024-04-17 23:52:03Functions:2705438261.7 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Directory Sort by nameLine Coverage Sort by line coverageFunctions Sort by function coverage
mrs_lib/include/mrs_lib/safety_zone +
0.0%
+
0.0 %0 / 80.0 %0 / 4
mrs_lib/src/geometry +
15.1%15.1%
+
15.1 %67 / 44516.0 %15 / 94
mrs_uav_state_estimators/src/estimators/heading +
18.6%18.6%
+
18.6 %91 / 49021.1 %12 / 57
mrs_uav_trajectory_generation/src/eth_trajectory_generation +
43.6%43.6%
+
43.6 %452 / 103629.5 %31 / 105
mrs_uav_trackers/src/speed_tracker +
14.8%14.8%
+
14.8 %61 / 41136.8 %7 / 19
mrs_uav_trackers/src/joy_tracker +
46.5%46.5%
+
46.5 %66 / 14238.9 %7 / 18
mrs_lib/include/mrs_lib/geometry +
71.0%71.0%
+
71.0 %66 / 9342.5 %51 / 120
mrs_lib/src/batch_visualizer +
44.1%44.1%
+
44.1 %192 / 43544.4 %20 / 45
mrs_lib/src/safety_zone/polygon +
40.8%40.8%
+
40.8 %42 / 10350.0 %4 / 8
mrs_lib/src/scope_timer +
14.1%14.1%
+
14.1 %20 / 14250.0 %5 / 10
mrs_uav_trackers/src/midair_activation_tracker +
72.8%72.8%
+
72.8 %67 / 9250.0 %9 / 18
mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors +
71.7%71.7%
+
71.7 %132 / 18450.0 %17 / 34
mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading +
58.3%58.3%
+
58.3 %7 / 1257.1 %4 / 7
mrs_uav_trajectory_generation/include/eth_trajectory_generation/impl +
49.1%49.1%
+
49.1 %316 / 64357.6 %19 / 33
mrs_lib/include/mrs_lib/impl +
82.3%82.3%
+
82.3 %367 / 44658.7 %816 / 1390
mrs_uav_managers/include/mrs_uav_managers +
100.0%
+
100.0 %12 / 1260.0 %6 / 10
mrs_uav_state_estimators/src/estimators/agl +
72.1%72.1%
+
72.1 %75 / 10460.0 %6 / 10
mrs_uav_trajectory_generation/include/eth_trajectory_generation +
62.9%62.9%
+
62.9 %129 / 20561.7 %37 / 60
mrs_lib/include/mrs_lib +
79.3%79.3%
+
79.3 %781 / 98562.3 %842 / 1351
mrs_uav_trackers/src/line_tracker +
67.9%67.9%
+
67.9 %322 / 47463.3 %19 / 30
mrs_lib/src/transform_broadcaster +
53.3%53.3%
+
53.3 %16 / 3066.7 %2 / 3
mrs_uav_state_estimators/src/estimators/altitude +
53.9%53.9%
+
53.9 %213 / 39566.7 %22 / 33
mrs_uav_trackers/src/landoff_tracker +
73.1%73.1%
+
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40.8%40.8%
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mrs_uav_managers/src/control_manager/common +
41.3%41.3%
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41.3 %234 / 56767.7 %21 / 31
mrs_uav_trajectory_generation/src/eth_trajectory_generation +
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43.6 %452 / 103629.5 %31 / 105
mrs_lib/src/batch_visualizer +
44.1%44.1%
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44.1 %192 / 43544.4 %20 / 45
mrs_uav_trackers/src/joy_tracker +
46.5%46.5%
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46.5 %66 / 14238.9 %7 / 18
mrs_uav_managers/include/transform_manager +
48.2%48.2%
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48.2 %192 / 39868.4 %13 / 19
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53.6 %408 / 76169.5 %66 / 95
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53.9%53.9%
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53.9 %213 / 39566.7 %22 / 33
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55.1 %241 / 43775.8 %25 / 33
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mrs_uav_managers/src/estimation_manager/estimators +
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60.7 %82 / 135100.0 %13 / 13
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62.9 %129 / 20561.7 %37 / 60
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63.3%63.3%
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63.3 %31 / 4988.9 %8 / 9
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64.2 %2372 / 369672.4 %89 / 123
mrs_lib/src/transformer +
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66.1 %185 / 28076.9 %20 / 26
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mrs_uav_trajectory_generation/src +
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0.0%
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44.1%44.1%
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mrs_lib/src/geometry +
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mrs_lib/src/math +
100.0%
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100.0 %17 / 17100.0 %1 / 1
mrs_lib/src/median_filter +
89.1%89.1%
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89.1 %82 / 9294.1 %16 / 17
mrs_lib/src/param_loader +
80.0%80.0%
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80.0 %44 / 55100.0 %4 / 4
mrs_lib/src/profiler +
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63.3%63.3%
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63.3 %31 / 4988.9 %8 / 9
mrs_lib/src/safety_zone/polygon +
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40.8 %42 / 10350.0 %4 / 8
mrs_lib/src/scope_timer +
14.1%14.1%
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14.1 %20 / 14250.0 %5 / 10
mrs_lib/src/timeout_manager +
79.0%79.0%
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79.0 %49 / 6281.8 %9 / 11
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84.0%84.0%
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84.0 %105 / 12583.3 %15 / 18
mrs_lib/src/transform_broadcaster +
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53.3 %16 / 3066.7 %2 / 3
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66.1 %185 / 28076.9 %20 / 26
mrs_lib/src/utils +
100.0%
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100.0 %7 / 7100.0 %2 / 2
mrs_uav_autostart/src +
88.9%88.9%
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88.9 %289 / 325100.0 %21 / 21
mrs_uav_controllers/include +
98.3%98.3%
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98.3 %57 / 58100.0 %14 / 14
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81.3%81.3%
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81.3 %1766 / 217287.9 %58 / 66
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100.0%
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100.0 %4 / 4100.0 %10 / 10
mrs_uav_managers/include/mrs_uav_managers +
100.0%
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100.0 %12 / 1260.0 %6 / 10
mrs_uav_managers/include/mrs_uav_managers/control_manager +
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55.2 %53 / 9670.4 %19 / 27
mrs_uav_managers/include/mrs_uav_managers/estimation_manager +
97.2%97.2%
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97.2 %106 / 10994.4 %17 / 18
mrs_uav_managers/include/transform_manager +
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48.2 %192 / 39868.4 %13 / 19
mrs_uav_managers/src +
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72.6 %1247 / 171887.7 %64 / 73
mrs_uav_managers/src/control_manager +
64.2%64.2%
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64.2 %2372 / 369672.4 %89 / 123
mrs_uav_managers/src/control_manager/common +
41.3%41.3%
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41.3 %234 / 56767.7 %21 / 31
mrs_uav_managers/src/estimation_manager +
69.8%69.8%
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69.8 %432 / 61985.1 %40 / 47
mrs_uav_managers/src/estimation_manager/estimators +
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60.7 %82 / 135100.0 %13 / 13
mrs_uav_managers/src/transform_manager +
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81.4 %349 / 42992.9 %13 / 14
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53.6 %408 / 76169.5 %66 / 95
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100.0%
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100.0 %4 / 4100.0 %3 / 3
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100.0%
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100.0 %9 / 983.3 %5 / 6
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58.3 %7 / 1257.1 %4 / 7
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100.0%
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100.0 %10 / 1083.3 %5 / 6
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100.0 %9 / 983.3 %5 / 6
mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors +
71.7%71.7%
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71.7 %132 / 18450.0 %17 / 34
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72.1%72.1%
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72.1 %75 / 10460.0 %6 / 10
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53.9%53.9%
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53.9 %213 / 39566.7 %22 / 33
mrs_uav_state_estimators/src/estimators/heading +
18.6%18.6%
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/attitude_converter.h.func-sort-c.html b/mrs_lib/include/mrs_lib/attitude_converter.h.func-sort-c.html new file mode 100644 index 0000000000..2679c43b0b --- /dev/null +++ b/mrs_lib/include/mrs_lib/attitude_converter.h.func-sort-c.html @@ -0,0 +1,124 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/attitude_converter.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - attitude_converter.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:232785.2 %
Date:2024-04-17 23:52:03Functions:91181.8 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::AttitudeConverter::MathErrorException::what() const0
mrs_lib::AttitudeConverter::SetHeadingException::what() const0
auto mrs_lib::AttitudeConverter::get<0ul>()1
auto mrs_lib::AttitudeConverter::get<1ul>()1
auto mrs_lib::AttitudeConverter::get<2ul>()1
mrs_lib::AttitudeConverter::GetHeadingException::what() const1
_ZNK7mrs_lib17AttitudeConvertercvN5Eigen9AngleAxisIT_EEIdEEv1
mrs_lib::AttitudeConverter::InvalidAttitudeException::what() const2
_ZNK7mrs_lib17AttitudeConvertercvN5Eigen10QuaternionIT_Li0EEEIdEEv86483
mrs_lib::Vector3Converter::Vector3Converter(tf2::Vector3 const&)281422
mrs_lib::AttitudeConverter::AttitudeConverter<double>(Eigen::AngleAxis<double>)569088
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/attitude_converter.h.func.html b/mrs_lib/include/mrs_lib/attitude_converter.h.func.html new file mode 100644 index 0000000000..fed752cfbb --- /dev/null +++ b/mrs_lib/include/mrs_lib/attitude_converter.h.func.html @@ -0,0 +1,124 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/attitude_converter.h - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/include/mrs_lib - attitude_converter.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:232785.2 %
Date:2024-04-17 23:52:03Functions:91181.8 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::Vector3Converter::Vector3Converter(tf2::Vector3 const&)281422
auto mrs_lib::AttitudeConverter::get<0ul>()1
auto mrs_lib::AttitudeConverter::get<1ul>()1
auto mrs_lib::AttitudeConverter::get<2ul>()1
mrs_lib::AttitudeConverter::AttitudeConverter<double>(Eigen::AngleAxis<double>)569088
mrs_lib::AttitudeConverter::MathErrorException::what() const0
mrs_lib::AttitudeConverter::GetHeadingException::what() const1
mrs_lib::AttitudeConverter::SetHeadingException::what() const0
mrs_lib::AttitudeConverter::InvalidAttitudeException::what() const2
_ZNK7mrs_lib17AttitudeConvertercvN5Eigen10QuaternionIT_Li0EEEIdEEv86483
_ZNK7mrs_lib17AttitudeConvertercvN5Eigen9AngleAxisIT_EEIdEEv1
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Current view:top level - mrs_lib/include/mrs_lib - attitude_converter.h (source / functions)HitTotalCoverage
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Date:2024-04-17 23:52:03Functions:91181.8 %
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+
          Line data    Source code
+
+       1             : // clang: TomasFormat
+       2             : /**
+       3             :  * @file attitude_converter.h
+       4             :  *
+       5             :  * @brief Conversions between various representations of object attitude in 3D.
+       6             :  * Supports Quaternions, Euler angles, Angle-axis and Rotational matrices from tf, tf2, Eigen and geometry_msgs libraries.
+       7             :  * The default Euler angle notation is the extrinsic RPY.
+       8             :  *
+       9             :  * @author Tomas Baca
+      10             :  */
+      11             : 
+      12             : #ifndef ATTITUDE_CONVERTER_H
+      13             : #define ATTITUDE_CONVERTER_H
+      14             : 
+      15             : #include <vector>
+      16             : #include <cmath>
+      17             : #include <Eigen/Dense>
+      18             : #include <tuple>
+      19             : 
+      20             : #include <tf2_ros/transform_listener.h>
+      21             : #include <tf2_ros/buffer.h>
+      22             : #include <tf2_eigen/tf2_eigen.h>
+      23             : #include <tf2_geometry_msgs/tf2_geometry_msgs.h>
+      24             : #include <tf/transform_datatypes.h>
+      25             : #include <tf_conversions/tf_eigen.h>
+      26             : 
+      27             : #include <mrs_lib/geometry/misc.h>
+      28             : 
+      29             : namespace mrs_lib
+      30             : {
+      31             : 
+      32             : // type of the object we are grasping
+      33             : typedef enum
+      34             : {
+      35             : 
+      36             :   RPY_INTRINSIC = 1,
+      37             :   RPY_EXTRINSIC = 2,
+      38             : 
+      39             : } RPY_convention_t;
+      40             : 
+      41             : /* class EulerAttitude //{ */
+      42             : 
+      43             : /**
+      44             :  * @brief A small class for storing the Euler angles.
+      45             :  */
+      46             : class EulerAttitude {
+      47             : public:
+      48             :   /**
+      49             :    * @brief A simple class for storing the Euler angles.
+      50             :    *
+      51             :    * @param roll
+      52             :    * @param pitch
+      53             :    * @param yaw
+      54             :    */
+      55             :   EulerAttitude(const double& roll, const double& pitch, const double& yaw);
+      56             : 
+      57             :   /**
+      58             :    * @brief get the roll angle
+      59             :    *
+      60             :    * @return roll
+      61             :    */
+      62             :   double roll(void) const;
+      63             : 
+      64             :   /**
+      65             :    * @brief get the pitch angle
+      66             :    *
+      67             :    * @return pitch
+      68             :    */
+      69             :   double pitch(void) const;
+      70             : 
+      71             :   /**
+      72             :    * @brief get the yaw angle
+      73             :    *
+      74             :    * @return yaw
+      75             :    */
+      76             :   double yaw(void) const;
+      77             : 
+      78             : private:
+      79             :   double roll_, pitch_, yaw_;
+      80             : };
+      81             : 
+      82             : //}
+      83             : 
+      84             : /* class Vector3Converter //{ */
+      85             : 
+      86             : /**
+      87             :  * @brief Converter of Vector3 representations. Instantiate it with any type of vector3 in constructor and convert it by assigning it to any other type of
+      88             :  * vector3 variable.
+      89             :  */
+      90             : class Vector3Converter {
+      91             : public:
+      92             :   /**
+      93             :    * @brief Constructor with tf2::Vector3
+      94             :    *
+      95             :    * @param vector3
+      96             :    */
+      97      281422 :   Vector3Converter(const tf2::Vector3& vector3) : vector3_(vector3){};
+      98             : 
+      99             :   /**
+     100             :    * @brief Constructor with Eigen::Vector3
+     101             :    *
+     102             :    * @param vector3
+     103             :    */
+     104             :   Vector3Converter(const Eigen::Vector3d& vector3);
+     105             : 
+     106             :   /**
+     107             :    * @brief Constructor with geometry_msgs::Vector3
+     108             :    *
+     109             :    * @param vector3
+     110             :    */
+     111             :   Vector3Converter(const geometry_msgs::Vector3& vector3);
+     112             : 
+     113             :   /**
+     114             :    * @brief Constructor with doubles: x, y, z
+     115             :    *
+     116             :    * @param x
+     117             :    * @param y
+     118             :    * @param z
+     119             :    */
+     120             :   Vector3Converter(const double& x, const double& y, const double& z);
+     121             : 
+     122             :   /**
+     123             :    * @brief typecast overloaded for tf2::Vector3
+     124             :    *
+     125             :    * @return vector3
+     126             :    */
+     127             :   operator tf2::Vector3() const;
+     128             : 
+     129             :   /**
+     130             :    * @brief typecast overloaded for Eigen::Vector3
+     131             :    *
+     132             :    * @return vector3
+     133             :    */
+     134             :   operator Eigen::Vector3d() const;
+     135             : 
+     136             :   /**
+     137             :    * @brief typecast overloaded for geometry_msgs::Vector3
+     138             :    *
+     139             :    * @return vector3
+     140             :    */
+     141             :   operator geometry_msgs::Vector3() const;
+     142             : 
+     143             : private:
+     144             :   tf2::Vector3 vector3_;
+     145             : };
+     146             : 
+     147             : //}
+     148             : 
+     149             : /**
+     150             :  * @brief The main convertor class. Instantiate with any type in constructor and get the value in any other type by assigning the instance to your variable,
+     151             :  * as: tf::Quaternion tf1_quaternion = AttitudeConverter(roll, pitch, yaw); All the default Euler angles are in the extrinsic RPY notation.
+     152             :  */
+     153             : class AttitudeConverter {
+     154             : public:
+     155             :   /* exceptions //{ */
+     156             : 
+     157             :   //! is thrown when calculating of heading is not possible due to atan2 exception
+     158             :   struct GetHeadingException : public std::exception
+     159             :   {
+     160           1 :     const char* what() const throw() {
+     161           1 :       return "AttitudeConverter: can not calculate the heading, the rotated x-axis is parallel to the world's z-axis";
+     162             :     }
+     163             :   };
+     164             : 
+     165             :   //! is thrown when math breaks
+     166             :   struct MathErrorException : public std::exception
+     167             :   {
+     168           0 :     const char* what() const throw() {
+     169           0 :       return "AttitudeConverter: math error";
+     170             :     }
+     171             :   };
+     172             : 
+     173             :   //! is thrown when the internal attitude becomes invalid
+     174             :   struct InvalidAttitudeException : public std::exception
+     175             :   {
+     176           2 :     const char* what() const throw() {
+     177           2 :       return "AttitudeConverter: invalid attitude, the input probably constains NaNs";
+     178             :     }
+     179             :   };
+     180             : 
+     181             :   //! is thrown when the Euler angle format is set wrongly
+     182             :   struct EulerFormatException : public std::exception
+     183             :   {
+     184             :     const char* what() const throw() {
+     185             :       return "AttitudeConverter: invalid Euler angle format";
+     186             :     }
+     187             :   };
+     188             : 
+     189             :   //! is thrown when the heading cannot be set to an existing attitude
+     190             :   struct SetHeadingException : public std::exception
+     191             :   {
+     192           0 :     const char* what() const throw() {
+     193           0 :       return "AttitudeConverter: cannot set the desired heading, the thrust vector's Z component is 0";
+     194             :     }
+     195             :   };
+     196             : 
+     197             :   //}
+     198             : 
+     199             :   /* constructors //{ */
+     200             : 
+     201             :   /**
+     202             :    * @brief Euler angles constructor
+     203             :    *
+     204             :    * @param roll
+     205             :    * @param pitch
+     206             :    * @param yaw
+     207             :    * @param format optional, Euler angle convention, {"extrinsic", "intrinsic"}, defaults to "extrinsic"
+     208             :    */
+     209    12617228 :   AttitudeConverter(const double& roll, const double& pitch, const double& yaw, const RPY_convention_t& format = RPY_EXTRINSIC);
+     210             : 
+     211             :   /**
+     212             :    * @brief tf::Quaternion constructor
+     213             :    *
+     214             :    * @param quaternion tf::Quaternion quaternion
+     215             :    */
+     216             :   AttitudeConverter(const tf::Quaternion quaternion);
+     217             : 
+     218             :   /**
+     219             :    * @brief geometry_msgs::Quaternion constructor
+     220             :    *
+     221             :    * @param quaternion geometry_msgs::Quaternion quaternion
+     222             :    */
+     223             :   AttitudeConverter(const geometry_msgs::Quaternion quaternion);
+     224             : 
+     225             :   /**
+     226             :    * @brief mrs_lib::EulerAttitude constructor
+     227             :    *
+     228             :    * @param euler_attitude mrs_lib::EulerAttitude
+     229             :    */
+     230             :   AttitudeConverter(const mrs_lib::EulerAttitude& euler_attitude);
+     231             : 
+     232             :   /**
+     233             :    * @brief Eigen::Quaterniond constructor
+     234             :    *
+     235             :    * @param quaternion Eigen::Quaterniond quaternion
+     236             :    */
+     237             :   AttitudeConverter(const Eigen::Quaterniond quaternion);
+     238             : 
+     239             :   /**
+     240             :    * @brief Eigen::Matrix3d constructor
+     241             :    *
+     242             :    * @param matrix Eigen::Matrix3d rotational matrix
+     243             :    */
+     244             :   AttitudeConverter(const Eigen::Matrix3d matrix);
+     245             : 
+     246             :   /**
+     247             :    * @brief Eigen::AngleAxis constructor
+     248             :    *
+     249             :    * @tparam T angle-axis base type
+     250             :    * @param angle_axis Eigen::AngleAxis
+     251             :    */
+     252             :   template <class T>
+     253      569088 :   AttitudeConverter(const Eigen::AngleAxis<T> angle_axis) {
+     254      566536 :     double       angle = angle_axis.angle();
+     255      567356 :     tf2::Vector3 axis(angle_axis.axis()[0], angle_axis.axis()[1], angle_axis.axis()[2]);
+     256             : 
+     257      568366 :     tf2_quaternion_.setRotation(axis, angle);
+     258      567839 :   }
+     259             : 
+     260             :   /**
+     261             :    * @brief tf2::Quaternion constructor
+     262             :    *
+     263             :    * @param quaternion tf2::Quaternion
+     264             :    */
+     265             :   AttitudeConverter(const tf2::Quaternion quaternion);
+     266             : 
+     267             :   /**
+     268             :    * @brief tf2::Matrix3x3 constructor
+     269             :    *
+     270             :    * @param quaternion tf2::Matrix3x3
+     271             :    */
+     272             :   AttitudeConverter(const tf2::Matrix3x3 matrix);
+     273             : 
+     274             :   //}
+     275             : 
+     276             :   /* operators //{ */
+     277             : 
+     278             :   /**
+     279             :    * @brief typecast to tf2::Quaternion
+     280             :    *
+     281             :    * @return orientation in tf2::Quaternion
+     282             :    */
+     283             :   operator tf2::Quaternion() const;
+     284             : 
+     285             :   /**
+     286             :    * @brief typecast to tf::Quaternion
+     287             :    *
+     288             :    * @return orientation in tf::Quaternion
+     289             :    */
+     290             :   operator tf::Quaternion() const;
+     291             : 
+     292             :   /**
+     293             :    * @brief typecast to geometry_msgs::Quaternion
+     294             :    *
+     295             :    * @return orientation in geometry_msgs::Quaternion
+     296             :    */
+     297             :   operator geometry_msgs::Quaternion() const;
+     298             : 
+     299             :   /**
+     300             :    * @brief typecast to EulerAttitude
+     301             :    *
+     302             :    * @return orientation in EulerAttitude
+     303             :    */
+     304             :   operator EulerAttitude() const;
+     305             : 
+     306             :   /**
+     307             :    * @brief typecast to Eigen::AngleAxis
+     308             :    *
+     309             :    * @tparam T angle-axis base type
+     310             :    *
+     311             :    * @return orientation in EulerAttitude
+     312             :    */
+     313             :   template <class T>
+     314           1 :   operator Eigen::AngleAxis<T>() const {
+     315             : 
+     316           1 :     double          angle = tf2_quaternion_.getAngle();
+     317           1 :     Eigen::Vector3d axis(tf2_quaternion_.getAxis()[0], tf2_quaternion_.getAxis()[1], tf2_quaternion_.getAxis()[2]);
+     318             : 
+     319           1 :     Eigen::AngleAxis<T> angle_axis(angle, axis);
+     320             : 
+     321           2 :     return angle_axis;
+     322             :   }
+     323             : 
+     324             : 
+     325             :   /**
+     326             :    * @brief typecast to EulerAttitude Eigen::Quaternion
+     327             :    *
+     328             :    * @tparam T quaternion base type
+     329             :    *
+     330             :    * @return orientation in Eigen::Quaternion
+     331             :    */
+     332             :   template <class T>
+     333       86483 :   operator Eigen::Quaternion<T>() const {
+     334             : 
+     335       86483 :     return Eigen::Quaternion<T>(tf2_quaternion_.w(), tf2_quaternion_.x(), tf2_quaternion_.y(), tf2_quaternion_.z());
+     336             :   }
+     337             : 
+     338             :   operator Eigen::Matrix3d() const;
+     339             : 
+     340             :   /**
+     341             :    * @brief typecase to tuple of Euler angles in extrinsic RPY
+     342             :    *
+     343             :    * @return std::tuple of extrinsic RPY
+     344             :    */
+     345             :   operator std::tuple<double&, double&, double&>();
+     346             : 
+     347             :   /**
+     348             :    * @brief typecase to tf2::Matrix3x3
+     349             :    *
+     350             :    * @return tf2::Matrix3x3 rotational matrix
+     351             :    */
+     352             :   operator tf2::Matrix3x3() const;
+     353             : 
+     354             :   /**
+     355             :    * @brief typecase to tf2::Transform
+     356             :    *
+     357             :    * @return tf2::Transform
+     358             :    */
+     359             :   operator tf2::Transform() const;
+     360             : 
+     361             :   //}
+     362             : 
+     363             :   /* getters //{ */
+     364             : 
+     365             :   /**
+     366             :    * @brief get the roll angle
+     367             :    *
+     368             :    * @return roll
+     369             :    */
+     370             :   double getRoll(void);
+     371             : 
+     372             :   /**
+     373             :    * @brief get the pitch angle
+     374             :    *
+     375             :    * @return pitch
+     376             :    */
+     377             :   double getPitch(void);
+     378             : 
+     379             :   /**
+     380             :    * @brief get the yaw angle
+     381             :    *
+     382             :    * @return yaw
+     383             :    */
+     384             :   double getYaw(void);
+     385             : 
+     386             :   /**
+     387             :    * @brief get the angle of the rotated x-axis in the original XY plane, a.k.a
+     388             :    *
+     389             :    * @return heading
+     390             :    */
+     391             :   double getHeading(void);
+     392             : 
+     393             :   /**
+     394             :    * @brief get heading rate base on the orientation and body-based attitude rate
+     395             :    *
+     396             :    * @param attitude_rate in the body frame
+     397             :    *
+     398             :    * @return heading rate in the world
+     399             :    */
+     400             :   double getHeadingRate(const Vector3Converter& attitude_rate);
+     401             : 
+     402             :   /**
+     403             :    * @brief get the intrinsic yaw rate from a heading rate
+     404             :    *
+     405             :    * @param heading_rate
+     406             :    *
+     407             :    * @return intrinsic yaw rate
+     408             :    */
+     409             :   double getYawRateIntrinsic(const double& heading_rate);
+     410             : 
+     411             :   /**
+     412             :    * @brief get a unit vector pointing in the X direction
+     413             :    *
+     414             :    * @return the vector
+     415             :    */
+     416             :   Vector3Converter getVectorX(void);
+     417             : 
+     418             :   /**
+     419             :    * @brief get a unit vector pointing in the Y direction
+     420             :    *
+     421             :    * @return the vector
+     422             :    */
+     423             :   Vector3Converter getVectorY(void);
+     424             : 
+     425             :   /**
+     426             :    * @brief get a unit vector pointing in the Z direction
+     427             :    *
+     428             :    * @return the vector
+     429             :    */
+     430             :   Vector3Converter getVectorZ(void);
+     431             : 
+     432             :   /**
+     433             :    * @brief get the Roll, Pitch, Yaw angles in the Intrinsic convention
+     434             :    *
+     435             :    * @return RPY
+     436             :    */
+     437             :   std::tuple<double, double, double> getIntrinsicRPY();
+     438             : 
+     439             :   /**
+     440             :    * @brief get the Roll, Pitch, Yaw angles in the Extrinsic convention. The same as the default AttitudeConverter assignment.
+     441             :    *
+     442             :    * @return RPY
+     443             :    */
+     444             :   std::tuple<double, double, double> getExtrinsicRPY();
+     445             : 
+     446             :   //}
+     447             : 
+     448             :   /* setters //{ */
+     449             : 
+     450             :   /**
+     451             :    * @brief Updates the heading of the current orientation by updating the intrinsic yaw
+     452             :    *
+     453             :    * @param new heading
+     454             :    *
+     455             :    * @return the orientation
+     456             :    */
+     457             :   AttitudeConverter setHeading(const double& heading);
+     458             : 
+     459             :   /**
+     460             :    * @brief Updates the extrinsic yaw of the current orientation.
+     461             :    *
+     462             :    * @param new yaw
+     463             :    *
+     464             :    * @return the orientation
+     465             :    */
+     466             :   AttitudeConverter setYaw(const double& new_yaw);
+     467             : 
+     468             :   //}
+     469             : 
+     470             :   template <std::size_t I>
+     471             :   constexpr auto get();
+     472             : 
+     473             : private:
+     474             :   /**
+     475             :    * @brief Internal representation of the attitude
+     476             :    */
+     477             :   tf2::Quaternion tf2_quaternion_;
+     478             : 
+     479             :   /**
+     480             :    * @brief convert the internal quaternion representation to internally-stored RPY
+     481             :    */
+     482             :   void calculateRPY(void);
+     483             : 
+     484             :   /**
+     485             :    * @brief throws exception when the internal attitude is invalid
+     486             :    */
+     487             :   void validateOrientation(void);
+     488             : 
+     489             :   /**
+     490             :    * @brief Internal representation in RPY. is used only when converting to RPY.
+     491             :    */
+     492             :   double roll_, pitch_, yaw_;
+     493             :   bool   got_rpy_ = false;
+     494             : };
+     495             : 
+     496             : 
+     497             : template <std::size_t I>
+     498           3 : constexpr auto AttitudeConverter::get() {
+     499             : 
+     500           3 :   calculateRPY();
+     501             : 
+     502             :   // call compilation error if I > 2
+     503             :   static_assert(I <= 2);
+     504             : 
+     505             :   // get the RPY components based on the index in the tuple
+     506             :   if constexpr (I == 0) {
+     507           1 :     return static_cast<double>(roll_);
+     508             :   } else if constexpr (I == 1) {
+     509           1 :     return static_cast<double>(pitch_);
+     510             :   } else if constexpr (I == 2) {
+     511           1 :     return static_cast<double>(yaw_);
+     512             :   }
+     513             : }
+     514             : 
+     515             : }  // namespace mrs_lib
+     516             : 
+     517             : template <>
+     518             : struct std::tuple_size<mrs_lib::AttitudeConverter>
+     519             : { static constexpr int value = 3; };
+     520             : 
+     521             : template <>
+     522             : struct std::tuple_element<0, mrs_lib::AttitudeConverter>
+     523             : { using type = double; };
+     524             : 
+     525             : template <>
+     526             : struct std::tuple_element<1, mrs_lib::AttitudeConverter>
+     527             : { using type = double; };
+     528             : 
+     529             : template <>
+     530             : struct std::tuple_element<2, mrs_lib::AttitudeConverter>
+     531             : { using type = double; };
+     532             : 
+     533             : #endif
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
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+ + diff --git a/mrs_lib/include/mrs_lib/attitude_converter.h.gcov.png b/mrs_lib/include/mrs_lib/attitude_converter.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..5645ea2bb184ba5c13faadff6ae080a7ed21a006 GIT binary patch literal 1675 zcmV;626Xv}P)R0{{R3v^8aD0000OP)t-s|NsB0 zs;a7|?_FK${{R500003000620&P%hU00009a7bBm000ie000ie0hKEb8vp^O~xJw}!I*vg`@baJIpOoIavV`$(K?>!`bo|a^C) za8g(t(GB3SHwi*Y*B(ABA)4cq7R?deK-XjKEeJ~&vr9LR}k6~|SE zj-$qCkGRR)tetw3kCxx*!;6UEC@RHf4BS;>N2h>L$)pCW@@QNm!OX>*`BO)Lk71D%>OnE>K^hjQTBMES? zGvhv}xdH-50z4|BgOy^!kpa(GH^`~foRA8S^Y>UW#vJMJOe}{A4}y>ij~qH^H4MF) zneqsxd6A=h9u5{hcDe;P(zMKk1rd-Ue&^knPPR3jA9^gb>#8x~Ik7N~R1Fdq@=|ju z0T!S8M{bY&wr%zW06bfshHfN{MDlGm(rkM>62Wo>ikiawavEnFLStBy1HdIWEFe%Ww^Ngwm;Hcq)jl z0*{0W;oTtCZ~llxle+lG>3#O+D&&gJrG@=)lao1h2seK7gq0SK9kjuxg-NrKGR!%~ z`au99dU_T5N&6~=-sZqq>k<~8`<@qW?#HHsHY0qrv%R~ejG3dmdiYQNZF4O4*G{-$ z^G7N8QUf@SO&a1DH?d4h1F$$gpRd=K`+0r3pV#NJ)po+CrwQ%T-SgEVtiNn>JQv4Q z$!a>`qaW=;`3?H`0rb(Ur2TajeM}|3XxAlSQK}p$B;JRoy~&s`4k)2hNq1Dm2(-&Z z%ZP0UeT*pTteufi+CMJX^?uWrH*Wvgee-&=U5j%JyB%`DkeX;_W9brNyMAW@LV=NF z`vbMAFhtINPYBIhx=Oy)`A1x1t=K11!#H_Sq=yYc#`?Mxm2Dy{cz^))?R~`tEg7 zo(>_l>s;xc@cdbu``xNXAjEdvf~QT$fk&n`v;a?Mx|iT-@?_UO)>ViPPuH7ayKcbK zIe5W=N5r<4w5LOe?HZq((Kwy}I4+3;`PQSeHB3yo++}$V=9qWo+^i(35sOuwsIM>rafH+-<*caYfll7-k8qBGOLd1CnUsn zot2`+1`_h(bt-s#>%p`$vc0^nk+7M>5i7}n<3->Z68->q@ErZ91s_QKmCsa&B%_`q z1D@+YQz7;U=C6FFLhb=op7xZL`xqZRZtpz_n1U--iU~*Zp}2TpDV}{(xy0affm7%5 z+W7_^4dR!LZX*O5l2^DZ1 z?A~WeTGw4u;hC=z$ot`PUf>U&F~>i6h8%ghnJNAcf#T%Hdy|jS=_H)EsjMJ8?!*5I z51!+@7iT$1QUD{R;|$UhBs~Y1;Zi2XPgaWJl!jXIElj|TK46~NkO7}ca2>#x;XcI* z^CV0j8!}-zAteJI3FZ@GU`1FF5~pzC_+7=3X)_ASQIrJ;gUR_iSNsD<>R>{U1Y^?W zvYR!Sg}4SeuBe%R`Cnmz$V;iPVjSJHb9JE2c3kC8_@f)zqlD5AEDo&}n_5NIC62c= zqkgYRb;F6tx*!Fl3jb2?u8vgi2?nd`J-wb + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/dynamic_reconfigure_mgr.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - dynamic_reconfigure_mgr.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:578765.5 %
Date:2024-04-17 23:52:03Functions:288532.9 %
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Function Name Sort by function nameHit count Sort by hit count
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::load_param<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::CorrectionConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::CorrectionConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::load_param<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::CorrectionConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::CorrectionConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::load_param<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::CorrectionConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::CorrectionConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::print_value<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::print_value<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::print_value<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_compare<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_compare<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_compare<double>(boost::any&, double*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_compare<int>(boost::any&, int*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_cast<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_cast<bool>(boost::any&, bool*&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::load_param<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::HeadingEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::HeadingEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::load_param<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::HeadingEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::HeadingEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::load_param<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::HeadingEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::HeadingEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::load_param<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::HeadingEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::HeadingEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::print_value<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::print_value<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::print_value<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::print_value<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_compare<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_compare<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_compare<double>(boost::any&, double*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_compare<int>(boost::any&, int*&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::load_defaults(mrs_uav_state_estimators::HeadingEstimatorConfig&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::update_config(mrs_uav_state_estimators::HeadingEstimatorConfig const&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::print_changed_params(mrs_uav_state_estimators::HeadingEstimatorConfig const&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::dynamic_reconfigure_callback(mrs_uav_state_estimators::HeadingEstimatorConfig&, unsigned int)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_cast<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_cast<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_cast<double>(boost::any&, double*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_cast<int>(boost::any&, int*&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::DynamicReconfigureMgr(ros::NodeHandle const&, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, boost::function<void (mrs_uav_state_estimators::HeadingEstimatorConfig&, unsigned int)> const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::load_param<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::LateralEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::LateralEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::load_param<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::LateralEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::LateralEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::load_param<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::LateralEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::LateralEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::print_value<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::print_value<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::print_value<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_compare<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_compare<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_compare<double>(boost::any&, double*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_compare<int>(boost::any&, int*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_cast<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_cast<bool>(boost::any&, bool*&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::load_param<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::AltitudeEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::AltitudeEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::load_param<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::AltitudeEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::AltitudeEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::load_param<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::AltitudeEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::AltitudeEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::print_value<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::print_value<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::print_value<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_compare<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_compare<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_compare<double>(boost::any&, double*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_compare<int>(boost::any&, int*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_cast<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_cast<bool>(boost::any&, bool*&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::load_defaults(mrs_uav_state_estimators::LateralEstimatorConfig&)97
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::print_changed_params(mrs_uav_state_estimators::LateralEstimatorConfig const&)97
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::dynamic_reconfigure_callback(mrs_uav_state_estimators::LateralEstimatorConfig&, unsigned int)97
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::DynamicReconfigureMgr(ros::NodeHandle const&, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, boost::function<void (mrs_uav_state_estimators::LateralEstimatorConfig&, unsigned int)> const&)97
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::load_defaults(mrs_uav_state_estimators::AltitudeEstimatorConfig&)167
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::print_changed_params(mrs_uav_state_estimators::AltitudeEstimatorConfig const&)167
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::dynamic_reconfigure_callback(mrs_uav_state_estimators::AltitudeEstimatorConfig&, unsigned int)167
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::DynamicReconfigureMgr(ros::NodeHandle const&, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, boost::function<void (mrs_uav_state_estimators::AltitudeEstimatorConfig&, unsigned int)> const&)167
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::update_config(mrs_uav_state_estimators::LateralEstimatorConfig const&)194
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::load_param<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::LateralEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::LateralEstimatorConfig&)291
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::print_value<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&)291
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_cast<double>(boost::any&, double*&)291
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_cast<int>(boost::any&, int*&)291
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::update_config(mrs_uav_state_estimators::AltitudeEstimatorConfig const&)334
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::load_param<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::CorrectionConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::CorrectionConfig&)346
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::print_value<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&)346
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::load_defaults(mrs_uav_state_estimators::CorrectionConfig&)346
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::print_changed_params(mrs_uav_state_estimators::CorrectionConfig const&)346
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::dynamic_reconfigure_callback(mrs_uav_state_estimators::CorrectionConfig&, unsigned int)346
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_cast<double>(boost::any&, double*&)346
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_cast<int>(boost::any&, int*&)346
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::DynamicReconfigureMgr(ros::NodeHandle const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)346
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::DynamicReconfigureMgr(ros::NodeHandle const&, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, boost::function<void (mrs_uav_state_estimators::CorrectionConfig&, unsigned int)> const&)346
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::load_param<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::AltitudeEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::AltitudeEstimatorConfig&)501
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::print_value<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&)501
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_cast<double>(boost::any&, double*&)501
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_cast<int>(boost::any&, int*&)501
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::update_config(mrs_uav_state_estimators::CorrectionConfig const&)692
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/dynamic_reconfigure_mgr.h.func.html b/mrs_lib/include/mrs_lib/dynamic_reconfigure_mgr.h.func.html new file mode 100644 index 0000000000..86d145c3b7 --- /dev/null +++ b/mrs_lib/include/mrs_lib/dynamic_reconfigure_mgr.h.func.html @@ -0,0 +1,420 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/dynamic_reconfigure_mgr.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib - dynamic_reconfigure_mgr.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:578765.5 %
Date:2024-04-17 23:52:03Functions:288532.9 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::load_param<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::CorrectionConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::CorrectionConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::load_param<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::CorrectionConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::CorrectionConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::load_param<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::CorrectionConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::CorrectionConfig&)346
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::load_param<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::CorrectionConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::CorrectionConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::print_value<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::print_value<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::print_value<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&)346
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::print_value<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_compare<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_compare<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_compare<double>(boost::any&, double*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_compare<int>(boost::any&, int*&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::load_defaults(mrs_uav_state_estimators::CorrectionConfig&)346
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::update_config(mrs_uav_state_estimators::CorrectionConfig const&)692
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::print_changed_params(mrs_uav_state_estimators::CorrectionConfig const&)346
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::dynamic_reconfigure_callback(mrs_uav_state_estimators::CorrectionConfig&, unsigned int)346
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_cast<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_cast<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_cast<double>(boost::any&, double*&)346
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::try_cast<int>(boost::any&, int*&)346
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::DynamicReconfigureMgr(ros::NodeHandle const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)346
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::CorrectionConfig>::DynamicReconfigureMgr(ros::NodeHandle const&, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, boost::function<void (mrs_uav_state_estimators::CorrectionConfig&, unsigned int)> const&)346
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::load_param<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::HeadingEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::HeadingEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::load_param<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::HeadingEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::HeadingEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::load_param<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::HeadingEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::HeadingEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::load_param<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::HeadingEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::HeadingEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::print_value<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::print_value<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::print_value<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::print_value<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_compare<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_compare<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_compare<double>(boost::any&, double*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_compare<int>(boost::any&, int*&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::load_defaults(mrs_uav_state_estimators::HeadingEstimatorConfig&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::update_config(mrs_uav_state_estimators::HeadingEstimatorConfig const&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::print_changed_params(mrs_uav_state_estimators::HeadingEstimatorConfig const&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::dynamic_reconfigure_callback(mrs_uav_state_estimators::HeadingEstimatorConfig&, unsigned int)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_cast<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_cast<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_cast<double>(boost::any&, double*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::try_cast<int>(boost::any&, int*&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::HeadingEstimatorConfig>::DynamicReconfigureMgr(ros::NodeHandle const&, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, boost::function<void (mrs_uav_state_estimators::HeadingEstimatorConfig&, unsigned int)> const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::load_param<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::LateralEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::LateralEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::load_param<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::LateralEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::LateralEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::load_param<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::LateralEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::LateralEstimatorConfig&)291
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::load_param<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::LateralEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::LateralEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::print_value<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::print_value<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::print_value<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&)291
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::print_value<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_compare<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_compare<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_compare<double>(boost::any&, double*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_compare<int>(boost::any&, int*&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::load_defaults(mrs_uav_state_estimators::LateralEstimatorConfig&)97
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::update_config(mrs_uav_state_estimators::LateralEstimatorConfig const&)194
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::print_changed_params(mrs_uav_state_estimators::LateralEstimatorConfig const&)97
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::dynamic_reconfigure_callback(mrs_uav_state_estimators::LateralEstimatorConfig&, unsigned int)97
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_cast<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_cast<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_cast<double>(boost::any&, double*&)291
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::try_cast<int>(boost::any&, int*&)291
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::LateralEstimatorConfig>::DynamicReconfigureMgr(ros::NodeHandle const&, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, boost::function<void (mrs_uav_state_estimators::LateralEstimatorConfig&, unsigned int)> const&)97
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::load_param<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::AltitudeEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::AltitudeEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::load_param<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::AltitudeEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::AltitudeEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::load_param<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::AltitudeEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::AltitudeEstimatorConfig&)501
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::load_param<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<mrs_uav_state_estimators::AltitudeEstimatorConfig::AbstractParamDescription const>&, mrs_uav_state_estimators::AltitudeEstimatorConfig&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::print_value<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::print_value<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&)0
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::print_value<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&)501
void mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::print_value<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_compare<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_compare<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_compare<double>(boost::any&, double*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_compare<int>(boost::any&, int*&)0
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::load_defaults(mrs_uav_state_estimators::AltitudeEstimatorConfig&)167
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::update_config(mrs_uav_state_estimators::AltitudeEstimatorConfig const&)334
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::print_changed_params(mrs_uav_state_estimators::AltitudeEstimatorConfig const&)167
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::dynamic_reconfigure_callback(mrs_uav_state_estimators::AltitudeEstimatorConfig&, unsigned int)167
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_cast<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(boost::any&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_cast<bool>(boost::any&, bool*&)0
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_cast<double>(boost::any&, double*&)501
bool mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::try_cast<int>(boost::any&, int*&)501
mrs_lib::DynamicReconfigureMgr<mrs_uav_state_estimators::AltitudeEstimatorConfig>::DynamicReconfigureMgr(ros::NodeHandle const&, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, boost::function<void (mrs_uav_state_estimators::AltitudeEstimatorConfig&, unsigned int)> const&)167
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Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - dynamic_reconfigure_mgr.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:578765.5 %
Date:2024-04-17 23:52:03Functions:288532.9 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : /**  \file
+       3             :      \brief Defines DynamicReconfigureMgr - a convenience class for managing dynamic ROS parameters through dynamic reconfigure.
+       4             :      \author Matouš Vrba - vrbamato@fel.cvut.cz
+       5             :  */
+       6             : #ifndef DYNAMIC_RECONFIGURE_MGR_H
+       7             : #define DYNAMIC_RECONFIGURE_MGR_H
+       8             : 
+       9             : #include <ros/ros.h>
+      10             : #include <dynamic_reconfigure/server.h>
+      11             : #include <string>
+      12             : #include <map>
+      13             : #include <unordered_set>
+      14             : #include <mutex>
+      15             : #include <iostream>
+      16             : #include <boost/any.hpp>
+      17             : #include <Eigen/Dense>
+      18             : #include <mrs_lib/param_loader.h>
+      19             : 
+      20             : 
+      21             : namespace mrs_lib
+      22             : {
+      23             : 
+      24             : /** DynamicReconfigureMgr CLASS //{ **/
+      25             : // This class handles dynamic reconfiguration of parameters using dynamic_reconfigure server.
+      26             : // Initialize this manager simply by instantiating an object of this templated class
+      27             : // with the template parameter corresponding to the type of your config message, e.g. as
+      28             : // DynamicReconfigureMgr<MyConfig> drmgr;
+      29             : // This will automatically initialize the dynamic_reconfigure server and a callback method
+      30             : // to asynchronously update the values in the config.
+      31             : // Optionally, you can specify the ros NodeHandle to initialize the dynamic_reconfigure server
+      32             : // and a flag 'print_values' to indicate whether to print new received values (only changed ones,
+      33             : // default is true).
+      34             : // The latest configuration is available through the public member 'config'. This should be
+      35             : // changed externally with care since any change risks being overwritten in the next call to
+      36             : // the 'dynamic_reconfigure_callback' method.
+      37             : // Note that in case of a multithreaded ROS node, external mutexes _might_ be necessary
+      38             : // to make access to the 'config' member thread-safe.
+      39             : template <typename ConfigType>
+      40             : class DynamicReconfigureMgr
+      41             : {
+      42             :   private:
+      43             :     using callback_t = typename dynamic_reconfigure::Server<ConfigType>::CallbackType;
+      44             : public:
+      45             :   // this variable holds the latest received configuration
+      46             :   ConfigType config;
+      47             :   // initialize some stuff in the constructor
+      48         610 :   DynamicReconfigureMgr(const ros::NodeHandle& nh = ros::NodeHandle("~"), bool print_values = true, std::string node_name = std::string(), const callback_t& user_callback = {})
+      49             :       : m_not_initialized(true),
+      50             :         m_loaded_invalid_default(false),
+      51             :         m_print_values(print_values),
+      52             :         m_node_name(node_name),
+      53         610 :         m_server(m_server_mtx, nh),
+      54             :         m_usr_cbf(user_callback),
+      55         610 :         m_pl(nh, print_values, node_name)
+      56             :   {
+      57             :     // initialize the dynamic reconfigure callback
+      58         610 :     m_server.setCallback(boost::bind(&DynamicReconfigureMgr<ConfigType>::dynamic_reconfigure_callback, this, _1, _2));
+      59         610 :   };
+      60             : 
+      61             :   /* Constructor overloads //{ */
+      62             :   // Convenience constructor to enable writing DynamicReconfigureMgr<MyConfig> drmgr(nh, node_name)
+      63         346 :   DynamicReconfigureMgr(const ros::NodeHandle& nh, std::string node_name) : DynamicReconfigureMgr(nh, true, node_name){};
+      64             :   // Convenience constructor to enable writing DynamicReconfigureMgr<MyConfig> drmgr(nh, "node_name")
+      65             :   DynamicReconfigureMgr(const ros::NodeHandle& nh, const char* node_name) : DynamicReconfigureMgr(nh, std::string(node_name)){};
+      66             :   // Convenience constructor to enable writing DynamicReconfigureMgr<MyConfig> drmgr(node_name)
+      67             :   DynamicReconfigureMgr(std::string node_name) : DynamicReconfigureMgr(ros::NodeHandle("~"), node_name){};
+      68             :   //}
+      69             : 
+      70             :   // pushes this config to the server
+      71        1220 :   void update_config(const ConfigType& cfg)
+      72             :   {
+      73        1220 :     m_server.updateConfig(cfg);
+      74        1220 :   }
+      75             : 
+      76             :   // pushes the current config to the server
+      77             :   void update_config()
+      78             :   {
+      79             :     m_server.updateConfig(config);
+      80             :   }
+      81             : 
+      82             :   void publish_descriptions()
+      83             :   {
+      84             :     ConfigType dflt;
+      85             :     m_server.getConfigDefault(dflt);
+      86             :     m_server.setConfigDefault(dflt);
+      87             :   }
+      88             : 
+      89             :   bool loaded_successfully()
+      90             :   {
+      91             :     return !m_not_initialized && !m_loaded_invalid_default && m_pl.loadedSuccessfully();
+      92             :   }
+      93             : 
+      94             : private:
+      95             :   bool m_not_initialized, m_loaded_invalid_default, m_print_values;
+      96             :   std::string m_node_name;
+      97             :   // dynamic_reconfigure server variables
+      98             :   boost::recursive_mutex m_server_mtx;
+      99             :   typename dynamic_reconfigure::Server<ConfigType> m_server;
+     100             :   callback_t m_usr_cbf;
+     101             : 
+     102             :   ParamLoader m_pl;
+     103             :   std::unordered_set<std::string> m_to_init;
+     104             : 
+     105             :   // the callback itself
+     106         610 :   void dynamic_reconfigure_callback(ConfigType& new_config, uint32_t level)
+     107             :   {
+     108         610 :     if (m_print_values)
+     109             :     {
+     110         610 :       if (m_node_name.empty())
+     111           0 :         ROS_INFO("Dynamic reconfigure request received");
+     112             :       else
+     113         610 :         ROS_INFO("[%s]: Dynamic reconfigure request received", m_node_name.c_str());
+     114             :     }
+     115             : 
+     116         610 :     if (m_not_initialized)
+     117             :     {
+     118         610 :       load_defaults(new_config);
+     119         610 :       update_config(new_config);
+     120             :     }
+     121         610 :     if (m_print_values)
+     122             :     {
+     123         610 :       print_changed_params(new_config);
+     124             :     }
+     125         610 :     m_not_initialized = false;
+     126         610 :     config = new_config;
+     127         610 :     if (m_usr_cbf)
+     128         264 :       m_usr_cbf(new_config, level);
+     129         610 :   }
+     130             : 
+     131             :   template <typename T>
+     132        1138 :   void load_param(const std::string& name, typename ConfigType::AbstractParamDescriptionConstPtr& descr, ConfigType& config)
+     133             :   {
+     134             :     using param_descr_t = typename ConfigType::template ParamDescription<T>;
+     135        2276 :     boost::shared_ptr<const param_descr_t> cast_descr = boost::dynamic_pointer_cast<const param_descr_t>(descr);
+     136        1138 :     m_pl.loadParam(name, config.*(cast_descr->field));
+     137        1138 :   }
+     138             :   
+     139         610 :   void load_defaults(ConfigType& new_config)
+     140             :   {
+     141             :     // Note that this part of the API is still unstable and may change! It was tested with ROS Kinetic and Melodic.
+     142        1220 :     std::vector<typename ConfigType::AbstractParamDescriptionConstPtr> descrs = new_config.__getParamDescriptions__();
+     143        1748 :     for (auto& descr : descrs)
+     144             :     {
+     145        2276 :       std::string name = descr->name;
+     146        1138 :       size_t pos = name.find("__");
+     147        1138 :       while (pos != name.npos)
+     148             :       {
+     149           0 :         name.replace(pos, 2, "/");
+     150           0 :         pos = name.find("__");
+     151             :       }
+     152             : 
+     153        1138 :       if (descr->type == "bool")
+     154           0 :         load_param<bool>(name, descr, new_config);
+     155        1138 :       else if (descr->type == "int")
+     156           0 :         load_param<int>(name, descr, new_config);
+     157        1138 :       else if (descr->type == "double")
+     158        1138 :         load_param<double>(name, descr, new_config);
+     159           0 :       else if (descr->type == "str")
+     160           0 :         load_param<std::string>(name, descr, new_config);
+     161             :       else
+     162             :       {
+     163           0 :         ROS_ERROR("[%s]: Unknown parameter type: '%s'", m_node_name.c_str(), descr->type.c_str());
+     164           0 :         m_loaded_invalid_default = true;
+     165             :       }
+     166             :     }
+     167         610 :   }
+     168             : 
+     169             :   // method for printing names and values of new received parameters (prints only the changed ones) //{
+     170         610 :   void print_changed_params(const ConfigType& new_config)
+     171             :   {
+     172             :     // Note that this part of the API is still unstable and may change! It was tested with ROS Kinetic and Melodic.
+     173        1220 :     std::vector<typename ConfigType::AbstractParamDescriptionConstPtr> descrs = new_config.__getParamDescriptions__();
+     174        1748 :     for (auto& descr : descrs)
+     175             :     {
+     176           0 :       boost::any val, old_val;
+     177        1138 :       descr->getValue(new_config, val);
+     178        1138 :       descr->getValue(config, old_val);
+     179        1138 :       std::string name = descr->name;
+     180        1138 :       const size_t pos = name.find("__");
+     181        1138 :       if (pos != name.npos)
+     182             :       {
+     183           0 :         if (m_not_initialized)
+     184             :         {
+     185           0 :           continue;
+     186             :         } else
+     187             :         {
+     188           0 :           name.replace(pos, 2, "/");
+     189             :         }
+     190             :       }
+     191             : 
+     192             :       // try to guess the correct type of the parameter (these should be the only ones supported)
+     193             :       int* intval;
+     194             :       double* doubleval;
+     195             :       bool* boolval;
+     196             :       std::string* stringval;
+     197             : 
+     198        1138 :       if (try_cast(val, intval))
+     199             :       {
+     200           0 :         if (m_not_initialized || !try_compare(old_val, intval))
+     201           0 :           print_value(name, *intval);
+     202        1138 :       } else if (try_cast(val, doubleval))
+     203             :       {
+     204        1138 :         if (m_not_initialized || !try_compare(old_val, doubleval))
+     205        1138 :           print_value(name, *doubleval);
+     206           0 :       } else if (try_cast(val, boolval))
+     207             :       {
+     208           0 :         if (m_not_initialized || !try_compare(old_val, boolval))
+     209           0 :           print_value(name, *boolval);
+     210           0 :       } else if (try_cast(val, stringval))
+     211             :       {
+     212           0 :         if (m_not_initialized || !try_compare(old_val, stringval))
+     213           0 :           print_value(name, *stringval);
+     214             :       } else
+     215             :       {
+     216           0 :         print_value(name, std::string("unknown dynamic reconfigure type"));
+     217             :       }
+     218             :     }
+     219         610 :   }
+     220             :   //}
+     221             :   
+     222             :   // helper method for parameter printing
+     223             :   template <typename T>
+     224        1138 :   inline void print_value(const std::string& name, const T& val)
+     225             :   {
+     226        1138 :     if (m_node_name.empty())
+     227           0 :       std::cout << "\t" << name << ":\t" << val << std::endl;
+     228             :     else
+     229        1138 :       ROS_INFO_STREAM("[" << m_node_name << "]: parameter '" << name << "':\t" << val);
+     230        1138 :   }
+     231             :   // helper methods for automatic parameter value parsing
+     232             :   template <typename T>
+     233        2276 :   inline bool try_cast(boost::any& val, T*& out)
+     234             :   {
+     235        2276 :     return (out = boost::any_cast<T>(&val));
+     236             :   }
+     237             :   template <typename T>
+     238           0 :   inline bool try_compare(boost::any& val, T*& to_what)
+     239             :   {
+     240             :     T* tmp;
+     241           0 :     if ((tmp = boost::any_cast<T>(&val)))
+     242             :     {
+     243             :       /* std::cout << std::endl << *tmp << " vs " << *to_what << std::endl; */
+     244           0 :       return *tmp == *to_what;
+     245             :     } else
+     246             :     {  // the value should not change during runtime - this should never happen (but its better to be safe than sorry)
+     247           0 :       if (m_node_name.empty())
+     248           0 :         ROS_WARN("DynamicReconfigure value type has changed - this should not happen!");
+     249             :       else
+     250           0 :         ROS_WARN_STREAM("[" << m_node_name << "]: DynamicReconfigure value type has changed - this should not happen!");
+     251           0 :       return false;
+     252             :     }
+     253             :   }
+     254             : };
+     255             : //}
+     256             : 
+     257             : }
+     258             : 
+     259             : #endif // DYNAMIC_RECONFIGURE_MGR_H
+
+
+
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LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/geometry - cyclic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:608769.0 %
Date:2024-04-17 23:52:03Functions:4811741.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::interpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::interpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pinterpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pinterpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::dist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::dist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pdist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pdist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::interp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::interp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::inRange(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pinterp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pinterp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::cyclic(mrs_lib::geometry::degrees const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::cyclic(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::cyclic()0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>&&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::operator=(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::operator-=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::operator+=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pinterpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pinterpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pdist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pdist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::interp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::inRange(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pinterp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pinterp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::cyclic()0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::operator=(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::interpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::interpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pinterpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pinterpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::dist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::dist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pdist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pdist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::interp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::interp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::inRange(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pinterp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pinterp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::cyclic(mrs_lib::geometry::sdegrees const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::cyclic(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::cyclic()0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>&&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::operator=(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::operator-=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::operator+=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pinterpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pinterpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pdist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pdist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::interp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::inRange(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pinterp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pinterp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::cyclic(mrs_lib::geometry::sradians const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::cyclic()0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>&&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::operator=(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::operator-=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::operator+=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::value() const0
mrs_lib::geometry::radians mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::convert<mrs_lib::geometry::radians>(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees> const&)1
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::operator-=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)1
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::operator+=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)1
mrs_lib::geometry::radians mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::convert<mrs_lib::geometry::radians>() const1
bool mrs_lib::geometry::operator><double, mrs_lib::geometry::radians>(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)2
bool mrs_lib::geometry::operator><double, mrs_lib::geometry::sradians>(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)2
bool mrs_lib::geometry::operator< <double, mrs_lib::geometry::radians>(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)2
bool mrs_lib::geometry::operator< <double, mrs_lib::geometry::sradians>(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)2
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::value() const4
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>&&)6
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::interpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, double)895
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::interpUnwrapped(double, double, double)895
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::interp(double, double, double)895
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::diff(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::diff(double, double)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::unwrap(double, double)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::diff(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::diff(double, double)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::unwrap(double, double)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::dist(double, double)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::unwrap(double, double)10001
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::value() const10002
mrs_lib::geometry::operator+(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)10004
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::dist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>)10008
mrs_lib::geometry::operator-(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)10009
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::dist(double, double)10360
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::cyclic(double)20000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::cyclic(double)20005
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::wrap(double)30000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::wrap(double)30005
mrs_lib::geometry::operator+(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)40000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::value() const40002
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::dist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>)389573
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::diff(double, double)448127
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::interpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, double)498320
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::interpUnwrapped(double, double, double)498320
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::interp(double, double, double)498320
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::cyclic(mrs_lib::geometry::radians const&)757550
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::cyclic(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)800406
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::diff(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>)848570
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::cyclic(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)1016664
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::cyclic(double)1726844
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::wrap(double)1749339
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::unwrap(double, double)2790281
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::diff(double, double)2803662
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::diff(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>)3311989
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::cyclic(double)6723973
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::wrap(double)7336856
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+ + + diff --git a/mrs_lib/include/mrs_lib/geometry/cyclic.h.func.html b/mrs_lib/include/mrs_lib/geometry/cyclic.h.func.html new file mode 100644 index 0000000000..319df731d3 --- /dev/null +++ b/mrs_lib/include/mrs_lib/geometry/cyclic.h.func.html @@ -0,0 +1,548 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/geometry/cyclic.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/geometry - cyclic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:608769.0 %
Date:2024-04-17 23:52:03Functions:4811741.0 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::interpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::interpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pinterpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pinterpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::diff(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::diff(double, double)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::dist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::dist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::wrap(double)30005
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pdist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pdist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::interp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::interp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::unwrap(double, double)10000
mrs_lib::geometry::radians mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::convert<mrs_lib::geometry::radians>(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees> const&)1
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::inRange(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pinterp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::pinterp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::cyclic(mrs_lib::geometry::degrees const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::cyclic(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::cyclic(double)20005
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::cyclic()0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>&&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::operator=(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::operator-=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::operator+=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::interpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, double)895
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::interpUnwrapped(double, double, double)895
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pinterpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pinterpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::diff(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>)848570
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::diff(double, double)448127
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::dist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>)389573
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::dist(double, double)10360
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::wrap(double)1749339
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pdist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pdist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::interp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::interp(double, double, double)895
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::unwrap(double, double)10001
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::inRange(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pinterp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::pinterp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::cyclic(mrs_lib::geometry::radians const&)757550
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::cyclic(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)800406
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::cyclic(double)1726844
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::cyclic()0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>&&)6
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::operator=(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::operator-=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)1
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::operator+=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)1
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::interpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::interpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pinterpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pinterpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::diff(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::diff(double, double)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::dist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::dist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::wrap(double)30000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pdist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pdist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::interp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::interp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::unwrap(double, double)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::inRange(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pinterp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::pinterp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::cyclic(mrs_lib::geometry::sdegrees const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::cyclic(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::cyclic(double)20000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::cyclic()0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>&&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::operator=(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::operator-=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::operator+=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::interpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, double)498320
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::interpUnwrapped(double, double, double)498320
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pinterpUnwrapped(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pinterpUnwrapped(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::diff(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>)3311989
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::diff(double, double)2803662
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::dist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>)10008
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::dist(double, double)10000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::wrap(double)7336856
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pdist(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pdist(double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::interp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::interp(double, double, double)498320
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::unwrap(double, double)2790281
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::inRange(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pinterp(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::pinterp(double, double, double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::cyclic(mrs_lib::geometry::sradians const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::cyclic(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)1016664
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::cyclic(double)6723973
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::cyclic()0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>&&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::operator=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::operator=(double)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::operator-=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::operator+=(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)0
bool mrs_lib::geometry::operator><double, mrs_lib::geometry::radians>(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)2
bool mrs_lib::geometry::operator><double, mrs_lib::geometry::sradians>(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)2
bool mrs_lib::geometry::operator< <double, mrs_lib::geometry::radians>(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)2
bool mrs_lib::geometry::operator< <double, mrs_lib::geometry::sradians>(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)2
mrs_lib::geometry::operator-(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)10009
mrs_lib::geometry::operator+(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians> const&)10004
mrs_lib::geometry::operator+(mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&, mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians> const&)40000
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::degrees>::value() const4
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::radians>::value() const10002
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sdegrees>::value() const0
mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::value() const40002
mrs_lib::geometry::radians mrs_lib::geometry::cyclic<double, mrs_lib::geometry::sradians>::convert<mrs_lib::geometry::radians>() const1
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LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/geometry - cyclic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:608769.0 %
Date:2024-04-17 23:52:03Functions:4811741.0 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : /**  \file
+       3             :      \brief Defines the cyclic class for calculations with cyclic quantities.
+       4             :      \author Matouš Vrba - vrbamato@fel.cvut.cz
+       5             :  */
+       6             : 
+       7             : #ifndef CYCLIC_H
+       8             : #define CYCLIC_H
+       9             : 
+      10             : #include <cmath>
+      11             : #include <ostream>
+      12             : 
+      13             : namespace mrs_lib
+      14             : {
+      15             :   namespace geometry
+      16             :   {
+      17             :     /**
+      18             :      * \brief Implementation of the a general cyclic value (such as angles in radians/degrees etc).
+      19             :      *
+      20             :      * This class implements a periodical value with a period of \f$ r \in {\rm I\!R} \f$ so that a general number \f$ v \in {\rm I\!R} \f$ represents the same
+      21             :      * value as \f$ v + kr,~k \in {\rm I\!N} \f$. For the purposes of calculations in this class, \f$ v \f$ is confined to a half-open interval \f$ v \in
+      22             :      * [~m,~s~[ \f$, where \f$ m \f$ is the minimum of this interval and \f$ s \f$ is its supremum, and \f$ s = m + r \f$ holds. This approach enables
+      23             :      * representing \f$ v \f$ in different intervals on the real numbers axis; eg. angle in radians may be represented within the interval \f$ v \in
+      24             :      * [~-\pi,~\pi~[ \f$ or \f$ v \in [~0,~2\pi~[ \f$, according to the needs of the specific application. The period \f$ r \f$ is called \p range for the
+      25             :      * purposes of this class, as it represents range of the interval of valid ("wrapped") values of \f$ v \f$.
+      26             :      *
+      27             :      * This class may be used as an object or its static methods may be used on regular floating-point types, avoiding any object-related overheads (see
+      28             :      * example). Specializations for the most common cyclic values are provided and a new specialization may be easily created simply by inheriting from this
+      29             :      * class and specifying a different minimum and supremum values.
+      30             :      *
+      31             :      * Implementation inspired by: https://www.codeproject.com/Articles/190833/Circular-Values-Math-and-Statistics-with-Cplusplus
+      32             :      *
+      33             :      * \parblock
+      34             :      * \note For a better intuitive understanding of the used functions, the term **walk** is sometimes used in the function explanations.
+      35             :      * You can imagine walking along the circle from one angle to another (represented by the circular quantities).
+      36             :      * The walk may be the shortest - then you're walking in such a manner that you reach the other point in the least of steps.
+      37             :      * The walk may also be oriented - then you're walking in a specific direction (ie. according to the increasing/decreasing angle).
+      38             :      * \endparblock
+      39             :      *
+      40             :      * \parblock
+      41             :      * \note The terms **circular quantity** and **value** are used in the function explanations.
+      42             :      * A circular quantity is eg. an angle and the same quantity may be represented using different values: the same angle is represented by the values of 100
+      43             :      * degrees and 460 degrees. \endparblock
+      44             :      *
+      45             :      * \tparam flt floating data type to be used by this class.
+      46             :      */
+      47             :     template <typename flt, class spec>
+      48             :     struct cyclic
+      49             :     {
+      50             :       /*!
+      51             :        * \brief Default constructor.
+      52             :        *
+      53             :        * Sets the value to the minimum.
+      54             :        */
+      55           0 :       cyclic() : val(minimum){};
+      56             :       /*!
+      57             :        * \brief Constructor overload.
+      58             :        *
+      59             :        * \param val initialization value (will be wrapped).
+      60             :        */
+      61     8490822 :       cyclic(const flt val) : val(wrap(val)){};
+      62             :       /*!
+      63             :        * \brief Copy constructor.
+      64             :        *
+      65             :        * \param val initialization value.
+      66             :        */
+      67     1817070 :       cyclic(const cyclic& other) : val(other.val){};
+      68             :       /*!
+      69             :        * \brief Copy constructor.
+      70             :        *
+      71             :        * \param val initialization value.
+      72             :        */
+      73      757550 :       cyclic(const spec& other) : val(other.val){};
+      74             : 
+      75             :       /*!
+      76             :        * \brief Getter for \p val.
+      77             :        *
+      78             :        * \return the value.
+      79             :        */
+      80       50008 :       flt value() const
+      81             :       {
+      82       50008 :         return val;
+      83             :       };
+      84             : 
+      85             :       static constexpr flt minimum = spec::minimum;   /*!< \brief Minimum of the valid interval of wrapped values \f$ m \f$ */
+      86             :       static constexpr flt supremum = spec::supremum; /*!< \brief Supremum of the valid interval of wrapped values \f$ s \f$ */
+      87             :       static constexpr flt range =
+      88             :           supremum - minimum; /*!< \brief Range of the valid interval of wrapped values \f$ r \f$ (also the period of the cyclic quantity). */
+      89             :       static constexpr flt half_range =
+      90             :           range / flt(2); /*!< \brief Half of the range of the valid interval of wrapped values \f$ r/2 \f$ (used for some calculations). */
+      91             : 
+      92             :       /* static_assert((supremum > minimum), "cyclic value: Range not valid"); */
+      93             : 
+      94             :       /*!
+      95             :        * \brief Checks if \p val is within the valid interval of wrapped values.
+      96             :        *
+      97             :        * \param val the value to be checked.
+      98             :        * \returns   true if \p val is within the valid interval of wrapped values.
+      99             :        */
+     100           0 :       static bool inRange(const flt val)
+     101             :       {
+     102           0 :         return val >= minimum && val < supremum;
+     103             :       }
+     104             : 
+     105             :       /*!
+     106             :        * \brief Returns \p val, converted to the valid interval of values.
+     107             :        *
+     108             :        * The wrapped value represents the same quantity as the parameter (ie. \f$ v' = v + kr \f$, where \f$ v \f$ is the parameter and \f$ v' \f$ is the
+     109             :        * returned value).
+     110             :        *
+     111             :        * \param val the value to be wrapped.
+     112             :        * \returns   \p val wrapped to the valid interval of values.
+     113             :        */
+     114     9146200 :       static flt wrap(const flt val)
+     115             :       {
+     116             :         // these few ifs should cover most cases, improving speed and precision
+     117     9146200 :         if (val >= minimum)
+     118             :         {
+     119     8415765 :           if (val < supremum)  // value is actually in range and doesn't need to be wrapped
+     120     8188689 :             return val;
+     121      227098 :           else if (val < supremum + range)
+     122       64963 :             return val - range;  // to avoid unnecessary costly fmod operation for this case (assumed to be significantly more common than the general case)
+     123             :         } else
+     124             :         {
+     125      730426 :           if (val >= minimum - range)
+     126      565958 :             return val + range;  // to avoid unnecessary costly fmod operation for this case (assumed to be significantly more common than the general case)
+     127             :         }
+     128             : 
+     129             :         // general case
+     130      326602 :         const flt rem = std::fmod(val - minimum, range);
+     131      326602 :         const flt wrapped = rem + minimum + std::signbit(rem) * range;
+     132      326485 :         return wrapped;
+     133             :       }
+     134             : 
+     135             :       /*!
+     136             :        * \brief Returns value of the parameter \p what modified so that there is no "jump" between \p from and \t what.
+     137             :        *
+     138             :        * The circular difference between the two input quantities is preserved, but the returned value is modified if necessary so that the linear distance
+     139             :        * between the values is the smallest. This is useful whenever you need to preserve linear continuity of consecutive values, eg. when commanding a
+     140             :        * multi-rotational servo motor or when using a simple linear Kalman filter to estimate circular quantities.
+     141             :        *
+     142             :        * An example of inputs and outputs if \f$ m = 0,~s=360 \f$:
+     143             :        *  \p what | \p from  | \p return
+     144             :        *  ------- | -------- | ---------
+     145             :        *    20    |    10    |   20
+     146             :        *    20    |    350   |   380
+     147             :        *    0     |    350   |   360
+     148             :        *    200   |    10    |  -160
+     149             :        *
+     150             :        * \param what   the value to be unwrapped.
+     151             :        * \param from   the previous value from which the unwrapped value of \p what should have the same circular difference and minimal linear distance.
+     152             :        * \returns      the unwrapped value of \p what.
+     153             :        *
+     154             :        * \warning Note that the returned value may be outside the valid interval of wrapped values, specified by the \p minimum and \p supremum parameters of
+     155             :        * this class.
+     156             :        */
+     157     2820282 :       static flt unwrap(const flt what, const flt from)
+     158             :       {
+     159     2820282 :         return from + diff(what, from);
+     160             :       }
+     161             : 
+     162             :       /*!
+     163             :        * \brief Returns length of the shortest walk in the positive direction from the first parameter to the second one.
+     164             :        *
+     165             :        * \param from   the positive walk starts at this value.
+     166             :        * \param to     the positive walk ends at this value.
+     167             :        * \returns      length of the shortest positive walk from the first parameter to the second one.
+     168             :        *
+     169             :        * \note The returned value is not necessarily the shortest distance between the two circular quantities (see the dist() function for that).
+     170             :        */
+     171           0 :       static flt pdist(const flt from, const flt to)
+     172             :       {
+     173           0 :         return pdist(cyclic(from), cyclic(to));
+     174             :       }
+     175             : 
+     176           0 :       static flt pdist(const cyclic from, const cyclic to)
+     177             :       {
+     178           0 :         const flt tmp = to.val - from.val;
+     179           0 :         const flt dist = tmp + std::signbit(tmp) * range;
+     180           0 :         return dist;
+     181             :       }
+     182             : 
+     183             :       /*!
+     184             :        * \brief Returns the difference between the two circular values.
+     185             :        *
+     186             :        * The difference may also be interpreted as length of the shortest walk between the two values, with a sign according to the direction of the shortest
+     187             :        * walk.
+     188             :        *
+     189             :        * \param minuend      the \p subtrahend will be subtracted from this value.
+     190             :        * \param subtrahend   this value will be subtracted from the \p minuend.
+     191             :        * \returns            the difference of the two circular quantities.
+     192             :        */
+     193     3271789 :       static flt diff(const flt minuend, const flt subtrahend)
+     194             :       {
+     195     3271789 :         return diff(cyclic(minuend), cyclic(subtrahend));
+     196             :       }
+     197             : 
+     198     4180559 :       static flt diff(const cyclic minuend, const cyclic subtrahend)
+     199             :       {
+     200     4180559 :         const flt d = minuend.val - subtrahend.val;
+     201     4180559 :         if (d < -half_range)
+     202       39123 :           return d + range;
+     203     4141436 :         if (d >= half_range)
+     204       27742 :           return d - range;
+     205     4113694 :         return d;
+     206             :       }
+     207             : 
+     208             :       /*!
+     209             :        * \brief Returns the distance between the two circular values.
+     210             :        *
+     211             :        * The distance may also be interpreted as length of the shortest walk between the two values.
+     212             :        *
+     213             :        * \param from  the first circular quantity.
+     214             :        * \param to    the second circular quantity.
+     215             :        * \returns     distance of the two circular quantities.
+     216             :        *
+     217             :        * \note The order of the parameters doesn't matter.
+     218             :        */
+     219       20360 :       static flt dist(const flt from, const flt to)
+     220             :       {
+     221       20360 :         return dist(cyclic(from), cyclic(to));
+     222             :       }
+     223             : 
+     224      399581 :       static flt dist(const cyclic from, const cyclic to)
+     225             :       {
+     226      399581 :         return std::abs(diff(from, to));
+     227             :       }
+     228             : 
+     229             :       /*!
+     230             :        * \brief Interpolation between two circular quantities without wrapping of the result.
+     231             :        *
+     232             :        * This function doesn't wrap the returned value.
+     233             :        *
+     234             :        * \param from  the first circular quantity.
+     235             :        * \param to    the second circular quantity.
+     236             :        * \param coeff the interpolation coefficient.
+     237             :        * \returns     interpolation of the two circular quantities using the coefficient.
+     238             :        *
+     239             :        * \warning Note that the returned value may be outside the valid interval of wrapped values, specified by the \p minimum and \p supremum parameters of
+     240             :        * this class.
+     241             :        */
+     242      499215 :       static flt interpUnwrapped(const flt from, const flt to, const flt coeff)
+     243             :       {
+     244      499215 :         return interpUnwrapped(cyclic(from), cyclic(to), coeff);
+     245             :       }
+     246             : 
+     247      499215 :       static flt interpUnwrapped(const cyclic from, const cyclic to, const flt coeff)
+     248             :       {
+     249      499215 :         const flt dang = diff(to, from);
+     250      499215 :         const flt intp = from.val + coeff * dang;
+     251      499215 :         return intp;
+     252             :       }
+     253             : 
+     254             :       /*!
+     255             :        * \brief Interpolation between two circular quantities.
+     256             :        *
+     257             :        * This function wraps the returned value so that it is in the interval of valid values.
+     258             :        *
+     259             :        * \param from  the first circular quantity.
+     260             :        * \param to    the second circular quantity.
+     261             :        * \param coeff the interpolation coefficient.
+     262             :        * \returns     interpolation of the two circular quantities using the coefficient, wrapped to the interval of valid values.
+     263             :        */
+     264      499215 :       static flt interp(const flt from, const flt to, const flt coeff)
+     265             :       {
+     266      499215 :         return wrap(interpUnwrapped(from, to, coeff));
+     267             :       }
+     268             : 
+     269           0 :       static flt interp(const cyclic from, const cyclic to, const flt coeff)
+     270             :       {
+     271           0 :         return wrap(interpUnwrapped(from, to, coeff));
+     272             :       }
+     273             : 
+     274             :       /*!
+     275             :        * \brief Interpolation between two circular quantities in the positive direction without wrapping of the result.
+     276             :        *
+     277             :        * Interpolates the two values in the positive direction from the first parameter to the second by the coefficient.
+     278             :        * This function doesn't wrap the returned value.
+     279             :        *
+     280             :        * \param from  the first circular quantity.
+     281             :        * \param to    the second circular quantity.
+     282             :        * \param coeff the interpolation coefficient.
+     283             :        * \returns     interpolation of the two circular quantities using the coefficient.
+     284             :        *
+     285             :        * \warning Note that the returned value may be outside the valid interval of wrapped values, specified by the \p minimum and \p supremum parameters of
+     286             :        * this class.
+     287             :        */
+     288           0 :       static flt pinterpUnwrapped(const flt from, const flt to, const flt coeff)
+     289             :       {
+     290           0 :         return pinterpUnwrapped(cyclic(from), cyclic(to), coeff);
+     291             :       }
+     292             : 
+     293           0 :       static flt pinterpUnwrapped(const cyclic from, const cyclic to, const flt coeff)
+     294             :       {
+     295           0 :         const flt dang = pdist(to, from);
+     296           0 :         const flt intp = from.val + coeff * dang;
+     297           0 :         return intp;
+     298             :       }
+     299             : 
+     300             :       /*!
+     301             :        * \brief Interpolation between two circular quantities in the positive direction.
+     302             :        *
+     303             :        * Interpolates the two values in the positive direction from the first parameter to the second by the coefficient.
+     304             :        * This function wraps the returned value so that it is in the interval of valid values.
+     305             :        *
+     306             :        * \param from  the first circular quantity.
+     307             :        * \param to    the second circular quantity.
+     308             :        * \param coeff the interpolation coefficient.
+     309             :        * \returns     interpolation of the two circular quantities using the coefficient, wrapped to the interval of valid values.
+     310             :        */
+     311           0 :       static flt pinterp(const flt from, const flt to, const flt coeff)
+     312             :       {
+     313           0 :         return pinterpUnwrapped(cyclic(from), cyclic(to), coeff);
+     314             :       }
+     315             : 
+     316           0 :       static flt pinterp(const cyclic from, const cyclic to, const flt coeff)
+     317             :       {
+     318           0 :         return wrap(pinterpUnwrapped(from, to, coeff));
+     319             :       }
+     320             : 
+     321             :       /*!
+     322             :        * \brief Conversion between two different circular quantities.
+     323             :        *
+     324             :        * This function converts its parameter, interpreted as the circular quantity, represented by this class, to the \p other_t type of circular quantity.
+     325             :        *
+     326             :        * \param what       the circular quantity to be converted.
+     327             :        * \returns          the circular quantity converted to the range of \p other_t.
+     328             :        * \tparam other_t   type of the circular quantity to be converted to.
+     329             :        *
+     330             :        * \warning For the purposes of this function, it is assumed that the range of one type corresponds to the whole range of the other type and zeros of both
+     331             :        * types correspond to each other (such as when converting eg. degrees to radians).
+     332             :        */
+     333             :       template <class other_t>
+     334           1 :       static other_t convert(const cyclic& what)
+     335             :       {
+     336           1 :         return other_t(what.val / range * other_t::range);
+     337             :       }
+     338             : 
+     339             :       /*!
+     340             :        * \brief Conversion between two different circular quantities.
+     341             :        *
+     342             :        * This method returns the circular quantity, represented by this object, converted to the \p other_t type of circular quantity.
+     343             :        *
+     344             :        * \returns          the circular quantity converted to the range of \p other_t.
+     345             :        * \tparam other_t   type of the circular quantity to be converted to.
+     346             :        *
+     347             :        * \warning For the purposes of this function, it is assumed that the range of one type corresponds to the whole range of the other type and zeros of both
+     348             :        * types correspond to each other (such as when converting eg. degrees to radians).
+     349             :        */
+     350             :       template <class other_t>
+     351           1 :       other_t convert() const
+     352             :       {
+     353           1 :         return other_t(val / range * other_t::range);
+     354             :       }
+     355             : 
+     356             :       // | ------------------------ Operators ----------------------- |
+     357             :       /*!
+     358             :        * \brief Assignment operator.
+     359             :        *
+     360             :        * \param nval value to be assigned (will be wrapped).
+     361             :        * \return     reference to self.
+     362             :        */
+     363           0 :       cyclic& operator=(const flt nval)
+     364             :       {
+     365           0 :         val = wrap(nval);
+     366           0 :         return *this;
+     367             :       };
+     368             :       /*!
+     369             :        * \brief Assignment operator.
+     370             :        *
+     371             :        * \param other value to be assigned.
+     372             :        * \return      reference to self.
+     373             :        */
+     374           0 :       cyclic& operator=(const cyclic& other)
+     375             :       {
+     376           0 :         val = other.val;
+     377           0 :         return *this;
+     378             :       };
+     379             :       /*!
+     380             :        * \brief Move operator.
+     381             :        *
+     382             :        * \param other value to be assigned.
+     383             :        * \return      reference to self.
+     384             :        */
+     385           6 :       cyclic& operator=(cyclic&& other)
+     386             :       {
+     387           6 :         val = other.val;
+     388           6 :         return *this;
+     389             :       };
+     390             : 
+     391             :       /*!
+     392             :        * \brief Addition compound operator.
+     393             :        *
+     394             :        * \param other value to be added.
+     395             :        * \return      reference to self.
+     396             :        */
+     397           1 :       cyclic& operator+=(const cyclic& other)
+     398             :       {
+     399           1 :         val = wrap(val + other.val);
+     400           1 :         return *this;
+     401             :       };
+     402             : 
+     403             :       /*!
+     404             :        * \brief Subtraction compound operator.
+     405             :        *
+     406             :        * \param other value to be subtracted.
+     407             :        * \return      reference to self.
+     408             :        */
+     409           1 :       cyclic& operator-=(const cyclic& other)
+     410             :       {
+     411           1 :         val = diff(val, other.val);
+     412           1 :         return *this;
+     413             :       };
+     414             : 
+     415             :       /*!
+     416             :        * \brief Addition operator.
+     417             :        *
+     418             :        * \param lhs left-hand-side.
+     419             :        * \param rhs right-hand-side.
+     420             :        * \return    the result of adding the two angles.
+     421             :        */
+     422       50004 :       friend spec operator+(const cyclic& lhs, const cyclic& rhs)
+     423             :       {
+     424       50004 :         return wrap(lhs.val + rhs.val);
+     425             :       }
+     426             : 
+     427             :       /*!
+     428             :        * \brief Subtraction operator (uses the diff() method).
+     429             :        *
+     430             :        * \param lhs left-hand-side.
+     431             :        * \param rhs right-hand-side.
+     432             :        * \return    the result of subtracting rhs from lhs.
+     433             :        */
+     434       10009 :       friend flt operator-(const cyclic& lhs, const cyclic& rhs)
+     435             :       {
+     436       10009 :         return diff(lhs, rhs);
+     437             :       }
+     438             : 
+     439             :       protected:
+     440             :         flt val;
+     441             :       };
+     442             : 
+     443             :     /*!
+     444             :      * \brief Implementation of the comparison operation between two angles.
+     445             :      *
+     446             :      * An angle is considered to be smaller than another angle if it is shorter - closer to zero.
+     447             :      *
+     448             :      * \param lhs left-hand-side.
+     449             :      * \param rhs right-hand-side.
+     450             :      * \return    true iff the shortest unsigned walk from lhs to 0 is less than from rhs to 0.
+     451             :      */
+     452             :     template <typename flt, class spec>
+     453           4 :     bool operator<(const cyclic<flt, spec>& lhs, const cyclic<flt, spec>& rhs)
+     454             :     {
+     455           4 :       return cyclic<flt, spec>::dist(lhs, 0) < cyclic<flt, spec>::dist(rhs, 0);
+     456             :     }
+     457             : 
+     458             :     /*!
+     459             :      * \brief Implementation of the comparison operation between two angles.
+     460             :      *
+     461             :      * An angle is considered to be larger than another angle if it is longer - further from zero.
+     462             :      *
+     463             :      * \param lhs left-hand-side.
+     464             :      * \param rhs right-hand-side.
+     465             :      * \return    true iff the shortest unsigned walk from lhs to 0 is more than from rhs to 0.
+     466             :      */
+     467             :     template <typename flt, class spec>
+     468           4 :     bool operator>(const cyclic<flt, spec>& lhs, const cyclic<flt, spec>& rhs)
+     469             :     {
+     470           4 :       return cyclic<flt, spec>::dist(lhs, 0) > cyclic<flt, spec>::dist(rhs, 0);
+     471             :     }
+     472             : 
+     473             :     /*!
+     474             :      * \brief Implementation of the stream output operator.
+     475             :      *
+     476             :      * \param out the stream to write the angle to.
+     477             :      * \param ang the angle to be written.
+     478             :      * \return    a reference to the stream.
+     479             :      */
+     480             :     template <typename flt, class spec>
+     481             :     std::ostream& operator<<(std::ostream &out, const cyclic<flt, spec>& ang)
+     482             :     {
+     483             :       return (out << ang.value());
+     484             :     }
+     485             : 
+     486             :     /*!
+     487             :      * \brief Convenience specialization of the cyclic class for unsigned radians (from $0$ to $2\pi$).
+     488             :      */
+     489             :     struct radians : public cyclic<double, radians>
+     490             :     {
+     491             :       using cyclic<double, radians>::cyclic;  // necessary to inherit constructors
+     492             :       static constexpr double minimum = 0;
+     493             :       static constexpr double supremum = 2 * M_PI;
+     494             :     };
+     495             : 
+     496             :     /*!
+     497             :      * \brief Convenience specialization of the cyclic class for signed radians (from $-\pi$ to $\pi$).
+     498             :      */
+     499             :     struct sradians : public cyclic<double, sradians>
+     500             :     {
+     501             :       using cyclic<double, sradians>::cyclic;  // necessary to inherit constructors
+     502             :       static constexpr double minimum = -M_PI;
+     503             :       static constexpr double supremum = M_PI;
+     504             :     };
+     505             : 
+     506             :     /*!
+     507             :      * \brief Convenience specialization of the cyclic class for unsigned degrees (from $0$ to $360$).
+     508             :      */
+     509             :     struct degrees : public cyclic<double, degrees>
+     510             :     {
+     511             :       using cyclic<double, degrees>::cyclic;  // necessary to inherit constructors
+     512             :       static constexpr double minimum = 0;
+     513             :       static constexpr double supremum = 360;
+     514             :     };
+     515             : 
+     516             :     /*!
+     517             :      * \brief Convenience specialization of the cyclic class for signed degrees (from $-180$ to $180$).
+     518             :      */
+     519             :     struct sdegrees : public cyclic<double, sdegrees>
+     520             :     {
+     521             :       using cyclic<double, sdegrees>::cyclic;  // necessary to inherit constructors
+     522             :       static constexpr double minimum = -180;
+     523             :       static constexpr double supremum = 180;
+     524             :     };
+     525             :   }  // namespace geometry
+     526             : }  // namespace mrs_lib
+     527             : 
+     528             : #endif  // CYCLIC_H
+
+
+
+ + + + +
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Eigen::Matrix<double, (3)+(1), 1, ((Eigen::StorageOptions)0)|(((((3)+(1))==(1))&&((1)!=(1)))?((Eigen::StorageOptions)1) : ((((1)==(1))&&(((3)+(1))!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), (3)+(1), 1> mrs_lib::geometry::toHomogenous<3>(Eigen::Matrix<double, 3, 1, ((Eigen::StorageOptions)0)|((((3)==(1))&&((1)!=(1)))?((Eigen::StorageOptions)1) : ((((1)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 1> const&)2
double mrs_lib::geometry::headingFromRot<Eigen::Matrix<double, 3, 3, 0, 3, 3> >(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&)6
double mrs_lib::geometry::headingFromRot<Eigen::Quaternion<double, 0> >(Eigen::Quaternion<double, 0> const&)109992
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Eigen::Matrix<double, (3)+(1), 1, ((Eigen::StorageOptions)0)|(((((3)+(1))==(1))&&((1)!=(1)))?((Eigen::StorageOptions)1) : ((((1)==(1))&&(((3)+(1))!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), (3)+(1), 1> mrs_lib::geometry::toHomogenous<3>(Eigen::Matrix<double, 3, 1, ((Eigen::StorageOptions)0)|((((3)==(1))&&((1)!=(1)))?((Eigen::StorageOptions)1) : ((((1)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 1> const&)2
double mrs_lib::geometry::headingFromRot<Eigen::Quaternion<double, 0> >(Eigen::Quaternion<double, 0> const&)109992
double mrs_lib::geometry::headingFromRot<Eigen::Matrix<double, 3, 3, 0, 3, 3> >(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&)6
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+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : /**  \file
+       3             :      \brief Defines useful geometry utilities and functions.
+       4             :      \author Matouš Vrba - vrbamato@fel.cvut.cz
+       5             :      \author Petr Štibinger - stibipet@fel.cvut.cz
+       6             :  */
+       7             : 
+       8             : #ifndef GEOMETRY_MISC_H
+       9             : #define GEOMETRY_MISC_H
+      10             : 
+      11             : #include <cmath>
+      12             : #include <Eigen/Dense>
+      13             : #include <geometry_msgs/Point.h>
+      14             : #include <geometry_msgs/Quaternion.h>
+      15             : 
+      16             : namespace mrs_lib
+      17             : {
+      18             :   namespace geometry
+      19             :   {
+      20             :     template <int dims>
+      21             :     using vec_t = Eigen::Matrix<double, dims, 1>;
+      22             : 
+      23             :     using pt2_t = vec_t<2>;
+      24             :     using vec2_t = vec_t<2>;
+      25             :     using pt3_t = vec_t<3>;
+      26             :     using vec3_t = vec_t<3>;
+      27             : 
+      28             :     using mat3_t = Eigen::Matrix3d;
+      29             : 
+      30             :     using quat_t = Eigen::Quaterniond;
+      31             :     using anax_t = Eigen::AngleAxisd;
+      32             : 
+      33             :     template <int dims>
+      34           2 :     vec_t<dims + 1> toHomogenous(const vec_t<dims>& vec)
+      35             :     {
+      36           2 :       const Eigen::Matrix<double, dims + 1, 1> ret((Eigen::Matrix<double, dims + 1, 1>() << vec, 1).finished());
+      37           2 :       return ret;
+      38             :     }
+      39             : 
+      40             :     // | ----------------- Angle-related functions ---------------- |
+      41             : 
+      42             :     /* angle-related functions //{ */
+      43             : 
+      44             :     /* headingFromRot() //{ */
+      45             : 
+      46             :     /*!
+      47             :      * \brief Returns the heading angle from the rotation.
+      48             :      *
+      49             :      * Heading is defined as the angle of a [1,0,0] vector rotated by the rotation and projected to the XY plane from the X axis.
+      50             :      *
+      51             :      * \param rot the rotation to extract the heading angle from.
+      52             :      *
+      53             :      * \returns the heading angle.
+      54             :      *
+      55             :      */
+      56             :     template <typename T>
+      57      109998 :     double headingFromRot(const T& rot)
+      58             :     {
+      59      109998 :       const vec3_t rot_vec = rot*vec3_t::UnitX();
+      60      219996 :       return std::atan2(rot_vec.y(), rot_vec.x());
+      61             :     }
+      62             : 
+      63             :     //}
+      64             : 
+      65             :     /* angleBetween() //{ */
+      66             : 
+      67             :     /*!
+      68             :      * \brief Returns the angle between two vectors, taking orientation into account.
+      69             :      *
+      70             :      * This implementation uses \p atan2 instead of just \p acos and thus it properly
+      71             :      * takes into account orientation of the vectors, returning angle in all four quadrants.
+      72             :      *
+      73             :      * \param a vector from which the angle will be measured.
+      74             :      * \param b vector to which the angle will be measured.
+      75             :      *
+      76             :      * \returns    angle from \p a to \p b.
+      77             :      *
+      78             :      */
+      79             :     double angleBetween(const vec2_t& a, const vec2_t& b);
+      80             : 
+      81             :     /*!
+      82             :      * \brief Returns the angle between two vectors, taking orientation into account.
+      83             :      *
+      84             :      * This implementation uses \p atan2 instead of just \p acos and thus it properly
+      85             :      * takes into account orientation of the vectors, returning angle in all four quadrants.
+      86             :      *
+      87             :      * \param a vector from which the angle will be measured.
+      88             :      * \param b vector to which the angle will be measured.
+      89             :      *
+      90             :      * \returns    angle from \p a to \p b.
+      91             :      *
+      92             :      */
+      93             :     double angleBetween(const vec3_t& a, const vec3_t& b);
+      94             : 
+      95             :     //}
+      96             : 
+      97             :     /* angleaxisBetween() //{ */
+      98             : 
+      99             :     /*!
+     100             :      * \brief Returns the rotation between two vectors, represented as angle-axis.
+     101             :      *
+     102             :      * To avoid singularities, a \p tolerance parameter is used:
+     103             :      * * If the absolute angle between the two vectors is less than \p tolerance, a zero rotation is returned.
+     104             :      * * If the angle between the two vectors is closer to \f$ \pi \f$ than \p tolerance, a \f$ \pi \f$ rotation is returned.
+     105             :      *
+     106             :      * \param a vector from which the rotation starts.
+     107             :      * \param b vector at which the rotation ends.
+     108             :      *
+     109             :      * \returns    rotation from \p a to \p b.
+     110             :      *
+     111             :      */
+     112             :     anax_t angleaxisBetween(const vec3_t& a, const vec3_t& b, const double tolerance = 1e-9);
+     113             : 
+     114             :     //}
+     115             : 
+     116             :     /* quaternionBetween() //{ */
+     117             : 
+     118             :     /*!
+     119             :      * \brief Returns the rotation between two vectors, represented as a quaternion.
+     120             :      *
+     121             :      * Works the same as the angleaxisBetween() function (in fact it is used in the implementation).
+     122             :      *
+     123             :      * \param a vector from which the rotation starts.
+     124             :      * \param b vector at which the rotation ends.
+     125             :      *
+     126             :      * \returns    rotation from \p a to \p b.
+     127             :      *
+     128             :      */
+     129             :     quat_t quaternionBetween(const vec3_t& a, const vec3_t& b, const double tolerance = 1e-9);
+     130             : 
+     131             :     //}
+     132             : 
+     133             :     /* rotationBetween() //{ */
+     134             : 
+     135             :     /*!
+     136             :      * \brief Returns the rotation between two vectors, represented as a rotation matrix.
+     137             :      *
+     138             :      * Works the same as the angleaxisBetween() function (in fact it is used in the implementation).
+     139             :      *
+     140             :      * \param a vector from which the rotation starts.
+     141             :      * \param b vector at which the rotation ends.
+     142             :      *
+     143             :      * \returns    rotation from \p a to \p b.
+     144             :      *
+     145             :      */
+     146             :     Eigen::Matrix3d rotationBetween(const vec3_t& a, const vec3_t& b, const double tolerance = 1e-9);
+     147             : 
+     148             :     //}
+     149             : 
+     150             :     /* haversin() //{ */
+     151             : 
+     152             :     /**
+     153             :      * @brief computes the haversine (half of versine) for a given angle
+     154             :      *
+     155             :      * @param angle angle in radians
+     156             :      *
+     157             :      * @return
+     158             :      */
+     159             :     double haversin(const double angle);
+     160             : 
+     161             :     //}
+     162             : 
+     163             :     /* invHaversin() //{ */
+     164             : 
+     165             :     /**
+     166             :      * @brief computes the inverse haversine angle for a given value
+     167             :      *
+     168             :      * @param value
+     169             :      *
+     170             :      * @return angle in radians
+     171             :      */
+     172             :     double invHaversin(const double value);
+     173             : 
+     174             :     //}
+     175             : 
+     176             :     /* solidAngle //{ */
+     177             : 
+     178             :     /**
+     179             :      * @brief computes the solid angle for a spherical surface corresponding to a 'triangle' with edge lengths a, b, c
+     180             :      *
+     181             :      * @param a
+     182             :      * @param b
+     183             :      * @param c
+     184             :      *
+     185             :      * @return solid angle in steradians
+     186             :      */
+     187             :     double solidAngle(double a, double b, double c);
+     188             : 
+     189             :     //}
+     190             : 
+     191             :     /* quaternionFromEuler() //{ */
+     192             : 
+     193             :     /**
+     194             :      * @brief create a quaternion from 3 provided Euler angles
+     195             :      *
+     196             :      * @param x Euler angle in radians
+     197             :      * @param y Euler angle in radians
+     198             :      * @param z Euler angle in radians
+     199             :      *
+     200             :      * @return quaternion
+     201             :      */
+     202             :     quat_t quaternionFromEuler(double x, double y, double z);
+     203             : 
+     204             :     /**
+     205             :      * @brief create a quaternion from Euler angles provided as a vector
+     206             :      *
+     207             :      * @param euler components of the rotation provided as vector of Euler angles
+     208             :      *
+     209             :      * @return quaternion
+     210             :      */
+     211             :     quat_t quaternionFromEuler(const Eigen::Vector3d& euler);
+     212             : 
+     213             :     //}
+     214             : 
+     215             :     /**
+     216             :      * @brief create a quaternion from heading
+     217             :      *
+     218             :      * Heading is defined as the angle of a [1,0,0] vector rotated by the rotation and projected to the XY plane from the X axis.
+     219             :      *
+     220             :      * @param heading the heading angle.
+     221             :      *
+     222             :      * @return the quaternion corresponding to the heading rotation.
+     223             :      */
+     224             :     quat_t quaternionFromHeading(const double heading);
+     225             : 
+     226             :     //}
+     227             : 
+     228             :     // | ----------------- Miscellaneous functions ---------------- |
+     229             : 
+     230             :     /* 2D cross() //{ */
+     231             : 
+     232             :     /*!
+     233             :      * \brief Implementation of cross product for 2D vectors.
+     234             :      *
+     235             :      * Useful e.g. for finding the sine of an angle between two 2D vectors.
+     236             :      *
+     237             :      * \param a first vector of the cross product.
+     238             :      * \param b second vector of the cross product.
+     239             :      *
+     240             :      * \returns    \f$ a \times b \f$ (sine of the angle from \p a to \p b).
+     241             :      *
+     242             :      */
+     243             :     double cross(const vec2_t& a, const vec2_t b);
+     244             : 
+     245             :     //}
+     246             : 
+     247             :     /* vector distance //{ */
+     248             : 
+     249             :     /**
+     250             :      * @brief distnace between two 2D Eigen vectors
+     251             :      *
+     252             :      * @param a
+     253             :      * @param b
+     254             :      *
+     255             :      * @return Euclidean distance
+     256             :      */
+     257             :     double dist(const vec2_t& a, const vec2_t& b);
+     258             : 
+     259             :     /**
+     260             :      * @brief distnace between two 3D Eigen vectors
+     261             :      *
+     262             :      * @param a
+     263             :      * @param b
+     264             :      *
+     265             :      * @return Euclidean distance
+     266             :      */
+     267             :     double dist(const vec3_t& a, const vec3_t& b);
+     268             : 
+     269             :     //}
+     270             : 
+     271             :     /* triangleArea() //{ */
+     272             : 
+     273             :     /**
+     274             :      * @brief uses Heron's formula to compute area of a given triangle using side lengths
+     275             :      *
+     276             :      * @param a length of side1
+     277             :      * @param b length of side2
+     278             :      * @param c length of side3
+     279             :      *
+     280             :      * @return area in units squared
+     281             :      */
+     282             :     double triangleArea(const double a, const double b, const double c);
+     283             : 
+     284             :     //}
+     285             : 
+     286             :     /* sphericalTriangleArea //{ */
+     287             : 
+     288             :     /**
+     289             :      * @brief compute the area of a 'triangle' drawn on a spherical surface
+     290             :      *
+     291             :      * @param a length of side1
+     292             :      * @param b length of side2
+     293             :      * @param c length of side3
+     294             :      *
+     295             :      * @return area in units squared
+     296             :      */
+     297             :     double sphericalTriangleArea(Eigen::Vector3d a, Eigen::Vector3d b, Eigen::Vector3d c);
+     298             : 
+     299             :     //}
+     300             : 
+     301             :     /* rotateCovariance() //{ */
+     302             :     
+     303             :     /*!
+     304             :      * \brief Returns the covariance rotated using the specified rotation.
+     305             :      *
+     306             :      * \param cov the covariance to be rotated.
+     307             :      * \param rot the rotation use.
+     308             :      *
+     309             :      * \returns a new matrix object containing the rotated covariance.
+     310             :      *
+     311             :      */
+     312             :     template <typename T>
+     313             :     mat3_t rotateCovariance(const mat3_t& cov, const T& rot)
+     314             :     {
+     315             :       const mat3_t matrot(rot);
+     316             :       return matrot*cov*matrot.transpose();
+     317             :     }
+     318             :     
+     319             :     //}
+     320             : 
+     321             :   }  // namespace geometry
+     322             : }  // namespace mrs_lib
+     323             : 
+     324             : #endif
+
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::UTMtoLL(double, double, char const*, double&, double&)1913
mrs_lib::UTM(double, double, double*, double*)8354
mrs_lib::LLtoUTM(double, double, double&, double&, char*)182424
mrs_lib::UTMLetterDesignator(double)182508
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mrs_lib::UTMLetterDesignator(double)182508
mrs_lib::UTM(double, double, double*, double*)8354
mrs_lib::LLtoUTM(double, double, double&, double&, char*)182424
mrs_lib::UTMtoLL(double, double, char const*, double&, double&)1913
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          Line data    Source code
+
+       1             : /* Taken from utexas-art-ros-pkg:art_vehicle/applanix */
+       2             : 
+       3             : /*
+       4             :  * Conversions between coordinate systems.
+       5             :  *
+       6             :  * Includes LatLong<->UTM.
+       7             :  */
+       8             : 
+       9             : #ifndef _UTM_H
+      10             : #define _UTM_H
+      11             : 
+      12             : /**  @file
+      13             :      @brief Universal Transverse Mercator transforms.
+      14             :      Functions to convert (spherical) latitude and longitude to and
+      15             :      from (Euclidean) UTM coordinates.
+      16             :      @author Chuck Gantz- chuck.gantz@globalstar.com
+      17             :  */
+      18             : 
+      19             : #include <cmath>
+      20             : #include <cstdio>
+      21             : #include <cstdlib>
+      22             : #include <string>
+      23             : 
+      24             : namespace mrs_lib
+      25             : {
+      26             : 
+      27             :   const double RADIANS_PER_DEGREE = M_PI / 180.0;
+      28             :   const double DEGREES_PER_RADIAN = 180.0 / M_PI;
+      29             : 
+      30             :   // WGS84 Parameters
+      31             :   const double WGS84_A  = 6378137.0;         // major axis
+      32             :   const double WGS84_B  = 6356752.31424518;  // minor axis
+      33             :   const double WGS84_F  = 0.0033528107;      // ellipsoid flattening
+      34             :   const double WGS84_E  = 0.0818191908;      // first eccentricity
+      35             :   const double WGS84_EP = 0.0820944379;      // second eccentricity
+      36             : 
+      37             :   // UTM Parameters
+      38             :   const double UTM_K0   = 0.9996;                   // scale factor
+      39             :   const double UTM_FE   = 500000.0;                 // false easting
+      40             :   const double UTM_FN_N = 0.0;                      // false northing on north hemisphere
+      41             :   const double UTM_FN_S = 10000000.0;               // false northing on south hemisphere
+      42             :   const double UTM_E2   = (WGS84_E * WGS84_E);      // e^2
+      43             :   const double UTM_E4   = (UTM_E2 * UTM_E2);        // e^4
+      44             :   const double UTM_E6   = (UTM_E4 * UTM_E2);        // e^6
+      45             :   const double UTM_EP2  = (UTM_E2 / (1 - UTM_E2));  // e'^2
+      46             : 
+      47             :   /**
+      48             :    * Utility function to convert geodetic to UTM position
+      49             :    *
+      50             :    * Units in are floating point degrees (sign for east/west)
+      51             :    *
+      52             :    * Units out are meters
+      53             :    */
+      54        8354 :   static inline void UTM(double lat, double lon, double* x, double* y) {
+      55             :     // constants
+      56             :     const static double m0 = (1 - UTM_E2 / 4 - 3 * UTM_E4 / 64 - 5 * UTM_E6 / 256);
+      57             :     const static double m1 = -(3 * UTM_E2 / 8 + 3 * UTM_E4 / 32 + 45 * UTM_E6 / 1024);
+      58             :     const static double m2 = (15 * UTM_E4 / 256 + 45 * UTM_E6 / 1024);
+      59             :     const static double m3 = -(35 * UTM_E6 / 3072);
+      60             : 
+      61             :     // compute the central meridian
+      62        8354 :     int cm = ((lon >= 0.0) ? ((int)lon - ((int)lon) % 6 + 3) : ((int)lon - ((int)lon) % 6 - 3));
+      63             : 
+      64             :     // convert degrees into radians
+      65        8354 :     double rlat  = lat * RADIANS_PER_DEGREE;
+      66        8354 :     double rlon  = lon * RADIANS_PER_DEGREE;
+      67        8354 :     double rlon0 = cm * RADIANS_PER_DEGREE;
+      68             : 
+      69             :     // compute trigonometric functions
+      70        8354 :     double slat = sin(rlat);
+      71        8354 :     double clat = cos(rlat);
+      72        8354 :     double tlat = tan(rlat);
+      73             : 
+      74             :     // decide the false northing at origin
+      75        8354 :     double fn = (lat > 0) ? UTM_FN_N : UTM_FN_S;
+      76             : 
+      77        8354 :     double T = tlat * tlat;
+      78        8354 :     double C = UTM_EP2 * clat * clat;
+      79        8354 :     double A = (rlon - rlon0) * clat;
+      80        8354 :     double M = WGS84_A * (m0 * rlat + m1 * sin(2 * rlat) + m2 * sin(4 * rlat) + m3 * sin(6 * rlat));
+      81        8354 :     double V = WGS84_A / sqrt(1 - UTM_E2 * slat * slat);
+      82             : 
+      83             :     // compute the easting-northing coordinates
+      84        8354 :     *x = UTM_FE + UTM_K0 * V * (A + (1 - T + C) * pow(A, 3) / 6 + (5 - 18 * T + T * T + 72 * C - 58 * UTM_EP2) * pow(A, 5) / 120);
+      85        8318 :     *y = fn +
+      86        8318 :          UTM_K0 *
+      87        8343 :              (M + V * tlat * (A * A / 2 + (5 - T + 9 * C + 4 * C * C) * pow(A, 4) / 24 + ((61 - 58 * T + T * T + 600 * C - 330 * UTM_EP2) * pow(A, 6) / 720)));
+      88             : 
+      89        8318 :     return;
+      90             :   }
+      91             : 
+      92             : 
+      93             :   /**
+      94             :    * Determine the correct UTM letter designator for the
+      95             :    * given latitude
+      96             :    *
+      97             :    * @returns 'Z' if latitude is outside the UTM limits of 84N to 80S
+      98             :    *
+      99             :    * Written by Chuck Gantz- chuck.gantz@globalstar.com
+     100             :    */
+     101      182508 :   static inline char UTMLetterDesignator(double Lat) {
+     102             :     char LetterDesignator;
+     103             : 
+     104      182508 :     if ((84 >= Lat) && (Lat >= 72))
+     105           0 :       LetterDesignator = 'X';
+     106      182508 :     else if ((72 > Lat) && (Lat >= 64))
+     107           0 :       LetterDesignator = 'W';
+     108      182508 :     else if ((64 > Lat) && (Lat >= 56))
+     109           0 :       LetterDesignator = 'V';
+     110      182508 :     else if ((56 > Lat) && (Lat >= 48))
+     111           0 :       LetterDesignator = 'U';
+     112      182508 :     else if ((48 > Lat) && (Lat >= 40))
+     113      181387 :       LetterDesignator = 'T';
+     114        1121 :     else if ((40 > Lat) && (Lat >= 32))
+     115           0 :       LetterDesignator = 'S';
+     116        1121 :     else if ((32 > Lat) && (Lat >= 24))
+     117           0 :       LetterDesignator = 'R';
+     118        1121 :     else if ((24 > Lat) && (Lat >= 16))
+     119           0 :       LetterDesignator = 'Q';
+     120        1121 :     else if ((16 > Lat) && (Lat >= 8))
+     121           0 :       LetterDesignator = 'P';
+     122        1121 :     else if ((8 > Lat) && (Lat >= 0))
+     123           2 :       LetterDesignator = 'N';
+     124        1119 :     else if ((0 > Lat) && (Lat >= -8))
+     125           0 :       LetterDesignator = 'M';
+     126        1119 :     else if ((-8 > Lat) && (Lat >= -16))
+     127           0 :       LetterDesignator = 'L';
+     128        1119 :     else if ((-16 > Lat) && (Lat >= -24))
+     129           0 :       LetterDesignator = 'K';
+     130        1119 :     else if ((-24 > Lat) && (Lat >= -32))
+     131           0 :       LetterDesignator = 'J';
+     132        1119 :     else if ((-32 > Lat) && (Lat >= -40))
+     133           0 :       LetterDesignator = 'H';
+     134        1119 :     else if ((-40 > Lat) && (Lat >= -48))
+     135           0 :       LetterDesignator = 'G';
+     136        1119 :     else if ((-48 > Lat) && (Lat >= -56))
+     137           0 :       LetterDesignator = 'F';
+     138        1119 :     else if ((-56 > Lat) && (Lat >= -64))
+     139           0 :       LetterDesignator = 'E';
+     140        1119 :     else if ((-64 > Lat) && (Lat >= -72))
+     141           0 :       LetterDesignator = 'D';
+     142        1119 :     else if ((-72 > Lat) && (Lat >= -80))
+     143           0 :       LetterDesignator = 'C';
+     144             :     // 'Z' is an error flag, the Latitude is outside the UTM limits
+     145             :     else
+     146        1119 :       LetterDesignator = 'Z';
+     147      182508 :     return LetterDesignator;
+     148             :   }
+     149             : 
+     150             :   /**
+     151             :    * Convert lat/long to UTM coords.  Equations from USGS Bulletin 1532
+     152             :    *
+     153             :    * East Longitudes are positive, West longitudes are negative.
+     154             :    * North latitudes are positive, South latitudes are negative
+     155             :    * Lat and Long are in fractional degrees
+     156             :    *
+     157             :    * Written by Chuck Gantz- chuck.gantz@globalstar.com
+     158             :    */
+     159      182424 :   static inline void LLtoUTM(const double Lat, const double Long, double& UTMNorthing, double& UTMEasting, char* UTMZone) {
+     160      182424 :     double a          = WGS84_A;
+     161      182424 :     double eccSquared = UTM_E2;
+     162      182424 :     double k0         = UTM_K0;
+     163             : 
+     164             :     double LongOrigin;
+     165             :     double eccPrimeSquared;
+     166             :     double N, T, C, A, M;
+     167             : 
+     168             :     // Make sure the longitude is between -180.00 .. 179.9
+     169      182424 :     double LongTemp = (Long + 180) - int((Long + 180) / 360) * 360 - 180;
+     170             : 
+     171      182424 :     double LatRad  = Lat * RADIANS_PER_DEGREE;
+     172      182424 :     double LongRad = LongTemp * RADIANS_PER_DEGREE;
+     173             :     double LongOriginRad;
+     174             :     int    ZoneNumber;
+     175             : 
+     176      182424 :     ZoneNumber = int((LongTemp + 180) / 6) + 1;
+     177             :     // range clamping to shut up some compiler warnings
+     178             :     // (the UTM Zone number should in reality be in the range <1, 60>)
+     179      182424 :     if (ZoneNumber > 99)
+     180           0 :       ZoneNumber = 99;
+     181      182424 :     if (ZoneNumber < -9)
+     182           0 :       ZoneNumber = -9;
+     183             : 
+     184      182424 :     if (Lat >= 56.0 && Lat < 64.0 && LongTemp >= 3.0 && LongTemp < 12.0)
+     185           0 :       ZoneNumber = 32;
+     186             : 
+     187             :     // Special zones for Svalbard
+     188      182424 :     if (Lat >= 72.0 && Lat < 84.0) {
+     189           0 :       if (LongTemp >= 0.0 && LongTemp < 9.0)
+     190           0 :         ZoneNumber = 31;
+     191           0 :       else if (LongTemp >= 9.0 && LongTemp < 21.0)
+     192           0 :         ZoneNumber = 33;
+     193           0 :       else if (LongTemp >= 21.0 && LongTemp < 33.0)
+     194           0 :         ZoneNumber = 35;
+     195           0 :       else if (LongTemp >= 33.0 && LongTemp < 42.0)
+     196           0 :         ZoneNumber = 37;
+     197             :     }
+     198             :     // +3 puts origin in middle of zone
+     199      182424 :     LongOrigin    = (ZoneNumber - 1) * 6 - 180 + 3;
+     200      182424 :     LongOriginRad = LongOrigin * RADIANS_PER_DEGREE;
+     201             : 
+     202             :     // compute the UTM Zone from the latitude and longitude
+     203      182424 :     snprintf(UTMZone, 4, "%d%c", ZoneNumber, UTMLetterDesignator(Lat));
+     204             : 
+     205      181898 :     eccPrimeSquared = (eccSquared) / (1 - eccSquared);
+     206             : 
+     207      181898 :     N = a / sqrt(1 - eccSquared * sin(LatRad) * sin(LatRad));
+     208      181898 :     T = tan(LatRad) * tan(LatRad);
+     209      181898 :     C = eccPrimeSquared * cos(LatRad) * cos(LatRad);
+     210      181898 :     A = cos(LatRad) * (LongRad - LongOriginRad);
+     211             : 
+     212      181898 :     M = a * ((1 - eccSquared / 4 - 3 * eccSquared * eccSquared / 64 - 5 * eccSquared * eccSquared * eccSquared / 256) * LatRad -
+     213      181898 :              (3 * eccSquared / 8 + 3 * eccSquared * eccSquared / 32 + 45 * eccSquared * eccSquared * eccSquared / 1024) * sin(2 * LatRad) +
+     214      181898 :              (15 * eccSquared * eccSquared / 256 + 45 * eccSquared * eccSquared * eccSquared / 1024) * sin(4 * LatRad) -
+     215      181898 :              (35 * eccSquared * eccSquared * eccSquared / 3072) * sin(6 * LatRad));
+     216             : 
+     217      181898 :     UTMEasting =
+     218      181898 :         (double)(k0 * N * (A + (1 - T + C) * A * A * A / 6 + (5 - 18 * T + T * T + 72 * C - 58 * eccPrimeSquared) * A * A * A * A * A / 120) + 500000.0);
+     219             : 
+     220      181898 :     UTMNorthing = (double)(k0 * (M + N * tan(LatRad) *
+     221      181898 :                                          (A * A / 2 + (5 - T + 9 * C + 4 * C * C) * A * A * A * A / 24 +
+     222      181898 :                                           (61 - 58 * T + T * T + 600 * C - 330 * eccPrimeSquared) * A * A * A * A * A * A / 720)));
+     223      181898 :     if (Lat < 0)
+     224           0 :       UTMNorthing += 10000000.0;  // 10000000 meter offset for southern hemisphere
+     225      181898 :   }
+     226             : 
+     227             :   static inline void LLtoUTM(const double Lat, const double Long, double& UTMNorthing, double& UTMEasting, std::string& UTMZone) {
+     228             :     char zone_buf[] = {0, 0, 0, 0};
+     229             : 
+     230             :     LLtoUTM(Lat, Long, UTMNorthing, UTMEasting, zone_buf);
+     231             : 
+     232             :     UTMZone = zone_buf;
+     233             :   }
+     234             : 
+     235             : 
+     236             :   /**
+     237             :    * Converts UTM coords to lat/long.  Equations from USGS Bulletin 1532
+     238             :    *
+     239             :    * East Longitudes are positive, West longitudes are negative.
+     240             :    * North latitudes are positive, South latitudes are negative
+     241             :    * Lat and Long are in fractional degrees.
+     242             :    *
+     243             :    * Written by Chuck Gantz- chuck.gantz@globalstar.com
+     244             :    */
+     245        1913 :   static inline void UTMtoLL(const double UTMNorthing, const double UTMEasting, const char* UTMZone, double& Lat, double& Long) {
+     246        1913 :     double                  k0         = UTM_K0;
+     247        1913 :     double                  a          = WGS84_A;
+     248        1913 :     double                  eccSquared = UTM_E2;
+     249             :     double                  eccPrimeSquared;
+     250        1913 :     double                  e1 = (1 - sqrt(1 - eccSquared)) / (1 + sqrt(1 - eccSquared));
+     251             :     double                  N1, T1, C1, R1, D, M;
+     252             :     double                  LongOrigin;
+     253             :     double                  mu, phi1Rad;
+     254             :     [[maybe_unused]] double phi1;
+     255             :     double                  x, y;
+     256             :     int                     ZoneNumber;
+     257             :     char*                   ZoneLetter;
+     258             :     [[maybe_unused]] int    NorthernHemisphere;  // 1 for northern hemispher, 0 for southern
+     259             : 
+     260        1913 :     x = UTMEasting - 500000.0;  // remove 500,000 meter offset for longitude
+     261        1913 :     y = UTMNorthing;
+     262             : 
+     263        1913 :     ZoneNumber = strtoul(UTMZone, &ZoneLetter, 10);
+     264        1913 :     if ((*ZoneLetter - 'N') >= 0)
+     265        1913 :       NorthernHemisphere = 1;  // point is in northern hemisphere
+     266             :     else {
+     267           0 :       NorthernHemisphere = 0;  // point is in southern hemisphere
+     268           0 :       y -= 10000000.0;         // remove 10,000,000 meter offset used for southern hemisphere
+     269             :     }
+     270             : 
+     271        1913 :     LongOrigin = (ZoneNumber - 1) * 6 - 180 + 3;  //+3 puts origin in middle of zone
+     272             : 
+     273        1913 :     eccPrimeSquared = (eccSquared) / (1 - eccSquared);
+     274             : 
+     275        1913 :     M  = y / k0;
+     276        1913 :     mu = M / (a * (1 - eccSquared / 4 - 3 * eccSquared * eccSquared / 64 - 5 * eccSquared * eccSquared * eccSquared / 256));
+     277             : 
+     278        1913 :     phi1Rad = mu + (3 * e1 / 2 - 27 * e1 * e1 * e1 / 32) * sin(2 * mu) + (21 * e1 * e1 / 16 - 55 * e1 * e1 * e1 * e1 / 32) * sin(4 * mu) +
+     279        1913 :               (151 * e1 * e1 * e1 / 96) * sin(6 * mu);
+     280        1913 :     phi1 = phi1Rad * DEGREES_PER_RADIAN;
+     281             : 
+     282        1913 :     N1 = a / sqrt(1 - eccSquared * sin(phi1Rad) * sin(phi1Rad));
+     283        1913 :     T1 = tan(phi1Rad) * tan(phi1Rad);
+     284        1913 :     C1 = eccPrimeSquared * cos(phi1Rad) * cos(phi1Rad);
+     285        1913 :     R1 = a * (1 - eccSquared) / pow(1 - eccSquared * sin(phi1Rad) * sin(phi1Rad), 1.5);
+     286        1913 :     D  = x / (N1 * k0);
+     287             : 
+     288        1913 :     Lat = phi1Rad - (N1 * tan(phi1Rad) / R1) * (D * D / 2 - (5 + 3 * T1 + 10 * C1 - 4 * C1 * C1 - 9 * eccPrimeSquared) * D * D * D * D / 24 +
+     289        1913 :                                                 (61 + 90 * T1 + 298 * C1 + 45 * T1 * T1 - 252 * eccPrimeSquared - 3 * C1 * C1) * D * D * D * D * D * D / 720);
+     290        1913 :     Lat = Lat * DEGREES_PER_RADIAN;
+     291             : 
+     292        1913 :     Long = (D - (1 + 2 * T1 + C1) * D * D * D / 6 + (5 - 2 * C1 + 28 * T1 - 3 * C1 * C1 + 8 * eccPrimeSquared + 24 * T1 * T1) * D * D * D * D * D / 120) /
+     293        1913 :            cos(phi1Rad);
+     294        1913 :     Long = LongOrigin + Long * DEGREES_PER_RADIAN;
+     295        1913 :   }
+     296             : 
+     297             :   static inline void UTMtoLL(const double UTMNorthing, const double UTMEasting, std::string UTMZone, double& Lat, double& Long) {
+     298             :     UTMtoLL(UTMNorthing, UTMEasting, UTMZone.c_str(), Lat, Long);
+     299             :   }
+     300             : 
+     301             : }  // namespace mrs_lib
+     302             : 
+     303             : #endif  // _UTM_H
+
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100.0%
+
100.0 %18 / 18100.0 %18 / 18
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Generated by: LCOV version 1.14
+
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LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib/implHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:36744682.3 %
Date:2024-04-17 23:52:03Functions:816139058.7 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
param_provider.hpp +
64.3%64.3%
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64.3 %9 / 14100.0 %16 / 16
publisher_handler.hpp +
81.5%81.5%
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81.5 %44 / 5497.5 %197 / 202
service_client_handler.hpp +
92.9%92.9%
+
92.9 %52 / 56100.0 %47 / 47
subscribe_handler.hpp +
81.7%81.7%
+
81.7 %98 / 12046.6 %487 / 1044
timer.hpp +
87.5%87.5%
+
87.5 %14 / 16100.0 %3 / 3
transformer.hpp +
85.9%85.9%
+
85.9 %55 / 6483.3 %40 / 48
ukf.hpp +
74.0%74.0%
+
74.0 %77 / 10466.7 %8 / 12
vector_converter.hpp +
100.0%
+
100.0 %18 / 18100.0 %18 / 18
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/include/mrs_lib/impl/param_provider.hpp.func-sort-c.html b/mrs_lib/include/mrs_lib/impl/param_provider.hpp.func-sort-c.html new file mode 100644 index 0000000000..c1f1679c33 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/param_provider.hpp.func-sort-c.html @@ -0,0 +1,144 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/param_provider.hpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib/impl - param_provider.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:91464.3 %
Date:2024-04-17 23:52:03Functions:1616100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
bool mrs_lib::ParamProvider::getParamImpl<std::vector<int, std::allocator<int> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<int, std::allocator<int> >&) const5
bool mrs_lib::ParamProvider::getParam<std::vector<int, std::allocator<int> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<int, std::allocator<int> >&) const5
bool mrs_lib::ParamProvider::getParamImpl<std::vector<float, std::allocator<float> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<float, std::allocator<float> >&) const10
bool mrs_lib::ParamProvider::getParam<std::vector<float, std::allocator<float> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<float, std::allocator<float> >&) const10
bool mrs_lib::ParamProvider::getParamImpl<std::vector<double, std::allocator<double> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> >&) const1629
bool mrs_lib::ParamProvider::getParam<std::vector<double, std::allocator<double> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> >&) const1629
bool mrs_lib::ParamProvider::getParamImpl<std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > >&) const3198
bool mrs_lib::ParamProvider::getParam<std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > >&) const3198
bool mrs_lib::ParamProvider::getParamImpl<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int&) const4613
bool mrs_lib::ParamProvider::getParam<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int&) const4613
bool mrs_lib::ParamProvider::getParamImpl<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&) const15438
bool mrs_lib::ParamProvider::getParam<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&) const15438
bool mrs_lib::ParamProvider::getParamImpl<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool&) const18240
bool mrs_lib::ParamProvider::getParam<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool&) const18240
bool mrs_lib::ParamProvider::getParamImpl<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double&) const37299
bool mrs_lib::ParamProvider::getParam<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double&) const37299
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/include/mrs_lib/impl/param_provider.hpp.func.html b/mrs_lib/include/mrs_lib/impl/param_provider.hpp.func.html new file mode 100644 index 0000000000..2ed8053bce --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/param_provider.hpp.func.html @@ -0,0 +1,144 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/param_provider.hpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib/impl - param_provider.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:91464.3 %
Date:2024-04-17 23:52:03Functions:1616100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
bool mrs_lib::ParamProvider::getParamImpl<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&) const15438
bool mrs_lib::ParamProvider::getParamImpl<std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > >&) const3198
bool mrs_lib::ParamProvider::getParamImpl<std::vector<double, std::allocator<double> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> >&) const1629
bool mrs_lib::ParamProvider::getParamImpl<std::vector<float, std::allocator<float> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<float, std::allocator<float> >&) const10
bool mrs_lib::ParamProvider::getParamImpl<std::vector<int, std::allocator<int> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<int, std::allocator<int> >&) const5
bool mrs_lib::ParamProvider::getParamImpl<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool&) const18240
bool mrs_lib::ParamProvider::getParamImpl<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double&) const37299
bool mrs_lib::ParamProvider::getParamImpl<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int&) const4613
bool mrs_lib::ParamProvider::getParam<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&) const15438
bool mrs_lib::ParamProvider::getParam<std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > >&) const3198
bool mrs_lib::ParamProvider::getParam<std::vector<double, std::allocator<double> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> >&) const1629
bool mrs_lib::ParamProvider::getParam<std::vector<float, std::allocator<float> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<float, std::allocator<float> >&) const10
bool mrs_lib::ParamProvider::getParam<std::vector<int, std::allocator<int> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<int, std::allocator<int> >&) const5
bool mrs_lib::ParamProvider::getParam<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool&) const18240
bool mrs_lib::ParamProvider::getParam<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double&) const37299
bool mrs_lib::ParamProvider::getParam<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int&) const4613
+
+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/impl/param_provider.hpp.gcov.frameset.html b/mrs_lib/include/mrs_lib/impl/param_provider.hpp.gcov.frameset.html new file mode 100644 index 0000000000..150116899e --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/param_provider.hpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/param_provider.hpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/include/mrs_lib/impl/param_provider.hpp.gcov.html b/mrs_lib/include/mrs_lib/impl/param_provider.hpp.gcov.html new file mode 100644 index 0000000000..23f7ba78c0 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/param_provider.hpp.gcov.html @@ -0,0 +1,132 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/param_provider.hpp + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/impl - param_provider.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:91464.3 %
Date:2024-04-17 23:52:03Functions:1616100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef PARAM_PROVIDER_HPP
+       2             : #define PARAM_PROVIDER_HPP
+       3             : 
+       4             : #include <mrs_lib/param_provider.h>
+       5             : 
+       6             : namespace mrs_lib
+       7             : {
+       8             :   template <typename T>
+       9       80432 :   bool ParamProvider::getParam(const std::string& param_name, T& value_out) const
+      10             :   {
+      11             :     try
+      12             :     {
+      13       80432 :       return getParamImpl(param_name, value_out);
+      14             :     }
+      15           0 :     catch (const YAML::Exception& e)
+      16             :     {
+      17           0 :       ROS_ERROR_STREAM("[" << m_node_name << "]: YAML-CPP threw an unknown exception: " << e.what());
+      18           0 :       return false;
+      19             :     }
+      20             :   }
+      21             : 
+      22             :   template <typename T>
+      23       80432 :   bool ParamProvider::getParamImpl(const std::string& param_name, T& value_out) const
+      24             :   {
+      25             :     {
+      26       80432 :       const auto found_node = findYamlNode(param_name);
+      27       80432 :       if (found_node.has_value())
+      28             :       {
+      29             :         try
+      30             :         {
+      31             :           // try catch is the only type-generic option...
+      32       69146 :           value_out = found_node.value().as<T>();
+      33       69146 :           return true;
+      34             :         }
+      35           0 :         catch (const YAML::BadConversion& e)
+      36             :         {}
+      37             :       }
+      38             : 
+      39             :     }
+      40             : 
+      41       11285 :     if (m_use_rosparam)
+      42       11285 :       return m_nh.getParam(param_name, value_out);
+      43             : 
+      44           0 :     return false;
+      45             :   }
+      46             : }
+      47             : 
+      48             : #endif // PARAM_PROVIDER_HPP
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/impl/param_provider.hpp.gcov.overview.html b/mrs_lib/include/mrs_lib/impl/param_provider.hpp.gcov.overview.html new file mode 100644 index 0000000000..69615a5af4 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/param_provider.hpp.gcov.overview.html @@ -0,0 +1,32 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/param_provider.hpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_lib/include/mrs_lib/impl/param_provider.hpp.gcov.png b/mrs_lib/include/mrs_lib/impl/param_provider.hpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..ade5b52da3b6b1fdc1937ea78b6f4e330848bd5b GIT binary patch literal 347 zcmeAS@N?(olHy`uVBq!ia0vp^0YGfP!VDx!PCqyTq$C1-LR|m<|Gx?dmcNgUef6J# zVHHpuOr7)IycEdhEbxddW?exI8~cZ8YuYE)5S5wqIYZPZNU}=o)*3ZtZx{i z8u&c^ua)V4vEbQ`uWa8BH!8ks+tGO{D*FweDWeR>Vxdgy18WjYI0V;~sH}Yceuu!e z0;l^`b$NRN&slSXO8W};Xs>xVM=ia4YFWZ0Ew@EJE}d3Ju7autr`5k7@L&&0yLLsS zDBjGHPiM9KksV){!x#LxZ@Z~}-j3&;nl`5^?b8Y_Wi{U3e%V`LO6vLxN&VqovDxc< zWm#+Y&A45X$$2MVXKT~#-D!1_>~XuLzF#sey8p%D#18$4a?^(i^D?KlC?1vmcshZ# noy}F#!c60lb+eQ5{_FfwLML{x?EUc*=xGK|S3j3^P6 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/publisher_handler.hpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/impl - publisher_handler.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:445481.5 %
Date:2024-04-17 23:52:03Functions:19720297.5 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > const&)0
mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)0
mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > > const&)0
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > const&)0
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)0
mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)1
mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > > const&)1
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::publish(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const> const&)1
mrs_lib::PublisherHandler_impl<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)1
mrs_lib::PublisherHandler_impl<mrs_msgs::Path_<std::allocator<void> > >::publish(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const> const&)1
mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)2
mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > > const&)2
mrs_lib::PublisherHandler<std_msgs::Int64_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)2
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)2
mrs_lib::PublisherHandler_impl<std_msgs::Int64_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)2
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::publish(mrs_msgs::Path_<std::allocator<void> > const&)5
mrs_lib::PublisherHandler_impl<mrs_msgs::Path_<std::allocator<void> > >::publish(mrs_msgs::Path_<std::allocator<void> > const&)5
mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)31
mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > > const&)31
mrs_lib::PublisherHandler_impl<std_msgs::Bool_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)31
mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseStamped_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlError_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorInput_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::TrackerCommand_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::Path_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<std_msgs::Empty_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<std_msgs::String_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)92
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)92
mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)97
mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > > const&)97
mrs_lib::PublisherHandler_impl<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)97
mrs_lib::PublisherHandler<std_msgs::Int64_<std::allocator<void> > >::publish(std_msgs::Int64_<std::allocator<void> > const&)110
mrs_lib::PublisherHandler_impl<std_msgs::Int64_<std::allocator<void> > >::publish(std_msgs::Int64_<std::allocator<void> > const&)110
mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > > const&)183
mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)189
mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > > const&)189
mrs_lib::PublisherHandler_impl<mrs_msgs::UavState_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)189
mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)264
mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > > const&)264
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)264
mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)361
mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > > const&)361
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)361
mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)364
mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > > const&)364
mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)364
mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > > const&)364
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseArray_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)364
mrs_lib::PublisherHandler_impl<std_msgs::Float64_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)364
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > > const&)372
mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::publish(mrs_msgs::ObstacleSectors_<std::allocator<void> > const&)439
mrs_lib::PublisherHandler_impl<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::publish(mrs_msgs::ObstacleSectors_<std::allocator<void> > const&)439
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)447
mrs_lib::PublisherHandler_impl<nav_msgs::Odometry_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)447
mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&)477
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&)477
mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)525
mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > > const&)525
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64Stamped_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)525
mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)546
mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > > const&)546
mrs_lib::PublisherHandler_impl<visualization_msgs::MarkerArray_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)546
mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)692
mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > > const&)692
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)692
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)951
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)951
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&)964
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&)964
mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::publish(geometry_msgs::PoseStamped_<std::allocator<void> > const&)1331
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseStamped_<std::allocator<void> > >::publish(geometry_msgs::PoseStamped_<std::allocator<void> > const&)1331
mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const&)1599
mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const&)1599
mrs_lib::PublisherHandler_impl<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const&)1599
mrs_lib::PublisherHandler_impl<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const&)1599
mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::publish(mrs_msgs::FutureTrajectory_<std::allocator<void> > const&)1889
mrs_lib::PublisherHandler_impl<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::publish(mrs_msgs::FutureTrajectory_<std::allocator<void> > const&)1889
mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const&)1951
mrs_lib::PublisherHandler_impl<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const&)1951
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)2005
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)2005
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)2589
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)2589
mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&)3809
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&)3809
mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&)3824
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&)3824
mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::publish(mrs_msgs::HwApiRcChannels_<std::allocator<void> > const&)6561
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::publish(mrs_msgs::HwApiRcChannels_<std::allocator<void> > const&)6561
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)7958
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)7958
mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > >::publish(std_msgs::Bool_<std::allocator<void> > const&)9776
mrs_lib::PublisherHandler_impl<std_msgs::Bool_<std::allocator<void> > >::publish(std_msgs::Bool_<std::allocator<void> > const&)9776
mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > >::publish(mrs_msgs::ControlError_<std::allocator<void> > const&)9952
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlError_<std::allocator<void> > >::publish(mrs_msgs::ControlError_<std::allocator<void> > const&)9952
mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > >::publish(std_msgs::Empty_<std::allocator<void> > const&)11054
mrs_lib::PublisherHandler_impl<std_msgs::Empty_<std::allocator<void> > >::publish(std_msgs::Empty_<std::allocator<void> > const&)11054
mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::publish(mrs_msgs::DynamicsConstraints_<std::allocator<void> > const&)13790
mrs_lib::PublisherHandler_impl<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::publish(mrs_msgs::DynamicsConstraints_<std::allocator<void> > const&)13790
mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const&)16323
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const&)16323
mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const&)16331
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const&)16331
mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const&)20317
mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > >::publish(std_msgs::String_<std::allocator<void> > const&)20317
mrs_lib::PublisherHandler_impl<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const&)20317
mrs_lib::PublisherHandler_impl<std_msgs::String_<std::allocator<void> > >::publish(std_msgs::String_<std::allocator<void> > const&)20317
mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > >::publish(visualization_msgs::MarkerArray_<std::allocator<void> > const&)31192
mrs_lib::PublisherHandler_impl<visualization_msgs::MarkerArray_<std::allocator<void> > >::publish(visualization_msgs::MarkerArray_<std::allocator<void> > const&)31192
mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::publish(mrs_msgs::EstimatorInput_<std::allocator<void> > const&)79666
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorInput_<std::allocator<void> > >::publish(mrs_msgs::EstimatorInput_<std::allocator<void> > const&)79666
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)86604
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)86604
mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::publish(mrs_msgs::TrackerCommand_<std::allocator<void> > const&)93898
mrs_lib::PublisherHandler_impl<mrs_msgs::TrackerCommand_<std::allocator<void> > >::publish(mrs_msgs::TrackerCommand_<std::allocator<void> > const&)93898
mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const&)130418
mrs_lib::PublisherHandler_impl<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const&)130418
mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > >::publish(geometry_msgs::PoseArray_<std::allocator<void> > const&)139515
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseArray_<std::allocator<void> > >::publish(geometry_msgs::PoseArray_<std::allocator<void> > const&)139515
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::PublisherHandler(mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > > const&)143828
mrs_lib::PublisherHandler_impl<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::publish(geometry_msgs::QuaternionStamped_<std::allocator<void> > const&)189796
mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::publish(geometry_msgs::QuaternionStamped_<std::allocator<void> > const&)189802
mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > >::publish(std_msgs::Float64_<std::allocator<void> > const&)214961
mrs_lib::PublisherHandler_impl<std_msgs::Float64_<std::allocator<void> > >::publish(std_msgs::Float64_<std::allocator<void> > const&)214961
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64Stamped_<std::allocator<void> > >::publish(mrs_msgs::Float64Stamped_<std::allocator<void> > const&)331136
mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::publish(mrs_msgs::Float64Stamped_<std::allocator<void> > const&)331144
mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > >::publish(mrs_msgs::UavState_<std::allocator<void> > const&)338749
mrs_lib::PublisherHandler_impl<mrs_msgs::UavState_<std::allocator<void> > >::publish(mrs_msgs::UavState_<std::allocator<void> > const&)338766
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::publish(mrs_msgs::Float64ArrayStamped_<std::allocator<void> > const&)463932
mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::publish(mrs_msgs::Float64ArrayStamped_<std::allocator<void> > const&)464169
mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::publish(mrs_msgs::EstimatorOutput_<std::allocator<void> > const&)654789
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::publish(mrs_msgs::EstimatorOutput_<std::allocator<void> > const&)654822
mrs_lib::PublisherHandler_impl<nav_msgs::Odometry_<std::allocator<void> > >::publish(nav_msgs::Odometry_<std::allocator<void> > const&)724176
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::publish(nav_msgs::Odometry_<std::allocator<void> > const&)724208
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::publish(mrs_msgs::EstimatorCorrection_<std::allocator<void> > const&)1294875
mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::publish(mrs_msgs::EstimatorCorrection_<std::allocator<void> > const&)1294977
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.func.html b/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.func.html new file mode 100644 index 0000000000..fdad3e78d9 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.func.html @@ -0,0 +1,888 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/publisher_handler.hpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/impl - publisher_handler.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:445481.5 %
Date:2024-04-17 23:52:03Functions:19720297.5 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > >::publish(geometry_msgs::PoseArray_<std::allocator<void> > const&)139515
mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)364
mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > > const&)364
mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::publish(geometry_msgs::PoseStamped_<std::allocator<void> > const&)1331
mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::publish(geometry_msgs::QuaternionStamped_<std::allocator<void> > const&)189802
mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)97
mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > > const&)97
mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > >::publish(visualization_msgs::MarkerArray_<std::allocator<void> > const&)31192
mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)546
mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > > const&)546
mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > >::publish(mrs_msgs::ControlError_<std::allocator<void> > const&)9952
mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::publish(mrs_msgs::EstimatorInput_<std::allocator<void> > const&)79666
mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::publish(mrs_msgs::Float64Stamped_<std::allocator<void> > const&)331144
mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)525
mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > > const&)525
mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::publish(mrs_msgs::TrackerCommand_<std::allocator<void> > const&)93898
mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::publish(mrs_msgs::EstimatorOutput_<std::allocator<void> > const&)654789
mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)361
mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > > const&)361
mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::publish(mrs_msgs::HwApiRcChannels_<std::allocator<void> > const&)6561
mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)2
mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > > const&)2
mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::publish(mrs_msgs::ObstacleSectors_<std::allocator<void> > const&)439
mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)1
mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > > const&)1
mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::publish(mrs_msgs::FutureTrajectory_<std::allocator<void> > const&)1889
mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&)3809
mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)7958
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&)477
mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::publish(mrs_msgs::DynamicsConstraints_<std::allocator<void> > const&)13790
mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::publish(mrs_msgs::EstimatorCorrection_<std::allocator<void> > const&)1294977
mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)692
mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > > const&)692
mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::publish(mrs_msgs::Float64ArrayStamped_<std::allocator<void> > const&)464169
mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)264
mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > > const&)264
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)2005
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)92
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > > const&)183
mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > const&)0
mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)0
mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > > const&)0
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)86604
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&)3824
mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const&)130418
mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const&)16323
mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const&)20317
mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const&)1951
mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const&)1599
mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&)964
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)2589
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const&)16331
mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)951
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > > const&)182
mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const&)1599
mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::publish(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const> const&)1
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::publish(mrs_msgs::Path_<std::allocator<void> > const&)5
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > >::publish(mrs_msgs::UavState_<std::allocator<void> > const&)338749
mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)189
mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > > const&)189
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::publish(nav_msgs::Odometry_<std::allocator<void> > const&)724208
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::PublisherHandler(mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > > const&)143828
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)447
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > > const&)372
mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > >::publish(std_msgs::Bool_<std::allocator<void> > const&)9776
mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)31
mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > > const&)31
mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > >::publish(std_msgs::Empty_<std::allocator<void> > const&)11054
mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<std_msgs::Int64_<std::allocator<void> > >::publish(std_msgs::Int64_<std::allocator<void> > const&)110
mrs_lib::PublisherHandler<std_msgs::Int64_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)2
mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > >::publish(std_msgs::String_<std::allocator<void> > const&)20317
mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > > const&)91
mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > >::publish(std_msgs::Float64_<std::allocator<void> > const&)214961
mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > >::PublisherHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)364
mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > >::operator=(mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > > const&)364
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseArray_<std::allocator<void> > >::publish(geometry_msgs::PoseArray_<std::allocator<void> > const&)139515
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseArray_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)364
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseStamped_<std::allocator<void> > >::publish(geometry_msgs::PoseStamped_<std::allocator<void> > const&)1331
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseStamped_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::publish(geometry_msgs::QuaternionStamped_<std::allocator<void> > const&)189796
mrs_lib::PublisherHandler_impl<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)97
mrs_lib::PublisherHandler_impl<visualization_msgs::MarkerArray_<std::allocator<void> > >::publish(visualization_msgs::MarkerArray_<std::allocator<void> > const&)31192
mrs_lib::PublisherHandler_impl<visualization_msgs::MarkerArray_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)546
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlError_<std::allocator<void> > >::publish(mrs_msgs::ControlError_<std::allocator<void> > const&)9952
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlError_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorInput_<std::allocator<void> > >::publish(mrs_msgs::EstimatorInput_<std::allocator<void> > const&)79666
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorInput_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64Stamped_<std::allocator<void> > >::publish(mrs_msgs::Float64Stamped_<std::allocator<void> > const&)331136
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64Stamped_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)525
mrs_lib::PublisherHandler_impl<mrs_msgs::TrackerCommand_<std::allocator<void> > >::publish(mrs_msgs::TrackerCommand_<std::allocator<void> > const&)93898
mrs_lib::PublisherHandler_impl<mrs_msgs::TrackerCommand_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::publish(mrs_msgs::EstimatorOutput_<std::allocator<void> > const&)654822
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)361
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::publish(mrs_msgs::HwApiRcChannels_<std::allocator<void> > const&)6561
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)2
mrs_lib::PublisherHandler_impl<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::publish(mrs_msgs::ObstacleSectors_<std::allocator<void> > const&)439
mrs_lib::PublisherHandler_impl<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)1
mrs_lib::PublisherHandler_impl<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::publish(mrs_msgs::FutureTrajectory_<std::allocator<void> > const&)1889
mrs_lib::PublisherHandler_impl<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&)3809
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)7958
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&)477
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::publish(mrs_msgs::DynamicsConstraints_<std::allocator<void> > const&)13790
mrs_lib::PublisherHandler_impl<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::publish(mrs_msgs::EstimatorCorrection_<std::allocator<void> > const&)1294875
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)692
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::publish(mrs_msgs::Float64ArrayStamped_<std::allocator<void> > const&)463932
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)264
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)2005
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)92
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > const&)0
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)0
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)86604
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&)3824
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const&)130418
mrs_lib::PublisherHandler_impl<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const&)16323
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const&)20317
mrs_lib::PublisherHandler_impl<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const&)1951
mrs_lib::PublisherHandler_impl<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const&)1599
mrs_lib::PublisherHandler_impl<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&)964
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)2589
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const&)16331
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::publish(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)951
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::publish(mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const&)1599
mrs_lib::PublisherHandler_impl<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::Path_<std::allocator<void> > >::publish(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const> const&)1
mrs_lib::PublisherHandler_impl<mrs_msgs::Path_<std::allocator<void> > >::publish(mrs_msgs::Path_<std::allocator<void> > const&)5
mrs_lib::PublisherHandler_impl<mrs_msgs::Path_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<mrs_msgs::UavState_<std::allocator<void> > >::publish(mrs_msgs::UavState_<std::allocator<void> > const&)338766
mrs_lib::PublisherHandler_impl<mrs_msgs::UavState_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)189
mrs_lib::PublisherHandler_impl<nav_msgs::Odometry_<std::allocator<void> > >::publish(nav_msgs::Odometry_<std::allocator<void> > const&)724176
mrs_lib::PublisherHandler_impl<nav_msgs::Odometry_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)447
mrs_lib::PublisherHandler_impl<std_msgs::Bool_<std::allocator<void> > >::publish(std_msgs::Bool_<std::allocator<void> > const&)9776
mrs_lib::PublisherHandler_impl<std_msgs::Bool_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)31
mrs_lib::PublisherHandler_impl<std_msgs::Empty_<std::allocator<void> > >::publish(std_msgs::Empty_<std::allocator<void> > const&)11054
mrs_lib::PublisherHandler_impl<std_msgs::Empty_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<std_msgs::Int64_<std::allocator<void> > >::publish(std_msgs::Int64_<std::allocator<void> > const&)110
mrs_lib::PublisherHandler_impl<std_msgs::Int64_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)2
mrs_lib::PublisherHandler_impl<std_msgs::String_<std::allocator<void> > >::publish(std_msgs::String_<std::allocator<void> > const&)20317
mrs_lib::PublisherHandler_impl<std_msgs::String_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)91
mrs_lib::PublisherHandler_impl<std_msgs::Float64_<std::allocator<void> > >::publish(std_msgs::Float64_<std::allocator<void> > const&)214961
mrs_lib::PublisherHandler_impl<std_msgs::Float64_<std::allocator<void> > >::PublisherHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, unsigned int const&, bool const&, double const&)364
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.gcov.frameset.html b/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.gcov.frameset.html new file mode 100644 index 0000000000..0082e6a657 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/publisher_handler.hpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.gcov.html b/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.gcov.html new file mode 100644 index 0000000000..86f4390857 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.gcov.html @@ -0,0 +1,332 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/publisher_handler.hpp + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib/impl - publisher_handler.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:445481.5 %
Date:2024-04-17 23:52:03Functions:19720297.5 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef PUBLISHER_HANDLER_HPP
+       2             : #define PUBLISHER_HANDLER_HPP
+       3             : 
+       4             : namespace mrs_lib
+       5             : {
+       6             : 
+       7             : // --------------------------------------------------------------
+       8             : // |                    PublisherHandler_impl                   |
+       9             : // --------------------------------------------------------------
+      10             : 
+      11             : /* PublisherHandler_impl(void) //{ */
+      12             : 
+      13             : template <class TopicType>
+      14             : PublisherHandler_impl<TopicType>::PublisherHandler_impl(void) : publisher_initialized_(false) {
+      15             : }
+      16             : 
+      17             : //}
+      18             : 
+      19             : /* PublisherHandler_impl(ros::NodeHandle& nh, const std::string& address, const unsigned int &buffer_size, const bool &latch) //{ */
+      20             : 
+      21             : template <class TopicType>
+      22        6161 : PublisherHandler_impl<TopicType>::PublisherHandler_impl(ros::NodeHandle& nh, const std::string& address, const unsigned int& buffer_size, const bool& latch,
+      23        6161 :                                                         const double& rate) {
+      24             : 
+      25             :   {
+      26        6161 :     std::scoped_lock lock(mutex_publisher_);
+      27             : 
+      28        6161 :     publisher_ = nh.advertise<TopicType>(address, buffer_size, latch);
+      29             : 
+      30        6161 :     if (rate > 0.0) {
+      31             : 
+      32         638 :       throttle_ = true;
+      33             : 
+      34         638 :       throttle_min_dt_ = 1.0 / rate;
+      35             : 
+      36             :     } else {
+      37             : 
+      38        5523 :       throttle_ = false;
+      39             : 
+      40        5523 :       throttle_min_dt_ = 0;
+      41             :     }
+      42             : 
+      43        6161 :     last_time_published_ = ros::Time(0);
+      44             :   }
+      45             : 
+      46        6161 :   publisher_initialized_ = true;
+      47        6161 : }
+      48             : 
+      49             : //}
+      50             : 
+      51             : /* publish(TopicType& msg) //{ */
+      52             : 
+      53             : template <class TopicType>
+      54     4929678 : void PublisherHandler_impl<TopicType>::publish(const TopicType& msg) {
+      55             : 
+      56     4929678 :   if (!publisher_initialized_) {
+      57           0 :     return;
+      58             :   }
+      59             : 
+      60             :   {
+      61     4927461 :     std::scoped_lock lock(mutex_publisher_);
+      62             : 
+      63     4927180 :     if (throttle_) {
+      64             : 
+      65      259499 :       if ((ros::Time::now() - last_time_published_).toSec() < throttle_min_dt_) {
+      66      118675 :         return;
+      67             :       }
+      68             : 
+      69      140824 :       last_time_published_ = ros::Time::now();
+      70             :     }
+      71             : 
+      72             :     try {
+      73     4808505 :       publisher_.publish(msg);
+      74             :     }
+      75           0 :     catch (...) {
+      76           0 :       ROS_ERROR("exception caught during publishing topic '%s'", publisher_.getTopic().c_str());
+      77             :     }
+      78             :   }
+      79             : }
+      80             : 
+      81             : //}
+      82             : 
+      83             : /* publish(const boost::shared_ptr<TopicType>& msg) //{ */
+      84             : 
+      85             : template <class TopicType>
+      86             : void PublisherHandler_impl<TopicType>::publish(const boost::shared_ptr<TopicType>& msg) {
+      87             : 
+      88             :   if (!publisher_initialized_) {
+      89             :     return;
+      90             :   }
+      91             : 
+      92             :   {
+      93             :     std::scoped_lock lock(mutex_publisher_);
+      94             : 
+      95             :     if (throttle_) {
+      96             : 
+      97             :       if ((ros::Time::now() - last_time_published_).toSec() < throttle_min_dt_) {
+      98             :         return;
+      99             :       }
+     100             : 
+     101             :       last_time_published_ = ros::Time::now();
+     102             :     }
+     103             : 
+     104             :     try {
+     105             :       publisher_.publish(msg);
+     106             :     }
+     107             :     catch (...) {
+     108             :       ROS_ERROR("exception caught during publishing topic '%s'", publisher_.getTopic().c_str());
+     109             :     }
+     110             :   }
+     111             : }
+     112             : 
+     113             : //}
+     114             : 
+     115             : /* publish(const boost::shared_ptr<TopicType const>& msg) //{ */
+     116             : 
+     117             : template <class TopicType>
+     118           1 : void PublisherHandler_impl<TopicType>::publish(const boost::shared_ptr<TopicType const>& msg) {
+     119             : 
+     120           1 :   if (!publisher_initialized_) {
+     121           0 :     return;
+     122             :   }
+     123             : 
+     124             :   {
+     125           1 :     std::scoped_lock lock(mutex_publisher_);
+     126             : 
+     127           1 :     if (throttle_) {
+     128             : 
+     129           0 :       if ((ros::Time::now() - last_time_published_).toSec() < throttle_min_dt_) {
+     130           0 :         return;
+     131             :       }
+     132             : 
+     133           0 :       last_time_published_ = ros::Time::now();
+     134             :     }
+     135             : 
+     136             :     try {
+     137           1 :       publisher_.publish(msg);
+     138             :     }
+     139           0 :     catch (...) {
+     140           0 :       ROS_ERROR("exception caught during publishing topic '%s'", publisher_.getTopic().c_str());
+     141             :     }
+     142             :   }
+     143             : }
+     144             : 
+     145             : //}
+     146             : 
+     147             : /* getNumSubscribers(void) //{ */
+     148             : 
+     149             : template <class TopicType>
+     150             : unsigned int PublisherHandler_impl<TopicType>::getNumSubscribers(void) {
+     151             : 
+     152             :   {
+     153             :     std::scoped_lock lock(mutex_publisher_);
+     154             : 
+     155             :     return publisher_.getNumSubscribers();
+     156             :   }
+     157             : }
+     158             : 
+     159             : //}
+     160             : 
+     161             : // --------------------------------------------------------------
+     162             : // |                      PublisherHandler                      |
+     163             : // --------------------------------------------------------------
+     164             : 
+     165             : /* operator= //{ */
+     166             : 
+     167             : template <class TopicType>
+     168        6903 : PublisherHandler<TopicType>& PublisherHandler<TopicType>::operator=(const PublisherHandler<TopicType>& other) {
+     169             : 
+     170        6903 :   if (this == &other) {
+     171           0 :     return *this;
+     172             :   }
+     173             : 
+     174        6903 :   if (other.impl_) {
+     175        6903 :     this->impl_ = other.impl_;
+     176             :   }
+     177             : 
+     178        6903 :   return *this;
+     179             : }
+     180             : 
+     181             : //}
+     182             : 
+     183             : /* copy constructor //{ */
+     184             : 
+     185             : template <class TopicType>
+     186      143828 : PublisherHandler<TopicType>::PublisherHandler(const PublisherHandler<TopicType>& other) {
+     187             : 
+     188      143828 :   if (other.impl_) {
+     189      143828 :     this->impl_ = other.impl_;
+     190             :   }
+     191      143828 : }
+     192             : 
+     193             : //}
+     194             : 
+     195             : /* PublisherHandler(ros::NodeHandle& nh, const std::string& address, const unsigned int &buffer_size, const bool &latch) //{ */
+     196             : 
+     197             : template <class TopicType>
+     198        6161 : PublisherHandler<TopicType>::PublisherHandler(ros::NodeHandle& nh, const std::string& address, const unsigned int& buffer_size, const bool& latch,
+     199        6161 :                                               const double& rate) {
+     200             : 
+     201        6161 :   impl_ = std::make_shared<PublisherHandler_impl<TopicType>>(nh, address, buffer_size, latch, rate);
+     202        6161 : }
+     203             : 
+     204             : //}
+     205             : 
+     206             : /* publish(const TopicType& msg) //{ */
+     207             : 
+     208             : template <class TopicType>
+     209     4930013 : void PublisherHandler<TopicType>::publish(const TopicType& msg) {
+     210             : 
+     211     4930013 :   impl_->publish(msg);
+     212     4931900 : }
+     213             : 
+     214             : //}
+     215             : 
+     216             : /* publish(const boost::shared_ptr<TopicType>& msg) //{ */
+     217             : 
+     218             : template <class TopicType>
+     219             : void PublisherHandler<TopicType>::publish(const boost::shared_ptr<TopicType>& msg) {
+     220             : 
+     221             :   impl_->publish(msg);
+     222             : }
+     223             : 
+     224             : //}
+     225             : 
+     226             : /* publish(const boost::shared_ptr<TopicType const>& msg) //{ */
+     227             : 
+     228             : template <class TopicType>
+     229           1 : void PublisherHandler<TopicType>::publish(const boost::shared_ptr<TopicType const>& msg) {
+     230             : 
+     231           1 :   impl_->publish(msg);
+     232           1 : }
+     233             : 
+     234             : //}
+     235             : 
+     236             : /* getNumSubscribers(void) //{ */
+     237             : 
+     238             : template <class TopicType>
+     239             : unsigned int PublisherHandler<TopicType>::getNumSubscribers(void) {
+     240             : 
+     241             :   return impl_->getNumSubscribers();
+     242             : }
+     243             : 
+     244             : //}
+     245             : 
+     246             : }  // namespace mrs_lib
+     247             : 
+     248             : #endif  // PUBLISHER_HANDLER_HPP
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.gcov.overview.html b/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.gcov.overview.html new file mode 100644 index 0000000000..4ab1195056 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.gcov.overview.html @@ -0,0 +1,82 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/publisher_handler.hpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.gcov.png b/mrs_lib/include/mrs_lib/impl/publisher_handler.hpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..635f18b8a53237cee5f0d09d83c1fed5e41f3609 GIT binary patch literal 798 zcmV+(1L6FMP)q?p-?i-RjX(;YJ986rs_mRR+& z!Y<6?3J4QF(~^;O<*WMRe90>Mf*%@bz^-JM1R`wOATk#1l<#Kh5t#xM6ciL;M72mR zY3+(=b}l#HiYR zek5J0OjUl2b3~AfM3}NldX^B89V%|y>-BnWMVU50Nh#uTYieeBV(Jk+$~liRzI)FV z;#$bI77;o&INwVuRV0YKAW6xF26A_>#!Pm`*C-?WDSk`wD-`8fF!E4elK=F#?Q0=I z5jzWbgpbreMs4J*n#gmAcprXrs|Y_ou^R)EUnRt4e;?wADLUG08>pUbmseoD8+7$GdOSDvk4}F5 zcno{K%D|yA? zJma6R+lHy}NUmy_>Ljl>Qlt4jV;mm8`{!rI)}k-EK*F=z01|q5F~XT4GqEY86Sm~T c=jTZ84>I7)EiN$bBme*a07*qoM6N<$g7<4~+W-In literal 0 HcmV?d00001 diff --git a/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.func-sort-c.html b/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.func-sort-c.html new file mode 100644 index 0000000000..9b7c21bc1a --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.func-sort-c.html @@ -0,0 +1,268 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/service_client_handler.hpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib/impl - service_client_handler.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:525692.9 %
Date:2024-04-17 23:52:03Functions:4747100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride>::call(mrs_msgs::ConstraintsOverride&)1
mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride> const&)1
mrs_lib::ServiceClientHandler<mrs_msgs::Vec4>::call(mrs_msgs::Vec4&)1
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ConstraintsOverride>::call(mrs_msgs::ConstraintsOverride&)1
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ConstraintsOverride>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Vec4>::call(mrs_msgs::Vec4&)1
mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2
mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv> const&)2
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::callAsync(std_srvs::Trigger&, int const&)2
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Float64Srv>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::call(std_srvs::Trigger&, int const&, double const&)2
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::asyncRun()2
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::callAsync(std_srvs::Trigger&, int const&)2
mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv>::call(mrs_msgs::Float64Srv&)11
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Float64Srv>::call(mrs_msgs::Float64Srv&)11
mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>::call(mrs_msgs::Vec1&)20
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Vec1>::call(mrs_msgs::Vec1&)20
mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv> const&)91
mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::Vec1> const&)91
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::initialize(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::ServiceClientHandler_impl<mrs_msgs::DynamicsConstraintsSrv>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Vec1>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)92
mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv> const&)92
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ReferenceStampedSrv>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)92
mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv>::call(mrs_msgs::ReferenceStampedSrv&)94
mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv>::call(mrs_msgs::DynamicsConstraintsSrv&)94
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ReferenceStampedSrv>::call(mrs_msgs::ReferenceStampedSrv&)94
mrs_lib::ServiceClientHandler_impl<mrs_msgs::DynamicsConstraintsSrv>::call(mrs_msgs::DynamicsConstraintsSrv&)94
mrs_lib::ServiceClientHandler<mrs_msgs::String>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)182
mrs_lib::ServiceClientHandler<mrs_msgs::String>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::String> const&)182
mrs_lib::ServiceClientHandler_impl<mrs_msgs::String>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)182
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::call(std_srvs::Trigger&)194
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::call(std_srvs::Trigger&)194
mrs_lib::ServiceClientHandler<std_srvs::SetBool>::call(std_srvs::SetBool&)321
mrs_lib::ServiceClientHandler_impl<std_srvs::SetBool>::call(std_srvs::SetBool&)321
mrs_lib::ServiceClientHandler<mrs_msgs::String>::call(mrs_msgs::String&)355
mrs_lib::ServiceClientHandler_impl<mrs_msgs::String>::call(mrs_msgs::String&)355
mrs_lib::ServiceClientHandler<std_srvs::SetBool>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)548
mrs_lib::ServiceClientHandler<std_srvs::SetBool>::operator=(mrs_lib::ServiceClientHandler<std_srvs::SetBool> const&)548
mrs_lib::ServiceClientHandler_impl<std_srvs::SetBool>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)548
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)911
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::operator=(mrs_lib::ServiceClientHandler<std_srvs::Trigger> const&)911
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1002
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.func.html b/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.func.html new file mode 100644 index 0000000000..4012ab1777 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.func.html @@ -0,0 +1,268 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/service_client_handler.hpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib/impl - service_client_handler.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:525692.9 %
Date:2024-04-17 23:52:03Functions:4747100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv>::call(mrs_msgs::Float64Srv&)11
mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2
mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv> const&)2
mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride>::call(mrs_msgs::ConstraintsOverride&)1
mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride> const&)1
mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv>::call(mrs_msgs::ReferenceStampedSrv&)94
mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)92
mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv> const&)92
mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv>::call(mrs_msgs::DynamicsConstraintsSrv&)94
mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv> const&)91
mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>::call(mrs_msgs::Vec1&)20
mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::Vec1> const&)91
mrs_lib::ServiceClientHandler<mrs_msgs::Vec4>::call(mrs_msgs::Vec4&)1
mrs_lib::ServiceClientHandler<mrs_msgs::String>::call(mrs_msgs::String&)355
mrs_lib::ServiceClientHandler<mrs_msgs::String>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)182
mrs_lib::ServiceClientHandler<mrs_msgs::String>::operator=(mrs_lib::ServiceClientHandler<mrs_msgs::String> const&)182
mrs_lib::ServiceClientHandler<std_srvs::SetBool>::call(std_srvs::SetBool&)321
mrs_lib::ServiceClientHandler<std_srvs::SetBool>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)548
mrs_lib::ServiceClientHandler<std_srvs::SetBool>::operator=(mrs_lib::ServiceClientHandler<std_srvs::SetBool> const&)548
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::initialize(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::call(std_srvs::Trigger&)194
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::callAsync(std_srvs::Trigger&, int const&)2
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::ServiceClientHandler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)911
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::operator=(mrs_lib::ServiceClientHandler<std_srvs::Trigger> const&)911
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Float64Srv>::call(mrs_msgs::Float64Srv&)11
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Float64Srv>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ConstraintsOverride>::call(mrs_msgs::ConstraintsOverride&)1
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ConstraintsOverride>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ReferenceStampedSrv>::call(mrs_msgs::ReferenceStampedSrv&)94
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ReferenceStampedSrv>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)92
mrs_lib::ServiceClientHandler_impl<mrs_msgs::DynamicsConstraintsSrv>::call(mrs_msgs::DynamicsConstraintsSrv&)94
mrs_lib::ServiceClientHandler_impl<mrs_msgs::DynamicsConstraintsSrv>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Vec1>::call(mrs_msgs::Vec1&)20
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Vec1>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Vec4>::call(mrs_msgs::Vec4&)1
mrs_lib::ServiceClientHandler_impl<mrs_msgs::String>::call(mrs_msgs::String&)355
mrs_lib::ServiceClientHandler_impl<mrs_msgs::String>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)182
mrs_lib::ServiceClientHandler_impl<std_srvs::SetBool>::call(std_srvs::SetBool&)321
mrs_lib::ServiceClientHandler_impl<std_srvs::SetBool>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)548
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::call(std_srvs::Trigger&)194
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::call(std_srvs::Trigger&, int const&, double const&)2
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::asyncRun()2
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::callAsync(std_srvs::Trigger&, int const&)2
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::ServiceClientHandler_impl(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1002
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+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.gcov.frameset.html b/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.gcov.frameset.html new file mode 100644 index 0000000000..c6e9ac6564 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/service_client_handler.hpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.gcov.html b/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.gcov.html new file mode 100644 index 0000000000..7de9d5449c --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/service_client_handler.hpp.gcov.html @@ -0,0 +1,403 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/service_client_handler.hpp + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/impl - service_client_handler.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:525692.9 %
Date:2024-04-17 23:52:03Functions:4747100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef SERVICE_CLIENT_HANDLER_HPP
+       2             : #define SERVICE_CLIENT_HANDLER_HPP
+       3             : 
+       4             : namespace mrs_lib
+       5             : {
+       6             : 
+       7             : // --------------------------------------------------------------
+       8             : // |                  ServiceClientHandler_impl                 |
+       9             : // --------------------------------------------------------------
+      10             : 
+      11             : /* ServiceClientHandler_impl(void) //{ */
+      12             : 
+      13             : template <class ServiceType>
+      14             : ServiceClientHandler_impl<ServiceType>::ServiceClientHandler_impl(void) : service_initialized_(false) {
+      15             : }
+      16             : 
+      17             : //}
+      18             : 
+      19             : /* ServiceClientHandler_impl(ros::NodeHandle& nh, const std::string& address) //{ */
+      20             : 
+      21             : template <class ServiceType>
+      22        2009 : ServiceClientHandler_impl<ServiceType>::ServiceClientHandler_impl(ros::NodeHandle& nh, const std::string& address) {
+      23             : 
+      24             :   {
+      25        2009 :     std::scoped_lock lock(mutex_service_client_);
+      26             : 
+      27        2009 :     service_client_ = nh.serviceClient<ServiceType>(address);
+      28             :   }
+      29             : 
+      30        2009 :   _address_       = address;
+      31        2009 :   async_attempts_ = 1;
+      32             : 
+      33             :   /* thread_oneshot_ = std::make_shared<std::thread>(std::thread(&ServiceClientHandler_impl::threadOneshot, this, true, false)); */
+      34             : 
+      35        2009 :   service_initialized_ = true;
+      36        2009 : }
+      37             : 
+      38             : //}
+      39             : 
+      40             : /* call(ServiceType& srv) //{ */
+      41             : 
+      42             : template <class ServiceType>
+      43        1091 : bool ServiceClientHandler_impl<ServiceType>::call(ServiceType& srv) {
+      44             : 
+      45        1091 :   if (!service_initialized_) {
+      46           0 :     return false;
+      47             :   }
+      48             : 
+      49        1091 :   return service_client_.call(srv);
+      50             : }
+      51             : 
+      52             : //}
+      53             : 
+      54             : /* call(ServiceType& srv, const int& attempts) //{ */
+      55             : 
+      56             : template <class ServiceType>
+      57             : bool ServiceClientHandler_impl<ServiceType>::call(ServiceType& srv, const int& attempts) {
+      58             : 
+      59             :   if (!service_initialized_) {
+      60             :     return false;
+      61             :   }
+      62             : 
+      63             :   std::scoped_lock lock(mutex_service_client_);
+      64             : 
+      65             :   bool success = false;
+      66             :   int  counter = 0;
+      67             : 
+      68             :   while (!success && ros::ok()) {
+      69             : 
+      70             :     success = service_client_.call(srv);
+      71             : 
+      72             :     if (!success) {
+      73             :       ROS_ERROR("[%s]: failed to call service to '%s'", ros::this_node::getName().c_str(), _address_.c_str());
+      74             :     }
+      75             : 
+      76             :     if (++counter >= attempts) {
+      77             :       break;
+      78             :     }
+      79             :   }
+      80             : 
+      81             :   return success;
+      82             : }
+      83             : 
+      84             : //}
+      85             : 
+      86             : /* call(ServiceType& srv, const int& attempts, const double& repeat_delay) //{ */
+      87             : 
+      88             : template <class ServiceType>
+      89           2 : bool ServiceClientHandler_impl<ServiceType>::call(ServiceType& srv, const int& attempts, const double& repeat_delay) {
+      90             : 
+      91           2 :   if (!service_initialized_) {
+      92           0 :     return false;
+      93             :   }
+      94             : 
+      95           2 :   std::scoped_lock lock(mutex_service_client_);
+      96             : 
+      97           2 :   bool success = false;
+      98           2 :   int  counter = 0;
+      99             : 
+     100           8 :   while (!success && ros::ok()) {
+     101             : 
+     102           6 :     success = service_client_.call(srv);
+     103             : 
+     104           6 :     if (!success) {
+     105           4 :       ROS_ERROR("[%s]: failed to call service to '%s'", ros::this_node::getName().c_str(), _address_.c_str());
+     106             :     }
+     107             : 
+     108           6 :     if (++counter >= attempts) {
+     109           0 :       break;
+     110             :     }
+     111             : 
+     112           6 :     ros::Duration(repeat_delay).sleep();
+     113             :   }
+     114             : 
+     115           2 :   return success;
+     116             : }
+     117             : 
+     118             : //}
+     119             : 
+     120             : /* callAsync(ServiceType& srv) //{ */
+     121             : 
+     122             : template <class ServiceType>
+     123             : std::future<ServiceType> ServiceClientHandler_impl<ServiceType>::callAsync(ServiceType& srv) {
+     124             : 
+     125             :   {
+     126             :     std::scoped_lock lock(mutex_async_);
+     127             : 
+     128             :     async_data_         = srv;
+     129             :     async_attempts_     = 1;
+     130             :     async_repeat_delay_ = 0;
+     131             :   }
+     132             : 
+     133             :   return std::async(std::launch::async, &ServiceClientHandler_impl::asyncRun, this);
+     134             : }
+     135             : 
+     136             : //}
+     137             : 
+     138             : /* callAsync(ServiceType& srv, const int& attempts) //{ */
+     139             : 
+     140             : template <class ServiceType>
+     141           2 : std::future<ServiceType> ServiceClientHandler_impl<ServiceType>::callAsync(ServiceType& srv, const int& attempts) {
+     142             : 
+     143             :   {
+     144           2 :     std::scoped_lock lock(mutex_async_);
+     145             : 
+     146           2 :     async_data_         = srv;
+     147           2 :     async_attempts_     = attempts;
+     148           2 :     async_repeat_delay_ = 0;
+     149             :   }
+     150             : 
+     151           2 :   return std::async(std::launch::async, &ServiceClientHandler_impl::asyncRun, this);
+     152             : }
+     153             : 
+     154             : //}
+     155             : 
+     156             : /* callAsync(ServiceType& srv, const int& attempts, const double &repeat_delay) //{ */
+     157             : 
+     158             : template <class ServiceType>
+     159             : std::future<ServiceType> ServiceClientHandler_impl<ServiceType>::callAsync(ServiceType& srv, const int& attempts, const double& repeat_delay) {
+     160             : 
+     161             :   {
+     162             :     std::scoped_lock lock(mutex_async_);
+     163             : 
+     164             :     async_data_         = srv;
+     165             :     async_attempts_     = attempts;
+     166             :     async_repeat_delay_ = repeat_delay;
+     167             :   }
+     168             : 
+     169             :   return std::async(std::launch::async, &ServiceClientHandler_impl::asyncRun, this);
+     170             : }
+     171             : 
+     172             : //}
+     173             : 
+     174             : /* asyncRun(void) //{ */
+     175             : 
+     176             : template <class ServiceType>
+     177           2 : ServiceType ServiceClientHandler_impl<ServiceType>::asyncRun(void) {
+     178             : 
+     179           2 :   ServiceType async_data;
+     180             :   int         async_attempts;
+     181             : 
+     182             :   {
+     183           2 :     std::scoped_lock lock(mutex_async_);
+     184             : 
+     185           2 :     async_data          = async_data_;
+     186           2 :     async_attempts      = async_attempts_;
+     187           2 :     async_repeat_delay_ = async_repeat_delay_;
+     188             :   }
+     189             : 
+     190           2 :   call(async_data, async_attempts, async_repeat_delay_);
+     191             : 
+     192           4 :   return async_data;
+     193             : }
+     194             : 
+     195             : //}
+     196             : 
+     197             : // --------------------------------------------------------------
+     198             : // |                    ServiceClientHandler                    |
+     199             : // --------------------------------------------------------------
+     200             : 
+     201             : /* operator= //{ */
+     202             : 
+     203             : template <class ServiceType>
+     204        1918 : ServiceClientHandler<ServiceType>& ServiceClientHandler<ServiceType>::operator=(const ServiceClientHandler<ServiceType>& other) {
+     205             : 
+     206        1918 :   if (this == &other) {
+     207           0 :     return *this;
+     208             :   }
+     209             : 
+     210        1918 :   if (other.impl_) {
+     211        1918 :     this->impl_ = other.impl_;
+     212             :   }
+     213             : 
+     214        1918 :   return *this;
+     215             : }
+     216             : 
+     217             : //}
+     218             : 
+     219             : /* copy constructor //{ */
+     220             : 
+     221             : template <class ServiceType>
+     222             : ServiceClientHandler<ServiceType>::ServiceClientHandler(const ServiceClientHandler<ServiceType>& other) {
+     223             : 
+     224             :   if (other.impl_) {
+     225             :     this->impl_ = other.impl_;
+     226             :   }
+     227             : }
+     228             : 
+     229             : //}
+     230             : 
+     231             : /* ServiceClientHandler(ros::NodeHandle& nh, const std::string& address) //{ */
+     232             : 
+     233             : template <class ServiceType>
+     234        1918 : ServiceClientHandler<ServiceType>::ServiceClientHandler(ros::NodeHandle& nh, const std::string& address) {
+     235             : 
+     236        1918 :   impl_ = std::make_shared<ServiceClientHandler_impl<ServiceType>>(nh, address);
+     237        1918 : }
+     238             : 
+     239             : //}
+     240             : 
+     241             : /* initialize(ros::NodeHandle& nh, const std::string& address) //{ */
+     242             : 
+     243             : template <class ServiceType>
+     244          91 : void ServiceClientHandler<ServiceType>::initialize(ros::NodeHandle& nh, const std::string& address) {
+     245             : 
+     246          91 :   impl_ = std::make_shared<ServiceClientHandler_impl<ServiceType>>(nh, address);
+     247          91 : }
+     248             : 
+     249             : //}
+     250             : 
+     251             : /* call(ServiceType& srv) //{ */
+     252             : 
+     253             : template <class ServiceType>
+     254        1091 : bool ServiceClientHandler<ServiceType>::call(ServiceType& srv) {
+     255             : 
+     256        1091 :   return impl_->call(srv);
+     257             : }
+     258             : 
+     259             : //}
+     260             : 
+     261             : /* call(ServiceType& srv, const int& attempts) //{ */
+     262             : 
+     263             : template <class ServiceType>
+     264             : bool ServiceClientHandler<ServiceType>::call(ServiceType& srv, const int& attempts) {
+     265             : 
+     266             :   return impl_->call(srv, attempts);
+     267             : }
+     268             : 
+     269             : //}
+     270             : 
+     271             : /* call(ServiceType& srv, const int& attempts, const double& repeat_delay) //{ */
+     272             : 
+     273             : template <class ServiceType>
+     274             : bool ServiceClientHandler<ServiceType>::call(ServiceType& srv, const int& attempts, const double& repeat_delay) {
+     275             : 
+     276             :   return impl_->call(srv, attempts, repeat_delay);
+     277             : }
+     278             : 
+     279             : //}
+     280             : 
+     281             : /* callAsync(ServiceType& srv) //{ */
+     282             : 
+     283             : template <class ServiceType>
+     284             : std::future<ServiceType> ServiceClientHandler<ServiceType>::callAsync(ServiceType& srv) {
+     285             : 
+     286             :   std::future<ServiceType> res = impl_->callAsync(srv);
+     287             : 
+     288             :   return res;
+     289             : }
+     290             : 
+     291             : //}
+     292             : 
+     293             : /* callAsync(ServiceType& srv, const int& attempts) //{ */
+     294             : 
+     295             : template <class ServiceType>
+     296           2 : std::future<ServiceType> ServiceClientHandler<ServiceType>::callAsync(ServiceType& srv, const int& attempts) {
+     297             : 
+     298           2 :   std::future<ServiceType> res = impl_->callAsync(srv, attempts);
+     299             : 
+     300           2 :   return res;
+     301             : }
+     302             : 
+     303             : //}
+     304             : 
+     305             : /* callAsync(ServiceType& srv, const int& attempts, const double& repeat_delay) //{ */
+     306             : 
+     307             : template <class ServiceType>
+     308             : std::future<ServiceType> ServiceClientHandler<ServiceType>::callAsync(ServiceType& srv, const int& attempts, const double& repeat_delay) {
+     309             : 
+     310             :   std::future<ServiceType> res = impl_->callAsync(srv, attempts, repeat_delay);
+     311             : 
+     312             :   return res;
+     313             : }
+     314             : 
+     315             : //}
+     316             : 
+     317             : }  // namespace mrs_lib
+     318             : 
+     319             : #endif  // SERVICE_CLIENT_HANDLER_HPP
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
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+ Overview +
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LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/impl - subscribe_handler.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9812081.7 %
Date:2024-04-17 23:52:03Functions:487104446.6 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::start()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().20
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::start()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::~Impl().20
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const> const&)1
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const> const&)1
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const1
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::stop()5
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::stop()5
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()5
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::getMsg()5
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const5
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::lastMsgTime() const5
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const5
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const5
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const6
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::hasMsg() const6
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)8
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::start()9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)> const&)9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().29
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::start()9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)> const&)9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::~Impl().29
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const9
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::start()10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().210
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::start()10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::~Impl().210
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().210
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::start()10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::~Impl().210
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const10
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const16
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::hasMsg() const16
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::getMsg()21
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::getMsg()21
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const21
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::peekMsg() const21
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::start()31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().231
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::start()31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::~Impl().231
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().231
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::start()31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl().231
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().231
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::start()31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::~Impl().231
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const31
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const87
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const87
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const87
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const87
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const92
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const92
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::getMsg()93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::getMsg()93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::hasMsg() const93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::peekMsg() const93
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)> const&)94
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()94
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().294
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)> const&)94
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::~Impl().294
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const95
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::start()97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const>)> const&)97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().297
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::start()97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const>)> const&)97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::~Impl().297
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const97
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::start()98
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::start()98
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const102
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const115
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::start()177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)> const&)177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::start()177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)> const&)177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::~Impl().2177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const177
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const180
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::lastMsgTime() const180
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::start()182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::start()182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::~Impl().2182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::start()182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::start()182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::~Impl().2182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::start()182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::start()182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::~Impl().2182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const182
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::start()186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>)> const&)186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::start()186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>)> const&)186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::~Impl().2186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::start()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>)> const&)213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::start()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>)> const&)213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::~Impl().2213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::getMsg()258
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::getMsg()258
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const258
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::peekMsg() const258
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::start()273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)> const&)273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::start()273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)> const&)273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::~Impl().2273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const273
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::start()282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)> const&)282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::start()282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)> const&)282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::~Impl().2282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const283
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const> const&)287
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const> const&)287
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::start()295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)> const&)295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::start()295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)> const&)295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::~Impl().2295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const295
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::start()304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const>)> const&)304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::start()304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const>)> const&)304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::~Impl().2304
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const320
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::lastMsgTime() const320
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::start()355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const>)> const&)355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::start()355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const>)> const&)355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::~Impl().2355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const355
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::start()363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)> const&)363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::start()363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)> const&)363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::~Impl().2363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const363
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::start()364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>)> const&)364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::start()364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>)> const&)364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::~Impl().2364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const364
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::start()395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::~Impl().2395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::start()395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl().2395
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const395
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const> const&)410
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const> const&)410
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::getMsg()440
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::getMsg()440
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const440
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::peekMsg() const440
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const497
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::start()549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)> const&)549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::start()549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)> const&)549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::~Impl().2549
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::getMsg()555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::getMsg()555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::hasMsg() const555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::peekMsg() const555
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const> const&)572
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const> const&)572
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const740
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::getMsg()793
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::getMsg()793
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const793
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::peekMsg() const793
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const> const&)1598
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const> const&)1598
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const> const&)1599
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const> const&)1599
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const> const&)1888
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const> const&)1888
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const2503
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::hasMsg() const2503
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const> const&)3107
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const> const&)3107
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()3722
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::getMsg()3722
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const3722
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::peekMsg() const3722
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const> const&)4912
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const> const&)4912
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::getMsg()9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::getMsg()9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::hasMsg() const9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::peekMsg() const9924
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const> const&)11671
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const> const&)11706
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const> const&)13777
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const> const&)13777
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::getMsg()14093
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const14093
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::peekMsg() const14094
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::getMsg()14095
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const16328
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::hasMsg() const16330
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::hasMsg() const17555
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const17558
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const18398
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const18398
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const18596
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::hasMsg() const18596
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const18609
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::hasMsg() const18609
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::getMsg()19880
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::getMsg()19880
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const19880
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::peekMsg() const19880
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const> const&)19917
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const> const&)19917
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const> const&)21018
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const> const&)21018
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::getMsg()34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::getMsg()34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::lastMsgTime() const34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::peekMsg() const34723
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()41183
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const41185
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::peekMsg() const41185
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::getMsg()41186
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const50203
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::hasMsg() const50204
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const> const&)56845
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const> const&)56845
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const63265
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::hasMsg() const63274
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()65423
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const65445
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const65451
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::getMsg()65452
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const68176
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const68200
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const> const&)69300
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const> const&)69399
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const> const&)70383
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const> const&)70610
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const> const&)130349
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const> const&)130349
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const141280
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const141293
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()142225
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const142231
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::getMsg()142233
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const142233
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::getMsg()162500
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::getMsg()162500
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const162500
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::peekMsg() const162500
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const162501
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::hasMsg() const162501
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const> const&)181226
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const> const&)181243
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const182720
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::getMsg()182793
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()182821
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::peekMsg() const182829
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)187186
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)187347
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const> const&)188006
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const> const&)188019
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const193705
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::lastMsgTime() const193705
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::getMsg()208770
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::peekMsg() const208773
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::getMsg()208774
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const208774
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const226187
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::hasMsg() const226189
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const> const&)307875
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const> const&)307902
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const> const&)309608
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const> const&)309639
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const> const&)320049
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const> const&)320439
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const> const&)328255
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const> const&)328436
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const> const&)363485
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const> const&)364524
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::hasMsg() const376886
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const376978
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const381555
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::getMsg()381648
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::getMsg()381916
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::peekMsg() const382013
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const404431
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::lastMsgTime() const404557
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const> const&)464592
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const> const&)464819
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)495346
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)495775
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const498327
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::hasMsg() const498342
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::newMsg() const513004
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::newMsg() const513416
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const> const&)572764
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const> const&)573274
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::getMsg()699255
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()699258
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const699264
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::peekMsg() const699293
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const> const&)894058
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const> const&)894648
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::hasMsg() const896667
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const896788
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const> const&)1101415
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const> const&)1102215
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Current view:top level - mrs_lib/include/mrs_lib/impl - subscribe_handler.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9812081.7 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const> const&)364524
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::start()363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)> const&)363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const> const&)363485
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::start()363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)> const&)363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::~Impl().2363
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const> const&)56845
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::start()31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::getMsg()9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().231
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const> const&)56845
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::start()31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::getMsg()9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::~Impl().231
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::start()182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::start()182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::~Impl().2182
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const> const&)307875
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::start()177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::getMsg()14093
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)> const&)177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const> const&)307902
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::start()177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::getMsg()14095
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)> const&)177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::~Impl().2177
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::start()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().20
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::start()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::~Impl().20
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const> const&)181243
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::stop()5
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::start()98
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()3722
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)> const&)94
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()94
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().294
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const> const&)181226
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::stop()5
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::start()98
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::getMsg()3722
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)> const&)94
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::~Impl().294
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const> const&)573274
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::start()295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()182821
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)> const&)295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const> const&)572764
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::start()295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::getMsg()182793
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)> const&)295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::~Impl().2295
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const> const&)1101415
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::start()549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()699258
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)> const&)549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const> const&)1102215
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)8
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::start()549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::getMsg()699255
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)> const&)549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::~Impl().2549
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const> const&)894648
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::start()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::getMsg()258
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>)> const&)213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const> const&)894058
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::start()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::getMsg()258
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>)> const&)213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::~Impl().2213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const> const&)320049
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::start()186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::getMsg()162500
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>)> const&)186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const> const&)320439
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::start()186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::getMsg()162500
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>)> const&)186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::~Impl().2186
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const> const&)328436
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::start()355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::getMsg()381916
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const>)> const&)355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const> const&)328255
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::start()355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::getMsg()381648
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const>)> const&)355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::~Impl().2355
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const> const&)309639
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::start()364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()41183
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>)> const&)364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const> const&)309608
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::start()364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::getMsg()41186
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>)> const&)364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::~Impl().2364
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)187186
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::start()182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::getMsg()793
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)187347
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::start()182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::getMsg()793
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::~Impl().2182
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const> const&)188019
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::start()97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const>)> const&)97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().297
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const> const&)188006
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::start()97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const>)> const&)97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::~Impl().297
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const> const&)21018
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::getMsg()555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const> const&)21018
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::getMsg()555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const> const&)410
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::getMsg()440
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const> const&)410
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::getMsg()440
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const> const&)287
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::start()10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().210
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const> const&)287
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::start()10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::~Impl().210
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const> const&)4912
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::start()304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::getMsg()19880
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const>)> const&)304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const> const&)4912
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::start()304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::getMsg()19880
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const>)> const&)304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::~Impl().2304
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const> const&)13777
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::getMsg()21
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const> const&)13777
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::getMsg()21
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const> const&)130349
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()5
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const> const&)130349
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::getMsg()5
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const> const&)69399
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()65423
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const> const&)69300
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::start()395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::getMsg()65452
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::~Impl().2395
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const> const&)1888
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().210
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const> const&)1888
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::start()10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::~Impl().210
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const> const&)572
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().231
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const> const&)572
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::start()31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl().231
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const> const&)1598
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const> const&)1598
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const> const&)3107
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().231
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const> const&)3107
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::start()31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::~Impl().231
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const> const&)70610
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()142225
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const> const&)70383
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::start()395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::getMsg()142233
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl().2395
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const> const&)1599
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const> const&)1599
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const> const&)1
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::start()91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().291
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const> const&)1
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::start()91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::~Impl().291
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const> const&)11706
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::start()9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::getMsg()93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)> const&)9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().29
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const> const&)11671
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::start()9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::getMsg()93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)> const&)9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::~Impl().29
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const> const&)464819
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::start()273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)> const&)273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const> const&)464592
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::start()273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)> const&)273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::~Impl().2273
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)495775
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::start()282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::getMsg()208770
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)> const&)282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)495346
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::start()282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::getMsg()208774
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)> const&)282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::~Impl().2282
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::data_callback(boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const> const&)19917
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::stop()0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::start()182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::getMsg()34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::ImplThreadsafe(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe()182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::~ImplThreadsafe().2182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::data_callback(boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const> const&)0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::process_new_message(boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const> const&)19917
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::default_timeout_callback(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::stop()0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::start()182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::getMsg()34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::Impl(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::~Impl()0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::~Impl().2182
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const363
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::hasMsg() const9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::peekMsg() const9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const31
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const182
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const17558
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const14093
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::hasMsg() const17555
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::peekMsg() const14094
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const177
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const5
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const16328
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const3722
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::lastMsgTime() const5
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::hasMsg() const16330
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::peekMsg() const3722
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const95
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const376978
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const182720
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::hasMsg() const376886
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::peekMsg() const182829
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const295
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const896788
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const699264
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const115
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::hasMsg() const896667
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::peekMsg() const699293
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const740
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const180
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const18596
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const258
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::lastMsgTime() const180
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::hasMsg() const18596
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::peekMsg() const258
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const162501
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const162500
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::hasMsg() const162501
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::peekMsg() const162500
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const186
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const404431
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::newMsg() const513416
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const381555
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::lastMsgTime() const404557
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::newMsg() const513004
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::peekMsg() const382013
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const355
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const63265
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const41185
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::hasMsg() const63274
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::peekMsg() const41185
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const364
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const16
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const793
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::hasMsg() const16
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::peekMsg() const793
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const182
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const97
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::hasMsg() const555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::peekMsg() const555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const320
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const2503
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const440
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::lastMsgTime() const320
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::hasMsg() const2503
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::peekMsg() const440
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const10
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const18609
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const19880
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::hasMsg() const18609
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::peekMsg() const19880
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const395
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const6
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const21
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::hasMsg() const6
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::peekMsg() const21
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const92
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const5
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const92
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const5
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const68176
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const65445
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const68200
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const65451
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const395
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const10
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const18398
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const18398
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const31
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const87
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const87
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const31
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const141280
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const142231
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const102
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const141293
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const142233
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const497
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const87
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::lastMsgTime() const87
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::hasMsg() const93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::peekMsg() const93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const9
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const193705
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const226187
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::lastMsgTime() const193705
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::hasMsg() const226189
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const273
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const498327
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const208774
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const1
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::lastMsgTime() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::hasMsg() const498342
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::peekMsg() const208773
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const283
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::lastMsgTime() const34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::hasMsg() const50203
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::newMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::peekMsg() const34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::usedMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::ImplThreadsafe::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::lastMsgTime() const34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::hasMsg() const50204
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::newMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::peekMsg() const34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::usedMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::Impl::topicName[abi:cxx11]() const182
+
+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp.gcov.frameset.html b/mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp.gcov.frameset.html new file mode 100644 index 0000000000..19a3af8db0 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp.gcov.html b/mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp.gcov.html new file mode 100644 index 0000000000..8cfa2204b8 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp.gcov.html @@ -0,0 +1,413 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib/impl - subscribe_handler.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9812081.7 %
Date:2024-04-17 23:52:03Functions:487104446.6 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : 
+       3             : #ifndef SUBSCRIBE_HANDLER_HPP
+       4             : #define SUBSCRIBE_HANDLER_HPP
+       5             : 
+       6             : #include <mrs_lib/subscribe_handler.h>
+       7             : #include <mrs_lib/timer.h>
+       8             : #include <mutex>
+       9             : #include <condition_variable>
+      10             : 
+      11             : namespace mrs_lib
+      12             : {
+      13             :   /* SubscribeHandler::Impl class //{ */
+      14             :   // implements the constructor, getMsg() method and data_callback method (non-thread-safe)
+      15             :   template <typename MessageType>
+      16             :   class SubscribeHandler<MessageType>::Impl
+      17             :   {
+      18             :   public:
+      19             :     using timeout_callback_t = typename SubscribeHandler<MessageType>::timeout_callback_t;
+      20             :     using message_callback_t = typename SubscribeHandler<MessageType>::message_callback_t;
+      21             :     using data_callback_t = std::function<void(const typename MessageType::ConstPtr&)>;
+      22             : 
+      23             :   private:
+      24             :     friend class SubscribeHandler<MessageType>;
+      25             : 
+      26             :   public:
+      27             :     /* constructor //{ */
+      28        6011 :     Impl(const SubscribeHandlerOptions& options, const message_callback_t& message_callback = message_callback_t())
+      29        6011 :         : m_nh(options.nh),
+      30        6011 :           m_topic_name(options.topic_name),
+      31        6011 :           m_node_name(options.node_name),
+      32             :           m_got_data(false),
+      33             :           m_new_data(false),
+      34             :           m_used_data(false),
+      35        6011 :           m_timeout_manager(options.timeout_manager),
+      36             :           m_latest_message_time(0),
+      37             :           m_latest_message(nullptr),
+      38             :           m_message_callback(message_callback),
+      39        6011 :           m_queue_size(options.queue_size),
+      40        6011 :           m_transport_hints(options.transport_hints)
+      41             :     {
+      42        6011 :       if (options.no_message_timeout != mrs_lib::no_timeout)
+      43             :       {
+      44             :         // initialize a new TimeoutManager if not provided by the user
+      45          77 :         if (!m_timeout_manager)
+      46          77 :           m_timeout_manager = std::make_shared<mrs_lib::TimeoutManager>(m_nh, ros::Rate(2.0/options.no_message_timeout.toSec()));
+      47             : 
+      48             :         // initialize the callback for the TimeoutManager
+      49         154 :         std::function<void(const ros::Time&)> timeout_mgr_callback;
+      50          77 :         if (options.timeout_callback)
+      51           1 :           timeout_mgr_callback = std::bind(options.timeout_callback, topicName(), std::placeholders::_1);
+      52             :         else
+      53          76 :           timeout_mgr_callback = std::bind(&Impl::default_timeout_callback, this, topicName(), std::placeholders::_1);
+      54             : 
+      55             :         // register the timeout callback with the TimeoutManager
+      56          77 :         m_timeout_id = m_timeout_manager->registerNew(options.no_message_timeout, timeout_mgr_callback);
+      57             :       }
+      58             : 
+      59       18033 :       const std::string msg = "Subscribed to topic '" + m_topic_name + "' -> '" + topicName() + "'";
+      60        6011 :       if (m_node_name.empty())
+      61           1 :         ROS_INFO_STREAM(msg);
+      62             :       else
+      63        6010 :         ROS_INFO_STREAM("[" << m_node_name << "]: " << msg);
+      64        6011 :     }
+      65             :     //}
+      66             : 
+      67        6011 :     virtual ~Impl() = default;
+      68             : 
+      69             :   public:
+      70             :     /* getMsg() method //{ */
+      71     1968350 :     virtual typename MessageType::ConstPtr getMsg()
+      72             :     {
+      73     1968350 :       m_new_data = false;
+      74     1968350 :       m_used_data = true;
+      75     1968350 :       return peekMsg();
+      76             :     }
+      77             :     //}
+      78             : 
+      79             :     /* peekMsg() method //{ */
+      80     1968785 :     virtual typename MessageType::ConstPtr peekMsg() const
+      81             :     {
+      82             :       /* assert(m_got_data); */
+      83             :       /* if (!m_got_data) */
+      84             :       /*   ROS_ERROR("[%s]: No data received yet from topic '%s' (forgot to check hasMsg()?)! Returning empty message.", m_node_name.c_str(), */
+      85             :       /*             topicName().c_str()); */
+      86     1968785 :       return m_latest_message;
+      87             :     }
+      88             :     //}
+      89             : 
+      90             :     /* hasMsg() method //{ */
+      91     2586233 :     virtual bool hasMsg() const
+      92             :     {
+      93     2586233 :       return m_got_data;
+      94             :     }
+      95             :     //}
+      96             : 
+      97             :     /* newMsg() method //{ */
+      98      513004 :     virtual bool newMsg() const
+      99             :     {
+     100      513004 :       return m_new_data;
+     101             :     }
+     102             :     //}
+     103             : 
+     104             :     /* usedMsg() method //{ */
+     105           0 :     virtual bool usedMsg() const
+     106             :     {
+     107           0 :       return m_used_data;
+     108             :     }
+     109             :     //}
+     110             : 
+     111             :     /* waitForNew() method //{ */
+     112           0 :     virtual typename MessageType::ConstPtr waitForNew(const ros::WallDuration& timeout)
+     113             :     {
+     114             :       // convert the ros type to chrono type
+     115           0 :       const std::chrono::duration<float> chrono_timeout(timeout.toSec());
+     116             :       // lock the mutex guarding the m_new_data flag
+     117           0 :       std::unique_lock lock(m_new_data_mtx);
+     118             :       // if new data is available, return immediately, otherwise attempt to wait for new data using the respective condition variable
+     119           0 :       if (m_new_data)
+     120           0 :         return getMsg();
+     121           0 :       else if (m_new_data_cv.wait_for(lock, chrono_timeout) == std::cv_status::no_timeout && m_new_data)
+     122           0 :         return getMsg();
+     123             :       else
+     124           0 :         return nullptr;
+     125             :     };
+     126             :     //}
+     127             : 
+     128             :     /* lastMsgTime() method //{ */
+     129      633664 :     virtual ros::Time lastMsgTime() const
+     130             :     {
+     131      633664 :       return m_latest_message_time;
+     132             :     };
+     133             :     //}
+     134             : 
+     135             :     /* topicName() method //{ */
+     136        6397 :     virtual std::string topicName() const
+     137             :     {
+     138        6397 :       std::string ret = m_sub.getTopic();
+     139        6397 :       if (ret.empty())
+     140        6088 :         ret = m_nh.resolveName(m_topic_name);
+     141        6397 :       return ret;
+     142             :     }
+     143             :     //}
+     144             : 
+     145             :     /* start() method //{ */
+     146        6015 :     virtual void start()
+     147             :     {
+     148        6015 :       if (m_timeout_manager)
+     149          81 :         m_timeout_manager->start(m_timeout_id);
+     150        6015 :       m_sub = m_nh.subscribe(m_topic_name, m_queue_size, &Impl::data_callback, this, m_transport_hints);
+     151        6015 :     }
+     152             :     //}
+     153             : 
+     154             :     /* stop() method //{ */
+     155           5 :     virtual void stop()
+     156             :     {
+     157           5 :       if (m_timeout_manager)
+     158           5 :         m_timeout_manager->pause(m_timeout_id);
+     159           5 :       m_sub.shutdown();
+     160           5 :     }
+     161             :     //}
+     162             : 
+     163             :   protected:
+     164             :     ros::NodeHandle m_nh;
+     165             :     ros::Subscriber m_sub;
+     166             : 
+     167             :   protected:
+     168             :     std::string m_topic_name;
+     169             :     std::string m_node_name;
+     170             : 
+     171             :   protected:
+     172             :     bool m_got_data;   // whether any data was received
+     173             : 
+     174             :     mutable std::mutex m_new_data_mtx;
+     175             :     mutable std::condition_variable m_new_data_cv;
+     176             :     bool m_new_data;   // whether new data was received since last call to get_data
+     177             : 
+     178             :     bool m_used_data;  // whether get_data was successfully called at least once
+     179             : 
+     180             :   protected:
+     181             :     std::shared_ptr<mrs_lib::TimeoutManager> m_timeout_manager;
+     182             :     mrs_lib::TimeoutManager::timeout_id_t m_timeout_id;
+     183             : 
+     184             :   protected:
+     185             :     ros::Time m_latest_message_time;
+     186             :     typename MessageType::ConstPtr m_latest_message;
+     187             :     message_callback_t m_message_callback;
+     188             : 
+     189             :   private:
+     190             :     uint32_t m_queue_size;
+     191             :     ros::TransportHints m_transport_hints;
+     192             : 
+     193             :   protected:
+     194             :     /* default_timeout_callback() method //{ */
+     195           8 :     void default_timeout_callback(const std::string& topic_name, const ros::Time& last_msg)
+     196             :     {
+     197           8 :       const ros::Duration since_msg = (ros::Time::now() - last_msg);
+     198           8 :       const auto n_pubs = m_sub.getNumPublishers();
+     199          24 :       const std::string txt = "Did not receive any message from topic '" + topic_name + "' for " + std::to_string(since_msg.toSec()) + "s ("
+     200             :                               + std::to_string(n_pubs) + " publishers on this topic)";
+     201           8 :       if (m_node_name.empty())
+     202           0 :         ROS_WARN_STREAM(txt);
+     203             :       else
+     204           8 :         ROS_WARN_STREAM("[" << m_node_name << "]: " << txt);
+     205           8 :     }
+     206             :     //}
+     207             : 
+     208             :     /* process_new_message() method //{ */
+     209     6122877 :     void process_new_message(const typename MessageType::ConstPtr& msg)
+     210             :     {
+     211     6122877 :       m_latest_message_time = ros::Time::now();
+     212     6126915 :       m_latest_message = msg;
+     213             :       // If the message callback is registered, the new data will immediately be processed,
+     214             :       // so reset the flag. Otherwise, set the flag.
+     215     6124400 :       m_new_data = !m_message_callback;
+     216     6119038 :       m_got_data = true;
+     217     6119038 :       m_new_data_cv.notify_one();
+     218     6127866 :     }
+     219             :     //}
+     220             : 
+     221             :     /* data_callback() method //{ */
+     222           0 :     virtual void data_callback(const typename MessageType::ConstPtr& msg)
+     223             :     {
+     224             :       {
+     225           0 :         std::lock_guard lck(m_new_data_mtx);
+     226           0 :         if (m_timeout_manager)
+     227           0 :           m_timeout_manager->reset(m_timeout_id);
+     228           0 :         process_new_message(msg);
+     229             :       }
+     230             : 
+     231             :       // execute the callback after unlocking the mutex to enable multi-threaded callback execution
+     232           0 :       if (m_message_callback)
+     233           0 :         m_message_callback(msg);
+     234           0 :     }
+     235             :     //}
+     236             :   };
+     237             :   //}
+     238             : 
+     239             :   /* SubscribeHandler_threadsafe class //{ */
+     240             :   template <typename MessageType>
+     241             :   class SubscribeHandler<MessageType>::ImplThreadsafe : public SubscribeHandler<MessageType>::Impl
+     242             :   {
+     243             :   private:
+     244             :     using impl_class_t = SubscribeHandler<MessageType>::Impl;
+     245             : 
+     246             :   public:
+     247             :     using timeout_callback_t = typename impl_class_t::timeout_callback_t;
+     248             :     using message_callback_t = typename impl_class_t::message_callback_t;
+     249             : 
+     250             :     friend class SubscribeHandler<MessageType>;
+     251             : 
+     252             :   public:
+     253        6011 :     ImplThreadsafe(const SubscribeHandlerOptions& options, const message_callback_t& message_callback = message_callback_t())
+     254        6011 :         : impl_class_t::Impl(options, message_callback)
+     255             :     {
+     256        6011 :     }
+     257             : 
+     258             :   public:
+     259     2586383 :     virtual bool hasMsg() const override
+     260             :     {
+     261     5172390 :       std::lock_guard lck(m_mtx);
+     262     5172509 :       return impl_class_t::hasMsg();
+     263             :     }
+     264      513416 :     virtual bool newMsg() const override
+     265             :     {
+     266     1025790 :       std::lock_guard lck(m_mtx);
+     267     1024655 :       return impl_class_t::newMsg();
+     268             :     }
+     269           0 :     virtual bool usedMsg() const override
+     270             :     {
+     271           0 :       std::lock_guard lck(m_mtx);
+     272           0 :       return impl_class_t::usedMsg();
+     273             :     }
+     274     1968603 :     virtual typename MessageType::ConstPtr getMsg() override
+     275             :     {
+     276     3935937 :       std::lock_guard lck(m_mtx);
+     277     3935913 :       return impl_class_t::getMsg();
+     278             :     }
+     279     1968181 :     virtual typename MessageType::ConstPtr peekMsg() const override
+     280             :     {
+     281     3935911 :       std::lock_guard lck(m_mtx);
+     282     3935420 :       return impl_class_t::peekMsg();
+     283             :     }
+     284      633538 :     virtual ros::Time lastMsgTime() const override
+     285             :     {
+     286     1267095 :       std::lock_guard lck(m_mtx);
+     287     1267044 :       return impl_class_t::lastMsgTime();
+     288             :     };
+     289         309 :     virtual std::string topicName() const override
+     290             :     {
+     291         618 :       std::lock_guard lck(m_mtx);
+     292         618 :       return impl_class_t::topicName();
+     293             :     };
+     294        6015 :     virtual void start() override
+     295             :     {
+     296       12030 :       std::lock_guard lck(m_mtx);
+     297       12030 :       return impl_class_t::start();
+     298             :     }
+     299           5 :     virtual void stop() override
+     300             :     {
+     301          10 :       std::lock_guard lck(m_mtx);
+     302          10 :       return impl_class_t::stop();
+     303             :     }
+     304             : 
+     305       12022 :     virtual ~ImplThreadsafe() override = default;
+     306             : 
+     307             :   protected:
+     308     6124897 :     virtual void data_callback(const typename MessageType::ConstPtr& msg) override
+     309             :     {
+     310             :       {
+     311    12249356 :         std::scoped_lock lck(m_mtx, this->m_new_data_mtx);
+     312     6104650 :         if (this->m_timeout_manager)
+     313      148710 :           this->m_timeout_manager->reset(this->m_timeout_id);
+     314     6075001 :         impl_class_t::process_new_message(msg);
+     315             :       }
+     316             : 
+     317             :       // execute the callback after unlocking the mutex to enable multi-threaded callback execution
+     318     6105887 :       if (this->m_message_callback)
+     319     3404829 :         impl_class_t::m_message_callback(msg);
+     320     6098326 :     }
+     321             : 
+     322             :   private:
+     323             :     mutable std::recursive_mutex m_mtx;
+     324             :   };
+     325             :   //}
+     326             : 
+     327             : }  // namespace mrs_lib
+     328             : 
+     329             : #endif  // SUBSCRIBE_HANDLER_HPP
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp.gcov.overview.html b/mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp.gcov.overview.html new file mode 100644 index 0000000000..02a4b3f18a --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp.gcov.overview.html @@ -0,0 +1,103 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp.gcov.png b/mrs_lib/include/mrs_lib/impl/subscribe_handler.hpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..039a0b123a5be30b6b86ab27f511bc7c3edec5e5 GIT binary patch literal 1372 zcmV-i1*7_jP)PbXF zRA_$hj4@iQ$tY%%8HH^zS zW6cEpSWW-;D~SoWLPH?$vi4?$WWPqq&<)@QNwyBXCKhLurC>WWYYu4IJlu$ zh0YNwZba1sMI@ur1}1BoodzD`chMU0CaKq2J9ixq7b9FNBgj=2+oknPWgKADO5G|$ z>eIT=*2XV9fVDuGImIaQ6XuE50Sgsx4$L#=nuacVL?du^pqon%e$h)2Vvk6+u8nZs zjx+Zqpu{l^MF&#YAg*mDmw38zD>niv>=>g1Y{)AkW3Alcmgy#!WyFrOy_0myUJ6_8 zl??RO5dbY8Iw~0t^PG{`_6CpnB$bS^2Cw5*r3_Ao`HaTz5^*V>WB}_WkzB(11Pgh{ zwF5T;n+?!GY1~KxbH>ImZg*A98Oz(|zj=OvdFBhi?Y8gxW8d$`m;bmC z;{ZOWe`|ra9q8@cD{_kOGtV@Bl6jIsJAQnWUo^@@-Ue2%Sn>~9-!O~45hB|+0PhF# zktMx@bVJXyga{Yj1HtF|Ka}ySkF8iDdwn{0W;U4X8z7{D=D(l^)j;B_@EHb zdvD;*W_H=wUCK(Siv5XYk4v0A>u)c6({-u&<7$5~OX^|8?%vajS5_rekW=7_^&h}#8KHO$DWFb9 z$XyNU*`aiHp)yKF7hT|1BiGss3zUS?X)AYbSqF9y1t0^&LcR*`syj6#D~ zhi2rCwpMspEJoTa1-O{QlrW!JDi?GDnS1Zsr*&W)k!5&&My;fM5F zeG#ZYx^-W(*vofU8BnJ+I>@2Ysb?|(H`@!F)+e#Ysy5BPqfC2-M0L=$XGmpp<+ixJ zJ{B26<*ex|2(_txg=g5~eRQwlBg&BXq}0lwBaMNTKB5fS+!vmG3=bf_rVLe7D3!6- zDyl}nw<|-RO6iwo_M+4$lzEx8c%XPp4|e2A-Nr6TAaV4>F{tgYn#RyYn&o;lW?FG= zwXUZO!Ft0ayWtv&90CDPudjtwT&FZWxrWM&fbYm3<;_%-^cyno{9aucTl%v9o+2CG eIJickaQ^@zmyh{xOPAyT0000 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/timer.hpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/impl - timer.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:141687.5 %
Date:2024-04-17 23:52:03Functions:33100.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::ThreadTimer::ThreadTimer<obj_t>(ros::NodeHandle const&, ros::Rate const&, void (obj_t::*)(ros::TimerEvent const&), obj_t*, bool, bool)8
mrs_lib::ThreadTimer::ThreadTimer<obj_t>(ros::NodeHandle const&, ros::Duration const&, void (obj_t::*)(ros::TimerEvent const&), obj_t*, bool, bool)8
mrs_lib::ROSTimer::ROSTimer<obj_t>(ros::NodeHandle const&, ros::Rate const&, void (obj_t::*)(ros::TimerEvent const&), obj_t*, bool, bool)8
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+ + + diff --git a/mrs_lib/include/mrs_lib/impl/timer.hpp.func.html b/mrs_lib/include/mrs_lib/impl/timer.hpp.func.html new file mode 100644 index 0000000000..b97b09a408 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/timer.hpp.func.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/timer.hpp - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/include/mrs_lib/impl - timer.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:141687.5 %
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mrs_lib::ThreadTimer::ThreadTimer<obj_t>(ros::NodeHandle const&, ros::Rate const&, void (obj_t::*)(ros::TimerEvent const&), obj_t*, bool, bool)8
mrs_lib::ThreadTimer::ThreadTimer<obj_t>(ros::NodeHandle const&, ros::Duration const&, void (obj_t::*)(ros::TimerEvent const&), obj_t*, bool, bool)8
mrs_lib::ROSTimer::ROSTimer<obj_t>(ros::NodeHandle const&, ros::Rate const&, void (obj_t::*)(ros::TimerEvent const&), obj_t*, bool, bool)8
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Current view:top level - mrs_lib/include/mrs_lib/impl - timer.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:141687.5 %
Date:2024-04-17 23:52:03Functions:33100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef MRS_TIMER_HPP
+       2             : #define MRS_TIMER_HPP
+       3             : 
+       4             : // | ------------------------ ROSTimer ------------------------ |
+       5             : 
+       6             : /* ROSTimer constructors //{ */
+       7             : 
+       8             : // duration + oneshot + autostart
+       9             : #include <chrono>
+      10             : #include <mutex>
+      11             : template <class ObjectType>
+      12             : ROSTimer::ROSTimer(const ros::NodeHandle& nh, const ros::Duration& duration, void (ObjectType::*const callback)(const ros::TimerEvent&),
+      13             :                    ObjectType* const obj, const bool oneshot, const bool autostart) {
+      14             : 
+      15             :   this->timer_ = std::make_unique<ros::Timer>(nh.createTimer(duration, callback, obj, oneshot, autostart));
+      16             : }
+      17             : 
+      18             : // rate + oneshot + autostart
+      19             : template <class ObjectType>
+      20           8 : ROSTimer::ROSTimer(const ros::NodeHandle& nh, const ros::Rate& rate, void (ObjectType::*const callback)(const ros::TimerEvent&), ObjectType* const obj,
+      21           8 :                    const bool oneshot, const bool autostart) {
+      22             : 
+      23           8 :   this->timer_ = std::make_unique<ros::Timer>(nh.createTimer(rate, callback, obj, oneshot, autostart));
+      24           8 : }
+      25             : 
+      26             : //}
+      27             : 
+      28             : // | ----------------------- ThreadTimer ---------------------- |
+      29             : 
+      30             : /* class ThreadTimer::Impl //{ */
+      31             : 
+      32             : class ThreadTimer::Impl {
+      33             : public:
+      34             :   Impl(const std::function<void(const ros::TimerEvent&)>& callback, const ros::Duration& delay_dur, const bool oneshot);
+      35             :   ~Impl();
+      36             : 
+      37             :   void start();
+      38             :   void stop();
+      39             :   void setPeriod(const ros::Duration& duration, const bool reset = true);
+      40             :   void setCallback(const std::function<void(const ros::TimerEvent&)>& callback);
+      41             : 
+      42             :   friend class ThreadTimer;
+      43             : 
+      44             :   // to keep rule of five since we have a custom destructor
+      45             :   Impl(const Impl&) = delete;
+      46             :   Impl(Impl&&) = delete;
+      47             :   Impl& operator=(const Impl&) = delete;
+      48             :   Impl& operator=(Impl&&) = delete;
+      49             : 
+      50             : private:
+      51             :   std::thread thread_;
+      52             :   std::function<void(const ros::TimerEvent&)> callback_;
+      53             : 
+      54             :   bool oneshot_;
+      55             : 
+      56             :   bool breakableSleep(const ros::Time& until);
+      57             :   void threadFcn();
+      58             : 
+      59             :   std::mutex mutex_wakeup_;
+      60             :   std::condition_variable wakeup_cond_;
+      61             :   std::recursive_mutex mutex_state_;
+      62             :   bool running_;
+      63             :   ros::Duration delay_dur_;
+      64             :   bool ending_;
+      65             :   ros::Time next_expected_;
+      66             :   ros::Time last_expected_;
+      67             :   ros::Time last_real_;
+      68             : 
+      69             : };
+      70             : 
+      71             : //}
+      72             : 
+      73             : /* ThreadTimer constructors and destructors//{ */
+      74             : 
+      75             : template <class ObjectType>
+      76           8 : ThreadTimer::ThreadTimer([[maybe_unused]] const ros::NodeHandle& nh, const ros::Rate& rate, void (ObjectType::*const callback)(const ros::TimerEvent&),
+      77             :                          ObjectType* const obj, const bool oneshot, const bool autostart)
+      78           8 :   : ThreadTimer(nh, rate.expectedCycleTime(), callback, obj, oneshot, autostart)
+      79             : {
+      80           8 : }
+      81             : 
+      82             : template <class ObjectType>
+      83           8 : ThreadTimer::ThreadTimer([[maybe_unused]] const ros::NodeHandle& nh, const ros::Duration& duration,
+      84           8 :                          void (ObjectType::*const callback)(const ros::TimerEvent&), ObjectType* const obj, bool oneshot, const bool autostart) 
+      85             : {
+      86           8 :   const auto cbk = std::bind(callback, obj, std::placeholders::_1);
+      87           8 :   if (duration == ros::Duration(0))
+      88           0 :     oneshot = true;
+      89           8 :   this->impl_ = std::make_unique<Impl>(cbk, duration, oneshot);
+      90           8 :   if (autostart)
+      91           0 :     this->impl_->start();
+      92           8 : }
+      93             : 
+      94             : //}
+      95             : 
+      96             : #endif  // MRS_TIMER_HPP
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/impl/timer.hpp.gcov.overview.html b/mrs_lib/include/mrs_lib/impl/timer.hpp.gcov.overview.html new file mode 100644 index 0000000000..fcb66ffefa --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/timer.hpp.gcov.overview.html @@ -0,0 +1,44 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/timer.hpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_lib/include/mrs_lib/impl/timer.hpp.gcov.png b/mrs_lib/include/mrs_lib/impl/timer.hpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..5eaff0c12ba0f0ee0c40adf9de476fcd7273979a GIT binary patch literal 532 zcmV+v0_**WP)WYG+H!gJy;wixEWkN+2HI)NNz7^h?e(6ei$EBmECa$YZdPbo z&&?9qN!l`6XNE9?C@%|f+=+O+hxoa^dC8|ovlXdJZ8P5Mb^}htY{=^O2l4r0f>@&z zs8-G-GtlRs7WS8Q4Naj!VYlL#*dr>O}oC~oA&GPcoS+nZ3=NZ9cU>_BRGE{}RklLXi&dpW;c zBPdq`J%+YgIsodmKUOYNAghxH_$}Pe8ijGBtP>l>ErpzMWuQ`Sl)LSv@r6H4l4sjS zx9^Ei-P+t!q)t6)>`2qi&SnbFW}=WM6nrvUXlj^Fio7N%@i_Cs-1BmH0tK`Cf-@K| zG8cLl(@=qVKn&f+P2+K#=lS`>-!T-NNCQh?%^=ZVsQ0Nei5g|Z{u?uHY__wee90dK WkIr@^1TfP80000 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/transformer.hpp - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/include/mrs_lib/impl - transformer.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:556485.9 %
Date:2024-04-17 23:52:03Functions:404883.3 %
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Function Name Sort by function nameHit count Sort by hit count
std::optional<Eigen::Quaternion<double, 0> > mrs_lib::Transformer::doTransform<Eigen::Quaternion<double, 0> >(Eigen::Quaternion<double, 0> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)0
geometry_msgs::Quaternion_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::Quaternion_<std::allocator<void> > >(geometry_msgs::Quaternion_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
geometry_msgs::Vector3Stamped_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
geometry_msgs::Point_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::Point_<std::allocator<void> > >(geometry_msgs::Point_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
cv::Point3_<double> mrs_lib::Transformer::copyChangeFrame<cv::Point3_<double> >(cv::Point3_<double> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
Eigen::Quaternion<double, 0> mrs_lib::Transformer::copyChangeFrame<Eigen::Quaternion<double, 0> >(Eigen::Quaternion<double, 0> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
void mrs_lib::Transformer::setHeader<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> >&, std_msgs::Header_<std::allocator<void> > const&)0
std::optional<cv::Point3_<double> > mrs_lib::Transformer::doTransform<cv::Point3_<double> >(cv::Point3_<double> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)1
std::optional<cv::Point3_<double> > mrs_lib::Transformer::transformImpl<cv::Point3_<double> >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, cv::Point3_<double> const&)1
std::optional<geometry_msgs::Quaternion_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::Quaternion_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, geometry_msgs::Quaternion_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)1
std::optional<cv::Point3_<double> > mrs_lib::Transformer::transform<cv::Point3_<double> >(cv::Point3_<double> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)1
std::optional<Eigen::Quaternion<double, 0> > mrs_lib::Transformer::transformImpl<Eigen::Quaternion<double, 0> >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, Eigen::Quaternion<double, 0> const&)2
std::optional<Eigen::Quaternion<double, 0> > mrs_lib::Transformer::transform<Eigen::Quaternion<double, 0> >(Eigen::Quaternion<double, 0> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)2
std::optional<geometry_msgs::Point_<std::allocator<void> > > mrs_lib::Transformer::transform<geometry_msgs::Point_<std::allocator<void> > >(geometry_msgs::Point_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)4
std::optional<geometry_msgs::Quaternion_<std::allocator<void> > > mrs_lib::Transformer::transform<geometry_msgs::Quaternion_<std::allocator<void> > >(geometry_msgs::Quaternion_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)5
std::optional<geometry_msgs::Quaternion_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::Quaternion_<std::allocator<void> > >(geometry_msgs::Quaternion_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)6
std::optional<geometry_msgs::Quaternion_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::Quaternion_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::Quaternion_<std::allocator<void> > const&)6
std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> > mrs_lib::Transformer::transform<Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)6
std::optional<geometry_msgs::Point_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::Point_<std::allocator<void> > >(geometry_msgs::Point_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)16
std::optional<geometry_msgs::Point_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::Point_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::Point_<std::allocator<void> > const&)16
std::optional<geometry_msgs::Vector3_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)18
std::optional<geometry_msgs::Vector3_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::Vector3_<std::allocator<void> > const&)18
std::optional<geometry_msgs::Vector3Stamped_<std::allocator<void> > > mrs_lib::Transformer::transform<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)477
std::optional<mrs_msgs::ReferenceStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_msgs::ReferenceStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)21289
std::optional<mrs_msgs::ReferenceStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)21289
std_msgs::Header_<std::allocator<void> > mrs_lib::Transformer::getHeader<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)21289
geometry_msgs::PointStamped_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::PointStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)22642
void mrs_lib::Transformer::setHeader<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::PointStamped_<std::allocator<void> >&, std_msgs::Header_<std::allocator<void> > const&)22642
std::optional<geometry_msgs::PoseStamped_<std::allocator<void> > > mrs_lib::Transformer::transform<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)87517
std::optional<mrs_msgs::ReferenceStamped_<std::allocator<void> > > mrs_lib::Transformer::transform<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)88703
geometry_msgs::PoseStamped_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)152857
void mrs_lib::Transformer::setHeader<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> >&, std_msgs::Header_<std::allocator<void> > const&)152857
std::optional<geometry_msgs::PointStamped_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::PointStamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)207031
std::optional<geometry_msgs::PointStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::PointStamped_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, geometry_msgs::PointStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)229367
std::optional<geometry_msgs::PointStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::PointStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)229653
std::optional<geometry_msgs::PointStamped_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::PointStamped_<std::allocator<void> > const&)229672
std_msgs::Header_<std::allocator<void> > mrs_lib::Transformer::getHeader<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::PointStamped_<std::allocator<void> > const&)252297
std::optional<geometry_msgs::PoseStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)572624
std::optional<geometry_msgs::PoseStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::PoseStamped_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, geometry_msgs::PoseStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)573137
std::optional<geometry_msgs::PoseStamped_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)607263
std::optional<geometry_msgs::Vector3Stamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)701564
std::optional<geometry_msgs::Vector3Stamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)701618
std_msgs::Header_<std::allocator<void> > mrs_lib::Transformer::getHeader<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&)701702
std::optional<geometry_msgs::Vector3Stamped_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)702269
std::optional<geometry_msgs::Vector3Stamped_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::Vector3Stamped_<std::allocator<void> > const&)702269
std_msgs::Header_<std::allocator<void> > mrs_lib::Transformer::getHeader<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> > const&)725617
std::optional<geometry_msgs::PoseStamped_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::PoseStamped_<std::allocator<void> > const&)760119
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Current view:top level - mrs_lib/include/mrs_lib/impl - transformer.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:556485.9 %
Date:2024-04-17 23:52:03Functions:404883.3 %
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Function Name Sort by function nameHit count Sort by hit count
std::optional<geometry_msgs::Quaternion_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::Quaternion_<std::allocator<void> > >(geometry_msgs::Quaternion_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)6
std::optional<geometry_msgs::PoseStamped_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)607263
std::optional<geometry_msgs::PointStamped_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::PointStamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)207031
std::optional<geometry_msgs::Vector3Stamped_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)702269
std::optional<geometry_msgs::Point_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::Point_<std::allocator<void> > >(geometry_msgs::Point_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)16
std::optional<geometry_msgs::Vector3_<std::allocator<void> > > mrs_lib::Transformer::doTransform<geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)18
std::optional<cv::Point3_<double> > mrs_lib::Transformer::doTransform<cv::Point3_<double> >(cv::Point3_<double> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)1
std::optional<Eigen::Quaternion<double, 0> > mrs_lib::Transformer::doTransform<Eigen::Quaternion<double, 0> >(Eigen::Quaternion<double, 0> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)0
std::optional<geometry_msgs::Quaternion_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::Quaternion_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::Quaternion_<std::allocator<void> > const&)6
std::optional<geometry_msgs::PoseStamped_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::PoseStamped_<std::allocator<void> > const&)760119
std::optional<geometry_msgs::PointStamped_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::PointStamped_<std::allocator<void> > const&)229672
std::optional<geometry_msgs::Vector3Stamped_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::Vector3Stamped_<std::allocator<void> > const&)702269
std::optional<geometry_msgs::Point_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::Point_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::Point_<std::allocator<void> > const&)16
std::optional<geometry_msgs::Vector3_<std::allocator<void> > > mrs_lib::Transformer::transformImpl<geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, geometry_msgs::Vector3_<std::allocator<void> > const&)18
std::optional<cv::Point3_<double> > mrs_lib::Transformer::transformImpl<cv::Point3_<double> >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, cv::Point3_<double> const&)1
std::optional<Eigen::Quaternion<double, 0> > mrs_lib::Transformer::transformImpl<Eigen::Quaternion<double, 0> >(geometry_msgs::TransformStamped_<std::allocator<void> > const&, Eigen::Quaternion<double, 0> const&)2
geometry_msgs::Quaternion_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::Quaternion_<std::allocator<void> > >(geometry_msgs::Quaternion_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
geometry_msgs::PoseStamped_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)152857
geometry_msgs::PointStamped_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::PointStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)22642
geometry_msgs::Vector3Stamped_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
geometry_msgs::Point_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::Point_<std::allocator<void> > >(geometry_msgs::Point_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::Transformer::copyChangeFrame<geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
cv::Point3_<double> mrs_lib::Transformer::copyChangeFrame<cv::Point3_<double> >(cv::Point3_<double> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
Eigen::Quaternion<double, 0> mrs_lib::Transformer::copyChangeFrame<Eigen::Quaternion<double, 0> >(Eigen::Quaternion<double, 0> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
std::optional<geometry_msgs::Quaternion_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::Quaternion_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, geometry_msgs::Quaternion_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)1
std::optional<geometry_msgs::PoseStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::PoseStamped_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, geometry_msgs::PoseStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)573137
std::optional<geometry_msgs::PoseStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)572624
std::optional<geometry_msgs::PointStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::PointStamped_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, geometry_msgs::PointStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)229367
std::optional<geometry_msgs::PointStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::PointStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)229653
std::optional<geometry_msgs::Vector3Stamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)701564
std::optional<geometry_msgs::Vector3Stamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)701618
std::optional<mrs_msgs::ReferenceStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_msgs::ReferenceStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)21289
std::optional<mrs_msgs::ReferenceStamped_<std::allocator<void> > > mrs_lib::Transformer::transformSingle<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)21289
std_msgs::Header_<std::allocator<void> > mrs_lib::Transformer::getHeader<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> > const&)725617
std_msgs::Header_<std::allocator<void> > mrs_lib::Transformer::getHeader<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::PointStamped_<std::allocator<void> > const&)252297
std_msgs::Header_<std::allocator<void> > mrs_lib::Transformer::getHeader<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&)701702
std_msgs::Header_<std::allocator<void> > mrs_lib::Transformer::getHeader<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)21289
void mrs_lib::Transformer::setHeader<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> >&, std_msgs::Header_<std::allocator<void> > const&)152857
void mrs_lib::Transformer::setHeader<geometry_msgs::PointStamped_<std::allocator<void> > >(geometry_msgs::PointStamped_<std::allocator<void> >&, std_msgs::Header_<std::allocator<void> > const&)22642
void mrs_lib::Transformer::setHeader<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> >&, std_msgs::Header_<std::allocator<void> > const&)0
std::optional<geometry_msgs::Quaternion_<std::allocator<void> > > mrs_lib::Transformer::transform<geometry_msgs::Quaternion_<std::allocator<void> > >(geometry_msgs::Quaternion_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)5
std::optional<geometry_msgs::PoseStamped_<std::allocator<void> > > mrs_lib::Transformer::transform<geometry_msgs::PoseStamped_<std::allocator<void> > >(geometry_msgs::PoseStamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)87517
std::optional<geometry_msgs::Vector3Stamped_<std::allocator<void> > > mrs_lib::Transformer::transform<geometry_msgs::Vector3Stamped_<std::allocator<void> > >(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)477
std::optional<geometry_msgs::Point_<std::allocator<void> > > mrs_lib::Transformer::transform<geometry_msgs::Point_<std::allocator<void> > >(geometry_msgs::Point_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)4
std::optional<cv::Point3_<double> > mrs_lib::Transformer::transform<cv::Point3_<double> >(cv::Point3_<double> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)1
std::optional<Eigen::Quaternion<double, 0> > mrs_lib::Transformer::transform<Eigen::Quaternion<double, 0> >(Eigen::Quaternion<double, 0> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)2
std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> > mrs_lib::Transformer::transform<Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)6
std::optional<mrs_msgs::ReferenceStamped_<std::allocator<void> > > mrs_lib::Transformer::transform<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)88703
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Generated by: LCOV version 1.14
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Current view:top level - mrs_lib/include/mrs_lib/impl - transformer.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:556485.9 %
Date:2024-04-17 23:52:03Functions:404883.3 %
Legend: Lines: + hit + not hit +
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          Line data    Source code
+
+       1             : #ifndef TRANSFORMER_HPP
+       2             : #define TRANSFORMER_HPP
+       3             : 
+       4             : // clang: MatousFormat
+       5             : 
+       6             : namespace mrs_lib
+       7             : {
+       8             : 
+       9             :   // | --------------------- helper methods --------------------- |
+      10             : 
+      11             :   /* getHeader() overloads for different message types (pointers, pointclouds etc) //{ */
+      12             : 
+      13             :   template <typename msg_t>
+      14     1700905 :   std_msgs::Header Transformer::getHeader(const msg_t& msg)
+      15             :   {
+      16     1700905 :     return msg.header;
+      17             :   }
+      18             : 
+      19             :   template <typename pt_t>
+      20             :   std_msgs::Header Transformer::getHeader(const pcl::PointCloud<pt_t>& cloud)
+      21             :   {
+      22             :     std_msgs::Header ret;
+      23             :     pcl_conversions::fromPCL(cloud.header, ret);
+      24             :     return ret;
+      25             :   }
+      26             : 
+      27             :   //}
+      28             : 
+      29             :   /* setHeader() overloads for different message types (pointers, pointclouds etc) //{ */
+      30             : 
+      31             :   template <typename msg_t>
+      32      175499 :   void Transformer::setHeader(msg_t& msg, const std_msgs::Header& header)
+      33             :   {
+      34      175499 :     msg.header = header;
+      35      175499 :   }
+      36             : 
+      37             :   template <typename pt_t>
+      38             :   void Transformer::setHeader(pcl::PointCloud<pt_t>& cloud, const std_msgs::Header& header)
+      39             :   {
+      40             :     pcl_conversions::toPCL(header, cloud.header);
+      41             :   }
+      42             : 
+      43             :   //}
+      44             : 
+      45             :   /* copyChangeFrame() helper function //{ */
+      46             : 
+      47             :   template <typename T>
+      48      175499 :   T Transformer::copyChangeFrame(const T& what, const std::string& frame_id)
+      49             :   {
+      50      175499 :     T ret = what;
+      51             :     if constexpr (has_header_member_v<T>)
+      52             :     {
+      53      350998 :       std_msgs::Header new_header = getHeader(what);
+      54      175499 :       new_header.frame_id = frame_id;
+      55      175499 :       setHeader(ret, new_header);
+      56             :     }
+      57      175499 :     return ret;
+      58             :   }
+      59             : 
+      60             :   //}
+      61             : 
+      62             :   /* transformImpl() //{ */
+      63             : 
+      64             :   template <class T>
+      65     1692103 :   std::optional<T> Transformer::transformImpl(const geometry_msgs::TransformStamped& tf, const T& what)
+      66             :   {
+      67     3384190 :     const std::string from_frame = frame_from(tf);
+      68     3384158 :     const std::string to_frame = frame_to(tf);
+      69             : 
+      70     1692093 :     if (from_frame == to_frame)
+      71      175499 :       return copyChangeFrame(what, from_frame);
+      72             : 
+      73     3033191 :     const std::string latlon_frame_name = resolveFrameImpl(LATLON_ORIGIN);
+      74             : 
+      75             :     // First, check if the transformation is from/to the latlon frame
+      76             :     // if conversion between UVM and LatLon coordinates is defined for this message, it may be resolved
+      77             :     if constexpr (UTMLL_exists_v<Transformer, T>)
+      78             :     {
+      79             :       // check for transformation from LAT-LON GPS
+      80      814308 :       if (from_frame == latlon_frame_name)
+      81             :       {
+      82           2 :         const std::optional<T> tmp = LLtoUTM(what, getFramePrefix(from_frame));
+      83           2 :         if (!tmp.has_value())
+      84           0 :           return std::nullopt;
+      85           2 :         return doTransform(tmp.value(), tf);
+      86             :       }
+      87             :       // check for transformation to LAT-LON GPS
+      88      814305 :       else if (to_frame == latlon_frame_name)
+      89             :       {
+      90        3824 :         const std::optional<T> tmp = doTransform(what, tf);
+      91        1913 :         if (!tmp.has_value())
+      92           0 :           return std::nullopt;
+      93        1913 :         return UTMtoLL(tmp.value(), getFramePrefix(to_frame));
+      94             :       }
+      95             :     }
+      96             :     else
+      97             :     {
+      98             :       // by default, transformation from/to LATLON is undefined, so return nullopt if it's attempted
+      99      702297 :       if (from_frame == latlon_frame_name || to_frame == latlon_frame_name)
+     100             :       {
+     101           2 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[" << node_name_ << "]: Transformer: cannot transform message of this type (" << typeid(T).name() << ") to/from latitude/longitude coordinates!");
+     102           2 :         return std::nullopt;
+     103             :       }
+     104             :     }
+     105             : 
+     106             :     // otherwise it's just an ol' borin' transformation
+     107     1514691 :     return doTransform(what, tf);
+     108             :   }
+     109             : 
+     110             :   //}
+     111             : 
+     112             :   /* doTransform() //{ */
+     113             : 
+     114             :   template <class T>
+     115     1516604 :   std::optional<T> Transformer::doTransform(const T& what, const geometry_msgs::TransformStamped& tf)
+     116             :   {
+     117             :     try
+     118             :     {
+     119     3033110 :       T result;
+     120     1516583 :       tf2::doTransform(what, result, tf);
+     121     1516594 :       return result;
+     122             :     }
+     123           0 :     catch (tf2::TransformException& ex)
+     124             :     {
+     125           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: Transformer: Error during transform from \"%s\" frame to \"%s\" frame.\n\tMSG: %s", node_name_.c_str(), frame_from(tf).c_str(),
+     126             :                         frame_to(tf).c_str(), ex.what());
+     127           0 :       return std::nullopt;
+     128             :     }
+     129             :   }
+     130             : 
+     131             :   //}
+     132             : 
+     133             :   // | ------------------ user-callable methods ----------------- |
+     134             : 
+     135             :   /* transformSingle() //{ */
+     136             : 
+     137             :   template <class T>
+     138     1525184 :   std::optional<T> Transformer::transformSingle(const T& what, const std::string& to_frame_raw)
+     139             :   {
+     140     3051485 :     const std_msgs::Header orig_header = getHeader(what);
+     141     3051028 :     return transformSingle(orig_header.frame_id, what, to_frame_raw, orig_header.stamp);
+     142             :   }
+     143             : 
+     144             :   template <class T>
+     145     1525358 :   std::optional<T> Transformer::transformSingle(const std::string& from_frame_raw, const T& what, const std::string& to_frame_raw, const ros::Time& time_stamp)
+     146             :   {
+     147     3051651 :     std::scoped_lock lck(mutex_);
+     148             : 
+     149     1526319 :     if (!initialized_)
+     150             :     {
+     151           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Transformer: cannot transform, not initialized", node_name_.c_str());
+     152           0 :       return std::nullopt;
+     153             :     }
+     154             : 
+     155     3052605 :     const std::string from_frame = resolveFrameImpl(from_frame_raw);
+     156     3052576 :     const std::string to_frame = resolveFrameImpl(to_frame_raw);
+     157     3052585 :     const std::string latlon_frame = resolveFrameImpl(LATLON_ORIGIN);
+     158             : 
+     159             :     // get the transform
+     160     3052601 :     const auto tf_opt = getTransformImpl(from_frame, to_frame, time_stamp, latlon_frame);
+     161     1526320 :     if (!tf_opt.has_value())
+     162       10952 :       return std::nullopt;
+     163     1515338 :     const geometry_msgs::TransformStamped& tf = tf_opt.value();
+     164             : 
+     165             :     // do the transformation
+     166     3030692 :     const geometry_msgs::TransformStamped tf_resolved = create_transform(from_frame, to_frame, tf.header.stamp, tf.transform);
+     167     1515353 :     return transformImpl(tf_resolved, what);
+     168             :   }
+     169             : 
+     170             :   //}
+     171             : 
+     172             :   /* transform() //{ */
+     173             : 
+     174             :   template <class T>
+     175      176715 :   std::optional<T> Transformer::transform(const T& what, const geometry_msgs::TransformStamped& tf)
+     176             :   {
+     177      353430 :     std::scoped_lock lck(mutex_);
+     178             : 
+     179      176715 :     if (!initialized_)
+     180             :     {
+     181           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Transformer: cannot transform, not initialized", node_name_.c_str());
+     182           0 :       return std::nullopt;
+     183             :     }
+     184             : 
+     185      353430 :     const std::string from_frame = resolveFrameImpl(frame_from(tf));
+     186      353430 :     const std::string to_frame = resolveFrameImpl(frame_to(tf));
+     187      353430 :     const geometry_msgs::TransformStamped tf_resolved = create_transform(from_frame, to_frame, tf.header.stamp, tf.transform);
+     188             : 
+     189      176715 :     return transformImpl(tf_resolved, what);
+     190             :   }
+     191             : 
+     192             :   /* //} */
+     193             : 
+     194             : }
+     195             : 
+     196             : #endif // TRANSFORMER_HPP
+
+
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Current view:top level - mrs_lib/include/mrs_lib/impl - ukf.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:7710474.0 %
Date:2024-04-17 23:52:03Functions:81266.7 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::UKF<4, 1, 2>::setConstants(double, double, double)0
mrs_lib::UKF<4, 1, 2>::setTransitionModel(std::function<Eigen::Matrix<double, 4, 1, 0, 4, 1> (Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, double)> const&)0
mrs_lib::UKF<4, 1, 2>::setObservationModel(std::function<Eigen::Matrix<double, 2, 1, 0, 2, 1> (Eigen::Matrix<double, 4, 1, 0, 4, 1> const&)> const&)0
mrs_lib::UKF<4, 1, 2>::UKF()0
mrs_lib::UKF<4, 1, 2>::computeWeights()1
mrs_lib::UKF<4, 1, 2>::UKF(std::function<Eigen::Matrix<double, 4, 1, 0, 4, 1> (Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, double)> const&, std::function<Eigen::Matrix<double, 2, 1, 0, 2, 1> (Eigen::Matrix<double, 4, 1, 0, 4, 1> const&)> const&, double, double, double)1
mrs_lib::UKF<4, 1, 2>::computeInverse(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&) const100
mrs_lib::UKF<4, 1, 2>::computeKalmanGain(Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 4, 2, 0, 4, 2> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&) const100
mrs_lib::UKF<4, 1, 2>::correct(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&) const100
mrs_lib::UKF<4, 1, 2>::predict(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, double) const100
mrs_lib::UKF<4, 1, 2>::computePaSqrt(Eigen::Matrix<double, 4, 4, 0, 4, 4> const&) const200
mrs_lib::UKF<4, 1, 2>::computeSigmas(Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 4, 4, 0, 4, 4> const&) const200
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+ + + diff --git a/mrs_lib/include/mrs_lib/impl/ukf.hpp.func.html b/mrs_lib/include/mrs_lib/impl/ukf.hpp.func.html new file mode 100644 index 0000000000..e0aea1d7aa --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/ukf.hpp.func.html @@ -0,0 +1,128 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/ukf.hpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/impl - ukf.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:7710474.0 %
Date:2024-04-17 23:52:03Functions:81266.7 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::UKF<4, 1, 2>::setConstants(double, double, double)0
mrs_lib::UKF<4, 1, 2>::computeWeights()1
mrs_lib::UKF<4, 1, 2>::setTransitionModel(std::function<Eigen::Matrix<double, 4, 1, 0, 4, 1> (Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, double)> const&)0
mrs_lib::UKF<4, 1, 2>::setObservationModel(std::function<Eigen::Matrix<double, 2, 1, 0, 2, 1> (Eigen::Matrix<double, 4, 1, 0, 4, 1> const&)> const&)0
mrs_lib::UKF<4, 1, 2>::UKF(std::function<Eigen::Matrix<double, 4, 1, 0, 4, 1> (Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, double)> const&, std::function<Eigen::Matrix<double, 2, 1, 0, 2, 1> (Eigen::Matrix<double, 4, 1, 0, 4, 1> const&)> const&, double, double, double)1
mrs_lib::UKF<4, 1, 2>::UKF()0
mrs_lib::UKF<4, 1, 2>::computePaSqrt(Eigen::Matrix<double, 4, 4, 0, 4, 4> const&) const200
mrs_lib::UKF<4, 1, 2>::computeSigmas(Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 4, 4, 0, 4, 4> const&) const200
mrs_lib::UKF<4, 1, 2>::computeInverse(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&) const100
mrs_lib::UKF<4, 1, 2>::computeKalmanGain(Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 4, 2, 0, 4, 2> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&) const100
mrs_lib::UKF<4, 1, 2>::correct(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&) const100
mrs_lib::UKF<4, 1, 2>::predict(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, double) const100
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Current view:top level - mrs_lib/include/mrs_lib/impl - ukf.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:7710474.0 %
Date:2024-04-17 23:52:03Functions:81266.7 %
Legend: Lines: + hit + not hit +
+
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+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : 
+       3             : #ifndef UKF_HPP
+       4             : #define UKF_HPP
+       5             : 
+       6             : /**  \file
+       7             :      \brief Implements UKF - a class implementing the Unscented Kalman Filter.
+       8             :      \author Tomáš Báča - bacatoma@fel.cvut.cz (original implementation)
+       9             :      \author Matouš Vrba - vrbamato@fel.cvut.cz (rewrite, documentation)
+      10             :  */
+      11             : 
+      12             : #include <ros/ros.h>
+      13             : #include <mrs_lib/ukf.h>
+      14             : 
+      15             : namespace mrs_lib
+      16             : {
+      17             :   /* constructor //{ */
+      18             : 
+      19             :   template <int n_states, int n_inputs, int n_measurements>
+      20           0 :   UKF<n_states, n_inputs, n_measurements>::UKF()
+      21             :   {
+      22           0 :   }
+      23             : 
+      24             :   template <int n_states, int n_inputs, int n_measurements>
+      25           1 :   UKF<n_states, n_inputs, n_measurements>::UKF(const transition_model_t& transition_model, const observation_model_t& observation_model, const double alpha, const double kappa, const double beta)
+      26           1 :     : m_alpha(alpha), m_kappa(kappa), m_beta(beta), m_Wm(W_t::Zero()), m_Wc(W_t::Zero()), m_transition_model(transition_model), m_observation_model(observation_model)
+      27             :   {
+      28           1 :     assert(alpha > 0.0);
+      29           1 :     computeWeights();
+      30           1 :   }
+      31             : 
+      32             :   //}
+      33             : 
+      34             :   /* computeWeights() //{ */
+      35             : 
+      36             :   template <int n_states, int n_inputs, int n_measurements>
+      37           1 :   void UKF<n_states, n_inputs, n_measurements>::computeWeights()
+      38             :   {
+      39             :     // initialize lambda
+      40             :     /* m_lambda = double(n) * (m_alpha * m_alpha - 1.0); */
+      41           1 :     m_lambda = m_alpha*m_alpha*(double(n) + m_kappa) - double(n);
+      42             : 
+      43             :     // initialize first terms of the weights
+      44           1 :     m_Wm(0) = m_lambda / (double(n) + m_lambda);
+      45           1 :     m_Wc(0) = m_Wm(0) + (1.0 - m_alpha*m_alpha + m_beta);
+      46             : 
+      47             :     // initialize the rest of the weights
+      48           9 :     for (int i = 1; i < w; i++)
+      49             :     {
+      50           8 :       m_Wm(i) = (1.0 - m_Wm(0))/(w - 1.0);
+      51           8 :       m_Wc(i) = m_Wm(i);
+      52             :     }
+      53           1 :   }
+      54             : 
+      55             :   //}
+      56             : 
+      57             :   /* setConstants() //{ */
+      58             : 
+      59             :   template <int n_states, int n_inputs, int n_measurements>
+      60             :   // update the UKF constants
+      61           0 :   void UKF<n_states, n_inputs, n_measurements>::setConstants(const double alpha, const double kappa, const double beta)
+      62             :   {
+      63           0 :     m_alpha = alpha;
+      64           0 :     m_kappa = kappa;
+      65           0 :     m_beta  = beta;
+      66             : 
+      67           0 :     computeWeights();
+      68           0 :   }
+      69             : 
+      70             :   //}
+      71             : 
+      72             :     /* setTransitionModel() method //{ */
+      73             : 
+      74             :     template <int n_states, int n_inputs, int n_measurements>
+      75           0 :     void UKF<n_states, n_inputs, n_measurements>::setTransitionModel(const transition_model_t& transition_model)
+      76             :     {
+      77           0 :       m_transition_model = transition_model;
+      78           0 :     }
+      79             : 
+      80             :     //}
+      81             : 
+      82             :     /* setObservationModel() method //{ */
+      83             : 
+      84             :     template <int n_states, int n_inputs, int n_measurements>
+      85           0 :     void UKF<n_states, n_inputs, n_measurements>::setObservationModel(const observation_model_t& observation_model)
+      86             :     {
+      87           0 :       m_observation_model = observation_model;
+      88           0 :     }
+      89             : 
+      90             :     //}
+      91             : 
+      92             :   /* computePaSqrt() method //{ */
+      93             :   template <int n_states, int n_inputs, int n_measurements>
+      94         200 :   typename UKF<n_states, n_inputs, n_measurements>::P_t UKF<n_states, n_inputs, n_measurements>::computePaSqrt(const P_t& P) const
+      95             :   {
+      96             :     // calculate the square root of the covariance matrix
+      97         200 :     const P_t Pa = (double(n) + m_lambda)*P;
+      98             : 
+      99             :     /* Eigen::SelfAdjointEigenSolver<P_t> es(Pa); */
+     100         200 :     Eigen::LLT<P_t> llt(Pa);
+     101         200 :     if (llt.info() != Eigen::Success)
+     102             :     {
+     103           0 :       P_t tmp = Pa + (double(n) + m_lambda)*1e-9*P_t::Identity();
+     104           0 :       llt.compute(tmp);
+     105           0 :       if (llt.info() != Eigen::Success)
+     106             :       {
+     107           0 :         ROS_WARN("UKF: taking the square root of covariance during sigma point generation failed.");
+     108           0 :         throw square_root_exception();
+     109             :       }
+     110             :     }
+     111             : 
+     112         200 :     const P_t Pa_sqrt = llt.matrixL();
+     113         400 :     return Pa_sqrt;
+     114             :   }
+     115             :   //}
+     116             : 
+     117             :   /* computeInverse() method //{ */
+     118             :   template <int n_states, int n_inputs, int n_measurements>
+     119         100 :   typename UKF<n_states, n_inputs, n_measurements>::Pzz_t UKF<n_states, n_inputs, n_measurements>::computeInverse(const Pzz_t& Pzz) const
+     120             :   {
+     121         100 :     Eigen::ColPivHouseholderQR<Pzz_t> qr(Pzz);
+     122         100 :     if (!qr.isInvertible())
+     123             :     {
+     124             :       // add some stuff to the tmp matrix diagonal to make it invertible
+     125           0 :       Pzz_t tmp = Pzz + 1e-9*Pzz_t::Identity(Pzz.rows(), Pzz.cols());
+     126           0 :       qr.compute(tmp);
+     127           0 :       if (!qr.isInvertible())
+     128             :       {
+     129             :         // never managed to make this happen except for explicitly putting NaNs in the input
+     130           0 :         ROS_ERROR("UKF: could not compute matrix inversion!!! Fix your covariances (the measurement's is probably too low...)");
+     131           0 :         throw inverse_exception();
+     132             :       }
+     133           0 :       ROS_WARN("UKF: artificially inflating matrix for inverse computation! Check your covariances (the measurement's might be too low...)");
+     134             :     }
+     135         100 :     Pzz_t ret = qr.inverse();
+     136         200 :     return ret;
+     137             :   }
+     138             :   //}
+     139             : 
+     140             :   /* computeKalmanGain() method //{ */
+     141             :   template <int n_states, int n_inputs, int n_measurements>
+     142         100 :   typename UKF<n_states, n_inputs, n_measurements>::K_t UKF<n_states, n_inputs, n_measurements>::computeKalmanGain([[maybe_unused]] const x_t& x, [[maybe_unused]] const z_t& inn, const K_t& Pxz, const Pzz_t& Pzz) const
+     143             :   {
+     144         100 :     const Pzz_t Pzz_inv = computeInverse(Pzz);
+     145         100 :     const K_t K = Pxz * Pzz_inv;
+     146         200 :     return K;
+     147             :   }
+     148             :   //}
+     149             : 
+     150             :   /* computeSigmas() method //{ */
+     151             :   template <int n_states, int n_inputs, int n_measurements>
+     152         200 :   typename UKF<n_states, n_inputs, n_measurements>::X_t UKF<n_states, n_inputs, n_measurements>::computeSigmas(const x_t& x, const P_t& P) const
+     153             :   {
+     154             :     // calculate sigma points
+     155             :     // fill in the middle of the elipsoid
+     156         200 :     X_t S;
+     157         200 :     S.col(0) = x;
+     158             : 
+     159         200 :     const P_t P_sqrt = computePaSqrt(P);
+     160         200 :     const auto xrep = x.replicate(1, n);
+     161             : 
+     162             :     // positive sigma points
+     163         200 :     S.template block<n, n>(0, 1) = xrep + P_sqrt;
+     164             : 
+     165             :     // negative sigma points
+     166         200 :     S.template block<n, n>(0, n+1) = xrep - P_sqrt;
+     167             : 
+     168             :     /* std::cout << "x: " << std::endl << x << std::endl; */
+     169             :     /* std::cout << "S rowmean: " << std::endl << S.rowwise().mean() << std::endl; */
+     170             : 
+     171         400 :     return S;
+     172             :   }
+     173             :   //}
+     174             : 
+     175             :   /* predict() method //{ */
+     176             : 
+     177             :   template <int n_states, int n_inputs, int n_measurements>
+     178         100 :   typename UKF<n_states, n_inputs, n_measurements>::statecov_t UKF<n_states, n_inputs, n_measurements>::predict(const statecov_t& sc, const u_t& u, const Q_t& Q, double dt) const
+     179             :   {
+     180         100 :     const auto& x = sc.x;
+     181         100 :     const auto& P = sc.P;
+     182         100 :     statecov_t ret;
+     183             : 
+     184         100 :     const X_t S = computeSigmas(x, P);
+     185             : 
+     186             :     // propagate sigmas through the transition model
+     187         100 :     X_t X;
+     188        1000 :     for (int i = 0; i < w; i++)
+     189             :     {
+     190         900 :       X.col(i) = m_transition_model(S.col(i), u, dt);
+     191             :     }
+     192             : 
+     193             :     /* std::cout << "x: " << std::endl << x << std::endl; */
+     194             :     /* std::cout << "X rowmean: " << std::endl << X.rowwise().mean() << std::endl; */
+     195             :     /* std::cout << "m_Wm sum: " << m_Wm.sum() << std::endl; */
+     196             : 
+     197             :     // recompute the state vector
+     198         100 :     ret.x = x_t::Zero();
+     199        1000 :     for (int i = 0; i < w; i++)
+     200             :     {
+     201             :       //TODO: WHY DOES THIS SHIT WORK IF I SUBSTITUTE m_Wm(i) FOR 1.0/w ??
+     202         900 :       x_t tmp = 1.0/w * X.col(i);
+     203             :       /* x_t tmp = m_Wm(i) * X.col(i); */
+     204         900 :       ret.x += tmp;
+     205             :     }
+     206             : 
+     207             :     // recompute the covariance
+     208         100 :     ret.P = P_t::Zero();
+     209        1000 :     for (int i = 0; i < w; i++)
+     210             :     {
+     211         900 :       ret.P += m_Wc(i) * (X.col(i) - ret.x) * (X.col(i) - ret.x).transpose();
+     212             :     }
+     213         100 :     ret.P += Q;
+     214             : 
+     215         200 :     return ret;
+     216             :   }
+     217             : 
+     218             :   //}
+     219             : 
+     220             :   /* correct() method //{ */
+     221             : 
+     222             :   template <int n_states, int n_inputs, int n_measurements>
+     223         100 :   typename UKF<n_states, n_inputs, n_measurements>::statecov_t UKF<n_states, n_inputs, n_measurements>::correct(const statecov_t& sc, const z_t& z, const R_t& R) const
+     224             :   {
+     225         100 :     const auto& x = sc.x;
+     226         100 :     const auto& P = sc.P;
+     227         100 :     const X_t S = computeSigmas(x, P);
+     228             : 
+     229             :     // propagate sigmas through the observation model
+     230         100 :     Z_t Z_exp(z.rows(), w);
+     231        1000 :     for (int i = 0; i < w; i++)
+     232             :     {
+     233         900 :       Z_exp.col(i) = m_observation_model(S.col(i));
+     234             :     }
+     235             : 
+     236             :     // compute expected measurement
+     237         100 :     z_t z_exp = z_t::Zero(z.rows());
+     238        1000 :     for (int i = 0; i < w; i++)
+     239             :     {
+     240         900 :       z_exp += m_Wm(i) * Z_exp.col(i);
+     241             :     }
+     242             : 
+     243             :     // compute the covariance of measurement
+     244         100 :     Pzz_t Pzz = Pzz_t::Zero(z.rows(), z.rows());
+     245        1000 :     for (int i = 0; i < w; i++)
+     246             :     {
+     247         900 :       Pzz += m_Wc(i) * (Z_exp.col(i) - z_exp) * (Z_exp.col(i) - z_exp).transpose();
+     248             :     }
+     249         100 :     Pzz += R;
+     250             : 
+     251             :     // compute cross covariance
+     252         100 :     K_t Pxz = K_t::Zero(n, z.rows());
+     253        1000 :     for (int i = 0; i < w; i++)
+     254             :     {
+     255         900 :       Pxz += m_Wc(i) * (S.col(i) - x) * (Z_exp.col(i) - z_exp).transpose();
+     256             :     }
+     257             : 
+     258             :     // compute Kalman gain
+     259         100 :     const z_t inn = (z - z_exp); // innovation
+     260         100 :     const K_t K = computeKalmanGain(sc.x, inn, Pxz, Pzz);
+     261             : 
+     262             :     // check whether the inverse produced valid numbers
+     263         100 :     if (!K.array().isFinite().all())
+     264             :     {
+     265           0 :       ROS_ERROR("UKF: inverting of Pzz in correction update produced non-finite numbers!!! Fix your covariances (the measurement's is probably too low...)");
+     266           0 :       throw inverse_exception();
+     267             :     }
+     268             : 
+     269             :     // correct
+     270         100 :     statecov_t ret;
+     271         100 :     ret.x = x + K * inn;
+     272         100 :     ret.P = P - K * Pzz * K.transpose();
+     273         200 :     return ret;
+     274             :   }
+     275             : 
+     276             :   //}
+     277             : 
+     278             : }  // namespace mrs_lib
+     279             : 
+     280             : #endif
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + diff --git a/mrs_lib/include/mrs_lib/impl/ukf.hpp.gcov.png b/mrs_lib/include/mrs_lib/impl/ukf.hpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..1d33d5b3039a981579bb4f50a9c00a2c8709ad9b GIT binary patch literal 1198 zcmV;f1X25mP)Y@{;Pb0B(89X1lp$WlRn3FWZf6Cw_WVJ+}+ydtQ`=_ zd4PPgbS9hXQz+oPx)ki&7 z-lQE#rEk)z9uGELd87|74GK~T#|W?+u3XZe6t2^vl^w1d^jri}M|c;c3rf)C56QZq zP>s|XTiZ;bsJ#Vv-hdqz_$BTdbHN)i=DQZ)l5v>`+*`m1a!FMX_`s(SmpO- zp$vyfR|C*SHhH6}0WwL`B(6KO!^))|7!eAY$hGhdq-(Utn_=63OFES_bj!U50C8YR z|N7J=_cr$>VLl@P%-P){#tAJ~{L6R_w;t2FXAF>2UxyPws4?ZRe#OISm*?A}%rGNq zZ^^7Vo9;iJkq`B_Y=@kl0KzY}Aw>xP^-|D;VL_|NIq#{C2ogQcHsOZP_(abshj)TrRs^3 zRDJ%qOg&hws;@$&LlQi$D@$mg=^NrpvL6ojS`Pb^=MJ& zI<$0_Mxku)5@`mY@u80@ds!ioK4>QJ-s>hI8lqjf%z4bxSXJQzPkg@O>F7ldYVaim ze6B)6>E3j9;8EqM3Hx9J`$AVSoejBw%?C7ptCNz#zfL;|HFrYu4`1RPbHQ`N;s5{u M07*qoM6N<$f)tiG*8l(j literal 0 HcmV?d00001 diff --git a/mrs_lib/include/mrs_lib/impl/vector_converter.hpp.func-sort-c.html b/mrs_lib/include/mrs_lib/impl/vector_converter.hpp.func-sort-c.html new file mode 100644 index 0000000000..44ca691bd8 --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/vector_converter.hpp.func-sort-c.html @@ -0,0 +1,152 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/vector_converter.hpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/impl - vector_converter.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1818100.0 %
Date:2024-04-17 23:52:03Functions:1818100.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::impl::convertTo<geometry_msgs::Vector3_<std::allocator<void> > >(double, double, double)8
cv::Vec<double, 3> mrs_lib::impl::convertTo<cv::Vec<double, 3> >(double, double, double)8
cv::Vec<float, 3> mrs_lib::impl::convertTo<cv::Vec<float, 3> >(double, double, double)8
pcl::PointXYZ mrs_lib::impl::convertTo<pcl::PointXYZ>(double, double, double)8
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::impl::convertTo<Eigen::Matrix<double, 3, 1, 0, 3, 1> >(double, double, double)8
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::impl::convertTo<Eigen::Matrix<float, 3, 1, 0, 3, 1> >(double, double, double)8
std::enable_if<has_xmem_v<geometry_msgs::Vector3_<std::allocator<void> > >, std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)14
std::enable_if<(has_squarebracket_operator_v<cv::Vec<double, 3> >)&&(!(has_xfun_v<cv::Vec<double, 3> >)), std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<cv::Vec<double, 3> >(cv::Vec<double, 3> const&)14
std::enable_if<(has_squarebracket_operator_v<cv::Vec<float, 3> >)&&(!(has_xfun_v<cv::Vec<float, 3> >)), std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<cv::Vec<float, 3> >(cv::Vec<float, 3> const&)14
std::enable_if<has_xmem_v<pcl::PointXYZ>, std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<pcl::PointXYZ>(pcl::PointXYZ const&)14
std::enable_if<has_xfun_v<Eigen::Matrix<double, 3, 1, 0, 3, 1> >, std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)14
std::enable_if<has_xfun_v<Eigen::Matrix<float, 3, 1, 0, 3, 1> >, std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)14
std::enable_if<(!(has_xyz_constructor_v<geometry_msgs::Vector3_<std::allocator<void> > >))&&(has_xmem_v<geometry_msgs::Vector3_<std::allocator<void> > >), void>::type mrs_lib::impl::convertTo<geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> >&, double, double, double)14
std::enable_if<has_xyz_constructor_v<cv::Vec<double, 3> >, void>::type mrs_lib::impl::convertTo<cv::Vec<double, 3> >(cv::Vec<double, 3>&, double, double, double)14
std::enable_if<has_xyz_constructor_v<cv::Vec<float, 3> >, void>::type mrs_lib::impl::convertTo<cv::Vec<float, 3> >(cv::Vec<float, 3>&, double, double, double)14
std::enable_if<has_xyz_constructor_v<pcl::PointXYZ>, void>::type mrs_lib::impl::convertTo<pcl::PointXYZ>(pcl::PointXYZ&, double, double, double)14
std::enable_if<has_xyz_constructor_v<Eigen::Matrix<double, 3, 1, 0, 3, 1> >, void>::type mrs_lib::impl::convertTo<Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1>&, double, double, double)14
std::enable_if<has_xyz_constructor_v<Eigen::Matrix<float, 3, 1, 0, 3, 1> >, void>::type mrs_lib::impl::convertTo<Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1>&, double, double, double)14
+
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/impl/vector_converter.hpp.func.html b/mrs_lib/include/mrs_lib/impl/vector_converter.hpp.func.html new file mode 100644 index 0000000000..3a1cb8c1ca --- /dev/null +++ b/mrs_lib/include/mrs_lib/impl/vector_converter.hpp.func.html @@ -0,0 +1,152 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/impl/vector_converter.hpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib/impl - vector_converter.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1818100.0 %
Date:2024-04-17 23:52:03Functions:1818100.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
std::enable_if<has_xmem_v<geometry_msgs::Vector3_<std::allocator<void> > >, std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)14
std::enable_if<(has_squarebracket_operator_v<cv::Vec<double, 3> >)&&(!(has_xfun_v<cv::Vec<double, 3> >)), std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<cv::Vec<double, 3> >(cv::Vec<double, 3> const&)14
std::enable_if<(has_squarebracket_operator_v<cv::Vec<float, 3> >)&&(!(has_xfun_v<cv::Vec<float, 3> >)), std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<cv::Vec<float, 3> >(cv::Vec<float, 3> const&)14
std::enable_if<has_xmem_v<pcl::PointXYZ>, std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<pcl::PointXYZ>(pcl::PointXYZ const&)14
std::enable_if<has_xfun_v<Eigen::Matrix<double, 3, 1, 0, 3, 1> >, std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)14
std::enable_if<has_xfun_v<Eigen::Matrix<float, 3, 1, 0, 3, 1> >, std::tuple<double, double, double> >::type mrs_lib::impl::convertFrom<Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)14
std::enable_if<(!(has_xyz_constructor_v<geometry_msgs::Vector3_<std::allocator<void> > >))&&(has_xmem_v<geometry_msgs::Vector3_<std::allocator<void> > >), void>::type mrs_lib::impl::convertTo<geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> >&, double, double, double)14
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::impl::convertTo<geometry_msgs::Vector3_<std::allocator<void> > >(double, double, double)8
std::enable_if<has_xyz_constructor_v<cv::Vec<double, 3> >, void>::type mrs_lib::impl::convertTo<cv::Vec<double, 3> >(cv::Vec<double, 3>&, double, double, double)14
cv::Vec<double, 3> mrs_lib::impl::convertTo<cv::Vec<double, 3> >(double, double, double)8
std::enable_if<has_xyz_constructor_v<cv::Vec<float, 3> >, void>::type mrs_lib::impl::convertTo<cv::Vec<float, 3> >(cv::Vec<float, 3>&, double, double, double)14
cv::Vec<float, 3> mrs_lib::impl::convertTo<cv::Vec<float, 3> >(double, double, double)8
std::enable_if<has_xyz_constructor_v<pcl::PointXYZ>, void>::type mrs_lib::impl::convertTo<pcl::PointXYZ>(pcl::PointXYZ&, double, double, double)14
pcl::PointXYZ mrs_lib::impl::convertTo<pcl::PointXYZ>(double, double, double)8
std::enable_if<has_xyz_constructor_v<Eigen::Matrix<double, 3, 1, 0, 3, 1> >, void>::type mrs_lib::impl::convertTo<Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1>&, double, double, double)14
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::impl::convertTo<Eigen::Matrix<double, 3, 1, 0, 3, 1> >(double, double, double)8
std::enable_if<has_xyz_constructor_v<Eigen::Matrix<float, 3, 1, 0, 3, 1> >, void>::type mrs_lib::impl::convertTo<Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1>&, double, double, double)14
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::impl::convertTo<Eigen::Matrix<float, 3, 1, 0, 3, 1> >(double, double, double)8
+
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Current view:top level - mrs_lib/include/mrs_lib/impl - vector_converter.hpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1818100.0 %
Date:2024-04-17 23:52:03Functions:1818100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /**  \file vector_converter.hpp
+       2             :      \brief Implements the convertTo() and convertFrom() functions for conversion between different vector representations (Eigen, OpenCV, tf2 etc.).
+       3             :      \author Matouš Vrba - vrbamato@fel.cvut.cz
+       4             :  */
+       5             : #ifndef VECTOR_CONVERTER_HPP
+       6             : #define VECTOR_CONVERTER_HPP
+       7             : 
+       8             : #include <experimental/type_traits>
+       9             : 
+      10             : namespace mrs_lib
+      11             : {
+      12             :   namespace impl
+      13             :   {
+      14             :     using unw_t = std::tuple<double, double, double>;
+      15             : 
+      16             :     /* SFINAE magic - only for black wizards! //{ */
+      17             :     
+      18             :     #define GENERATE_HAS_MEMBER_FUNC(func, rettype)                                \
+      19             :     template<class T> using _has_##func##fun_chk =                                 \
+      20             :           decltype(std::declval<T &>().func());                                    \
+      21             :     template<class T> constexpr bool has_##func##fun_v =                           \
+      22             :           std::experimental::is_detected_convertible_v<rettype, _has_##func##fun_chk, T>;
+      23             :     
+      24             :     #define GENERATE_HAS_MEMBER(memb, type)                                        \
+      25             :     template<class T> using _has_##memb##mem_chk =                                 \
+      26             :           decltype(std::declval<T &>().memb);                                      \
+      27             :     template<class T> constexpr bool has_##memb##mem_v =                           \
+      28             :           std::experimental::is_detected_convertible_v<type, _has_##memb##mem_chk, T>;
+      29             :     
+      30             :     GENERATE_HAS_MEMBER_FUNC(x, double)
+      31             :     GENERATE_HAS_MEMBER(x, double)
+      32             : 
+      33             :     template<class T> using _has_squarebracket_operator_chk = decltype(std::declval<T &>()[0]);
+      34             :     template<class T> constexpr bool has_squarebracket_operator_v = std::experimental::is_detected_convertible_v<double, _has_squarebracket_operator_chk, T>;
+      35             : 
+      36             :     template<class T> constexpr bool has_xyz_constructor_v = std::experimental::is_constructible_v<T, double, double, double>;
+      37             :     
+      38             :     //}
+      39             : 
+      40             :     // convertFrom specialization for Eigen types
+      41             :     template <typename in_t>
+      42          28 :     std::enable_if_t<has_xfun_v<in_t>, unw_t> convertFrom(const in_t& in)
+      43             :     {
+      44          28 :       return {in.x(), in.y(), in.z()};
+      45             :     }
+      46             : 
+      47             :     // convertFrom specialization for plain member types
+      48             :     template <typename in_t>
+      49          28 :     std::enable_if_t<has_xmem_v<in_t>, unw_t> convertFrom(const in_t& in)
+      50             :     {
+      51          28 :       return {in.x, in.y, in.z};
+      52             :     }
+      53             : 
+      54             :     // convertFrom specialization for OpenCV vectors
+      55             :     template <typename in_t>
+      56          28 :     std::enable_if_t<has_squarebracket_operator_v<in_t> && !has_xfun_v<in_t>, unw_t> convertFrom(const in_t& in)
+      57             :     {
+      58          28 :       return {in[0], in[1], in[2]};
+      59             :     }
+      60             : 
+      61             :     // convertTo specialization for types with a constructor that takes three doubles
+      62             :     template <typename ret_t>
+      63          70 :     std::enable_if_t<has_xyz_constructor_v<ret_t>, void> convertTo(ret_t& out, const double x, const double y, const double z)
+      64             :     {
+      65          70 :       out = {x, y, z};
+      66          70 :     }
+      67             : 
+      68             :     // convertTo specialization for other types
+      69             :     template <typename ret_t>
+      70          14 :     std::enable_if_t<!has_xyz_constructor_v<ret_t> && has_xmem_v<ret_t>, void> convertTo(ret_t& out, const double x, const double y, const double z)
+      71             :     {
+      72          14 :       out.x = x;
+      73          14 :       out.y = y;
+      74          14 :       out.z = z;
+      75          14 :     }
+      76             : 
+      77             :     template <typename ret_t>
+      78          48 :     ret_t convertTo(const double x, const double y, const double z)
+      79             :     {
+      80          48 :       ret_t ret;
+      81          48 :       convertTo(ret, x, y, z);
+      82          48 :       return ret;
+      83             :     }
+      84             : 
+      85             :   }  // namespace impl
+      86             : 
+      87             : }  // namespace mrs_lib
+      88             : 
+      89             : #endif // VECTOR_CONVERTER_HPP
+
+
+
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Test:MRS UAV System - Test coverage reportLines:78198579.3 %
Date:2024-04-17 23:52:03Functions:842135162.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
ukf.h +
0.0%
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dynamic_reconfigure_mgr.h +
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transformer.h +
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attitude_converter.h +
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<unnamed>90.3 %271 / 300100.0 %78 / 78
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Test:MRS UAV System - Test coverage reportLines:78198579.3 %
Date:2024-04-17 23:52:03Functions:842135162.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
ukf.h +
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scope_timer.h +
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transformer.h +
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attitude_converter.h +
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<unnamed>85.2 %23 / 2781.8 %9 / 11
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mutex.h +
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Current view:top level - mrs_lib/include/mrs_libHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:78198579.3 %
Date:2024-04-17 23:52:03Functions:842135162.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::varstepLKF<3, 1, 1>::varstepLKF(std::function<Eigen::Matrix<double, 3, 3, 0, 3, 3> (double)> const&, std::function<Eigen::Matrix<double, 3, 1, 0, 3, 1> (double)> const&, Eigen::Matrix<double, 1, 3, 1, 1, 3> const&)0
mrs_lib::varstepLKF<6, 2, 2>::varstepLKF(std::function<Eigen::Matrix<double, 6, 6, 0, 6, 6> (double)> const&, std::function<Eigen::Matrix<double, 6, 2, 0, 6, 2> (double)> const&, Eigen::Matrix<double, 2, 6, 0, 2, 6> const&)0
mrs_lib::LKF<2, 1, 1>::LKF(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 1, 2, 1, 1, 2> const&)0
mrs_lib::LKF<3, 1, 1>::LKF()0
std::enable_if<(1)!=(0), Eigen::Matrix<double, 4, 1, 0, 4, 1> >::type mrs_lib::LKF<4, 1, 2>::state_predict<1>(Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&)0
mrs_lib::LKF<4, 1, 2>::covariance_predict(Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, double)0
mrs_lib::LKF<4, 1, 2>::correction_optimized(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 4, 0, 2, 4> const&)0
mrs_lib::LKF<4, 1, 2>::invert_W(Eigen::Matrix<double, 2, 2, 0, 2, 2>)0
mrs_lib::LKF<4, 1, 2>::LKF(Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 2, 4, 0, 2, 4> const&)0
mrs_lib::LKF<4, 1, 2>::LKF()0
mrs_lib::LKF<6, 2, 2>::LKF()0
mrs_lib::varstepLKF<3, 1, 1>::predict(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, double) const0
mrs_lib::varstepLKF<6, 2, 2>::predict(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, double) const0
mrs_lib::LKF<2, 1, 1>::inverse_exception::what() const0
mrs_lib::LKF<2, 1, 1>::predict(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, double) const0
mrs_lib::LKF<3, 1, 1>::inverse_exception::what() const0
std::enable_if<(4)>=(0), mrs_lib::KalmanFilter<4, 1, 2>::statecov_t>::type mrs_lib::LKF<4, 1, 2>::correction_impl<4>(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 4, 0, 2, 4> const&) const0
mrs_lib::LKF<4, 1, 2>::computeKalmanGain(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 4, 0, 2, 4> const&) const0
mrs_lib::LKF<4, 1, 2>::inverse_exception::what() const0
mrs_lib::LKF<4, 1, 2>::correct(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&) const0
mrs_lib::LKF<4, 1, 2>::predict(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, double) const0
mrs_lib::LKF<6, 2, 2>::inverse_exception::what() const0
mrs_lib::varstepLKF<2, 1, 1>::varstepLKF(std::function<Eigen::Matrix<double, 2, 2, 0, 2, 2> (double)> const&, std::function<Eigen::Matrix<double, 2, 1, 0, 2, 1> (double)> const&, Eigen::Matrix<double, 1, 2, 1, 1, 2> const&)3
mrs_lib::LKF<2, 1, 1>::LKF()3
mrs_lib::LKF<6, 2, 2>::LKF(Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, Eigen::Matrix<double, 6, 2, 0, 6, 2> const&, Eigen::Matrix<double, 2, 6, 0, 2, 6> const&)97
mrs_lib::LKF<3, 1, 1>::LKF(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 1, 3, 1, 1, 3> const&)167
mrs_lib::LKF<2, 1, 1>::invert_W(Eigen::Matrix<double, 1, 1, 0, 1, 1>)5864
std::enable_if<(2)>=(0), mrs_lib::KalmanFilter<2, 1, 1>::statecov_t>::type mrs_lib::LKF<2, 1, 1>::correction_impl<2>(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 2, 1, 1, 2> const&) const5864
mrs_lib::LKF<2, 1, 1>::computeKalmanGain(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 2, 1, 1, 2> const&) const5864
mrs_lib::LKF<2, 1, 1>::correct(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&) const5864
std::enable_if<(1)!=(0), Eigen::Matrix<double, 2, 1, 0, 2, 1> >::type mrs_lib::LKF<2, 1, 1>::state_predict<1>(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&)17319
mrs_lib::LKF<2, 1, 1>::covariance_predict(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, double)17319
mrs_lib::varstepLKF<2, 1, 1>::predict(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, double) const17319
mrs_lib::LKF<6, 2, 2>::predict(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, double) const171688
std::enable_if<(2)!=(0), Eigen::Matrix<double, 6, 1, 0, 6, 1> >::type mrs_lib::LKF<6, 2, 2>::state_predict<2>(Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, Eigen::Matrix<double, 6, 1, 0, 6, 1> const&, Eigen::Matrix<double, 6, 2, 0, 6, 2> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)171750
mrs_lib::LKF<6, 2, 2>::covariance_predict(Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, double)171757
mrs_lib::LKF<6, 2, 2>::invert_W(Eigen::Matrix<double, 2, 2, 0, 2, 2>)193187
mrs_lib::LKF<6, 2, 2>::correct(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&) const193232
std::enable_if<(6)>=(0), mrs_lib::KalmanFilter<6, 2, 2>::statecov_t>::type mrs_lib::LKF<6, 2, 2>::correction_impl<6>(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 6, 0, 2, 6> const&) const193337
mrs_lib::LKF<6, 2, 2>::computeKalmanGain(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 6, 0, 2, 6> const&) const193356
mrs_lib::LKF<3, 1, 1>::predict(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, double) const292593
std::enable_if<(1)!=(0), Eigen::Matrix<double, 3, 1, 0, 3, 1> >::type mrs_lib::LKF<3, 1, 1>::state_predict<1>(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&)292991
mrs_lib::LKF<3, 1, 1>::covariance_predict(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, double)293265
mrs_lib::LKF<3, 1, 1>::invert_W(Eigen::Matrix<double, 1, 1, 0, 1, 1>)440106
std::enable_if<(3)>=(0), mrs_lib::KalmanFilter<3, 1, 1>::statecov_t>::type mrs_lib::LKF<3, 1, 1>::correction_impl<3>(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 3, 1, 1, 3> const&) const442003
mrs_lib::LKF<3, 1, 1>::computeKalmanGain(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 3, 1, 1, 3> const&) const442056
mrs_lib::LKF<3, 1, 1>::correct(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&) const442071
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Current view:top level - mrs_lib/include/mrs_lib - lkf.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:445481.5 %
Date:2024-04-17 23:52:03Functions:254753.2 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::varstepLKF<2, 1, 1>::varstepLKF(std::function<Eigen::Matrix<double, 2, 2, 0, 2, 2> (double)> const&, std::function<Eigen::Matrix<double, 2, 1, 0, 2, 1> (double)> const&, Eigen::Matrix<double, 1, 2, 1, 1, 2> const&)3
mrs_lib::varstepLKF<3, 1, 1>::varstepLKF(std::function<Eigen::Matrix<double, 3, 3, 0, 3, 3> (double)> const&, std::function<Eigen::Matrix<double, 3, 1, 0, 3, 1> (double)> const&, Eigen::Matrix<double, 1, 3, 1, 1, 3> const&)0
mrs_lib::varstepLKF<6, 2, 2>::varstepLKF(std::function<Eigen::Matrix<double, 6, 6, 0, 6, 6> (double)> const&, std::function<Eigen::Matrix<double, 6, 2, 0, 6, 2> (double)> const&, Eigen::Matrix<double, 2, 6, 0, 2, 6> const&)0
std::enable_if<(1)!=(0), Eigen::Matrix<double, 2, 1, 0, 2, 1> >::type mrs_lib::LKF<2, 1, 1>::state_predict<1>(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&)17319
mrs_lib::LKF<2, 1, 1>::covariance_predict(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, double)17319
mrs_lib::LKF<2, 1, 1>::invert_W(Eigen::Matrix<double, 1, 1, 0, 1, 1>)5864
mrs_lib::LKF<2, 1, 1>::LKF(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 1, 2, 1, 1, 2> const&)0
mrs_lib::LKF<2, 1, 1>::LKF()3
std::enable_if<(1)!=(0), Eigen::Matrix<double, 3, 1, 0, 3, 1> >::type mrs_lib::LKF<3, 1, 1>::state_predict<1>(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&)292991
mrs_lib::LKF<3, 1, 1>::covariance_predict(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, double)293265
mrs_lib::LKF<3, 1, 1>::invert_W(Eigen::Matrix<double, 1, 1, 0, 1, 1>)440106
mrs_lib::LKF<3, 1, 1>::LKF(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 1, 3, 1, 1, 3> const&)167
mrs_lib::LKF<3, 1, 1>::LKF()0
std::enable_if<(1)!=(0), Eigen::Matrix<double, 4, 1, 0, 4, 1> >::type mrs_lib::LKF<4, 1, 2>::state_predict<1>(Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&)0
mrs_lib::LKF<4, 1, 2>::covariance_predict(Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, double)0
mrs_lib::LKF<4, 1, 2>::correction_optimized(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 4, 0, 2, 4> const&)0
mrs_lib::LKF<4, 1, 2>::invert_W(Eigen::Matrix<double, 2, 2, 0, 2, 2>)0
mrs_lib::LKF<4, 1, 2>::LKF(Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, Eigen::Matrix<double, 4, 1, 0, 4, 1> const&, Eigen::Matrix<double, 2, 4, 0, 2, 4> const&)0
mrs_lib::LKF<4, 1, 2>::LKF()0
std::enable_if<(2)!=(0), Eigen::Matrix<double, 6, 1, 0, 6, 1> >::type mrs_lib::LKF<6, 2, 2>::state_predict<2>(Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, Eigen::Matrix<double, 6, 1, 0, 6, 1> const&, Eigen::Matrix<double, 6, 2, 0, 6, 2> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)171750
mrs_lib::LKF<6, 2, 2>::covariance_predict(Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, double)171757
mrs_lib::LKF<6, 2, 2>::invert_W(Eigen::Matrix<double, 2, 2, 0, 2, 2>)193187
mrs_lib::LKF<6, 2, 2>::LKF(Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, Eigen::Matrix<double, 6, 2, 0, 6, 2> const&, Eigen::Matrix<double, 2, 6, 0, 2, 6> const&)97
mrs_lib::LKF<6, 2, 2>::LKF()0
mrs_lib::varstepLKF<2, 1, 1>::predict(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, double) const17319
mrs_lib::varstepLKF<3, 1, 1>::predict(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, double) const0
mrs_lib::varstepLKF<6, 2, 2>::predict(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, double) const0
std::enable_if<(2)>=(0), mrs_lib::KalmanFilter<2, 1, 1>::statecov_t>::type mrs_lib::LKF<2, 1, 1>::correction_impl<2>(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 2, 1, 1, 2> const&) const5864
mrs_lib::LKF<2, 1, 1>::computeKalmanGain(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 2, 1, 1, 2> const&) const5864
mrs_lib::LKF<2, 1, 1>::inverse_exception::what() const0
mrs_lib::LKF<2, 1, 1>::correct(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&) const5864
mrs_lib::LKF<2, 1, 1>::predict(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, double) const0
std::enable_if<(3)>=(0), mrs_lib::KalmanFilter<3, 1, 1>::statecov_t>::type mrs_lib::LKF<3, 1, 1>::correction_impl<3>(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 3, 1, 1, 3> const&) const442003
mrs_lib::LKF<3, 1, 1>::computeKalmanGain(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 3, 1, 1, 3> const&) const442056
mrs_lib::LKF<3, 1, 1>::inverse_exception::what() const0
mrs_lib::LKF<3, 1, 1>::correct(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&) const442071
mrs_lib::LKF<3, 1, 1>::predict(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, double) const292593
std::enable_if<(4)>=(0), mrs_lib::KalmanFilter<4, 1, 2>::statecov_t>::type mrs_lib::LKF<4, 1, 2>::correction_impl<4>(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 4, 0, 2, 4> const&) const0
mrs_lib::LKF<4, 1, 2>::computeKalmanGain(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 4, 0, 2, 4> const&) const0
mrs_lib::LKF<4, 1, 2>::inverse_exception::what() const0
mrs_lib::LKF<4, 1, 2>::correct(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&) const0
mrs_lib::LKF<4, 1, 2>::predict(mrs_lib::KalmanFilter<4, 1, 2>::statecov_t const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 4, 4, 0, 4, 4> const&, double) const0
std::enable_if<(6)>=(0), mrs_lib::KalmanFilter<6, 2, 2>::statecov_t>::type mrs_lib::LKF<6, 2, 2>::correction_impl<6>(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 6, 0, 2, 6> const&) const193337
mrs_lib::LKF<6, 2, 2>::computeKalmanGain(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 2, 6, 0, 2, 6> const&) const193356
mrs_lib::LKF<6, 2, 2>::inverse_exception::what() const0
mrs_lib::LKF<6, 2, 2>::correct(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&) const193232
mrs_lib::LKF<6, 2, 2>::predict(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, double) const171688
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LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - lkf.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:445481.5 %
Date:2024-04-17 23:52:03Functions:254753.2 %
Legend: Lines: + hit + not hit +
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          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : /**  \file LKF
+       3             :      \brief Defines LKF - a class, implementing the Linear Kalman Filter \cite LKF, as well as a few specialized variants.
+       4             :      \author Matouš Vrba - vrbamato@fel.cvut.cz
+       5             :  */
+       6             : #ifndef LKFSYSTEMMODELS_H
+       7             : #define LKFSYSTEMMODELS_H
+       8             : 
+       9             : #include <mrs_lib/kalman_filter.h>
+      10             : #include <iostream>
+      11             : 
+      12             : namespace mrs_lib
+      13             : {
+      14             : 
+      15             :   /* class LKF //{ */
+      16             :   /**
+      17             :   * \brief Implementation of the Linear Kalman filter \cite LKF.
+      18             :   *
+      19             :   * The Linear Kalman filter (abbreviated LKF, \cite LKF) may be used for state filtration or estimation of linear
+      20             :   * stochastic discrete systems. It assumes that noise variables are sampled from multivariate gaussian distributions
+      21             :   * and takes into account apriori known parameters of these distributions (namely zero means and covariance matrices,
+      22             :   * which have to be specified by the user and are tunable parameters).
+      23             :   *
+      24             :   * The LKF C++ class itself is templated. This has its advantages and disadvantages. Main disadvantage is that it
+      25             :   * may be harder to use if you're not familiar with C++ templates, which, admittedly, can get somewhat messy,
+      26             :   * espetially during compilation. Another disadvantage is that if used unwisely, the compilation times can get
+      27             :   * much higher when using templates. The main advantage is compile-time checking (if it compiles, then it has
+      28             :   * a lower chance of crashing at runtime) and enabling more effective optimalizations during compilation. Also in case
+      29             :   * of Eigen, the code is arguably more readable when you use aliases to the specific Matrix instances instead of
+      30             :   * having Eigen::MatrixXd and Eigen::VectorXd everywhere.
+      31             :   *
+      32             :   * \tparam n_states         number of states of the system (length of the \f$ \mathbf{x} \f$ vector).
+      33             :   * \tparam n_inputs         number of inputs of the system (length of the \f$ \mathbf{u} \f$ vector).
+      34             :   * \tparam n_measurements   number of measurements of the system (length of the \f$ \mathbf{z} \f$ vector).
+      35             :   *
+      36             :   */
+      37             :   template <int n_states, int n_inputs, int n_measurements>
+      38             :   class LKF : public KalmanFilter<n_states, n_inputs, n_measurements>
+      39             :   {
+      40             :   public:
+      41             :     /* LKF definitions (typedefs, constants etc) //{ */
+      42             :     static constexpr int n = n_states;            /*!< \brief Length of the state vector of the system. */
+      43             :     static constexpr int m = n_inputs;            /*!< \brief Length of the input vector of the system. */
+      44             :     static constexpr int p = n_measurements;      /*!< \brief Length of the measurement vector of the system. */
+      45             :     using Base_class = KalmanFilter<n, m, p>; /*!< \brief Base class of this class. */
+      46             : 
+      47             :     using x_t = typename Base_class::x_t;                /*!< \brief State vector type \f$n \times 1\f$ */
+      48             :     using u_t = typename Base_class::u_t;                /*!< \brief Input vector type \f$m \times 1\f$ */
+      49             :     using z_t = typename Base_class::z_t;                /*!< \brief Measurement vector type \f$p \times 1\f$ */
+      50             :     using P_t = typename Base_class::P_t;                /*!< \brief State uncertainty covariance matrix type \f$n \times n\f$ */
+      51             :     using R_t = typename Base_class::R_t;                /*!< \brief Measurement noise covariance matrix type \f$p \times p\f$ */
+      52             :     using Q_t = typename Base_class::Q_t;                /*!< \brief Process noise covariance matrix type \f$n \times n\f$ */
+      53             :     using statecov_t = typename Base_class::statecov_t;  /*!< \brief Helper struct for passing around the state and its covariance in one variable */
+      54             : 
+      55             :     typedef Eigen::Matrix<double, n, n> A_t;  /*!< \brief System transition matrix type \f$n \times n\f$ */
+      56             :     typedef Eigen::Matrix<double, n, m> B_t;  /*!< \brief Input to state mapping matrix type \f$n \times m\f$ */
+      57             :     typedef Eigen::Matrix<double, p, n> H_t;  /*!< \brief State to measurement mapping matrix type \f$p \times n\f$ */
+      58             :     typedef Eigen::Matrix<double, n, p> K_t;  /*!< \brief Kalman gain matrix type \f$n \times p\f$ */
+      59             : 
+      60             :   /*!
+      61             :     * \brief This exception is thrown when taking the inverse of a matrix fails.
+      62             :     *
+      63             :     * You should catch this exception in your code and act accordingly if it appears
+      64             :     * (e.g. reset the state and covariance or modify the measurement/process noise parameters).
+      65             :     */
+      66             :     struct inverse_exception : public std::exception
+      67             :     {
+      68             :     /*!
+      69             :       * \brief Returns the error message, describing what caused the exception.
+      70             :       *
+      71             :       * \return  The error message, describing what caused the exception.
+      72             :       */
+      73           0 :       const char* what() const throw()
+      74             :       {
+      75           0 :         return "LKF: could not compute matrix inversion!!! Fix your covariances (the measurement's is probably too low...)";
+      76             :       }
+      77             :     };
+      78             :     //}
+      79             : 
+      80             :   public:
+      81             :   /*!
+      82             :     * \brief Convenience default constructor.
+      83             :     *
+      84             :     * This constructor should not be used if applicable. If used, the main constructor has to be called afterwards,
+      85             :     * before using this class, otherwise the LKF object is invalid (not initialized).
+      86             :     */
+      87           3 :     LKF(){};
+      88             : 
+      89             :   /*!
+      90             :     * \brief The main constructor.
+      91             :     *
+      92             :     * \param A             The state transition matrix.
+      93             :     * \param B             The input to state mapping matrix.
+      94             :     * \param H             The state to measurement mapping matrix.
+      95             :     */
+      96         264 :     LKF(const A_t& A, const B_t& B, const H_t& H) : A(A), B(B), H(H){};
+      97             : 
+      98             :     /* correct() method //{ */
+      99             :   /*!
+     100             :     * \brief Applies the correction (update, measurement, data) step of the Kalman filter.
+     101             :     *
+     102             :     * This method applies the linear Kalman filter correction step to the state and covariance
+     103             :     * passed in \p sc using the measurement \p z and measurement noise \p R. The updated state
+     104             :     * and covariance after the correction step is returned.
+     105             :     *
+     106             :     * \param sc          The state and covariance to which the correction step is to be applied.
+     107             :     * \param z           The measurement vector to be used for correction.
+     108             :     * \param R           The measurement noise covariance matrix to be used for correction.
+     109             :     * \return            The state and covariance after the correction update.
+     110             :     */
+     111      641167 :     virtual statecov_t correct(const statecov_t& sc, const z_t& z, const R_t& R) const override
+     112             :     {
+     113             :       /* return correct_optimized(sc, z, R, H); */
+     114      641167 :       return correction_impl(sc, z, R, H);
+     115             :     };
+     116             :     //}
+     117             : 
+     118             :     /* predict() method //{ */
+     119             :   /*!
+     120             :     * \brief Applies the prediction (time) step of the Kalman filter.
+     121             :     *
+     122             :     * This method applies the linear Kalman filter prediction step to the state and covariance
+     123             :     * passed in \p sc using the input \p u and process noise \p Q. The process noise covariance
+     124             :     * \p Q is scaled by the \p dt parameter. The updated state and covariance after
+     125             :     * the prediction step is returned.
+     126             :     *
+     127             :     * \param sc          The state and covariance to which the prediction step is to be applied.
+     128             :     * \param u           The input vector to be used for prediction.
+     129             :     * \param Q           The process noise covariance matrix to be used for prediction.
+     130             :     * \param dt          Used to scale the process noise covariance \p Q.
+     131             :     * \return            The state and covariance after the prediction step.
+     132             :     *
+     133             :     * \note Note that the \p dt parameter is only used to scale the process noise covariance \p Q it
+     134             :     * does not change the system matrices #A or #B (because there is no unambiguous way to do this)!
+     135             :     * If you have a changing time step duration and a dynamic system, you have to change the #A and #B
+     136             :     * matrices manually.
+     137             :     */
+     138      464281 :     virtual statecov_t predict(const statecov_t& sc, const u_t& u, const Q_t& Q, [[maybe_unused]] double dt) const override
+     139             :     {
+     140      464281 :       statecov_t ret;
+     141      463660 :       ret.x = state_predict(A, sc.x, B, u);
+     142      463812 :       ret.P = covariance_predict(A, sc.P, Q, dt);
+     143      463689 :       return ret;
+     144             :     };
+     145             :     //}
+     146             : 
+     147             :   public:
+     148             :     A_t A;  /*!< \brief The system transition matrix \f$n \times n\f$ */
+     149             :     B_t B;  /*!< \brief The input to state mapping matrix \f$n \times m\f$ */
+     150             :     H_t H;  /*!< \brief The state to measurement mapping matrix \f$p \times n\f$ */
+     151             : 
+     152             :   protected:
+     153             :     /* covariance_predict() method //{ */
+     154      482341 :     static P_t covariance_predict(const A_t& A, const P_t& P, const Q_t& Q, const double dt)
+     155             :     {
+     156      482341 :       return A * P * A.transpose() + dt*Q;
+     157             :     }
+     158             :     //}
+     159             : 
+     160             :     /* state_predict() method //{ */
+     161             :     template <int check = n_inputs>
+     162             :     static inline typename std::enable_if<check == 0, x_t>::type state_predict(const A_t& A, const x_t& x, [[maybe_unused]] const B_t& B,
+     163             :                                                                                [[maybe_unused]] const u_t& u)
+     164             :     {
+     165             :       return A * x;
+     166             :     }
+     167             : 
+     168             :     template <int check = n_inputs>
+     169      482060 :     static inline typename std::enable_if<check != 0, x_t>::type state_predict(const A_t& A, const x_t& x, const B_t& B, const u_t& u)
+     170             :     {
+     171      482060 :       return A * x + B * u;
+     172             :     }
+     173             :     //}
+     174             : 
+     175             :   protected:
+     176             :     /* invert_W() method //{ */
+     177      639157 :     static R_t invert_W(R_t W)
+     178             :     {
+     179      639157 :       Eigen::ColPivHouseholderQR<R_t> qr(W);
+     180      640854 :       if (!qr.isInvertible())
+     181             :       {
+     182             :         // add some stuff to the tmp matrix diagonal to make it invertible
+     183       38020 :         R_t ident = R_t::Identity(W.rows(), W.cols());
+     184       38044 :         W += 1e-9 * ident;
+     185       38044 :         qr.compute(W);
+     186       38063 :         if (!qr.isInvertible())
+     187             :         {
+     188             :           // never managed to make this happen except for explicitly putting NaNs in the input
+     189           0 :           throw inverse_exception();
+     190             :         }
+     191             :       }
+     192      638608 :       const R_t W_inv = qr.inverse();
+     193     1281270 :       return W_inv;
+     194             :     }
+     195             :     //}
+     196             : 
+     197             :     /* computeKalmanGain() method //{ */
+     198      641276 :     virtual K_t computeKalmanGain(const statecov_t& sc, [[maybe_unused]] const z_t& z, const R_t& R, const H_t& H) const
+     199             :     {
+     200             :       // calculation of the kalman gain K
+     201      641276 :       const R_t W = H * sc.P * H.transpose() + R;
+     202      640668 :       const R_t W_inv = invert_W(W);
+     203      640601 :       const K_t K = sc.P * H.transpose() * W_inv;
+     204     1280442 :       return K;
+     205             :     }
+     206             :     //}
+     207             : 
+     208             :     /* correction_impl() method //{ */
+     209             :     template<int check=n>
+     210      641204 :     typename std::enable_if<check >= 0, statecov_t>::type correction_impl(const statecov_t& sc, const z_t& z, const R_t& R, const H_t& H) const
+     211             :     {
+     212             :       // the correction phase
+     213      641204 :       statecov_t ret;
+     214      640680 :       const K_t K = computeKalmanGain(sc, z, R, H);
+     215      639664 :       ret.x = sc.x + K * (z - (H * sc.x));
+     216      640446 :       ret.P = (P_t::Identity() - (K * H)) * sc.P;
+     217     1280014 :       return ret;
+     218             :     }
+     219             : 
+     220             :     template<int check=n>
+     221             :     typename std::enable_if<check < 0, statecov_t>::type correction_impl(const statecov_t& sc, const z_t& z, const R_t& R, const H_t& H) const
+     222             :     {
+     223             :       // the correction phase
+     224             :       statecov_t ret;
+     225             :       const K_t K = computeKalmanGain(sc, z, R, H);
+     226             :       ret.x = sc.x + K * (z - (H * sc.x));
+     227             :       ret.P = (P_t::Identity(sc.P.rows(), sc.P.cols()) - (K * H)) * sc.P;
+     228             :       return ret;
+     229             :     }
+     230             :     //}
+     231             : 
+     232             :     // NOT USED METHODS
+     233             :     /* correction_optimized() method //{ */
+     234             :     // No notable performance gain was observed for the matrix sizes we use, so this is not used.
+     235           0 :     static statecov_t correction_optimized(const statecov_t& sc, const z_t& z, const R_t& R, const H_t& H)
+     236             :     {
+     237           0 :       statecov_t ret = sc;
+     238           0 :       const H_t B(H*sc.P.transpose());
+     239           0 :       const K_t K((B*H.transpose() + R).ldlt().solve(B).transpose());
+     240           0 :       ret.x.noalias() += K*(z - H*sc.x);
+     241           0 :       ret.P.noalias() -= K*H*sc.P;
+     242           0 :       return ret;
+     243             :     }
+     244             : 
+     245             :     /* static statecov_t correction_optimized(const statecov_t& sc, const z_t& z, const R_t& R, const H_t& H) */
+     246             :     /* { */
+     247             :     /*   statecov_t ret; */
+     248             :     /*   const H_t B = H*sc.P.transpose(); */
+     249             :     /*   const K_t K = (B*H.transpose() + R).partialPivLu().solve(B).transpose(); */
+     250             :     /*   ret.x = sc.x + K*(z - H*sc.x); */
+     251             :     /*   ret.P = sc.P - K*H*sc.P; */
+     252             :     /*   return ret; */
+     253             :     /* } */
+     254             :     //}
+     255             :   };
+     256             :   //}
+     257             : 
+     258             :   /* class dtMatrixLKF //{ */
+     259             :   template <int n_states, int n_inputs, int n_measurements>
+     260             :   class varstepLKF : public LKF<n_states, n_inputs, n_measurements>
+     261             :   {
+     262             :   public:
+     263             :     /* LKF definitions (typedefs, constants etc) //{ */
+     264             :     static const int n = n_states;
+     265             :     static const int m = n_inputs;
+     266             :     static const int p = n_measurements;
+     267             :     using Base_class = LKF<n, m, p>;
+     268             : 
+     269             :     using x_t = typename Base_class::x_t;
+     270             :     using u_t = typename Base_class::u_t;
+     271             :     using z_t = typename Base_class::z_t;
+     272             :     using P_t = typename Base_class::P_t;
+     273             :     using R_t = typename Base_class::R_t;
+     274             :     using statecov_t = typename Base_class::statecov_t;
+     275             :     using A_t = typename Base_class::A_t;  // measurement mapping p*n
+     276             :     using B_t = typename Base_class::B_t;  // process covariance n*n
+     277             :     using H_t = typename Base_class::H_t;  // measurement mapping p*n
+     278             :     using Q_t = typename Base_class::Q_t;  // process covariance n*n
+     279             : 
+     280             :     using generateA_t = std::function<A_t(double)>;
+     281             :     using generateB_t = std::function<B_t(double)>;
+     282             :     //}
+     283             : 
+     284             :   public:
+     285             : 
+     286             :   /*!
+     287             :     * \brief The main constructor.
+     288             :     *
+     289             :     * \param generateA a function, which returns the state transition matrix \p A based on the time difference \p dt.
+     290             :     * \param generateB a function, which returns the input to state mapping matrix \p B based on the time difference \p dt.
+     291             :     * \param H         the state to measurement mapping matrix.
+     292             :     */
+     293           3 :     varstepLKF(const generateA_t& generateA, const generateB_t& generateB, const H_t& H)
+     294           3 :       : m_generateA(generateA), m_generateB(generateB)
+     295             :     {
+     296           3 :       Base_class::H = H;
+     297           3 :     };
+     298             : 
+     299             :     /* predict() method //{ */
+     300             :   /*!
+     301             :     * \brief Applies the prediction (time) step of the Kalman filter.
+     302             :     *
+     303             :     * This method applies the linear Kalman filter prediction step to the state and covariance
+     304             :     * passed in \p sc using the input \p u and process noise \p Q. The process noise covariance
+     305             :     * \p Q is scaled by the \p dt parameter. The updated state and covariance after
+     306             :     * the prediction step is returned.
+     307             :     *
+     308             :     * \param sc          The state and covariance to which the prediction step is to be applied.
+     309             :     * \param u           The input vector to be used for prediction.
+     310             :     * \param Q           The process noise covariance matrix to be used for prediction.
+     311             :     * \param dt          Used to scale the process noise covariance \p Q and to generate the state transition and input to state mapping matrices \p A and \B using the functions, passed in the object's constructor.
+     312             :     * \return            The state and covariance after the prediction step.
+     313             :     *
+     314             :     * \note Note that the \p dt parameter is used to scale the process noise covariance \p Q and to generate the system matrices #A or #B using the functions, passed in the constructor!
+     315             :     */
+     316       17319 :     virtual statecov_t predict(const statecov_t& sc, const u_t& u, const Q_t& Q, double dt) const override
+     317             :     {
+     318       17319 :       statecov_t ret;
+     319       17319 :       A_t A = m_generateA(dt);
+     320       17319 :       B_t B = m_generateB(dt);
+     321       17319 :       ret.x = Base_class::state_predict(A, sc.x, B, u);
+     322       17319 :       ret.P = Base_class::covariance_predict(A, sc.P, Q, dt);
+     323       34638 :       return ret;
+     324             :     };
+     325             :     //}
+     326             :     
+     327             :   private:
+     328             :     generateA_t m_generateA;
+     329             :     generateB_t m_generateB;
+     330             :   };
+     331             :   //}
+     332             : 
+     333             :   /* class LKF_MRS_odom //{ */
+     334             :   class LKF_MRS_odom : public LKF<3, 1, 1>
+     335             :   {
+     336             :   public:
+     337             :     /* LKF definitions (typedefs, constants etc) //{ */
+     338             :     static const int n = 3;
+     339             :     static const int m = 1;
+     340             :     static const int p = 1;
+     341             :     using Base_class = LKF<n, m, p>;
+     342             : 
+     343             :     using x_t = typename Base_class::x_t;
+     344             :     using u_t = typename Base_class::u_t;
+     345             :     using z_t = typename Base_class::z_t;
+     346             :     using P_t = typename Base_class::P_t;
+     347             :     using R_t = typename Base_class::R_t;
+     348             :     using statecov_t = typename Base_class::statecov_t;
+     349             :     using A_t = typename Base_class::A_t;  // measurement mapping p*n
+     350             :     using B_t = typename Base_class::B_t;  // process covariance n*n
+     351             :     using H_t = typename Base_class::H_t;  // measurement mapping p*n
+     352             :     using Q_t = typename Base_class::Q_t;  // process covariance n*n
+     353             : 
+     354             :     using coeff_A_t = A_t;                            // matrix of constant coefficients in matrix A
+     355             :     typedef Eigen::Matrix<unsigned, n, n> dtexp_A_t;  // matrix of dt exponents in matrix A
+     356             :     using coeff_B_t = B_t;                            // matrix of constant coefficients in matrix B
+     357             :     typedef Eigen::Matrix<unsigned, n, m> dtexp_B_t;  // matrix of dt exponents in matrix B
+     358             :     //}
+     359             : 
+     360             :   public:
+     361             :     LKF_MRS_odom(const std::vector<H_t>& Hs, const double default_dt = 1);
+     362             :     virtual statecov_t predict(const statecov_t& sc, const u_t& u, const Q_t& Q, double dt) const override;
+     363             :     virtual statecov_t correct(const statecov_t& sc, const z_t& z, const R_t& R, int param = 0) const;
+     364             : 
+     365             :   public:
+     366             :     x_t state_predict_optimized(const x_t& x_prev, const u_t& u, double dt) const;
+     367             :     P_t covariance_predict_optimized(const P_t& P, const Q_t& Q, double dt) const;
+     368             : 
+     369             :   private:
+     370             :     std::vector<H_t> m_Hs;
+     371             :   };
+     372             :   //}
+     373             : 
+     374             : }  // namespace mrs_lib
+     375             : 
+     376             : #endif // LKFSYSTEMMODELS_H
+
+
+
+ + + + +
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+ + diff --git a/mrs_lib/include/mrs_lib/lkf.h.gcov.png b/mrs_lib/include/mrs_lib/lkf.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..05cf672e576224906233fe48ec21708336bc253d GIT binary patch literal 1750 zcmV;{1}XW8P)=6legnx+l_P+MYm!lPS#C}Nxki0KGD^nk)CSbq7WG>_kok@cd06$*#L+i(P!undeF?0}4}V4Hzz zJ18#dU<`x^)|f2w8ts?S9mr(jg5_EX9Z{SlgrGC5OBg5+90x}FcnhS}ATGu}PHqq0 z9H`2W#l_^TZjekUtj_|*&rwA46m~SJJrxlejK}O~=|G+dGlAqyJ)i_=7cgR#(qj#A z&?)?>Um0-Rk%*Z-AQ7e`$lN9OwM zTGJTxEY2F*Hs#m~I6zSda%m~6O3Ec=ZNh8dDk12SpWFt&TyD#_bjQ?(5OCOzf!Fg6 zaEKz_$_m4n*8>6ozou&4L(U}oE&9`_ra*gT@5P^rtTT^ za5S4Hav>kMm71um62Iq!CF?`;j5Hv@(%H=RnARB`3aTZC$vTCR3#iDm%|#WcT@>|@ z1cYhJIvOoA%@H?C&a}AJ&0MbOdR_iPmjyU`-E87XqX9T;Tht6V`XiD)up9L zlUN&uisw$!vkHf`hDf4>qHY$dB4f}JJ@E1h%s+5q$LZu|3K$ELk*po}=Z?n5LJCHT z{FDPY&k|8`P^mn#22x7h(w89Blk}rOYLm&@NRY1s`fNQ@q*{$g%KSclB zEhEPszc#6*cbwCle+1z)4_7m@34Gbru0m4{Y23qOa3$`68(+$rHZPJG-HdF#6S21_XQZI(&$ z;z*Fzhrm{Y{EZ8B~yZ~tVV^X0VsN{DI9_ks3Bh1L@r;A&0c5MZFi z9b+?hSzsH*z`iOY=JD>3_+alU0C@XkS1XFk;woBKuY!#Dm~O~}iKYj(njK+Gwb8vG zVcUEgXZ4CrgZCj|8(Z3E?7f>d#rg{@zZA&ku?IREe1&3h{s}!Ghr%~fbPtKbs|w^V zfS=p&byNKGVZ8X6ZZ((ZG#wzYXUIWLBE5eUKX@3g?Ud~3t$xiLLz~{Z(!?Ivyqb6R z!Y(5R5H8f^=Uy22fB3mF&$k|a23>_ebNE>bG5wYkNVA)960qDBzEw{)>%hv%=C3)^ zbk4Q}_udm;;8(N&y@;zjBC?jNz%QxnyE{#%1OHd{9Uz@jm~LC&HiEihOx@MQ$}24z-zRls#8bC&;+v)$A(vKiojj3b#V sYQfaRxmlm>Jiz7HX$@zTer%uSA5hR)7d&;<(*OVf07*qoM6N<$f>Mk-2LJ#7 literal 0 HcmV?d00001 diff --git a/mrs_lib/include/mrs_lib/msg_extractor.h.func-sort-c.html b/mrs_lib/include/mrs_lib/msg_extractor.h.func-sort-c.html new file mode 100644 index 0000000000..db0ce1e308 --- /dev/null +++ b/mrs_lib/include/mrs_lib/msg_extractor.h.func-sort-c.html @@ -0,0 +1,256 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/msg_extractor.h - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/include/mrs_lib - msg_extractor.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:339933.3 %
Date:2024-04-17 23:52:03Functions:154434.1 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::getHeading(boost::shared_ptr<geometry_msgs::PoseWithCovariance_<std::allocator<void> > const> const&)0
mrs_lib::getHeading(boost::shared_ptr<geometry_msgs::Pose_<std::allocator<void> > const> const&)0
mrs_lib::getHeading(boost::shared_ptr<mrs_msgs::Reference_<std::allocator<void> > const> const&)0
mrs_lib::getHeading(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::getHeading(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::getHeading(mrs_msgs::TrackerCommand_<std::allocator<void> > const&)0
mrs_lib::getPosition(boost::shared_ptr<geometry_msgs::PoseWithCovariance_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<geometry_msgs::TwistWithCovariance_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<geometry_msgs::Pose_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<geometry_msgs::Twist_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<mrs_msgs::Reference_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::getVelocity(geometry_msgs::TwistWithCovariance_<std::allocator<void> > const&)0
mrs_lib::getVelocity(geometry_msgs::Twist_<std::allocator<void> > const&)0
mrs_lib::getVelocity(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::getVelocity(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)0
mrs_lib::getVelocity(mrs_msgs::TrackerCommand_<std::allocator<void> > const&)0
mrs_lib::getVelocity(nav_msgs::Odometry_<std::allocator<void> > const&)0
mrs_lib::getXYZ(geometry_msgs::Vector3_<std::allocator<void> > const&)0
mrs_lib::getXYZ(boost::shared_ptr<geometry_msgs::Point_<std::allocator<void> > const> const&)0
mrs_lib::getXYZ(boost::shared_ptr<geometry_msgs::Vector3_<std::allocator<void> > const> const&)0
mrs_lib::getYaw(geometry_msgs::PoseWithCovariance_<std::allocator<void> > const&)0
mrs_lib::getYaw(geometry_msgs::Pose_<std::allocator<void> > const&)0
mrs_lib::getYaw(boost::shared_ptr<geometry_msgs::PoseWithCovariance_<std::allocator<void> > const> const&)0
mrs_lib::getYaw(boost::shared_ptr<geometry_msgs::Pose_<std::allocator<void> > const> const&)0
mrs_lib::getYaw(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)0
mrs_lib::getYaw(nav_msgs::Odometry_<std::allocator<void> > const&)0
mrs_lib::getPose(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)0
mrs_lib::getHeading(mrs_msgs::Reference_<std::allocator<void> > const&)360
mrs_lib::getHeading(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)360
mrs_lib::getPosition(mrs_msgs::Reference_<std::allocator<void> > const&)360
mrs_lib::getPosition(mrs_msgs::TrackerCommand_<std::allocator<void> > const&)360
mrs_lib::getPosition(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)360
mrs_lib::getPose(nav_msgs::Odometry_<std::allocator<void> > const&)1589
mrs_lib::getHeading(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)205307
mrs_lib::getHeading(geometry_msgs::PoseWithCovariance_<std::allocator<void> > const&)205310
mrs_lib::getHeading(geometry_msgs::Pose_<std::allocator<void> > const&)205310
mrs_lib::getHeading(nav_msgs::Odometry_<std::allocator<void> > const&)205311
mrs_lib::getPosition(geometry_msgs::PoseWithCovariance_<std::allocator<void> > const&)205311
mrs_lib::getPosition(geometry_msgs::Pose_<std::allocator<void> > const&)205311
mrs_lib::getPosition(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)205312
mrs_lib::getPosition(nav_msgs::Odometry_<std::allocator<void> > const&)205312
mrs_lib::getXYZ(geometry_msgs::Point_<std::allocator<void> > const&)206032
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/include/mrs_lib/msg_extractor.h.func.html b/mrs_lib/include/mrs_lib/msg_extractor.h.func.html new file mode 100644 index 0000000000..ce6a9ee568 --- /dev/null +++ b/mrs_lib/include/mrs_lib/msg_extractor.h.func.html @@ -0,0 +1,256 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/msg_extractor.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib - msg_extractor.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:339933.3 %
Date:2024-04-17 23:52:03Functions:154434.1 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::getHeading(geometry_msgs::PoseWithCovariance_<std::allocator<void> > const&)205310
mrs_lib::getHeading(geometry_msgs::Pose_<std::allocator<void> > const&)205310
mrs_lib::getHeading(boost::shared_ptr<geometry_msgs::PoseWithCovariance_<std::allocator<void> > const> const&)0
mrs_lib::getHeading(boost::shared_ptr<geometry_msgs::Pose_<std::allocator<void> > const> const&)0
mrs_lib::getHeading(boost::shared_ptr<mrs_msgs::Reference_<std::allocator<void> > const> const&)0
mrs_lib::getHeading(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::getHeading(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::getHeading(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)205307
mrs_lib::getHeading(mrs_msgs::Reference_<std::allocator<void> > const&)360
mrs_lib::getHeading(mrs_msgs::TrackerCommand_<std::allocator<void> > const&)0
mrs_lib::getHeading(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)360
mrs_lib::getHeading(nav_msgs::Odometry_<std::allocator<void> > const&)205311
mrs_lib::getPosition(geometry_msgs::PoseWithCovariance_<std::allocator<void> > const&)205311
mrs_lib::getPosition(geometry_msgs::Pose_<std::allocator<void> > const&)205311
mrs_lib::getPosition(boost::shared_ptr<geometry_msgs::PoseWithCovariance_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<geometry_msgs::TwistWithCovariance_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<geometry_msgs::Pose_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<geometry_msgs::Twist_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<mrs_msgs::Reference_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&)0
mrs_lib::getPosition(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)205312
mrs_lib::getPosition(mrs_msgs::Reference_<std::allocator<void> > const&)360
mrs_lib::getPosition(mrs_msgs::TrackerCommand_<std::allocator<void> > const&)360
mrs_lib::getPosition(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)360
mrs_lib::getPosition(nav_msgs::Odometry_<std::allocator<void> > const&)205312
mrs_lib::getVelocity(geometry_msgs::TwistWithCovariance_<std::allocator<void> > const&)0
mrs_lib::getVelocity(geometry_msgs::Twist_<std::allocator<void> > const&)0
mrs_lib::getVelocity(boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const> const&)0
mrs_lib::getVelocity(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)0
mrs_lib::getVelocity(mrs_msgs::TrackerCommand_<std::allocator<void> > const&)0
mrs_lib::getVelocity(nav_msgs::Odometry_<std::allocator<void> > const&)0
mrs_lib::getXYZ(geometry_msgs::Point_<std::allocator<void> > const&)206032
mrs_lib::getXYZ(geometry_msgs::Vector3_<std::allocator<void> > const&)0
mrs_lib::getXYZ(boost::shared_ptr<geometry_msgs::Point_<std::allocator<void> > const> const&)0
mrs_lib::getXYZ(boost::shared_ptr<geometry_msgs::Vector3_<std::allocator<void> > const> const&)0
mrs_lib::getYaw(geometry_msgs::PoseWithCovariance_<std::allocator<void> > const&)0
mrs_lib::getYaw(geometry_msgs::Pose_<std::allocator<void> > const&)0
mrs_lib::getYaw(boost::shared_ptr<geometry_msgs::PoseWithCovariance_<std::allocator<void> > const> const&)0
mrs_lib::getYaw(boost::shared_ptr<geometry_msgs::Pose_<std::allocator<void> > const> const&)0
mrs_lib::getYaw(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)0
mrs_lib::getYaw(nav_msgs::Odometry_<std::allocator<void> > const&)0
mrs_lib::getPose(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)0
mrs_lib::getPose(nav_msgs::Odometry_<std::allocator<void> > const&)1589
+
+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/msg_extractor.h.gcov.frameset.html b/mrs_lib/include/mrs_lib/msg_extractor.h.gcov.frameset.html new file mode 100644 index 0000000000..3c229c2d36 --- /dev/null +++ b/mrs_lib/include/mrs_lib/msg_extractor.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/msg_extractor.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/include/mrs_lib/msg_extractor.h.gcov.html b/mrs_lib/include/mrs_lib/msg_extractor.h.gcov.html new file mode 100644 index 0000000000..0d71435fb9 --- /dev/null +++ b/mrs_lib/include/mrs_lib/msg_extractor.h.gcov.html @@ -0,0 +1,775 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/msg_extractor.h + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - msg_extractor.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:339933.3 %
Date:2024-04-17 23:52:03Functions:154434.1 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : // clang: TomasFormat
+       2             : /**  \file
+       3             :  *   \brief utility functions for getting stuff from ROS msgs
+       4             :  *   \author Tomas Baca - tomas.baca@fel.cvut.cz
+       5             :  */
+       6             : #ifndef MRS_LIB_MSG_EXTRACTOR_H
+       7             : #define MRS_LIB_MSG_EXTRACTOR_H
+       8             : 
+       9             : #include <mrs_msgs/TrackerCommand.h>
+      10             : #include <mrs_msgs/Reference.h>
+      11             : #include <mrs_msgs/ReferenceStamped.h>
+      12             : 
+      13             : #include <nav_msgs/Odometry.h>
+      14             : 
+      15             : #include <mrs_lib/attitude_converter.h>
+      16             : 
+      17             : namespace mrs_lib
+      18             : {
+      19             : 
+      20             : /* geometry_msgs::Point //{ */
+      21             : 
+      22             : /**
+      23             :  * @brief get XYZ from geometry_msgs::Point
+      24             :  *
+      25             :  * @param data point
+      26             :  *
+      27             :  * @return x, y, z
+      28             :  */
+      29      206032 : std::tuple<double, double, double> getXYZ(const geometry_msgs::Point& data) {
+      30             : 
+      31      206032 :   double x = data.x;
+      32      206032 :   double y = data.y;
+      33      206032 :   double z = data.z;
+      34             : 
+      35      412060 :   return std::tuple(x, y, z);
+      36             : }
+      37             : 
+      38             : /**
+      39             :  * @brief get XYZ from geometry_msgs::PointConstPtr
+      40             :  *
+      41             :  * @param data point (ConstPtr)
+      42             :  *
+      43             :  * @return x, y, z
+      44             :  */
+      45           0 : std::tuple<double, double, double> getXYZ(const geometry_msgs::PointConstPtr& data) {
+      46             : 
+      47           0 :   return getXYZ(*data);
+      48             : }
+      49             : 
+      50             : //}
+      51             : 
+      52             : /* geometry_msgs::Vector3 //{ */
+      53             : 
+      54             : /**
+      55             :  * @brief get XYZ from geometry_msgs::Vector3
+      56             :  *
+      57             :  * @param data vector3
+      58             :  *
+      59             :  * @return x, y, z
+      60             :  */
+      61           0 : std::tuple<double, double, double> getXYZ(const geometry_msgs::Vector3& data) {
+      62             : 
+      63           0 :   double x = data.x;
+      64           0 :   double y = data.y;
+      65           0 :   double z = data.z;
+      66             : 
+      67           0 :   return std::tuple(x, y, z);
+      68             : }
+      69             : 
+      70             : /**
+      71             :  * @brief get XYZ from geometry_msgs::Vector3ConstPtr
+      72             :  *
+      73             :  * @param data vector3 (ConstPtr)
+      74             :  *
+      75             :  * @return x, y, z
+      76             :  */
+      77           0 : std::tuple<double, double, double> getXYZ(const geometry_msgs::Vector3ConstPtr& data) {
+      78             : 
+      79           0 :   return getXYZ(*data);
+      80             : }
+      81             : 
+      82             : //}
+      83             : 
+      84             : /* geometry_msgs::Pose //{ */
+      85             : 
+      86             : /* getPosition() //{ */
+      87             : 
+      88             : /**
+      89             :  * @brief get position from geometry_msgs::Pose
+      90             :  *
+      91             :  * @param data pose
+      92             :  *
+      93             :  * @return x, y, z
+      94             :  */
+      95      205311 : std::tuple<double, double, double> getPosition(const geometry_msgs::Pose& data) {
+      96             : 
+      97      205311 :   return getXYZ(data.position);
+      98             : }
+      99             : 
+     100             : /**
+     101             :  * @brief get position from geometry_msgs::PoseConstPtr
+     102             :  *
+     103             :  * @param data pose (ConstPtr)
+     104             :  *
+     105             :  * @return x, y, z
+     106             :  */
+     107           0 : std::tuple<double, double, double> getPosition(const geometry_msgs::PoseConstPtr& data) {
+     108             : 
+     109           0 :   return getPosition(*data);
+     110             : }
+     111             : 
+     112             : //}
+     113             : 
+     114             : /* getHeading() //{ */
+     115             : 
+     116             : /**
+     117             :  * @brief get heading from geometry_msgs::Pose
+     118             :  *
+     119             :  * @param data pose
+     120             :  *
+     121             :  * @return heading
+     122             :  */
+     123      205310 : double getHeading(const geometry_msgs::Pose& data) {
+     124             : 
+     125      205310 :   return mrs_lib::AttitudeConverter(data.orientation).getHeading();
+     126             : }
+     127             : 
+     128             : /**
+     129             :  * @brief get heading from geometry_msgs::PoseConstPtr
+     130             :  *
+     131             :  * @param data pose (ConstPtr)
+     132             :  *
+     133             :  * @return heading
+     134             :  */
+     135           0 : double getHeading(const geometry_msgs::PoseConstPtr& data) {
+     136             : 
+     137           0 :   return getHeading(*data);
+     138             : }
+     139             : 
+     140             : //}
+     141             : 
+     142             : /* getYaw() //{ */
+     143             : 
+     144             : /**
+     145             :  * @brief get yaw from geometry_msgs::Pose
+     146             :  *
+     147             :  * @param data pose
+     148             :  *
+     149             :  * @return yaw
+     150             :  */
+     151           0 : double getYaw(const geometry_msgs::Pose& data) {
+     152             : 
+     153           0 :   return mrs_lib::AttitudeConverter(data.orientation).getYaw();
+     154             : }
+     155             : 
+     156             : /**
+     157             :  * @brief get yaw from geometry_msgs::PoseConstPtr
+     158             :  *
+     159             :  * @param data pose (ConstPtr)
+     160             :  *
+     161             :  * @return yaw
+     162             :  */
+     163           0 : double getYaw(const geometry_msgs::PoseConstPtr& data) {
+     164             : 
+     165           0 :   return getYaw(*data);
+     166             : }
+     167             : 
+     168             : //}
+     169             : 
+     170             : //}
+     171             : 
+     172             : /* geometry_msgs::PoseWithCovariance //{ */
+     173             : 
+     174             : /* getPosition() //{ */
+     175             : 
+     176             : /**
+     177             :  * @brief get position from geometry_msgs::PoseWithCovariance
+     178             :  *
+     179             :  * @param data pose with covariance
+     180             :  *
+     181             :  * @return x, y, z
+     182             :  */
+     183      205311 : std::tuple<double, double, double> getPosition(const geometry_msgs::PoseWithCovariance& data) {
+     184             : 
+     185      205311 :   return getPosition(data.pose);
+     186             : }
+     187             : 
+     188             : /**
+     189             :  * @brief get position from geometry_msgs::PoseWithCovarianceConstPtr
+     190             :  *
+     191             :  * @param data pose with covariance (ConstPtr)
+     192             :  *
+     193             :  * @return x, y, z
+     194             :  */
+     195           0 : std::tuple<double, double, double> getPosition(const geometry_msgs::PoseWithCovarianceConstPtr& data) {
+     196             : 
+     197           0 :   return getPosition(*data);
+     198             : }
+     199             : 
+     200             : //}
+     201             : 
+     202             : /* getHeading() //{ */
+     203             : 
+     204             : /**
+     205             :  * @brief get heading from geometry_msgs::PoseWithCovariance
+     206             :  *
+     207             :  * @param data pose with covariance
+     208             :  *
+     209             :  * @return heading
+     210             :  */
+     211      205310 : double getHeading(const geometry_msgs::PoseWithCovariance& data) {
+     212             : 
+     213      205310 :   return getHeading(data.pose);
+     214             : }
+     215             : 
+     216             : /**
+     217             :  * @brief get heading from geometry_msgs::PoseWithCovarianceConstPtr
+     218             :  *
+     219             :  * @param data pose with covariance (ConstPtr)
+     220             :  *
+     221             :  * @return heading
+     222             :  */
+     223           0 : double getHeading(const geometry_msgs::PoseWithCovarianceConstPtr& data) {
+     224             : 
+     225           0 :   return getHeading(*data);
+     226             : }
+     227             : 
+     228             : //}
+     229             : 
+     230             : /* getYaw() //{ */
+     231             : 
+     232             : /**
+     233             :  * @brief get yaw from geometry_msgs::PoseWithCovariance
+     234             :  *
+     235             :  * @param data pose with covariance
+     236             :  *
+     237             :  * @return yaw
+     238             :  */
+     239           0 : double getYaw(const geometry_msgs::PoseWithCovariance& data) {
+     240             : 
+     241           0 :   return getYaw(data.pose);
+     242             : }
+     243             : 
+     244             : /**
+     245             :  * @brief get yaw from geometry_msgs::PoseWithCovarianceConstPtr
+     246             :  *
+     247             :  * @param data pose with covariance (ConstPtr)
+     248             :  *
+     249             :  * @return yaw
+     250             :  */
+     251           0 : double getYaw(const geometry_msgs::PoseWithCovarianceConstPtr& data) {
+     252             : 
+     253           0 :   return getYaw(*data);
+     254             : }
+     255             : 
+     256             : //}
+     257             : 
+     258             : //}
+     259             : 
+     260             : /* geometry_msgs::Twist //{ */
+     261             : 
+     262             : /* getVelocity() //{ */
+     263             : 
+     264             : /**
+     265             :  * @brief get velocity from geometry_msgs::Twist
+     266             :  *
+     267             :  * @param data twist
+     268             :  *
+     269             :  * @return x, y, z
+     270             :  */
+     271           0 : std::tuple<double, double, double> getVelocity(const geometry_msgs::Twist& data) {
+     272             : 
+     273           0 :   return getXYZ(data.linear);
+     274             : }
+     275             : 
+     276             : /**
+     277             :  * @brief get position from geometry_msgs::TwistConstPtr
+     278             :  *
+     279             :  * @param data twist (ConstPtr)
+     280             :  *
+     281             :  * @return x, y, z
+     282             :  */
+     283           0 : std::tuple<double, double, double> getPosition(const geometry_msgs::TwistConstPtr& data) {
+     284             : 
+     285           0 :   return getVelocity(*data);
+     286             : }
+     287             : 
+     288             : //}
+     289             : 
+     290             : //}
+     291             : 
+     292             : /* geometry_msgs::TwistWithCovariance //{ */
+     293             : 
+     294             : /* getVelocity() //{ */
+     295             : 
+     296             : /**
+     297             :  * @brief get velocity from geometry_msgs::TwistWithCovariance
+     298             :  *
+     299             :  * @param data twistwithcovariance
+     300             :  *
+     301             :  * @return x, y, z
+     302             :  */
+     303           0 : std::tuple<double, double, double> getVelocity(const geometry_msgs::TwistWithCovariance& data) {
+     304             : 
+     305           0 :   return getVelocity(data.twist);
+     306             : }
+     307             : 
+     308             : /**
+     309             :  * @brief get position from geometry_msgs::TwistWithCovarianceConstPtr
+     310             :  *
+     311             :  * @param data twistwithcovariance (ConstPtr)
+     312             :  *
+     313             :  * @return x, y, z
+     314             :  */
+     315           0 : std::tuple<double, double, double> getPosition(const geometry_msgs::TwistWithCovarianceConstPtr& data) {
+     316             : 
+     317           0 :   return getVelocity(*data);
+     318             : }
+     319             : 
+     320             : //}
+     321             : 
+     322             : //}
+     323             : 
+     324             : /* nav_msgs::Odometry //{ */
+     325             : 
+     326             : /* getPosition() //{ */
+     327             : 
+     328             : /**
+     329             :  * @brief get position from nav_msgs::Odometry
+     330             :  *
+     331             :  * @param data odometry
+     332             :  *
+     333             :  * @return x, y, z
+     334             :  */
+     335      205312 : std::tuple<double, double, double> getPosition(const nav_msgs::Odometry& data) {
+     336             : 
+     337      205312 :   return getPosition(data.pose);
+     338             : }
+     339             : 
+     340             : /**
+     341             :  * @brief get position from nav_msgs::OdometryConstPtr
+     342             :  *
+     343             :  * @param data odometry (ConstPtr)
+     344             :  *
+     345             :  * @return x, y, z
+     346             :  */
+     347      205312 : std::tuple<double, double, double> getPosition(const nav_msgs::OdometryConstPtr& data) {
+     348             : 
+     349      205312 :   return getPosition(*data);
+     350             : }
+     351             : 
+     352             : //}
+     353             : 
+     354             : /* getVelocity() //{ */
+     355             : 
+     356             : /**
+     357             :  * @brief get position from nav_msgs::Odometry
+     358             :  *
+     359             :  * @param data odometry
+     360             :  *
+     361             :  * @return x, y, z
+     362             :  */
+     363           0 : std::tuple<double, double, double> getVelocity(const nav_msgs::Odometry& data) {
+     364             : 
+     365           0 :   return getVelocity(data.twist);
+     366             : }
+     367             : 
+     368             : /**
+     369             :  * @brief get velocity from nav_msgs::OdometryConstPtr
+     370             :  *
+     371             :  * @param data odometry (ConstPtr)
+     372             :  *
+     373             :  * @return x, y, z
+     374             :  */
+     375           0 : std::tuple<double, double, double> getVelocity(const nav_msgs::OdometryConstPtr& data) {
+     376             : 
+     377           0 :   return getVelocity(*data);
+     378             : }
+     379             : 
+     380             : //}
+     381             : 
+     382             : /* getHeading() //{ */
+     383             : 
+     384             : /**
+     385             :  * @brief get heading from nav_msgs::Odometry
+     386             :  *
+     387             :  * @param data odometry
+     388             :  *
+     389             :  * @return heading
+     390             :  */
+     391      205311 : double getHeading(const nav_msgs::Odometry& data) {
+     392             : 
+     393      205311 :   return getHeading(data.pose);
+     394             : }
+     395             : 
+     396             : /**
+     397             :  * @brief get heading from nav_msgs::OdometryConstPtr
+     398             :  *
+     399             :  * @param data odometry (ConstPtr)
+     400             :  *
+     401             :  * @return heading
+     402             :  */
+     403      205307 : double getHeading(const nav_msgs::OdometryConstPtr& data) {
+     404             : 
+     405      205307 :   return getHeading(*data);
+     406             : }
+     407             : 
+     408             : //}
+     409             : 
+     410             : /* getYaw() //{ */
+     411             : 
+     412             : /**
+     413             :  * @brief get yaw from nav_msgs::Odometry
+     414             :  *
+     415             :  * @param data odometry
+     416             :  *
+     417             :  * @return yaw
+     418             :  */
+     419           0 : double getYaw(const nav_msgs::Odometry& data) {
+     420             : 
+     421           0 :   return getYaw(data.pose);
+     422             : }
+     423             : 
+     424             : /**
+     425             :  * @brief get yaw from nav_msgs::OdometryConstPtr
+     426             :  *
+     427             :  * @param data odometry (ConstPtr)
+     428             :  *
+     429             :  * @return yaw
+     430             :  */
+     431           0 : double getYaw(const nav_msgs::OdometryConstPtr& data) {
+     432             : 
+     433           0 :   return getYaw(*data);
+     434             : }
+     435             : 
+     436             : //}
+     437             : 
+     438             : /* getPose() //{ */
+     439             : 
+     440             : /**
+     441             :  * @brief returns the Pose part of the nav_msgs::Odometry message
+     442             :  *
+     443             :  * @param data odometry
+     444             :  *
+     445             :  * @return pose
+     446             :  */
+     447        1589 : geometry_msgs::Pose getPose(const nav_msgs::Odometry& data) {
+     448             : 
+     449        1589 :   return data.pose.pose;
+     450             : }
+     451             : 
+     452             : /**
+     453             :  * @brief returns the Pose part of the nav_msgs::OdometryConstPtr message
+     454             :  *
+     455             :  * @param data odometry (ConstPtr)
+     456             :  *
+     457             :  * @return pose
+     458             :  */
+     459           0 : geometry_msgs::Pose getPose(const nav_msgs::OdometryConstPtr& data) {
+     460             : 
+     461           0 :   return getPose(*data);
+     462             : }
+     463             : 
+     464             : //}
+     465             : 
+     466             : //}
+     467             : 
+     468             : /* mrs_msgs::TrackerCommand //{ */
+     469             : 
+     470             : /* getPosition() //{ */
+     471             : 
+     472             : /**
+     473             :  * @brief get position data from mrs_msgs::TrackerCommand
+     474             :  *
+     475             :  * @param data position command
+     476             :  *
+     477             :  * @return x, y, z
+     478             :  */
+     479         360 : std::tuple<double, double, double> getPosition(const mrs_msgs::TrackerCommand& data) {
+     480             : 
+     481         360 :   return getXYZ(data.position);
+     482             : }
+     483             : 
+     484             : /**
+     485             :  * @brief get position data from mrs_msgs::TrackerCommandConstPtr
+     486             :  *
+     487             :  * @param data position command (ConstPtr)
+     488             :  *
+     489             :  * @return x, y, z
+     490             :  */
+     491           0 : std::tuple<double, double, double> getPosition(const mrs_msgs::TrackerCommandConstPtr& data) {
+     492             : 
+     493           0 :   return getPosition(*data);
+     494             : }
+     495             : 
+     496             : //}
+     497             : 
+     498             : /* getVelocity() //{ */
+     499             : 
+     500             : /**
+     501             :  * @brief get velocity data from mrs_msgs::TrackerCommand
+     502             :  *
+     503             :  * @param data position command
+     504             :  *
+     505             :  * @return x, y, z
+     506             :  */
+     507           0 : std::tuple<double, double, double> getVelocity(const mrs_msgs::TrackerCommand& data) {
+     508             : 
+     509           0 :   return getXYZ(data.velocity);
+     510             : }
+     511             : 
+     512             : /**
+     513             :  * @brief get velocity data from mrs_msgs::TrackerCommandConstPtr
+     514             :  *
+     515             :  * @param data position command (ConstPtr)
+     516             :  *
+     517             :  * @return x, y, z
+     518             :  */
+     519           0 : std::tuple<double, double, double> getVelocity(const mrs_msgs::TrackerCommandConstPtr& data) {
+     520             : 
+     521           0 :   return getVelocity(*data);
+     522             : }
+     523             : 
+     524             : //}
+     525             : 
+     526             : /* getHeading() //{ */
+     527             : 
+     528             : /**
+     529             :  * @brief get heading from mrs_msgs::TrackerCommand
+     530             :  *
+     531             :  * @param data position command
+     532             :  *
+     533             :  * @return heading
+     534             :  */
+     535           0 : double getHeading(const mrs_msgs::TrackerCommand& data) {
+     536             : 
+     537           0 :   double heading = 0;
+     538             : 
+     539           0 :   if (data.use_heading) {
+     540             : 
+     541           0 :     heading = data.heading;
+     542             : 
+     543           0 :   } else if (data.use_orientation) {
+     544             : 
+     545           0 :     heading = mrs_lib::AttitudeConverter(data.orientation).getHeading();
+     546             :   }
+     547             : 
+     548           0 :   return heading;
+     549             : }
+     550             : 
+     551             : /**
+     552             :  * @brief get heading from mrs_msgs::TrackerCommandConstPtr
+     553             :  *
+     554             :  * @param data position command (ConstPtr)
+     555             :  *
+     556             :  * @return heading
+     557             :  */
+     558           0 : double getHeading(const mrs_msgs::TrackerCommandConstPtr& data) {
+     559             : 
+     560           0 :   return getHeading(*data);
+     561             : }
+     562             : 
+     563             : //}
+     564             : 
+     565             : //}
+     566             : 
+     567             : /* mrs_msgs::Reference //{ */
+     568             : 
+     569             : /* getPosition() //{ */
+     570             : 
+     571             : /**
+     572             :  * @brief get position from mrs_msgs::Reference
+     573             :  *
+     574             :  * @param data reference
+     575             :  *
+     576             :  * @return x, y, z
+     577             :  */
+     578         360 : std::tuple<double, double, double> getPosition(const mrs_msgs::Reference& data) {
+     579             : 
+     580         360 :   return getXYZ(data.position);
+     581             : }
+     582             : 
+     583             : /**
+     584             :  * @brief get position from mrs_msgs::ReferenceConstPtr
+     585             :  *
+     586             :  * @param data reference (ContrPtr)
+     587             :  *
+     588             :  * @return x, y, z
+     589             :  */
+     590           0 : std::tuple<double, double, double> getPosition(const mrs_msgs::ReferenceConstPtr& data) {
+     591             : 
+     592           0 :   return getPosition(*data);
+     593             : }
+     594             : 
+     595             : //}
+     596             : 
+     597             : /* getHeading() //{ */
+     598             : 
+     599             : /**
+     600             :  * @brief get heading from mrs_msgs::Reference
+     601             :  *
+     602             :  * @param data reference
+     603             :  *
+     604             :  * @return heading
+     605             :  */
+     606         360 : double getHeading(const mrs_msgs::Reference& data) {
+     607             : 
+     608         360 :   return data.heading;
+     609             : }
+     610             : 
+     611             : /**
+     612             :  * @brief get heading from mrs_msgs::ReferenceConstPtr
+     613             :  *
+     614             :  * @param data reference (ContrPtr)
+     615             :  *
+     616             :  * @return heading
+     617             :  */
+     618           0 : double getHeading(const mrs_msgs::ReferenceConstPtr& data) {
+     619             : 
+     620           0 :   return getHeading(*data);
+     621             : }
+     622             : 
+     623             : //}
+     624             : 
+     625             : //}
+     626             : 
+     627             : /* mrs_msgs::ReferenceStamped //{ */
+     628             : 
+     629             : /* getPosition() //{ */
+     630             : 
+     631             : /**
+     632             :  * @brief get position from mrs_msgs::ReferenceStamped
+     633             :  *
+     634             :  * @param data reference stamped
+     635             :  *
+     636             :  * @return x, y, z
+     637             :  */
+     638         360 : std::tuple<double, double, double> getPosition(const mrs_msgs::ReferenceStamped& data) {
+     639             : 
+     640         360 :   return getPosition(data.reference);
+     641             : }
+     642             : 
+     643             : /**
+     644             :  * @brief get position from mrs_msgs::ReferenceStampedConstPtr
+     645             :  *
+     646             :  * @param data reference stamped (ContrPtr)
+     647             :  *
+     648             :  * @return x, y, z
+     649             :  */
+     650           0 : std::tuple<double, double, double> getPosition(const mrs_msgs::ReferenceStampedConstPtr& data) {
+     651             : 
+     652           0 :   return getPosition(*data);
+     653             : }
+     654             : 
+     655             : //}
+     656             : 
+     657             : /* getHeading() //{ */
+     658             : 
+     659             : /**
+     660             :  * @brief get heading from mrs_msgs::ReferenceStamped
+     661             :  *
+     662             :  * @param data referencestamped
+     663             :  *
+     664             :  * @return heading
+     665             :  */
+     666         360 : double getHeading(const mrs_msgs::ReferenceStamped& data) {
+     667             : 
+     668         360 :   return getHeading(data.reference);
+     669             : }
+     670             : 
+     671             : /**
+     672             :  * @brief get heading from mrs_msgs::ReferenceStampedConstPtr
+     673             :  *
+     674             :  * @param data referencestamped (ContrPtr)
+     675             :  *
+     676             :  * @return heading
+     677             :  */
+     678           0 : double getHeading(const mrs_msgs::ReferenceStampedConstPtr& data) {
+     679             : 
+     680           0 :   return getHeading(*data);
+     681             : }
+     682             : 
+     683             : //}
+     684             : 
+     685             : //}
+     686             : 
+     687             : }  // namespace mrs_lib
+     688             : 
+     689             : //}
+     690             : 
+     691             : #endif  // MRS_LIB_MSG_EXTRACTOR_H
+
+
+
+ + + + +
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Current view:top level - mrs_lib/include/mrs_lib - mutex.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1111100.0 %
Date:2024-04-17 23:52:03Functions:678083.8 %
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Function Name Sort by function nameHit count Sort by hit count
std::tuple<double, double, double, double> mrs_lib::get_mutexed<double, double, double, double>(std::mutex&, double&, double&, double&, double&)0
mrs_msgs::Float64ArrayStamped_<std::allocator<void> > const mrs_lib::get_mutexed<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > const>(std::mutex&, mrs_msgs::Float64ArrayStamped_<std::allocator<void> > const&)0
mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const mrs_lib::get_mutexed<mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const>(std::mutex&, mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&)0
Eigen::Matrix<double, 2, 2, 0, 2, 2> mrs_lib::get_mutexed<Eigen::Matrix<double, 2, 2, 0, 2, 2> >(std::mutex&, Eigen::Matrix<double, 2, 2, 0, 2, 2>&)0
mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >(std::mutex&, mrs_msgs::SpeedTrackerCommand_<std::allocator<void> >&)0
mrs_lib::KalmanFilter<2, 1, 1>::statecov_t mrs_lib::get_mutexed<mrs_lib::KalmanFilter<2, 1, 1>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<2, 1, 1>::statecov_t&)0
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 2, 1, 0, 2, 1> >(std::mutex&, Eigen::Matrix<double, 2, 1, 0, 2, 1>, Eigen::Matrix<double, 2, 1, 0, 2, 1>&)0
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 2, 2, 0, 2, 2> >(std::mutex&, Eigen::Matrix<double, 2, 2, 0, 2, 2>, Eigen::Matrix<double, 2, 2, 0, 2, 2>&)0
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 3, 1, 0, 3, 1> >(std::mutex&, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>&)0
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 3, 3, 0, 3, 3> >(std::mutex&, Eigen::Matrix<double, 3, 3, 0, 3, 3>, Eigen::Matrix<double, 3, 3, 0, 3, 3>&)0
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 6, 1, 0, 6, 1> >(std::mutex&, Eigen::Matrix<double, 6, 1, 0, 6, 1>, Eigen::Matrix<double, 6, 1, 0, 6, 1>&)0
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 6, 6, 0, 6, 6> >(std::mutex&, Eigen::Matrix<double, 6, 6, 0, 6, 6>, Eigen::Matrix<double, 6, 6, 0, 6, 6>&)0
auto mrs_lib::set_mutexed<mrs_lib::KalmanFilter<2, 1, 1>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<2, 1, 1>::statecov_t, mrs_lib::KalmanFilter<2, 1, 1>::statecov_t&)0
mrs_msgs::ConstraintsOverrideRequest_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::ConstraintsOverrideRequest_<std::allocator<void> > >(std::mutex&, mrs_msgs::ConstraintsOverrideRequest_<std::allocator<void> >&)1
mrs_uav_trajectory_generation::drsConfig mrs_lib::get_mutexed<mrs_uav_trajectory_generation::drsConfig>(std::mutex&, mrs_uav_trajectory_generation::drsConfig&)38
auto mrs_lib::set_mutexed<mrs_uav_trajectory_generation::drsConfig>(std::mutex&, mrs_uav_trajectory_generation::drsConfig, mrs_uav_trajectory_generation::drsConfig&)91
auto mrs_lib::set_mutexed<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > >(std::mutex&, mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> >, mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> >&)114
auto mrs_lib::set_mutexed<mrs_uav_controllers::mpc_controllerConfig>(std::mutex&, mrs_uav_controllers::mpc_controllerConfig, mrs_uav_controllers::mpc_controllerConfig&)182
auto mrs_lib::set_mutexed<mrs_uav_controllers::se3_controllerConfig>(std::mutex&, mrs_uav_controllers::se3_controllerConfig, mrs_uav_controllers::se3_controllerConfig&)183
mrs_msgs::ObstacleSectors_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::ObstacleSectors_<std::allocator<void> > >(std::mutex&, mrs_msgs::ObstacleSectors_<std::allocator<void> >&)439
mrs_msgs::VelocityReference_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::VelocityReference_<std::allocator<void> > >(std::mutex&, mrs_msgs::VelocityReference_<std::allocator<void> >&)503
mrs_msgs::ReferenceStamped_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(std::mutex&, mrs_msgs::ReferenceStamped_<std::allocator<void> >&)1107
auto mrs_lib::set_mutexed<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >(std::mutex&, mrs_msgs::DynamicsConstraints_<std::allocator<void> >, mrs_msgs::DynamicsConstraints_<std::allocator<void> >&)2038
auto mrs_lib::set_mutexed<mrs_uav_controllers::se3_controller::Gains_t>(std::mutex&, mrs_uav_controllers::se3_controller::Gains_t, mrs_uav_controllers::se3_controller::Gains_t&)4328
int mrs_lib::get_mutexed<int>(std::mutex&, int&)7500
std::tuple<int, double> mrs_lib::get_mutexed<int, double>(std::mutex&, int&, double&)11702
std::tuple<bool, bool, ros::Time, ros::Time> mrs_lib::get_mutexed<bool, bool, ros::Time, ros::Time>(std::mutex&, bool&, bool&, ros::Time&, ros::Time&)12780
auto mrs_lib::set_mutexed<mrs_uav_controllers::mpc_controller::Gains_t>(std::mutex&, mrs_uav_controllers::mpc_controller::Gains_t, mrs_uav_controllers::mpc_controller::Gains_t&)13636
std::optional<double> mrs_lib::get_mutexed<std::optional<double> >(std::mutex&, std::optional<double>&)16239
std::tuple<double, double> mrs_lib::get_mutexed<double, double>(std::mutex&, double&, double&)17009
std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const mrs_lib::get_mutexed<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const>(std::mutex&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)17077
std::tuple<double, double, double, double, double, double, double> mrs_lib::get_mutexed<double, double, double, double, double, double, double>(std::mutex&, double&, double&, double&, double&, double&, double&, double&)23220
std::tuple<double, double, double> mrs_lib::get_mutexed<double, double, double>(std::mutex&, double&, double&, double&)27842
mrs_uav_controllers::se3_controller::Gains_t mrs_lib::get_mutexed<mrs_uav_controllers::se3_controller::Gains_t>(std::mutex&, mrs_uav_controllers::se3_controller::Gains_t&)30994
auto mrs_lib::set_mutexed<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::mutex&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&)32706
mrs_uav_controllers::se3_controllerConfig mrs_lib::get_mutexed<mrs_uav_controllers::se3_controllerConfig>(std::mutex&, mrs_uav_controllers::se3_controllerConfig&)55235
std::tuple<Eigen::Matrix<double, -1, 1, 0, -1, 1>, double> mrs_lib::get_mutexed<Eigen::Matrix<double, -1, 1, 0, -1, 1>, double>(std::mutex&, Eigen::Matrix<double, -1, 1, 0, -1, 1>&, double&)64313
mrs_msgs::MpcPredictionFullState_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::MpcPredictionFullState_<std::allocator<void> > >(std::mutex&, mrs_msgs::MpcPredictionFullState_<std::allocator<void> >&)64313
mrs_uav_controllers::mpc_controller::Gains_t mrs_lib::get_mutexed<mrs_uav_controllers::mpc_controller::Gains_t>(std::mutex&, mrs_uav_controllers::mpc_controller::Gains_t&)69303
std::tuple<bool, double, double> mrs_lib::get_mutexed<bool, double, double>(std::mutex&, bool&, double&, double&)69502
mrs_uav_trackers::mpc_trackerConfig mrs_lib::get_mutexed<mrs_uav_trackers::mpc_trackerConfig>(std::mutex&, mrs_uav_trackers::mpc_trackerConfig&)69502
std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > mrs_lib::get_mutexed<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::mutex&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&)77552
auto mrs_lib::set_mutexed<mrs_uav_managers::Controller::ControlOutput>(std::mutex&, mrs_uav_managers::Controller::ControlOutput, mrs_uav_managers::Controller::ControlOutput&)94092
mrs_uav_controllers::mpc_controllerConfig mrs_lib::get_mutexed<mrs_uav_controllers::mpc_controllerConfig>(std::mutex&, mrs_uav_controllers::mpc_controllerConfig&)125821
auto mrs_lib::set_mutexed<mrs_msgs::Float64Stamped_<std::allocator<void> > >(std::mutex&, mrs_msgs::Float64Stamped_<std::allocator<void> >, mrs_msgs::Float64Stamped_<std::allocator<void> >&)132245
mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > >(std::mutex&, mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> >&)144197
Eigen::Matrix<double, 6, 6, 0, 6, 6> mrs_lib::get_mutexed<Eigen::Matrix<double, 6, 6, 0, 6, 6> >(std::mutex&, Eigen::Matrix<double, 6, 6, 0, 6, 6>&)171700
Eigen::Matrix<double, 1, 1, 0, 1, 1> const mrs_lib::get_mutexed<Eigen::Matrix<double, 1, 1, 0, 1, 1> const>(std::mutex&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&)182532
mrs_msgs::UavState_<std::allocator<void> > const mrs_lib::get_mutexed<mrs_msgs::UavState_<std::allocator<void> > const>(std::mutex&, mrs_msgs::UavState_<std::allocator<void> > const&)183724
Eigen::Matrix<double, 2, 2, 0, 2, 2> const mrs_lib::get_mutexed<Eigen::Matrix<double, 2, 2, 0, 2, 2> const>(std::mutex&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&)189838
auto mrs_lib::set_mutexed<std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> > >(std::mutex&, std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> >, std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> >&)192523
std::tuple<std::optional<double>, std::optional<double> > mrs_lib::get_mutexed<std::optional<double>, std::optional<double> >(std::mutex&, std::optional<double>&, std::optional<double>&)193532
std::tuple<Eigen::Matrix<double, -1, -1, 0, -1, -1>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > mrs_lib::get_mutexed<Eigen::Matrix<double, -1, -1, 0, -1, -1>, Eigen::Matrix<double, -1, -1, 0, -1, -1> >(std::mutex&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&)206456
std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> > mrs_lib::get_mutexed<std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> > >(std::mutex&, std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> >&)209771
Eigen::Matrix<double, -1, -1, 0, -1, -1> mrs_lib::get_mutexed<Eigen::Matrix<double, -1, -1, 0, -1, -1> >(std::mutex&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&)223526
mrs_msgs::DynamicsConstraints_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >(std::mutex&, mrs_msgs::DynamicsConstraints_<std::allocator<void> >&)242917
mrs_msgs::Float64Stamped_<std::allocator<void> > const mrs_lib::get_mutexed<mrs_msgs::Float64Stamped_<std::allocator<void> > const>(std::mutex&, mrs_msgs::Float64Stamped_<std::allocator<void> > const&)270889
Eigen::Matrix<double, 3, 3, 0, 3, 3> mrs_lib::get_mutexed<Eigen::Matrix<double, 3, 3, 0, 3, 3> >(std::mutex&, Eigen::Matrix<double, 3, 3, 0, 3, 3>&)291679
std::tuple<mrs_msgs::UavState_<std::allocator<void> >, double> mrs_lib::get_mutexed<mrs_msgs::UavState_<std::allocator<void> >, double>(std::mutex&, mrs_msgs::UavState_<std::allocator<void> >&, double&)297352
std::vector<double, std::allocator<double> > const mrs_lib::get_mutexed<std::vector<double, std::allocator<double> > const>(std::mutex&, std::vector<double, std::allocator<double> > const&)310202
nav_msgs::Odometry_<std::allocator<void> > const mrs_lib::get_mutexed<nav_msgs::Odometry_<std::allocator<void> > const>(std::mutex&, nav_msgs::Odometry_<std::allocator<void> > const&)338850
auto mrs_lib::set_mutexed<mrs_lib::KalmanFilter<6, 2, 2>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<6, 2, 2>::statecov_t, mrs_lib::KalmanFilter<6, 2, 2>::statecov_t&)365045
mrs_lib::KalmanFilter<6, 2, 2>::statecov_t mrs_lib::get_mutexed<mrs_lib::KalmanFilter<6, 2, 2>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<6, 2, 2>::statecov_t&)365064
auto mrs_lib::set_mutexed<nav_msgs::Odometry_<std::allocator<void> > >(std::mutex&, nav_msgs::Odometry_<std::allocator<void> >, nav_msgs::Odometry_<std::allocator<void> >&)367376
auto mrs_lib::set_mutexed<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >(std::mutex&, mrs_msgs::Float64ArrayStamped_<std::allocator<void> >, mrs_msgs::Float64ArrayStamped_<std::allocator<void> >&)499467
Eigen::Matrix<double, 2, 1, 0, 2, 1> const mrs_lib::get_mutexed<Eigen::Matrix<double, 2, 1, 0, 2, 1> const>(std::mutex&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)554956
std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > mrs_lib::get_mutexed<std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > >(std::mutex&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > >&)626827
double const mrs_lib::get_mutexed<double const>(std::mutex&, double const&)662314
mrs_uav_managers::Controller::ControlOutput mrs_lib::get_mutexed<mrs_uav_managers::Controller::ControlOutput>(std::mutex&, mrs_uav_managers::Controller::ControlOutput&)718589
auto mrs_lib::set_mutexed<mrs_lib::KalmanFilter<3, 1, 1>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<3, 1, 1>::statecov_t, mrs_lib::KalmanFilter<3, 1, 1>::statecov_t&)734164
mrs_lib::KalmanFilter<3, 1, 1>::statecov_t mrs_lib::get_mutexed<mrs_lib::KalmanFilter<3, 1, 1>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<3, 1, 1>::statecov_t&)735194
ros::Time mrs_lib::get_mutexed<ros::Time>(std::mutex&, ros::Time&)878850
unsigned int mrs_lib::get_mutexed<unsigned int>(std::mutex&, unsigned int&)888544
mrs_msgs::UavState_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::UavState_<std::allocator<void> > >(std::mutex&, mrs_msgs::UavState_<std::allocator<void> >&)920851
auto mrs_lib::set_mutexed<mrs_msgs::UavState_<std::allocator<void> > >(std::mutex&, mrs_msgs::UavState_<std::allocator<void> >, mrs_msgs::UavState_<std::allocator<void> >&)945849
double mrs_lib::get_mutexed<double>(std::mutex&, double&)947312
auto mrs_lib::set_mutexed<double>(std::mutex&, double, double&)1026365
mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const mrs_lib::get_mutexed<mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const>(std::mutex&, mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&)2295273
mrs_uav_managers::estimation_manager::StateMachine::SMState_t const mrs_lib::get_mutexed<mrs_uav_managers::estimation_manager::StateMachine::SMState_t const>(std::mutex&, mrs_uav_managers::estimation_manager::StateMachine::SMState_t const&)2384003
mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const mrs_lib::get_mutexed<mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const>(std::mutex&, mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&)2545644
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LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - mutex.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1111100.0 %
Date:2024-04-17 23:52:03Functions:678083.8 %
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Function Name Sort by function nameHit count Sort by hit count
std::tuple<Eigen::Matrix<double, -1, 1, 0, -1, 1>, double> mrs_lib::get_mutexed<Eigen::Matrix<double, -1, 1, 0, -1, 1>, double>(std::mutex&, Eigen::Matrix<double, -1, 1, 0, -1, 1>&, double&)64313
std::tuple<Eigen::Matrix<double, -1, -1, 0, -1, -1>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > mrs_lib::get_mutexed<Eigen::Matrix<double, -1, -1, 0, -1, -1>, Eigen::Matrix<double, -1, -1, 0, -1, -1> >(std::mutex&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&)206456
std::tuple<mrs_msgs::UavState_<std::allocator<void> >, double> mrs_lib::get_mutexed<mrs_msgs::UavState_<std::allocator<void> >, double>(std::mutex&, mrs_msgs::UavState_<std::allocator<void> >&, double&)297352
std::tuple<std::optional<double>, std::optional<double> > mrs_lib::get_mutexed<std::optional<double>, std::optional<double> >(std::mutex&, std::optional<double>&, std::optional<double>&)193532
std::tuple<bool, bool, ros::Time, ros::Time> mrs_lib::get_mutexed<bool, bool, ros::Time, ros::Time>(std::mutex&, bool&, bool&, ros::Time&, ros::Time&)12780
std::tuple<bool, double, double> mrs_lib::get_mutexed<bool, double, double>(std::mutex&, bool&, double&, double&)69502
std::tuple<double, double> mrs_lib::get_mutexed<double, double>(std::mutex&, double&, double&)17009
std::tuple<double, double, double> mrs_lib::get_mutexed<double, double, double>(std::mutex&, double&, double&, double&)27842
std::tuple<double, double, double, double> mrs_lib::get_mutexed<double, double, double, double>(std::mutex&, double&, double&, double&, double&)0
std::tuple<double, double, double, double, double, double, double> mrs_lib::get_mutexed<double, double, double, double, double, double, double>(std::mutex&, double&, double&, double&, double&, double&, double&, double&)23220
std::tuple<int, double> mrs_lib::get_mutexed<int, double>(std::mutex&, int&, double&)11702
mrs_uav_managers::estimation_manager::StateMachine::SMState_t const mrs_lib::get_mutexed<mrs_uav_managers::estimation_manager::StateMachine::SMState_t const>(std::mutex&, mrs_uav_managers::estimation_manager::StateMachine::SMState_t const&)2384003
Eigen::Matrix<double, 1, 1, 0, 1, 1> const mrs_lib::get_mutexed<Eigen::Matrix<double, 1, 1, 0, 1, 1> const>(std::mutex&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&)182532
Eigen::Matrix<double, 2, 1, 0, 2, 1> const mrs_lib::get_mutexed<Eigen::Matrix<double, 2, 1, 0, 2, 1> const>(std::mutex&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)554956
Eigen::Matrix<double, 2, 2, 0, 2, 2> const mrs_lib::get_mutexed<Eigen::Matrix<double, 2, 2, 0, 2, 2> const>(std::mutex&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&)189838
mrs_msgs::Float64Stamped_<std::allocator<void> > const mrs_lib::get_mutexed<mrs_msgs::Float64Stamped_<std::allocator<void> > const>(std::mutex&, mrs_msgs::Float64Stamped_<std::allocator<void> > const&)270889
mrs_msgs::Float64ArrayStamped_<std::allocator<void> > const mrs_lib::get_mutexed<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > const>(std::mutex&, mrs_msgs::Float64ArrayStamped_<std::allocator<void> > const&)0
mrs_msgs::UavState_<std::allocator<void> > const mrs_lib::get_mutexed<mrs_msgs::UavState_<std::allocator<void> > const>(std::mutex&, mrs_msgs::UavState_<std::allocator<void> > const&)183724
nav_msgs::Odometry_<std::allocator<void> > const mrs_lib::get_mutexed<nav_msgs::Odometry_<std::allocator<void> > const>(std::mutex&, nav_msgs::Odometry_<std::allocator<void> > const&)338850
mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const mrs_lib::get_mutexed<mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const>(std::mutex&, mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&)0
mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const mrs_lib::get_mutexed<mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const>(std::mutex&, mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&)2295273
mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const mrs_lib::get_mutexed<mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const>(std::mutex&, mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&)2545644
std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const mrs_lib::get_mutexed<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const>(std::mutex&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)17077
std::vector<double, std::allocator<double> > const mrs_lib::get_mutexed<std::vector<double, std::allocator<double> > const>(std::mutex&, std::vector<double, std::allocator<double> > const&)310202
double const mrs_lib::get_mutexed<double const>(std::mutex&, double const&)662314
mrs_uav_managers::Controller::ControlOutput mrs_lib::get_mutexed<mrs_uav_managers::Controller::ControlOutput>(std::mutex&, mrs_uav_managers::Controller::ControlOutput&)718589
mrs_uav_trackers::mpc_trackerConfig mrs_lib::get_mutexed<mrs_uav_trackers::mpc_trackerConfig>(std::mutex&, mrs_uav_trackers::mpc_trackerConfig&)69502
mrs_uav_controllers::mpc_controller::Gains_t mrs_lib::get_mutexed<mrs_uav_controllers::mpc_controller::Gains_t>(std::mutex&, mrs_uav_controllers::mpc_controller::Gains_t&)69303
mrs_uav_controllers::se3_controller::Gains_t mrs_lib::get_mutexed<mrs_uav_controllers::se3_controller::Gains_t>(std::mutex&, mrs_uav_controllers::se3_controller::Gains_t&)30994
mrs_uav_controllers::mpc_controllerConfig mrs_lib::get_mutexed<mrs_uav_controllers::mpc_controllerConfig>(std::mutex&, mrs_uav_controllers::mpc_controllerConfig&)125821
mrs_uav_controllers::se3_controllerConfig mrs_lib::get_mutexed<mrs_uav_controllers::se3_controllerConfig>(std::mutex&, mrs_uav_controllers::se3_controllerConfig&)55235
mrs_uav_trajectory_generation::drsConfig mrs_lib::get_mutexed<mrs_uav_trajectory_generation::drsConfig>(std::mutex&, mrs_uav_trajectory_generation::drsConfig&)38
ros::Time mrs_lib::get_mutexed<ros::Time>(std::mutex&, ros::Time&)878850
Eigen::Matrix<double, 2, 2, 0, 2, 2> mrs_lib::get_mutexed<Eigen::Matrix<double, 2, 2, 0, 2, 2> >(std::mutex&, Eigen::Matrix<double, 2, 2, 0, 2, 2>&)0
Eigen::Matrix<double, 3, 3, 0, 3, 3> mrs_lib::get_mutexed<Eigen::Matrix<double, 3, 3, 0, 3, 3> >(std::mutex&, Eigen::Matrix<double, 3, 3, 0, 3, 3>&)291679
Eigen::Matrix<double, 6, 6, 0, 6, 6> mrs_lib::get_mutexed<Eigen::Matrix<double, 6, 6, 0, 6, 6> >(std::mutex&, Eigen::Matrix<double, 6, 6, 0, 6, 6>&)171700
Eigen::Matrix<double, -1, -1, 0, -1, -1> mrs_lib::get_mutexed<Eigen::Matrix<double, -1, -1, 0, -1, -1> >(std::mutex&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&)223526
mrs_msgs::ObstacleSectors_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::ObstacleSectors_<std::allocator<void> > >(std::mutex&, mrs_msgs::ObstacleSectors_<std::allocator<void> >&)439
mrs_msgs::ReferenceStamped_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(std::mutex&, mrs_msgs::ReferenceStamped_<std::allocator<void> >&)1107
mrs_msgs::VelocityReference_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::VelocityReference_<std::allocator<void> > >(std::mutex&, mrs_msgs::VelocityReference_<std::allocator<void> >&)503
mrs_msgs::DynamicsConstraints_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >(std::mutex&, mrs_msgs::DynamicsConstraints_<std::allocator<void> >&)242917
mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >(std::mutex&, mrs_msgs::SpeedTrackerCommand_<std::allocator<void> >&)0
mrs_msgs::MpcPredictionFullState_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::MpcPredictionFullState_<std::allocator<void> > >(std::mutex&, mrs_msgs::MpcPredictionFullState_<std::allocator<void> >&)64313
mrs_msgs::ConstraintsOverrideRequest_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::ConstraintsOverrideRequest_<std::allocator<void> > >(std::mutex&, mrs_msgs::ConstraintsOverrideRequest_<std::allocator<void> >&)1
mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > >(std::mutex&, mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> >&)144197
mrs_msgs::UavState_<std::allocator<void> > mrs_lib::get_mutexed<mrs_msgs::UavState_<std::allocator<void> > >(std::mutex&, mrs_msgs::UavState_<std::allocator<void> >&)920851
mrs_lib::KalmanFilter<2, 1, 1>::statecov_t mrs_lib::get_mutexed<mrs_lib::KalmanFilter<2, 1, 1>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<2, 1, 1>::statecov_t&)0
mrs_lib::KalmanFilter<3, 1, 1>::statecov_t mrs_lib::get_mutexed<mrs_lib::KalmanFilter<3, 1, 1>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<3, 1, 1>::statecov_t&)735194
mrs_lib::KalmanFilter<6, 2, 2>::statecov_t mrs_lib::get_mutexed<mrs_lib::KalmanFilter<6, 2, 2>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<6, 2, 2>::statecov_t&)365064
std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > mrs_lib::get_mutexed<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::mutex&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&)77552
std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> > mrs_lib::get_mutexed<std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> > >(std::mutex&, std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> >&)209771
std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > mrs_lib::get_mutexed<std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > >(std::mutex&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > >&)626827
std::optional<double> mrs_lib::get_mutexed<std::optional<double> >(std::mutex&, std::optional<double>&)16239
double mrs_lib::get_mutexed<double>(std::mutex&, double&)947312
int mrs_lib::get_mutexed<int>(std::mutex&, int&)7500
unsigned int mrs_lib::get_mutexed<unsigned int>(std::mutex&, unsigned int&)888544
auto mrs_lib::set_mutexed<mrs_uav_managers::Controller::ControlOutput>(std::mutex&, mrs_uav_managers::Controller::ControlOutput, mrs_uav_managers::Controller::ControlOutput&)94092
auto mrs_lib::set_mutexed<mrs_uav_controllers::mpc_controller::Gains_t>(std::mutex&, mrs_uav_controllers::mpc_controller::Gains_t, mrs_uav_controllers::mpc_controller::Gains_t&)13636
auto mrs_lib::set_mutexed<mrs_uav_controllers::se3_controller::Gains_t>(std::mutex&, mrs_uav_controllers::se3_controller::Gains_t, mrs_uav_controllers::se3_controller::Gains_t&)4328
auto mrs_lib::set_mutexed<mrs_uav_controllers::mpc_controllerConfig>(std::mutex&, mrs_uav_controllers::mpc_controllerConfig, mrs_uav_controllers::mpc_controllerConfig&)182
auto mrs_lib::set_mutexed<mrs_uav_controllers::se3_controllerConfig>(std::mutex&, mrs_uav_controllers::se3_controllerConfig, mrs_uav_controllers::se3_controllerConfig&)183
auto mrs_lib::set_mutexed<mrs_uav_trajectory_generation::drsConfig>(std::mutex&, mrs_uav_trajectory_generation::drsConfig, mrs_uav_trajectory_generation::drsConfig&)91
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 2, 1, 0, 2, 1> >(std::mutex&, Eigen::Matrix<double, 2, 1, 0, 2, 1>, Eigen::Matrix<double, 2, 1, 0, 2, 1>&)0
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 2, 2, 0, 2, 2> >(std::mutex&, Eigen::Matrix<double, 2, 2, 0, 2, 2>, Eigen::Matrix<double, 2, 2, 0, 2, 2>&)0
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 3, 1, 0, 3, 1> >(std::mutex&, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>&)0
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 3, 3, 0, 3, 3> >(std::mutex&, Eigen::Matrix<double, 3, 3, 0, 3, 3>, Eigen::Matrix<double, 3, 3, 0, 3, 3>&)0
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 6, 1, 0, 6, 1> >(std::mutex&, Eigen::Matrix<double, 6, 1, 0, 6, 1>, Eigen::Matrix<double, 6, 1, 0, 6, 1>&)0
auto mrs_lib::set_mutexed<Eigen::Matrix<double, 6, 6, 0, 6, 6> >(std::mutex&, Eigen::Matrix<double, 6, 6, 0, 6, 6>, Eigen::Matrix<double, 6, 6, 0, 6, 6>&)0
auto mrs_lib::set_mutexed<mrs_msgs::Float64Stamped_<std::allocator<void> > >(std::mutex&, mrs_msgs::Float64Stamped_<std::allocator<void> >, mrs_msgs::Float64Stamped_<std::allocator<void> >&)132245
auto mrs_lib::set_mutexed<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >(std::mutex&, mrs_msgs::DynamicsConstraints_<std::allocator<void> >, mrs_msgs::DynamicsConstraints_<std::allocator<void> >&)2038
auto mrs_lib::set_mutexed<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >(std::mutex&, mrs_msgs::Float64ArrayStamped_<std::allocator<void> >, mrs_msgs::Float64ArrayStamped_<std::allocator<void> >&)499467
auto mrs_lib::set_mutexed<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > >(std::mutex&, mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> >, mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> >&)114
auto mrs_lib::set_mutexed<mrs_msgs::UavState_<std::allocator<void> > >(std::mutex&, mrs_msgs::UavState_<std::allocator<void> >, mrs_msgs::UavState_<std::allocator<void> >&)945849
auto mrs_lib::set_mutexed<nav_msgs::Odometry_<std::allocator<void> > >(std::mutex&, nav_msgs::Odometry_<std::allocator<void> >, nav_msgs::Odometry_<std::allocator<void> >&)367376
auto mrs_lib::set_mutexed<mrs_lib::KalmanFilter<2, 1, 1>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<2, 1, 1>::statecov_t, mrs_lib::KalmanFilter<2, 1, 1>::statecov_t&)0
auto mrs_lib::set_mutexed<mrs_lib::KalmanFilter<3, 1, 1>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<3, 1, 1>::statecov_t, mrs_lib::KalmanFilter<3, 1, 1>::statecov_t&)734164
auto mrs_lib::set_mutexed<mrs_lib::KalmanFilter<6, 2, 2>::statecov_t>(std::mutex&, mrs_lib::KalmanFilter<6, 2, 2>::statecov_t, mrs_lib::KalmanFilter<6, 2, 2>::statecov_t&)365045
auto mrs_lib::set_mutexed<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::mutex&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&)32706
auto mrs_lib::set_mutexed<std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> > >(std::mutex&, std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> >, std::optional<Eigen::Matrix<double, 3, 1, 0, 3, 1> >&)192523
auto mrs_lib::set_mutexed<double>(std::mutex&, double, double&)1026365
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/mutex.h.gcov.frameset.html b/mrs_lib/include/mrs_lib/mutex.h.gcov.frameset.html new file mode 100644 index 0000000000..c07acea5c8 --- /dev/null +++ b/mrs_lib/include/mrs_lib/mutex.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/mutex.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/include/mrs_lib/mutex.h.gcov.html b/mrs_lib/include/mrs_lib/mutex.h.gcov.html new file mode 100644 index 0000000000..6729edbcf5 --- /dev/null +++ b/mrs_lib/include/mrs_lib/mutex.h.gcov.html @@ -0,0 +1,260 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/mutex.h + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - mutex.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1111100.0 %
Date:2024-04-17 23:52:03Functions:678083.8 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /**  \file
+       2             :      \brief Defines helper routines for getting and setting variables under mutex locks
+       3             :      \author Tomas Baca - tomas.baca@fel.cvut.cz
+       4             :  */
+       5             : #ifndef MUTEX_H
+       6             : #define MUTEX_H
+       7             : 
+       8             : #include <iostream>
+       9             : #include <mutex>
+      10             : #include <tuple>
+      11             : 
+      12             : namespace mrs_lib
+      13             : {
+      14             : 
+      15             : /**
+      16             :  * @brief thread-safe getter and setter for values of variables (args)
+      17             :  *
+      18             :  * @tparam GetArgs types of the variables to get
+      19             :  * @tparam SetArgs types of the variables to set
+      20             :  * @param mut mutex which protects the variables
+      21             :  * @param get tuple of variable references to obtain the values from
+      22             :  * @param to_set tuple of variable references to set the new values from \p from_set
+      23             :  * @param from_set tuple of the new values to be set to \p to_set
+      24             :  *
+      25             :  * @return tuple of the values from \p get
+      26             :  */
+      27             : template <class... GetArgs, class... SetArgs>
+      28             : std::tuple<GetArgs...> get_set_mutexed(std::mutex& mut, std::tuple<GetArgs&...> get, std::tuple<SetArgs...> from_set, std::tuple<SetArgs&...> to_set) {
+      29             : 
+      30             :   std::scoped_lock lock(mut);
+      31             : 
+      32             :   std::tuple<GetArgs...> result = get;
+      33             :   to_set = from_set;
+      34             : 
+      35             :   return result;
+      36             : }
+      37             : 
+      38             : /**
+      39             :  * @brief thread-safe getter for values of variables (args)
+      40             :  *
+      41             :  * @tparam Args types of the variables
+      42             :  * @param mut mutex which protects the variables
+      43             :  * @param args variables to obtain the values from
+      44             :  *
+      45             :  * @return std::tuple of the values
+      46             :  */
+      47             : template <class... Args>
+      48      923708 : std::tuple<Args...> get_mutexed(std::mutex& mut, Args&... args) {
+      49             : 
+      50     1847418 :   std::scoped_lock lock(mut);
+      51             : 
+      52      923710 :   std::tuple result = std::tuple(args...);
+      53             : 
+      54     1847420 :   return result;
+      55             : }
+      56             : 
+      57             : 
+      58             : /**
+      59             :  * @brief thread-safe getter a value from a variable
+      60             :  *
+      61             :  * @tparam T type of the variable
+      62             :  * @param mut mutex which protects the variable
+      63             :  * @param arg variable to obtain the value from
+      64             :  *
+      65             :  * @return value of the variable
+      66             :  */
+      67             : template <class T>
+      68    17818870 : T get_mutexed(std::mutex& mut, T& arg) {
+      69             : 
+      70    29361274 :   std::scoped_lock lock(mut);
+      71             : 
+      72    35633359 :   return arg;
+      73             : }
+      74             : 
+      75             : /**
+      76             :  * @brief base case of the variadic template for set_mutexed()
+      77             :  *
+      78             :  * @tparam T variable type
+      79             :  * @param what value to set
+      80             :  * @param where reference to be set
+      81             :  */
+      82             : template <class T>
+      83             : void set_mutexed_impl(const T what, T& where) {
+      84             : 
+      85             :   where = what;
+      86             : }
+      87             : 
+      88             : /**
+      89             :  * @brief general case of the variadic template for set_mutexed()
+      90             :  *
+      91             :  * @tparam T type of the next variable to set
+      92             :  * @tparam Args types of the rest of the variables
+      93             :  * @param what value to set
+      94             :  * @param where reference to be set
+      95             :  * @param args the remaining arguments
+      96             :  */
+      97             : template <class T, class... Args>
+      98             : void set_mutexed_impl(const T what, T& where, Args... args) {
+      99             : 
+     100             :   where = what;
+     101             : 
+     102             :   set_mutexed_impl(args...);
+     103             : }
+     104             : 
+     105             : /**
+     106             :  * @brief thread-safe setter for a variable
+     107             :  *
+     108             :  * @tparam T type of the variable
+     109             :  * @param mut mutex to be locked
+     110             :  * @param what value to set
+     111             :  * @param where reference to be set
+     112             :  *
+     113             :  * @return
+     114             :  */
+     115             : template <class T>
+     116     4410404 : auto set_mutexed(std::mutex& mut, const T what, T& where) {
+     117             : 
+     118     7769952 :   std::scoped_lock lock(mut);
+     119             : 
+     120     4401104 :   where = what;
+     121             : 
+     122     8814441 :   return where;
+     123             : }
+     124             : 
+     125             : /**
+     126             :  * @brief thread-safe setter for multiple variables
+     127             :  *
+     128             :  * example:
+     129             :  *   set_mutexed(my_mutex_, a, a_, b, b_, c, c_);
+     130             :  *   where a, b, c are the values to be set
+     131             :  *         a_, b_, c_ are the variables to be updated
+     132             :  *
+     133             :  * @tparam Args types of the variables
+     134             :  * @param mut mutex to be locked
+     135             :  * @param args
+     136             :  *
+     137             :  * @return alternating list of values that were just set
+     138             :  */
+     139             : template <class... Args>
+     140             : auto set_mutexed(std::mutex& mut, Args&... args) {
+     141             : 
+     142             :   std::scoped_lock lock(mut);
+     143             : 
+     144             :   set_mutexed_impl(args...);
+     145             : 
+     146             :   return std::tuple(args...);
+     147             : }
+     148             : 
+     149             : /**
+     150             :  * @brief thread-safe setter for multiple variables
+     151             :  *
+     152             :  * example:
+     153             :  *   set_mutexed(mu_mutex, std::tuple(a, b, c), std::forward_as_tuple(a_, b_, c_));
+     154             :  *   where a, b, c are the values to be set
+     155             :  *         a_, b_, c_ are the updated variables
+     156             :  *
+     157             :  * @tparam Args types of the variables
+     158             :  * @param mut mutex to be locked
+     159             :  * @param from std::tuple of the values
+     160             :  * @param to std::tuple of reference to the variablaes
+     161             :  *
+     162             :  * @return
+     163             :  */
+     164             : template <class... Args>
+     165             : auto set_mutexed(std::mutex& mut, const std::tuple<Args...> from, std::tuple<Args&...> to) {
+     166             : 
+     167             :   std::scoped_lock lock(mut);
+     168             : 
+     169             :   to = from;
+     170             : 
+     171             :   return to;
+     172             : }
+     173             : 
+     174             : }  // namespace mrs_lib
+     175             : 
+     176             : #endif
+
+
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+ + + diff --git a/mrs_lib/include/mrs_lib/mutex.h.gcov.overview.html b/mrs_lib/include/mrs_lib/mutex.h.gcov.overview.html new file mode 100644 index 0000000000..3b0784eb80 --- /dev/null +++ b/mrs_lib/include/mrs_lib/mutex.h.gcov.overview.html @@ -0,0 +1,64 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/mutex.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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Current view:top level - mrs_lib/include/mrs_lib - param_loader.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:27130090.3 %
Date:2024-04-17 23:52:03Functions:7878100.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::ParamLoader::loadParam2(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue const&)1
XmlRpc::XmlRpcValue mrs_lib::ParamLoader::loadParam2<XmlRpc::XmlRpcValue>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue const&)1
mrs_lib::ParamLoader::print_warning(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
void mrs_lib::ParamLoader::loadMatrixArray<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > >&)1
void mrs_lib::ParamLoader::loadMatrixArray<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > >&, std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > const&)1
Eigen::Matrix<float, -1, -1, 0, -1, -1> mrs_lib::ParamLoader::loadMatrixKnown2<float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, int)1
Eigen::Matrix<float, -1, -1, 0, -1, -1> mrs_lib::ParamLoader::loadMatrixKnown2<float, Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, -1, -1, 0, -1, -1> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, -1, -1, 0, -1, -1> > > const&, int, int)1
bool mrs_lib::ParamLoader::loadMatrixStatic<0, 0, double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 0, 0, ((Eigen::StorageOptions)0)|((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)1) : ((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 0, 0>&)1
bool mrs_lib::ParamLoader::loadMatrixStatic<3, 3, float, Eigen::Product<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, 0> >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>&, Eigen::MatrixBase<Eigen::Product<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, 0> > const&)1
bool mrs_lib::ParamLoader::loadMatrixDynamic<double, Eigen::CwiseBinaryOp<Eigen::internal::scalar_product_op<double, double>, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> const> const, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > const> >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, Eigen::MatrixBase<Eigen::CwiseBinaryOp<Eigen::internal::scalar_product_op<double, double>, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> const> const, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > const> > const&, int, int)1
bool mrs_lib::ParamLoader::loadMatrixDynamic<double, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > > const&, int, int)1
Eigen::Matrix<double, 0, 0, ((Eigen::StorageOptions)0)|((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)1) : ((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 0, 0> mrs_lib::ParamLoader::loadMatrixStatic2<0, 0, double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3> mrs_lib::ParamLoader::loadMatrixStatic2<3, 3, float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3> mrs_lib::ParamLoader::loadMatrixStatic2<3, 3, float, Eigen::Product<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, 0> >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::MatrixBase<Eigen::Product<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, 0> > const&)1
bool mrs_lib::ParamLoader::loadParamReusable<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&)1
Eigen::Matrix<double, -1, -1, 0, -1, -1> mrs_lib::ParamLoader::loadMatrixDynamic2<double, Eigen::CwiseBinaryOp<Eigen::internal::scalar_product_op<double, double>, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> const> const, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > const> >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::MatrixBase<Eigen::CwiseBinaryOp<Eigen::internal::scalar_product_op<double, double>, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> const> const, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > const> > const&, int, int)1
std::pair<Eigen::Matrix<double, 0, 0, ((Eigen::StorageOptions)0)|((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)1) : ((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 0, 0>, bool> mrs_lib::ParamLoader::loadMatrixStatic_internal<0, 0, double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 0, 0, ((Eigen::StorageOptions)0)|((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)1) : ((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 0, 0> const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)1
bool mrs_lib::ParamLoader::loadMatrixKnown<float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, -1, -1, 0, -1, -1>&, int, int)2
bool mrs_lib::ParamLoader::loadMatrixKnown<float, Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, -1, -1, 0, -1, -1> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, -1, -1, 0, -1, -1>&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, -1, -1, 0, -1, -1> > > const&, int, int)2
std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > mrs_lib::ParamLoader::loadMatrixArray2<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > const&)2
bool mrs_lib::ParamLoader::loadMatrixStatic<3, 3, float, Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> > > const&)2
mrs_lib::ParamLoader::loadParam(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&, XmlRpc::XmlRpcValue const&)2
bool mrs_lib::ParamLoader::loadParam<XmlRpc::XmlRpcValue>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&, XmlRpc::XmlRpcValue const&)2
mrs_lib::ParamLoader::printValue(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&)3
std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > mrs_lib::ParamLoader::loadMatrixArray2<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3
bool mrs_lib::ParamLoader::loadMatrixStatic<3, 3, float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>&)3
mrs_lib::ParamLoader::resetLoadedSuccessfully()3
mrs_lib::ParamLoader::loadParam(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&)3
bool mrs_lib::ParamLoader::loadParam<XmlRpc::XmlRpcValue>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&)3
std::pair<Eigen::Matrix<float, -1, -1, 0, -1, -1>, bool> mrs_lib::ParamLoader::loadMatrixKnown_internal<float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, -1, -1, 0, -1, -1> const&, int, int, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)4
mrs_lib::ParamLoader::printValue_recursive(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&, unsigned int)5
std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > mrs_lib::ParamLoader::loadMatrixArray_internal<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)5
mrs_lib::ParamLoader::resolved(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)5
std::pair<Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>, bool> mrs_lib::ParamLoader::loadMatrixStatic_internal<3, 3, float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3> const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)6
std::pair<XmlRpc::XmlRpcValue, bool> mrs_lib::ParamLoader::load<XmlRpc::XmlRpcValue>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)6
mrs_lib::ParamLoader::printError(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)7
void mrs_lib::ParamLoader::printValue<float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, -1, -1, 0, -1, -1> const&)8
std::pair<Eigen::Matrix<float, -1, -1, 0, -1, -1>, bool> mrs_lib::ParamLoader::loadMatrixX<float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, -1, -1, 0, -1, -1> const&, int, int, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t, mrs_lib::ParamLoader::swap_t, bool)10
mrs_lib::ParamLoader::resetUniques()20
bool mrs_lib::ParamLoader::loadParam<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)39
Eigen::Matrix<double, -1, -1, 0, -1, -1> mrs_lib::ParamLoader::loadMatrixDynamic2<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, int)72
bool mrs_lib::ParamLoader::loadMatrixDynamic<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, int, int)74
bool mrs_lib::ParamLoader::loadMatrixStatic<3, 3, double, Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<double>, Eigen::Matrix<double, 3, 3, 0, 3, 3> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<double>, Eigen::Matrix<double, 3, 3, 0, 3, 3> > > const&)91
bool mrs_lib::ParamLoader::loadMatrixDynamic<double, Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<double>, Eigen::Matrix<double, 4, 4, 0, 4, 4> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<double>, Eigen::Matrix<double, 4, 4, 0, 4, 4> > > const&, int, int)91
std::pair<Eigen::Matrix<double, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>, bool> mrs_lib::ParamLoader::loadMatrixStatic_internal<3, 3, double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3> const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)91
std::pair<Eigen::Matrix<double, -1, -1, 0, -1, -1>, bool> mrs_lib::ParamLoader::loadMatrixDynamic_internal<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1> const&, int, int, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)167
bool mrs_lib::ParamLoader::loadMatrixKnown<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, int, int)364
std::pair<Eigen::Matrix<double, -1, -1, 0, -1, -1>, bool> mrs_lib::ParamLoader::loadMatrixKnown_internal<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1> const&, int, int, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)364
std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > mrs_lib::ParamLoader::loadParam2<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)455
std::pair<Eigen::Matrix<double, -1, -1, 0, -1, -1>, bool> mrs_lib::ParamLoader::loadMatrixX<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1> const&, int, int, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t, mrs_lib::ParamLoader::swap_t, bool)628
void mrs_lib::ParamLoader::printValue<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1> const&)632
bool mrs_lib::ParamLoader::loadParam<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double&, double const&)728
void mrs_lib::ParamLoader::printValue<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> > const&)1001
std::pair<std::vector<double, std::allocator<double> >, bool> mrs_lib::ParamLoader::load<std::vector<double, std::allocator<double> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> > const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)1001
bool mrs_lib::ParamLoader::loadParam<std::vector<double, std::allocator<double> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> >&)1001
mrs_lib::ParamLoader::ParamLoader(ros::NodeHandle const&, std::basic_string_view<char, std::char_traits<char> >)1541
mrs_lib::ParamLoader::setPrefix(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1816
mrs_lib::ParamLoader::addYamlFileFromParam(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2451
void mrs_lib::ParamLoader::printValue<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&)3197
std::pair<std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > >, bool> mrs_lib::ParamLoader::load<std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)3198
bool mrs_lib::ParamLoader::loadParam<std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > >&)3198
mrs_lib::ParamLoader::ParamLoader(ros::NodeHandle const&, bool, std::basic_string_view<char, std::char_traits<char> >)3551
mrs_lib::ParamLoader::loadedSuccessfully()3983
void mrs_lib::ParamLoader::printValue<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&)4608
std::pair<int, bool> mrs_lib::ParamLoader::load<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)4608
bool mrs_lib::ParamLoader::loadParam<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int&)4608
bool mrs_lib::ParamLoader::loadParam<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool&, bool const&)5387
mrs_lib::ParamLoader::addYamlFile(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)10107
bool mrs_lib::ParamLoader::loadParam<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool&)10714
bool mrs_lib::ParamLoader::loadParam<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&)14943
void mrs_lib::ParamLoader::printValue<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)15438
std::pair<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool> mrs_lib::ParamLoader::load<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)15438
void mrs_lib::ParamLoader::printValue<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&)16101
std::pair<bool, bool> mrs_lib::ParamLoader::load<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)16101
bool mrs_lib::ParamLoader::loadParam<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double&)36571
void mrs_lib::ParamLoader::printValue<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&)37299
std::pair<double, bool> mrs_lib::ParamLoader::load<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)37299
mrs_lib::ParamLoader::check_duplicit_loading(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)78292
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::ParamLoader::loadParam2(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue const&)1
XmlRpc::XmlRpcValue mrs_lib::ParamLoader::loadParam2<XmlRpc::XmlRpcValue>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue const&)1
std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > mrs_lib::ParamLoader::loadParam2<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)455
mrs_lib::ParamLoader::printError(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)7
mrs_lib::ParamLoader::printValue(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&)3
void mrs_lib::ParamLoader::printValue<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&)3197
void mrs_lib::ParamLoader::printValue<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)15438
void mrs_lib::ParamLoader::printValue<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&)16101
void mrs_lib::ParamLoader::printValue<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1> const&)632
void mrs_lib::ParamLoader::printValue<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> > const&)1001
void mrs_lib::ParamLoader::printValue<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&)37299
void mrs_lib::ParamLoader::printValue<float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, -1, -1, 0, -1, -1> const&)8
void mrs_lib::ParamLoader::printValue<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&)4608
mrs_lib::ParamLoader::addYamlFile(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)10107
std::pair<Eigen::Matrix<double, -1, -1, 0, -1, -1>, bool> mrs_lib::ParamLoader::loadMatrixX<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1> const&, int, int, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t, mrs_lib::ParamLoader::swap_t, bool)628
std::pair<Eigen::Matrix<float, -1, -1, 0, -1, -1>, bool> mrs_lib::ParamLoader::loadMatrixX<float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, -1, -1, 0, -1, -1> const&, int, int, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t, mrs_lib::ParamLoader::swap_t, bool)10
mrs_lib::ParamLoader::resetUniques()20
mrs_lib::ParamLoader::print_warning(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
void mrs_lib::ParamLoader::loadMatrixArray<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > >&)1
void mrs_lib::ParamLoader::loadMatrixArray<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > >&, std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > const&)1
bool mrs_lib::ParamLoader::loadMatrixKnown<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, int, int)364
bool mrs_lib::ParamLoader::loadMatrixKnown<float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, -1, -1, 0, -1, -1>&, int, int)2
bool mrs_lib::ParamLoader::loadMatrixKnown<float, Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, -1, -1, 0, -1, -1> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, -1, -1, 0, -1, -1>&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, -1, -1, 0, -1, -1> > > const&, int, int)2
std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > mrs_lib::ParamLoader::loadMatrixArray2<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3
std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > mrs_lib::ParamLoader::loadMatrixArray2<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > const&)2
Eigen::Matrix<float, -1, -1, 0, -1, -1> mrs_lib::ParamLoader::loadMatrixKnown2<float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, int)1
Eigen::Matrix<float, -1, -1, 0, -1, -1> mrs_lib::ParamLoader::loadMatrixKnown2<float, Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, -1, -1, 0, -1, -1> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, -1, -1, 0, -1, -1> > > const&, int, int)1
bool mrs_lib::ParamLoader::loadMatrixStatic<0, 0, double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 0, 0, ((Eigen::StorageOptions)0)|((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)1) : ((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 0, 0>&)1
bool mrs_lib::ParamLoader::loadMatrixStatic<3, 3, double, Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<double>, Eigen::Matrix<double, 3, 3, 0, 3, 3> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<double>, Eigen::Matrix<double, 3, 3, 0, 3, 3> > > const&)91
bool mrs_lib::ParamLoader::loadMatrixStatic<3, 3, float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>&)3
bool mrs_lib::ParamLoader::loadMatrixStatic<3, 3, float, Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> > > const&)2
bool mrs_lib::ParamLoader::loadMatrixStatic<3, 3, float, Eigen::Product<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, 0> >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>&, Eigen::MatrixBase<Eigen::Product<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, 0> > const&)1
bool mrs_lib::ParamLoader::loadMatrixDynamic<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, int, int)74
bool mrs_lib::ParamLoader::loadMatrixDynamic<double, Eigen::CwiseBinaryOp<Eigen::internal::scalar_product_op<double, double>, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> const> const, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > const> >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, Eigen::MatrixBase<Eigen::CwiseBinaryOp<Eigen::internal::scalar_product_op<double, double>, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> const> const, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > const> > const&, int, int)1
bool mrs_lib::ParamLoader::loadMatrixDynamic<double, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > > const&, int, int)1
bool mrs_lib::ParamLoader::loadMatrixDynamic<double, Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<double>, Eigen::Matrix<double, 4, 4, 0, 4, 4> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1>&, Eigen::MatrixBase<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<double>, Eigen::Matrix<double, 4, 4, 0, 4, 4> > > const&, int, int)91
Eigen::Matrix<double, 0, 0, ((Eigen::StorageOptions)0)|((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)1) : ((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 0, 0> mrs_lib::ParamLoader::loadMatrixStatic2<0, 0, double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3> mrs_lib::ParamLoader::loadMatrixStatic2<3, 3, float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3> mrs_lib::ParamLoader::loadMatrixStatic2<3, 3, float, Eigen::Product<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, 0> >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::MatrixBase<Eigen::Product<Eigen::CwiseNullaryOp<Eigen::internal::scalar_identity_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<float>, Eigen::Matrix<float, 3, 3, 0, 3, 3> >, 0> > const&)1
bool mrs_lib::ParamLoader::loadParamReusable<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&)1
Eigen::Matrix<double, -1, -1, 0, -1, -1> mrs_lib::ParamLoader::loadMatrixDynamic2<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, int)72
Eigen::Matrix<double, -1, -1, 0, -1, -1> mrs_lib::ParamLoader::loadMatrixDynamic2<double, Eigen::CwiseBinaryOp<Eigen::internal::scalar_product_op<double, double>, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> const> const, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > const> >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::MatrixBase<Eigen::CwiseBinaryOp<Eigen::internal::scalar_product_op<double, double>, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> const> const, Eigen::CwiseNullaryOp<Eigen::internal::scalar_constant_op<double>, Eigen::Matrix<double, -1, -1, 0, -1, -1> > const> > const&, int, int)1
mrs_lib::ParamLoader::loadedSuccessfully()3983
mrs_lib::ParamLoader::addYamlFileFromParam(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2451
mrs_lib::ParamLoader::printValue_recursive(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&, unsigned int)5
mrs_lib::ParamLoader::check_duplicit_loading(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)78292
mrs_lib::ParamLoader::resetLoadedSuccessfully()3
std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > mrs_lib::ParamLoader::loadMatrixArray_internal<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<Eigen::Matrix<double, -1, -1, 0, -1, -1>, std::allocator<Eigen::Matrix<double, -1, -1, 0, -1, -1> > > const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)5
std::pair<Eigen::Matrix<double, -1, -1, 0, -1, -1>, bool> mrs_lib::ParamLoader::loadMatrixKnown_internal<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1> const&, int, int, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)364
std::pair<Eigen::Matrix<float, -1, -1, 0, -1, -1>, bool> mrs_lib::ParamLoader::loadMatrixKnown_internal<float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, -1, -1, 0, -1, -1> const&, int, int, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)4
std::pair<Eigen::Matrix<double, 0, 0, ((Eigen::StorageOptions)0)|((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)1) : ((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 0, 0>, bool> mrs_lib::ParamLoader::loadMatrixStatic_internal<0, 0, double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 0, 0, ((Eigen::StorageOptions)0)|((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)1) : ((((0)==(1))&&((0)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 0, 0> const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)1
std::pair<Eigen::Matrix<double, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>, bool> mrs_lib::ParamLoader::loadMatrixStatic_internal<3, 3, double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3> const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)91
std::pair<Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3>, bool> mrs_lib::ParamLoader::loadMatrixStatic_internal<3, 3, float>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<float, 3, 3, ((Eigen::StorageOptions)0)|((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)1) : ((((3)==(1))&&((3)!=(1)))?((Eigen::StorageOptions)0) : ((Eigen::StorageOptions)0))), 3, 3> const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)6
std::pair<Eigen::Matrix<double, -1, -1, 0, -1, -1>, bool> mrs_lib::ParamLoader::loadMatrixDynamic_internal<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1> const&, int, int, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)167
std::pair<XmlRpc::XmlRpcValue, bool> mrs_lib::ParamLoader::load<XmlRpc::XmlRpcValue>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)6
std::pair<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool> mrs_lib::ParamLoader::load<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)15438
std::pair<std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > >, bool> mrs_lib::ParamLoader::load<std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)3198
std::pair<std::vector<double, std::allocator<double> >, bool> mrs_lib::ParamLoader::load<std::vector<double, std::allocator<double> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> > const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)1001
std::pair<bool, bool> mrs_lib::ParamLoader::load<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)16101
std::pair<double, bool> mrs_lib::ParamLoader::load<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)37299
std::pair<int, bool> mrs_lib::ParamLoader::load<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int const&, mrs_lib::ParamLoader::optional_t, mrs_lib::ParamLoader::unique_t)4608
mrs_lib::ParamLoader::resolved(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)5
mrs_lib::ParamLoader::loadParam(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&)3
mrs_lib::ParamLoader::loadParam(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&, XmlRpc::XmlRpcValue const&)2
bool mrs_lib::ParamLoader::loadParam<XmlRpc::XmlRpcValue>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&)3
bool mrs_lib::ParamLoader::loadParam<XmlRpc::XmlRpcValue>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&, XmlRpc::XmlRpcValue const&)2
bool mrs_lib::ParamLoader::loadParam<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&)14943
bool mrs_lib::ParamLoader::loadParam<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)39
bool mrs_lib::ParamLoader::loadParam<std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > >&)3198
bool mrs_lib::ParamLoader::loadParam<std::vector<double, std::allocator<double> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> >&)1001
bool mrs_lib::ParamLoader::loadParam<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool&)10714
bool mrs_lib::ParamLoader::loadParam<bool>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool&, bool const&)5387
bool mrs_lib::ParamLoader::loadParam<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double&)36571
bool mrs_lib::ParamLoader::loadParam<double>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double&, double const&)728
bool mrs_lib::ParamLoader::loadParam<int>(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int&)4608
mrs_lib::ParamLoader::setPrefix(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1816
mrs_lib::ParamLoader::ParamLoader(ros::NodeHandle const&, std::basic_string_view<char, std::char_traits<char> >)1541
mrs_lib::ParamLoader::ParamLoader(ros::NodeHandle const&, bool, std::basic_string_view<char, std::char_traits<char> >)3551
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LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - param_loader.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:27130090.3 %
Date:2024-04-17 23:52:03Functions:7878100.0 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + +

+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : /**  \file
+       3             :      \brief Defines ParamLoader - a convenience class for loading static ROS parameters.
+       4             :      \author Matouš Vrba - vrbamato@fel.cvut.cz
+       5             :  */
+       6             : 
+       7             : #ifndef PARAM_LOADER_H
+       8             : #define PARAM_LOADER_H
+       9             : 
+      10             : #include <ros/ros.h>
+      11             : #include <string>
+      12             : #include <map>
+      13             : #include <unordered_set>
+      14             : #include <iostream>
+      15             : #include <Eigen/Dense>
+      16             : #include <std_msgs/ColorRGBA.h>
+      17             : #include <mrs_lib/param_provider.h>
+      18             : 
+      19             : namespace mrs_lib
+      20             : {
+      21             : 
+      22             : /*** ParamLoader CLASS //{ **/
+      23             : 
+      24             : /**
+      25             : * \brief Convenience class for loading parameters from rosparam server.
+      26             : *
+      27             : * The parameters can be loaded as compulsory. If a compulsory parameter is not found
+      28             : * on the rosparam server (e.g. because it is missing in the launchfile or the yaml config file),
+      29             : * an internal flag is set to false, indicating that the parameter loading procedure failed.
+      30             : * This flag can be checked using the loaded_successfully() method after all parameters were
+      31             : * attempted to be loaded (see usage example usage below).
+      32             : *
+      33             : * The loaded parameter names and corresponding values are printed to stdout by default
+      34             : * for user convenience. Special cases such as loading of Eigen matrices or loading
+      35             : * of std::vectors of various values are also provided.
+      36             : *
+      37             : * To load parameters into the `rosparam` server, use a launchfile prefferably.
+      38             : * See documentation of ROS launchfiles here: http://wiki.ros.org/roslaunch/XML.
+      39             : * Specifically, the `param` XML tag is used for loading parameters directly from the launchfile: http://wiki.ros.org/roslaunch/XML/param,
+      40             : * and the `rosparam` XML tag tag is used for loading parameters from a `yaml` file: http://wiki.ros.org/roslaunch/XML/rosparam.
+      41             : *
+      42             : */
+      43             : class ParamLoader
+      44             : {
+      45             : 
+      46             : private:
+      47             :   enum unique_t
+      48             :   {
+      49             :     UNIQUE = true,
+      50             :     REUSABLE = false
+      51             :   };
+      52             :   enum optional_t
+      53             :   {
+      54             :     OPTIONAL = true,
+      55             :     COMPULSORY = false
+      56             :   };
+      57             :   enum swap_t
+      58             :   {
+      59             :     SWAP = true,
+      60             :     NO_SWAP = false
+      61             :   };
+      62             : 
+      63             :   template <typename T>
+      64             :   using MatrixX = Eigen::Matrix<T, Eigen::Dynamic, Eigen::Dynamic>;
+      65             : 
+      66             : private:
+      67             :   bool m_load_successful, m_print_values;
+      68             :   std::string m_node_name;
+      69             :   std::string m_prefix;
+      70             :   const ros::NodeHandle& m_nh;
+      71             :   mrs_lib::ParamProvider m_pp;
+      72             :   std::unordered_set<std::string> m_loaded_params;
+      73             : 
+      74             :   /* printing helper functions //{ */
+      75             :   /* printError and print_warning functions //{*/
+      76           7 :   void printError(const std::string& str)
+      77             :   {
+      78           7 :     if (m_node_name.empty())
+      79           7 :       ROS_ERROR_STREAM(str);
+      80             :     else
+      81           0 :       ROS_ERROR_STREAM("[" << m_node_name << "]: " << str);
+      82           7 :   }
+      83           1 :   void print_warning(const std::string& str)
+      84             :   {
+      85           1 :     if (m_node_name.empty())
+      86           1 :       ROS_WARN_STREAM(str);
+      87             :     else
+      88           0 :       ROS_WARN_STREAM("[" << m_node_name << "]: " << str);
+      89           1 :   }
+      90             :   //}
+      91             : 
+      92             :   /* printValue function and overloads //{ */
+      93             : 
+      94             :   template <typename T>
+      95       73446 :   void printValue(const std::string& name, const T& value)
+      96             :   {
+      97       73446 :     if (m_node_name.empty())
+      98       40985 :       std::cout << "\t" << name << ":\t" << value << std::endl;
+      99             :     else
+     100       32461 :       ROS_INFO_STREAM("[" << m_node_name << "]: parameter '" << name << "':\t" << value);
+     101       73446 :   }
+     102             : 
+     103             :   template <typename T>
+     104        4198 :   void printValue(const std::string& name, const std::vector<T>& value)
+     105             :   {
+     106        8396 :     std::stringstream strstr;
+     107        4198 :     if (m_node_name.empty())
+     108        2034 :       strstr << "\t";
+     109        4198 :     strstr << name << ":\t";
+     110        4198 :     size_t it = 0;
+     111       14672 :     for (const auto& elem : value)
+     112             :     {
+     113       10474 :       strstr << elem;
+     114       10474 :       if (it < value.size() - 1)
+     115        6742 :         strstr << ", ";
+     116       10474 :       it++;
+     117             :     }
+     118        4198 :     if (m_node_name.empty())
+     119        2034 :       std::cout << strstr.str() << std::endl;
+     120             :     else
+     121        2164 :       ROS_INFO_STREAM("[" << m_node_name << "]: parameter '" << strstr.str());
+     122        4198 :   }
+     123             : 
+     124             :   template <typename T1, typename T2>
+     125             :   void printValue(const std::string& name, const std::map<T1, T2>& value)
+     126             :   {
+     127             :     std::stringstream strstr;
+     128             :     if (m_node_name.empty())
+     129             :       strstr << "\t";
+     130             :     strstr << name << ":" << std::endl;
+     131             :     size_t it = 0;
+     132             :     for (const auto& pair : value)
+     133             :     {
+     134             :       strstr << pair.first << " = " << pair.second;
+     135             :       if (it < value.size() - 1)
+     136             :         strstr << std::endl;
+     137             :       it++;
+     138             :     }
+     139             :     if (m_node_name.empty())
+     140             :       std::cout << strstr.str() << std::endl;
+     141             :     else
+     142             :       ROS_INFO_STREAM("[" << m_node_name << "]: parameter '" << strstr.str());
+     143             :   }
+     144             : 
+     145             :   template <typename T>
+     146         640 :   void printValue(const std::string& name, const MatrixX<T>& value)
+     147             :   {
+     148        1280 :     std::stringstream strstr;
+     149             :     /* const Eigen::IOFormat fmt(4, 0, ", ", "\n", "\t\t[", "]"); */
+     150             :     /* strstr << value.format(fmt); */
+     151        1920 :     const Eigen::IOFormat fmt;
+     152         640 :     strstr << value.format(fmt);
+     153         640 :     if (m_node_name.empty())
+     154          94 :       std::cout << "\t" << name << ":\t" << std::endl << strstr.str() << std::endl;
+     155             :     else
+     156         546 :       ROS_INFO_STREAM("[" << m_node_name << "]: parameter '" << name << "':" << std::endl << strstr.str());
+     157         640 :   }
+     158             : 
+     159           5 :   std::string printValue_recursive(const std::string& name, XmlRpc::XmlRpcValue& value, unsigned depth = 0)
+     160             :   {
+     161          10 :     std::stringstream strstr;
+     162           8 :     for (unsigned it = 0; it < depth; it++)
+     163           3 :       strstr << "\t";
+     164           5 :     strstr << name << ":";
+     165           5 :     switch (value.getType())
+     166             :     {
+     167           1 :       case XmlRpc::XmlRpcValue::TypeArray:
+     168             :         {
+     169           2 :           for (int it = 0; it < value.size(); it++)
+     170             :           {
+     171           1 :             strstr << std::endl;
+     172           2 :             const std::string name = "[" + std::to_string(it) + "]";
+     173           1 :             strstr << printValue_recursive(name, value[it], depth+1);
+     174             :           }
+     175           1 :           break;
+     176             :         }
+     177           1 :       case XmlRpc::XmlRpcValue::TypeStruct:
+     178             :         {
+     179           1 :           int it = 0;
+     180           2 :           for (auto& pair : value)
+     181             :           {
+     182           1 :             strstr << std::endl;
+     183           1 :             strstr << printValue_recursive(pair.first, pair.second, depth+1);
+     184           1 :             it++;
+     185             :           }
+     186           1 :           break;
+     187             :         }
+     188           3 :       default:
+     189             :         {
+     190           3 :           strstr << "\t" << value;
+     191           3 :           break;
+     192             :         }
+     193             :     }
+     194          10 :     return strstr.str();
+     195             :   }
+     196             : 
+     197           3 :   void printValue(const std::string& name, XmlRpc::XmlRpcValue& value)
+     198             :   {
+     199           6 :     const std::string txt = printValue_recursive(name, value);
+     200           3 :     if (m_node_name.empty())
+     201           3 :       std::cout << txt << std::endl;
+     202             :     else
+     203           0 :       ROS_INFO_STREAM("[" << m_node_name << "]: parameter '" << txt);
+     204           3 :   }
+     205             : 
+     206             :   //}
+     207             :   
+     208           5 :   std::string resolved(const std::string& param_name)
+     209             :   {
+     210           5 :     return m_nh.resolveName(param_name);
+     211             :   }
+     212             :   //}
+     213             : 
+     214             :   /* check_duplicit_loading checks whether the parameter was already loaded - returns true if yes //{ */
+     215       78292 :   bool check_duplicit_loading(const std::string& name)
+     216             :   {
+     217       78292 :     if (m_loaded_params.count(name))
+     218             :     {
+     219           2 :       printError(std::string("Tried to load parameter ") + name + std::string(" twice"));
+     220           2 :       m_load_successful = false;
+     221           2 :       return true;
+     222             :     } else
+     223             :     {
+     224       78290 :       return false;
+     225             :     }
+     226             :   }
+     227             :   //}
+     228             : 
+     229             :   /* helper functions for loading dynamic Eigen matrices //{ */
+     230             :   // loadMatrixX helper function for loading dynamic Eigen matrices //{
+     231             :   template <typename T>
+     232         638 :   std::pair<MatrixX<T>, bool> loadMatrixX(const std::string& name, const MatrixX<T>& default_value, int rows, int cols = Eigen::Dynamic, optional_t optional = OPTIONAL, unique_t unique = UNIQUE, swap_t swap = NO_SWAP, bool printValues = true)
+     233             :   {
+     234        1276 :     const std::string name_prefixed = m_prefix + name;
+     235        1276 :     MatrixX<T> loaded = default_value;
+     236         638 :     bool used_rosparam_value = false;
+     237             :     // first, check if the user already tried to load this parameter
+     238         638 :     if (unique && check_duplicit_loading(name_prefixed))
+     239           0 :       return {loaded, used_rosparam_value};
+     240             : 
+     241             :     // this function only accepts dynamic columns (you can always transpose the matrix afterward)
+     242         638 :     if (rows < 0)
+     243             :     {
+     244             :       // if the parameter was compulsory, alert the user and set the flag
+     245           0 :       printError(std::string("Invalid expected matrix dimensions for parameter ") + resolved(name_prefixed));
+     246           0 :       m_load_successful = false;
+     247           0 :       return {loaded, used_rosparam_value};
+     248             :     }
+     249         638 :     const bool expect_zero_matrix = rows == 0;
+     250         638 :     if (expect_zero_matrix)
+     251             :     {
+     252           1 :       if (cols > 0)
+     253             :       {
+     254           0 :         printError(std::string("Invalid expected matrix dimensions for parameter ") + resolved(name_prefixed) + ". One dimension indicates zero matrix, but other expects non-zero.");
+     255           0 :         m_load_successful = false;
+     256           0 :         return {loaded, used_rosparam_value};
+     257             :       }
+     258             :     }
+     259             : 
+     260         638 :     bool cur_load_successful = true;
+     261         638 :     bool check_size_exact = true;
+     262         638 :     if (cols <= 0)  // this means that the cols dimension is dynamic or a zero matrix is expected
+     263         165 :       check_size_exact = false;
+     264             : 
+     265        1276 :     std::vector<T> tmp_vec;
+     266             :     // try to load the parameter
+     267         638 :     const bool success = m_pp.getParam(name_prefixed, tmp_vec);
+     268             :     // check if the loaded vector has correct length
+     269         638 :     bool correct_size = (int)tmp_vec.size() == rows * cols;
+     270         638 :     if (!check_size_exact && !expect_zero_matrix)
+     271         164 :       correct_size = (int)tmp_vec.size() % rows == 0;  // if the cols dimension is dynamic, the size just has to be divisable by rows
+     272             : 
+     273         638 :     if (success && correct_size)
+     274             :     {
+     275             :       // if successfully loaded, everything is in order
+     276             :       // transform the vector to the matrix
+     277         538 :       if (cols <= 0 && rows > 0)
+     278         164 :         cols = tmp_vec.size() / rows;
+     279         538 :       if (swap)
+     280          72 :         std::swap(rows, cols);
+     281         538 :       loaded = Eigen::Map<Eigen::Matrix<T, Eigen::Dynamic, Eigen::Dynamic, Eigen::RowMajor>, Eigen::Unaligned>(tmp_vec.data(), rows, cols);
+     282         538 :       used_rosparam_value = true;
+     283             :     } else
+     284             :     {
+     285         100 :       if (success && !correct_size)
+     286             :       {
+     287             :         // warn the user that this parameter was not successfully loaded because of wrong vector length (might be an oversight)
+     288           3 :         std::string warning =
+     289             :             std::string("Matrix parameter ") + name_prefixed
+     290             :             + std::string(" could not be loaded because the vector has a wrong length " + std::to_string(tmp_vec.size()) + " instead of expected ");
+     291             :         // process the message correctly based on whether the loaded matrix should be dynamic or static
+     292           1 :         if (cols <= 0)  // for dynamic matrices
+     293           0 :           warning = warning + std::string("number divisible by ") + std::to_string(rows);
+     294             :         else  // for static matrices
+     295           1 :           warning = warning + std::to_string(rows * cols);
+     296           1 :         print_warning(warning);
+     297             :       }
+     298             :       // if it was not loaded, the default value is used (set at the beginning of the function)
+     299         100 :       if (!optional)
+     300             :       {
+     301             :         // if the parameter was compulsory, alert the user and set the flag
+     302           3 :         printError(std::string("Could not load non-optional parameter ") + resolved(name_prefixed));
+     303           3 :         cur_load_successful = false;
+     304             :       }
+     305             :     }
+     306             : 
+     307             :     // check if load was a success
+     308         638 :     if (cur_load_successful)
+     309             :     {
+     310         635 :       if (m_print_values && printValues)
+     311         630 :         printValue(name_prefixed, loaded);
+     312         635 :       m_loaded_params.insert(name_prefixed);
+     313             :     } else
+     314             :     {
+     315           3 :       m_load_successful = false;
+     316             :     }
+     317             :     // finally, return the resulting value
+     318         638 :     return {loaded, used_rosparam_value};
+     319             :   }
+     320             :   //}
+     321             : 
+     322             :   /* loadMatrixStatic_internal helper function for loading static Eigen matrices //{ */
+     323             :   template <int rows, int cols, typename T>
+     324          98 :   std::pair<Eigen::Matrix<T, rows, cols>, bool> loadMatrixStatic_internal(const std::string& name, const Eigen::Matrix<T, rows, cols>& default_value, optional_t optional, unique_t unique)
+     325             :   {
+     326         294 :     const auto [dynamic, loaded_ok] = loadMatrixX(name, MatrixX<T>(default_value), rows, cols, optional, unique, NO_SWAP);
+     327         196 :     return {dynamic, loaded_ok};
+     328             :   }
+     329             :   //}
+     330             : 
+     331             :   /* loadMatrixKnown_internal helper function for loading EigenXd matrices with known dimensions //{ */
+     332             :   template <typename T>
+     333         368 :   std::pair<MatrixX<T>, bool> loadMatrixKnown_internal(const std::string& name, const MatrixX<T>& default_value, int rows, int cols, optional_t optional, unique_t unique)
+     334             :   {
+     335         736 :     MatrixX<T> loaded = default_value;
+     336             :     // first, check that at least one dimension is set
+     337         368 :     if (rows <= 0 || cols <= 0)
+     338             :     {
+     339           0 :       printError(std::string("Invalid expected matrix dimensions for parameter ") + resolved(name) + std::string(" (use loadMatrixDynamic?)"));
+     340           0 :       m_load_successful = false;
+     341           0 :       return {loaded, false};
+     342             :     }
+     343             : 
+     344         368 :     return loadMatrixX(name, default_value, rows, cols, optional, unique, NO_SWAP);
+     345             :   }
+     346             :   //}
+     347             : 
+     348             :   /* loadMatrixDynamic_internal helper function for loading Eigen matrices with one dynamic (unspecified) dimension //{ */
+     349             :   template <typename T>
+     350         167 :   std::pair<MatrixX<T>, bool> loadMatrixDynamic_internal(const std::string& name, const MatrixX<T>& default_value, int rows, int cols, optional_t optional, unique_t unique)
+     351             :   {
+     352         334 :     MatrixX<T> loaded = default_value;
+     353             : 
+     354             :     // next, check that at least one dimension is set
+     355         167 :     if (rows <= 0 && cols <= 0)
+     356             :     {
+     357           0 :       printError(std::string("Invalid expected matrix dimensions for parameter ") + resolved(name) + std::string(" (at least one dimension must be specified)"));
+     358           0 :       m_load_successful = false;
+     359           0 :       return {loaded, false};
+     360             :     }
+     361             : 
+     362         167 :     swap_t swap = NO_SWAP;
+     363         167 :     if (rows <= 0)
+     364             :     {
+     365          72 :       std::swap(rows, cols);
+     366          72 :       swap = SWAP;
+     367             :     }
+     368         167 :     return loadMatrixX(name, default_value, rows, cols, optional, unique, swap);
+     369             :   }
+     370             :   //}
+     371             :   //}
+     372             : 
+     373             :   /* loadMatrixArray_internal helper function for loading an array of EigenXd matrices with known dimensions //{ */
+     374             :   template <typename T>
+     375           5 :   std::vector<MatrixX<T>> loadMatrixArray_internal(const std::string& name, const std::vector<MatrixX<T>>& default_value, optional_t optional, unique_t unique)
+     376             :   {
+     377          10 :     const std::string name_prefixed = m_prefix + name;
+     378             :     int rows;
+     379          10 :     std::vector<int> cols;
+     380           5 :     bool success = true;
+     381           5 :     success = success && m_pp.getParam(name_prefixed + "/rows", rows);
+     382           5 :     success = success && m_pp.getParam(name_prefixed + "/cols", cols);
+     383             : 
+     384          10 :     std::vector<MatrixX<T>> loaded;
+     385           5 :     loaded.reserve(cols.size());
+     386             : 
+     387           5 :     int total_cols = 0;
+     388             :     /* check correctness of loaded parameters so far calculate the total dimension //{ */
+     389             : 
+     390           5 :     if (!success)
+     391             :     {
+     392           0 :       printError(std::string("Failed to load ") + resolved(name_prefixed) + std::string("/rows or ") + resolved(name_prefixed) + std::string("/cols"));
+     393           0 :       m_load_successful = false;
+     394           0 :       return default_value;
+     395             :     }
+     396           5 :     if (rows < 0)
+     397             :     {
+     398           0 :       printError(std::string("Invalid expected matrix dimensions for parameter ") + resolved(name_prefixed) + std::string(" (rows and cols must be >= 0)"));
+     399           0 :       m_load_successful = false;
+     400           0 :       return default_value;
+     401             :     }
+     402          15 :     for (const auto& col : cols)
+     403             :     {
+     404          10 :       if (col < 0)
+     405             :       {
+     406           0 :         printError(std::string("Invalid expected matrix dimensions for parameter ") + resolved(name_prefixed) + std::string(" (rows and cols must be >= 0)"));
+     407           0 :         m_load_successful = false;
+     408           0 :         return default_value;
+     409             :       }
+     410          10 :       total_cols += col;
+     411             :     }
+     412             :     
+     413             :     //}
+     414             : 
+     415          15 :     const auto [loaded_matrix, loaded_ok] = loadMatrixX(name + "/data", MatrixX<T>(), rows, total_cols, optional, unique, NO_SWAP, false);
+     416             :     /* std::cout << "loaded_matrix: " << loaded_matrix << std::endl; */
+     417             :     /* std::cout << "loaded_matrix: " << loaded_matrix.rows() << "x" << loaded_matrix.cols() << std::endl; */
+     418             :     /* std::cout << "expected dims: " << rows << "x" << total_cols << std::endl; */
+     419           5 :     if (loaded_matrix.rows() != rows || loaded_matrix.cols() != total_cols)
+     420             :     {
+     421           0 :       m_load_successful = false;
+     422           0 :       return default_value;
+     423             :     }
+     424             : 
+     425           5 :     int cols_loaded = 0;
+     426          15 :     for (unsigned it = 0; it < cols.size(); it++)
+     427             :     {
+     428          10 :       const int cur_cols = cols.at(it);
+     429          10 :       const MatrixX<T> cur_mat = loaded_matrix.block(0, cols_loaded, rows, cur_cols);
+     430             :       /* std::cout << "cur_mat: " << cur_mat << std::endl; */
+     431          10 :       loaded.push_back(cur_mat);
+     432          10 :       cols_loaded += cur_cols;
+     433          10 :       printValue(name_prefixed + "/matrix#" + std::to_string(it), cur_mat);
+     434             :     }
+     435           5 :     return loaded;
+     436             :   }
+     437             :   //}
+     438             : 
+     439             :   /* load helper function for generic types //{ */
+     440             :   // This function tries to load a parameter with name 'name' and a default value.
+     441             :   // You can use the flag 'optional' to not throw a ROS_ERROR when the parameter
+     442             :   // cannot be loaded and the flag 'printValues' to set whether the loaded
+     443             :   // value and name of the parameter should be printed to cout.
+     444             :   // If 'optional' is set to false and the parameter could not be loaded,
+     445             :   // the flag 'load_successful' is set to false and a ROS_ERROR message
+     446             :   // is printer.
+     447             :   // If 'unique' flag is set to false then the parameter is not checked
+     448             :   // for being loaded twice.
+     449             :   // Returns a tuple, containing either the loaded or the default value and a bool,
+     450             :   // indicating if the value was loaded (true) or the default value was used (false).
+     451             :   template <typename T>
+     452       77651 :   std::pair<T, bool> load(const std::string& name, const T& default_value, optional_t optional = OPTIONAL, unique_t unique = UNIQUE)
+     453             :   {
+     454      155301 :     const std::string name_prefixed = m_prefix + name;
+     455       97294 :     T loaded = default_value;
+     456       77651 :     if (unique && check_duplicit_loading(name_prefixed))
+     457           2 :       return {loaded, false};
+     458             : 
+     459       77649 :     bool cur_load_successful = true;
+     460             :     // try to load the parameter
+     461       77649 :     const bool success = m_pp.getParam(name_prefixed, loaded);
+     462       77649 :     if (!success)
+     463             :     {
+     464             :       // if it was not loaded, set the default value
+     465        1395 :       loaded = default_value;
+     466        1395 :       if (!optional)
+     467             :       {
+     468             :         // if the parameter was compulsory, alert the user and set the flag
+     469           2 :         printError(std::string("Could not load non-optional parameter ") + resolved(name_prefixed));
+     470           2 :         cur_load_successful = false;
+     471             :       }
+     472             :     }
+     473             : 
+     474       77649 :     if (cur_load_successful)
+     475             :     {
+     476             :       // everything is fine and just print the name_prefixed and value if required
+     477       77647 :       if (m_print_values)
+     478       77647 :         printValue(name_prefixed, loaded);
+     479             :       // mark the param name_prefixed as successfully loaded
+     480       77647 :       m_loaded_params.insert(name_prefixed);
+     481             :     } else
+     482             :     {
+     483           2 :       m_load_successful = false;
+     484             :     }
+     485             :     // finally, return the resulting value
+     486       77649 :     return {loaded, success};
+     487             :   }
+     488             :   //}
+     489             : 
+     490             : public:
+     491             :   /*!
+     492             :     * \brief Main constructor.
+     493             :     *
+     494             :     * \param nh            The parameters will be loaded from rosparam using this node handle.
+     495             :     * \param printValues  If true, the loaded values will be printed to stdout using std::cout or ROS_INFO if node_name is not empty.
+     496             :     * \param node_name     Optional node name used when printing the loaded values or loading errors.
+     497             :     */
+     498        3551 :   ParamLoader(const ros::NodeHandle& nh, bool printValues = true, std::string_view node_name = std::string())
+     499        3551 :       : m_load_successful(true),
+     500             :         m_print_values(printValues),
+     501             :         m_node_name(node_name),
+     502             :         m_nh(nh),
+     503        3551 :         m_pp(nh, m_node_name)
+     504             :   {
+     505             :     /* std::cout << "Initialized1 ParamLoader for node " << node_name << std::endl; */
+     506        3551 :   }
+     507             : 
+     508             :   /* Constructor overloads //{ */
+     509             :   /*!
+     510             :     * \brief Convenience overload to enable writing ParamLoader pl(nh, node_name);
+     511             :     *
+     512             :     * \param nh            The parameters will be loaded from rosparam using this node handle.
+     513             :     * \param node_name     Optional node name used when printing the loaded values or loading errors.
+     514             :     */
+     515        1541 :   ParamLoader(const ros::NodeHandle& nh, std::string_view node_name)
+     516        1541 :       : ParamLoader(nh, true, node_name)
+     517             :   {
+     518             :     /* std::cout << "Initialized2 ParamLoader for node " << node_name << std::endl; */
+     519        1541 :   }
+     520             : 
+     521             :   /*!
+     522             :     * \brief Convenience overload to enable writing ParamLoader pl(nh, "node_name");
+     523             :     *
+     524             :     * \param nh            The parameters will be loaded from rosparam using this node handle.
+     525             :     * \param node_name     Optional node name used when printing the loaded values or loading errors.
+     526             :     */
+     527             :   ParamLoader(const std::string& filepath, const ros::NodeHandle& nh)
+     528             :     : ParamLoader(nh, "none")
+     529             :   {
+     530             :     YAML::Node node = YAML::Load(filepath);
+     531             :   }
+     532             :   //}
+     533             : 
+     534             :   /* setPrefix function //{ */
+     535             :   
+     536             :   /*!
+     537             :     * \brief All loaded parameters will be prefixed with this string.
+     538             :     *
+     539             :     * \param prefix  the prefix to be applied to all loaded parameters from now on.
+     540             :     */
+     541        1816 :   void setPrefix(const std::string& prefix)
+     542             :   {
+     543        1816 :     m_prefix = prefix;
+     544        1816 :   }
+     545             :   
+     546             :   //}
+     547             : 
+     548             :   /* getPrefix function //{ */
+     549             :   
+     550             :   /*!
+     551             :     * \brief Returns the current parameter name prefix.
+     552             :     *
+     553             :     * \return the current prefix to be applied to the loaded parameters.
+     554             :     */
+     555             :   std::string getPrefix()
+     556             :   {
+     557             :     return m_prefix;
+     558             :   }
+     559             :   
+     560             :   //}
+     561             : 
+     562             :   /* addYamlFile() function //{ */
+     563             :   
+     564             :   /*!
+     565             :     * \brief Adds the specified file as a source of static parameters.
+     566             :     *
+     567             :     * \param filepath The full path to the yaml file to be loaded.
+     568             :     * \return true if loading and parsing the file was successful, false otherwise.
+     569             :     */
+     570       10107 :   bool addYamlFile(const std::string& filepath)
+     571             :   {
+     572       10107 :     return m_pp.addYamlFile(filepath);
+     573             :   }
+     574             :   //}
+     575             : 
+     576             :   /* addYamlFileFromParam() function //{ */
+     577             :   
+     578             :   /*!
+     579             :     * \brief Loads a filepath from a parameter loads that file as a YAML.
+     580             :     *
+     581             :     * \param param_name Name of the parameter from which to load the YAML filename to be loaded.
+     582             :     * \return true      if loading and parsing the file was successful, false otherwise.
+     583             :     */
+     584        2451 :   bool addYamlFileFromParam(const std::string& param_name)
+     585             :   {
+     586        4902 :     std::string filepath;
+     587        2451 :     if (!loadParam(param_name, filepath))
+     588           0 :       return false;
+     589        2451 :     return m_pp.addYamlFile(filepath);
+     590             :   }
+     591             :   //}
+     592             : 
+     593             :   /* loadedSuccessfully function //{ */
+     594             :   /*!
+     595             :     * \brief Indicates whether all compulsory parameters were successfully loaded.
+     596             :     *
+     597             :     * \return false if any compulsory parameter was not loaded (is not present at rosparam server). Otherwise returns true.
+     598             :     */
+     599        3983 :   bool loadedSuccessfully()
+     600             :   {
+     601        3983 :     return m_load_successful;
+     602             :   }
+     603             :   //}
+     604             : 
+     605             :   /* resetLoadedSuccessfully function //{ */
+     606             :   /*!
+     607             :     * \brief Resets the loadedSuccessfully flag back to true.
+     608             :     */
+     609           3 :   void resetLoadedSuccessfully()
+     610             :   {
+     611           3 :     m_load_successful = true;
+     612           3 :   }
+     613             :   //}
+     614             : 
+     615             :   /* resetUniques function //{ */
+     616             :   /*!
+     617             :     * \brief Resets the list of already loaded parameter names used when checking for uniqueness.
+     618             :     */
+     619          20 :   void resetUniques()
+     620             :   {
+     621          20 :     m_loaded_params.clear();
+     622          20 :   }
+     623             :   //}
+     624             : 
+     625             :   /* loadParam function for optional parameters //{ */
+     626             :   /*!
+     627             :     * \brief Loads a parameter from the rosparam server with a default value.
+     628             :     *
+     629             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     630             :     * the default value is used.
+     631             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+     632             :     *
+     633             :     * \param name          Name of the parameter in the rosparam server.
+     634             :     * \param out_value     Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     635             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     636             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+     637             :     */
+     638             :   template <typename T>
+     639        6156 :   bool loadParam(const std::string& name, T& out_value, const T& default_value)
+     640             :   {
+     641        6156 :     const auto [ret, success] = load<T>(name, default_value, OPTIONAL, UNIQUE);
+     642        6156 :     out_value = ret;
+     643        6197 :     return success;
+     644             :   }
+     645             :   /*!
+     646             :     * \brief Loads a parameter from the rosparam server with a default value.
+     647             :     *
+     648             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     649             :     * the default value is used.
+     650             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+     651             :     *
+     652             :     * \param name          Name of the parameter in the rosparam server.
+     653             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     654             :     * \return              The loaded parameter value.
+     655             :     */
+     656             :   template <typename T>
+     657         456 :   T loadParam2(const std::string& name, const T& default_value)
+     658             :   {
+     659         912 :     const auto loaded = load<T>(name, default_value, OPTIONAL, UNIQUE);
+     660         912 :     return loaded.first;
+     661             :   }
+     662             :   /*!
+     663             :     * \brief Loads a parameter from the rosparam server with a default value.
+     664             :     *
+     665             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     666             :     * the default value is used.
+     667             :     * Using this method, the parameter can be loaded multiple times using the same ParamLoader instance without error.
+     668             :     *
+     669             :     * \param name          Name of the parameter in the rosparam server.
+     670             :     * \param out_value     Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     671             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     672             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+     673             :     */
+     674             :   template <typename T>
+     675             :   bool loadParamReusable(const std::string& name, T& out_value, const T& default_value)
+     676             :   {
+     677             :     const auto [ret, success] = load<T>(name, default_value, OPTIONAL, REUSABLE);
+     678             :     out_value = ret;
+     679             :     return success;
+     680             :   }
+     681             :   /*!
+     682             :     * \brief Loads an optional reusable parameter from the rosparam server.
+     683             :     *
+     684             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     685             :     * the default value is used.
+     686             :     * Using this method, the parameter can be loaded multiple times using the same ParamLoader instance without error.
+     687             :     *
+     688             :     * \param name          Name of the parameter in the rosparam server.
+     689             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     690             :     * \return              The loaded parameter value.
+     691             :     */
+     692             :   template <typename T>
+     693             :   T loadParamReusable2(const std::string& name, const T& default_value)
+     694             :   {
+     695             :     const auto [ret, success] = load<T>(name, default_value, OPTIONAL, REUSABLE);
+     696             :     return ret;
+     697             :   }
+     698             :   //}
+     699             : 
+     700             :   /* loadParam function for compulsory parameters //{ */
+     701             :   /*!
+     702             :     * \brief Loads a compulsory parameter from the rosparam server.
+     703             :     *
+     704             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     705             :     * the loading process is unsuccessful (loaded_successfully() will return false).
+     706             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+     707             :     *
+     708             :     * \param name          Name of the parameter in the rosparam server.
+     709             :     * \param out_value     Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     710             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+     711             :     */
+     712             :   template <typename T>
+     713       71038 :   bool loadParam(const std::string& name, T& out_value)
+     714             :   {
+     715       90183 :     const auto [ret, success] = load<T>(name, T(), COMPULSORY, UNIQUE);
+     716       71038 :     out_value = ret;
+     717       90183 :     return success;
+     718             :   }
+     719             :   /*!
+     720             :     * \brief Loads a compulsory parameter from the rosparam server.
+     721             :     *
+     722             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     723             :     * the loading process is unsuccessful (loaded_successfully() will return false).
+     724             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+     725             :     *
+     726             :     * \param name          Name of the parameter in the rosparam server.
+     727             :     * \return              The loaded parameter value.
+     728             :     */
+     729             :   template <typename T>
+     730             :   T loadParam2(const std::string& name)
+     731             :   {
+     732             :     const auto [ret, success] = load<T>(name, T(), COMPULSORY, UNIQUE);
+     733             :     return ret;
+     734             :   }
+     735             :   /*!
+     736             :     * \brief Loads a compulsory parameter from the rosparam server.
+     737             :     *
+     738             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     739             :     * the loading process is unsuccessful (loaded_successfully() will return false).
+     740             :     * Using this method, the parameter can be loaded multiple times using the same ParamLoader instance without error.
+     741             :     *
+     742             :     * \param name          Name of the parameter in the rosparam server.
+     743             :     * \param out_value     Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     744             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+     745             :     */
+     746             :   template <typename T>
+     747           1 :   bool loadParamReusable(const std::string& name, T& out_value)
+     748             :   {
+     749           2 :     const auto [ret, success] = load<T>(name, T(), COMPULSORY, REUSABLE);
+     750           1 :     out_value = ret;
+     751           2 :     return success;
+     752             :   }
+     753             :   /*!
+     754             :     * \brief Loads a compulsory parameter from the rosparam server.
+     755             :     *
+     756             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     757             :     * the loading process is unsuccessful (loaded_successfully() will return false).
+     758             :     * Using this method, the parameter can be loaded multiple times using the same ParamLoader instance without error.
+     759             :     *
+     760             :     * \param name          Name of the parameter in the rosparam server.
+     761             :     * \return              The loaded parameter value.
+     762             :     */
+     763             :   template <typename T>
+     764             :   T loadParamReusable2(const std::string& name)
+     765             :   {
+     766             :     const auto [ret, success] = load<T>(name, T(), COMPULSORY, REUSABLE);
+     767             :     return ret;
+     768             :   }
+     769             :   //}
+     770             : 
+     771             :   /* loadParam specializations for ros::Duration type //{ */
+     772             : 
+     773             :   /*!
+     774             :     * \brief An overload for loading ros::Duration.
+     775             :     *
+     776             :     * The duration will be loaded as a \p double, representing a number of seconds, and then converted to ros::Duration.
+     777             :     *
+     778             :     * \param name          Name of the parameter in the rosparam server.
+     779             :     * \param out_value     Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     780             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     781             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+     782             :     */
+     783             :   bool loadParam(const std::string& name, ros::Duration& out, const ros::Duration& default_value)
+     784             :   {
+     785             :     double secs;
+     786             :     const bool ret = loadParam<double>(name, secs, default_value.toSec());
+     787             :     out = ros::Duration(secs);
+     788             :     return ret;
+     789             :   }
+     790             : 
+     791             :   /*!
+     792             :     * \brief An overload for loading ros::Duration.
+     793             :     *
+     794             :     * The duration will be loaded as a \p double, representing a number of seconds, and then converted to ros::Duration.
+     795             :     *
+     796             :     * \param name          Name of the parameter in the rosparam server.
+     797             :     * \param out_value     Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     798             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+     799             :     */
+     800             :   bool loadParam(const std::string& name, ros::Duration& out)
+     801             :   {
+     802             :     double secs;
+     803             :     const bool ret = loadParam<double>(name, secs);
+     804             :     out = ros::Duration(secs);
+     805             :     return ret;
+     806             :   }
+     807             :   
+     808             :   //}
+     809             : 
+     810             :   /* loadParam specializations for std_msgs::ColorRGBA type //{ */
+     811             : 
+     812             :   /*!
+     813             :     * \brief An overload for loading std_msgs::ColorRGBA.
+     814             :     *
+     815             :     * The color will be loaded as several \p double -typed variables, representing the R, G, B and A color elements.
+     816             :     *
+     817             :     * \param name          Name of the parameter in the rosparam server.
+     818             :     * \param out_value     Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     819             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     820             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+     821             :     */
+     822             :   bool loadParam(const std::string& name, std_msgs::ColorRGBA& out, const std_msgs::ColorRGBA& default_value = {})
+     823             :   {
+     824             :     std_msgs::ColorRGBA res;
+     825             :     bool ret = true;
+     826             :     ret = ret & loadParam(name+"/r", res.r, default_value.r);
+     827             :     ret = ret & loadParam(name+"/g", res.g, default_value.g);
+     828             :     ret = ret & loadParam(name+"/b", res.b, default_value.b);
+     829             :     ret = ret & loadParam(name+"/a", res.a, default_value.a);
+     830             :     if (ret)
+     831             :       out = res;
+     832             :     return ret;
+     833             :   }
+     834             : 
+     835             :   /*!
+     836             :     * \brief An overload for loading std_msgs::ColorRGBA.
+     837             :     *
+     838             :     * The color will be loaded as several \p double -typed variables, representing the R, G, B and A color elements.
+     839             :     *
+     840             :     * \param name          Name of the parameter in the rosparam server.
+     841             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     842             :     * \return              The loaded parameter value.
+     843             :     */
+     844             :   std_msgs::ColorRGBA loadParam2(const std::string& name, const std_msgs::ColorRGBA& default_value = {})
+     845             :   {
+     846             :     std_msgs::ColorRGBA ret;
+     847             :     loadParam(name, ret, default_value);
+     848             :     return ret;
+     849             :   }
+     850             : 
+     851             :   //}
+     852             : 
+     853             :   /* loadParam specializations for XmlRpc::Value type //{ */
+     854             : 
+     855             :   /*!
+     856             :     * \brief An overload for loading an optional XmlRpc::XmlRpcValue.
+     857             :     *
+     858             :     * This can be used if you want to manually parse some more complex parameter but still take advantage of ParamLoader.
+     859             :     * \warning  XmlRpc::XmlRpcValue must be loaded from a rosparam server and not directly from a YAML file
+     860             :     * (i.e. you cannot use it to load parameters from a file added using the addYamlFile() or addYamlFileFromParam() methods).
+     861             :     *
+     862             :     * \param name          Name of the parameter in the rosparam server.
+     863             :     * \param out_value     Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     864             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     865             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+     866             :     */
+     867           2 :   bool loadParam(const std::string& name, XmlRpc::XmlRpcValue& out, const XmlRpc::XmlRpcValue& default_value)
+     868             :   {
+     869           2 :     return loadParam<XmlRpc::XmlRpcValue>(name, out, default_value);
+     870             :   }
+     871             : 
+     872             :   /*!
+     873             :     * \brief An overload for loading a compulsory XmlRpc::XmlRpcValue.
+     874             :     *
+     875             :     * This can be used if you want to manually parse some more complex parameter but still take advantage of ParamLoader.
+     876             :     * \warning  XmlRpc::XmlRpcValue must be loaded from a rosparam server and not directly from a YAML file
+     877             :     * (i.e. you cannot use it to load parameters from a file added using the addYamlFile() or addYamlFileFromParam() methods).
+     878             :     *
+     879             :     * \param name          Name of the parameter in the rosparam server.
+     880             :     * \param out_value     Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     881             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+     882             :     */
+     883           3 :   bool loadParam(const std::string& name, XmlRpc::XmlRpcValue& out)
+     884             :   {
+     885           3 :     return loadParam<XmlRpc::XmlRpcValue>(name, out);
+     886             :   }
+     887             : 
+     888             :   /*!
+     889             :     * \brief An overload for loading an optional XmlRpc::XmlRpcValue.
+     890             :     *
+     891             :     * This can be used if you want to manually parse some more complex parameter but still take advantage of ParamLoader.
+     892             :     * \warning  XmlRpc::XmlRpcValue must be loaded from a rosparam server and not directly from a YAML file
+     893             :     * (i.e. you cannot use it to load parameters from a file added using the addYamlFile() or addYamlFileFromParam() methods).
+     894             :     *
+     895             :     * \param name          Name of the parameter in the rosparam server.
+     896             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     897             :     * \return              the loaded parameter.
+     898             :     */
+     899           1 :   XmlRpc::XmlRpcValue loadParam2(const std::string& name, const XmlRpc::XmlRpcValue& default_value)
+     900             :   {
+     901           1 :     return loadParam2<XmlRpc::XmlRpcValue>(name, default_value);
+     902             :   }
+     903             : 
+     904             :   //}
+     905             : 
+     906             :   /* loadParam specializations and convenience functions for Eigen dynamic matrix type //{ */
+     907             : 
+     908             :   /*!
+     909             :     * \brief An overload for loading Eigen matrices.
+     910             :     *
+     911             :     * Matrix dimensions are deduced from the provided default value.
+     912             :     * For compulsory Eigen matrices, use loadMatrixStatic(), loadMatrixKnown() or loadMatrixDynamic().
+     913             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     914             :     * the default value is used.
+     915             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+     916             :     *
+     917             :     * \param name          Name of the parameter in the rosparam server.
+     918             :     * \param out_value     Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     919             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     920             :     * \return              True if loaded successfully, false otherwise.
+     921             :     */
+     922             :   template <typename T>
+     923             :   bool loadParam(const std::string& name, MatrixX<T>& mat, const MatrixX<T>& default_value)
+     924             :   {
+     925             :     const int rows = default_value.rows();
+     926             :     const int cols = default_value.cols();
+     927             :     const bool loaded_ok = loadMatrixDynamic(name, mat, default_value, rows, cols);
+     928             :     return loaded_ok;
+     929             :   }
+     930             : 
+     931             :   /*!
+     932             :     * \brief An overload for loading Eigen matrices.
+     933             :     *
+     934             :     * Matrix dimensions are deduced from the provided default value.
+     935             :     * For compulsory Eigen matrices, use loadMatrixStatic(), loadMatrixKnown() or loadMatrixDynamic().
+     936             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     937             :     * the default value is used.
+     938             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+     939             :     *
+     940             :     * \param name          Name of the parameter in the rosparam server.
+     941             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     942             :     * \return              The loaded parameter value.
+     943             :     */
+     944             :   template <typename T>
+     945             :   MatrixX<T> loadParam2(const std::string& name, const MatrixX<T>& default_value)
+     946             :   {
+     947             :     MatrixX<T> ret;
+     948             :     loadParam(name, ret, default_value);
+     949             :     return ret;
+     950             :   }
+     951             :   
+     952             :   //}
+     953             : 
+     954             :   // loadMatrixStatic function for loading of static Eigen::Matrices //{
+     955             : 
+     956             :   /*!
+     957             :     * \brief Specialized method for loading compulsory Eigen matrix parameters.
+     958             :     *
+     959             :     * This variant assumes that the matrix dimensions are known in compiletime.
+     960             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+     961             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     962             :     * the loading process is unsuccessful.
+     963             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+     964             :     *
+     965             :     * \tparam rows  Expected number of rows of the matrix.
+     966             :     * \tparam cols  Expected number of columns of the matrix.
+     967             :     *
+     968             :     * \param name  Name of the parameter in the rosparam server.
+     969             :     * \param mat   Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     970             :     * \return      true if loaded successfully, false otherwise.
+     971             :     *
+     972             :     */
+     973             :   template <int rows, int cols, typename T>
+     974           4 :   bool loadMatrixStatic(const std::string& name, Eigen::Matrix<T, rows, cols>& mat)
+     975             :   {
+     976           4 :     const auto [ret, loaded_ok] = loadMatrixStatic_internal<rows, cols, T>(name, Eigen::Matrix<T, rows, cols>::Zero(), COMPULSORY, UNIQUE);
+     977           4 :     mat = ret;
+     978           4 :     return loaded_ok;
+     979             :   }
+     980             : 
+     981             :   /*!
+     982             :     * \brief Specialized method for loading Eigen matrix parameters with default value.
+     983             :     *
+     984             :     * This variant assumes that the matrix dimensions are known in compiletime.
+     985             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+     986             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+     987             :     * the default value is used.
+     988             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+     989             :     *
+     990             :     * \tparam rows          Expected number of rows of the matrix.
+     991             :     * \tparam cols          Expected number of columns of the matrix.
+     992             :     *
+     993             :     * \param name          Name of the parameter in the rosparam server.
+     994             :     * \param mat           Reference to the variable to which the parameter value will be stored (such as a class member variable).
+     995             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+     996             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+     997             :     *
+     998             :     */
+     999             :   template <int rows, int cols, typename T, typename Derived>
+    1000          94 :   bool loadMatrixStatic(const std::string& name, Eigen::Matrix<T, rows, cols>& mat, const Eigen::MatrixBase<Derived>& default_value)
+    1001             :   {
+    1002          94 :     const auto [ret, loaded_ok] = loadMatrixStatic_internal<rows, cols, T>(name, Eigen::Matrix<T, rows, cols>(default_value), OPTIONAL, UNIQUE);
+    1003          94 :     mat = ret;
+    1004          94 :     return loaded_ok;
+    1005             :   }
+    1006             : 
+    1007             :   /*!
+    1008             :     * \brief Specialized method for loading compulsory Eigen matrix parameters.
+    1009             :     *
+    1010             :     * This variant assumes that the matrix dimensions are known in compiletime.
+    1011             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+    1012             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+    1013             :     * the loading process is unsuccessful.
+    1014             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+    1015             :     *
+    1016             :     * \tparam rows  Expected number of rows of the matrix.
+    1017             :     * \tparam cols  Expected number of columns of the matrix.
+    1018             :     *
+    1019             :     * \param name  Name of the parameter in the rosparam server.
+    1020             :     * \return      The loaded parameter value.
+    1021             :     *
+    1022             :     */
+    1023             :   template <int rows, int cols, typename T = double>
+    1024           2 :   Eigen::Matrix<T, rows, cols> loadMatrixStatic2(const std::string& name)
+    1025             :   {
+    1026           2 :     Eigen::Matrix<T, rows, cols> ret;
+    1027           2 :     loadMatrixStatic(name, ret);
+    1028           2 :     return ret;
+    1029             :   }
+    1030             : 
+    1031             :   /*!
+    1032             :     * \brief Specialized method for loading Eigen matrix parameters with default value.
+    1033             :     *
+    1034             :     * This variant assumes that the matrix dimensions are known in compiletime.
+    1035             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+    1036             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+    1037             :     * the default value is used.
+    1038             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+    1039             :     *
+    1040             :     * \tparam rows          Expected number of rows of the matrix.
+    1041             :     * \tparam cols          Expected number of columns of the matrix.
+    1042             :     *
+    1043             :     * \param name          Name of the parameter in the rosparam server.
+    1044             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+    1045             :     * \return              The loaded parameter value.
+    1046             :     *
+    1047             :     */
+    1048             :   template <int rows, int cols, typename T, typename Derived>
+    1049           1 :   Eigen::Matrix<T, rows, cols> loadMatrixStatic2(const std::string& name, const Eigen::MatrixBase<Derived>& default_value)
+    1050             :   {
+    1051           1 :     Eigen::Matrix<T, rows, cols> ret;
+    1052           1 :     loadMatrixStatic(name, ret, default_value);
+    1053           1 :     return ret;
+    1054             :   }
+    1055             :   //}
+    1056             : 
+    1057             :   // loadMatrixKnown function for loading of Eigen matrices with known dimensions //{
+    1058             : 
+    1059             :   /*!
+    1060             :     * \brief Specialized method for loading compulsory Eigen matrix parameters.
+    1061             :     *
+    1062             :     * This variant assumes that the matrix dimensions are known in runtime, but not compiletime.
+    1063             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+    1064             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+    1065             :     * the loading process is unsuccessful.
+    1066             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+    1067             :     *
+    1068             :     * \param name  Name of the parameter in the rosparam server.
+    1069             :     * \param mat   Reference to the variable to which the parameter value will be stored (such as a class member variable).
+    1070             :     * \param rows  Expected number of rows of the matrix.
+    1071             :     * \param cols  Expected number of columns of the matrix.
+    1072             :     * \return      true if loaded successfully, false otherwise.
+    1073             :     */
+    1074             :   template <typename T>
+    1075         366 :   bool loadMatrixKnown(const std::string& name, MatrixX<T>& mat, int rows, int cols)
+    1076             :   {
+    1077         732 :     const auto [ret, loaded_ok] = loadMatrixKnown_internal(name, MatrixX<T>(), rows, cols, COMPULSORY, UNIQUE);
+    1078         366 :     mat = ret;
+    1079         732 :     return loaded_ok;
+    1080             :   }
+    1081             : 
+    1082             :   /*!
+    1083             :     * \brief Specialized method for loading Eigen matrix parameters with default value.
+    1084             :     *
+    1085             :     * This variant assumes that the matrix dimensions are known in runtime, but not compiletime.
+    1086             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+    1087             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+    1088             :     * the default value is used.
+    1089             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+    1090             :     *
+    1091             :     * \param name          Name of the parameter in the rosparam server.
+    1092             :     * \param mat           Reference to the variable to which the parameter value will be stored (such as a class member variable).
+    1093             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+    1094             :     * \param rows          Expected number of rows of the matrix.
+    1095             :     * \param cols          Expected number of columns of the matrix.
+    1096             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+    1097             :     */
+    1098             :   template <typename T, typename Derived>
+    1099           2 :   bool loadMatrixKnown(const std::string& name, MatrixX<T>& mat, const Eigen::MatrixBase<Derived>& default_value, int rows, int cols)
+    1100             :   {
+    1101           4 :     const auto [ret, loaded_ok] = loadMatrixKnown_internal(name, MatrixX<T>(default_value), rows, cols, OPTIONAL, UNIQUE);
+    1102           2 :     mat = ret;
+    1103           4 :     return loaded_ok;
+    1104             :   }
+    1105             : 
+    1106             :   /*!
+    1107             :     * \brief Specialized method for loading compulsory Eigen matrix parameters.
+    1108             :     *
+    1109             :     * This variant assumes that the matrix dimensions are known in runtime, but not compiletime.
+    1110             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+    1111             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+    1112             :     * the loading process is unsuccessful.
+    1113             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+    1114             :     *
+    1115             :     * \param name  Name of the parameter in the rosparam server.
+    1116             :     * \param rows  Expected number of rows of the matrix.
+    1117             :     * \param cols  Expected number of columns of the matrix.
+    1118             :     * \return      The loaded parameter value.
+    1119             :     */
+    1120             :   template <typename T = double>
+    1121           1 :   MatrixX<T> loadMatrixKnown2(const std::string& name, int rows, int cols)
+    1122             :   {
+    1123           1 :     MatrixX<T> ret;
+    1124           1 :     loadMatrixKnown(name, ret, rows, cols);
+    1125           1 :     return ret;
+    1126             :   }
+    1127             : 
+    1128             :   /*!
+    1129             :     * \brief Specialized method for loading Eigen matrix parameters with default value.
+    1130             :     *
+    1131             :     * This variant assumes that the matrix dimensions are known in runtime, but not compiletime.
+    1132             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+    1133             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+    1134             :     * the default value is used.
+    1135             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+    1136             :     *
+    1137             :     * \param name          Name of the parameter in the rosparam server.
+    1138             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+    1139             :     * \param rows          Expected number of rows of the matrix.
+    1140             :     * \param cols          Expected number of columns of the matrix.
+    1141             :     * \return              The loaded parameter value.
+    1142             :     */
+    1143             :   template <typename T, typename Derived>
+    1144           1 :   MatrixX<T> loadMatrixKnown2(const std::string& name, const Eigen::MatrixBase<Derived>& default_value, int rows, int cols)
+    1145             :   {
+    1146           1 :     MatrixX<T> ret;
+    1147           1 :     loadMatrixKnown(name, ret, default_value, rows, cols);
+    1148           1 :     return ret;
+    1149             :   }
+    1150             :   //}
+    1151             : 
+    1152             :   // loadMatrixDynamic function for half-dynamic loading of MatrixX<T> //{
+    1153             : 
+    1154             :   /*!
+    1155             :     * \brief Specialized method for loading compulsory dynamic Eigen matrix parameters.
+    1156             :     *
+    1157             :     * This variant assumes that the only one of the matrix dimensions are known, the other is selected based on the loaded value.
+    1158             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+    1159             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+    1160             :     * the loading process is unsuccessful.
+    1161             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+    1162             :     *
+    1163             :     * \param name  Name of the parameter in the rosparam server.
+    1164             :     * \param mat   Reference to the variable to which the parameter value will be stored (such as a class member variable).
+    1165             :     * \param rows  Expected number of rows of the matrix (negative value indicates that the number of rows is to be deduced from the specified number of columns and the size of the loaded array).
+    1166             :     * \param cols  Expected number of columns of the matrix (negative value indicates that the number of columns is to be deduced from the specified number of rows and the size of the loaded array).
+    1167             :     * \return      true if loaded successfully, false otherwise.
+    1168             :     */
+    1169             :   template <typename T>
+    1170          74 :   bool loadMatrixDynamic(const std::string& name, MatrixX<T>& mat, int rows, int cols)
+    1171             :   {
+    1172         148 :     const auto [ret, loaded_ok] = loadMatrixDynamic_internal(name, MatrixX<T>(), rows, cols, COMPULSORY, UNIQUE);
+    1173          74 :     mat = ret;
+    1174         148 :     return loaded_ok;
+    1175             :   }
+    1176             : 
+    1177             :   /*!
+    1178             :     * \brief Specialized method for loading compulsory dynamic Eigen matrix parameters.
+    1179             :     *
+    1180             :     * This variant assumes that the only one of the matrix dimensions are known, the other is selected based on the loaded value.
+    1181             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+    1182             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+    1183             :     * the default value is used.
+    1184             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+    1185             :     *
+    1186             :     * \param name          Name of the parameter in the rosparam server.
+    1187             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+    1188             :     * \param mat           Reference to the variable to which the parameter value will be stored (such as a class member variable).
+    1189             :     * \param rows          Expected number of rows of the matrix (negative value indicates that the number of rows is to be deduced from the specified number of columns and the size of the loaded array).
+    1190             :     * \param cols          Expected number of columns of the matrix (negative value indicates that the number of columns is to be deduced from the specified number of rows and the size of the loaded array).
+    1191             :     * \return              true if the parameter was loaded from \p rosparam, false if the default value was used.
+    1192             :     */
+    1193             :   template <typename T, typename Derived>
+    1194          93 :   bool loadMatrixDynamic(const std::string& name, MatrixX<T>& mat, const Eigen::MatrixBase<Derived>& default_value, int rows, int cols)
+    1195             :   {
+    1196         186 :     const auto [ret, loaded_ok] = loadMatrixDynamic_internal(name, MatrixX<T>(default_value), rows, cols, OPTIONAL, UNIQUE);
+    1197          93 :     mat = ret;
+    1198         186 :     return loaded_ok;
+    1199             :   }
+    1200             : 
+    1201             :   /*!
+    1202             :     * \brief Specialized method for loading compulsory dynamic Eigen matrix parameters.
+    1203             :     *
+    1204             :     * This variant assumes that the only one of the matrix dimensions are known, the other is selected based on the loaded value.
+    1205             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+    1206             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+    1207             :     * the loading process is unsuccessful.
+    1208             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+    1209             :     *
+    1210             :     * \param name  Name of the parameter in the rosparam server.
+    1211             :     * \param rows  Expected number of rows of the matrix (negative value indicates that the number of rows is to be deduced from the specified number of columns and the size of the loaded array).
+    1212             :     * \param cols  Expected number of columns of the matrix (negative value indicates that the number of columns is to be deduced from the specified number of rows and the size of the loaded array).
+    1213             :     * \return      The loaded parameter value.
+    1214             :     */
+    1215             :   template <typename T = double>
+    1216          72 :   MatrixX<T> loadMatrixDynamic2(const std::string& name, int rows, int cols)
+    1217             :   {
+    1218          72 :     MatrixX<T> ret;
+    1219          72 :     loadMatrixDynamic(name, ret, rows, cols);
+    1220          72 :     return ret;
+    1221             :   }
+    1222             : 
+    1223             :   /*!
+    1224             :     * \brief Specialized method for loading compulsory dynamic Eigen matrix parameters.
+    1225             :     *
+    1226             :     * This variant assumes that the only one of the matrix dimensions are known, the other is selected based on the loaded value.
+    1227             :     * If the dimensions of the loaded matrix do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+    1228             :     * If the parameter with the specified name is not found on the rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+    1229             :     * the default value is used.
+    1230             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+    1231             :     *
+    1232             :     * \param name          Name of the parameter in the rosparam server.
+    1233             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+    1234             :     * \param rows          Expected number of rows of the matrix (negative value indicates that the number of rows is to be deduced from the specified number of columns and the size of the loaded array).
+    1235             :     * \param cols          Expected number of columns of the matrix (negative value indicates that the number of columns is to be deduced from the specified number of rows and the size of the loaded array).
+    1236             :     * \return              The loaded parameter value.
+    1237             :     */
+    1238             :   template <typename T, typename Derived>
+    1239           1 :   MatrixX<T> loadMatrixDynamic2(const std::string& name, const Eigen::MatrixBase<Derived>& default_value, int rows, int cols)
+    1240             :   {
+    1241           1 :     MatrixX<T> ret;
+    1242           1 :     loadMatrixDynamic(name, ret, default_value, rows, cols);
+    1243           1 :     return ret;
+    1244             :   }
+    1245             : 
+    1246             :   //}
+    1247             : 
+    1248             :   // loadMatrixArray function for loading of an array of MatrixX<T> with known dimensions //{
+    1249             :   /*!
+    1250             :     * \brief Specialized method for loading compulsory parameters, interpreted as an array of dynamic Eigen matrices.
+    1251             :     *
+    1252             :     * The number of rows and columns of the matrices to be loaded is specified in the \c rosparam parameter. Specifically, the \c name/rows value specifies the
+    1253             :     * number of rows, which must be common to all the loaded matrices (i.e. it is one integer >= 0), and the \c name/cols value specifies the number of columns of
+    1254             :     * each matrix (i.e. it is an array of integers > 0). The \c name/data array contains the values of the elements of the matrices and it must have length
+    1255             :     * \f$ r\sum_i c_i \f$, where \f$ r \f$ is the common number of rows and \f$ c_i \f$ is the number of columns of the \f$ i \f$-th matrix.
+    1256             :     * A typical structure of a \c yaml file, specifying the
+    1257             :     * matrix array to be loaded using this method, is
+    1258             :     *
+    1259             :     * \code{.yaml}
+    1260             :     *
+    1261             :     * matrix_array:
+    1262             :     *   rows: 3
+    1263             :     *   cols: [1, 2]
+    1264             :     *   data: [-5.0, 0.0, 23.0,
+    1265             :     *          -5.0, 0.0, 12.0,
+    1266             :     *           2.0,   4.0,  7.0]
+    1267             :     *
+    1268             :     * \endcode
+    1269             :     *
+    1270             :     * which will be loaded as a \c std::vector, containing one \f$ 3\times 1 \f$ matrix and one \f$ 3\times 2 \f$ matrix.
+    1271             :     *
+    1272             :     * If the dimensions of the loaded matrices do not match the specified number of rows and columns, the loading process is unsuccessful (loaded_successfully() will return false).
+    1273             :     * If the parameter with the specified name is not found on the \c rosparam server (e.g. because it is not specified in the launchfile or yaml config file),
+    1274             :     * the loading process is unsuccessful.
+    1275             :     * Using this method, the parameter can only be loaded once using the same ParamLoader instance without error.
+    1276             :     *
+    1277             :     * \param name  Name of the parameter in the rosparam server.
+    1278             :     * \param mat   Reference to the variable to which the parameter value will be stored (such as a class member variable).
+    1279             :     *
+    1280             :     */
+    1281             :   template <typename T>
+    1282           1 :   void loadMatrixArray(const std::string& name, std::vector<MatrixX<T>>& mat)
+    1283             :   {
+    1284           1 :     mat = loadMatrixArray2<double>(name);
+    1285           1 :   }
+    1286             : 
+    1287             :   /*!
+    1288             :     * \brief Specialized method for loading compulsory parameters, interpreted as an array of dynamic Eigen matrices.
+    1289             :     *
+    1290             :     * This overload of the loadMatrixArray() method takes a default value for the parameter, which is used in case a \c rosparam with the specified name is not
+    1291             :     * found in the \c rosparam server, instead of causing an unsuccessful load. This makes specifying the parameter value in the \c rosparam server optional.
+    1292             :     *
+    1293             :     * \param name           Name of the parameter in the rosparam server.
+    1294             :     * \param mat            Reference to the variable to which the parameter value will be stored (such as a class member variable).
+    1295             :     * \param default_value  The default value to be used in case the parameter is not found on the \c rosparam server.
+    1296             :     *
+    1297             :     */
+    1298             :   template <typename T>
+    1299           1 :   void loadMatrixArray(const std::string& name, std::vector<MatrixX<T>>& mat, const std::vector<MatrixX<T>>& default_value)
+    1300             :   {
+    1301           1 :     mat = loadMatrixArray2(name, default_value);
+    1302           1 :   }
+    1303             : 
+    1304             :   /*!
+    1305             :     * \brief Specialized method for loading compulsory parameters, interpreted as an array of dynamic Eigen matrices.
+    1306             :     *
+    1307             :     * This method works in the same way as the loadMatrixArray() method for compulsory parameters, except that the loaded
+    1308             :     * parameter is returned and not stored in the reference parameter.
+    1309             :     *
+    1310             :     * \param name           Name of the parameter in the rosparam server.
+    1311             :     * \returns              The loaded parameter or a default constructed object of the respective type.
+    1312             :     *
+    1313             :     */
+    1314             :   template <typename T = double>
+    1315           3 :   std::vector<MatrixX<T>> loadMatrixArray2(const std::string& name)
+    1316             :   {
+    1317           3 :     return loadMatrixArray_internal(name, std::vector<MatrixX<T>>(), COMPULSORY, UNIQUE);
+    1318             :   }
+    1319             : 
+    1320             :   /*!
+    1321             :     * \brief Specialized method for loading compulsory parameters, interpreted as an array of dynamic Eigen matrices.
+    1322             :     *
+    1323             :     * This method works in the same way as the loadMatrixArray() method for optional parameters, except that the loaded
+    1324             :     * parameter is returned and not stored in the reference parameter.
+    1325             :     *
+    1326             :     * \param name           Name of the parameter in the rosparam server.
+    1327             :     * \param default_value  The default value to be used in case the parameter is not found on the \c rosparam server.
+    1328             :     * \returns              The loaded parameter or the default value.
+    1329             :     *
+    1330             :     */
+    1331             :   template <typename T>
+    1332           2 :   std::vector<MatrixX<T>> loadMatrixArray2(const std::string& name, const std::vector<MatrixX<T>>& default_value)
+    1333             :   {
+    1334           2 :     return loadMatrixArray_internal(name, default_value, OPTIONAL, UNIQUE);
+    1335             :   }
+    1336             :   //}
+    1337             : 
+    1338             :   //}
+    1339             : 
+    1340             : };
+    1341             : //}
+    1342             : 
+    1343             :   /*!
+    1344             :     * \brief An overload for loading ros::Duration.
+    1345             :     *
+    1346             :     * The duration will be loaded as a \p double, representing a number of seconds, and then converted to ros::Duration.
+    1347             :     *
+    1348             :     * \param name          Name of the parameter in the rosparam server.
+    1349             :     * \param default_value This value will be used if the parameter name is not found in the rosparam server.
+    1350             :     * \return              The loaded parameter value.
+    1351             :     */
+    1352             :   template <>
+    1353             :   ros::Duration ParamLoader::loadParam2<ros::Duration>(const std::string& name, const ros::Duration& default_value);
+    1354             : 
+    1355             :   /*!
+    1356             :     * \brief An overload for loading ros::Duration.
+    1357             :     *
+    1358             :     * The duration will be loaded as a \p double, representing a number of seconds, and then converted to ros::Duration.
+    1359             :     *
+    1360             :     * \param name          Name of the parameter in the rosparam server.
+    1361             :     * \return              The loaded parameter value.
+    1362             :     */
+    1363             :   template <>
+    1364             :   ros::Duration ParamLoader::loadParam2<ros::Duration>(const std::string& name);
+    1365             : 
+    1366             : }  // namespace mrs_lib
+    1367             : 
+    1368             : #endif  // PARAM_LOADER_H
+
+
+
+ + + + +
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+ + diff --git a/mrs_lib/include/mrs_lib/param_loader.h.gcov.png b/mrs_lib/include/mrs_lib/param_loader.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..a4d4e2202f27269e5f25a66abde48f1cb954de81 GIT binary patch literal 4406 zcmV-65y|d}P)?dmV;-Eh=eLQB(e%tMAqI2=3>TAChE z6XB?B!BO9Imv2F+82;!2@QoQAj zkZ*hw+~lD>kBvuS_ys)H7n4V__?8Tj14BX9V)A&?$??GD*tSgA3lD6N#b*AEqjsTa z*s(Q>FI^&ZLG;^$kUUBuzJO5&9u0r8XjMUvArLy4CJh32(&l-_<3&-IavBKMTUI zudn~;`u>T(e*XLZ?|Xgy^F^0oFn2MS8O2m1JXbs&?)${EiUp+f6JLMr6OWG4itvP2 zH$=IPqtfivR3ZMqrv*=R(mm$#qP)jOKAATu>%Uhv`2;r54`wgIVP>gTZTeHG(3soVzSj z(~53d24hz)@q63Kk;;|&bgptiEYOSqI9#Jxg%Un5B4Asl4<3TrBg-2i4Kbe z?N3BPugQ?8L=gksHlZy$!y3n0`gE=Mm9q0N>MFAwHLdHWJ{7l2VaV$m^}guiUJ)@v zp@ND+PE=&i$?YHaTr*jh(>#}Sk_W;8t06yBE< zcFoH|GF@tfx+o>GBy|`PF4*Kuan(JBR`-HXDi|RsP41pPcIQM8YUQ|{nFh>kGc)(Y zM=^!tU|83-eG1E&k?OsQf#+J)^b@C0VN0!3IL>`e7>qgukVdNCwAM7MuU4oa?irhw z=49C#i;U3hhP%q}c&Q2AQ#tOG4C&~&Fn8=i=L=0YI`+bl)(O>kJbcty27o1JCv#7i z(wB`-V4Uw4k3u;1%1746nL{R0qeT+-+zdrhLw#8Ls8X8AV9lWE!Ql1cF{Fj3zzmW* zTw?ZI0QNay2t>{+&9uS}#D*+RKz0$Y0lr|V_nBtKPz?CCgfNFxEoyQUD-g{|2c3bM zal-aOFrT>rRIY6>Q}h9B_;<9}Y|Otl*R;J=ztSASlw^!E`^%u%+gUGmgAgF z?_w9L0mT3jkfiM6y^|I8g46ewA&A3c$Q;Sm2O#)NLlqru0_)mZyXF_ zODFE3T-Q4s<4o)mbhK5{Q+Sv9$o6b*8J84%phx&&drzq*+ybxgmE1|Z+4Qby(92R7 zi_Ja&DV%{JRZn5sF6(k3IhayRzX&}eP+HNWh>(g=-@)d}QdopYPS{DNEPXs-$%n)n zSLE92s;;HjBB^AHmNwswz?TN)Hpy-9JS`<1&9u#PiM?)UCmJ(Di(freyi6^nlEPxb zi@7W6oo{Bb`ApAuO8yGfH0Q1}@RO!5<0^_*eG7CQfurZkDhwgnvj>X>JOS_r^Xi_e z20*i$c7;(;Un7Ljtg|CWuZ7CoYiYt{8Uld}8Ks9pG+}do*wvxu*bE zE60g;C&2?VFtSp%g$P1C7+ep;v!lX3-2Zs%6+Ct|{XD(?WzWUA(k=tg z@mpt=xrbX#cnYycBf`1XR+VE);flqi8G}VLq3)V)rNrB*eLfoV2JS6EjVIdIK|XFO_^KVv!LF-Vl`3*bGNyO36to1nkmZG2Nu4IDNzDpp=sF~PZc19oLo3_Kd38UP zR2@~b(n$yK+4TGamXuLHJw9(dmoUQ%ycD3NQe6mrr=TvmJ?A-*~6XEvq397sQl<(Jt>FvLe12^?`Btv|W{gx^)SPY~8gl z$ItTB0oU=XQj@e5XmZ8LH&}qkmalreZOd14nhmr7Vpi7jp?`nLkN$P3Zh$Cwiz6pcpegr^H=7jn5j zxs;6&;mB3&oWZdHw9Z8Mslb)DSl|oamwzf}<|RP!7w0-V4uDmHDl}s8&I`)kz>G%` z?2xQJesrod^mM7Iad{P@4FD%i1nZ!uTGHdMk=ciJYrJrvNF^R#GhU8Wv>ds!DEe>ZI45D z#Zd)930T=fE+0gN2rC&_<(&vUQ?W&z&(-y5{1th&Gvo(j*gZ)O~Yk(q1Q>DWi-&e&(BH`AAx8D7Xm1GG_` zeg2wVrDNyqKzB?h+UMNJaf@#knD9hu`jNsx`s7@`UalgtyV11GnouKETa@%XNX^$&Gz% zc%QHgn_2qem91`urXx^2-pdBCsuqAiGaAPdYF{T5_fZuH16(e^cg9nb-%}MXYr|=+ zsRTG;++IL3A>1AMg+FJnD^TaRIlxZ$(bAVlsOMKx9>2Nf>kcI2v~Xa=UrDBMJ2!J@!6=%+cCQ2=LsI+p$~m zZHg{D&!`6>?@1bfbq|t?FxkVRnj_x=VfWkB%chT1F7@?6_^(GPJ>bf*Xb1f;aJMbJ z6>!xY>+U1$_aF}|*H*u5%7qZ+uR|x`dz{;k`^dFWbjIpF0`eNRt^4Y2?=wYoqLcnA zggVOuEOkce`X=Q))zzehMq%;f$YH z)IW%*y&eFrFvywV_yBhZ+~38c6+LY{E(PJG@c1#L$AvRB?CJ5yfZ5`bZa$31!a6=1 zk7|z9;De0-0PU1MRswccoo(wP3F6!%XLu6?A%b6wm4tvVrr+AEM0th7xAswABb-4O z>aPsn=r&r115^e`wyjXtyQP*El*IiCC6ChkC zXrY(^FEA|~$&O-yCb{QU|6H*Eg)L%DwuYzmk(+TsWogF2{7%*w7yn^wiuQmu8%#p4 z#R(gz)`a$b27uaW2<{vM;2~spseSC*kdV|rYt3qV`gVs2dtrhPbkdg}d4E$MZAQuy zT3Y5R-&&L%%qcU}dGFSu@;k>lv53b9Yfjt~NySl*U+S+%4S>*EMA1tbfagR29@^|0 zfd=8$2%HssOo^~*1g5=FO0U%PJC*{+D_Z+lih&$Ip~5FrsD=uDlzEt%enhWpUs@@@ zOJ~lDciD;ldk!~1md)?-%^T};Y_Z7*ucz0a2;hAqfFP9Y(elGH9sAe-m``fhV*u!k z*E->`2H?cd6e&f)28aW=~ui0l$4_OL_ z@MepV^!o4m>xa^2=rP&wEuj=Cu$(TFHn;QUY+CyCC5N1)i4zd*Vb28}+fjT&;Eue{xI0g(VDY}cao(8y5 zPiT8Q4Av1aU9v$yITSU6u9sQ6)(vdyzZPf>P1+eLkoEVx^ithO7eJ5fM@F5Ij zH1@W^pkd*VjABfb3*Zq5C5aQ-k%=cvA~?mMPq;X3AD;wVTWppAw>$^ny@5+fiLXG| zQ@|c*0a4^V*ahNf8;laT$X?_T9OaPv&^CQeYM*5Z1v2gEDUy$ZGyd_yiTGRNQD+|; zz$HPM`*?yO9RT-;gQsd=4))xY+@m?F*L{y4%b!1I7}Kt-)P#w{bXEmPGoV1usd8n} wp7#2~bA9D0G;I6uRMI)h6s*m+r07*qoM6N<$f)oynZvX%Q literal 0 HcmV?d00001 diff --git a/mrs_lib/include/mrs_lib/publisher_handler.h.func-sort-c.html b/mrs_lib/include/mrs_lib/publisher_handler.h.func-sort-c.html new file mode 100644 index 0000000000..f6053f9962 --- /dev/null +++ b/mrs_lib/include/mrs_lib/publisher_handler.h.func-sort-c.html @@ -0,0 +1,556 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/publisher_handler.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib - publisher_handler.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:11811999.2 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()0
mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::PublisherHandler()1
mrs_lib::PublisherHandler_impl<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::~PublisherHandler_impl()1
mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::PublisherHandler()2
mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::~PublisherHandler()2
mrs_lib::PublisherHandler<std_msgs::Int64_<std::allocator<void> > >::~PublisherHandler()2
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::~PublisherHandler_impl()2
mrs_lib::PublisherHandler_impl<std_msgs::Int64_<std::allocator<void> > >::~PublisherHandler_impl()2
mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::~PublisherHandler()4
mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > >::PublisherHandler()31
mrs_lib::PublisherHandler_impl<std_msgs::Bool_<std::allocator<void> > >::~PublisherHandler_impl()31
mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > >::~PublisherHandler()62
mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseStamped_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlError_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorInput_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::TrackerCommand_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::Path_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<std_msgs::Empty_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<std_msgs::String_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::~PublisherHandler_impl()92
mrs_lib::PublisherHandler_impl<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::~PublisherHandler_impl()97
mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::PublisherHandler()183
mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::PublisherHandler()189
mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > >::PublisherHandler()189
mrs_lib::PublisherHandler_impl<mrs_msgs::UavState_<std::allocator<void> > >::~PublisherHandler_impl()189
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::~PublisherHandler_impl()264
mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::~PublisherHandler()275
mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::~PublisherHandler()286
mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::PublisherHandler()361
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::~PublisherHandler_impl()361
mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > >::PublisherHandler()364
mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > >::PublisherHandler()364
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseArray_<std::allocator<void> > >::~PublisherHandler_impl()364
mrs_lib::PublisherHandler_impl<std_msgs::Float64_<std::allocator<void> > >::~PublisherHandler_impl()364
mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > >::~PublisherHandler()378
mrs_lib::PublisherHandler_impl<nav_msgs::Odometry_<std::allocator<void> > >::~PublisherHandler_impl()447
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64Stamped_<std::allocator<void> > >::~PublisherHandler_impl()525
mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::PublisherHandler()529
mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::~PublisherHandler()529
mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > >::PublisherHandler()546
mrs_lib::PublisherHandler_impl<visualization_msgs::MarkerArray_<std::allocator<void> > >::~PublisherHandler_impl()546
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::PublisherHandler()561
mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::PublisherHandler()627
mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::PublisherHandler()692
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::~PublisherHandler_impl()692
mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::~PublisherHandler()722
mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > >::~PublisherHandler()728
mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > >::~PublisherHandler()728
mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::~PublisherHandler()891
mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::PublisherHandler()962
mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > >::~PublisherHandler()1092
mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::~PublisherHandler()1384
mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::~PublisherHandler()1487
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::~PublisherHandler()144836
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/include/mrs_lib/publisher_handler.h.func.html b/mrs_lib/include/mrs_lib/publisher_handler.h.func.html new file mode 100644 index 0000000000..18bfd7b592 --- /dev/null +++ b/mrs_lib/include/mrs_lib/publisher_handler.h.func.html @@ -0,0 +1,556 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/publisher_handler.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib - publisher_handler.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:11811999.2 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > >::PublisherHandler()364
mrs_lib::PublisherHandler<geometry_msgs::PoseArray_<std::allocator<void> > >::~PublisherHandler()728
mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::PublisherHandler()189
mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::~PublisherHandler()286
mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > >::PublisherHandler()546
mrs_lib::PublisherHandler<visualization_msgs::MarkerArray_<std::allocator<void> > >::~PublisherHandler()1092
mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::ControlError_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::PublisherHandler()962
mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::~PublisherHandler()1487
mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::PublisherHandler()361
mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::~PublisherHandler()722
mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::PublisherHandler()2
mrs_lib::PublisherHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::~PublisherHandler()4
mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::PublisherHandler()1
mrs_lib::PublisherHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::~PublisherHandler()2
mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::PublisherHandler()692
mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::~PublisherHandler()1384
mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::PublisherHandler()627
mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::~PublisherHandler()891
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::PublisherHandler()183
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::~PublisherHandler()275
mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::PublisherHandler()529
mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::~PublisherHandler()529
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::~PublisherHandler()273
mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<mrs_msgs::Path_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > >::PublisherHandler()189
mrs_lib::PublisherHandler<mrs_msgs::UavState_<std::allocator<void> > >::~PublisherHandler()378
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::PublisherHandler()561
mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >::~PublisherHandler()144836
mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > >::PublisherHandler()31
mrs_lib::PublisherHandler<std_msgs::Bool_<std::allocator<void> > >::~PublisherHandler()62
mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<std_msgs::Empty_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<std_msgs::Int64_<std::allocator<void> > >::~PublisherHandler()2
mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > >::PublisherHandler()91
mrs_lib::PublisherHandler<std_msgs::String_<std::allocator<void> > >::~PublisherHandler()182
mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > >::PublisherHandler()364
mrs_lib::PublisherHandler<std_msgs::Float64_<std::allocator<void> > >::~PublisherHandler()728
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseArray_<std::allocator<void> > >::~PublisherHandler_impl()364
mrs_lib::PublisherHandler_impl<geometry_msgs::PoseStamped_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::~PublisherHandler_impl()97
mrs_lib::PublisherHandler_impl<visualization_msgs::MarkerArray_<std::allocator<void> > >::~PublisherHandler_impl()546
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlError_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorInput_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64Stamped_<std::allocator<void> > >::~PublisherHandler_impl()525
mrs_lib::PublisherHandler_impl<mrs_msgs::TrackerCommand_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::~PublisherHandler_impl()361
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::~PublisherHandler_impl()2
mrs_lib::PublisherHandler_impl<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::~PublisherHandler_impl()1
mrs_lib::PublisherHandler_impl<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >::~PublisherHandler_impl()692
mrs_lib::PublisherHandler_impl<mrs_msgs::Float64ArrayStamped_<std::allocator<void> > >::~PublisherHandler_impl()264
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >::~PublisherHandler_impl()92
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimatorDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()0
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::Path_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<mrs_msgs::UavState_<std::allocator<void> > >::~PublisherHandler_impl()189
mrs_lib::PublisherHandler_impl<nav_msgs::Odometry_<std::allocator<void> > >::~PublisherHandler_impl()447
mrs_lib::PublisherHandler_impl<std_msgs::Bool_<std::allocator<void> > >::~PublisherHandler_impl()31
mrs_lib::PublisherHandler_impl<std_msgs::Empty_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<std_msgs::Int64_<std::allocator<void> > >::~PublisherHandler_impl()2
mrs_lib::PublisherHandler_impl<std_msgs::String_<std::allocator<void> > >::~PublisherHandler_impl()91
mrs_lib::PublisherHandler_impl<std_msgs::Float64_<std::allocator<void> > >::~PublisherHandler_impl()364
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/include/mrs_lib/publisher_handler.h.gcov.frameset.html b/mrs_lib/include/mrs_lib/publisher_handler.h.gcov.frameset.html new file mode 100644 index 0000000000..79755e1cb1 --- /dev/null +++ b/mrs_lib/include/mrs_lib/publisher_handler.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/publisher_handler.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/include/mrs_lib/publisher_handler.h.gcov.html b/mrs_lib/include/mrs_lib/publisher_handler.h.gcov.html new file mode 100644 index 0000000000..2abaa50039 --- /dev/null +++ b/mrs_lib/include/mrs_lib/publisher_handler.h.gcov.html @@ -0,0 +1,256 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/publisher_handler.h + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib - publisher_handler.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:11811999.2 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /**  \file
+       2             :      \brief Defines PublisherHandler and related convenience classes for upgrading the ROS publisher
+       3             :      \author Tomas Baca - tomas.baca@fel.cvut.cz
+       4             :  */
+       5             : #ifndef PUBLISHER_HANDLER_H
+       6             : #define PUBLISHER_HANDLER_H
+       7             : 
+       8             : #include <ros/ros.h>
+       9             : #include <ros/package.h>
+      10             : 
+      11             : #include <atomic>
+      12             : #include <string>
+      13             : #include <mutex>
+      14             : 
+      15             : namespace mrs_lib
+      16             : {
+      17             : 
+      18             : /* class PublisherHandler_impl //{ */
+      19             : 
+      20             : /**
+      21             :  * @brief implementation of the publisher handler
+      22             :  */
+      23             : template <class TopicType>
+      24             : class PublisherHandler_impl {
+      25             : 
+      26             : public:
+      27             :   /**
+      28             :    * @brief default constructor
+      29             :    */
+      30             :   PublisherHandler_impl(void);
+      31             : 
+      32             :   /**
+      33             :    * @brief default destructor
+      34             :    */
+      35        6161 :   ~PublisherHandler_impl(void){};
+      36             : 
+      37             :   /**
+      38             :    * @brief constructor
+      39             :    *
+      40             :    * @param nh ROS node handler
+      41             :    * @param address topic address
+      42             :    * @param buffer_size buffer size
+      43             :    * @param latch latching
+      44             :    */
+      45             :   PublisherHandler_impl(ros::NodeHandle& nh, const std::string& address, const unsigned int& buffer_size = 1, const bool& latch = false,
+      46             :                         const double& rate = 0.0);
+      47             : 
+      48             :   /**
+      49             :    * @brief publish message
+      50             :    *
+      51             :    * @param msg data
+      52             :    *
+      53             :    */
+      54             :   void publish(const TopicType& msg);
+      55             : 
+      56             :   /**
+      57             :    * @brief publish message, boost ptr overload
+      58             :    *
+      59             :    * @param msg
+      60             :    */
+      61             :   void publish(const boost::shared_ptr<TopicType>& msg);
+      62             : 
+      63             :   /**
+      64             :    * @brief publish message, boost const ptr overload
+      65             :    *
+      66             :    * @param msg
+      67             :    */
+      68             :   void publish(const boost::shared_ptr<TopicType const>& msg);
+      69             : 
+      70             :   /**
+      71             :    * @brief get number of subscribers
+      72             :    *
+      73             :    * @return the number of subscribers
+      74             :    */
+      75             :   unsigned int getNumSubscribers(void);
+      76             : 
+      77             : private:
+      78             :   ros::Publisher    publisher_;
+      79             :   std::mutex        mutex_publisher_;
+      80             :   std::atomic<bool> publisher_initialized_;
+      81             : 
+      82             :   bool      throttle_ = false;
+      83             :   double    throttle_min_dt_;
+      84             :   ros::Time last_time_published_;
+      85             : };
+      86             : 
+      87             : //}
+      88             : 
+      89             : /* class PublisherHandler //{ */
+      90             : 
+      91             : /**
+      92             :  * @brief user wrapper of the publisher handler implementation
+      93             :  */
+      94             : template <class TopicType>
+      95             : class PublisherHandler {
+      96             : 
+      97             : public:
+      98             :   /**
+      99             :    * @brief generic constructor
+     100             :    */
+     101        8513 :   PublisherHandler(void){};
+     102             : 
+     103             :   /**
+     104             :    * @brief generic destructor
+     105             :    */
+     106      158502 :   ~PublisherHandler(void){};
+     107             : 
+     108             :   /**
+     109             :    * @brief operator=
+     110             :    *
+     111             :    * @param other
+     112             :    *
+     113             :    * @return
+     114             :    */
+     115             :   PublisherHandler& operator=(const PublisherHandler& other);
+     116             : 
+     117             :   /**
+     118             :    * @brief copy constructor
+     119             :    *
+     120             :    * @param other
+     121             :    */
+     122             :   PublisherHandler(const PublisherHandler& other);
+     123             : 
+     124             :   /**
+     125             :    * @brief constructor
+     126             :    *
+     127             :    * @param nh ROS node handler
+     128             :    * @param address topic address
+     129             :    * @param buffer_size buffer size
+     130             :    * @param latch latching
+     131             :    */
+     132         224 :   PublisherHandler(ros::NodeHandle& nh, const std::string& address, const unsigned int& buffer_size = 1, const bool& latch = false, const double& rate = 0);
+     133             : 
+     134             :   /**
+     135             :    * @brief publish message
+     136             :    *
+     137             :    * @param msg
+     138             :    */
+     139             :   void publish(const TopicType& msg);
+     140             : 
+     141             :   /**
+     142             :    * @brief publish message, boost ptr overload
+     143             :    *
+     144             :    * @param msg
+     145             :    */
+     146             :   void publish(const boost::shared_ptr<TopicType>& msg);
+     147             : 
+     148             :   /**
+     149             :    * @brief publish message, boost const ptr overload
+     150             :    *
+     151             :    * @param msg
+     152             :    */
+     153             :   void publish(const boost::shared_ptr<TopicType const>& msg);
+     154             : 
+     155             :   /**
+     156             :    * @brief get number of subscribers
+     157             :    *
+     158             :    * @return the number of subscribers
+     159             :    */
+     160             :   unsigned int getNumSubscribers(void);
+     161             : 
+     162             : private:
+     163             :   std::shared_ptr<PublisherHandler_impl<TopicType>> impl_;
+     164             : };
+     165             : 
+     166             : //}
+     167             : 
+     168             : }  // namespace mrs_lib
+     169             : 
+     170             : #include <mrs_lib/impl/publisher_handler.hpp>
+     171             : 
+     172             : #endif  // PUBLISHER_HANDLER_H
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/include/mrs_lib/publisher_handler.h.gcov.overview.html b/mrs_lib/include/mrs_lib/publisher_handler.h.gcov.overview.html new file mode 100644 index 0000000000..f7a333c6d4 --- /dev/null +++ b/mrs_lib/include/mrs_lib/publisher_handler.h.gcov.overview.html @@ -0,0 +1,63 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/publisher_handler.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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Current view:top level - mrs_lib/include/mrs_lib - quadratic_throttle_model.h (source / functions)HitTotalCoverage
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mrs_lib::quadratic_throttle_model::forceToThrottle(mrs_lib::quadratic_throttle_model::MotorParams_t, double)77021
mrs_lib::quadratic_throttle_model::throttleToForce(mrs_lib::quadratic_throttle_model::MotorParams_t, double)113604
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mrs_lib::quadratic_throttle_model::forceToThrottle(mrs_lib::quadratic_throttle_model::MotorParams_t, double)77021
mrs_lib::quadratic_throttle_model::throttleToForce(mrs_lib::quadratic_throttle_model::MotorParams_t, double)113604
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+
          Line data    Source code
+
+       1             : #ifndef QUADRATIC_THRUST_MODEL_H
+       2             : #define QUADRATIC_THRUST_MODEL_H
+       3             : 
+       4             : #include <cmath>
+       5             : 
+       6             : namespace mrs_lib
+       7             : {
+       8             : 
+       9             : namespace quadratic_throttle_model
+      10             : {
+      11             : 
+      12             : typedef struct
+      13             : {
+      14             :   double A;
+      15             :   double B;
+      16             :   int    n_motors;
+      17             : } MotorParams_t;
+      18             : 
+      19      113604 : double inline throttleToForce(const MotorParams_t motor_params, const double throttle) {
+      20             : 
+      21      113604 :   return motor_params.n_motors * pow((throttle - motor_params.B) / motor_params.A, 2);
+      22             : }
+      23             : 
+      24       77021 : double inline forceToThrottle(const MotorParams_t motor_params, const double force) {
+      25             : 
+      26       77021 :   return sqrt(force / motor_params.n_motors) * motor_params.A + motor_params.B;
+      27             : }
+      28             : 
+      29             : }  // namespace quadratic_throttle_model
+      30             : 
+      31             : }  // namespace mrs_lib
+      32             : 
+      33             : #endif  // QUADRATIC_THRUST_MODEL_H
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::correctFrom(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::predictFrom(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&, ros::Time const&, ros::Time const&)0
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::addMeasurement<false>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<3, 1, 1> > const&, double const&)0
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::addInputChangeWithNoise<false>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<3, 1, 1> > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t::updateUsing(mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t::info_t(ros::Time const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, std::shared_ptr<mrs_lib::varstepLKF<3, 1, 1> > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, std::shared_ptr<mrs_lib::varstepLKF<3, 1, 1> > const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&, int const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::addInfo(mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&, boost::cb_details::iterator<boost::circular_buffer<mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t, std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t> >, boost::cb_details::nonconst_traits<boost::cb_details::allocator_traits<std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t> > > > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::earlier(mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&)0
std::enable_if<!(false), mrs_lib::KalmanFilter<3, 1, 1>::statecov_t>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::predictTo<false>(ros::Time const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::Repredictor(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<3, 1, 1> > const&, unsigned int)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::correctFrom(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::predictFrom(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&, ros::Time const&, ros::Time const&)0
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::addMeasurement<false>(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<6, 2, 2> > const&, double const&)0
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::addInputChangeWithNoise<false>(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<6, 2, 2> > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t::updateUsing(mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t::info_t(ros::Time const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, std::shared_ptr<mrs_lib::varstepLKF<6, 2, 2> > const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&, int const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, std::shared_ptr<mrs_lib::varstepLKF<6, 2, 2> > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::addInfo(mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&, boost::cb_details::iterator<boost::circular_buffer<mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t, std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t> >, boost::cb_details::nonconst_traits<boost::cb_details::allocator_traits<std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t> > > > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::earlier(mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&)0
std::enable_if<!(false), mrs_lib::KalmanFilter<6, 2, 2>::statecov_t>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::predictTo<false>(ros::Time const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::Repredictor(Eigen::Matrix<double, 6, 1, 0, 6, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<6, 2, 2> > const&, unsigned int)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::Repredictor(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&, unsigned int)1
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::info_t::info_t(ros::Time const&)2
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::Repredictor(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&, unsigned int)2
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::addMeasurement<false>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&, double const&)100
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&, int const&)100
std::enable_if<!(false), mrs_lib::KalmanFilter<2, 1, 1>::statecov_t>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::predictTo<false>(ros::Time const&)102
std::enable_if<true, void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::addInputChange<true>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&)109
std::enable_if<true, void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::addInputChangeWithNoise<true>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&)183
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::addInputChangeWithNoise<false>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&)200
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&)200
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::addInfo(mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&, boost::cb_details::iterator<boost::circular_buffer<mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t, std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t> >, boost::cb_details::nonconst_traits<boost::cb_details::allocator_traits<std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t> > > > const&)300
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::correctFrom(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::info_t const&)307
std::enable_if<true, void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::addMeasurement<true>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&, double const&)307
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::predictFrom(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::info_t const&, ros::Time const&, ros::Time const&)614
std::enable_if<true, mrs_lib::KalmanFilter<2, 1, 1>::statecov_t>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::predictTo<true>(ros::Time const&)614
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t::info_t(ros::Time const&)620
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::earlier(mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&)2053
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::correctFrom(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&)5150
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t::updateUsing(mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&)6907
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::predictFrom(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&, ros::Time const&, ros::Time const&)16204
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/repredictor.h.func.html b/mrs_lib/include/mrs_lib/repredictor.h.func.html new file mode 100644 index 0000000000..f703be6d0f --- /dev/null +++ b/mrs_lib/include/mrs_lib/repredictor.h.func.html @@ -0,0 +1,256 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/repredictor.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib - repredictor.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:10011190.1 %
Date:2024-04-17 23:52:03Functions:204445.5 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::correctFrom(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&)5150
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::predictFrom(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&, ros::Time const&, ros::Time const&)16204
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::addMeasurement<false>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&, double const&)100
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::addInputChangeWithNoise<false>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&)200
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t::updateUsing(mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&)6907
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t::info_t(ros::Time const&)620
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&)200
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&, int const&)100
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::addInfo(mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&, boost::cb_details::iterator<boost::circular_buffer<mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t, std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t> >, boost::cb_details::nonconst_traits<boost::cb_details::allocator_traits<std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t> > > > const&)300
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::earlier(mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::info_t const&)2053
std::enable_if<!(false), mrs_lib::KalmanFilter<2, 1, 1>::statecov_t>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::predictTo<false>(ros::Time const&)102
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, false>::Repredictor(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&, unsigned int)1
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::correctFrom(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::info_t const&)307
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::predictFrom(mrs_lib::KalmanFilter<2, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::info_t const&, ros::Time const&, ros::Time const&)614
std::enable_if<true, void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::addInputChange<true>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&)109
std::enable_if<true, void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::addMeasurement<true>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&, double const&)307
std::enable_if<true, void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::addInputChangeWithNoise<true>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&)183
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::info_t::info_t(ros::Time const&)2
std::enable_if<true, mrs_lib::KalmanFilter<2, 1, 1>::statecov_t>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::predictTo<true>(ros::Time const&)614
mrs_lib::Repredictor<mrs_lib::varstepLKF<2, 1, 1>, true>::Repredictor(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<2, 1, 1> > const&, unsigned int)2
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::correctFrom(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::predictFrom(mrs_lib::KalmanFilter<3, 1, 1>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&, ros::Time const&, ros::Time const&)0
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::addMeasurement<false>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<3, 1, 1> > const&, double const&)0
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::addInputChangeWithNoise<false>(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<3, 1, 1> > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t::updateUsing(mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t::info_t(ros::Time const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, std::shared_ptr<mrs_lib::varstepLKF<3, 1, 1> > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, std::shared_ptr<mrs_lib::varstepLKF<3, 1, 1> > const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&, int const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::addInfo(mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&, boost::cb_details::iterator<boost::circular_buffer<mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t, std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t> >, boost::cb_details::nonconst_traits<boost::cb_details::allocator_traits<std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t> > > > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::earlier(mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::info_t const&)0
std::enable_if<!(false), mrs_lib::KalmanFilter<3, 1, 1>::statecov_t>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::predictTo<false>(ros::Time const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<3, 1, 1>, false>::Repredictor(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<3, 1, 1> > const&, unsigned int)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::correctFrom(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::predictFrom(mrs_lib::KalmanFilter<6, 2, 2>::statecov_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&, ros::Time const&, ros::Time const&)0
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::addMeasurement<false>(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<6, 2, 2> > const&, double const&)0
std::enable_if<!(false), void>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::addInputChangeWithNoise<false>(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<6, 2, 2> > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t::updateUsing(mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t::info_t(ros::Time const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 2, 0, 2, 2> const&, std::shared_ptr<mrs_lib::varstepLKF<6, 2, 2> > const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&, int const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t::info_t(ros::Time const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, std::shared_ptr<mrs_lib::varstepLKF<6, 2, 2> > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::addInfo(mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&, boost::cb_details::iterator<boost::circular_buffer<mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t, std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t> >, boost::cb_details::nonconst_traits<boost::cb_details::allocator_traits<std::allocator<mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t> > > > const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::earlier(mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&, mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::info_t const&)0
std::enable_if<!(false), mrs_lib::KalmanFilter<6, 2, 2>::statecov_t>::type mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::predictTo<false>(ros::Time const&)0
mrs_lib::Repredictor<mrs_lib::varstepLKF<6, 2, 2>, false>::Repredictor(Eigen::Matrix<double, 6, 1, 0, 6, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 6, 6, 0, 6, 6> const&, ros::Time const&, std::shared_ptr<mrs_lib::varstepLKF<6, 2, 2> > const&, unsigned int)0
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/repredictor.h.gcov.frameset.html b/mrs_lib/include/mrs_lib/repredictor.h.gcov.frameset.html new file mode 100644 index 0000000000..d18e49adfb --- /dev/null +++ b/mrs_lib/include/mrs_lib/repredictor.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/repredictor.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/include/mrs_lib/repredictor.h.gcov.html b/mrs_lib/include/mrs_lib/repredictor.h.gcov.html new file mode 100644 index 0000000000..4b91570e2f --- /dev/null +++ b/mrs_lib/include/mrs_lib/repredictor.h.gcov.html @@ -0,0 +1,637 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/repredictor.h + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - repredictor.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:10011190.1 %
Date:2024-04-17 23:52:03Functions:204445.5 %
Legend: Lines: + hit + not hit +
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          Line data    Source code
+
+       1             : #ifndef REPREDICTOR_H
+       2             : #define REPREDICTOR_H
+       3             : 
+       4             : #include <Eigen/Dense>
+       5             : #include <boost/circular_buffer.hpp>
+       6             : #include <std_msgs/Time.h>
+       7             : #include <functional>
+       8             : #include <ros/ros.h>
+       9             : #include <mrs_lib/utils.h>
+      10             : 
+      11             : namespace mrs_lib
+      12             : {
+      13             :   /**
+      14             :    * \brief Implementation of the Repredictor for fusing measurements with variable delays.
+      15             :    *
+      16             :    * A standard state-space system model is assumed for the repredictor with system inputs and measurements,
+      17             :    * generated from the system state vector. The inputs and measurements may be delayed with varying durations (an older measurement may become available after
+      18             :    * a newer one). A typical use-case scenario is when you have one "fast" but imprecise sensor and one "slow" but precise sensor and you want to use them both
+      19             :    * to get a good prediction (eg. height from the Garmin LiDAR, which comes at 100Hz, and position from a SLAM, which comes at 10Hz with a long delay). If the
+      20             :    * slow sensor is significantly slower than the fast one, fusing its measurement at the time it arrives without taking into account the sensor's delay may
+      21             :    * significantly bias your latest estimate.
+      22             :    *
+      23             :    * To accomodate this, the Repredictor keeps a buffer of N last inputs and measurements (N is specified
+      24             :    * in the constructor). This buffer is then used to re-predict the desired state to a specific time, as
+      25             :    * requested by the user. Note that the re-prediction is evaluated in a lazy manner only when the user requests it,
+      26             :    * so it goes through the whole history buffer every time a prediction is requested.
+      27             :    *
+      28             :    * The Repredictor utilizes a fusion Model (specified as the template parameter), which should implement
+      29             :    * the predict() and correct() methods. This Model is used for fusing the system inputs and measurements
+      30             :    * as well as for predictions. Typically, this Model will be some kind of a Kalman Filter (LKF, UKF etc.).
+      31             :    * \note The Model should be able to accomodate predictions with varying time steps in order for
+      32             :    * the Repredictor to work correctly (see eg. the varstepLKF class).
+      33             :    *
+      34             :    * \tparam Model                  the prediction and correction model (eg. a Kalman Filter).
+      35             :    * \tparam disable_reprediction   if true, reprediction is disabled and the class will act like a dumb LKF (for evaluation purposes).
+      36             :    *
+      37             :    */
+      38             :   template <class Model, bool disable_reprediction=false>
+      39             :   class Repredictor
+      40             :   {
+      41             :   public:
+      42             :     /* states, inputs etc. definitions (typedefs, constants etc) //{ */
+      43             : 
+      44             :     using x_t = typename Model::x_t;                  /*!< \brief State vector type \f$n \times 1\f$ */
+      45             :     using u_t = typename Model::u_t;                  /*!< \brief Input vector type \f$m \times 1\f$ */
+      46             :     using z_t = typename Model::z_t;                  /*!< \brief Measurement vector type \f$p \times 1\f$ */
+      47             :     using P_t = typename Model::P_t;                  /*!< \brief State uncertainty covariance matrix type \f$n \times n\f$ */
+      48             :     using R_t = typename Model::R_t;                  /*!< \brief Measurement noise covariance matrix type \f$p \times p\f$ */
+      49             :     using Q_t = typename Model::Q_t;                  /*!< \brief Process noise covariance matrix type \f$n \times n\f$ */
+      50             :     using statecov_t = typename Model::statecov_t;    /*!< \brief Helper struct for passing around the state and its covariance in one variable */
+      51             :     using ModelPtr = typename std::shared_ptr<Model>; /*!< \brief Shorthand type for a shared pointer-to-Model */
+      52             : 
+      53             :     //}
+      54             : 
+      55             :     /* predictTo() method //{ */
+      56             :     /*!
+      57             :      * \brief Estimates the system state and covariance matrix at the specified time.
+      58             :      *
+      59             :      * The measurement and system input histories are used to estimate the state vector and
+      60             :      * covariance matrix values at the specified time, which are returned.
+      61             :      *
+      62             :      * \param to_stamp   The desired time at which the state vector and covariance matrix should be estimated.
+      63             :      * \return           Returns the estimated state vector and covariance matrix in a single struct.
+      64             :      *
+      65             :      */
+      66             :     template<bool check=disable_reprediction>
+      67         102 :     std::enable_if_t<!check, statecov_t> predictTo(const ros::Time& to_stamp)
+      68             :     {
+      69         102 :       assert(!m_history.empty());
+      70         102 :       auto hist_it = std::begin(m_history);
+      71         102 :       if (hist_it->is_measurement)
+      72             :       {
+      73             :         // if the first history point is measurement, don't use it for correction (to prevent it from being used twice)
+      74           0 :         hist_it->is_measurement = false;
+      75             :       }
+      76             :       // cur_stamp corresponds to the time point of cur_sc estimation
+      77         102 :       auto cur_stamp = hist_it->stamp;
+      78             :       // cur_sc is the current state and covariance estimate
+      79         102 :       auto cur_sc = m_sc;
+      80       16102 :       do
+      81             :       {
+      82       16204 :         cur_sc.stamp = hist_it->stamp;
+      83             :         // do the correction if current history point is a measurement
+      84       16204 :         if ((hist_it->is_measurement))
+      85        5150 :           cur_sc = correctFrom(cur_sc, *hist_it);
+      86             : 
+      87             :         // decide whether to predict to the next history point or straight to the desired stamp already
+      88             :         // (whichever comes sooner or directly to the desired stamp if no further history point is available)
+      89       16204 :         ros::Time next_stamp = to_stamp;
+      90       16204 :         if ((hist_it + 1) != std::end(m_history) && (hist_it + 1)->stamp <= to_stamp)
+      91       16102 :           next_stamp = (hist_it + 1)->stamp;
+      92             : 
+      93             :         // do the prediction
+      94       16204 :         cur_sc = predictFrom(cur_sc, *hist_it, cur_stamp, next_stamp);
+      95       16204 :         cur_stamp = next_stamp;
+      96             : 
+      97             :         // increment the history pointer
+      98       16204 :         hist_it++;
+      99       16204 :       } while (hist_it != std::end(m_history) && hist_it->stamp <= to_stamp);
+     100         102 :       cur_sc.stamp = to_stamp;
+     101         204 :       return cur_sc;
+     102             :     }
+     103             : 
+     104             :     /*!
+     105             :      * \brief Estimates the system state and covariance matrix at the specified time.
+     106             :      *
+     107             :      * The measurement and system input histories are used to estimate the state vector and
+     108             :      * covariance matrix values at the specified time, which are returned.
+     109             :      *
+     110             :      * \param to_stamp   The desired time at which the state vector and covariance matrix should be estimated.
+     111             :      * \return           Returns the estimated state vector and covariance matrix in a single struct.
+     112             :      *
+     113             :      * \note This is the variant of the method when reprediction is disabled and will function like a dumb LKF.
+     114             :      *
+     115             :      */
+     116             :     template<bool check=disable_reprediction>
+     117         614 :     std::enable_if_t<check, statecov_t> predictTo(const ros::Time& to_stamp)
+     118             :     {
+     119         614 :       assert(!m_history.empty());
+     120         614 :       const auto& info = m_history.front();
+     121         614 :       auto sc = predictFrom(m_sc, info, info.stamp, to_stamp);
+     122         614 :       sc.stamp = to_stamp;
+     123         614 :       return sc;
+     124             :     }
+     125             :     //}
+     126             : 
+     127             :     /* addInputChangeWithNoise() method //{ */
+     128             :     /*!
+     129             :      * \brief Adds one system input to the history buffer, removing the oldest element in the buffer if it is full.
+     130             :      *
+     131             :      * \param u      The system input vector to be added.
+     132             :      * \param Q      The process noise covariance matrix.
+     133             :      * \param stamp  Time stamp of the input vector and covariance matrix.
+     134             :      * \param model  Optional pointer to a specific Model to be used with this input (eg. mapping it to different states). If it equals to nullptr, the default
+     135             :      * model specified in the constructor will be used.
+     136             :      *
+     137             :      * \note The system input vector will not be added if it is older than the oldest element in the history buffer.
+     138             :      *
+     139             :      */
+     140             :     template<bool check=disable_reprediction>
+     141         200 :     std::enable_if_t<!check> addInputChangeWithNoise(const u_t& u, const Q_t& Q, const ros::Time& stamp, const ModelPtr& model = nullptr)
+     142             :     {
+     143         400 :       const info_t info(stamp, u, Q, model);
+     144             :       // find the next point in the history buffer
+     145         200 :       const auto next_it = std::lower_bound(std::begin(m_history), std::end(m_history), info, &Repredictor<Model>::earlier);
+     146             :       // add the point to the history buffer
+     147         200 :       const auto added = addInfo(info, next_it);
+     148             :       // update all measurements following the newly added system input up to the next system input
+     149         200 :       if (added != std::end(m_history))
+     150        7007 :         for (auto it = added + 1; it != std::end(m_history) && it->is_measurement; it++)
+     151        6807 :           it->updateUsing(info);
+     152         200 :     }
+     153             : 
+     154             :     /*!
+     155             :      * \brief Adds one system input to the history buffer, removing the oldest element in the buffer if it is full.
+     156             :      *
+     157             :      * \param u      The system input vector to be added.
+     158             :      * \param Q      The process noise covariance matrix.
+     159             :      * \param stamp  Time stamp of the input vector and covariance matrix.
+     160             :      * \param model  Optional pointer to a specific Model to be used with this input (eg. mapping it to different states). If it equals to nullptr, the default
+     161             :      * model specified in the constructor will be used.
+     162             :      *
+     163             :      * \note This is the variant of the method when reprediction is disabled and will function like a dumb LKF.
+     164             :      *
+     165             :      */
+     166             :     template<bool check=disable_reprediction>
+     167         183 :     std::enable_if_t<check> addInputChangeWithNoise(const u_t& u, const Q_t& Q, [[maybe_unused]] const ros::Time& stamp, const ModelPtr& model = nullptr)
+     168             :     {
+     169         183 :       if (m_history.empty())
+     170           2 :         m_history.push_back({stamp});
+     171         183 :       m_history.front().u = u;
+     172         183 :       m_history.front().Q = Q;
+     173         183 :       m_history.front().stamp = stamp;
+     174         183 :       m_history.front().predict_model = model;
+     175         183 :     }
+     176             :     //}
+     177             : 
+     178             :     /* addInputChange() method //{ */
+     179             :     /*!
+     180             :      * \brief Adds one system input to the history buffer, removing the oldest element in the buffer if it is full.
+     181             :      *
+     182             :      * \param u      The system input vector to be added.
+     183             :      * \param stamp  Time stamp of the input vector and covariance matrix.
+     184             :      * \param model  Optional pointer to a specific Model to be used with this input (eg. mapping it to different states). If it equals to nullptr, the default
+     185             :      * model specified in the constructor will be used.
+     186             :      *
+     187             :      * \note The system input vector will not be added if it is older than the oldest element in the history buffer.
+     188             :      *
+     189             :      */
+     190             :     template<bool check=disable_reprediction>
+     191             :     std::enable_if_t<!check> addInputChange(const u_t& u, const ros::Time& stamp, const ModelPtr& model = nullptr)
+     192             :     {
+     193             :       assert(!m_history.empty());
+     194             :       // find the next point in the history buffer
+     195             :       const auto next_it = std::lower_bound(std::begin(m_history), std::end(m_history), stamp, &Repredictor<Model>::earlier);
+     196             :       // get the previous history point (or the first one to avoid out of bounds)
+     197             :       const auto prev_it = next_it == std::begin(m_history) ? next_it : next_it - 1;
+     198             :       // initialize a new history info point
+     199             :       const info_t info(stamp, u, prev_it->Q, model);
+     200             :       // add the point to the history buffer
+     201             :       const auto added = addInfo(info, next_it);
+     202             :       // update all measurements following the newly added system input up to the next system input
+     203             :       if (added != std::end(m_history))
+     204             :         for (auto it = added + 1; it != std::end(m_history) && it->is_measurement; it++)
+     205             :           it->updateUsing(info);
+     206             :     }
+     207             : 
+     208             :     /*!
+     209             :      * \brief Adds one system input to the history buffer, removing the oldest element in the buffer if it is full.
+     210             :      *
+     211             :      * \param u      The system input vector to be added.
+     212             :      * \param stamp  Time stamp of the input vector and covariance matrix.
+     213             :      * \param model  Optional pointer to a specific Model to be used with this input (eg. mapping it to different states). If it equals to nullptr, the default
+     214             :      * model specified in the constructor will be used.
+     215             :      *
+     216             :      * \note This is the variant of the method when reprediction is disabled and will function like a dumb LKF.
+     217             :      *
+     218             :      */
+     219             :     template<bool check=disable_reprediction>
+     220         109 :     std::enable_if_t<check> addInputChange(const u_t& u, [[maybe_unused]] const ros::Time& stamp, const ModelPtr& model = nullptr)
+     221             :     {
+     222         109 :       if (m_history.empty())
+     223           0 :         m_history.push_back({stamp});
+     224         109 :       m_history.front().u = u;
+     225         109 :       m_history.front().stamp = stamp;
+     226         109 :       m_history.front().predict_model = model;
+     227         109 :     }
+     228             :     //}
+     229             : 
+     230             :     /* addProcessNoiseChange() method //{ */
+     231             :     /*!
+     232             :      * \brief Adds one system input to the history buffer, removing the oldest element in the buffer if it is full.
+     233             :      *
+     234             :      * \param Q      The process noise covariance matrix.
+     235             :      * \param stamp  Time stamp of the input vector and covariance matrix.
+     236             :      * \param model  Optional pointer to a specific Model to be used with this covariance matrix (eg. mapping it to different states). If it equals to nullptr,
+     237             :      * the default model specified in the constructor will be used.
+     238             :      *
+     239             :      * \note The new element will not be added if it is older than the oldest element in the history buffer.
+     240             :      *
+     241             :      */
+     242             :     template<bool check=disable_reprediction>
+     243             :     std::enable_if_t<!check> addProcessNoiseChange(const Q_t& Q, const ros::Time& stamp, const ModelPtr& model = nullptr)
+     244             :     {
+     245             :       assert(!m_history.empty());
+     246             :       // find the next point in the history buffer
+     247             :       const auto next_it = std::lower_bound(std::begin(m_history), std::end(m_history), stamp, &Repredictor<Model>::earlier);
+     248             :       // get the previous history point (or the first one to avoid out of bounds)
+     249             :       const auto prev_it = next_it == std::begin(m_history) ? next_it : next_it - 1;
+     250             :       // initialize a new history info point
+     251             :       const info_t info(stamp, prev_it->u, Q, model);
+     252             :       // add the point to the history buffer
+     253             :       const auto added = addInfo(info, next_it);
+     254             :       // update all measurements following the newly added system input up to the next system input
+     255             :       if (added != std::end(m_history))
+     256             :         for (auto it = added + 1; it != std::end(m_history) && it->is_measurement; it++)
+     257             :           it->updateUsing(info);
+     258             :     }
+     259             : 
+     260             :     /*!
+     261             :      * \brief Adds one system input to the history buffer, removing the oldest element in the buffer if it is full.
+     262             :      *
+     263             :      * \param Q      The process noise covariance matrix.
+     264             :      * \param stamp  Time stamp of the input vector and covariance matrix.
+     265             :      * \param model  Optional pointer to a specific Model to be used with this covariance matrix (eg. mapping it to different states). If it equals to nullptr,
+     266             :      * the default model specified in the constructor will be used.
+     267             :      *
+     268             :      * \note This is the variant of the method when reprediction is disabled and will function like a dumb LKF.
+     269             :      *
+     270             :      */
+     271             :     template<bool check=disable_reprediction>
+     272             :     std::enable_if_t<check> addProcessNoiseChange(const Q_t& Q, [[maybe_unused]] const ros::Time& stamp, const ModelPtr& model = nullptr)
+     273             :     {
+     274             :       if (m_history.empty())
+     275             :         m_history.push_back({stamp});
+     276             :       m_history.front().Q = Q;
+     277             :       m_history.front().stamp = stamp;
+     278             :       m_history.front().predict_model = model;
+     279             :     }
+     280             :     //}
+     281             : 
+     282             :     /* addMeasurement() method //{ */
+     283             :     /*!
+     284             :      * \brief Adds one measurement to the history buffer, removing the oldest element in the buffer if it is full.
+     285             :      *
+     286             :      * \param z      The measurement vector to be added.
+     287             :      * \param R      The measurement noise covariance matrix, corresponding to the measurement vector.
+     288             :      * \param stamp  Time stamp of the measurement vector and covariance matrix.
+     289             :      * \param model  Optional pointer to a specific Model to be used with this measurement (eg. mapping it from different states). If it equals to nullptr, the
+     290             :      * default model specified in the constructor will be used.
+     291             :      *
+     292             :      * \note The measurement vector will not be added if it is older than the oldest element in the history buffer.
+     293             :      *
+     294             :      */
+     295             :     template<bool check=disable_reprediction>
+     296         100 :     std::enable_if_t<!check> addMeasurement(const z_t& z, const R_t& R, const ros::Time& stamp, const ModelPtr& model = nullptr, const double& meas_id = -1)
+     297             :     {
+     298         100 :       assert(!m_history.empty());
+     299             :       // helper variable for searching of the next point in the history buffer
+     300         100 :       const auto next_it = std::lower_bound(std::begin(m_history), std::end(m_history), stamp, &Repredictor<Model>::earlier);
+     301             :       // get the previous history point (or the first one to avoid out of bounds)
+     302         100 :       const auto prev_it = next_it == std::begin(m_history) ? next_it : next_it - 1;
+     303             :       // initialize a new history info point
+     304         100 :       const info_t info(stamp, z, R, model, *prev_it, meas_id);
+     305             :       // add the point to the history buffer
+     306         100 :       addInfo(info, next_it);
+     307         100 :     }
+     308             : 
+     309             :     /*!
+     310             :      * \brief Adds one measurement to the history buffer, removing the oldest element in the buffer if it is full.
+     311             :      *
+     312             :      * \param z      The measurement vector to be added.
+     313             :      * \param R      The measurement noise covariance matrix, corresponding to the measurement vector.
+     314             :      * \param stamp  Time stamp of the measurement vector and covariance matrix.
+     315             :      * \param model  Optional pointer to a specific Model to be used with this measurement (eg. mapping it from different states). If it equals to nullptr, the
+     316             :      * default model specified in the constructor will be used.
+     317             :      *
+     318             :      * \note This is the variant of the method when reprediction is disabled and will function like a dumb LKF.
+     319             :      *
+     320             :      */
+     321             :     template<bool check=disable_reprediction>
+     322         307 :     std::enable_if_t<check> addMeasurement(const z_t& z, const R_t& R, const ros::Time& stamp, const ModelPtr& model = nullptr, const double& meas_id = -1)
+     323             :     {
+     324         307 :       if (m_history.empty())
+     325           0 :         m_history.push_back({stamp});
+     326         307 :       auto& info = m_history.front();
+     327         307 :       const ros::Time to_stamp = stamp > info.stamp ? stamp : info.stamp;
+     328         307 :       const auto sc = predictTo(to_stamp);
+     329         307 :       info.z = z;
+     330         307 :       info.R = R;
+     331         307 :       info.stamp = to_stamp;
+     332         307 :       info.is_measurement = true;
+     333         307 :       info.meas_id = meas_id;
+     334         307 :       info.correct_model = model;
+     335         307 :       m_sc = correctFrom(sc, info);
+     336         307 :     }
+     337             :     //}
+     338             : 
+     339             :   public:
+     340             :     /* constructor //{ */
+     341             : 
+     342             :     /*!
+     343             :      * \brief The main constructor.
+     344             :      *
+     345             :      * Initializes the Repredictor with the necessary initial and default values.
+     346             :      *
+     347             :      * \param x0             Initial state.
+     348             :      * \param P0             Covariance matrix of the initial state uncertainty.
+     349             :      * \param u0             Initial system input.
+     350             :      * \param Q0             Default covariance matrix of the process noise.
+     351             :      * \param t0             Time stamp of the initial state.
+     352             :      * \param model          Default prediction and correction model.
+     353             :      * \param hist_len       Length of the history buffer for system inputs and measurements.
+     354             :      */
+     355           3 :     Repredictor(const x_t& x0, const P_t& P0, const u_t& u0, const Q_t& Q0, const ros::Time& t0, const ModelPtr& model, const unsigned hist_len)
+     356           3 :         : m_sc{x0, P0}, m_default_model(model), m_history(history_t(hist_len))
+     357             :     {
+     358           3 :       assert(hist_len > 0);
+     359           3 :       addInputChangeWithNoise(u0, Q0, t0, model);
+     360           3 :     };
+     361             : 
+     362             :     /*!
+     363             :      * \brief Empty constructor.
+     364             :      *
+     365             :      */
+     366             :     Repredictor(){};
+     367             : 
+     368             :     /*!
+     369             :      * \brief Variation of the constructor for cases without a system input.
+     370             :      *
+     371             :      * Initializes the Repredictor with the necessary initial and default values.
+     372             :      * Assumes the system input is zero at t0.
+     373             :      *
+     374             :      * \param x0             Initial state.
+     375             :      * \param P0             Covariance matrix of the initial state uncertainty.
+     376             :      * \param Q0             Default covariance matrix of the process noise.
+     377             :      * \param t0             Time stamp of the initial state.
+     378             :      * \param model          Default prediction and correction model.
+     379             :      * \param hist_len       Length of the history buffer for system inputs and measurements.
+     380             :      */
+     381             :     Repredictor(const x_t& x0, const P_t& P0, const Q_t& Q0, const ros::Time& t0, const ModelPtr& model, const unsigned hist_len)
+     382             :         : m_sc{x0, P0}, m_default_model(model), m_history(history_t(hist_len))
+     383             :     {
+     384             :       assert(hist_len > 0);
+     385             :       const u_t u0{0};
+     386             :       addInputChangeWithNoise(u0, Q0, t0, model);
+     387             :     };
+     388             :     //}
+     389             : 
+     390             :   protected:
+     391             :     // state and covariance corresponding to the oldest element in the history buffer
+     392             :     statecov_t m_sc;
+     393             :     // default model to use for updates
+     394             :     ModelPtr m_default_model;
+     395             : 
+     396             :   private:
+     397             :     /* helper structs and usings //{ */
+     398             : 
+     399             :     struct info_t
+     400             :     {
+     401             :       ros::Time stamp;
+     402             : 
+     403             :       // system input-related information
+     404             :       u_t u;
+     405             :       Q_t Q;
+     406             :       ModelPtr predict_model;
+     407             : 
+     408             :       // measurement-related information (unused in case is_measurement=false)
+     409             :       z_t z;
+     410             :       R_t R;
+     411             :       ModelPtr correct_model;
+     412             :       bool is_measurement;
+     413             :       int meas_id;
+     414             : 
+     415             :       // constructor for a dummy info (for searching in the history)
+     416         622 :       info_t(const ros::Time& stamp) : stamp(stamp), is_measurement(false){};
+     417             : 
+     418             :       // constructor for a system input
+     419         200 :       info_t(const ros::Time& stamp, const u_t& u, const Q_t& Q, const ModelPtr& model)
+     420         200 :           : stamp(stamp), u(u), Q(Q), predict_model(model), is_measurement(false){};
+     421             : 
+     422             :       // constructor for a measurement
+     423         100 :       info_t(const ros::Time& stamp, const z_t& z, const R_t& R, const ModelPtr& model, const info_t& prev_info, const int& meas_id)
+     424         100 :           : stamp(stamp), z(z), R(R), correct_model(model), is_measurement(true), meas_id(meas_id)
+     425             :       {
+     426         100 :         updateUsing(prev_info);
+     427         100 :       };
+     428             : 
+     429             :       // copy system input-related information from a previous info
+     430        6907 :       void updateUsing(const info_t& info)
+     431             :       {
+     432        6907 :         u = info.u;
+     433        6907 :         Q = info.Q;
+     434        6907 :         predict_model = info.predict_model;
+     435        6907 :       };
+     436             :     };
+     437             : 
+     438             : 
+     439             :     //}
+     440             : 
+     441             :   protected:
+     442             :     using history_t = boost::circular_buffer<info_t>;
+     443             :     // the history buffer
+     444             :     history_t m_history;
+     445             : 
+     446             :     // | ---------------- helper debugging methods ---------------- |
+     447             :     /* checkMonotonicity() method //{ */
+     448             :     template <typename T>
+     449             :     bool checkMonotonicity(const T& buf)
+     450             :     {
+     451             :       if (buf.empty())
+     452             :         return true;
+     453             :       for (auto it = std::begin(buf) + 1; it != std::end(buf); it++)
+     454             :         if (earlier(*it, *(it - 1)))
+     455             :           return false;
+     456             :       return true;
+     457             :     }
+     458             :     //}
+     459             : 
+     460             :     /* printBuffer() method //{ */
+     461             :     template <typename T>
+     462             :     void printBuffer(const T& buf)
+     463             :     {
+     464             :       if (buf.empty())
+     465             :         return;
+     466             :       const auto first_stamp = buf.front().stamp;
+     467             :       std::cerr << "first stamp: " << first_stamp << std::endl;
+     468             :       for (size_t it = 0; it < buf.size(); it++)
+     469             :       {
+     470             :         std::cerr << it << ":\t" << buf.at(it).stamp - first_stamp << std::endl;
+     471             :       }
+     472             :     }
+     473             :     //}
+     474             : 
+     475             :   private:
+     476             :     // | -------------- helper implementation methods ------------- |
+     477             : 
+     478             :     /* addInfo() method //{ */
+     479         300 :     typename history_t::iterator addInfo(const info_t& info, const typename history_t::iterator& next_it)
+     480             :     {
+     481             :       // check if the new element would be added before the first element of the history buffer and ignore it if so
+     482         300 :       if (next_it == std::begin(m_history) && !m_history.empty())
+     483             :       {
+     484           0 :         ROS_WARN_STREAM_THROTTLE(1.0, "[Repredictor]: Added history point is older than the oldest by "
+     485             :                                           << (next_it->stamp - info.stamp).toSec()
+     486             :                                           << "s. Ignoring it! Consider increasing the history buffer size (currently: " << m_history.size() << ")");
+     487           0 :         return std::end(m_history);
+     488             :       }
+     489             : 
+     490             :       // check if adding a new element would throw out the oldest one
+     491         300 :       if (m_history.size() == m_history.capacity())
+     492             :       {  // if so, first update m_sc
+     493             :         // figure out, what will be the oldest element in the buffer after inserting the newly received one
+     494           0 :         auto new_oldest = m_history.front();
+     495           0 :         if (m_history.size() == 1 || (m_history.size() > 1 && info.stamp > m_history.at(0).stamp && info.stamp < m_history.at(1).stamp))
+     496             :         {
+     497           0 :           new_oldest = info;
+     498           0 :         } else if (m_history.size() > 1)
+     499             :         {
+     500           0 :           new_oldest = m_history.at(1);
+     501             :         }
+     502             :         // update m_sc to the time of the new oldest element (after inserting the new element)
+     503           0 :         m_sc = predictTo(new_oldest.stamp);
+     504             :         // insert the new element into the history buffer, causing the original oldest element to be removed
+     505             :       }
+     506             : 
+     507             :       // add the new point finally
+     508         300 :       const auto ret = m_history.insert(next_it, info);
+     509             :       /* debug check //{ */
+     510             : 
+     511             : #ifdef REPREDICTOR_DEBUG
+     512             :       if (!checkMonotonicity(m_history))
+     513             :       {
+     514             :         std::cerr << "History buffer is not monotonous after modification!" << std::endl;
+     515             :       }
+     516             :       std::cerr << "Added info (" << m_history.size() << " total)" << std::endl;
+     517             : #endif
+     518             : 
+     519             :       //}
+     520         300 :       return ret;
+     521             :     }
+     522             :     //}
+     523             : 
+     524             :     /* earlier() method //{ */
+     525        2053 :     static bool earlier(const info_t& ob1, const info_t& ob2)
+     526             :     {
+     527        2053 :       return ob1.stamp < ob2.stamp;
+     528             :     }
+     529             :     //}
+     530             : 
+     531             :     /* predictFrom() method //{ */
+     532       16818 :     statecov_t predictFrom(const statecov_t& sc, const info_t& inpt, const ros::Time& from_stamp, const ros::Time& to_stamp)
+     533             :     {
+     534       33636 :       const auto model = inpt.predict_model == nullptr ? m_default_model : inpt.predict_model;
+     535       16818 :       const auto dt = (to_stamp - from_stamp).toSec();
+     536       33636 :       return model->predict(sc, inpt.u, inpt.Q, dt);
+     537             :     }
+     538             :     //}
+     539             : 
+     540             :     /* correctFrom() method //{ */
+     541        5457 :     statecov_t correctFrom(const statecov_t& sc, const info_t& meas)
+     542             :     {
+     543        5457 :       assert(meas.is_measurement);
+     544       10914 :       const auto model = meas.correct_model == nullptr ? m_default_model : meas.correct_model;
+     545        5457 :       auto sc_tmp = sc;
+     546       10914 :       return model->correct(sc_tmp, meas.z, meas.R);
+     547             :     }
+     548             :     //}
+     549             :   };
+     550             : }  // namespace mrs_lib
+     551             : 
+     552             : 
+     553             : #endif  // REPREDICTOR_H
+
+
+
+ + + + +
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mrs_lib::Polygon::ExtraVertices::what() const0
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mrs_lib::Polygon::WrongNumberOfVertices::what() const0
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mrs_lib::Polygon::ExtraVertices::what() const0
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Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : // clang: TomasFormat
+       2             : #ifndef MRS_LIB_POLYGON_H
+       3             : #define MRS_LIB_POLYGON_H
+       4             : 
+       5             : #include <ros/ros.h>
+       6             : #include <eigen3/Eigen/Eigen>
+       7             : #include <vector>
+       8             : #include <geometry_msgs/Point.h>
+       9             : #include <mrs_lib/safety_zone/line_operations.h>
+      10             : 
+      11             : namespace mrs_lib
+      12             : {
+      13             : class Polygon {
+      14             : public:
+      15             :   Polygon(const Eigen::MatrixXd vertices);
+      16             : 
+      17             :   bool isPointInside(const double px, const double py);
+      18             :   bool doesSectionIntersect(const double startX, const double startY, const double endX, const double endY);
+      19             :   bool isClockwise();
+      20             :   void inflateSelf(double amount);
+      21             : 
+      22             :   std::vector<geometry_msgs::Point> getPointMessageVector(const double z);
+      23             : 
+      24             : private:
+      25             :   Eigen::MatrixXd vertices;
+      26             : 
+      27             : public:
+      28             :   // exceptions
+      29             :   struct WrongNumberOfVertices : public std::exception
+      30             :   {
+      31           0 :     const char* what() const throw() {
+      32           0 :       return "Polygon: wrong number of vertices was supplied!";
+      33             :     }
+      34             :   };
+      35             : 
+      36             :   struct WrongNumberOfColumns : public std::exception
+      37             :   {
+      38           0 :     const char* what() const throw() {
+      39           0 :       return "Polygon: wrong number of colums, it should be =2!";
+      40             :     }
+      41             :   };
+      42             : 
+      43             :   struct ExtraVertices : public std::exception
+      44             :   {
+      45           0 :     const char* what() const throw() {
+      46           0 :       return "Polygon: useless vertices detected, polygon methods may break!";
+      47             :     }
+      48             :   };
+      49             : };
+      50             : }  // namespace mrs_lib
+      51             : 
+      52             : #endif  // MRS_LIB_POLYGON_H
+
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mrs_lib::SafetyZone::BorderError::what() const0
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mrs_lib::SafetyZone::BorderError::what() const0
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          Line data    Source code
+
+       1             : // clang: TomasFormat
+       2             : #ifndef MRS_LIB_SAFETYZONE_H
+       3             : #define MRS_LIB_SAFETYZONE_H
+       4             : 
+       5             : #include <mrs_lib/safety_zone/polygon.h>
+       6             : #include <visualization_msgs/Marker.h>
+       7             : #include <eigen3/Eigen/Eigen>
+       8             : #include <vector>
+       9             : 
+      10             : namespace mrs_lib
+      11             : {
+      12             : class SafetyZone {
+      13             : public:
+      14             :   SafetyZone(Polygon outerBorder);
+      15             :   ~SafetyZone();
+      16             : 
+      17             :   SafetyZone(const Eigen::MatrixXd& outerBorderMatrix);
+      18             : 
+      19             :   bool isPointValid(const double px, const double py);
+      20             :   bool isPathValid(const double p1x, const double p1y, const double p2x, const double p2y);
+      21             : 
+      22             :   Polygon getBorder();
+      23             : 
+      24             : private:
+      25             :   Polygon* outerBorder;
+      26             : 
+      27             : public:
+      28             :   struct BorderError : public std::exception
+      29             :   {
+      30           0 :     const char* what() const throw() {
+      31           0 :       return "SafeZone: Wrong configuration for the border";
+      32             :     }
+      33             :   };
+      34             : };
+      35             : }  // namespace mrs_lib
+      36             : 
+      37             : #endif  // MRS_LIB_SAFETYZONE_H
+
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Test:MRS UAV System - Test coverage reportLines:2633.3 %
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mrs_lib::ScopeTimerLogger::loggingEnabled()0
mrs_lib::ScopeTimerLogger::shouldLog()0
mrs_lib::ScopeTimer::time_point::time_point(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)5156205
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/scope_timer.h.func.html b/mrs_lib/include/mrs_lib/scope_timer.h.func.html new file mode 100644 index 0000000000..ccda8485ce --- /dev/null +++ b/mrs_lib/include/mrs_lib/scope_timer.h.func.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/scope_timer.h - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/include/mrs_lib - scope_timer.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:2633.3 %
Date:2024-04-17 23:52:03Functions:1333.3 %
Legend: Lines: + hit + not hit +
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mrs_lib::ScopeTimer::time_point::time_point(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)5156205
mrs_lib::ScopeTimerLogger::loggingEnabled()0
mrs_lib::ScopeTimerLogger::shouldLog()0
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Test:MRS UAV System - Test coverage reportLines:2633.3 %
Date:2024-04-17 23:52:03Functions:1333.3 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : /**  \file
+       2             :  *   \brief Simple timer which times a duration of its scope, with additional optional checkpoints.
+       3             :  *   \author Daniel Hert - hertdani@fel.cvut.cz
+       4             :  */
+       5             : #ifndef SCOPE_TIMER_H
+       6             : #define SCOPE_TIMER_H
+       7             : 
+       8             : #include <ros/ros.h>
+       9             : #include <chrono>
+      10             : #include <iostream>
+      11             : #include <fstream>
+      12             : #include <iomanip>
+      13             : #include <mutex>
+      14             : /* #include <ctime> */
+      15             : 
+      16             : namespace mrs_lib
+      17             : {
+      18             : 
+      19             : /*//{ ScopeTimerLogger class */
+      20             : 
+      21             : /**
+      22             :  * @brief Simple file logger of scope timer and its checkpoints
+      23             :  */
+      24             : class ScopeTimerLogger {
+      25             : 
+      26             : public:
+      27             :   /**
+      28             :    * @brief The basic constructor with a user-defined path to the logger file, enable flag and float-logging precision
+      29             :    */
+      30             :   ScopeTimerLogger(const std::string& logfile, const bool enable_logging = true, const int log_precision = 10);
+      31             : 
+      32             :   /**
+      33             :    * @brief The basic destructor which closes the logging file
+      34             :    */
+      35             :   ~ScopeTimerLogger();
+      36             : 
+      37             :   /**
+      38             :    * @brief Returns true if a non-empty path to a logger file was given by the user
+      39             :    */
+      40           0 :   bool shouldLog() {
+      41           0 :     return _should_log_;
+      42             :   }
+      43             : 
+      44             :   /**
+      45             :    * @brief Returns true if the enable flag was set to true, a non-empty path to a logger file was given by the user and the logger file stream was successfully
+      46             :    * opened.
+      47             :    */
+      48           0 :   bool loggingEnabled() {
+      49           0 :     return _logging_enabled_;
+      50             :   }
+      51             : 
+      52             :   /**
+      53             :    * @brief Returns the path to the log.
+      54             :    */
+      55             :   std::string getLogFilepath() {
+      56             :     return _log_filepath_;
+      57             :   }
+      58             : 
+      59             :   using chrono_tp = std::chrono::time_point<std::chrono::steady_clock>;
+      60             : 
+      61             :   /**
+      62             :    * @brief Writes the time data of the given scope and empty checkpoints into the logger stream.
+      63             :    */
+      64             :   void log(const std::string& scope, const chrono_tp& time_start, const chrono_tp& time_end);
+      65             : 
+      66             :   /**
+      67             :    * @brief Writes the time data of the given scope and checkpoint labels into the logger stream.
+      68             :    */
+      69             :   void log(const std::string& scope, const std::string& label_from, const std::string& label_to, const chrono_tp& time_start, const chrono_tp& time_end);
+      70             : 
+      71             : private:
+      72             :   bool          _logging_enabled_ = false;
+      73             :   bool          _should_log_      = false;
+      74             :   std::string   _log_filepath_;
+      75             :   std::ofstream _logstream_;
+      76             :   std::mutex    _mutex_logstream_;
+      77             : };
+      78             : 
+      79             : /*//}*/
+      80             : 
+      81             : /**
+      82             :  * @brief Simple timer which will time a duration of a scope and checkpoints inside the scope in ros time and std::chrono time.
+      83             :  */
+      84             : class ScopeTimer {
+      85             : public:
+      86             :   /* time_point() helper struct //{ */
+      87             :   struct time_point
+      88             :   {
+      89             :     using chrono_tp = std::chrono::time_point<std::chrono::steady_clock>;
+      90             : 
+      91             :   public:
+      92     5156205 :     time_point(const std::string& label) : ros_time(ros::Time::now()), chrono_time(std::chrono::steady_clock::now()), label(label) {
+      93     5156211 :     }
+      94             : 
+      95             :     time_point(const std::string& label, const ros::Time& ros_time) : ros_time(ros_time), label(label) {
+      96             :       // helper types to make the code slightly more readable
+      97             :       using float_seconds   = std::chrono::duration<float>;
+      98             :       using chrono_duration = std::chrono::steady_clock::duration;
+      99             :       // prepare ros and chrono current times to minimize their difference
+     100             :       const auto ros_now    = ros::Time::now();
+     101             :       const auto chrono_now = std::chrono::steady_clock::now();
+     102             :       // calculate how old is ros_time
+     103             :       const auto ros_dt = ros_now - ros_time;
+     104             :       // cast ros_dt to chrono type
+     105             :       const auto chrono_dt = std::chrono::duration_cast<chrono_duration>(float_seconds(ros_dt.toSec()));
+     106             :       // calculate ros_time in chrono time and set it to chrono_time
+     107             :       chrono_time = chrono_now - chrono_dt;
+     108             :     }
+     109             : 
+     110             :     ros::Time   ros_time;
+     111             :     chrono_tp   chrono_time;
+     112             :     std::string label;
+     113             :   };
+     114             :   //}
+     115             : 
+     116             : public:
+     117             :   /**
+     118             :    * @brief The basic constructor with a user-defined label of the timer, throttled period and file logger.
+     119             :    */
+     120             :   ScopeTimer(const std::string& label, const ros::Duration& throttle_period = ros::Duration(0), const bool enable = true,
+     121             :              const std::shared_ptr<ScopeTimerLogger> scope_timer_logger = nullptr);
+     122             : 
+     123             :   /**
+     124             :    * @brief The basic constructor with a user-defined label of the timer and a pre-start time, which will also be measured.
+     125             :    */
+     126             :   ScopeTimer(const std::string& label, const time_point& tp0, const ros::Duration& throttle_period = ros::Duration(0), const bool enable = true,
+     127             :              const std::shared_ptr<ScopeTimerLogger> scope_timer_logger = nullptr);
+     128             : 
+     129             :   /**
+     130             :    * @brief The basic constructor with a user-defined label of the timer and file logger.
+     131             :    */
+     132             :   ScopeTimer(const std::string& label, const std::shared_ptr<ScopeTimerLogger> scope_timer_logger, const bool enable = true);
+     133             : 
+     134             :   /**
+     135             :    * @brief Checkpoint, prints the time passed until the point this function is called.
+     136             :    */
+     137             :   void checkpoint(const std::string& label);
+     138             : 
+     139             :   /**
+     140             :    * @brief Getter for scope timer lifetime
+     141             :    *
+     142             :    * @return lifetime as floating point milliseconds
+     143             :    */
+     144             :   float getLifetime();
+     145             : 
+     146             :   /**
+     147             :    * @brief The basic destructor which prints out or logs the scope times, if enabled.
+     148             :    */
+     149             :   ~ScopeTimer();
+     150             : 
+     151             : private:
+     152             :   std::string             _timer_label_;
+     153             :   bool                    _enable_print_or_log;
+     154             :   ros::Duration           _throttle_period_;
+     155             :   std::vector<time_point> checkpoints;
+     156             : 
+     157             :   std::shared_ptr<ScopeTimerLogger> _logger_ = nullptr;
+     158             : 
+     159             :   static std::unordered_map<std::string, ros::Time> last_print_times;
+     160             : };
+     161             : 
+     162             : }  // namespace mrs_lib
+     163             : 
+     164             : #endif
+
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Current view:top level - mrs_lib/include/mrs_lib - service_client_handler.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:33100.0 %
Date:2024-04-17 23:52:03Functions:2424100.0 %
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mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride>::ServiceClientHandler()1
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ConstraintsOverride>::~ServiceClientHandler_impl()1
mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv>::ServiceClientHandler()2
mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride>::~ServiceClientHandler()2
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Float64Srv>::~ServiceClientHandler_impl()2
mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv>::~ServiceClientHandler()4
mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv>::ServiceClientHandler()91
mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>::ServiceClientHandler()91
mrs_lib::ServiceClientHandler_impl<mrs_msgs::DynamicsConstraintsSrv>::~ServiceClientHandler_impl()91
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Vec1>::~ServiceClientHandler_impl()91
mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv>::ServiceClientHandler()92
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ReferenceStampedSrv>::~ServiceClientHandler_impl()92
mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv>::~ServiceClientHandler()182
mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>::~ServiceClientHandler()182
mrs_lib::ServiceClientHandler<mrs_msgs::String>::ServiceClientHandler()182
mrs_lib::ServiceClientHandler_impl<mrs_msgs::String>::~ServiceClientHandler_impl()182
mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv>::~ServiceClientHandler()184
mrs_lib::ServiceClientHandler<mrs_msgs::String>::~ServiceClientHandler()364
mrs_lib::ServiceClientHandler<std_srvs::SetBool>::ServiceClientHandler()548
mrs_lib::ServiceClientHandler_impl<std_srvs::SetBool>::~ServiceClientHandler_impl()548
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::ServiceClientHandler()1002
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::~ServiceClientHandler_impl()1002
mrs_lib::ServiceClientHandler<std_srvs::SetBool>::~ServiceClientHandler()1096
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::~ServiceClientHandler()1913
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+ + + diff --git a/mrs_lib/include/mrs_lib/service_client_handler.h.func.html b/mrs_lib/include/mrs_lib/service_client_handler.h.func.html new file mode 100644 index 0000000000..ee5590abbe --- /dev/null +++ b/mrs_lib/include/mrs_lib/service_client_handler.h.func.html @@ -0,0 +1,176 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/service_client_handler.h - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/include/mrs_lib - service_client_handler.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:33100.0 %
Date:2024-04-17 23:52:03Functions:2424100.0 %
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv>::ServiceClientHandler()2
mrs_lib::ServiceClientHandler<mrs_msgs::Float64Srv>::~ServiceClientHandler()4
mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride>::ServiceClientHandler()1
mrs_lib::ServiceClientHandler<mrs_msgs::ConstraintsOverride>::~ServiceClientHandler()2
mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv>::ServiceClientHandler()92
mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv>::~ServiceClientHandler()184
mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv>::ServiceClientHandler()91
mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv>::~ServiceClientHandler()182
mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>::ServiceClientHandler()91
mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>::~ServiceClientHandler()182
mrs_lib::ServiceClientHandler<mrs_msgs::String>::ServiceClientHandler()182
mrs_lib::ServiceClientHandler<mrs_msgs::String>::~ServiceClientHandler()364
mrs_lib::ServiceClientHandler<std_srvs::SetBool>::ServiceClientHandler()548
mrs_lib::ServiceClientHandler<std_srvs::SetBool>::~ServiceClientHandler()1096
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::ServiceClientHandler()1002
mrs_lib::ServiceClientHandler<std_srvs::Trigger>::~ServiceClientHandler()1913
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Float64Srv>::~ServiceClientHandler_impl()2
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ConstraintsOverride>::~ServiceClientHandler_impl()1
mrs_lib::ServiceClientHandler_impl<mrs_msgs::ReferenceStampedSrv>::~ServiceClientHandler_impl()92
mrs_lib::ServiceClientHandler_impl<mrs_msgs::DynamicsConstraintsSrv>::~ServiceClientHandler_impl()91
mrs_lib::ServiceClientHandler_impl<mrs_msgs::Vec1>::~ServiceClientHandler_impl()91
mrs_lib::ServiceClientHandler_impl<mrs_msgs::String>::~ServiceClientHandler_impl()182
mrs_lib::ServiceClientHandler_impl<std_srvs::SetBool>::~ServiceClientHandler_impl()548
mrs_lib::ServiceClientHandler_impl<std_srvs::Trigger>::~ServiceClientHandler_impl()1002
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Current view:top level - mrs_lib/include/mrs_lib - service_client_handler.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:33100.0 %
Date:2024-04-17 23:52:03Functions:2424100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /**  \file
+       2             :      \brief Defines ServiceClientHandler and related convenience classes for upgrading the ROS service client
+       3             :      \author Tomas Baca - tomas.baca@fel.cvut.cz
+       4             :  */
+       5             : #ifndef SERVICE_CLIENT_HANDLER_H
+       6             : #define SERVICE_CLIENT_HANDLER_H
+       7             : 
+       8             : #include <ros/ros.h>
+       9             : #include <ros/package.h>
+      10             : 
+      11             : #include <string>
+      12             : #include <future>
+      13             : #include <mutex>
+      14             : 
+      15             : namespace mrs_lib
+      16             : {
+      17             : 
+      18             : /* class ServiceClientHandler_impl //{ */
+      19             : 
+      20             : /**
+      21             :  * @brief implementation of the service client handler
+      22             :  */
+      23             : template <class ServiceType>
+      24             : class ServiceClientHandler_impl {
+      25             : 
+      26             : public:
+      27             :   /**
+      28             :    * @brief default constructor
+      29             :    */
+      30             :   ServiceClientHandler_impl(void);
+      31             : 
+      32             :   /**
+      33             :    * @brief default destructor
+      34             :    */
+      35        2009 :   ~ServiceClientHandler_impl(void){};
+      36             : 
+      37             :   /**
+      38             :    * @brief constructor
+      39             :    *
+      40             :    * @param nh ROS node handler
+      41             :    * @param address service address
+      42             :    */
+      43             :   ServiceClientHandler_impl(ros::NodeHandle& nh, const std::string& address);
+      44             : 
+      45             :   /**
+      46             :    * @brief "classic" synchronous service call
+      47             :    *
+      48             :    * @param srv data
+      49             :    *
+      50             :    * @return true when success
+      51             :    */
+      52             :   bool call(ServiceType& srv);
+      53             : 
+      54             :   /**
+      55             :    * @brief "classic" synchronous service call with repeats after an error
+      56             :    *
+      57             :    * @param srv data
+      58             :    * @param attempts how many attempts for the call
+      59             :    *
+      60             :    * @return  true when success
+      61             :    */
+      62             :   bool call(ServiceType& srv, const int& attempts);
+      63             : 
+      64             :   /**
+      65             :    * @brief "classic" synchronous service call with repeats after an error
+      66             :    *
+      67             :    * @param srv data
+      68             :    * @param attempts how many attempts for the call
+      69             :    * @param repeat_delay how long to wait before repeating the call
+      70             :    *
+      71             :    * @return  true when success
+      72             :    */
+      73             :   bool call(ServiceType& srv, const int& attempts, const double& repeat_delay);
+      74             : 
+      75             :   /**
+      76             :    * @brief asynchronous service call
+      77             :    *
+      78             :    * @param srv data
+      79             :    *
+      80             :    * @return future result
+      81             :    */
+      82             :   std::future<ServiceType> callAsync(ServiceType& srv);
+      83             : 
+      84             :   /**
+      85             :    * @brief asynchronous service call with repeates after an error
+      86             :    *
+      87             :    * @param srv data
+      88             :    * @param attempts how many attempts for the call
+      89             :    *
+      90             :    * @return future result
+      91             :    */
+      92             :   std::future<ServiceType> callAsync(ServiceType& srv, const int& attempts);
+      93             : 
+      94             :   /**
+      95             :    * @brief asynchronous service call with repeates after an error
+      96             :    *
+      97             :    * @param srv data
+      98             :    * @param attempts how many attempts for the call
+      99             :    * @param repeat_delay how long to wait before repeating the call
+     100             :    *
+     101             :    * @return future result
+     102             :    */
+     103             :   std::future<ServiceType> callAsync(ServiceType& srv, const int& attempts, const double& repeat_delay);
+     104             : 
+     105             : private:
+     106             :   ros::ServiceClient service_client_;
+     107             :   std::mutex         mutex_service_client_;
+     108             :   std::atomic<bool>  service_initialized_;
+     109             : 
+     110             :   std::string _address_;
+     111             : 
+     112             :   ServiceType async_data_;
+     113             :   int         async_attempts_;
+     114             :   double      async_repeat_delay_;
+     115             :   std::mutex  mutex_async_;
+     116             : 
+     117             :   ServiceType asyncRun(void);
+     118             : };
+     119             : 
+     120             : //}
+     121             : 
+     122             : /* class ServiceClientHandler //{ */
+     123             : 
+     124             : /**
+     125             :  * @brief user wrapper of the service client handler implementation
+     126             :  */
+     127             : template <class ServiceType>
+     128             : class ServiceClientHandler {
+     129             : 
+     130             : public:
+     131             :   /**
+     132             :    * @brief generic constructor
+     133             :    */
+     134        2009 :   ServiceClientHandler(void){};
+     135             : 
+     136             :   /**
+     137             :    * @brief generic destructor
+     138             :    */
+     139        3927 :   ~ServiceClientHandler(void){};
+     140             : 
+     141             :   /**
+     142             :    * @brief operator=
+     143             :    *
+     144             :    * @param other
+     145             :    *
+     146             :    * @return
+     147             :    */
+     148             :   ServiceClientHandler& operator=(const ServiceClientHandler& other);
+     149             : 
+     150             :   /**
+     151             :    * @brief copy constructor
+     152             :    *
+     153             :    * @param other
+     154             :    */
+     155             :   ServiceClientHandler(const ServiceClientHandler& other);
+     156             : 
+     157             :   /**
+     158             :    * @brief constructor
+     159             :    *
+     160             :    * @param nh ROS node handler
+     161             :    * @param address service address
+     162             :    */
+     163             :   ServiceClientHandler(ros::NodeHandle& nh, const std::string& address);
+     164             : 
+     165             :   /**
+     166             :    * @brief initializer
+     167             :    *
+     168             :    * @param nh ROS node handler
+     169             :    * @param address service address
+     170             :    */
+     171             :   void initialize(ros::NodeHandle& nh, const std::string& address);
+     172             : 
+     173             :   /**
+     174             :    * @brief "standard" synchronous call
+     175             :    *
+     176             :    * @param srv data
+     177             :    *
+     178             :    * @return true when success
+     179             :    */
+     180             :   bool call(ServiceType& srv);
+     181             : 
+     182             :   /**
+     183             :    * @brief "standard" synchronous call with repeats after failure
+     184             :    *
+     185             :    * @param srv data
+     186             :    * @param attempts how many attempts for the call
+     187             :    *
+     188             :    * @return true when success
+     189             :    */
+     190             :   bool call(ServiceType& srv, const int& attempts);
+     191             : 
+     192             :   /**
+     193             :    * @brief "standard" synchronous call with repeats after failure
+     194             :    *
+     195             :    * @param srv data
+     196             :    * @param attempts how many attempts for the call
+     197             :    * @param repeat_delay how long to wait before repeating the call
+     198             :    *
+     199             :    * @return true when success
+     200             :    */
+     201             :   bool call(ServiceType& srv, const int& attempts, const double& repeat_delay);
+     202             : 
+     203             :   /**
+     204             :    * @brief asynchronous call
+     205             :    *
+     206             :    * @param srv data
+     207             :    *
+     208             :    * @return future result
+     209             :    */
+     210             :   std::future<ServiceType> callAsync(ServiceType& srv);
+     211             : 
+     212             :   /**
+     213             :    * @brief asynchronous call with repeats after failure
+     214             :    *
+     215             :    * @param srv data
+     216             :    * @param attempts how many attemps for the call
+     217             :    *
+     218             :    * @return future result
+     219             :    */
+     220             :   std::future<ServiceType> callAsync(ServiceType& srv, const int& attempts);
+     221             : 
+     222             :   /**
+     223             :    * @brief asynchronous call with repeats after failure
+     224             :    *
+     225             :    * @param srv data
+     226             :    * @param attempts how many attemps for the call
+     227             :    * @param repeat_delay how long to wait before repeating the call
+     228             :    *
+     229             :    * @return future result
+     230             :    */
+     231             :   std::future<ServiceType> callAsync(ServiceType& srv, const int& attempts, const double& repeat_delay);
+     232             : 
+     233             : private:
+     234             :   std::shared_ptr<ServiceClientHandler_impl<ServiceType>> impl_;
+     235             : };
+     236             : 
+     237             : //}
+     238             : 
+     239             : }  // namespace mrs_lib
+     240             : 
+     241             : #include <mrs_lib/impl/service_client_handler.hpp>
+     242             : 
+     243             : #endif  // SERVICE_CLIENT_HANDLER_H
+
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::ProcTfToWorld<1>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::ProcTfToWorld<1>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<1>*)0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::ProcTfToWorld<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::ProcTfToWorld<1>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<1>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::start()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >&&)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::TfMappingOrigin>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::start()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::TfMappingOrigin>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::ProcTfToWorld<1>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::ProcTfToWorld<1>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<1>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)>(mrs_lib::SubscribeHandlerOptions const&, std::function<void (std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)> const&, void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>))1
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (*)(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&), void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (*)(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&), void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>))1
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<Tester>(mrs_lib::SubscribeHandlerOptions const&, void (Tester::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), Tester*)1
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (Tester::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), Tester*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (Tester::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), Tester*)1
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::topicName[abi:cxx11]() const1
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)>(mrs_lib::SubscribeHandlerOptions const&, std::function<void (std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)> const&, void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>))::{lambda()#1}::operator()() const1
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (*)(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&), void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (*)(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&), void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>))::{lambda()#1}::operator()() const1
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (Tester::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), Tester*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (Tester::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), Tester*)::{lambda()#1}::operator()() const1
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)2
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)2
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const2
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::getMsg()3
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::getMsg()3
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)3
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)3
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const3
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)4
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)4
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)4
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)4
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const4
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const4
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::stop()5
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::getMsg()5
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::lastMsgTime() const5
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::hasMsg() const6
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::start()9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)> const&)9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >&&)9
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::start()10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >&&)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::SubscribeHandler<mrs_uav_trackers::mpc_tracker::MpcTracker>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::start()10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >&&)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::SubscribeHandler<mrs_uav_trackers::mpc_tracker::MpcTracker>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)::{lambda()#1}::operator()() const10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)::{lambda()#1}::operator()() const10
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::hasMsg() const16
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::~SubscribeHandler()20
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()20
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::getMsg()21
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::start()31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >&&)31
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)31
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)31
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<mrs_uav_autostart::automatic_start::AutomaticStart>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::start()31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler()31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >&&)31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::start()31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::SubscribeHandler()31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::SubscribeHandler<mrs_uav_autostart::automatic_start::AutomaticStart>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >&&)31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const31
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const31
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)::{lambda()#1}::operator()() const31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)::{lambda()#1}::operator()() const31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()62
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()62
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::lastMsgTime() const87
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::lastMsgTime() const87
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)88
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)88
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const88
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)91
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::uav_manager::UavManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)91
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::speed_tracker::SpeedTracker::*)(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>), mrs_uav_trackers::speed_tracker::SpeedTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::speed_tracker::SpeedTracker::*)(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>), mrs_uav_trackers::speed_tracker::SpeedTracker*)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::SubscribeHandler<mrs_uav_trackers::speed_tracker::SpeedTracker>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_trackers::speed_tracker::SpeedTracker::*)(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>), mrs_uav_trackers::speed_tracker::SpeedTracker*)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::SubscribeHandler<mrs_uav_trajectory_generation::MrsTrajectoryGeneration>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<mrs_uav_trajectory_generation::MrsTrajectoryGeneration>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)91
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)91
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::uav_manager::UavManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::speed_tracker::SpeedTracker::*)(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>), mrs_uav_trackers::speed_tracker::SpeedTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::speed_tracker::SpeedTracker::*)(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>), mrs_uav_trackers::speed_tracker::SpeedTracker*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)92
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::hasMsg() const92
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const92
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::ProcTfToWorld<2>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::ProcTfToWorld<2>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<2>*)93
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::ProcTfToWorld<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::ProcTfToWorld<2>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<2>*)93
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)93
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::getMsg()93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::hasMsg() const93
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::ProcTfToWorld<2>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::ProcTfToWorld<2>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<2>*)::{lambda()#1}::operator()() const93
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const93
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)> const&)94
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >&&)94
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)95
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const95
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::HdgPassthrough>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfSource*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::TfSource>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::HdgPassthrough>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::start()97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const>)> const&)97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::SubscribeHandler()97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >&&)97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfSource*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::start()98
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfSource*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)98
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::TfSource>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)98
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfSource*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)::{lambda()#1}::operator()() const98
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const102
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const115
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)146
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)146
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const146
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::start()177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)> const&)177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >&&)177
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::lastMsgTime() const180
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::start()182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler()182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >&&)182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::start()182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >&&)182
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::start()182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::SubscribeHandler()182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >&&)182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const182
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::start()186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>)> const&)186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >&&)186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler()189
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::~SubscribeHandler()194
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::start()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>)> const&)213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >&&)213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::SubscribeHandler()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >&&)213
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)264
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const264
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::getMsg()266
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::start()273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)> const&)273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler()273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >&&)273
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const273
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::start()282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)> const&)282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >&&)282
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::start()295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)> const&)295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >&&)295
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::start()304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const>)> const&)304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const304
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::lastMsgTime() const320
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler()346
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::~SubscribeHandler()346
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::SubscribeHandler()346
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::~SubscribeHandler()346
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler()347
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::start()355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const>)> const&)355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::SubscribeHandler()355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >&&)355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const355
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::start()363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)> const&)363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >&&)363
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::~SubscribeHandler()364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::start()364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>)> const&)364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler()364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >&&)364
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::~SubscribeHandler()364
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::~SubscribeHandler()364
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler()366
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::~SubscribeHandler()375
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler()377
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler()377
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::start()395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::SubscribeHandler()395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >&&)395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::start()395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler()395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >&&)395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const395
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::~SubscribeHandler()408
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::~SubscribeHandler()426
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler()437
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::getMsg()440
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::~SubscribeHandler()441
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::~SubscribeHandler()446
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::~SubscribeHandler()517
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler()540
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::~SubscribeHandler()546
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::start()549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)> const&)549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >&&)549
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::~SubscribeHandler()554
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::getMsg()555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::hasMsg() const555
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::~SubscribeHandler()710
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler()719
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::~SubscribeHandler()728
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::~SubscribeHandler()729
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::~SubscribeHandler()790
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()790
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::getMsg()793
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::~SubscribeHandler()835
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::~SubscribeHandler()1001
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler()1242
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::~SubscribeHandler()1791
mrs_lib::SubscribeHandlerOptions::SubscribeHandlerOptions()2362
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::hasMsg() const2503
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::getMsg()3722
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::getMsg()3746
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::getMsg()9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::hasMsg() const9924
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::getMsg()14090
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::hasMsg() const16330
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::hasMsg() const17552
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::hasMsg() const18398
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::hasMsg() const18596
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::hasMsg() const18609
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::getMsg()19880
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::getMsg()34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::lastMsgTime() const34723
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::getMsg()41186
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::hasMsg() const50204
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::hasMsg() const63290
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::getMsg()65448
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::hasMsg() const68190
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::hasMsg() const141295
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::getMsg()162500
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::hasMsg() const162501
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::getMsg()182831
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::lastMsgTime() const193705
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::getMsg()208771
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::hasMsg() const226189
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::hasMsg() const377034
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::getMsg()381897
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::lastMsgTime() const404196
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::hasMsg() const498342
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::newMsg() const513474
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::getMsg()699243
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::getMsg()743810
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::hasMsg() const896912
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/subscribe_handler.h.func.html b/mrs_lib/include/mrs_lib/subscribe_handler.h.func.html new file mode 100644 index 0000000000..17a487a0cd --- /dev/null +++ b/mrs_lib/include/mrs_lib/subscribe_handler.h.func.html @@ -0,0 +1,3044 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/subscribe_handler.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - subscribe_handler.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:444989.8 %
Date:2024-04-17 23:52:03Functions:38974152.5 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::start()363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)> const&)363
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler()366
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)91
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)88
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::ProcTfToWorld<1>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::ProcTfToWorld<1>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<1>*)0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::ProcTfToWorld<2>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::ProcTfToWorld<2>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<2>*)93
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::uav_manager::UavManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)91
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)88
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::ProcTfToWorld<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::ProcTfToWorld<1>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<1>*)0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::ProcTfToWorld<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::ProcTfToWorld<2>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<2>*)93
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::~SubscribeHandler()729
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >&&)363
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::start()31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::getMsg()9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler()377
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::~SubscribeHandler()408
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >&&)31
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::start()182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler()182
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::~SubscribeHandler()364
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >&&)182
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::start()177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::getMsg()14090
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)> const&)177
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler()377
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)31
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)146
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)146
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::~SubscribeHandler()554
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >&&)177
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::start()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)> const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler()346
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::~SubscribeHandler()346
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >&&)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::stop()5
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::start()98
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::getMsg()3722
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)> const&)94
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler()347
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)93
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)>(mrs_lib::SubscribeHandlerOptions const&, std::function<void (std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)> const&, void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>))1
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (*)(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&), void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (*)(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&), void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>))1
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)93
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::~SubscribeHandler()441
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >&&)94
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::start()295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::getMsg()182831
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)> const&)295
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler()540
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)4
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)4
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::HdgPassthrough>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::~SubscribeHandler()835
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >&&)295
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::start()549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::getMsg()699243
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)> const&)549
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler()1242
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)264
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfSource*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::TfMappingOrigin>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::TfSource>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::HdgPassthrough>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::~SubscribeHandler()1791
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >&&)549
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::start()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::SubscribeHandler()346
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::~SubscribeHandler()346
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::start()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::getMsg()266
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>)> const&)213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)31
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<mrs_uav_autostart::automatic_start::AutomaticStart>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)31
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::~SubscribeHandler()426
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >&&)213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::start()186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::getMsg()162500
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>)> const&)186
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler()189
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)95
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::~SubscribeHandler()375
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >&&)186
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::start()355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::getMsg()381897
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const>)> const&)355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::SubscribeHandler()355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)355
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::~SubscribeHandler()710
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >&&)355
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::start()364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::getMsg()41186
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>)> const&)364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler()364
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)273
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::~SubscribeHandler()728
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >&&)364
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::start()182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::getMsg()793
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrackerCommand_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)182
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::~SubscribeHandler()364
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >&&)182
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::start()97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimatorOutput_<std::allocator<void> > const>)> const&)97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::SubscribeHandler()97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::~SubscribeHandler()194
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >&&)97
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::getMsg()555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::getMsg()440
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ObstacleSectors_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::start()10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >&&)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::SubscribeHandler<mrs_uav_trackers::mpc_tracker::MpcTracker>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)10
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::~SubscribeHandler()20
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::start()304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::getMsg()19880
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const>)> const&)304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::SubscribeHandler()213
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)304
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::~SubscribeHandler()517
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >&&)213
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::getMsg()21
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::DynamicsConstraints_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::speed_tracker::SpeedTracker::*)(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>), mrs_uav_trackers::speed_tracker::SpeedTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::speed_tracker::SpeedTracker::*)(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>), mrs_uav_trackers::speed_tracker::SpeedTracker*)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::SubscribeHandler<mrs_uav_trackers::speed_tracker::SpeedTracker>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_trackers::speed_tracker::SpeedTracker::*)(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>), mrs_uav_trackers::speed_tracker::SpeedTracker*)91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::getMsg()5
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::start()395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::getMsg()65448
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::SubscribeHandler()395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)395
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::~SubscribeHandler()790
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >&&)395
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::start()10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >&&)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>)> const&)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::SubscribeHandler<mrs_uav_trackers::mpc_tracker::MpcTracker>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)10
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()20
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::start()31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler()31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)31
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()62
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >&&)31
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::getMsg()3
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::start()31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>)> const&)31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::SubscribeHandler()31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::SubscribeHandler<mrs_uav_autostart::automatic_start::AutomaticStart>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)31
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()62
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >&&)31
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::start()395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::getMsg()743810
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > const>)> const&)395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler()395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)395
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()790
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >&&)395
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::getMsg()3
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::start()91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::getMsg()0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>)> const&)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::SubscribeHandler()91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::SubscribeHandler<mrs_uav_trajectory_generation::MrsTrajectoryGeneration>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::~SubscribeHandler()182
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >&&)91
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::start()9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::getMsg()93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)> const&)9
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler()437
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)3
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)2
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)4
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)3
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)2
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)4
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::~SubscribeHandler()446
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >&&)9
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::start()273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::getMsg()3746
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)> const&)273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler()273
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::transform_manager::TransformManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<mrs_uav_trajectory_generation::MrsTrajectoryGeneration>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::~SubscribeHandler()546
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >&&)273
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::start()282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::getMsg()208771
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)> const&)282
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler()719
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<Tester>(mrs_lib::SubscribeHandlerOptions const&, void (Tester::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), Tester*)1
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)92
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (Tester::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), Tester*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (Tester::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), Tester*)1
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)91
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfSource*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)98
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::uav_manager::UavManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)91
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::TfMappingOrigin>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::control_manager::ControlManager>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_managers::TfSource>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)98
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<1>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<mrs_uav_state_estimators::Correction<2>>(mrs_lib::SubscribeHandlerOptions const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::~SubscribeHandler()1001
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >&&)282
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::waitForNew(ros::WallDuration const&)0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::stop()0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::start()182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::getMsg()34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::SubscribeHandler(mrs_lib::SubscribeHandlerOptions const&, std::function<void (boost::shared_ptr<std_msgs::Float64_<std::allocator<void> > const>)> const&)182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::SubscribeHandler()182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)182
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::~SubscribeHandler()364
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::operator=(mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >&&)182
mrs_lib::SubscribeHandlerOptions::SubscribeHandlerOptions()2362
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::hasMsg() const9924
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::hasMsg() const17552
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::lastMsgTime() const5
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::hasMsg() const16330
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::hasMsg() const377034
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::hasMsg() const896912
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const115
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::lastMsgTime() const180
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::hasMsg() const18596
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::hasMsg() const162501
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::lastMsgTime() const404196
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::newMsg() const513474
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::hasMsg() const63290
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::hasMsg() const16
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::hasMsg() const555
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::lastMsgTime() const320
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::hasMsg() const2503
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::hasMsg() const18609
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::topicName[abi:cxx11]() const91
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::hasMsg() const6
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::hasMsg() const92
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::hasMsg() const68190
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::hasMsg() const18398
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::lastMsgTime() const87
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::hasMsg() const141295
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const102
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::lastMsgTime() const87
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::hasMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::hasMsg() const93
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::lastMsgTime() const193705
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::hasMsg() const226189
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::lastMsgTime() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::hasMsg() const498342
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::topicName[abi:cxx11]() const1
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::lastMsgTime() const34723
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::subscribedTopicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::hasMsg() const50204
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::newMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::peekMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::usedMsg() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::topicName[abi:cxx11]() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const88
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::ProcTfToWorld<1>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::ProcTfToWorld<1>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<1>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::ProcTfToWorld<2>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::ProcTfToWorld<2>::*)(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>), mrs_uav_state_estimators::ProcTfToWorld<2>*)::{lambda()#1}::operator()() const93
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const31
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<sensor_msgs::Imu_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<sensor_msgs::Joy_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const31
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const146
mrs_lib::SubscribeHandler<sensor_msgs::Range_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const93
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)>(mrs_lib::SubscribeHandlerOptions const&, std::function<void (std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)> const&, void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>))::{lambda()#1}::operator()() const1
mrs_lib::SubscribeHandler<geometry_msgs::PointStamped_<std::allocator<void> > >::SubscribeHandler<void (*)(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&), void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (*)(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&), void (*)(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>))::{lambda()#1}::operator()() const1
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const4
mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const264
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfSource*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::HdgPassthrough::*)(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>), mrs_uav_state_estimators::HdgPassthrough*)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)::{lambda()#1}::operator()() const31
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const95
mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const355
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const273
mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const182
mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const97
mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)::{lambda()#1}::operator()() const10
mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const304
mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::speed_tracker::SpeedTracker::*)(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>), mrs_uav_trackers::speed_tracker::SpeedTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::speed_tracker::SpeedTracker::*)(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>), mrs_uav_trackers::speed_tracker::SpeedTracker*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const395
mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trackers::mpc_tracker::MpcTracker::*)(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>), mrs_uav_trackers::mpc_tracker::MpcTracker*)::{lambda()#1}::operator()() const10
mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const31
mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_autostart::automatic_start::AutomaticStart::*)(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>), mrs_uav_autostart::automatic_start::AutomaticStart*)::{lambda()#1}::operator()() const31
mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const395
mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::Path_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const3
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const2
mrs_lib::SubscribeHandler<mrs_msgs::RtkGps_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const4
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::transform_manager::TransformManager::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_managers::transform_manager::TransformManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<mrs_msgs::UavState_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_trajectory_generation::MrsTrajectoryGeneration::*)(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>), mrs_uav_trajectory_generation::MrsTrajectoryGeneration*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const92
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (Tester::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), Tester*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (Tester::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), Tester*)::{lambda()#1}::operator()() const1
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::uav_manager::UavManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::uav_manager::UavManager*)::{lambda()#1}::operator()() const91
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfMappingOrigin::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfMappingOrigin*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::control_manager::ControlManager::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::control_manager::ControlManager*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfSource*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_managers::TfSource::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_managers::TfSource*)::{lambda()#1}::operator()() const98
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<1>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<1>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<nav_msgs::Odometry_<std::allocator<void> > >::SubscribeHandler<void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, void (mrs_uav_state_estimators::Correction<2>::*)(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>), mrs_uav_state_estimators::Correction<2>*)::{lambda()#1}::operator()() const0
mrs_lib::SubscribeHandler<std_msgs::Float64_<std::allocator<void> > >::SubscribeHandler<>(mrs_lib::SubscribeHandlerOptions const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)::{lambda()#1}::operator()() const182
+
+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/subscribe_handler.h.gcov.frameset.html b/mrs_lib/include/mrs_lib/subscribe_handler.h.gcov.frameset.html new file mode 100644 index 0000000000..9acc9fca74 --- /dev/null +++ b/mrs_lib/include/mrs_lib/subscribe_handler.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/subscribe_handler.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/include/mrs_lib/subscribe_handler.h.gcov.html b/mrs_lib/include/mrs_lib/subscribe_handler.h.gcov.html new file mode 100644 index 0000000000..ac1b6b1d71 --- /dev/null +++ b/mrs_lib/include/mrs_lib/subscribe_handler.h.gcov.html @@ -0,0 +1,548 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/subscribe_handler.h + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib - subscribe_handler.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:444989.8 %
Date:2024-04-17 23:52:03Functions:38974152.5 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + +

+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : /**  \file
+       3             :      \brief Defines SubscribeHandler and related convenience classes for subscribing to ROS topics.
+       4             :      \author Matouš Vrba - vrbamato@fel.cvut.cz
+       5             :  */
+       6             : 
+       7             : #ifndef SUBRSCRIBE_HANDLER_H
+       8             : #define SUBRSCRIBE_HANDLER_H
+       9             : 
+      10             : #include <ros/ros.h>
+      11             : #include <mrs_lib/timeout_manager.h>
+      12             : 
+      13             : namespace mrs_lib
+      14             : {
+      15             : 
+      16             :   static const ros::Duration no_timeout = ros::Duration(0);
+      17             : 
+      18             :   /* struct SubscribeHandlerOptions //{ */
+      19             :   
+      20             :   /**
+      21             :   * \brief A helper class to simplify setup of SubscribeHandler construction.
+      22             :   * This class is passed to the SubscribeHandler constructor and specifies its common options.
+      23             :   *
+      24             :   * \note Any option, passed directly to the SubscribeHandler constructor outside this structure, *OVERRIDES* values in this structure.
+      25             :   * The values in this structure can be thought of as default common values for all SubscribeHandler objects you want to create,
+      26             :   * and values passed directly to the constructor as specific options for the concrete handler.
+      27             :   *
+      28             :   */
+      29             :   struct SubscribeHandlerOptions
+      30             :   {
+      31             :     SubscribeHandlerOptions(const ros::NodeHandle& nh) : nh(nh) {}
+      32        2362 :     SubscribeHandlerOptions() = default;
+      33             :   
+      34             :     ros::NodeHandle nh;  /*!< \brief The ROS NodeHandle to be used for subscription. */
+      35             :   
+      36             :     std::string node_name = {};  /*!< \brief Name of the ROS node, using this handle (used for messages printed to console). */
+      37             :   
+      38             :     std::string topic_name = {};  /*!< \brief Name of the ROS topic to be handled. */
+      39             : 
+      40             :     std::shared_ptr<mrs_lib::TimeoutManager> timeout_manager = nullptr;  /*!< \brief Will be used for handling message timouts if necessary. If no manager is specified, it will be created with rate equal to half of \p no_message_timeout. */
+      41             :   
+      42             :     ros::Duration no_message_timeout = mrs_lib::no_timeout;  /*!< \brief If no new message is received for this duration, the \p timeout_callback function will be called. If \p timeout_callback is empty, an error message will be printed to the console. */
+      43             :   
+      44             :     std::function<void(const std::string& topic_name, const ros::Time& last_msg)> timeout_callback = {};  /*!< \brief This function will be called if no new message is received for the \p no_message_timeout duration. If this variable is empty, an error message will be printed to the console. */
+      45             :   
+      46             :     bool threadsafe = true;  /*!< \brief If true, all methods of the SubscribeHandler will be mutexed (using a recursive mutex) to avoid data races. */
+      47             :   
+      48             :     bool autostart = true;  /*!< \brief If true, the SubscribeHandler will be started after construction. Otherwise it has to be started using the start() method */
+      49             :   
+      50             :     uint32_t queue_size = 3;  /*!< \brief This parameter is passed to the NodeHandle when subscribing to the topic */
+      51             :   
+      52             :     ros::TransportHints transport_hints = ros::TransportHints();  /*!< \brief This parameter is passed to the NodeHandle when subscribing to the topic */
+      53             :   };
+      54             :   
+      55             :   //}
+      56             : 
+      57             :   /* SubscribeHandler class //{ */
+      58             :   /**
+      59             :   * \brief The main class for ROS topic subscription, message timeout handling etc.
+      60             :   *
+      61             :   * This class handles the raw ROS Subscriber for a specified topic. The last message received on the topic is remembered
+      62             :   * and may be retrieved by calling the getMsg() method. To check whether at least one message was received, use hasMsg()
+      63             :   * (if no message was received and you call getMsg(), a nullptr is returned and an error message is printed). To check
+      64             :   * whether a new message has arrived since the last call to getMsg(), use newMsg() (useful to check whether a new message
+      65             :   * needs to be processed in a loop or ROS Timer callback).
+      66             :   *
+      67             :   * A timeout callback function may be specified, which is called if no message is received on the topic for a specified
+      68             :   * timeout (use the \p timeout_callback and \p no_message_timeout parameters). If the timeout callback is not set by the
+      69             :   * user, an error message is printed to the console after the timeout by default.
+      70             :   *
+      71             :   * A message callback function may be specified, which is called whenever a new message is received (use the
+      72             :   * \p message_callback parameter).
+      73             :   *
+      74             :   * The callbacks and timeouts may be stopped and started using the stop() and start() methods.
+      75             :   *
+      76             :   * For more details, see the example below (I recommend starting with the simple_example which covers most use-cases).
+      77             :   *
+      78             :   */
+      79             :   template <typename MessageType>
+      80             :   class SubscribeHandler
+      81             :   {
+      82             :     public:
+      83             :     /*!
+      84             :       * \brief Convenience type for the template parameter to enable nice aliasing.
+      85             :       */
+      86             :       using message_type = MessageType;
+      87             : 
+      88             :     /*!
+      89             :       * \brief Type for the timeout callback function.
+      90             :       */
+      91             :       using timeout_callback_t = std::function<void(const std::string& topic_name, const ros::Time& last_msg)>;
+      92             : 
+      93             :     /*!
+      94             :       * \brief Convenience type for the message callback function.
+      95             :       */
+      96             :       using message_callback_t = std::function<void(typename MessageType::ConstPtr)>;
+      97             : 
+      98             :     public:
+      99             :     /*!
+     100             :       * \brief Returns the last received message on the topic, handled by this SubscribeHandler.
+     101             :       * Use hasMsg() first to check if at least one message is available or newMsg() to check if a new message
+     102             :       * since the last call to getMsg() is available.
+     103             :       *
+     104             :       * \return the last received message.
+     105             :       */
+     106     2573950 :       virtual typename MessageType::ConstPtr getMsg() {assert(m_pimpl); return m_pimpl->getMsg();};
+     107             : 
+     108             :     /*!
+     109             :       * \brief Returns the last received message on the topic without modifying the newMsg() or usedMsg() flags.
+     110             :       *
+     111             :       * \return the last received message.
+     112             :       */
+     113           0 :       virtual typename MessageType::ConstPtr peekMsg() const {assert(m_pimpl); return m_pimpl->peekMsg();};
+     114             : 
+     115             :     /*!
+     116             :       * \brief Used to check whether at least one message has been received on the handled topic.
+     117             :       *
+     118             :       * \return true if at least one message was received, otherwise false.
+     119             :       */
+     120     2586631 :       virtual bool hasMsg() const {assert(m_pimpl); return m_pimpl->hasMsg();};
+     121             : 
+     122             :     /*!
+     123             :       * \brief Used to check whether at least one message has been received on the handled topic since the last call to getMsg().
+     124             :       *
+     125             :       * \return true if at least one message was received, otherwise false.
+     126             :       */
+     127      513474 :       virtual bool newMsg() const {assert(m_pimpl); return m_pimpl->newMsg();};
+     128             : 
+     129             :     /*!
+     130             :       * \brief Used to check whether getMsg() was called at least once on this SubscribeHandler.
+     131             :       *
+     132             :       * \return true if getMsg() was called at least once, otherwise false.
+     133             :       */
+     134           0 :       virtual bool usedMsg() const {assert(m_pimpl); return m_pimpl->usedMsg();};
+     135             : 
+     136             :     /*!
+     137             :       * \brief Blocks until new data becomes available or until the timeout runs out or until a spurious wake-up.
+     138             :       *
+     139             :       * \return the message if a new message is available after waking up, \p nullptr otherwise.
+     140             :       */
+     141           0 :       virtual typename MessageType::ConstPtr waitForNew(const ros::WallDuration& timeout) {assert(m_pimpl); return m_pimpl->waitForNew(timeout);};
+     142             : 
+     143             :     /*!
+     144             :       * \brief Returns time of the last received message on the topic, handled by this SubscribeHandler.
+     145             :       *
+     146             :       * \return time when the last message was received.
+     147             :       */
+     148      633303 :       virtual ros::Time lastMsgTime() const {assert(m_pimpl); return m_pimpl->lastMsgTime();};
+     149             : 
+     150             :     /*!
+     151             :       * \brief Returns the resolved (full) name of the topic, handled by this SubscribeHandler.
+     152             :       *
+     153             :       * \return name of the handled topic.
+     154             :       */
+     155         309 :       virtual std::string topicName() const {assert(m_pimpl); return m_pimpl->topicName();};
+     156             : 
+     157             :     /*!
+     158             :       * \brief Returns the subscribed (unresolved) name of the topic, handled by this SubscribeHandler.
+     159             :       *
+     160             :       * \return name of the handled topic.
+     161             :       */
+     162           0 :       virtual std::string subscribedTopicName() const {assert(m_pimpl); return m_pimpl->m_topic_name;};
+     163             : 
+     164             :     /*!
+     165             :       * \brief Enables the callbacks for the handled topic.
+     166             :       *
+     167             :       * If the SubscribeHandler object is stopped using the stop() method, no callbacks will be called
+     168             :       * until the start() method is called.
+     169             :       */
+     170        6015 :       virtual void start() {assert(m_pimpl); return m_pimpl->start();};
+     171             : 
+     172             :     /*!
+     173             :       * \brief Disables the callbacks for the handled topic.
+     174             :       *
+     175             :       * All messages after this method is called will be ignored until start() is called again.
+     176             :       * Timeout checking will also be disabled.
+     177             :       */
+     178           5 :       virtual void stop() {assert(m_pimpl); return m_pimpl->stop();};
+     179             : 
+     180             :     public:
+     181             :     /*!
+     182             :       * \brief Default constructor to avoid having to use pointers.
+     183             :       *
+     184             :       * It does nothing and the SubscribeHandler it constructs will also do nothing.
+     185             :       * Use some of the other constructors for actual construction of a usable SubscribeHandler.
+     186             :       */
+     187        9200 :       SubscribeHandler() {};
+     188             : 
+     189             :     /*!
+     190             :       * \brief Main constructor.
+     191             :       *
+     192             :       * \param options    The common options struct (see documentation of SubscribeHandlerOptions).
+     193             :       * \param topic_name Name of the topic to be handled by this subscribed.
+     194             :       * \param args       Remaining arguments to be parsed (see other constructors).
+     195             :       *
+     196             :       */
+     197             :       template<class ... Types>
+     198        6011 :       SubscribeHandler(
+     199             :             const SubscribeHandlerOptions& options,
+     200             :             const std::string& topic_name,
+     201             :             Types ... args
+     202             :           )
+     203             :       :
+     204             :         SubscribeHandler(
+     205        6011 :             [options, topic_name]()
+     206             :             {
+     207       12022 :               SubscribeHandlerOptions opts = options;
+     208        6011 :               opts.topic_name = topic_name;
+     209       12022 :               return opts;
+     210             :             }(),
+     211             :             args...
+     212        6011 :             )
+     213             :       {
+     214        6011 :       }
+     215             : 
+     216             :     /*!
+     217             :       * \brief Convenience constructor overload.
+     218             :       *
+     219             :       * \param options          The common options struct (see documentation of SubscribeHandlerOptions).
+     220             :       * \param message_callback The callback function to call when a new message is received (you can leave this argument empty and just use the newMsg()/hasMsg() and getMsg() interface).
+     221             :       *
+     222             :       */
+     223        6011 :       SubscribeHandler(
+     224             :             const SubscribeHandlerOptions& options,
+     225             :             const message_callback_t& message_callback = {}
+     226             :           )
+     227        6011 :       {
+     228        6011 :         if (options.threadsafe)
+     229             :         {
+     230        6011 :           m_pimpl = std::make_unique<ImplThreadsafe>
+     231             :             (
+     232             :               options,
+     233             :               message_callback
+     234             :             );
+     235             :         }
+     236             :         else
+     237             :         {
+     238           0 :           m_pimpl = std::make_unique<Impl>
+     239             :             (
+     240             :               options,
+     241             :               message_callback
+     242             :             );
+     243             :         }
+     244        6011 :         if (options.autostart)
+     245        6010 :           start();
+     246        6011 :       };
+     247             : 
+     248             :     /*!
+     249             :       * \brief Convenience constructor overload.
+     250             :       *
+     251             :       * \param options          The common options struct (see documentation of SubscribeHandlerOptions).
+     252             :       * \param timeout_callback The callback function to call when a new message is not received for the duration, specified in \p options or in the \p no_message_timeout parameter.
+     253             :       * \param args             Remaining arguments to be parsed (see other constructors).
+     254             :       *
+     255             :       */
+     256             :       template <class ... Types>
+     257           1 :       SubscribeHandler(
+     258             :             const SubscribeHandlerOptions& options,
+     259             :             const timeout_callback_t& timeout_callback,
+     260             :             Types ... args
+     261             :           )
+     262             :       :
+     263             :         SubscribeHandler(
+     264           1 :             [options, timeout_callback]()
+     265             :             {
+     266           2 :               SubscribeHandlerOptions opts = options;
+     267           1 :               opts.timeout_callback = timeout_callback;
+     268           2 :               return opts;
+     269             :             }(),
+     270             :             args...
+     271           1 :             )
+     272             :       {
+     273           1 :       }
+     274             : 
+     275             :     /*!
+     276             :       * \brief Convenience constructor overload.
+     277             :       *
+     278             :       * \param options          The common options struct (see documentation of SubscribeHandlerOptions).
+     279             :       * \param timeout_callback The callback method to call when a new message is not received for the duration, specified in \p options or in the \p no_message_timeout parameter.
+     280             :       * \param obj1             The object on which the callback method \p timeout_callback will be called.
+     281             :       * \param args             Remaining arguments to be parsed (see other constructors).
+     282             :       *
+     283             :       */
+     284             :       template <class ObjectType1, class ... Types>
+     285             :       SubscribeHandler(
+     286             :             const SubscribeHandlerOptions& options,
+     287             :             void (ObjectType1::*const timeout_callback) (const std::string& topic_name, const ros::Time& last_msg),
+     288             :             ObjectType1* const obj1,
+     289             :             Types ... args
+     290             :           )
+     291             :       :
+     292             :         SubscribeHandler(
+     293             :             [options, timeout_callback, obj1]()
+     294             :             {
+     295             :               SubscribeHandlerOptions opts = options;
+     296             :               opts.timeout_callback = timeout_callback == nullptr ? timeout_callback_t() : std::bind(timeout_callback, obj1, std::placeholders::_1, std::placeholders::_2);
+     297             :               return opts;
+     298             :             }(),
+     299             :             args...
+     300             :             )
+     301             :       {
+     302             :       }
+     303             : 
+     304             :     /*!
+     305             :       * \brief Convenience constructor overload.
+     306             :       *
+     307             :       * \param options          The common options struct (see documentation of SubscribeHandlerOptions).
+     308             :       * \param message_callback The callback method to call when a new message is received.
+     309             :       * \param obj2             The object on which the callback method \p timeout_callback will be called.
+     310             :       * \param args             Remaining arguments to be parsed (see other constructors).
+     311             :       *
+     312             :       */
+     313             :       template <class ObjectType2, class ... Types>
+     314        2549 :       SubscribeHandler(
+     315             :             const SubscribeHandlerOptions& options,
+     316             :             void (ObjectType2::*const message_callback) (typename MessageType::ConstPtr),
+     317             :             ObjectType2* const obj2,
+     318             :             Types ... args
+     319             :           )
+     320             :       :
+     321             :         SubscribeHandler(
+     322             :             options,
+     323        5098 :             message_callback == nullptr ? message_callback_t() : std::bind(message_callback, obj2, std::placeholders::_1),
+     324             :             args...
+     325        2549 :             )
+     326             :       {
+     327        2549 :       }
+     328             : 
+     329             :     /*!
+     330             :       * \brief Convenience constructor overload.
+     331             :       *
+     332             :       * \param options          The common options struct (see documentation of SubscribeHandlerOptions).
+     333             :       * \param message_callback The callback method to call when a new message is received.
+     334             :       * \param obj2             The object on which the callback method \p timeout_callback will be called.
+     335             :       * \param timeout_callback The callback method to call when a new message is not received for the duration, specified in \p options or in the \p no_message_timeout parameter.
+     336             :       * \param obj1             The object on which the callback method \p timeout_callback will be called.
+     337             :       * \param args             Remaining arguments to be parsed (see other constructors).
+     338             :       *
+     339             :       */
+     340             :      template <class ObjectType1, class ObjectType2, class ... Types>
+     341             :      SubscribeHandler(
+     342             :            const SubscribeHandlerOptions& options,
+     343             :            void (ObjectType2::*const message_callback) (typename MessageType::ConstPtr),
+     344             :            ObjectType2* const obj2,
+     345             :            void (ObjectType1::*const timeout_callback) (const std::string& topic_name, const ros::Time& last_msg),
+     346             :            ObjectType1* const obj1,
+     347             :            Types ... args
+     348             :          )
+     349             :      :
+     350             :        SubscribeHandler(
+     351             :             [options, timeout_callback, obj1]()
+     352             :             {
+     353             :               SubscribeHandlerOptions opts = options;
+     354             :               opts.timeout_callback = timeout_callback == nullptr ? timeout_callback_t() : std::bind(timeout_callback, obj1, std::placeholders::_1, std::placeholders::_2);
+     355             :               return opts;
+     356             :             }(),
+     357             :             message_callback == nullptr ? message_callback_t() : std::bind(message_callback, obj2, std::placeholders::_1),
+     358             :             args...
+     359             :             )
+     360             :      {
+     361             :      }
+     362             : 
+     363             :     /*!
+     364             :       * \brief Convenience constructor overload.
+     365             :       *
+     366             :       * \param options            The common options struct (see documentation of SubscribeHandlerOptions).
+     367             :       * \param no_message_timeout If no message is received for this duration, the timeout callback function is called. If no timeout callback is specified, an error message is printed to the console.
+     368             :       * \param args               Remaining arguments to be parsed (see other constructors).
+     369             :       *
+     370             :       */
+     371             :       template<class ... Types>
+     372             :       SubscribeHandler(
+     373             :             const SubscribeHandlerOptions& options,
+     374             :             const ros::Duration& no_message_timeout,
+     375             :             Types ... args
+     376             :           )
+     377             :       :
+     378             :         SubscribeHandler(
+     379             :             [options, no_message_timeout]()
+     380             :             {
+     381             :               SubscribeHandlerOptions opts = options;
+     382             :               opts.no_message_timeout = no_message_timeout;
+     383             :               return opts;
+     384             :             }(),
+     385             :             args...
+     386             :             )
+     387             :       {
+     388             :       }
+     389             : 
+     390             :     /*!
+     391             :       * \brief Convenience constructor overload.
+     392             :       *
+     393             :       * \param options          The common options struct (see documentation of SubscribeHandlerOptions).
+     394             :       * \param timeout_manager  The manager for timeout callbacks.
+     395             :       * \param args             Remaining arguments to be parsed (see other constructors).
+     396             :       *
+     397             :       */
+     398             :       template <class ... Types>
+     399             :       SubscribeHandler(
+     400             :             const SubscribeHandlerOptions& options,
+     401             :             mrs_lib::TimeoutManager& timeout_manager,
+     402             :             Types ... args
+     403             :           )
+     404             :       :
+     405             :         SubscribeHandler(
+     406             :             options,
+     407             :             timeout_manager = timeout_manager,
+     408             :             args...
+     409             :             )
+     410             :       {
+     411             :       }
+     412             : 
+     413       15231 :       ~SubscribeHandler() = default;
+     414             :       // delete copy constructor and assignment operator (forbid copying shandlers)
+     415             :       SubscribeHandler(const SubscribeHandler&) = delete;
+     416             :       SubscribeHandler& operator=(const SubscribeHandler&) = delete;
+     417             :       // define only move constructor and assignemnt operator
+     418          20 :       SubscribeHandler(SubscribeHandler&& other)
+     419          20 :       {
+     420          20 :         this->m_pimpl = std::move(other.m_pimpl);
+     421          20 :         other.m_pimpl = nullptr;
+     422          20 :       }
+     423        5900 :       SubscribeHandler& operator=(SubscribeHandler&& other)
+     424             :       {
+     425        5900 :         this->m_pimpl = std::move(other.m_pimpl);
+     426        5900 :         other.m_pimpl = nullptr;
+     427        5900 :         return *this;
+     428             :       }
+     429             : 
+     430             :     private:
+     431             :       class Impl;
+     432             :       class ImplThreadsafe;
+     433             :       std::unique_ptr<Impl> m_pimpl;
+     434             :   };
+     435             :   //}
+     436             : 
+     437             : /*!
+     438             :   * \brief Helper alias for convenient extraction of handled message type from a SubscribeHandlerPtr.
+     439             :   */
+     440             :   template<typename SubscribeHandler>
+     441             :   using message_type = typename SubscribeHandler::message_type;
+     442             : 
+     443             : /*!
+     444             :   * \brief Helper function for object construstion e.g. in case of member objects.
+     445             :   * This function is useful to avoid specifying object template parameters twice - once in definition of the variable and second time during object construction.
+     446             :   * This function can deduce the template parameters from the type of the already defined object, because it returns the newly constructed object as a reference
+     447             :   * argument and not as a return type.
+     448             :   *
+     449             :   * \param object The object to be constructed.
+     450             :   * \param args   These arguments are passed to the object constructor.
+     451             :   */
+     452             :   template<typename Class, class ... Types>
+     453             :   void construct_object(
+     454             :         Class& object,
+     455             :         Types ... args
+     456             :       )
+     457             :   {
+     458             :     object = Class(args...);
+     459             :   }
+     460             : }
+     461             : 
+     462             : #include <mrs_lib/impl/subscribe_handler.hpp>
+     463             : 
+     464             : #endif // SUBRSCRIBE_HANDLER_H
+
+
+
+ + + + +
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+ + + diff --git a/mrs_lib/include/mrs_lib/subscribe_handler.h.gcov.overview.html b/mrs_lib/include/mrs_lib/subscribe_handler.h.gcov.overview.html new file mode 100644 index 0000000000..056386c498 --- /dev/null +++ b/mrs_lib/include/mrs_lib/subscribe_handler.h.gcov.overview.html @@ -0,0 +1,136 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/subscribe_handler.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_lib/include/mrs_lib/subscribe_handler.h.gcov.png b/mrs_lib/include/mrs_lib/subscribe_handler.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..b6e9ccb1d3175600727e604938e2df9a1db1b393 GIT binary patch literal 1783 zcmVGAf72gj3K5r zbz2ND5}}4FQEmJ&0qHg3YyO-C@r%I16(bOAcI{2~uIrUq&|?~*Fbke#KB6~6I8Vnr z*#`C}y~&UtGp8aqYx()_!9H3$vYLf#J|t)Of*?k(LiRez2b~a-7VDb>@sJ(OR zSPm&vvJ`~KR`Ok-ZVqcFgM8B6WXF=d6m!tz668ytM&>Z-6K5u6q!$AOc%jcH>3fS({;hPmwMn+C2MvDs~C)tCPOw1-3bupJYJgBin5(kdU98OtK zN-*pu2VTAz1vBYHiE0uiLlN>kL#(mB6FXs73unw;3sz_yc$`3{Fzh2wZJ5Y%O{q?O z6g)UZIm3|l&g)}FbTz%1oSPcWrg26f^ROQycTEwZjt5oF07LA8$5R1_ppf;LRN)NXH-nI=1IRZ;*ZXa1Jm$BBU5$hac6W< z>vHD0c*JRm88FCYuB0SXfeBrz8I(kg#WX;~w>RzSqhg>oXf`nCRNAM4{w5XvjlTQ9 zi<_&mKLc=%xTNe^@O*xL-tYJCpTGOpo!b|_@K;}}ps7tqC`HZ1s>Z;0N`fAZxipr! zT+JxJq3Mhs445)zWWji4^t|CQ!b8ANjVo;ChlhY6?T6suCbcma-FuA(#UuKr*Q4ycwyjT-@Af7jjOV# z1}X6BnolZtX|LeqUB29-p!+za)O=u=YT11ec{{UJ2gnCyJ$DS0)QGKqEA> zyv^&elvmKyrlVVS{8|Sfw;woTVV40RMpHY^Ip6CV;4}VE?-si#x8M(3=8X zL5s=>ou>R#tqPAJ6&N4mRxM#Slrw2_gpYNmF=oCUVf0`e;s!TL)>@Lh6M z1b;Q9l#Bu*NR%Sm|N54f;T}SbW~y~$N6c$RxX$#k;(w-iXq@Ae&+a*xjc`l|iCimSGlp%iNo zmj%`H0CA`Bg?F!~%P6IkY8v=0l;Y7Tx!)1|3+Xzm-Sze((0I;u;~&MXuQxstxT(KY zX(e(pqT9~%KW^TUqLm<}a6q|Gi{807Q{a<@olDO1>&?kSZ5w1K*wbh>t$iprRF+ck ziO$Ts4mAXAeRMQ)PEX@CnHIEgiUfFjEjoFq{_I)!@FN41v;5;w+=cL$!u>PPEJ%xJ zh?{xIOs}QF171_jPJ9*c4`*F09O$uQMu)yez?5JhmHe;jSDyG-brQgzcQ(Vv?+oq; zK?^@BX1I#M8`Opk0%sintuOW+}mrx)Rs|8>y8oYETAgY|8< Z{{wkhUB=a#p|$`3002ovPDHLkV1nx6SeyU= literal 0 HcmV?d00001 diff --git a/mrs_lib/include/mrs_lib/timeout_manager.h.func-sort-c.html b/mrs_lib/include/mrs_lib/timeout_manager.h.func-sort-c.html new file mode 100644 index 0000000000..83831d662c --- /dev/null +++ b/mrs_lib/include/mrs_lib/timeout_manager.h.func-sort-c.html @@ -0,0 +1,80 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/timeout_manager.h - functions + + + + + + + + + + + + + + +
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+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : /**  \file
+       3             :      \brief TODO
+       4             :      \author Matouš Vrba - vrbamato@fel.cvut.cz
+       5             :  */
+       6             : 
+       7             : #ifndef TIMEOUT_MANAGER_H
+       8             : #define TIMEOUT_MANAGER_H
+       9             : 
+      10             : #include <ros/ros.h>
+      11             : 
+      12             : namespace mrs_lib
+      13             : {
+      14             :   /* TimeoutManager class //{ */
+      15             :   /**
+      16             :   * \brief TODO
+      17             :   *
+      18             :   */
+      19             :   class TimeoutManager
+      20             :   {
+      21             :     public:
+      22             :       // | ---------------------- public types ---------------------- |
+      23             :       using timeout_id_t = size_t;
+      24             :       using callback_t = std::function<void(const ros::Time&)>;
+      25             : 
+      26             :     public:
+      27             :       // | --------------------- public methods --------------------- |
+      28             : 
+      29             :     /*!
+      30             :       * \brief TODO
+      31             :       *
+      32             :       */
+      33             :       TimeoutManager(const ros::NodeHandle& nh, const ros::Rate& update_rate);
+      34             : 
+      35          77 :       timeout_id_t registerNew(const ros::Duration& timeout, const callback_t& callback, const ros::Time& last_reset = ros::Time::now(), const bool oneshot = false, const bool autostart = true);
+      36             : 
+      37      148709 :       void reset(const timeout_id_t id, const ros::Time& time = ros::Time::now());
+      38             : 
+      39             :       void pause(const timeout_id_t id);
+      40             : 
+      41          81 :       void start(const timeout_id_t id, const ros::Time& time = ros::Time::now());
+      42             : 
+      43             :       void pauseAll();
+      44             : 
+      45           2 :       void startAll(const ros::Time& time = ros::Time::now());
+      46             : 
+      47             :       void change(const timeout_id_t id, const ros::Duration& timeout, const callback_t& callback, const ros::Time& last_reset = ros::Time::now(), const bool oneshot = false, const bool autostart = true);
+      48             : 
+      49             :       ros::Time lastReset(const timeout_id_t id);
+      50             : 
+      51             :       bool started(const timeout_id_t id);
+      52             : 
+      53             :       /* implementation details //{ */
+      54             :       
+      55             :       private:
+      56             :         // | ---------------------- private types --------------------- |
+      57             :         struct timeout_info_t
+      58             :         {
+      59             :           bool oneshot;
+      60             :           bool started;
+      61             :           callback_t callback;
+      62             :           ros::Duration timeout;
+      63             :           ros::Time last_reset;
+      64             :           ros::Time last_callback;
+      65             :         };
+      66             :       
+      67             :       private:
+      68             :         // | --------------------- private methods -------------------- |
+      69             :         void main_timer_callback([[maybe_unused]] const ros::TimerEvent& evt);
+      70             :       
+      71             :       private:
+      72             :         // | ------------------------- members ------------------------ |
+      73             :         std::recursive_mutex m_mtx;
+      74             :         timeout_id_t m_last_id;
+      75             :         std::vector<timeout_info_t> m_timeouts;
+      76             :       
+      77             :         ros::Timer m_main_timer;
+      78             :       
+      79             :       //}
+      80             : 
+      81             :   };
+      82             :   //}
+      83             : }
+      84             : 
+      85             : #endif // TIMEOUT_MANAGER_H
+
+
+
+ + + + +
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+ + + diff --git a/mrs_lib/include/mrs_lib/timeout_manager.h.gcov.overview.html b/mrs_lib/include/mrs_lib/timeout_manager.h.gcov.overview.html new file mode 100644 index 0000000000..bc8b5520c4 --- /dev/null +++ b/mrs_lib/include/mrs_lib/timeout_manager.h.gcov.overview.html @@ -0,0 +1,42 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/timeout_manager.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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mrs_lib::ROSTimer::~ROSTimer().28
mrs_lib::MRSTimer::MRSTimer()16
mrs_lib::MRSTimer::~MRSTimer().216
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mrs_lib::MRSTimer::~MRSTimer().216
mrs_lib::ROSTimer::~ROSTimer()8
mrs_lib::ROSTimer::~ROSTimer().28
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+
          Line data    Source code
+
+       1             : #ifndef MRS_TIMER_H
+       2             : #define MRS_TIMER_H
+       3             : 
+       4             : #include <ros/ros.h>
+       5             : #include <thread>
+       6             : #include <mutex>
+       7             : #include <condition_variable>
+       8             : #include <atomic>
+       9             : 
+      10             : namespace mrs_lib
+      11             : {
+      12             :   bool breakable_sleep(const ros::Duration& dur, const std::atomic<bool>& continue_sleep);
+      13             : 
+      14             :   /**
+      15             :    * @brief Common wrapper representing the functionality of the ros::Timer.
+      16             :    *
+      17             :    * The implementation can then use either ros::Timer (the ROSTimer class)
+      18             :    * or threads and synchronization primitives from the C++ standard library
+      19             :    * (the ThreadTimer class). Both these variants implement the same interface.
+      20             :    *
+      21             :    * @note Functionality of the two implementations differs in some details.
+      22             :    */
+      23             :   class MRSTimer
+      24             :   {
+      25             :     public:
+      26             :     using callback_t = std::function<void(const ros::TimerEvent&)>;
+      27             : 
+      28             :     /**
+      29             :      * @brief stop the timer
+      30             :      */
+      31             :     virtual void stop() = 0;
+      32             : 
+      33             :     /**
+      34             :      * @brief start the timer
+      35             :      */
+      36             :     virtual void start() = 0;
+      37             : 
+      38             :     /**
+      39             :      * @brief set the timer period/duration
+      40             :      *
+      41             :      * @param duration
+      42             :      * @param reset
+      43             :      */
+      44             :     virtual void setPeriod(const ros::Duration& duration, const bool reset = true) = 0;
+      45             : 
+      46             :     /**
+      47             :      * @brief change the callback method 
+      48             :      *
+      49             :      * Usable e.g. for running thread with a specific parameter if you bind it using std::bind
+      50             :      *
+      51             :      * @param callback          callback method to be called.
+      52             :      */
+      53             :     virtual void setCallback(const std::function<void(const ros::TimerEvent&)>& callback) = 0;
+      54             : 
+      55             :     /**
+      56             :      * @brief returns true if callbacks should be called
+      57             :      *
+      58             :      * @return true if timer is running
+      59             :      */
+      60             :     virtual bool running() = 0;
+      61             : 
+      62          16 :     virtual ~MRSTimer() = default;
+      63             :     MRSTimer(const MRSTimer&) = default;
+      64             :     MRSTimer(MRSTimer&&) = default;
+      65             :     MRSTimer& operator=(const MRSTimer&) = default;
+      66             :     MRSTimer& operator=(MRSTimer&&) = default;
+      67             : 
+      68             :     protected:
+      69          16 :     MRSTimer() = default;
+      70             :   };
+      71             : 
+      72             :   // | ------------------------ ROSTimer ------------------------ |
+      73             : 
+      74             :   /* class ROSTimer //{ */
+      75             : 
+      76             :   /**
+      77             :    * @brief ros::Timer wrapper. The interface is the same as with ros::Timer, except for the initialization method.
+      78             :    */
+      79             :   class ROSTimer : public MRSTimer {
+      80             :   public:
+      81             :     ROSTimer();
+      82             : 
+      83             :     /**
+      84             :      * @brief Constructs the object.
+      85             :      *
+      86             :      * @tparam ObjectType
+      87             :      * @param nh                            ROS node handle to be used for creating the underlying ros::Timer object.
+      88             :      * @param rate                          rate at which the callback should be called.
+      89             :      * @param ObjectType::*const callback   callback method to be called.
+      90             :      * @param obj                           object for the method.
+      91             :      * @param oneshot                       whether the callback should only be called once after starting.
+      92             :      * @param autostart                     whether the timer should immediately start after construction.
+      93             :      */
+      94             :     template <class ObjectType>
+      95             :     ROSTimer(const ros::NodeHandle& nh, const ros::Rate& rate, void (ObjectType::*const callback)(const ros::TimerEvent&), ObjectType* const obj,
+      96             :              const bool oneshot = false, const bool autostart = true);
+      97             : 
+      98             :     /**
+      99             :      * @brief full constructor
+     100             :      *
+     101             :      * @tparam ObjectType
+     102             :      * @param nh                            ROS node handle to be used for creating the underlying ros::Timer object.
+     103             :      * @param duration                      desired callback period.
+     104             :      * @param ObjectType::*const callback   callback method to be called.
+     105             :      * @param obj                           object for the method.
+     106             :      * @param oneshot                       whether the callback should only be called once after starting.
+     107             :      * @param autostart                     whether the timer should immediately start after construction.
+     108             :      */
+     109             :     template <class ObjectType>
+     110             :     ROSTimer(const ros::NodeHandle& nh, const ros::Duration& duration, void (ObjectType::*const callback)(const ros::TimerEvent&), ObjectType* const obj,
+     111             :              const bool oneshot = false, const bool autostart = true);
+     112             : 
+     113             :     /**
+     114             :      * @brief stop the timer
+     115             :      */
+     116             :     virtual void stop() override;
+     117             : 
+     118             :     /**
+     119             :      * @brief start the timer
+     120             :      */
+     121             :     virtual void start() override;
+     122             : 
+     123             :     /**
+     124             :      * @brief set the timer period/duration
+     125             :      *
+     126             :      * @param duration
+     127             :      * @param reset
+     128             :      */
+     129             :     virtual void setPeriod(const ros::Duration& duration, const bool reset = true) override;
+     130             : 
+     131             :     /**
+     132             :      * @brief change the callback method
+     133             :      *
+     134             :      * Usable e.g. for running thread with a specific parameter if you bind it using std::bind
+     135             :      *
+     136             :      * @param callback          callback method to be called.
+     137             :      */
+     138             :     virtual void setCallback(const std::function<void(const ros::TimerEvent&)>& callback) override;
+     139             : 
+     140             :     /**
+     141             :      * @brief returns true if callbacks should be called
+     142             :      *
+     143             :      * @return true if timer is running
+     144             :      */
+     145             :     virtual bool running() override;
+     146             : 
+     147          16 :     virtual ~ROSTimer() override {stop();};
+     148             :     // to keep rule of five since we have a custom destructor
+     149             :     ROSTimer(const ROSTimer&) = delete;
+     150             :     ROSTimer(ROSTimer&&) = delete;
+     151             :     ROSTimer& operator=(const ROSTimer&) = delete;
+     152             :     ROSTimer& operator=(ROSTimer&&) = delete;
+     153             : 
+     154             :   private:
+     155             :     std::mutex mutex_timer_;
+     156             : 
+     157             :     std::unique_ptr<ros::Timer> timer_;
+     158             :   };
+     159             : 
+     160             :   //}
+     161             : 
+     162             :   // | ----------------------- ThreadTimer ---------------------- |
+     163             : 
+     164             :   /* class ThreadTimer //{ */
+     165             : 
+     166             :   /**
+     167             :    * @brief Custom thread-based Timers with the same interface as mrs_lib::ROSTimer.
+     168             :    */
+     169             :   class ThreadTimer : public MRSTimer {
+     170             : 
+     171             :   public:
+     172             :     ThreadTimer();
+     173             : 
+     174             :     /**
+     175             :      * @brief Constructs the object.
+     176             :      *
+     177             :      * @tparam ObjectType
+     178             :      * @param nh                            ignored (used just for consistency with ROSTimer)
+     179             :      * @param rate                          rate at which the callback should be called.
+     180             :      * @param ObjectType::*const callback   callback method to be called.
+     181             :      * @param obj                           object for the method.
+     182             :      * @param oneshot                       whether the callback should only be called once after starting.
+     183             :      * @param autostart                     whether the timer should immediately start after construction.
+     184             :      */
+     185             :     template <class ObjectType>
+     186             :     ThreadTimer(const ros::NodeHandle& nh, const ros::Rate& rate, void (ObjectType::*const callback)(const ros::TimerEvent&), ObjectType* const obj,
+     187             :                 const bool oneshot = false, const bool autostart = true);
+     188             : 
+     189             :     /**
+     190             :      * @brief Constructs the object.
+     191             :      *
+     192             :      * @tparam ObjectType
+     193             :      * @param nh                            ignored (used just for consistency with ROSTimer)
+     194             :      * @param duration                      desired callback period.
+     195             :      * @param ObjectType::*const callback   callback method to be called.
+     196             :      * @param obj                           object for the method.
+     197             :      * @param oneshot                       whether the callback should only be called once after starting.
+     198             :      * @param autostart                     whether the timer should immediately start after construction.
+     199             :      */
+     200             :     template <class ObjectType>
+     201             :     ThreadTimer(const ros::NodeHandle& nh, const ros::Duration& duration, void (ObjectType::*const callback)(const ros::TimerEvent&), ObjectType* const obj,
+     202             :                 bool oneshot = false, const bool autostart = true);
+     203             : 
+     204             :     /**
+     205             :      * @brief stop the timer
+     206             :      *
+     207             :      * No more callbacks will be called after this method returns.
+     208             :      */
+     209             :     virtual void stop() override;
+     210             : 
+     211             :     /**
+     212             :      * @brief start the timer
+     213             :      *
+     214             :      * The first callback will be called in now + period.
+     215             :      *
+     216             :      * @note If the timer is already started, nothing will change.
+     217             :      */
+     218             :     virtual void start() override;
+     219             : 
+     220             :     /**
+     221             :      * @brief set the timer period/duration
+     222             :      *
+     223             :      * The new period will be applied after the next callback.
+     224             :      *
+     225             :      * @param duration the new desired callback period.
+     226             :      * @param reset    ignored in this implementation.
+     227             :      */
+     228             :     virtual void setPeriod(const ros::Duration& duration, const bool reset = true) override;
+     229             :     
+     230             :     /**
+     231             :      * @brief change the callback method
+     232             :      *
+     233             :      * Usable e.g. for running thread with a specific parameter if you bind it using std::bind
+     234             :      *
+     235             :      * @param callback          callback method to be called.
+     236             :      */
+     237             :     virtual void setCallback(const std::function<void(const ros::TimerEvent&)>& callback) override;
+     238             : 
+     239             :     /**
+     240             :      * @brief returns true if callbacks should be called
+     241             :      *
+     242             :      * @return true if timer is running
+     243             :      */
+     244             :     virtual bool running() override;
+     245             : 
+     246             :     /**
+     247             :      * @brief stops the timer and then destroys the object
+     248             :      *
+     249             :      * No more callbacks will be called when the destructor is started.
+     250             :      */
+     251          16 :     virtual ~ThreadTimer() override {stop();};
+     252             :     // to keep rule of five since we have a custom destructor
+     253             :     ThreadTimer(const ThreadTimer&) = delete;
+     254             :     ThreadTimer(ThreadTimer&&) = delete;
+     255             :     ThreadTimer& operator=(const ThreadTimer&) = delete;
+     256             :     ThreadTimer& operator=(ThreadTimer&&) = delete;
+     257             : 
+     258             :   private:
+     259             :     class Impl;
+     260             : 
+     261             :     std::unique_ptr<Impl> impl_;
+     262             : 
+     263             :   };  // namespace mrs_lib
+     264             : 
+     265             :   //}
+     266             : 
+     267             : #include <mrs_lib/impl/timer.hpp>
+     268             : 
+     269             : }  // namespace mrs_lib
+     270             : 
+     271             : #endif  // MRS_TIMER_H
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/timer.h.gcov.overview.html b/mrs_lib/include/mrs_lib/timer.h.gcov.overview.html new file mode 100644 index 0000000000..d88669cb74 --- /dev/null +++ b/mrs_lib/include/mrs_lib/timer.h.gcov.overview.html @@ -0,0 +1,88 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/timer.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_lib/include/mrs_lib/timer.h.gcov.png b/mrs_lib/include/mrs_lib/timer.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..7b39300b63d0b8b3c26f48a5ebff8d932b14161e GIT binary patch literal 935 zcmV;Y16cftP)B8%(T`(U zA#=WBMF1CF1_~tAoSLB3wB9qhID)EY5bF;NXw0rrjSX-(rUn5I6AFtPa11Gcg#HQe zE_f2C;RF*cH~`O-js1AMUa$4Ftu)Dn~K2rAD4UkSMwq7W+zZGcHiPu=c zrXffD+=5;!&?IxI9zbTy9P z)0{)RwWl9ZGF?8SPAFC_>antqrC^khwi%V6D&cs3Hsn@er!g8VLEzF{3TnF{GKWp$ zQIMvM6pW+d${^8tNrfA<$vie>Kqw%3gjfimbKJ_N-Cc99{C%Egg@3vL?t{5$#wet| zKyA`b)9eky*{mAeQ4Eq4`=sqR`c;5&Z-*UH=NDb*m^jV(d&FTd#>C6ukl~H ztj9N&^7z13)RJ0gHl(#Ft}WQJZd!JXHC?Y*+-cP0uS7D*oYpvXLWvrSNfY*a`@*Cd z>)8~4hkjR}JNZ@*L_q(f$vxBvAbX9jk#rVklg9sbB$ZP=GfRBj3Em^A5-h4N@W$j0 zNyQ{>DHHkDaikEC_M3eBV+2PHm + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/transformer.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - transformer.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:516085.0 %
Date:2024-04-17 23:52:03Functions:141877.8 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
std::optional<boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > > mrs_lib::Transformer::transformSingle<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
std::optional<boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > > mrs_lib::Transformer::transformSingle<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
std::optional<boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > > mrs_lib::Transformer::transform<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)0
std::optional<boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > > mrs_lib::Transformer::transform<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)0
std::optional<boost::shared_ptr<geometry_msgs::Quaternion_<std::allocator<void> > > > mrs_lib::Transformer::transformSingle<geometry_msgs::Quaternion_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<geometry_msgs::Quaternion_<std::allocator<void> > const> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)1
std::optional<boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > > > mrs_lib::Transformer::transformSingle<geometry_msgs::PointStamped_<std::allocator<void> > >(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
std::optional<boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > > > mrs_lib::Transformer::transformSingle<geometry_msgs::PointStamped_<std::allocator<void> > >(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
mrs_lib::Transformer::inverse(geometry_msgs::TransformStamped_<std::allocator<void> > const&)1
mrs_lib::Transformer::setLookupTimeout(ros::Duration)2
mrs_lib::Transformer::setDefaultPrefix(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)285
mrs_lib::Transformer::retryLookupNewest(bool)456
mrs_lib::Transformer::resolveFrame(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1044
mrs_lib::Transformer::setDefaultFrame(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)440352
mrs_lib::Transformer::frame_from[abi:cxx11](geometry_msgs::TransformStamped_<std::allocator<void> >&)1866703
mrs_lib::Transformer::create_transform(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, geometry_msgs::Transform_<std::allocator<void> > const&)1866717
mrs_lib::Transformer::frame_from[abi:cxx11](geometry_msgs::TransformStamped_<std::allocator<void> > const&)1868847
mrs_lib::Transformer::frame_to[abi:cxx11](geometry_msgs::TransformStamped_<std::allocator<void> > const&)1868855
mrs_lib::Transformer::frame_to[abi:cxx11](geometry_msgs::TransformStamped_<std::allocator<void> >&)1869141
+
+
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Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/include/mrs_lib/transformer.h.func.html b/mrs_lib/include/mrs_lib/transformer.h.func.html new file mode 100644 index 0000000000..eb1852efac --- /dev/null +++ b/mrs_lib/include/mrs_lib/transformer.h.func.html @@ -0,0 +1,152 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/transformer.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib - transformer.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:516085.0 %
Date:2024-04-17 23:52:03Functions:141877.8 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::Transformer::frame_from[abi:cxx11](geometry_msgs::TransformStamped_<std::allocator<void> > const&)1868847
mrs_lib::Transformer::frame_from[abi:cxx11](geometry_msgs::TransformStamped_<std::allocator<void> >&)1866703
mrs_lib::Transformer::resolveFrame(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1044
mrs_lib::Transformer::setDefaultFrame(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)440352
std::optional<boost::shared_ptr<geometry_msgs::Quaternion_<std::allocator<void> > > > mrs_lib::Transformer::transformSingle<geometry_msgs::Quaternion_<std::allocator<void> > >(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, boost::shared_ptr<geometry_msgs::Quaternion_<std::allocator<void> > const> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)1
std::optional<boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > > > mrs_lib::Transformer::transformSingle<geometry_msgs::PointStamped_<std::allocator<void> > >(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
std::optional<boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > > > mrs_lib::Transformer::transformSingle<geometry_msgs::PointStamped_<std::allocator<void> > >(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
std::optional<boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > > mrs_lib::Transformer::transformSingle<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
std::optional<boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > > mrs_lib::Transformer::transformSingle<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_lib::Transformer::create_transform(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, geometry_msgs::Transform_<std::allocator<void> > const&)1866717
mrs_lib::Transformer::setDefaultPrefix(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)285
mrs_lib::Transformer::setLookupTimeout(ros::Duration)2
mrs_lib::Transformer::retryLookupNewest(bool)456
mrs_lib::Transformer::inverse(geometry_msgs::TransformStamped_<std::allocator<void> > const&)1
mrs_lib::Transformer::frame_to[abi:cxx11](geometry_msgs::TransformStamped_<std::allocator<void> > const&)1868855
mrs_lib::Transformer::frame_to[abi:cxx11](geometry_msgs::TransformStamped_<std::allocator<void> >&)1869141
std::optional<boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > > mrs_lib::Transformer::transform<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)0
std::optional<boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > > mrs_lib::Transformer::transform<mrs_msgs::ReferenceStamped_<std::allocator<void> > >(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > > const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)0
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+
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Current view:top level - mrs_lib/include/mrs_lib - transformer.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:516085.0 %
Date:2024-04-17 23:52:03Functions:141877.8 %
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          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : 
+       3             : /**  \file Implements the Transformer class - wrapper for ROS's TF2 lookups and transformations.
+       4             :  *   \brief A wrapper for easier work with tf2 transformations.
+       5             :  *   \author Tomas Baca - tomas.baca@fel.cvut.cz
+       6             :  *   \author Matouš Vrba - matous.vrba@fel.cvut.cz
+       7             :  */
+       8             : #ifndef TRANSFORMER_H
+       9             : #define TRANSFORMER_H
+      10             : 
+      11             : /* #define EIGEN_DONT_VECTORIZE */
+      12             : /* #define EIGEN_DISABLE_UNALIGNED_ARRAY_ASSERT */
+      13             : 
+      14             : /* includes //{ */
+      15             : 
+      16             : #include <ros/ros.h>
+      17             : 
+      18             : #include <tf2_ros/transform_listener.h>
+      19             : #include <tf2_ros/buffer.h>
+      20             : #include <tf2_eigen/tf2_eigen.h>
+      21             : #include <tf2_geometry_msgs/tf2_geometry_msgs.h>
+      22             : #include <tf/transform_datatypes.h>
+      23             : #include <tf_conversions/tf_eigen.h>
+      24             : 
+      25             : #include <mrs_msgs/ReferenceStamped.h>
+      26             : 
+      27             : #include <geometry_msgs/PoseStamped.h>
+      28             : #include <geometry_msgs/Vector3Stamped.h>
+      29             : #include <std_msgs/Header.h>
+      30             : 
+      31             : #include <mrs_lib/geometry/misc.h>
+      32             : 
+      33             : #include <pcl_ros/point_cloud.h>
+      34             : #include <pcl_ros/transforms.h>
+      35             : #include <pcl_conversions/pcl_conversions.h>
+      36             : 
+      37             : #include <mutex>
+      38             : #include <experimental/type_traits>
+      39             : 
+      40             : //}
+      41             : 
+      42             : namespace tf2
+      43             : {
+      44             : 
+      45             :   template <typename pt_t>
+      46             :   void doTransform(const pcl::PointCloud<pt_t>& cloud_in, pcl::PointCloud<pt_t>& cloud_out, const geometry_msgs::TransformStamped& transform)
+      47             :   {
+      48             :     pcl_ros::transformPointCloud(cloud_in, cloud_out, transform.transform);
+      49             :     pcl_conversions::toPCL(transform.header.stamp, cloud_out.header.stamp);
+      50             :     cloud_out.header.frame_id = transform.header.frame_id;
+      51             :   }
+      52             : 
+      53             : }  // namespace tf2
+      54             : 
+      55             : namespace mrs_lib
+      56             : {
+      57             : 
+      58             :   static const std::string UTM_ORIGIN = "utm_origin";
+      59             :   static const std::string LATLON_ORIGIN = "latlon_origin";
+      60             : 
+      61             :   /**
+      62             :    * \brief A convenience wrapper class for ROS's native TF2 API to simplify transforming of various messages.
+      63             :    *
+      64             :    * Implements optional automatic frame prefix deduction, seamless transformation lattitude/longitude coordinates and UTM coordinates, simple transformation of MRS messages etc.
+      65             :    */
+      66             :   /* class Transformer //{ */
+      67             : 
+      68             :   class Transformer
+      69             :   {
+      70             : 
+      71             :   public:
+      72             :     /* Constructor, assignment operator and overloads //{ */
+      73             : 
+      74             :     /**
+      75             :      * \brief A convenience constructor that doesn't initialize anything.
+      76             :      *
+      77             :      * This constructor is just to enable usign the Transformer as a member variable of nodelets etc.
+      78             :      * To actually initialize the class, use the alternative constructor.
+      79             :      *
+      80             :      * \note This constructor doesn't initialize the TF2 transform listener and all calls to the transformation-related methods of an object constructed using this method will fail.
+      81             :      */
+      82             :     Transformer();
+      83             : 
+      84             :     /**
+      85             :      * \brief The main constructor that actually initializes stuff.
+      86             :      *
+      87             :      * This constructor initializes the class and the TF2 transform listener.
+      88             :      *
+      89             :      * \param node_name   the name of the node running the transformer, is used in ROS prints. If you don't care, just set it to an empty string.
+      90             :      * \param cache_time  duration of the transformation buffer's cache into the past that will be kept.
+      91             :      */
+      92             :     Transformer(const std::string& node_name, const ros::Duration& cache_time = ros::Duration(tf2_ros::Buffer::DEFAULT_CACHE_TIME));
+      93             : 
+      94             :     /**
+      95             :      * \brief The main constructor that actually initializes stuff.
+      96             :      *
+      97             :      * This constructor initializes the class and the TF2 transform listener.
+      98             :      *
+      99             :      * \param nh          the node handle to be used for subscribing to the transformations.
+     100             :      * \param node_name   the name of the node running the transformer, is used in ROS prints. If you don't care, just set it to an empty string.
+     101             :      * \param cache_time  duration of the transformation buffer's cache into the past that will be kept.
+     102             :      */
+     103             :     Transformer(const ros::NodeHandle& nh, const std::string& node_name = std::string(), const ros::Duration& cache_time = ros::Duration(tf2_ros::Buffer::DEFAULT_CACHE_TIME));
+     104             : 
+     105             :     /**
+     106             :      * \brief A convenience move assignment operator.
+     107             :      *
+     108             :      * This operator moves all data from the object that is being assigned from, invalidating it.
+     109             :      *
+     110             :      * \param  other  the object to assign from. It will be invalid after this method returns.
+     111             :      * \return        a reference to the object being assigned to.
+     112             :      */
+     113             :     Transformer& operator=(Transformer&& other);
+     114             : 
+     115             :     //}
+     116             : 
+     117             :     // | ------------------ Configuration methods ----------------- |
+     118             : 
+     119             :     /* setDefaultFrame() //{ */
+     120             : 
+     121             :     /**
+     122             :      * \brief Sets the default frame ID to be used instead of any empty frame ID.
+     123             :      *
+     124             :      * If you call e.g. the transform() method with a message that has an empty header.frame_id field, this value will be used instead.
+     125             :      *
+     126             :      * \param frame_id the default frame ID. Use an empty string to disable default frame ID deduction.
+     127             :      *
+     128             :      * \note Disabled by default.
+     129             :      */
+     130      440352 :     void setDefaultFrame(const std::string& frame_id)
+     131             :     {
+     132      880230 :       std::scoped_lock lck(mutex_);
+     133      440215 :       default_frame_id_ = frame_id;
+     134      440157 :     }
+     135             : 
+     136             :     //}
+     137             : 
+     138             :     /* setDefaultPrefix() //{ */
+     139             : 
+     140             :     /**
+     141             :      * \brief Sets the default frame ID prefix to be used if no prefix is present in the frame.
+     142             :      *
+     143             :      * If you call any method with a frame ID that doesn't begin with this string, it will be automatically prefixed including a forward slash between the prefix and raw frame ID.
+     144             :      * The forward slash should therefore *not* be included in the prefix.
+     145             :      *
+     146             :      * Example frame ID resolution assuming default prefix is "uav1":
+     147             :      *   "local_origin" -> "uav1/local_origin"
+     148             :      *
+     149             :      * \param prefix the default frame ID prefix (without the forward slash at the end). Use an empty string to disable default frame ID prefixing.
+     150             :      *
+     151             :      * \note Disabled by default. The prefix will be applied as a namespace (with a forward slash between the prefix and raw frame ID).
+     152             :      */
+     153         285 :     void setDefaultPrefix(const std::string& prefix)
+     154             :     {
+     155         570 :       std::scoped_lock lck(mutex_);
+     156         285 :       if (prefix.empty())
+     157           1 :         prefix_ = "";
+     158             :       else
+     159         284 :         prefix_ = prefix + "/";
+     160         285 :     }
+     161             : 
+     162             :     //}
+     163             : 
+     164             :     /* setLatLon() //{ */
+     165             : 
+     166             :     /**
+     167             :      * \brief Sets the curret lattitude and longitude for UTM zone calculation.
+     168             :      *
+     169             :      * The Transformer uses this to deduce the current UTM zone used for transforming stuff to latlon_origin.
+     170             :      *
+     171             :      * \param lat the latitude in degrees.
+     172             :      * \param lon the longitude in degrees.
+     173             :      *
+     174             :      * \note Any transformation to latlon_origin will fail if this function is not called first!
+     175             :      */
+     176             :     void setLatLon(const double lat, const double lon);
+     177             : 
+     178             :     //}
+     179             : 
+     180             :     /* setLookupTimeout() //{ */
+     181             : 
+     182             :     /**
+     183             :      * \brief Set a timeout for transform lookup.
+     184             :      *
+     185             :      * The transform lookup operation will block up to this duration if the transformation is not available immediately.
+     186             :      *
+     187             :      * \note Disabled by default.
+     188             :      *
+     189             :      * \param timeout the lookup timeout. Set to zero to disable blocking.
+     190             :      */
+     191           2 :     void setLookupTimeout(const ros::Duration timeout = ros::Duration(0))
+     192             :     {
+     193           2 :       std::scoped_lock lck(mutex_);
+     194           2 :       lookup_timeout_ = timeout;
+     195           2 :     }
+     196             : 
+     197             :     //}
+     198             : 
+     199             :     /* retryLookupNewest() //{ */
+     200             : 
+     201             :     /**
+     202             :      * \brief Enable/disable retry of a failed transform lookup with \p ros::Time(0).
+     203             :      *
+     204             :      * If enabled, a failed transform lookup will be retried.
+     205             :      * The new try will ignore the requested timestamp and will attempt to fetch the latest transformation between the two frames.
+     206             :      *
+     207             :      * \note Disabled by default.
+     208             :      *
+     209             :      * \param retry enables or disables retry.
+     210             :      */
+     211         456 :     void retryLookupNewest(const bool retry = true)
+     212             :     {
+     213         456 :       std::scoped_lock lck(mutex_);
+     214         456 :       retry_lookup_newest_ = retry;
+     215         456 :     }
+     216             : 
+     217             :     //}
+     218             :     
+     219             :     /* beQuiet() //{ */
+     220             : 
+     221             :     /**
+     222             :      * \brief Enable/disable some prints that may be too noisy.
+     223             :      *
+     224             :      * \param quiet enables or disables quiet mode.
+     225             :      *
+     226             :      * \note Disabled by default.
+     227             :      */
+     228             :     void beQuiet(const bool quiet = true)
+     229             :     {
+     230             :       std::scoped_lock lck(mutex_);
+     231             :       quiet_ = quiet;
+     232             :     }
+     233             : 
+     234             :     //}
+     235             : 
+     236             :     /* resolveFrame() //{ */
+     237             :     /**
+     238             :      * \brief Deduce the full frame ID from a shortened or empty string using current default prefix and default frame rules.
+     239             :      *
+     240             :      * Example assuming default prefix is "uav1" and default frame is "uav1/gps_origin":
+     241             :      *   "" -> "uav1/gps_origin"
+     242             :      *   "local_origin" -> "uav1/local_origin"
+     243             :      *
+     244             :      * \param frame_id The frame ID to be resolved.
+     245             :      *
+     246             :      * \return The resolved frame ID.
+     247             :      */
+     248        1044 :     std::string resolveFrame(const std::string& frame_id)
+     249             :     {
+     250        2088 :       std::scoped_lock lck(mutex_);
+     251        2088 :       return resolveFrameImpl(frame_id);
+     252             :     }
+     253             :     //}
+     254             : 
+     255             :     /* transformSingle() //{ */
+     256             : 
+     257             :     /**
+     258             :      * \brief Transforms a single variable to a new frame and returns it or \p std::nullopt if transformation fails.
+     259             :      *
+     260             :      * \param what the object to be transformed.
+     261             :      * \param to_frame the target frame ID.
+     262             :      *
+     263             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     264             :      */
+     265             :     template <class T>
+     266             :     [[nodiscard]] std::optional<T> transformSingle(const T& what, const std::string& to_frame);
+     267             : 
+     268             :     /**
+     269             :      * \brief Transforms a single variable to a new frame.
+     270             :      *
+     271             :      * A convenience override for shared pointers.
+     272             :      *
+     273             :      * \param what The object to be transformed.
+     274             :      * \param to_frame The target fram ID.
+     275             :      *
+     276             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     277             :      */
+     278             :     template <class T>
+     279           1 :     [[nodiscard]] std::optional<boost::shared_ptr<T>> transformSingle(const boost::shared_ptr<T>& what, const std::string& to_frame)
+     280             :     {
+     281           1 :       return transformSingle(boost::shared_ptr<const T>(what), to_frame);
+     282             :     }
+     283             : 
+     284             :     /**
+     285             :      * \brief Transforms a single variable to a new frame.
+     286             :      *
+     287             :      * A convenience override for shared pointers to const.
+     288             :      *
+     289             :      * \param what The object to be transformed.
+     290             :      * \param to_frame The target fram ID.
+     291             :      *
+     292             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     293             :      */
+     294             :     template <class T>
+     295           1 :     [[nodiscard]] std::optional<boost::shared_ptr<T>> transformSingle(const boost::shared_ptr<const T>& what, const std::string& to_frame)
+     296             :     {
+     297           2 :       auto ret = transformSingle(*what, to_frame);
+     298           1 :       if (ret == std::nullopt)
+     299           0 :         return std::nullopt;
+     300             :       else
+     301           1 :         return boost::make_shared<T>(std::move(ret.value()));
+     302             :     }
+     303             : 
+     304             :     /**
+     305             :      * \brief Transforms a single variable to a new frame and returns it or \p std::nullopt if transformation fails.
+     306             :      *
+     307             :      * A convenience overload for headerless variables.
+     308             :      *
+     309             :      * \param from_frame the original target frame ID.
+     310             :      * \param what the object to be transformed.
+     311             :      * \param to_frame the target frame ID.
+     312             :      * \param time_stamp the time of the transformation.
+     313             :      *
+     314             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     315             :      */
+     316             :     template <class T>
+     317             :     [[nodiscard]] std::optional<T> transformSingle(const std::string& from_frame, const T& what, const std::string& to_frame, const ros::Time& time_stamp = ros::Time(0));
+     318             : 
+     319             :     /**
+     320             :      * \brief Transforms a single variable to a new frame and returns it or \p std::nullopt if transformation fails.
+     321             :      *
+     322             :      * A convenience overload for shared pointers to headerless variables.
+     323             :      *
+     324             :      * \param from_frame the original target frame ID.
+     325             :      * \param what the object to be transformed.
+     326             :      * \param to_frame the target frame ID.
+     327             :      * \param time_stamp the time of the transformation.
+     328             :      *
+     329             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     330             :      */
+     331             :     template <class T>
+     332             :     [[nodiscard]] std::optional<boost::shared_ptr<T>> transformSingle(const std::string& from_frame, const boost::shared_ptr<T>& what, const std::string& to_frame, const ros::Time& time_stamp = ros::Time(0))
+     333             :     {
+     334             :       return transformSingle(from_frame, boost::shared_ptr<const T>(what), to_frame, time_stamp);
+     335             :     }
+     336             : 
+     337             :     /**
+     338             :      * \brief Transforms a single variable to a new frame and returns it or \p std::nullopt if transformation fails.
+     339             :      *
+     340             :      * A convenience overload for shared pointers to const headerless variables.
+     341             :      *
+     342             :      * \param from_frame the original target frame ID.
+     343             :      * \param what the object to be transformed.
+     344             :      * \param to_frame the target frame ID.
+     345             :      * \param time_stamp the time of the transformation.
+     346             :      *
+     347             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     348             :      */
+     349             :     template <class T>
+     350           1 :     [[nodiscard]] std::optional<boost::shared_ptr<T>> transformSingle(const std::string& from_frame, const boost::shared_ptr<const T>& what, const std::string& to_frame, const ros::Time& time_stamp = ros::Time(0))
+     351             :     {
+     352           1 :       auto ret = transformSingle(from_frame, *what, to_frame, time_stamp);
+     353           1 :       if (ret == std::nullopt)
+     354           0 :         return std::nullopt;
+     355             :       else
+     356           1 :         return boost::make_shared<T>(std::move(ret.value()));
+     357             :     }
+     358             : 
+     359             :     //}
+     360             : 
+     361             :     /* transform() //{ */
+     362             : 
+     363             :     /**
+     364             :      * \brief Transform a variable to new frame using a particular transformation.
+     365             :      *
+     366             :      * \param tf The transformation to be used.
+     367             :      * \param what The object to be transformed.
+     368             :      *
+     369             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     370             :      */
+     371             :     template <class T>
+     372             :     [[nodiscard]] std::optional<T> transform(const T& what, const geometry_msgs::TransformStamped& tf);
+     373             : 
+     374             :     /**
+     375             :      * \brief Transform a variable to new frame using a particular transformation.
+     376             :      *
+     377             :      * A convenience override for shared pointers to const.
+     378             :      *
+     379             :      * \param tf The transformation to be used.
+     380             :      * \param what The object to be transformed.
+     381             :      *
+     382             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     383             :      */
+     384             :     template <class T>
+     385           0 :     [[nodiscard]] std::optional<boost::shared_ptr<T>> transform(const boost::shared_ptr<const T>& what, const geometry_msgs::TransformStamped& tf)
+     386             :     {
+     387           0 :       auto ret = transform(*what, tf);
+     388           0 :       if (ret == std::nullopt)
+     389           0 :         return std::nullopt;
+     390             :       else
+     391           0 :         return boost::make_shared<T>(std::move(ret.value()));
+     392             :     }
+     393             : 
+     394             :     /**
+     395             :      * \brief Transform a variable to new frame using a particular transformation.
+     396             :      *
+     397             :      * A convenience override for shared pointers.
+     398             :      *
+     399             :      * \param tf The transformation to be used.
+     400             :      * \param what The object to be transformed.
+     401             :      *
+     402             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     403             :      */
+     404             :     template <class T>
+     405           0 :     [[nodiscard]] std::optional<boost::shared_ptr<T>> transform(const boost::shared_ptr<T>& what, const geometry_msgs::TransformStamped& tf)
+     406             :     {
+     407           0 :       return transform(boost::shared_ptr<const T>(what), tf);
+     408             :     }
+     409             : 
+     410             :     //}
+     411             : 
+     412             :     /* transformAsVector() method //{ */
+     413             :     /**
+     414             :      * \brief Transform an Eigen::Vector3d (interpreting it as a vector).
+     415             :      *
+     416             :      * Only the rotation will be applied to the variable.
+     417             :      *
+     418             :      * \param tf The transformation to be used.
+     419             :      * \param what The vector to be transformed.
+     420             :      *
+     421             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     422             :      */
+     423             :     [[nodiscard]] std::optional<Eigen::Vector3d> transformAsVector(const Eigen::Vector3d& what, const geometry_msgs::TransformStamped& tf);
+     424             : 
+     425             :     /**
+     426             :      * \brief Transform an Eigen::Vector3d (interpreting it as a vector).
+     427             :      *
+     428             :      * Only the rotation will be applied to the variable.
+     429             :      *
+     430             :      * \param from_frame  The current frame of \p what.
+     431             :      * \param what        The vector to be transformed.
+     432             :      * \param to_frame    The desired frame of \p what.
+     433             :      * \param time_stamp  From which time to take the transformation (use \p ros::Time(0) for the latest time).
+     434             :      *
+     435             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     436             :      */
+     437             :     [[nodiscard]] std::optional<Eigen::Vector3d> transformAsVector(const std::string& from_frame, const Eigen::Vector3d& what, const std::string& to_frame, const ros::Time& time_stamp = ros::Time(0));
+     438             :     //}
+     439             : 
+     440             :     /* transformAsPoint() method //{ */
+     441             :     /**
+     442             :      * \brief Transform an Eigen::Vector3d (interpreting it as a point).
+     443             :      *
+     444             :      * Both the rotation and translation will be applied to the variable.
+     445             :      *
+     446             :      * \param tf The transformation to be used.
+     447             :      * \param what The object to be transformed.
+     448             :      *
+     449             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     450             :      */
+     451             :     [[nodiscard]] std::optional<Eigen::Vector3d> transformAsPoint(const Eigen::Vector3d& what, const geometry_msgs::TransformStamped& tf);
+     452             : 
+     453             :     /**
+     454             :      * \brief Transform an Eigen::Vector3d (interpreting it as a point).
+     455             :      *
+     456             :      * Both the rotation and translation will be applied to the variable.
+     457             :      *
+     458             :      * \param from_frame  The current frame of \p what.
+     459             :      * \param what The object to be transformed.
+     460             :      * \param to_frame    The desired frame of \p what.
+     461             :      * \param time_stamp  From which time to take the transformation (use \p ros::Time(0) for the latest time).
+     462             :      *
+     463             :      * \return \p std::nullopt if failed, optional containing the transformed object otherwise.
+     464             :      */
+     465             :     [[nodiscard]] std::optional<Eigen::Vector3d> transformAsPoint(const std::string& from_frame, const Eigen::Vector3d& what, const std::string& to_frame, const ros::Time& time_stamp = ros::Time(0));
+     466             :     //}
+     467             : 
+     468             :     /* getTransform() //{ */
+     469             : 
+     470             :     /**
+     471             :      * \brief Obtains a transform between two frames in a given time.
+     472             :      *
+     473             :      * \param from_frame The original frame of the transformation.
+     474             :      * \param to_frame The target frame of the transformation.
+     475             :      * \param time_stamp The time stamp of the transformation. (0 will get the latest)
+     476             :      *
+     477             :      * \return \p std::nullopt if failed, optional containing the requested transformation otherwise.
+     478             :      */
+     479             :     [[nodiscard]] std::optional<geometry_msgs::TransformStamped> getTransform(const std::string& from_frame, const std::string& to_frame, const ros::Time& time_stamp = ros::Time(0));
+     480             : 
+     481             :     /**
+     482             :      * \brief Obtains a transform between two frames in a given time.
+     483             :      *
+     484             :      * This overload enables the user to select a different time of the source frame and the target frame.
+     485             :      *
+     486             :      * \param from_frame The original frame of the transformation.
+     487             :      * \param from_stamp The time at which the original frame should be evaluated. (0 will get the latest)
+     488             :      * \param to_frame The target frame of the transformation.
+     489             :      * \param to_stamp The time to which the data should be transformed. (0 will get the latest) 
+     490             :      * \param fixed_frame The frame that may be assumed constant in time (the "world" frame).
+     491             :      *
+     492             :      * \return \p std::nullopt if failed, optional containing the requested transformation otherwise.
+     493             :      *
+     494             :      * \note An example of when this API may be useful is explained here: http://wiki.ros.org/tf2/Tutorials/Time%20travel%20with%20tf2%20%28C%2B%2B%29
+     495             :      */
+     496             :     [[nodiscard]] std::optional<geometry_msgs::TransformStamped> getTransform(const std::string& from_frame, const ros::Time& from_stamp, const std::string& to_frame, const ros::Time& to_stamp, const std::string& fixed_frame);
+     497             : 
+     498             :     //}
+     499             : 
+     500             :   private:
+     501             :     /* private members, methods etc //{ */
+     502             : 
+     503             :     std::mutex mutex_;
+     504             : 
+     505             :     // keeps track whether a non-basic constructor was called and the transform listener is initialized
+     506             :     bool initialized_ = false;
+     507             :     std::string node_name_;
+     508             : 
+     509             :     std::unique_ptr<tf2_ros::Buffer> tf_buffer_;
+     510             :     std::unique_ptr<tf2_ros::TransformListener> tf_listener_ptr_;
+     511             : 
+     512             :     // user-configurable options
+     513             :     std::string default_frame_id_ = "";
+     514             :     std::string prefix_ = ""; // if not empty, includes the forward slash
+     515             :     bool quiet_ = false;
+     516             :     ros::Duration lookup_timeout_ = ros::Duration(0);
+     517             :     bool retry_lookup_newest_ = false;
+     518             : 
+     519             :     bool got_utm_zone_ = false;
+     520             :     std::array<char, 10> utm_zone_ = {};
+     521             : 
+     522             :     // returns the first namespace prefix of the frame (if any) includin the forward slash
+     523             :     std::string getFramePrefix(const std::string& frame_id);
+     524             : 
+     525             :     template <class T>
+     526             :     std::optional<T> transformImpl(const geometry_msgs::TransformStamped& tf, const T& what);
+     527             :     std::optional<mrs_msgs::ReferenceStamped> transformImpl(const geometry_msgs::TransformStamped& tf, const mrs_msgs::ReferenceStamped& what);
+     528             :     std::optional<Eigen::Vector3d> transformImpl(const geometry_msgs::TransformStamped& tf, const Eigen::Vector3d& what);
+     529             : 
+     530             :     [[nodiscard]] std::optional<geometry_msgs::TransformStamped> getTransformImpl(const std::string& from_frame, const std::string& to_frame, const ros::Time& time_stamp, const std::string& latlon_frame);
+     531             :     [[nodiscard]] std::optional<geometry_msgs::TransformStamped> getTransformImpl(const std::string& from_frame, const ros::Time& from_stamp, const std::string& to_frame, const ros::Time& to_stamp, const std::string& fixed_frame, const std::string& latlon_frame);
+     532             : 
+     533             :     std::string resolveFrameImpl(const std::string& frame_id);
+     534             : 
+     535             :     template <class T>
+     536             :     std::optional<T> doTransform(const T& what, const geometry_msgs::TransformStamped& tf);
+     537             : 
+     538             :     //}
+     539             : 
+     540             :     // | ------------------- some helper methods ------------------ |
+     541             :   public:
+     542             :     /* frame_from(), frame_to() and inverse() methods //{ */
+     543             :     
+     544             :     /**
+     545             :      * \brief A convenience function that returns the frame from which the message transforms.
+     546             :      *
+     547             :      * \param msg the message representing the transformation.
+     548             :      * \return    the frame from which the transformation in \msg transforms.
+     549             :      */
+     550     1868847 :     static constexpr const std::string& frame_from(const geometry_msgs::TransformStamped& msg)
+     551             :     {
+     552     1868847 :       return msg.child_frame_id;
+     553             :     }
+     554             :     
+     555             :     /**
+     556             :      * \brief A convenience function that returns the frame from which the message transforms.
+     557             :      *
+     558             :      * This overload returns a reference to the string in the message representing the frame id so that it can be modified.
+     559             :      *
+     560             :      * \param msg the message representing the transformation.
+     561             :      * \return    a reference to the field in the message containing the string with the frame id from which the transformation in \msg transforms.
+     562             :      */
+     563     1866703 :     static constexpr std::string& frame_from(geometry_msgs::TransformStamped& msg)
+     564             :     {
+     565     1866703 :       return msg.child_frame_id;
+     566             :     }
+     567             :     
+     568             :     /**
+     569             :      * \brief A convenience function that returns the frame to which the message transforms.
+     570             :      *
+     571             :      * \param msg the message representing the transformation.
+     572             :      * \return    the frame to which the transformation in \msg transforms.
+     573             :      */
+     574     1868855 :     static constexpr const std::string& frame_to(const geometry_msgs::TransformStamped& msg)
+     575             :     {
+     576     1868855 :       return msg.header.frame_id;
+     577             :     }
+     578             : 
+     579             :     /**
+     580             :      * \brief A convenience function that returns the frame to which the message transforms.
+     581             :      *
+     582             :      * This overload returns a reference to the string in the message representing the frame id so that it can be modified.
+     583             :      *
+     584             :      * \param msg the message representing the transformation.
+     585             :      * \return    a reference to the field in the message containing the string with the frame id to which the transformation in \msg transforms.
+     586             :      */
+     587     1869141 :     static constexpr std::string& frame_to(geometry_msgs::TransformStamped& msg)
+     588             :     {
+     589     1869141 :       return msg.header.frame_id;
+     590             :     }
+     591             : 
+     592             :     /**
+     593             :      * \brief A convenience function implements returns the inverse of the transform message as a one-liner.
+     594             :      *
+     595             :      * \param msg the message representing the transformation.
+     596             :      * \return    a new message representing an inverse of the original transformation.
+     597             :      */
+     598           1 :     static geometry_msgs::TransformStamped inverse(const geometry_msgs::TransformStamped& msg)
+     599             :     {
+     600           1 :       tf2::Transform tf2;
+     601           1 :       tf2::fromMsg(msg.transform, tf2);
+     602           1 :       tf2 = tf2.inverse();
+     603           2 :       return create_transform(frame_to(msg), frame_from(msg), msg.header.stamp, tf2::toMsg(tf2));
+     604             :     }
+     605             :     //}
+     606             : 
+     607             :   private:
+     608             :     /* create_transform() method //{ */
+     609             :     static geometry_msgs::TransformStamped create_transform(const std::string& from_frame, const std::string& to_frame, const ros::Time& time_stamp)
+     610             :     {
+     611             :       geometry_msgs::TransformStamped ret;
+     612             :       frame_from(ret) = from_frame;
+     613             :       frame_to(ret) = to_frame;
+     614             :       ret.header.stamp = time_stamp;
+     615             :       return ret;
+     616             :     }
+     617             : 
+     618     1866717 :     static geometry_msgs::TransformStamped create_transform(const std::string& from_frame, const std::string& to_frame, const ros::Time& time_stamp, const geometry_msgs::Transform& tf)
+     619             :     {
+     620     1866717 :       geometry_msgs::TransformStamped ret;
+     621     1866653 :       frame_from(ret) = from_frame;
+     622     1866738 :       frame_to(ret) = to_frame;
+     623     1866708 :       ret.header.stamp = time_stamp;
+     624     1866708 :       ret.transform = tf;
+     625     1866708 :       return ret;
+     626             :     }
+     627             :     //}
+     628             : 
+     629             :     /* copyChangeFrame() and related methods //{ */
+     630             : 
+     631             :     // helper type and member for detecting whether a message has a header using SFINAE
+     632             :     template<typename T>
+     633             :     using has_header_member_chk = decltype( std::declval<T&>().header );
+     634             :     template<typename T>
+     635             :     static constexpr bool has_header_member_v = std::experimental::is_detected<has_header_member_chk, T>::value;
+     636             :     
+     637             :     template <typename msg_t>
+     638             :     std_msgs::Header getHeader(const msg_t& msg);
+     639             :     template <typename pt_t>
+     640             :     std_msgs::Header getHeader(const pcl::PointCloud<pt_t>& cloud);
+     641             :     
+     642             :     template <typename msg_t>
+     643             :     void setHeader(msg_t& msg, const std_msgs::Header& header);
+     644             :     template <typename pt_t>
+     645             :     void setHeader(pcl::PointCloud<pt_t>& cloud, const std_msgs::Header& header);
+     646             :     
+     647             :     template <typename T>
+     648             :     T copyChangeFrame(const T& what, const std::string& frame_id);
+     649             :     
+     650             :     //}
+     651             : 
+     652             :     /* methods for converting between lattitude/longitude and UTM coordinates //{ */
+     653             :     geometry_msgs::Point LLtoUTM(const geometry_msgs::Point& what, const std::string& prefix);
+     654             :     geometry_msgs::PointStamped LLtoUTM(const geometry_msgs::PointStamped& what, const std::string& prefix);
+     655             :     geometry_msgs::Pose LLtoUTM(const geometry_msgs::Pose& what, const std::string& prefix);
+     656             :     geometry_msgs::PoseStamped LLtoUTM(const geometry_msgs::PoseStamped& what, const std::string& prefix);
+     657             :     
+     658             :     std::optional<geometry_msgs::Point> UTMtoLL(const geometry_msgs::Point& what, const std::string& prefix);
+     659             :     std::optional<geometry_msgs::PointStamped> UTMtoLL(const geometry_msgs::PointStamped& what, const std::string& prefix);
+     660             :     std::optional<geometry_msgs::Pose> UTMtoLL(const geometry_msgs::Pose& what, const std::string& prefix);
+     661             :     std::optional<geometry_msgs::PoseStamped> UTMtoLL(const geometry_msgs::PoseStamped& what, const std::string& prefix);
+     662             :     
+     663             :     // helper types and member for detecting whether the UTMtoLL and LLtoUTM methods are defined for a certain message
+     664             :     template<class Class, typename Message>
+     665             :     using UTMLL_method_chk = decltype(std::declval<Class>().UTMtoLL(std::declval<const Message&>(), ""));
+     666             :     template<class Class, typename Message>
+     667             :     using LLUTM_method_chk = decltype(std::declval<Class>().LLtoUTM(std::declval<const Message&>(), ""));
+     668             :     template<class Class, typename Message>
+     669             :     static constexpr bool UTMLL_exists_v = std::experimental::is_detected<UTMLL_method_chk, Class, Message>::value && std::experimental::is_detected<LLUTM_method_chk, Class, Message>::value;
+     670             :     //}
+     671             : 
+     672             :   };
+     673             : 
+     674             :   //}
+     675             : 
+     676             : }  // namespace mrs_lib
+     677             : 
+     678             : #include <mrs_lib/impl/transformer.hpp>
+     679             : 
+     680             : #endif  // TRANSFORMER_H
+
+
+
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          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : #ifndef UKF_H
+       3             : #define UKF_H
+       4             : 
+       5             : /**  \file
+       6             :      \brief Defines UKF - a class implementing the Unscented Kalman Filter \cite UKF.
+       7             :      \author Tomáš Báča - bacatoma@fel.cvut.cz (original implementation)
+       8             :      \author Matouš Vrba - vrbamato@fel.cvut.cz (rewrite, documentation)
+       9             :  */
+      10             : 
+      11             : #include <mrs_lib/kalman_filter.h>
+      12             : 
+      13             : namespace mrs_lib
+      14             : {
+      15             : 
+      16             :   /**
+      17             :   * \brief Implementation of the Unscented Kalman filter \cite UKF.
+      18             :   *
+      19             :   * The Unscented Kalman filter (abbreviated UKF, \cite UKF) is a variant of the Kalman filter, which may be used
+      20             :   * for state filtration or estimation of non-linear systems as opposed to the Linear Kalman Filter
+      21             :   * (which is implemented in \ref LKF). The UKF tends to be more accurate than the simpler Extended Kalman Filter,
+      22             :   * espetially for highly non-linear systems. However, it is generally less stable than the LKF because of the extra
+      23             :   * matrix square root in the sigma points calculation, so it is recommended to use LKF for linear systems.
+      24             :   *
+      25             :   * The UKF C++ class itself is templated. This has its advantages and disadvantages. Main disadvantage is that it
+      26             :   * may be harder to use if you're not familiar with C++ templates, which, admittedly, can get somewhat messy,
+      27             :   * espetially during compilation. Another disadvantage is that if used unwisely, the compilation times can get
+      28             :   * much higher when using templates. The main advantage is compile-time checking (if it compiles, then it has
+      29             :   * a lower chance of crashing at runtime) and enabling more effective optimalizations during compilation. Also in case
+      30             :   * of Eigen, the code is arguably more readable when you use aliases to the specific Matrix instances instead of
+      31             :   * having Eigen::MatrixXd and Eigen::VectorXd everywhere.
+      32             :   *
+      33             :   * \tparam n_states         number of states of the system (length of the \f$ \mathbf{x} \f$ vector).
+      34             :   * \tparam n_inputs         number of inputs of the system (length of the \f$ \mathbf{u} \f$ vector).
+      35             :   * \tparam n_measurements   number of measurements of the system (length of the \f$ \mathbf{z} \f$ vector).
+      36             :   *
+      37             :   */
+      38             :   template <int n_states, int n_inputs, int n_measurements>
+      39             :   class UKF : KalmanFilter<n_states, n_inputs, n_measurements>
+      40             :   {
+      41             :   protected:
+      42             :     /* protected UKF definitions (typedefs, constants etc) //{ */
+      43             :     static constexpr int n = n_states;            /*!< \brief Length of the state vector of the system. */
+      44             :     static constexpr int m = n_inputs;            /*!< \brief Length of the input vector of the system. */
+      45             :     static constexpr int p = n_measurements;      /*!< \brief Length of the measurement vector of the system. */
+      46             :     static constexpr int w = 2 * n + 1;           /*!< \brief Number of sigma points/weights. */
+      47             : 
+      48             :     using Base_class = KalmanFilter<n, m, p>; /*!< \brief Base class of this class. */
+      49             : 
+      50             :     using X_t = typename Eigen::Matrix<double, n, w>;    /*!< \brief State sigma points matrix. */
+      51             :     using Z_t = typename Eigen::Matrix<double, p, w>;    /*!< \brief Measurement sigma points matrix. */
+      52             :     using Pzz_t = typename Eigen::Matrix<double, p, p>;  /*!< \brief Pzz helper matrix. */
+      53             :     using K_t = typename Eigen::Matrix<double, n, p>;    /*!< \brief Kalman gain matrix. */
+      54             :     //}
+      55             : 
+      56             :   public:
+      57             :     /* public UKF definitions (typedefs, constants etc) //{ */
+      58             :     //! state vector n*1 typedef
+      59             :     using x_t = typename Base_class::x_t;
+      60             :     //! input vector m*1 typedef
+      61             :     using u_t = typename Base_class::u_t;
+      62             :     //! measurement vector p*1 typedef
+      63             :     using z_t = typename Base_class::z_t;
+      64             :     //! state covariance n*n typedef
+      65             :     using P_t = typename Base_class::P_t;
+      66             :     //! measurement covariance p*p typedef
+      67             :     using R_t = typename Base_class::R_t;
+      68             :     //! process covariance n*n typedef
+      69             :     using Q_t = typename Base_class::Q_t;
+      70             :     //! weights vector (2n+1)*1 typedef
+      71             :     using W_t = typename Eigen::Matrix<double, w, 1>;
+      72             :     //! typedef of a helper struct for state and covariance
+      73             :     using statecov_t = typename Base_class::statecov_t;
+      74             :     //! function of the state transition model typedef
+      75             :     using transition_model_t = typename std::function<x_t(const x_t&, const u_t&, double)>;
+      76             :     //! function of the observation model typedef
+      77             :     using observation_model_t = typename std::function<z_t(const x_t&)>;
+      78             : 
+      79             :     //! is thrown when taking the square root of a matrix fails during sigma generation
+      80             :     struct square_root_exception : public std::exception
+      81             :     {
+      82           0 :       const char* what() const throw()
+      83             :       {
+      84           0 :         return "UKF: taking the square root of covariance update produced NANs!!!";
+      85             :       }
+      86             :     };
+      87             : 
+      88             :     //! is thrown when taking the inverse of a matrix fails during kalman gain calculation
+      89             :     struct inverse_exception : public std::exception
+      90             :     {
+      91           0 :       const char* what() const throw()
+      92             :       {
+      93           0 :         return "UKF: inverting of Pzz in correction update produced NANs!!!";
+      94             :       }
+      95             :     };
+      96             :     //}
+      97             : 
+      98             :   public:
+      99             :     /* UKF constructor //{ */
+     100             :   /*!
+     101             :     * \brief Convenience default constructor.
+     102             :     *
+     103             :     * This constructor should not be used if applicable. If used, the main constructor has to be called afterwards,
+     104             :     * otherwise the UKF object is invalid (not initialized).
+     105             :     */
+     106             :     UKF();
+     107             : 
+     108             :   /*!
+     109             :     * \brief The main constructor.
+     110             :     *
+     111             :     * \param alpha             Scaling parameter of the sigma generation (a small positive value, e.g. 1e-3).
+     112             :     * \param kappa             Secondary scaling parameter of the sigma generation (usually set to 0 or 1).
+     113             :     * \param beta              Incorporates prior knowledge about the distribution (for Gaussian distribution, 2 is optimal).
+     114             :     * \param transition_model  State transition model function.
+     115             :     * \param observation_model Observation model function.
+     116             :     */
+     117             :     UKF(const transition_model_t& transition_model, const observation_model_t& observation_model, const double alpha = 1e-3, const double kappa = 1, const double beta = 2);
+     118             :     //}
+     119             : 
+     120             :     /* correct() method //{ */
+     121             :   /*!
+     122             :     * \brief Implements the state correction step (measurement update).
+     123             :     *
+     124             :     * \param sc     Previous estimate of the state and covariance.
+     125             :     * \param z      Measurement vector.
+     126             :     * \param R      Measurement covariance matrix.
+     127             :     * \returns      The state and covariance after applying the correction step.
+     128             :     */
+     129             :     virtual statecov_t correct(const statecov_t& sc, const z_t& z, const R_t& R) const override;
+     130             :     //}
+     131             : 
+     132             :     /* predict() method //{ */
+     133             :   /*!
+     134             :     * \brief Implements the state prediction step (time update).
+     135             :     *
+     136             :     * \param sc     Previous estimate of the state and covariance.
+     137             :     * \param u      Input vector.
+     138             :     * \param Q      Process noise covariance matrix.
+     139             :     * \param dt     Duration since the previous estimate.
+     140             :     * \returns      The state and covariance after applying the correction step.
+     141             :     */
+     142             :     virtual statecov_t predict(const statecov_t& sc, const u_t& u, const Q_t& Q, double dt) const override;
+     143             :     //}
+     144             : 
+     145             :     /* setConstants() method //{ */
+     146             :   /*!
+     147             :     * \brief Changes the Unscented Transform parameters.
+     148             :     *
+     149             :     * \param alpha  Scaling parameter of the sigma generation (a small positive value - e.g. 1e-3).
+     150             :     * \param kappa  Secondary scaling parameter of the sigma generation (usually set to 0 or 1).
+     151             :     * \param beta   Incorporates prior knowledge about the distribution (for Gaussian distribution, 2 is optimal).
+     152             :     */
+     153             :     void setConstants(const double alpha, const double kappa, const double beta);
+     154             :     //}
+     155             : 
+     156             :     /* setTransitionModel() method //{ */
+     157             :   /*!
+     158             :     * \brief Changes the transition model function.
+     159             :     *
+     160             :     * \param transition_model   the new transition model
+     161             :     */
+     162             :     void setTransitionModel(const transition_model_t& transition_model);
+     163             :     //}
+     164             : 
+     165             :     /* setObservationModel() method //{ */
+     166             :   /*!
+     167             :     * \brief Changes the observation model function.
+     168             :     *
+     169             :     * \param observation_model   the new observation model
+     170             :     */
+     171             :     void setObservationModel(const observation_model_t& observation_model);
+     172             :     //}
+     173             : 
+     174             :   protected:
+     175             :     /* protected methods and member variables //{ */
+     176             : 
+     177             :     void computeWeights();
+     178             : 
+     179             :     X_t computeSigmas(const x_t& x, const P_t& P) const;
+     180             : 
+     181             :     P_t computePaSqrt(const P_t& P) const;
+     182             : 
+     183             :     Pzz_t computeInverse(const Pzz_t& Pzz) const;
+     184             : 
+     185             :     virtual K_t computeKalmanGain([[maybe_unused]] const x_t& x, [[maybe_unused]] const z_t& inn, const K_t& Pxz, const Pzz_t& Pzz) const;
+     186             : 
+     187             :     double m_alpha, m_kappa, m_beta, m_lambda;
+     188             :     W_t m_Wm;
+     189             :     W_t m_Wc;
+     190             : 
+     191             :     transition_model_t m_transition_model;
+     192             :     observation_model_t m_observation_model;
+     193             : 
+     194             :     //}
+     195             :   };
+     196             : 
+     197             : }  // namespace mrs_lib
+     198             : 
+     199             : #include <mrs_lib/impl/ukf.hpp>
+     200             : 
+     201             : #endif
+
+
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std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > mrs_lib::containerToString<__gnu_cxx::__normal_iterator<int*, std::vector<int, std::allocator<int> > > >(__gnu_cxx::__normal_iterator<int*, std::vector<int, std::allocator<int> > >, __gnu_cxx::__normal_iterator<int*, std::vector<int, std::allocator<int> > >, char const*)1
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int mrs_lib::signum<double>(double)43380
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std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > mrs_lib::containerToString<__gnu_cxx::__normal_iterator<int*, std::vector<int, std::allocator<int> > > >(__gnu_cxx::__normal_iterator<int*, std::vector<int, std::allocator<int> > >, __gnu_cxx::__normal_iterator<int*, std::vector<int, std::allocator<int> > >, char const*)1
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int mrs_lib::signum<double>(double)43380
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          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : /**  \file
+       3             :      \brief Defines various general utility functions.
+       4             :      \author Matouš Vrba - vrbamato@fel.cvut.cz
+       5             :      \author Viktor Walter - walver.viktor@fel.cvut.cz
+       6             :      \author Tomáš Báča - baca.tomas@fel.cvut.cz
+       7             :  */
+       8             : #ifndef UTILS_H
+       9             : #define UTILS_H
+      10             : 
+      11             : #include <iterator>
+      12             : #include <vector>
+      13             : #include <sstream>
+      14             : #include <atomic>
+      15             : 
+      16             : namespace mrs_lib
+      17             : {
+      18             :   /* containerToString() function //{ */
+      19             : 
+      20             :   /**
+      21             :    * \brief Convenience function for converting container ranges to strings (e.g. for printing).
+      22             :    *
+      23             :    * \param begin        first element of the container that will be converted to \p std::string.
+      24             :    * \param end          one-after-the-last element of the container that will be converted to \p std::string.
+      25             :    * \param delimiter    will be used to separate the elements in the output.
+      26             :    * \return             elements of the container from \p begin to \p end (excluding), converted to string and separated by \p delimiter.
+      27             :    *
+      28             :    */
+      29             :   template <typename Iterator>
+      30           2 :   std::string containerToString(const Iterator begin, const Iterator end, const std::string& delimiter = ", ")
+      31             :   {
+      32           2 :     bool first = true;
+      33           4 :     std::ostringstream output;
+      34           7 :     for (Iterator it = begin; it != end; it++)
+      35             :     {
+      36           5 :       if (!first)
+      37           3 :         output << delimiter;
+      38           5 :       output << *it;
+      39           5 :       first = false;
+      40             :     }
+      41           4 :     return output.str();
+      42             :   }
+      43             : 
+      44             :   /**
+      45             :    * \brief Convenience function for converting container ranges to strings (e.g. for printing).
+      46             :    *
+      47             :    * \param begin        first element of the container that will be converted to \p std::string.
+      48             :    * \param end          one-after-the-last element of the container that will be converted to \p std::string.
+      49             :    * \param delimiter    will be used to separate the elements in the output.
+      50             :    * \return             elements of the container from \p begin to \p end (excluding), converted to string and separated by \p delimiter.
+      51             :    *
+      52             :    */
+      53             :   template <typename Iterator>
+      54           1 :   std::string containerToString(const Iterator begin, const Iterator end, const char* delimiter)
+      55             :   {
+      56           1 :     return containerToString(begin, end, std::string(delimiter));
+      57             :   }
+      58             : 
+      59             :   /**
+      60             :    * \brief Convenience function for converting containers to strings (e.g. for printing).
+      61             :    *
+      62             :    * \param cont         the container that will be converted to \p std::string.
+      63             :    * \param delimiter    will be used to separate the elements in the output.
+      64             :    * \return             elements of the container from \p begin to \p end (excluding), converted to string and separated by \p delimiter.
+      65             :    *
+      66             :    */
+      67             :   template <typename Container>
+      68             :   std::string containerToString(const Container& cont, const std::string& delimiter = ", ")
+      69             :   {
+      70             :     return containerToString(std::begin(cont), std::end(cont), delimiter);
+      71             :   }
+      72             : 
+      73             :   /**
+      74             :    * \brief Convenience function for converting containers to strings (e.g. for printing).
+      75             :    *
+      76             :    * \param cont         the container that will be converted to \p std::string.
+      77             :    * \param delimiter    will be used to separate the elements in the output.
+      78             :    * \return             elements of the container from \p begin to \p end (excluding), converted to string and separated by \p delimiter.
+      79             :    *
+      80             :    */
+      81             :   template <typename Container>
+      82           1 :   std::string containerToString(const Container& cont, const char* delimiter = ", ")
+      83             :   {
+      84           1 :     return containerToString(std::begin(cont), std::end(cont), std::string(delimiter));
+      85             :   }
+      86             : 
+      87             :   //}
+      88             : 
+      89             :   /* remove_const() function //{ */
+      90             : 
+      91             :   /**
+      92             :    * \brief Convenience class for removing const-ness from a container iterator.
+      93             :    *
+      94             :    * \param it    the iterator from which const-ness should be removed.
+      95             :    * \param cont  the corresponding container of the iterator.
+      96             :    * \return      a non-const iterator, pointing to the same element as \p it.
+      97             :    *
+      98             :    */
+      99             :   template <typename T>
+     100             :   typename T::iterator remove_const(const typename T::const_iterator& it, T& cont)
+     101             :   {
+     102             :     typename T::iterator ret = cont.begin();
+     103             :     std::advance(ret, std::distance((typename T::const_iterator)ret, it));
+     104             :     return ret;
+     105             :   }
+     106             : 
+     107             :   //}
+     108             : 
+     109             :   /**
+     110             :    * \brief Convenience class for automatically setting and unsetting an atomic boolean based on the object's scope.
+     111             :    * Useful e.g. for indicating whether a thread is running or not.
+     112             :    *
+     113             :    */
+     114             :   class AtomicScopeFlag
+     115             :   {
+     116             : 
+     117             :   public:
+     118             :   /**
+     119             :    * \brief The constructor. Sets the flag \p in to \p true.
+     120             :    *
+     121             :    * \param in  The flag to be set on construction of this object and reset (set to \p false) on its destruction.
+     122             :    *
+     123             :    */
+     124             :     AtomicScopeFlag(std::atomic<bool>& in);
+     125             :   /**
+     126             :    * \brief The destructor. Resets the variable given in the constructor to \p false.
+     127             :    *
+     128             :    */
+     129             :     ~AtomicScopeFlag();
+     130             : 
+     131             :   private:
+     132             :     std::atomic<bool>& variable;
+     133             :   };
+     134             : 
+     135             :   // branchless, templated, more efficient version of the signum function
+     136             :   // taken from https://stackoverflow.com/questions/1903954/is-there-a-standard-sign-function-signum-sgn-in-c-c
+     137             :   template <typename T>
+     138       43380 :   int signum(T val)
+     139             :   {
+     140       43380 :     return (T(0) < val) - (val < T(0));
+     141             :   }
+     142             : 
+     143             : }  // namespace mrs_lib
+     144             : 
+     145             : #endif
+
+
+
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Generated by: LCOV version 1.14
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Current view:top level - mrs_lib/include/mrs_lib - vector_converter.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:3636100.0 %
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Function Name Sort by function nameHit count Sort by hit count
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, pcl::PointXYZ>(pcl::PointXYZ const&)1
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, pcl::PointXYZ>(pcl::PointXYZ const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, pcl::PointXYZ>(pcl::PointXYZ const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, pcl::PointXYZ>(pcl::PointXYZ const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, pcl::PointXYZ>(pcl::PointXYZ const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, pcl::PointXYZ>(pcl::PointXYZ const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
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Generated by: LCOV version 1.14
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LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/include/mrs_lib - vector_converter.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:3636100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, pcl::PointXYZ>(pcl::PointXYZ const&)1
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
geometry_msgs::Vector3_<std::allocator<void> > mrs_lib::convert<geometry_msgs::Vector3_<std::allocator<void> >, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, pcl::PointXYZ>(pcl::PointXYZ const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
cv::Vec<double, 3> mrs_lib::convert<cv::Vec<double, 3>, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, pcl::PointXYZ>(pcl::PointXYZ const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
cv::Vec<float, 3> mrs_lib::convert<cv::Vec<float, 3>, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
pcl::PointXYZ mrs_lib::convert<pcl::PointXYZ, pcl::PointXYZ>(pcl::PointXYZ const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, pcl::PointXYZ>(pcl::PointXYZ const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
Eigen::Matrix<double, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, geometry_msgs::Vector3_<std::allocator<void> > >(geometry_msgs::Vector3_<std::allocator<void> > const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, cv::Vec<double, 3> >(cv::Vec<double, 3> const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, cv::Vec<float, 3> >(cv::Vec<float, 3> const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, pcl::PointXYZ>(pcl::PointXYZ const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1> >(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)1
Eigen::Matrix<float, 3, 1, 0, 3, 1> mrs_lib::convert<Eigen::Matrix<float, 3, 1, 0, 3, 1>, Eigen::Matrix<float, 3, 1, 0, 3, 1> >(Eigen::Matrix<float, 3, 1, 0, 3, 1> const&)1
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LCOV - code coverage report
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Current view:top level - mrs_lib/include/mrs_lib - vector_converter.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:3636100.0 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : /**  \file vector_converter.h
+       3             :      \brief Defines the convert() function for conversion between different vector representations (Eigen, OpenCV, tf2 etc.).
+       4             :      \author Matouš Vrba - vrbamato@fel.cvut.cz
+       5             :  */
+       6             : #ifndef VECTOR_CONVERTER_H
+       7             : #define VECTOR_CONVERTER_H
+       8             : 
+       9             : #include <tuple>
+      10             : 
+      11             : #include <mrs_lib/impl/vector_converter.hpp>
+      12             : 
+      13             : namespace mrs_lib
+      14             : {
+      15             : 
+      16             :   /*!
+      17             :    * \brief Converts between different vector representations.
+      18             :    *
+      19             :    * Usage (for full example, see the file vector_converter/example.cpp):
+      20             :    *
+      21             :    * `auto out = mrs_lib::convert<to_type>(in);`
+      22             :    *
+      23             :    * Supported types by default are: `Eigen::Vector3d`, `cv::Vec3d`, `geometry_msgs::Vector3`.
+      24             :    * If you want to use this with a new type, it should work automagically if it provides a reasonable API.
+      25             :    * If it doesn't work by default, you just need to implement the respective convertTo() and convertFrom() functions for that type (see the file impl/vector_converter.hpp and the example file vector_converter/example.cpp).
+      26             :    *
+      27             :    * \param in  The input vector to be converted to the \p ret_t type.
+      28             :    *
+      29             :    * \tparam ret_t Type of the return vector. You need to specify this when calling the function.
+      30             :    * \tparam in_t  Type of the input vector. This parameter is deduced by the compiler and doesn't need to be specified in usual cases.
+      31             :    *
+      32             :    */
+      33             :   template <typename ret_t, typename in_t>
+      34          36 :   ret_t convert(const in_t& in)
+      35             :   {
+      36          36 :     const auto [x, y, z] = impl::convertFrom(in);
+      37          36 :     ret_t ret;
+      38          36 :     impl::convertTo(ret, x, y, z);
+      39          66 :     return ret;
+      40             :   }
+      41             : 
+      42             : }
+      43             : 
+      44             : #endif // VECTOR_CONVERTER_H
+
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mrs_lib::VisualObject::operator<(mrs_lib::VisualObject const&) const242
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Date:2024-04-17 23:52:03Functions:11100.0 %
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mrs_lib::VisualObject::operator<(mrs_lib::VisualObject const&) const242
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+
          Line data    Source code
+
+       1             : /**  \file
+       2             :      \brief Object abstraction for the Batch Visualizer
+       3             :      \author Petr Štibinger - stibipet@fel.cvut.cz
+       4             :  */
+       5             : 
+       6             : #ifndef BATCH_VISUALIZER__VISUAL_OBJECT_H
+       7             : #define BATCH_VISUALIZER__VISUAL_OBJECT_H
+       8             : 
+       9             : #include <Eigen/Core>
+      10             : #include <ros/time.h>
+      11             : #include <std_msgs/ColorRGBA.h>
+      12             : #include <geometry_msgs/Point.h>
+      13             : #include <mrs_lib/geometry/shapes.h>
+      14             : #include <mrs_msgs/Path.h>
+      15             : #include <mrs_msgs/TrajectoryReference.h>
+      16             : 
+      17             : #define DEFAULT_ELLIPSE_POINTS 64
+      18             : 
+      19             : namespace mrs_lib
+      20             : {
+      21             : 
+      22             : enum MarkerType
+      23             : {
+      24             :   POINT    = 0,
+      25             :   LINE     = 1,
+      26             :   TRIANGLE = 2
+      27             : };
+      28             : 
+      29             : class VisualObject {
+      30             : 
+      31             : 
+      32             : public:
+      33             :   VisualObject(const Eigen::Vector3d& point, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+      34             :                const unsigned long& id);
+      35             : 
+      36             :   VisualObject(const mrs_lib::geometry::Ray& ray, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+      37             :                const unsigned long& id);
+      38             : 
+      39             :   VisualObject(const mrs_lib::geometry::Triangle& triangle, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+      40             :                const bool filled, const unsigned long& id);
+      41             : 
+      42             :   VisualObject(const mrs_lib::geometry::Rectangle& rectangle, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+      43             :                const bool filled, const unsigned long& id);
+      44             : 
+      45             :   VisualObject(const mrs_lib::geometry::Cuboid& cuboid, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+      46             :                const bool filled, const unsigned long& id);
+      47             : 
+      48             :   VisualObject(const mrs_lib::geometry::Ellipse& ellipse, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+      49             :                const bool filled, const unsigned long& id, const int num_points = DEFAULT_ELLIPSE_POINTS);
+      50             : 
+      51             :   VisualObject(const mrs_lib::geometry::Cylinder& cylinder, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+      52             :                const bool filled, const bool capped, const unsigned long& id, const int num_sides = DEFAULT_ELLIPSE_POINTS);
+      53             : 
+      54             :   VisualObject(const mrs_lib::geometry::Cone& cone, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+      55             :                const bool filled, const bool capped, const unsigned long& id, const int num_sides = DEFAULT_ELLIPSE_POINTS);
+      56             : 
+      57             :   VisualObject(const mrs_msgs::Path& p, const double r, const double g, const double b, const double a, const ros::Duration& timeout, const bool filled,
+      58             :                const unsigned long& id);
+      59             : 
+      60             :   VisualObject(const mrs_msgs::TrajectoryReference& traj, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+      61             :                const bool filled, const unsigned long& id);
+      62             : 
+      63             : 
+      64             : public:
+      65             :   unsigned long getID() const;
+      66             :   int           getType() const;
+      67             :   bool          isTimedOut() const;
+      68             : 
+      69             :   const std::vector<geometry_msgs::Point> getPoints() const;
+      70             :   const std::vector<std_msgs::ColorRGBA>  getColors() const;
+      71             : 
+      72         242 :   bool operator<(const VisualObject& other) const {
+      73         242 :     return id_ < other.id_;
+      74             :   }
+      75             : 
+      76             :   bool operator>(const VisualObject& other) const {
+      77             :     return id_ > other.id_;
+      78             :   }
+      79             : 
+      80             :   bool operator==(const VisualObject& other) const {
+      81             :     return id_ == other.id_;
+      82             :   }
+      83             : 
+      84             : private:
+      85             :   const unsigned long               id_;
+      86             :   MarkerType                        type_;
+      87             :   std::vector<geometry_msgs::Point> points_;
+      88             :   std::vector<std_msgs::ColorRGBA>  colors_;
+      89             :   ros::Time                         timeout_time_;
+      90             : 
+      91             :   void addRay(const mrs_lib::geometry::Ray& ray, const double r, const double g, const double b, const double a);
+      92             : 
+      93             :   void addTriangle(const mrs_lib::geometry::Triangle& triangle, const double r, const double g, const double b, const double a, const bool filled);
+      94             : 
+      95             :   void addEllipse(const mrs_lib::geometry::Ellipse& ellipse, const double r, const double g, const double b, const double a, const bool filled,
+      96             :                   const int num_points);
+      97             : 
+      98             : };  // namespace batch_visualizer
+      99             : 
+     100             : }  // namespace mrs_lib
+     101             : 
+     102             : #endif
+
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/include/mrs_lib/visual_object.h.gcov.overview.html b/mrs_lib/include/mrs_lib/visual_object.h.gcov.overview.html new file mode 100644 index 0000000000..d12f1bdebc --- /dev/null +++ b/mrs_lib/include/mrs_lib/visual_object.h.gcov.overview.html @@ -0,0 +1,46 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/include/mrs_lib/visual_object.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_lib/include/mrs_lib/visual_object.h.gcov.png b/mrs_lib/include/mrs_lib/visual_object.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..2e10038ce016599658d08255c1ff1a58c48536b4 GIT binary patch literal 493 zcmV+saxyxDMeS`bZ>XVXLfMj6TyyoCqrtw2lm0u z+o(BT9)Ca$kB$N})=&j%ZYAN~M-2fl?xgk-O5E?%?$Wmj&*fS>a()0krI)3KDBPQ< zbwrxU^|#FxFTAkosWR(uv15M}_ueAI2C<4{orGw`5gG}@y*-=U|C$HgxkA&LlV~x;9avy^{ zD4UE5G>^=dcMGuSb&_NEgJF^XJ)xiRS!%!{##?Fl?i#WPsloKLN2!F_$XG*)sD*#d joDtA2469xit&98vAi`i14~K$;00000NkvXXu0mjfj#t*F literal 0 HcmV?d00001 diff --git a/mrs_lib/src/attitude_converter/attitude_converter.cpp.func-sort-c.html b/mrs_lib/src/attitude_converter/attitude_converter.cpp.func-sort-c.html new file mode 100644 index 0000000000..d3d3018336 --- /dev/null +++ b/mrs_lib/src/attitude_converter/attitude_converter.cpp.func-sort-c.html @@ -0,0 +1,244 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/attitude_converter/attitude_converter.cpp - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/src/attitude_converter - attitude_converter.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:21222494.6 %
Date:2024-04-17 23:52:03Functions:394195.1 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::AttitudeConverter::setYaw(double const&)0
mrs_lib::Vector3Converter::operator tf2::Vector3() const0
mrs_lib::EulerAttitude::EulerAttitude(double const&, double const&, double const&)1
mrs_lib::Vector3Converter::Vector3Converter(double const&, double const&, double const&)1
mrs_lib::AttitudeConverter::getExtrinsicRPY()1
mrs_lib::AttitudeConverter::getIntrinsicRPY()1
mrs_lib::AttitudeConverter::getRoll()1
mrs_lib::AttitudeConverter::getPitch()1
mrs_lib::AttitudeConverter::AttitudeConverter(tf::Quaternion)1
mrs_lib::AttitudeConverter::AttitudeConverter(tf2::Matrix3x3)1
mrs_lib::AttitudeConverter::AttitudeConverter(mrs_lib::EulerAttitude const&)1
mrs_lib::EulerAttitude::yaw() const1
mrs_lib::EulerAttitude::roll() const1
mrs_lib::EulerAttitude::pitch() const1
mrs_lib::Vector3Converter::operator geometry_msgs::Vector3_<std::allocator<void> >() const1
mrs_lib::AttitudeConverter::operator tf::Quaternion() const1
mrs_lib::AttitudeConverter::operator mrs_lib::EulerAttitude() const1
mrs_lib::AttitudeConverter::getVectorX()3
mrs_lib::AttitudeConverter::getVectorY()3
mrs_lib::Vector3Converter::Vector3Converter(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)21881
mrs_lib::AttitudeConverter::getYawRateIntrinsic(double const&)97473
mrs_lib::AttitudeConverter::operator std::tuple<double&, double&, double&>()130390
mrs_lib::AttitudeConverter::getYaw()169249
mrs_lib::AttitudeConverter::calculateRPY()169254
mrs_lib::Vector3Converter::Vector3Converter(geometry_msgs::Vector3_<std::allocator<void> > const&)262988
mrs_lib::AttitudeConverter::setHeading(double const&)279417
mrs_lib::AttitudeConverter::getVectorZ()281413
mrs_lib::AttitudeConverter::getHeadingRate(mrs_lib::Vector3Converter const&)284871
mrs_lib::AttitudeConverter::operator tf2::Transform() const362779
mrs_lib::AttitudeConverter::operator tf2::Matrix3x3() const371868
mrs_lib::AttitudeConverter::AttitudeConverter(Eigen::Quaternion<double, 0>)416258
mrs_lib::Vector3Converter::operator Eigen::Matrix<double, 3, 1, 0, 3, 1>() const566282
mrs_lib::AttitudeConverter::operator tf2::Quaternion() const848812
mrs_lib::AttitudeConverter::AttitudeConverter(tf2::Quaternion)912166
mrs_lib::AttitudeConverter::AttitudeConverter(Eigen::Matrix<double, 3, 3, 0, 3, 3>)1140422
mrs_lib::AttitudeConverter::operator Eigen::Matrix<double, 3, 3, 0, 3, 3>() const1432561
mrs_lib::AttitudeConverter::getHeading()1531605
mrs_lib::AttitudeConverter::AttitudeConverter(geometry_msgs::Quaternion_<std::allocator<void> >)3388499
mrs_lib::AttitudeConverter::AttitudeConverter(double const&, double const&, double const&, mrs_lib::RPY_convention_t const&)6492080
mrs_lib::AttitudeConverter::operator geometry_msgs::Quaternion_<std::allocator<void> >() const7631982
mrs_lib::AttitudeConverter::validateOrientation()12346486
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Generated by: LCOV version 1.14
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Current view:top level - mrs_lib/src/attitude_converter - attitude_converter.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:21222494.6 %
Date:2024-04-17 23:52:03Functions:394195.1 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::EulerAttitude::EulerAttitude(double const&, double const&, double const&)1
mrs_lib::Vector3Converter::Vector3Converter(geometry_msgs::Vector3_<std::allocator<void> > const&)262988
mrs_lib::Vector3Converter::Vector3Converter(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)21881
mrs_lib::Vector3Converter::Vector3Converter(double const&, double const&, double const&)1
mrs_lib::AttitudeConverter::getHeading()1531605
mrs_lib::AttitudeConverter::getVectorX()3
mrs_lib::AttitudeConverter::getVectorY()3
mrs_lib::AttitudeConverter::getVectorZ()281413
mrs_lib::AttitudeConverter::setHeading(double const&)279417
mrs_lib::AttitudeConverter::calculateRPY()169254
mrs_lib::AttitudeConverter::getHeadingRate(mrs_lib::Vector3Converter const&)284871
mrs_lib::AttitudeConverter::getExtrinsicRPY()1
mrs_lib::AttitudeConverter::getIntrinsicRPY()1
mrs_lib::AttitudeConverter::getYawRateIntrinsic(double const&)97473
mrs_lib::AttitudeConverter::validateOrientation()12346486
mrs_lib::AttitudeConverter::getYaw()169249
mrs_lib::AttitudeConverter::setYaw(double const&)0
mrs_lib::AttitudeConverter::getRoll()1
mrs_lib::AttitudeConverter::getPitch()1
mrs_lib::AttitudeConverter::AttitudeConverter(geometry_msgs::Quaternion_<std::allocator<void> >)3388499
mrs_lib::AttitudeConverter::AttitudeConverter(tf::Quaternion)1
mrs_lib::AttitudeConverter::AttitudeConverter(tf2::Quaternion)912166
mrs_lib::AttitudeConverter::AttitudeConverter(tf2::Matrix3x3)1
mrs_lib::AttitudeConverter::AttitudeConverter(Eigen::Quaternion<double, 0>)416258
mrs_lib::AttitudeConverter::AttitudeConverter(Eigen::Matrix<double, 3, 3, 0, 3, 3>)1140422
mrs_lib::AttitudeConverter::AttitudeConverter(mrs_lib::EulerAttitude const&)1
mrs_lib::AttitudeConverter::AttitudeConverter(double const&, double const&, double const&, mrs_lib::RPY_convention_t const&)6492080
mrs_lib::AttitudeConverter::operator std::tuple<double&, double&, double&>()130390
mrs_lib::EulerAttitude::yaw() const1
mrs_lib::EulerAttitude::roll() const1
mrs_lib::EulerAttitude::pitch() const1
mrs_lib::Vector3Converter::operator geometry_msgs::Vector3_<std::allocator<void> >() const1
mrs_lib::Vector3Converter::operator tf2::Vector3() const0
mrs_lib::Vector3Converter::operator Eigen::Matrix<double, 3, 1, 0, 3, 1>() const566282
mrs_lib::AttitudeConverter::operator geometry_msgs::Quaternion_<std::allocator<void> >() const7631982
mrs_lib::AttitudeConverter::operator tf::Quaternion() const1
mrs_lib::AttitudeConverter::operator tf2::Quaternion() const848812
mrs_lib::AttitudeConverter::operator tf2::Matrix3x3() const371868
mrs_lib::AttitudeConverter::operator tf2::Transform() const362779
mrs_lib::AttitudeConverter::operator Eigen::Matrix<double, 3, 3, 0, 3, 3>() const1432561
mrs_lib::AttitudeConverter::operator mrs_lib::EulerAttitude() const1
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Current view:top level - mrs_lib/src/attitude_converter - attitude_converter.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:21222494.6 %
Date:2024-04-17 23:52:03Functions:394195.1 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : // clang: TomasFormat
+       2             : 
+       3             : #include <mrs_lib/attitude_converter.h>
+       4             : #include <mrs_lib/utils.h>
+       5             : 
+       6             : using quat_t = Eigen::Quaterniond;
+       7             : 
+       8             : namespace mrs_lib
+       9             : {
+      10             : 
+      11             : /* class EulerAttitude //{ */
+      12             : 
+      13           1 : EulerAttitude::EulerAttitude(const double& roll, const double& pitch, const double& yaw) : roll_(roll), pitch_(pitch), yaw_(yaw) {
+      14           1 : }
+      15             : 
+      16           1 : double EulerAttitude::roll(void) const {
+      17           1 :   return roll_;
+      18             : }
+      19             : 
+      20           1 : double EulerAttitude::pitch(void) const {
+      21           1 :   return pitch_;
+      22             : }
+      23             : 
+      24           1 : double EulerAttitude::yaw(void) const {
+      25           1 :   return yaw_;
+      26             : }
+      27             : 
+      28             : //}
+      29             : 
+      30             : /* class Vector3Converter //{ */
+      31             : 
+      32       21881 : Vector3Converter::Vector3Converter(const Eigen::Vector3d& vector3) {
+      33             : 
+      34       21881 :   vector3_[0] = vector3[0];
+      35       21881 :   vector3_[1] = vector3[1];
+      36       21881 :   vector3_[2] = vector3[2];
+      37       21881 : }
+      38             : 
+      39      262988 : Vector3Converter::Vector3Converter(const geometry_msgs::Vector3& vector3) {
+      40             : 
+      41      262957 :   vector3_[0] = vector3.x;
+      42      262982 :   vector3_[1] = vector3.y;
+      43      262939 :   vector3_[2] = vector3.z;
+      44      262948 : }
+      45             : 
+      46           1 : Vector3Converter::Vector3Converter(const double& x, const double& y, const double& z) {
+      47             : 
+      48           1 :   vector3_[0] = x;
+      49           1 :   vector3_[1] = y;
+      50           1 :   vector3_[2] = z;
+      51           1 : }
+      52             : 
+      53           0 : Vector3Converter::operator tf2::Vector3() const {
+      54             : 
+      55           0 :   return vector3_;
+      56             : }
+      57             : 
+      58      566282 : Vector3Converter::operator Eigen::Vector3d() const {
+      59             : 
+      60      566282 :   return Eigen::Vector3d(vector3_[0], vector3_[1], vector3_[2]);
+      61             : }
+      62             : 
+      63           1 : Vector3Converter::operator geometry_msgs::Vector3() const {
+      64             : 
+      65           1 :   geometry_msgs::Vector3 vector_3;
+      66             : 
+      67           1 :   vector_3.x = vector3_[0];
+      68           1 :   vector_3.y = vector3_[1];
+      69           1 :   vector_3.z = vector3_[2];
+      70             : 
+      71           1 :   return vector_3;
+      72             : }
+      73             : 
+      74             : //}
+      75             : 
+      76             : /* constructors //{ */
+      77             : 
+      78     6492080 : AttitudeConverter::AttitudeConverter(const double& roll, const double& pitch, const double& yaw, const RPY_convention_t& format) {
+      79             : 
+      80     6489197 :   switch (format) {
+      81             : 
+      82     6489114 :     case RPY_EXTRINSIC: {
+      83     6489114 :       tf2_quaternion_.setRPY(roll, pitch, yaw);
+      84     6490486 :       break;
+      85             :     }
+      86             : 
+      87           5 :     case RPY_INTRINSIC: {
+      88             : 
+      89           5 :       Eigen::Matrix3d Y, P, R;
+      90             : 
+      91           5 :       Y << cos(yaw), -sin(yaw), 0, sin(yaw), cos(yaw), 0, 0, 0, 1;
+      92             : 
+      93           5 :       P << cos(pitch), 0, sin(pitch), 0, 1, 0, -sin(pitch), 0, cos(pitch);
+      94             : 
+      95           5 :       R << 1, 0, 0, 0, cos(roll), -sin(roll), 0, sin(roll), cos(roll);
+      96             : 
+      97           5 :       tf2_quaternion_ = AttitudeConverter(R * P * Y);
+      98             : 
+      99           5 :       break;
+     100             :     }
+     101             :   }
+     102             : 
+     103     6490569 :   validateOrientation();
+     104     6490542 : }
+     105             : 
+     106           1 : AttitudeConverter::AttitudeConverter(const tf::Quaternion quaternion) {
+     107             : 
+     108           1 :   tf2_quaternion_.setX(quaternion.x());
+     109           1 :   tf2_quaternion_.setY(quaternion.y());
+     110           1 :   tf2_quaternion_.setZ(quaternion.z());
+     111           1 :   tf2_quaternion_.setW(quaternion.w());
+     112             : 
+     113           1 :   validateOrientation();
+     114           1 : }
+     115             : 
+     116     3388499 : AttitudeConverter::AttitudeConverter(const geometry_msgs::Quaternion quaternion) {
+     117     3387743 :   tf2_quaternion_.setX(quaternion.x);
+     118     3387176 :   tf2_quaternion_.setY(quaternion.y);
+     119     3387974 :   tf2_quaternion_.setZ(quaternion.z);
+     120     3388357 :   tf2_quaternion_.setW(quaternion.w);
+     121             : 
+     122     3388481 :   validateOrientation();
+     123     3387577 : }
+     124             : 
+     125           1 : AttitudeConverter::AttitudeConverter(const mrs_lib::EulerAttitude& euler_attitude) {
+     126           1 :   tf2_quaternion_.setRPY(euler_attitude.roll(), euler_attitude.pitch(), euler_attitude.yaw());
+     127             : 
+     128           1 :   validateOrientation();
+     129           1 : }
+     130             : 
+     131      416258 : AttitudeConverter::AttitudeConverter(const Eigen::Quaterniond quaternion) {
+     132      416257 :   tf2_quaternion_.setX(quaternion.x());
+     133      416256 :   tf2_quaternion_.setY(quaternion.y());
+     134      416256 :   tf2_quaternion_.setZ(quaternion.z());
+     135      416258 :   tf2_quaternion_.setW(quaternion.w());
+     136             : 
+     137      416257 :   validateOrientation();
+     138      416256 : }
+     139             : 
+     140     1140422 : AttitudeConverter::AttitudeConverter(const Eigen::Matrix3d matrix) {
+     141     1137485 :   Eigen::Quaterniond quaternion = Eigen::Quaterniond(matrix);
+     142             : 
+     143     1138958 :   tf2_quaternion_.setX(quaternion.x());
+     144     1137558 :   tf2_quaternion_.setY(quaternion.y());
+     145     1138809 :   tf2_quaternion_.setZ(quaternion.z());
+     146     1138421 :   tf2_quaternion_.setW(quaternion.w());
+     147             : 
+     148     1138976 :   validateOrientation();
+     149     1136041 : }
+     150             : 
+     151      912166 : AttitudeConverter::AttitudeConverter(const tf2::Quaternion quaternion) {
+     152             : 
+     153      909896 :   tf2_quaternion_ = quaternion;
+     154             : 
+     155      909896 :   validateOrientation();
+     156      910249 : }
+     157             : 
+     158           1 : AttitudeConverter::AttitudeConverter(const tf2::Matrix3x3 matrix) {
+     159             : 
+     160           1 :   matrix.getRotation(tf2_quaternion_);
+     161             : 
+     162           1 :   validateOrientation();
+     163           1 : }
+     164             : 
+     165             : //}
+     166             : 
+     167             : /* operators //{ */
+     168             : 
+     169      848812 : AttitudeConverter::operator tf2::Quaternion() const {
+     170      848812 :   return tf2_quaternion_;
+     171             : }
+     172             : 
+     173           1 : AttitudeConverter::operator tf::Quaternion() const {
+     174             : 
+     175           1 :   tf::Quaternion tf_quaternion;
+     176             : 
+     177           1 :   tf_quaternion.setX(tf2_quaternion_.x());
+     178           1 :   tf_quaternion.setY(tf2_quaternion_.y());
+     179           1 :   tf_quaternion.setZ(tf2_quaternion_.z());
+     180           1 :   tf_quaternion.setW(tf2_quaternion_.w());
+     181             : 
+     182           1 :   return tf_quaternion;
+     183             : }
+     184             : 
+     185     7631982 : AttitudeConverter::operator geometry_msgs::Quaternion() const {
+     186             : 
+     187     7631982 :   geometry_msgs::Quaternion geom_quaternion;
+     188             : 
+     189     7629838 :   geom_quaternion.x = tf2_quaternion_.x();
+     190     7624528 :   geom_quaternion.y = tf2_quaternion_.y();
+     191     7624515 :   geom_quaternion.z = tf2_quaternion_.z();
+     192     7626057 :   geom_quaternion.w = tf2_quaternion_.w();
+     193             : 
+     194     7626822 :   return geom_quaternion;
+     195             : }
+     196             : 
+     197           1 : AttitudeConverter::operator EulerAttitude() const {
+     198             : 
+     199             :   double roll, pitch, yaw;
+     200           1 :   tf2::Matrix3x3(tf2_quaternion_).getRPY(roll, pitch, yaw);
+     201             : 
+     202           2 :   return EulerAttitude(roll, pitch, yaw);
+     203             : }
+     204             : 
+     205     1432561 : AttitudeConverter::operator Eigen::Matrix3d() const {
+     206             : 
+     207     1432561 :   Eigen::Quaterniond quaternion(tf2_quaternion_.w(), tf2_quaternion_.x(), tf2_quaternion_.y(), tf2_quaternion_.z());
+     208             : 
+     209     2864516 :   return quaternion.toRotationMatrix();
+     210             : }
+     211             : 
+     212      130390 : AttitudeConverter::operator std::tuple<double&, double&, double&>() {
+     213             : 
+     214      130390 :   tf2::Matrix3x3(tf2_quaternion_).getRPY(roll_, pitch_, yaw_);
+     215             : 
+     216      130390 :   return std::tuple<double&, double&, double&>{roll_, pitch_, yaw_};
+     217             : }
+     218             : 
+     219      371868 : AttitudeConverter::operator tf2::Matrix3x3() const {
+     220             : 
+     221      371868 :   return tf2::Matrix3x3(tf2_quaternion_);
+     222             : }
+     223             : 
+     224      362779 : AttitudeConverter::operator tf2::Transform() const {
+     225             : 
+     226      362779 :   return tf2::Transform(tf2_quaternion_);
+     227             : }
+     228             : 
+     229             : //}
+     230             : 
+     231             : /* getters //{ */
+     232             : 
+     233      169249 : double AttitudeConverter::getYaw(void) {
+     234             : 
+     235      169249 :   calculateRPY();
+     236             : 
+     237      169249 :   return yaw_;
+     238             : }
+     239             : 
+     240           1 : double AttitudeConverter::getRoll(void) {
+     241             : 
+     242           1 :   calculateRPY();
+     243             : 
+     244           1 :   return roll_;
+     245             : }
+     246             : 
+     247           1 : double AttitudeConverter::getPitch(void) {
+     248             : 
+     249           1 :   calculateRPY();
+     250             : 
+     251           1 :   return pitch_;
+     252             : }
+     253             : 
+     254     1531605 : double AttitudeConverter::getHeading(void) {
+     255             : 
+     256     1531605 :   tf2::Vector3 b1 = tf2::Vector3(1, 0, 0);
+     257             : 
+     258     1531103 :   tf2::Vector3 x_new = tf2::Transform(tf2_quaternion_) * b1;
+     259             : 
+     260     1530599 :   if (fabs(x_new[0]) <= 1e-3 && fabs(x_new[1]) <= 1e-3) {
+     261           2 :     throw GetHeadingException();
+     262             :   }
+     263             : 
+     264     3058751 :   return atan2(x_new[1], x_new[0]);
+     265             : }
+     266             : 
+     267       97473 : double AttitudeConverter::getYawRateIntrinsic(const double& heading_rate) {
+     268             : 
+     269             :   // when the heading rate is very small, it does not make sense to compute the
+     270             :   // yaw rate (the math would break), return 0
+     271       97473 :   if (fabs(heading_rate) < 1e-3) {
+     272       70098 :     return 0;
+     273             :   }
+     274             : 
+     275             :   // prep
+     276       27375 :   Eigen::Matrix3d R = *this;
+     277             : 
+     278             :   // construct the heading orbital velocity vector
+     279       27375 :   Eigen::Vector3d heading_vector   = Eigen::Vector3d(R(0, 0), R(1, 0), 0);
+     280       27375 :   Eigen::Vector3d orbital_velocity = Eigen::Vector3d(0, 0, heading_rate).cross(heading_vector);
+     281             : 
+     282             :   // projector to the heading orbital velocity vector subspace
+     283       27375 :   Eigen::Vector3d b_orb = Eigen::Vector3d(0, 0, 1).cross(heading_vector);
+     284       27375 :   b_orb.normalize();
+     285       27375 :   Eigen::Matrix3d P = b_orb * b_orb.transpose();
+     286             : 
+     287             :   // project the body yaw orbital velocity vector base onto the heading orbital velocity vector subspace
+     288       27375 :   Eigen::Vector3d projected = P * R.col(1);
+     289             : 
+     290             : 
+     291       27375 :   double orbital_velocity_norm = orbital_velocity.norm();
+     292       27375 :   double projected_norm        = projected.norm();
+     293             : 
+     294       27375 :   if (fabs(projected_norm) < 1e-5) {
+     295           0 :     ROS_ERROR("[AttitudeConverter]: getYawRateIntrinsic(): \"projected_norm\" in denominator is almost zero!!!");
+     296           0 :     throw MathErrorException();
+     297             :   }
+     298             : 
+     299       27375 :   double direction = mrs_lib::signum(orbital_velocity.dot(projected));
+     300             : 
+     301       27375 :   double output_yaw_rate = direction * (orbital_velocity_norm / projected_norm);
+     302             : 
+     303       27375 :   if (!std::isfinite(output_yaw_rate)) {
+     304           0 :     ROS_ERROR("[AttitudeConverter]: getYawRateIntrinsic(): NaN detected in variable \"output_yaw_rate\"!!!");
+     305           0 :     throw MathErrorException();
+     306             :   }
+     307             : 
+     308             :   // extract the yaw rate
+     309       27375 :   return output_yaw_rate;
+     310             : }
+     311             : 
+     312      284871 : double AttitudeConverter::getHeadingRate(const Vector3Converter& attitude_rate) {
+     313             : 
+     314             :   // prep
+     315      284871 :   Eigen::Matrix3d R = *this;
+     316      284860 :   Eigen::Vector3d w = attitude_rate;
+     317             : 
+     318             :   // create the angular velocity tensor
+     319      284806 :   Eigen::Matrix3d W;
+     320      284784 :   W << 0, -w[2], w[1], w[2], 0, -w[0], -w[1], w[0], 0;
+     321             : 
+     322             :   // R derivative
+     323      284763 :   Eigen::Matrix3d R_d = R * W;
+     324             : 
+     325             :   // atan2 derivative
+     326      284833 :   double rx = R(0, 0);  // x-component of body X
+     327      284668 :   double ry = R(1, 0);  // y-component of body Y
+     328             : 
+     329      284773 :   double denom = rx * rx + ry * ry;
+     330             : 
+     331      284773 :   if (fabs(denom) <= 1e-5) {
+     332           0 :     ROS_ERROR("[AttitudeConverter]: getHeadingRate(): denominator near zero!!!");
+     333           0 :     throw MathErrorException();
+     334             :   }
+     335             : 
+     336      284773 :   double atan2_d_x = -ry / denom;
+     337      284773 :   double atan2_d_y = rx / denom;
+     338             : 
+     339             :   // atan2 total differential
+     340      284773 :   double heading_rate = atan2_d_x * R_d(0, 0) + atan2_d_y * R_d(1, 0);
+     341             : 
+     342      284806 :   return heading_rate;
+     343             : }
+     344             : 
+     345           3 : Vector3Converter AttitudeConverter::getVectorX(void) {
+     346             : 
+     347           3 :   tf2::Vector3 b1 = tf2::Vector3(1, 0, 0);
+     348             : 
+     349           3 :   tf2::Vector3 new_b1 = tf2::Transform(tf2_quaternion_) * b1;
+     350             : 
+     351           6 :   return Vector3Converter(new_b1);
+     352             : }
+     353             : 
+     354           3 : Vector3Converter AttitudeConverter::getVectorY(void) {
+     355             : 
+     356           3 :   tf2::Vector3 b2 = tf2::Vector3(0, 1, 0);
+     357             : 
+     358           3 :   tf2::Vector3 new_b2 = tf2::Transform(tf2_quaternion_) * b2;
+     359             : 
+     360           6 :   return Vector3Converter(new_b2);
+     361             : }
+     362             : 
+     363      281413 : Vector3Converter AttitudeConverter::getVectorZ(void) {
+     364             : 
+     365      281413 :   tf2::Vector3 b3 = tf2::Vector3(0, 0, 1);
+     366             : 
+     367      281418 :   tf2::Vector3 new_b3 = tf2::Transform(tf2_quaternion_) * b3;
+     368             : 
+     369      562832 :   return Vector3Converter(new_b3);
+     370             : }
+     371             : 
+     372           1 : std::tuple<double, double, double> AttitudeConverter::getExtrinsicRPY(void) {
+     373             : 
+     374           1 :   Eigen::Matrix3d rot = AttitudeConverter(*this);
+     375             : 
+     376           1 :   Eigen::Vector3d eulers = rot.eulerAngles(2, 1, 0);
+     377             : 
+     378           2 :   return std::tuple(eulers[2], eulers[1], eulers[0]);
+     379             : }
+     380             : 
+     381           1 : std::tuple<double, double, double> AttitudeConverter::getIntrinsicRPY(void) {
+     382             : 
+     383           1 :   Eigen::Matrix3d rot = AttitudeConverter(*this);
+     384             : 
+     385           1 :   Eigen::Vector3d eulers = rot.eulerAngles(0, 1, 2);
+     386             : 
+     387           2 :   return std::tuple(eulers[0], eulers[1], eulers[2]);
+     388             : }
+     389             : 
+     390             : //}
+     391             : 
+     392             : /* setters //{ */
+     393             : 
+     394           0 : AttitudeConverter AttitudeConverter::setYaw(const double& new_yaw) {
+     395             : 
+     396           0 :   auto [roll, pitch, yaw] = *this;
+     397             : 
+     398           0 :   std::ignore = yaw;
+     399             : 
+     400           0 :   return AttitudeConverter(roll, pitch, new_yaw);
+     401             : }
+     402             : 
+     403      279417 : AttitudeConverter AttitudeConverter::setHeading(const double& heading) {
+     404             : 
+     405             :   // get the Z unit vector after the original rotation
+     406      279417 :   Eigen::Vector3d b3 = getVectorZ();
+     407             : 
+     408             :   // check for singularity: z component of the thrust vector is 0
+     409      279413 :   if (fabs(b3[2]) < 1e-3) {
+     410           4 :     throw SetHeadingException();
+     411             :   }
+     412             : 
+     413             :   // get the desired heading as a vector in 3D
+     414      279410 :   Eigen::Vector3d h(cos(heading), sin(heading), 0);
+     415             : 
+     416      279411 :   Eigen::Matrix3d new_R;
+     417             : 
+     418      279409 :   new_R.col(2) = b3;
+     419             : 
+     420             :   // construct the oblique projection
+     421      279400 :   Eigen::Matrix3d projector_body_z_compl = (Eigen::Matrix3d::Identity(3, 3) - b3 * b3.transpose());
+     422             : 
+     423             :   // create a basis of the body-z complement subspace
+     424      557404 :   Eigen::MatrixXd A = Eigen::MatrixXd(3, 2);
+     425      279201 :   A.col(0)          = projector_body_z_compl.col(0);
+     426      279070 :   A.col(1)          = projector_body_z_compl.col(1);
+     427             : 
+     428             :   // create the basis of the projection null-space complement
+     429      556871 :   Eigen::MatrixXd B = Eigen::MatrixXd(3, 2);
+     430      279155 :   B.col(0)          = Eigen::Vector3d(1, 0, 0);
+     431      279029 :   B.col(1)          = Eigen::Vector3d(0, 1, 0);
+     432             : 
+     433             :   // oblique projector to <range_basis>
+     434      555917 :   Eigen::MatrixXd Bt_A               = B.transpose() * A;
+     435      556782 :   Eigen::MatrixXd Bt_A_pseudoinverse = ((Bt_A.transpose() * Bt_A).inverse()) * Bt_A.transpose();
+     436      278251 :   Eigen::MatrixXd oblique_projector  = A * Bt_A_pseudoinverse * B.transpose();
+     437             : 
+     438      278468 :   new_R.col(0) = oblique_projector * h;
+     439      277650 :   new_R.col(0).normalize();
+     440             : 
+     441             :   // | ------------------------- body y ------------------------- |
+     442             : 
+     443      278040 :   new_R.col(1) = new_R.col(2).cross(new_R.col(0));
+     444      276106 :   new_R.col(1).normalize();
+     445             : 
+     446      555735 :   return AttitudeConverter(new_R);
+     447             : }
+     448             : 
+     449             : //}
+     450             : 
+     451             : // | ------------------------ internal ------------------------ |
+     452             : 
+     453             : /* calculateRPY() //{ */
+     454             : 
+     455      169254 : void AttitudeConverter::calculateRPY(void) {
+     456             : 
+     457      169254 :   if (!got_rpy_) {
+     458             : 
+     459      169254 :     tf2::Matrix3x3(tf2_quaternion_).getRPY(roll_, pitch_, yaw_);
+     460             :   }
+     461      169254 : }
+     462             : 
+     463             : //}
+     464             : 
+     465             : /* validateOrientation() //{ */
+     466             : 
+     467    12346486 : void AttitudeConverter::validateOrientation(void) {
+     468             : 
+     469    24685534 :   if (!std::isfinite(tf2_quaternion_.x()) || !std::isfinite(tf2_quaternion_.y()) || !std::isfinite(tf2_quaternion_.z()) ||
+     470    12333442 :       !std::isfinite(tf2_quaternion_.w())) {
+     471           2 :     throw InvalidAttitudeException();
+     472             :   }
+     473    12337698 : }
+     474             : 
+     475             : //}
+     476             : 
+     477             : }  // namespace mrs_lib
+
+
+
+ + + + +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::BatchVisualizer::addEllipse(mrs_lib::geometry::Ellipse const&, double, double, double, double, bool, int, ros::Duration const&)0
mrs_lib::BatchVisualizer::addCylinder(mrs_lib::geometry::Cylinder const&, double, double, double, double, bool, bool, int, ros::Duration const&)0
mrs_lib::BatchVisualizer::addTriangle(mrs_lib::geometry::Triangle const&, double, double, double, double, bool, ros::Duration const&)0
mrs_lib::BatchVisualizer::addRectangle(mrs_lib::geometry::Rectangle const&, double, double, double, double, bool, ros::Duration const&)0
mrs_lib::BatchVisualizer::addTrajectory(mrs_msgs::TrajectoryReference_<std::allocator<void> > const&, double, double, double, double, bool, ros::Duration const&)0
mrs_lib::BatchVisualizer::setLinesScale(double)0
mrs_lib::BatchVisualizer::addRay(mrs_lib::geometry::Ray const&, double, double, double, double, ros::Duration const&)0
mrs_lib::BatchVisualizer::addCone(mrs_lib::geometry::Cone const&, double, double, double, double, bool, bool, int, ros::Duration const&)0
mrs_lib::BatchVisualizer::addPath(mrs_msgs::Path_<std::allocator<void> > const&, double, double, double, double, bool, ros::Duration const&)0
mrs_lib::BatchVisualizer::addCuboid(mrs_lib::geometry::Cuboid const&, double, double, double, double, bool, ros::Duration const&)0
mrs_lib::BatchVisualizer::setParentFrame(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)22
mrs_lib::BatchVisualizer::setPointsScale(double)22
mrs_lib::BatchVisualizer::addPoint(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double, double, double, double, ros::Duration const&)79
mrs_lib::BatchVisualizer::initialize()182
mrs_lib::BatchVisualizer::BatchVisualizer(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)182
mrs_lib::BatchVisualizer::BatchVisualizer()182
mrs_lib::BatchVisualizer::clearBuffers()204
mrs_lib::BatchVisualizer::clearVisuals()204
mrs_lib::BatchVisualizer::~BatchVisualizer()364
mrs_lib::BatchVisualizer::addNullPoint()386
mrs_lib::BatchVisualizer::addNullLine()398
mrs_lib::BatchVisualizer::addNullTriangle()398
mrs_lib::BatchVisualizer::publish()398
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Current view:top level - mrs_lib/src/batch_visualizer - batch_visualizer.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:16221774.7 %
Date:2024-04-17 23:52:03Functions:132356.5 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::BatchVisualizer::addEllipse(mrs_lib::geometry::Ellipse const&, double, double, double, double, bool, int, ros::Duration const&)0
mrs_lib::BatchVisualizer::initialize()182
mrs_lib::BatchVisualizer::addCylinder(mrs_lib::geometry::Cylinder const&, double, double, double, double, bool, bool, int, ros::Duration const&)0
mrs_lib::BatchVisualizer::addNullLine()398
mrs_lib::BatchVisualizer::addTriangle(mrs_lib::geometry::Triangle const&, double, double, double, double, bool, ros::Duration const&)0
mrs_lib::BatchVisualizer::addNullPoint()386
mrs_lib::BatchVisualizer::addRectangle(mrs_lib::geometry::Rectangle const&, double, double, double, double, bool, ros::Duration const&)0
mrs_lib::BatchVisualizer::clearBuffers()204
mrs_lib::BatchVisualizer::clearVisuals()204
mrs_lib::BatchVisualizer::addTrajectory(mrs_msgs::TrajectoryReference_<std::allocator<void> > const&, double, double, double, double, bool, ros::Duration const&)0
mrs_lib::BatchVisualizer::setLinesScale(double)0
mrs_lib::BatchVisualizer::setParentFrame(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)22
mrs_lib::BatchVisualizer::setPointsScale(double)22
mrs_lib::BatchVisualizer::addNullTriangle()398
mrs_lib::BatchVisualizer::addRay(mrs_lib::geometry::Ray const&, double, double, double, double, ros::Duration const&)0
mrs_lib::BatchVisualizer::addCone(mrs_lib::geometry::Cone const&, double, double, double, double, bool, bool, int, ros::Duration const&)0
mrs_lib::BatchVisualizer::addPath(mrs_msgs::Path_<std::allocator<void> > const&, double, double, double, double, bool, ros::Duration const&)0
mrs_lib::BatchVisualizer::publish()398
mrs_lib::BatchVisualizer::addPoint(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double, double, double, double, ros::Duration const&)79
mrs_lib::BatchVisualizer::addCuboid(mrs_lib::geometry::Cuboid const&, double, double, double, double, bool, ros::Duration const&)0
mrs_lib::BatchVisualizer::BatchVisualizer(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)182
mrs_lib::BatchVisualizer::BatchVisualizer()182
mrs_lib::BatchVisualizer::~BatchVisualizer()364
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Current view:top level - mrs_lib/src/batch_visualizer - batch_visualizer.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:16221774.7 %
Date:2024-04-17 23:52:03Functions:132356.5 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #include <string>
+       2             : #include <mrs_lib/batch_visualizer.h>
+       3             : #include <mrs_lib/geometry/shapes.h>
+       4             : 
+       5             : namespace mrs_lib
+       6             : {
+       7             : 
+       8             : /* constructors */  //{
+       9         182 : BatchVisualizer::BatchVisualizer() {
+      10         182 : }
+      11             : 
+      12         364 : BatchVisualizer::~BatchVisualizer() {
+      13         364 : }
+      14             : 
+      15         182 : BatchVisualizer::BatchVisualizer(ros::NodeHandle &nh, const std::string marker_topic_name, const std::string parent_frame) {
+      16         182 :   this->parent_frame      = parent_frame;
+      17         182 :   this->marker_topic_name = marker_topic_name;
+      18         182 :   initialize();
+      19             : 
+      20         182 :   this->visual_pub = nh.advertise<visualization_msgs::MarkerArray>(marker_topic_name.c_str(), 1);
+      21         182 :   publish();
+      22         182 : }
+      23             : //}
+      24             : 
+      25             : /* setParentFrame //{ */
+      26             : 
+      27          22 : void BatchVisualizer::setParentFrame(const std::string parent_frame) {
+      28          22 :   this->parent_frame               = parent_frame;
+      29          22 :   points_marker.header.frame_id    = parent_frame;
+      30          22 :   triangles_marker.header.frame_id = parent_frame;
+      31          22 :   lines_marker.header.frame_id     = parent_frame;
+      32          22 : }
+      33             : 
+      34             : //}
+      35             : 
+      36             : /* initialize //{ */
+      37         182 : void BatchVisualizer::initialize() {
+      38         182 :   if (initialized) {
+      39           0 :     return;
+      40             :   }
+      41             : 
+      42             :   // setup points marker
+      43         182 :   std::stringstream ss;
+      44         182 :   ss << marker_topic_name << "_points";
+      45         182 :   points_marker.header.frame_id    = parent_frame;
+      46         182 :   points_marker.header.stamp       = ros::Time::now();
+      47         182 :   points_marker.ns                 = ss.str().c_str();
+      48         182 :   points_marker.action             = visualization_msgs::Marker::ADD;
+      49         182 :   points_marker.pose.orientation.w = 1.0;
+      50         182 :   points_marker.id                 = 8;
+      51         182 :   points_marker.type               = visualization_msgs::Marker::POINTS;
+      52             : 
+      53         182 :   points_marker.scale.x = points_scale;
+      54         182 :   points_marker.scale.y = points_scale;
+      55         182 :   points_marker.color.a = 1.0;
+      56             : 
+      57             :   // setup lines marker
+      58         182 :   ss.str(std::string());
+      59         182 :   ss << marker_topic_name << "_lines";
+      60         182 :   lines_marker.header.frame_id    = parent_frame;
+      61         182 :   lines_marker.header.stamp       = ros::Time::now();
+      62         182 :   lines_marker.ns                 = ss.str().c_str();
+      63         182 :   lines_marker.action             = visualization_msgs::Marker::ADD;
+      64         182 :   lines_marker.pose.orientation.w = 1.0;
+      65         182 :   lines_marker.id                 = 5;
+      66         182 :   lines_marker.type               = visualization_msgs::Marker::LINE_LIST;
+      67             : 
+      68         182 :   lines_marker.scale.x = lines_scale;
+      69         182 :   lines_marker.color.a = 1.0;
+      70             : 
+      71             :   // setup triangles marker
+      72         182 :   ss.str(std::string());
+      73         182 :   ss << marker_topic_name << "_triangles";
+      74         182 :   triangles_marker.header.frame_id    = parent_frame;
+      75         182 :   triangles_marker.header.stamp       = ros::Time::now();
+      76         182 :   triangles_marker.ns                 = ss.str().c_str();
+      77         182 :   triangles_marker.action             = visualization_msgs::Marker::ADD;
+      78         182 :   triangles_marker.pose.orientation.w = 1.0;
+      79         182 :   triangles_marker.id                 = 11;
+      80         182 :   triangles_marker.type               = visualization_msgs::Marker::TRIANGLE_LIST;
+      81             : 
+      82         182 :   triangles_marker.scale.x = 1;
+      83         182 :   triangles_marker.scale.y = 1;
+      84         182 :   triangles_marker.scale.z = 1;
+      85         182 :   triangles_marker.color.a = 1.0;
+      86             : 
+      87         182 :   ROS_INFO("[%s]: Batch visualizer loaded with default values", ros::this_node::getName().c_str());
+      88         182 :   initialized = true;
+      89             : }
+      90             : //}
+      91             : 
+      92             : /* addPoint //{ */
+      93          79 : void BatchVisualizer::addPoint(const Eigen::Vector3d &p, const double r, const double g, const double b, const double a, const ros::Duration &timeout) {
+      94             : 
+      95         158 :   VisualObject obj = VisualObject(p, r, g, b, a, timeout, uuid++);
+      96          79 :   visual_objects.insert(obj);
+      97          79 : }
+      98             : //}
+      99             : 
+     100             : /* addRay */  //{
+     101           0 : void BatchVisualizer::addRay(const mrs_lib::geometry::Ray &ray, const double r, const double g, const double b, const double a, const ros::Duration &timeout) {
+     102             : 
+     103           0 :   VisualObject obj = VisualObject(ray, r, g, b, a, timeout, uuid++);
+     104           0 :   visual_objects.insert(obj);
+     105           0 : }
+     106             : //}
+     107             : 
+     108             : /* addTriangle //{ */
+     109           0 : void BatchVisualizer::addTriangle(const mrs_lib::geometry::Triangle &tri, const double r, const double g, const double b, const double a, const bool filled,
+     110             :                                   const ros::Duration &timeout) {
+     111             : 
+     112           0 :   VisualObject obj = VisualObject(tri, r, g, b, a, timeout, filled, uuid++);
+     113           0 :   visual_objects.insert(obj);
+     114           0 : }
+     115             : //}
+     116             : 
+     117             : /* addRectangle //{ */
+     118           0 : void BatchVisualizer::addRectangle(const mrs_lib::geometry::Rectangle &rect, const double r, const double g, const double b, const double a, const bool filled,
+     119             :                                    const ros::Duration &timeout) {
+     120             : 
+     121           0 :   VisualObject obj = VisualObject(rect, r, g, b, a, timeout, filled, uuid++);
+     122           0 :   visual_objects.insert(obj);
+     123           0 : }
+     124             : //}
+     125             : 
+     126             : /* addCuboid //{ */
+     127           0 : void BatchVisualizer::addCuboid(const mrs_lib::geometry::Cuboid &cuboid, const double r, const double g, const double b, const double a, const bool filled,
+     128             :                                 const ros::Duration &timeout) {
+     129             : 
+     130           0 :   VisualObject obj = VisualObject(cuboid, r, g, b, a, timeout, filled, uuid++);
+     131           0 :   visual_objects.insert(obj);
+     132           0 : }
+     133             : //}
+     134             : 
+     135             : /* addEllipse //{ */
+     136           0 : void BatchVisualizer::addEllipse(const mrs_lib::geometry::Ellipse &ellipse, const double r, const double g, const double b, const double a, const bool filled,
+     137             :                                  const int num_points, const ros::Duration &timeout) {
+     138             : 
+     139           0 :   VisualObject obj = VisualObject(ellipse, r, g, b, a, timeout, filled, uuid++, num_points);
+     140           0 :   visual_objects.insert(obj);
+     141           0 : }
+     142             : //}
+     143             : 
+     144             : /* addCylinder //{ */
+     145           0 : void BatchVisualizer::addCylinder(const mrs_lib::geometry::Cylinder &cylinder, const double r, const double g, const double b, const double a,
+     146             :                                   const bool filled, const bool capped, const int sides, const ros::Duration &timeout) {
+     147           0 :   VisualObject obj = VisualObject(cylinder, r, g, b, a, timeout, filled, capped, uuid++, sides);
+     148           0 :   visual_objects.insert(obj);
+     149           0 : }
+     150             : //}
+     151             : 
+     152             : /* addCone //{ */
+     153           0 : void BatchVisualizer::addCone(const mrs_lib::geometry::Cone &cone, const double r, const double g, const double b, const double a, const bool filled,
+     154             :                               const bool capped, const int sides, const ros::Duration &timeout) {
+     155           0 :   VisualObject obj = VisualObject(cone, r, g, b, a, timeout, filled, capped, uuid++, sides);
+     156           0 :   visual_objects.insert(obj);
+     157           0 : }
+     158             : //}
+     159             : 
+     160             : /* addPath //{ */
+     161           0 : void BatchVisualizer::addPath(const mrs_msgs::Path &p, const double r, const double g, const double b, const double a, const bool filled,
+     162             :                               const ros::Duration &timeout) {
+     163           0 :   VisualObject obj = VisualObject(p, r, g, b, a, timeout, filled, uuid++);
+     164           0 :   visual_objects.insert(obj);
+     165           0 : }
+     166             : //}
+     167             : 
+     168             : /* addTrajectory //{ */
+     169           0 : void BatchVisualizer::addTrajectory(const mrs_msgs::TrajectoryReference &traj, const double r, const double g, const double b, const double a,
+     170             :                                     const bool filled, const ros::Duration &timeout) {
+     171           0 :   VisualObject obj = VisualObject(traj, r, g, b, a, timeout, filled, uuid++);
+     172           0 :   visual_objects.insert(obj);
+     173           0 : }
+     174             : //}
+     175             : 
+     176             : /* addNullPoint //{ */
+     177         386 : void BatchVisualizer::addNullPoint() {
+     178         386 :   geometry_msgs::Point p;
+     179         386 :   p.x = 10000.0;
+     180         386 :   p.y = 0.0;
+     181         386 :   p.z = 0.0;
+     182             : 
+     183         386 :   std_msgs::ColorRGBA c;
+     184         386 :   c.r = 1.0;
+     185         386 :   c.g = 1.0;
+     186         386 :   c.b = 1.0;
+     187         386 :   c.a = 1.0;
+     188             : 
+     189         386 :   points_marker.points.push_back(p);
+     190         386 :   points_marker.colors.push_back(c);
+     191         386 : }
+     192             : //}
+     193             : 
+     194             : /* addNullLine //{ */
+     195         398 : void BatchVisualizer::addNullLine() {
+     196         398 :   geometry_msgs::Point p1, p2;
+     197         398 :   p1.x = 10000.0;
+     198         398 :   p1.y = 0.0;
+     199         398 :   p1.z = 0.0;
+     200             : 
+     201         398 :   p2.x = 10001.0;
+     202         398 :   p2.y = 0.0;
+     203         398 :   p2.z = 0.0;
+     204             : 
+     205         398 :   std_msgs::ColorRGBA c;
+     206         398 :   c.r = 1.0;
+     207         398 :   c.g = 1.0;
+     208         398 :   c.b = 1.0;
+     209             : 
+     210         398 :   lines_marker.colors.push_back(c);
+     211         398 :   lines_marker.colors.push_back(c);
+     212             : 
+     213         398 :   lines_marker.points.push_back(p1);
+     214         398 :   lines_marker.points.push_back(p2);
+     215         398 : }
+     216             : //}
+     217             : 
+     218             : /* addNullTriangle //{ */
+     219         398 : void BatchVisualizer::addNullTriangle() {
+     220         398 :   geometry_msgs::Point p1, p2, p3;
+     221         398 :   p1.x = 10000.0;
+     222         398 :   p1.y = 0.0;
+     223         398 :   p1.z = 0.0;
+     224             : 
+     225         398 :   p2.x = 10001.0;
+     226         398 :   p2.y = 0.0;
+     227         398 :   p2.z = 0.0;
+     228             : 
+     229         398 :   std_msgs::ColorRGBA c;
+     230         398 :   c.r = 1.0;
+     231         398 :   c.g = 1.0;
+     232         398 :   c.b = 1.0;
+     233             : 
+     234         398 :   p3.x = 10001.0;
+     235         398 :   p3.y = 0.01;
+     236         398 :   p3.z = 0.0;
+     237         398 :   triangles_marker.colors.push_back(c);
+     238         398 :   triangles_marker.colors.push_back(c);
+     239         398 :   triangles_marker.colors.push_back(c);
+     240             : 
+     241         398 :   triangles_marker.points.push_back(p1);
+     242         398 :   triangles_marker.points.push_back(p2);
+     243         398 :   triangles_marker.points.push_back(p3);
+     244         398 : }
+     245             : //}
+     246             : 
+     247             : /* setPointsScale //{ */
+     248          22 : void BatchVisualizer::setPointsScale(const double scale) {
+     249          22 :   points_scale = scale;
+     250          22 : }
+     251             : //}
+     252             : 
+     253             : /* setLinesScale //{ */
+     254           0 : void BatchVisualizer::setLinesScale(const double scale) {
+     255           0 :   lines_scale = scale;
+     256           0 : }
+     257             : //}
+     258             : 
+     259             : /* clearBuffers //{ */
+     260         204 : void BatchVisualizer::clearBuffers() {
+     261         204 :   visual_objects.clear();
+     262         204 : }
+     263             : //}
+     264             : 
+     265             : /* clearVisuals //{ */
+     266         204 : void BatchVisualizer::clearVisuals() {
+     267         408 :   std::set<VisualObject> visual_objects_tmp;
+     268         204 :   visual_objects_tmp.insert(visual_objects.begin(), visual_objects.end());
+     269             : 
+     270         204 :   visual_objects.clear();
+     271         204 :   publish();
+     272             : 
+     273         204 :   visual_objects.insert(visual_objects_tmp.begin(), visual_objects_tmp.end());
+     274         204 : }
+     275             : //}
+     276             : 
+     277             : /* publish //{ */
+     278         398 : void BatchVisualizer::publish() {
+     279             : 
+     280         398 :   msg.markers.clear();
+     281         398 :   points_marker.points.clear();
+     282         398 :   points_marker.colors.clear();
+     283             : 
+     284         398 :   lines_marker.points.clear();
+     285         398 :   lines_marker.colors.clear();
+     286             : 
+     287         398 :   triangles_marker.points.clear();
+     288         398 :   triangles_marker.colors.clear();
+     289             : 
+     290             :   // fill marker messages and remove objects that have timed out
+     291         454 :   for (auto it = visual_objects.begin(); it != visual_objects.end();) {
+     292          56 :     if (it->isTimedOut()) {
+     293           0 :       it = visual_objects.erase(it);
+     294             :     } else {
+     295         112 :       auto points = it->getPoints();
+     296         112 :       auto colors = it->getColors();
+     297          56 :       switch (it->getType()) {
+     298          56 :         case MarkerType::POINT: {
+     299          56 :           points_marker.points.insert(points_marker.points.end(), points.begin(), points.end());
+     300          56 :           points_marker.colors.insert(points_marker.colors.end(), colors.begin(), colors.end());
+     301          56 :           break;
+     302             :         }
+     303           0 :         case MarkerType::LINE: {
+     304           0 :           lines_marker.points.insert(lines_marker.points.end(), points.begin(), points.end());
+     305           0 :           lines_marker.colors.insert(lines_marker.colors.end(), colors.begin(), colors.end());
+     306           0 :           break;
+     307             :         }
+     308           0 :         case MarkerType::TRIANGLE: {
+     309           0 :           triangles_marker.points.insert(triangles_marker.points.end(), points.begin(), points.end());
+     310           0 :           triangles_marker.colors.insert(triangles_marker.colors.end(), colors.begin(), colors.end());
+     311           0 :           break;
+     312             :         }
+     313             :       }
+     314          56 :       it++;
+     315             :     }
+     316             :   }
+     317             : 
+     318         398 :   auto now = ros::Time::now();
+     319             : 
+     320         398 :   if (!points_marker.points.empty()) {
+     321          12 :     points_marker.scale.x = points_scale;
+     322          12 :     points_marker.scale.y = points_scale;
+     323             :   } else {
+     324         386 :     addNullPoint();
+     325             :   }
+     326         398 :   points_marker.header.stamp = now;
+     327         398 :   msg.markers.push_back(points_marker);
+     328             : 
+     329         398 :   if (!lines_marker.points.empty()) {
+     330           0 :     lines_marker.scale.x = lines_scale;
+     331             :   } else {
+     332         398 :     addNullLine();
+     333             :   }
+     334         398 :   lines_marker.header.stamp = now;
+     335         398 :   msg.markers.push_back(lines_marker);
+     336             : 
+     337         398 :   if (!triangles_marker.points.empty()) {
+     338           0 :     triangles_marker.header.stamp = now;
+     339             :   } else {
+     340         398 :     addNullTriangle();
+     341             :   }
+     342         398 :   triangles_marker.header.stamp = now;
+     343         398 :   msg.markers.push_back(triangles_marker);
+     344             : 
+     345         398 :   if (msg.markers.empty()) {
+     346           0 :     addNullPoint();
+     347           0 :     points_marker.scale.x = 0.1;
+     348           0 :     points_marker.scale.y = 0.1;
+     349           0 :     msg.markers.push_back(points_marker);
+     350             :   }
+     351             : 
+     352         398 :   visual_pub.publish(msg);
+     353         398 : }
+     354             : //}
+     355             : 
+     356             : }  // namespace mrs_lib
+
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Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
batch_visualizer.cpp +
74.7%74.7%
+
74.7 %162 / 21756.5 %13 / 23
visual_object.cpp +
13.8%13.8%
+
13.8 %30 / 21831.8 %7 / 22
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Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/src/batch_visualizer/visual_object.cpp.func-sort-c.html b/mrs_lib/src/batch_visualizer/visual_object.cpp.func-sort-c.html new file mode 100644 index 0000000000..79d9c83ab8 --- /dev/null +++ b/mrs_lib/src/batch_visualizer/visual_object.cpp.func-sort-c.html @@ -0,0 +1,168 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/batch_visualizer/visual_object.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/src/batch_visualizer - visual_object.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:3021813.8 %
Date:2024-04-17 23:52:03Functions:72231.8 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::msgToEigen(geometry_msgs::Point_<std::allocator<void> > const&)0
mrs_lib::VisualObject::addEllipse(mrs_lib::geometry::Ellipse const&, double, double, double, double, bool, int)0
mrs_lib::VisualObject::addTriangle(mrs_lib::geometry::Triangle const&, double, double, double, double, bool)0
mrs_lib::VisualObject::addRay(mrs_lib::geometry::Ray const&, double, double, double, double)0
mrs_lib::VisualObject::VisualObject(mrs_msgs::TrajectoryReference_<std::allocator<void> > const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&)0
mrs_lib::VisualObject::VisualObject(mrs_msgs::Path_<std::allocator<void> > const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Ray const&, double, double, double, double, ros::Duration const&, unsigned long const&)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Cone const&, double, double, double, double, ros::Duration const&, bool, bool, unsigned long const&, int)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Cuboid const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Ellipse const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&, int)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Cylinder const&, double, double, double, double, ros::Duration const&, bool, bool, unsigned long const&, int)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Triangle const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Rectangle const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&)0
mrs_lib::buildEllipse(mrs_lib::geometry::Ellipse const&, int)0
mrs_lib::VisualObject::getID() const0
mrs_lib::VisualObject::isTimedOut() const56
mrs_lib::VisualObject::getType() const56
mrs_lib::VisualObject::getColors() const56
mrs_lib::VisualObject::getPoints() const56
mrs_lib::eigenToMsg(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)79
mrs_lib::VisualObject::VisualObject(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double, double, double, double, ros::Duration const&, unsigned long const&)79
mrs_lib::generateColor(double, double, double, double)79
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Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/src/batch_visualizer/visual_object.cpp.func.html b/mrs_lib/src/batch_visualizer/visual_object.cpp.func.html new file mode 100644 index 0000000000..7713017c3c --- /dev/null +++ b/mrs_lib/src/batch_visualizer/visual_object.cpp.func.html @@ -0,0 +1,168 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/batch_visualizer/visual_object.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/src/batch_visualizer - visual_object.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:3021813.8 %
Date:2024-04-17 23:52:03Functions:72231.8 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::eigenToMsg(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)79
mrs_lib::msgToEigen(geometry_msgs::Point_<std::allocator<void> > const&)0
mrs_lib::VisualObject::addEllipse(mrs_lib::geometry::Ellipse const&, double, double, double, double, bool, int)0
mrs_lib::VisualObject::addTriangle(mrs_lib::geometry::Triangle const&, double, double, double, double, bool)0
mrs_lib::VisualObject::addRay(mrs_lib::geometry::Ray const&, double, double, double, double)0
mrs_lib::VisualObject::VisualObject(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double, double, double, double, ros::Duration const&, unsigned long const&)79
mrs_lib::VisualObject::VisualObject(mrs_msgs::TrajectoryReference_<std::allocator<void> > const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&)0
mrs_lib::VisualObject::VisualObject(mrs_msgs::Path_<std::allocator<void> > const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Ray const&, double, double, double, double, ros::Duration const&, unsigned long const&)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Cone const&, double, double, double, double, ros::Duration const&, bool, bool, unsigned long const&, int)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Cuboid const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Ellipse const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&, int)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Cylinder const&, double, double, double, double, ros::Duration const&, bool, bool, unsigned long const&, int)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Triangle const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&)0
mrs_lib::VisualObject::VisualObject(mrs_lib::geometry::Rectangle const&, double, double, double, double, ros::Duration const&, bool, unsigned long const&)0
mrs_lib::buildEllipse(mrs_lib::geometry::Ellipse const&, int)0
mrs_lib::generateColor(double, double, double, double)79
mrs_lib::VisualObject::isTimedOut() const56
mrs_lib::VisualObject::getID() const0
mrs_lib::VisualObject::getType() const56
mrs_lib::VisualObject::getColors() const56
mrs_lib::VisualObject::getPoints() const56
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/src/batch_visualizer/visual_object.cpp.gcov.frameset.html b/mrs_lib/src/batch_visualizer/visual_object.cpp.gcov.frameset.html new file mode 100644 index 0000000000..fbafc2c961 --- /dev/null +++ b/mrs_lib/src/batch_visualizer/visual_object.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/batch_visualizer/visual_object.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/src/batch_visualizer/visual_object.cpp.gcov.html b/mrs_lib/src/batch_visualizer/visual_object.cpp.gcov.html new file mode 100644 index 0000000000..b7af867364 --- /dev/null +++ b/mrs_lib/src/batch_visualizer/visual_object.cpp.gcov.html @@ -0,0 +1,435 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/batch_visualizer/visual_object.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/src/batch_visualizer - visual_object.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:3021813.8 %
Date:2024-04-17 23:52:03Functions:72231.8 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #include <mrs_lib/visual_object.h>
+       2             : 
+       3             : namespace mrs_lib
+       4             : {
+       5             : 
+       6             : /* utils //{ */
+       7             : 
+       8             : /* conversions //{ */
+       9          79 : geometry_msgs::Point eigenToMsg(const Eigen::Vector3d& v) {
+      10          79 :   geometry_msgs::Point p;
+      11          79 :   p.x = v.x();
+      12          79 :   p.y = v.y();
+      13          79 :   p.z = v.z();
+      14          79 :   return p;
+      15             : }
+      16             : 
+      17          79 : std_msgs::ColorRGBA generateColor(const double r, const double g, const double b, const double a) {
+      18          79 :   std_msgs::ColorRGBA c;
+      19          79 :   c.r = r;
+      20          79 :   c.g = g;
+      21          79 :   c.b = b;
+      22          79 :   c.a = a;
+      23          79 :   return c;
+      24             : }
+      25             : 
+      26           0 : Eigen::Vector3d msgToEigen(const geometry_msgs::Point& p) {
+      27           0 :   return Eigen::Vector3d(p.x, p.y, p.z);
+      28             : }
+      29             : //}
+      30             : 
+      31             : /* buildEllipse //{ */
+      32           0 : std::vector<Eigen::Vector3d> buildEllipse(const mrs_lib::geometry::Ellipse& ellipse, const int num_points) {
+      33           0 :   std::vector<Eigen::Vector3d> points;
+      34           0 :   double                       theta = 0;
+      35           0 :   for (int i = 0; i < num_points; i++) {
+      36           0 :     double          nom = (ellipse.a() * ellipse.b());
+      37           0 :     double          den = sqrt(((ellipse.b() * cos(theta)) * (ellipse.b() * cos(theta))) + ((ellipse.a() * sin(theta)) * (ellipse.a() * sin(theta))));
+      38           0 :     double          rho = nom / den;
+      39           0 :     Eigen::Vector3d point(rho * cos(theta), rho * sin(theta), 0);
+      40           0 :     point = ellipse.center() + ellipse.orientation() * point;
+      41           0 :     points.push_back(point);
+      42           0 :     theta += 2.0 * M_PI / num_points;
+      43             :   }
+      44           0 :   return points;
+      45             : }
+      46             : //}
+      47             : 
+      48             : //}
+      49             : 
+      50             : /* addRay //{ */
+      51           0 : void VisualObject::addRay(const mrs_lib::geometry::Ray& ray, const double r, const double g, const double b, const double a) {
+      52           0 :   type_ = MarkerType::LINE;
+      53           0 :   points_.push_back(eigenToMsg(ray.p1()));
+      54           0 :   points_.push_back(eigenToMsg(ray.p2()));
+      55           0 :   colors_.push_back(generateColor(r, g, b, a));
+      56           0 :   colors_.push_back(generateColor(r, g, b, a));
+      57           0 : }
+      58             : //}
+      59             : 
+      60             : /* addTriangle //{ */
+      61           0 : void VisualObject::addTriangle(const mrs_lib::geometry::Triangle& triangle, const double r, const double g, const double b, const double a, const bool filled) {
+      62           0 :   if (filled) {
+      63           0 :     type_ = MarkerType::TRIANGLE;
+      64           0 :     points_.push_back(eigenToMsg(triangle.a()));
+      65           0 :     points_.push_back(eigenToMsg(triangle.b()));
+      66           0 :     points_.push_back(eigenToMsg(triangle.c()));
+      67           0 :     colors_.push_back(generateColor(r, g, b, a));
+      68           0 :     colors_.push_back(generateColor(r, g, b, a));
+      69           0 :     colors_.push_back(generateColor(r, g, b, a));
+      70             :   } else {
+      71           0 :     type_ = MarkerType::LINE;
+      72           0 :     points_.push_back(eigenToMsg(triangle.a()));
+      73           0 :     points_.push_back(eigenToMsg(triangle.b()));
+      74           0 :     colors_.push_back(generateColor(r, g, b, a));
+      75           0 :     colors_.push_back(generateColor(r, g, b, a));
+      76             : 
+      77           0 :     points_.push_back(eigenToMsg(triangle.b()));
+      78           0 :     points_.push_back(eigenToMsg(triangle.c()));
+      79           0 :     colors_.push_back(generateColor(r, g, b, a));
+      80           0 :     colors_.push_back(generateColor(r, g, b, a));
+      81             : 
+      82           0 :     points_.push_back(eigenToMsg(triangle.c()));
+      83           0 :     points_.push_back(eigenToMsg(triangle.a()));
+      84           0 :     colors_.push_back(generateColor(r, g, b, a));
+      85           0 :     colors_.push_back(generateColor(r, g, b, a));
+      86             :   }
+      87           0 : }
+      88             : //}
+      89             : 
+      90             : /* addEllipse //{ */
+      91           0 : void VisualObject::addEllipse(const mrs_lib::geometry::Ellipse& ellipse, const double r, const double g, const double b, const double a, const bool filled,
+      92             :                               const int num_points) {
+      93             : 
+      94           0 :   std::vector<Eigen::Vector3d> points = buildEllipse(ellipse, num_points);
+      95           0 :   if (filled) {
+      96           0 :     for (int i = 0; i < num_points - 1; i++) {
+      97           0 :       mrs_lib::geometry::Triangle tri(ellipse.center(), points[i], points[i + 1]);
+      98           0 :       addTriangle(tri, r, g, b, a, true);
+      99             :     }
+     100           0 :     mrs_lib::geometry::Triangle tri(ellipse.center(), points[num_points - 1], points[0]);
+     101           0 :     addTriangle(tri, r, g, b, a, true);
+     102             : 
+     103             :   } else {
+     104           0 :     for (int i = 0; i < num_points - 1; i++) {
+     105           0 :       mrs_lib::geometry::Ray ray = mrs_lib::geometry::Ray::twopointCast(points[i], points[i + 1]);
+     106           0 :       addRay(ray, r, g, b, a);
+     107             :     }
+     108           0 :     mrs_lib::geometry::Ray ray = mrs_lib::geometry::Ray::twopointCast(points[num_points - 1], points[0]);
+     109           0 :     addRay(ray, r, g, b, a);
+     110             :   }
+     111           0 : }
+     112             : //}
+     113             : 
+     114             : /* Eigen::Vector3d //{ */
+     115          79 : VisualObject::VisualObject(const Eigen::Vector3d& point, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+     116          79 :                            const unsigned long& id)
+     117          79 :     : id_(id) {
+     118          79 :   type_ = MarkerType::POINT;
+     119          79 :   points_.push_back(eigenToMsg(point));
+     120          79 :   colors_.push_back(generateColor(r, g, b, a));
+     121          79 :   if (timeout.toSec() <= 0) {
+     122          79 :     timeout_time_ = ros::Time(0);
+     123             :   } else {
+     124           0 :     timeout_time_ = ros::Time::now() + timeout;
+     125             :   }
+     126          79 : }
+     127             : //}
+     128             : 
+     129             : /* mrs_lib::geometry::Ray //{ */
+     130           0 : VisualObject::VisualObject(const mrs_lib::geometry::Ray& ray, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+     131           0 :                            const unsigned long& id)
+     132           0 :     : id_(id) {
+     133           0 :   type_ = MarkerType::LINE;
+     134           0 :   addRay(ray, r, g, b, a);
+     135           0 :   if (timeout.toSec() <= 0) {
+     136           0 :     timeout_time_ = ros::Time(0);
+     137             :   } else {
+     138           0 :     timeout_time_ = ros::Time::now() + timeout;
+     139             :   }
+     140           0 : }
+     141             : //}
+     142             : 
+     143             : /* mrs_lib::geometry::Triangle //{ */
+     144           0 : VisualObject::VisualObject(const mrs_lib::geometry::Triangle& triangle, const double r, const double g, const double b, const double a,
+     145           0 :                            const ros::Duration& timeout, const bool filled, const unsigned long& id)
+     146           0 :     : id_(id) {
+     147           0 :   addTriangle(triangle, r, g, b, a, filled);
+     148           0 :   if (timeout.toSec() <= 0) {
+     149           0 :     timeout_time_ = ros::Time(0);
+     150             :   } else {
+     151           0 :     timeout_time_ = ros::Time::now() + timeout;
+     152             :   }
+     153           0 : }
+     154             : //}
+     155             : 
+     156             : /* mrs_lib::geometry::Rectangle //{ */
+     157           0 : VisualObject::VisualObject(const mrs_lib::geometry::Rectangle& rectangle, const double r, const double g, const double b, const double a,
+     158           0 :                            const ros::Duration& timeout, const bool filled, const unsigned long& id)
+     159           0 :     : id_(id) {
+     160           0 :   for (const auto& t : rectangle.triangles()) {
+     161           0 :     addTriangle(t, r, g, b, a, filled);
+     162             :   }
+     163           0 :   if (timeout.toSec() <= 0) {
+     164           0 :     timeout_time_ = ros::Time(0);
+     165             :   } else {
+     166           0 :     timeout_time_ = ros::Time::now() + timeout;
+     167             :   }
+     168           0 : }
+     169             : //}
+     170             : 
+     171             : /* mrs_lib::geometry::Cuboid //{ */
+     172           0 : VisualObject::VisualObject(const mrs_lib::geometry::Cuboid& cuboid, const double r, const double g, const double b, const double a,
+     173           0 :                            const ros::Duration& timeout, const bool filled, const unsigned long& id)
+     174           0 :     : id_(id) {
+     175             : 
+     176           0 :   for (int i = 0; i < 6; i++) {
+     177           0 :     for (const auto& t : cuboid.getRectangle(i).triangles()) {
+     178           0 :       addTriangle(t, r, g, b, a, filled);
+     179             :     }
+     180             :   }
+     181           0 :   if (timeout.toSec() <= 0) {
+     182           0 :     timeout_time_ = ros::Time(0);
+     183             :   } else {
+     184           0 :     timeout_time_ = ros::Time::now() + timeout;
+     185             :   }
+     186           0 : }
+     187             : //}
+     188             : 
+     189             : /* mrs_lib::geometry::Ellipse//{ */
+     190           0 : VisualObject::VisualObject(const mrs_lib::geometry::Ellipse& ellipse, const double r, const double g, const double b, const double a,
+     191           0 :                            const ros::Duration& timeout, const bool filled, const unsigned long& id, const int num_points)
+     192           0 :     : id_(id) {
+     193           0 :   addEllipse(ellipse, r, g, b, a, filled, num_points);
+     194           0 :   if (timeout.toSec() <= 0) {
+     195           0 :     timeout_time_ = ros::Time(0);
+     196             :   } else {
+     197           0 :     timeout_time_ = ros::Time::now() + timeout;
+     198             :   }
+     199           0 : }
+     200             : //}
+     201             : 
+     202             : /* mrs_lib::geometry::Cylinder //{ */
+     203           0 : VisualObject::VisualObject(const mrs_lib::geometry::Cylinder& cylinder, const double r, const double g, const double b, const double a,
+     204           0 :                            const ros::Duration& timeout, const bool filled, const bool capped, const unsigned long& id, const int num_sides)
+     205           0 :     : id_(id) {
+     206           0 :   if (capped) {
+     207           0 :     mrs_lib::geometry::Ellipse top    = cylinder.getCap(mrs_lib::geometry::Cylinder::TOP);
+     208           0 :     mrs_lib::geometry::Ellipse bottom = cylinder.getCap(mrs_lib::geometry::Cylinder::BOTTOM);
+     209           0 :     addEllipse(top, r, g, b, a, filled, num_sides);
+     210           0 :     addEllipse(bottom, r, g, b, a, filled, num_sides);
+     211             :   }
+     212           0 :   std::vector<Eigen::Vector3d> top_points    = buildEllipse(cylinder.getCap(mrs_lib::geometry::Cylinder::TOP), num_sides);
+     213           0 :   std::vector<Eigen::Vector3d> bottom_points = buildEllipse(cylinder.getCap(mrs_lib::geometry::Cylinder::BOTTOM), num_sides);
+     214           0 :   for (unsigned int i = 0; i < top_points.size() - 1; i++) {
+     215           0 :     mrs_lib::geometry::Rectangle rect(bottom_points[i], bottom_points[i + 1], top_points[i + 1], top_points[i]);
+     216           0 :     addTriangle(rect.triangles()[0], r, g, b, a, filled);
+     217           0 :     addTriangle(rect.triangles()[1], r, g, b, a, filled);
+     218             :   }
+     219           0 :   mrs_lib::geometry::Rectangle rect(bottom_points[bottom_points.size() - 1], bottom_points[0], top_points[0], top_points[top_points.size() - 1]);
+     220           0 :   addTriangle(rect.triangles()[0], r, g, b, a, filled);
+     221           0 :   addTriangle(rect.triangles()[1], r, g, b, a, filled);
+     222           0 :   if (timeout.toSec() <= 0) {
+     223           0 :     timeout_time_ = ros::Time(0);
+     224             :   } else {
+     225           0 :     timeout_time_ = ros::Time::now() + timeout;
+     226             :   }
+     227           0 : }
+     228             : //}
+     229             : 
+     230             : /* mrs_lib::geometry::Cone //{ */
+     231           0 : VisualObject::VisualObject(const mrs_lib::geometry::Cone& cone, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+     232           0 :                            const bool filled, const bool capped, const unsigned long& id, const int num_sides)
+     233           0 :     : id_(id) {
+     234           0 :   if (capped) {
+     235           0 :     mrs_lib::geometry::Ellipse cap = cone.getCap();
+     236           0 :     addEllipse(cap, r, g, b, a, filled, num_sides);
+     237             :   }
+     238           0 :   std::vector<Eigen::Vector3d> cap_points = buildEllipse(cone.getCap(), num_sides);
+     239           0 :   for (unsigned int i = 0; i < cap_points.size() - 1; i++) {
+     240           0 :     mrs_lib::geometry::Triangle tri(cap_points[i], cap_points[i + 1], cone.origin());
+     241           0 :     addTriangle(tri, r, g, b, a, filled);
+     242             :   }
+     243           0 :   mrs_lib::geometry::Triangle tri(cap_points[cap_points.size() - 1], cap_points[0], cone.origin());
+     244           0 :   addTriangle(tri, r, g, b, a, filled);
+     245           0 :   if (timeout.toSec() <= 0) {
+     246           0 :     timeout_time_ = ros::Time(0);
+     247             :   } else {
+     248           0 :     timeout_time_ = ros::Time::now() + timeout;
+     249             :   }
+     250           0 : }
+     251             : //}
+     252             : 
+     253             : /* mrs_msgs::Path //{ */
+     254           0 : VisualObject::VisualObject(const mrs_msgs::Path& p, const double r, const double g, const double b, const double a, const ros::Duration& timeout,
+     255           0 :                            const bool filled, const unsigned long& id)
+     256           0 :     : id_(id) {
+     257           0 :   if (p.points.size() < 2) {
+     258           0 :     return;
+     259             :   }
+     260           0 :   if (filled) {
+     261           0 :     for (size_t i = 0; i < p.points.size() - 1; i++) {
+     262           0 :       Eigen::Vector3d p1, p2;
+     263           0 :       p1.x()   = p.points[i].position.x;
+     264           0 :       p1.y()   = p.points[i].position.y;
+     265           0 :       p1.z()   = p.points[i].position.z;
+     266           0 :       p2.x()   = p.points[i + 1].position.x;
+     267           0 :       p2.y()   = p.points[i + 1].position.y;
+     268           0 :       p2.z()   = p.points[i + 1].position.z;
+     269           0 :       auto ray = mrs_lib::geometry::Ray::twopointCast(p1, p2);
+     270           0 :       addRay(ray, r, g, b, a);
+     271             :     }
+     272             :   } else {
+     273           0 :     type_ = MarkerType::POINT;
+     274           0 :     for (size_t i = 0; i < p.points.size(); i++) {
+     275           0 :       points_.push_back(p.points[i].position);
+     276           0 :       colors_.push_back(generateColor(r, g, b, a));
+     277             :     }
+     278             :   }
+     279           0 :   if (timeout.toSec() <= 0) {
+     280           0 :     timeout_time_ = ros::Time(0);
+     281             :   } else {
+     282           0 :     timeout_time_ = ros::Time::now() + timeout;
+     283             :   }
+     284             : }
+     285             : //}
+     286             : 
+     287             : /* mrs_msgs::TrajectoryReference //{ */
+     288           0 : VisualObject::VisualObject(const mrs_msgs::TrajectoryReference& traj, const double r, const double g, const double b, const double a,
+     289           0 :                            const ros::Duration& timeout, const bool filled, const unsigned long& id)
+     290           0 :     : id_(id) {
+     291           0 :   if (traj.points.size() < 2) {
+     292           0 :     return;
+     293             :   }
+     294           0 :   if (filled) {
+     295           0 :     for (size_t i = 0; i < traj.points.size() - 1; i++) {
+     296           0 :       Eigen::Vector3d p1, p2;
+     297           0 :       p1.x()   = traj.points[i].position.x;
+     298           0 :       p1.y()   = traj.points[i].position.y;
+     299           0 :       p1.z()   = traj.points[i].position.z;
+     300           0 :       p2.x()   = traj.points[i + 1].position.x;
+     301           0 :       p2.y()   = traj.points[i + 1].position.y;
+     302           0 :       p2.z()   = traj.points[i + 1].position.z;
+     303           0 :       auto ray = mrs_lib::geometry::Ray::twopointCast(p1, p2);
+     304           0 :       addRay(ray, r, g, b, a);
+     305             :     }
+     306             :   } else {
+     307           0 :     type_ = MarkerType::POINT;
+     308           0 :     for (size_t i = 0; i < traj.points.size(); i++) {
+     309           0 :       points_.push_back(traj.points[i].position);
+     310           0 :       colors_.push_back(generateColor(r, g, b, a));
+     311             :     }
+     312             :   }
+     313           0 :   if (timeout.toSec() <= 0) {
+     314           0 :     timeout_time_ = ros::Time(0);
+     315             :   } else {
+     316           0 :     timeout_time_ = ros::Time::now() + timeout;
+     317             :   }
+     318             : }
+     319             : //}
+     320             : 
+     321             : /* getID //{ */
+     322           0 : unsigned long VisualObject::getID() const {
+     323           0 :   return id_;
+     324             : }
+     325             : //}
+     326             : 
+     327             : /* getType //{ */
+     328          56 : int VisualObject::getType() const {
+     329          56 :   return type_;
+     330             : }
+     331             : //}
+     332             : 
+     333             : /* isTimedOut //{ */
+     334          56 : bool VisualObject::isTimedOut() const {
+     335          56 :   return !timeout_time_.isZero() && (timeout_time_ - ros::Time::now()).toSec() <= 0;
+     336             : }
+     337             : //}
+     338             : 
+     339             : /* getPoints //{ */
+     340          56 : const std::vector<geometry_msgs::Point> VisualObject::getPoints() const {
+     341          56 :   return points_;
+     342             : }
+     343             : //}
+     344             : 
+     345             : /* getColors //{ */
+     346          56 : const std::vector<std_msgs::ColorRGBA> VisualObject::getColors() const {
+     347          56 :   return colors_;
+     348             : }
+     349             : //}
+     350             : 
+     351             : }  // namespace mrs_lib
+
+
+
+ + + + +
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+ + + diff --git a/mrs_lib/src/batch_visualizer/visual_object.cpp.gcov.overview.html b/mrs_lib/src/batch_visualizer/visual_object.cpp.gcov.overview.html new file mode 100644 index 0000000000..a95610f629 --- /dev/null +++ b/mrs_lib/src/batch_visualizer/visual_object.cpp.gcov.overview.html @@ -0,0 +1,108 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/batch_visualizer/visual_object.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_lib/src/batch_visualizer/visual_object.cpp.gcov.png b/mrs_lib/src/batch_visualizer/visual_object.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..b55f768965809edc613746889e563a4b1d7241f7 GIT binary patch literal 1229 zcmV;;1Ty=HP)2Nbs` zoTWIMm+F|wabY=fTua7yD)2OcZ?1tqZfc870j#l2Yw;o2ic`x%3rtvl0Lx4PG`AX> zSp(Y;p0(%cBnKv%DmNZ|4n&W5{FpRoIqT;Gxdu>ZXVGxGz%vc^5Lf8?!DL)P<*I@5 zT-jfvkf~5LBdgkHnks(V$ZzVIdDk+qANw=*M+J*P)A!J7s}Gn8z(w@s}=n{PM>>>MLb z;));`^*Izs%PdZxQL$rMD`g|Pj^LI9jWNKc=)j_ZG9A`thB>x`VVi`M2b^oV>-U>T zGyCMIic~Xi5$HML#Ir|^ZOT!OJ<8wY*MdCdS+#urW46DGJx)b|>OOhea=t2RHPAe} zbZcExHZN(OfCtu%?41D4X7mWGfr-zV8LDQ+!xo0F1!};|GwguD9;>>GNQR|GA)Zxe zj=lztn_2HAQhS>!&cOvW7FRqj}<;${}1n(02btrfqpw-A4y&R z)_Oi6NcBP$XFaKqYFJM|C~s-5<{Ge`M8~~gH>%3LjDiR5HHvmr;f=yw8mlLc|Q1EgcU0*vOlLx#mV%xQ`hWm90;EW<-=PckKX&-L<=B1XAnLSH;fvDBj9-*#5_Uj)e4#yy3u#JrPrkvOg~3Zg_6&wTMgM zj|Vo=%;SLnI^u44y0jH>$<0a#bVb~(M-kJfM_kcYPQ0lU_D{*(Z&&WKe)>Lp3ESD% zINWBB#s&iS4T$#chy)bxRXFPHD%k3lHo@?G2d?wYCjO-8U_PH~fwG^4vf~~gB! + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/geometry/conversions.cpp - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/src/geometry - conversions.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:324669.6 %
Date:2024-04-17 23:52:03Functions:71070.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::geometry::toEigenMatrix(boost::array<double, 36ul> const&)0
mrs_lib::geometry::toCV(geometry_msgs::Vector3_<std::allocator<void> > const&)0
mrs_lib::geometry::fromEigen(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)0
mrs_lib::geometry::toCV(geometry_msgs::Point_<std::allocator<void> > const&)1
mrs_lib::geometry::fromCV(cv::Point3_<double> const&)1
mrs_lib::geometry::toEigen(geometry_msgs::Vector3_<std::allocator<void> > const&)19
mrs_lib::geometry::fromEigenVec(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)22
mrs_lib::geometry::toEigen(geometry_msgs::Point_<std::allocator<void> > const&)28
mrs_lib::geometry::toEigen(geometry_msgs::Quaternion_<std::allocator<void> > const&)109992
mrs_lib::geometry::fromEigen(Eigen::Quaternion<double, 0> const&)109992
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Test:MRS UAV System - Test coverage reportLines:324669.6 %
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Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::geometry::fromEigenVec(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)22
mrs_lib::geometry::toEigenMatrix(boost::array<double, 36ul> const&)0
mrs_lib::geometry::toCV(geometry_msgs::Point_<std::allocator<void> > const&)1
mrs_lib::geometry::toCV(geometry_msgs::Vector3_<std::allocator<void> > const&)0
mrs_lib::geometry::fromCV(cv::Point3_<double> const&)1
mrs_lib::geometry::toEigen(geometry_msgs::Quaternion_<std::allocator<void> > const&)109992
mrs_lib::geometry::toEigen(geometry_msgs::Point_<std::allocator<void> > const&)28
mrs_lib::geometry::toEigen(geometry_msgs::Vector3_<std::allocator<void> > const&)19
mrs_lib::geometry::fromEigen(Eigen::Quaternion<double, 0> const&)109992
mrs_lib::geometry::fromEigen(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)0
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+ + + diff --git a/mrs_lib/src/geometry/conversions.cpp.gcov.frameset.html b/mrs_lib/src/geometry/conversions.cpp.gcov.frameset.html new file mode 100644 index 0000000000..98a653461f --- /dev/null +++ b/mrs_lib/src/geometry/conversions.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/geometry/conversions.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/src/geometry/conversions.cpp.gcov.html b/mrs_lib/src/geometry/conversions.cpp.gcov.html new file mode 100644 index 0000000000..94455d24fc --- /dev/null +++ b/mrs_lib/src/geometry/conversions.cpp.gcov.html @@ -0,0 +1,178 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/geometry/conversions.cpp + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/src/geometry - conversions.cpp (source / functions)HitTotalCoverage
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Date:2024-04-17 23:52:03Functions:71070.0 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #include <mrs_lib/geometry/conversions.h>
+       2             : 
+       3             : namespace mrs_lib
+       4             : {
+       5             :   namespace geometry
+       6             :   {
+       7             : 
+       8             :     /* conversions from/to Eigen //{ */
+       9             :     
+      10           0 :     geometry_msgs::Point fromEigen(const Eigen::Vector3d& what)
+      11             :     {
+      12           0 :       geometry_msgs::Point pt;
+      13           0 :       pt.x = what.x();
+      14           0 :       pt.y = what.y();
+      15           0 :       pt.z = what.z();
+      16           0 :       return pt;
+      17             :     }
+      18             :     
+      19          22 :     geometry_msgs::Vector3 fromEigenVec(const Eigen::Vector3d& what)
+      20             :     {
+      21          22 :       geometry_msgs::Vector3 pt;
+      22          22 :       pt.x = what.x();
+      23          22 :       pt.y = what.y();
+      24          22 :       pt.z = what.z();
+      25          22 :       return pt;
+      26             :     }
+      27             :     
+      28          28 :     Eigen::Vector3d toEigen(const geometry_msgs::Point& what)
+      29             :     {
+      30          28 :       return {what.x, what.y, what.z};
+      31             :     }
+      32             :     
+      33          19 :     Eigen::Vector3d toEigen(const geometry_msgs::Vector3& what)
+      34             :     {
+      35          19 :       return {what.x, what.y, what.z};
+      36             :     }
+      37             :     
+      38           0 :     Eigen::Matrix<double, 6, 6> toEigenMatrix(const boost::array<double, 36>& what)
+      39             :     {
+      40           0 :       Eigen::Matrix<double, 6, 6> ret;
+      41           0 :       for (int r = 0; r < 6; r++)
+      42           0 :         for (int c = 0; c < 6; c++)
+      43           0 :           ret(r, c) = what.at(6 * r + c);
+      44           0 :       return ret;
+      45             :     }
+      46             :     
+      47      109992 :     geometry_msgs::Quaternion fromEigen(const Eigen::Quaterniond& what)
+      48             :     {
+      49      109992 :       geometry_msgs::Quaternion q;
+      50      109992 :       q.x = what.x();
+      51      109992 :       q.y = what.y();
+      52      109992 :       q.z = what.z();
+      53      109992 :       q.w = what.w();
+      54      109992 :       return q;
+      55             :     }
+      56             :     
+      57      109992 :     Eigen::Quaterniond toEigen(const geometry_msgs::Quaternion& what)
+      58             :     {
+      59             :       // better to do this manually than through the constructor to avoid ambiguities (e.g. position of x and w)
+      60      109992 :       Eigen::Quaterniond q;
+      61      109992 :       q.x() = what.x;
+      62      109992 :       q.y() = what.y;
+      63      109992 :       q.z() = what.z;
+      64      109992 :       q.w() = what.w;
+      65      109992 :       return q;
+      66             :     }
+      67             :     
+      68             :     //}
+      69             : 
+      70             :     /* conversions from/to OpenCV //{ */
+      71             :     
+      72           1 :     geometry_msgs::Point fromCV(const cv::Point3d& what)
+      73             :     {
+      74           1 :       geometry_msgs::Point pt;
+      75           1 :       pt.x = what.x;
+      76           1 :       pt.y = what.y;
+      77           1 :       pt.z = what.z;
+      78           1 :       return pt;
+      79             :     }
+      80             :     
+      81           1 :     cv::Point3d toCV(const geometry_msgs::Point& what)
+      82             :     {
+      83           1 :       return {what.x, what.y, what.z};
+      84             :     }
+      85             :     
+      86           0 :     cv::Point3d toCV(const geometry_msgs::Vector3& what)
+      87             :     {
+      88           0 :       return {what.x, what.y, what.z};
+      89             :     }
+      90             :     
+      91             :     //}
+      92             : 
+      93             :   }
+      94             : }
+
+
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+ + + diff --git a/mrs_lib/src/geometry/conversions.cpp.gcov.overview.html b/mrs_lib/src/geometry/conversions.cpp.gcov.overview.html new file mode 100644 index 0000000000..7d113fc895 --- /dev/null +++ b/mrs_lib/src/geometry/conversions.cpp.gcov.overview.html @@ -0,0 +1,44 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/geometry/conversions.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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Test:MRS UAV System - Test coverage reportLines:6744515.1 %
Date:2024-04-17 23:52:03Functions:159416.0 %
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misc.cpp +
54.7%54.7%
+
54.7 %35 / 6450.0 %8 / 16
<unnamed>54.7 %35 / 6450.0 %8 / 16
conversions.cpp +
69.6%69.6%
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<unnamed>69.6 %32 / 4670.0 %7 / 10
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Test:MRS UAV System - Test coverage reportLines:6744515.1 %
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shapes.cpp +
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misc.cpp +
54.7%54.7%
+
54.7 %35 / 6450.0 %8 / 16
<unnamed>54.7 %35 / 6450.0 %8 / 16
conversions.cpp +
69.6%69.6%
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<unnamed>69.6 %32 / 4670.0 %7 / 10
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Current view:top level - mrs_lib/src/geometry - misc.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:356454.7 %
Date:2024-04-17 23:52:03Functions:81650.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::geometry::solidAngle(double, double, double)0
mrs_lib::geometry::invHaversin(double)0
mrs_lib::geometry::triangleArea(double, double, double)0
mrs_lib::geometry::quaternionBetween(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double)0
mrs_lib::geometry::quaternionFromEuler(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)0
mrs_lib::geometry::quaternionFromEuler(double, double, double)0
mrs_lib::geometry::sphericalTriangleArea(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::haversin(double)0
mrs_lib::geometry::angleBetween(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)3
mrs_lib::geometry::rotationBetween(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double)3
mrs_lib::geometry::angleaxisBetween(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double)3
mrs_lib::geometry::cross(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1>)3
mrs_lib::geometry::quaternionFromHeading(double)109998
mrs_lib::geometry::angleBetween(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)139495
mrs_lib::geometry::dist(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)193983
mrs_lib::geometry::dist(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)290960
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Current view:top level - mrs_lib/src/geometry - misc.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:356454.7 %
Date:2024-04-17 23:52:03Functions:81650.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::geometry::solidAngle(double, double, double)0
mrs_lib::geometry::invHaversin(double)0
mrs_lib::geometry::angleBetween(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)3
mrs_lib::geometry::angleBetween(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)139495
mrs_lib::geometry::triangleArea(double, double, double)0
mrs_lib::geometry::rotationBetween(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double)3
mrs_lib::geometry::angleaxisBetween(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double)3
mrs_lib::geometry::quaternionBetween(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double)0
mrs_lib::geometry::quaternionFromEuler(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)0
mrs_lib::geometry::quaternionFromEuler(double, double, double)0
mrs_lib::geometry::quaternionFromHeading(double)109998
mrs_lib::geometry::sphericalTriangleArea(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::dist(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)290960
mrs_lib::geometry::dist(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)193983
mrs_lib::geometry::cross(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, Eigen::Matrix<double, 2, 1, 0, 2, 1>)3
mrs_lib::geometry::haversin(double)0
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Test:MRS UAV System - Test coverage reportLines:356454.7 %
Date:2024-04-17 23:52:03Functions:81650.0 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : #include <mrs_lib/geometry/misc.h>
+       3             : 
+       4             : namespace mrs_lib
+       5             : {
+       6             :   namespace geometry
+       7             :   {
+       8             : 
+       9             :     // instantiation of common template values
+      10             :     vec_t<3 + 1> toHomogenous(const vec_t<3>& vec);
+      11             :     vec_t<2 + 1> toHomogenous(const vec_t<2>& vec);
+      12             : 
+      13             :     // | ----------------- Angle-related functions ---------------- |
+      14             : 
+      15             :     /* angle-related functions //{ */
+      16             : 
+      17             :     /* cross() //{ */
+      18             : 
+      19           3 :     double cross(const vec2_t& vec1, const vec2_t vec2)
+      20             :     {
+      21           3 :       return vec1.x() * vec2.y() - vec1.y() * vec2.x();
+      22             :     }
+      23             : 
+      24             :     //}
+      25             : 
+      26             :     /* angleBetween() //{ */
+      27             : 
+      28      139495 :     double angleBetween(const vec3_t& vec1, const vec3_t& vec2)
+      29             :     {
+      30      139495 :       const double sin_12 = vec1.cross(vec2).norm();
+      31      139484 :       const double cos_12 = vec1.dot(vec2);
+      32      139464 :       const double angle = std::atan2(sin_12, cos_12);
+      33      139464 :       return angle;
+      34             :     }
+      35             : 
+      36           3 :     double angleBetween(const vec2_t& vec1, const vec2_t& vec2)
+      37             :     {
+      38           3 :       const double sin_12 = cross(vec1, vec2);
+      39           3 :       const double cos_12 = vec1.dot(vec2);
+      40           3 :       const double angle = std::atan2(sin_12, cos_12);
+      41           3 :       return angle;
+      42             :     }
+      43             : 
+      44             :     //}
+      45             : 
+      46             :     /* angleaxisBetween() //{ */
+      47             : 
+      48           3 :     anax_t angleaxisBetween(const Eigen::Vector3d& vec1, const Eigen::Vector3d& vec2, const double tolerance)
+      49             :     {
+      50             :       // Find the rotation matrix to rotate vec1 to point in the direction of vec2
+      51           3 :       const Eigen::Vector3d a = vec1.normalized();
+      52           3 :       const Eigen::Vector3d b = vec2.normalized();
+      53           3 :       const Eigen::Vector3d v = a.cross(b);
+      54           3 :       const double sin_ab = v.norm();
+      55           3 :       const double cos_ab = a.dot(b);
+      56           3 :       const double angle = std::atan2(sin_ab, cos_ab);
+      57           3 :       anax_t ret;
+      58           3 :       if (abs(angle) < tolerance)
+      59           1 :         ret = anax_t(0.0, Eigen::Vector3d::UnitX());
+      60           2 :       else if (abs(abs(angle) - M_PI) < tolerance)
+      61           0 :         ret = anax_t(M_PI, Eigen::Vector3d::UnitX());
+      62             :       else
+      63           2 :         ret = anax_t(angle, v.normalized());
+      64           6 :       return ret;
+      65             :     }
+      66             : 
+      67             :     //}
+      68             : 
+      69             :     /* quaternionBetween() //{ */
+      70             : 
+      71           0 :     quat_t quaternionBetween(const Eigen::Vector3d& vec1, const Eigen::Vector3d& vec2, const double tolerance)
+      72             :     {
+      73           0 :       const auto rot = angleaxisBetween(vec1, vec2, tolerance);
+      74           0 :       const quat_t ret(rot);
+      75           0 :       return ret;
+      76             :     }
+      77             : 
+      78             :     /* quaternionFromEuler() overloads //{ */
+      79           0 :     quat_t quaternionFromEuler(double x, double y, double z)
+      80             :     {
+      81           0 :       return anax_t(x, vec3_t::UnitX()) * anax_t(y, vec3_t::UnitY()) * anax_t(z, vec3_t::UnitZ());
+      82             :     }
+      83             : 
+      84           0 :     quat_t quaternionFromEuler(const Eigen::Vector3d& euler)
+      85             :     {
+      86           0 :       return anax_t(euler.x(), vec3_t::UnitX()) * anax_t(euler.y(), vec3_t::UnitY())
+      87           0 :              * anax_t(euler.z(), vec3_t::UnitZ());
+      88             :     }
+      89             :     //}
+      90             : 
+      91             :     /* quaternionFromHeading //{ */
+      92      109998 :     quat_t quaternionFromHeading(const double heading)
+      93             :     {
+      94      219996 :       return quat_t(anax_t(heading, Eigen::Vector3d::UnitZ()));
+      95             :     }
+      96             :     //}
+      97             : 
+      98             :     //}
+      99             : 
+     100             :     /* rotationBetween() //{ */
+     101             : 
+     102           3 :     Eigen::Matrix3d rotationBetween(const Eigen::Vector3d& vec1, const Eigen::Vector3d& vec2, const double tolerance)
+     103             :     {
+     104           3 :       const auto rot = angleaxisBetween(vec1, vec2, tolerance);
+     105           3 :       const Eigen::Matrix3d ret(rot);
+     106           6 :       return ret;
+     107             :     }
+     108             : 
+     109             :     //}
+     110             : 
+     111             :     /* haversin() //{ */
+     112             : 
+     113           0 :     double haversin(const double angle)
+     114             :     {
+     115           0 :       return (1.0 - std::cos(angle)) / 2.0;
+     116             :     }
+     117             : 
+     118             :     //}
+     119             : 
+     120             :     /* invHaversin() //{ */
+     121             : 
+     122           0 :     double invHaversin(const double value)
+     123             :     {
+     124           0 :       return 2.0 * std::asin(std::sqrt(value));
+     125             :     }
+     126             : 
+     127             :     //}
+     128             : 
+     129             :     /* solidAngle() //{ */
+     130           0 :     double solidAngle(double a, double b, double c)
+     131             :     {
+     132           0 :       return invHaversin((haversin(c) - haversin(a - b)) / (std::sin(a) * std::sin(b)));
+     133             :     }
+     134             :     //}
+     135             : 
+     136             :     //}
+     137             : 
+     138             :     /* triangleArea() //{ */
+     139             : 
+     140           0 :     double triangleArea(const double a, const double b, const double c)
+     141             :     {
+     142           0 :       double s = (a + b + c) / 2.0;
+     143           0 :       return std::sqrt(s * (s - a) * (s - b) * (s - c));
+     144             :     }
+     145             : 
+     146             :     //}
+     147             : 
+     148             :     /* sphericalTriangleArea //{ */
+     149           0 :     double sphericalTriangleArea(Eigen::Vector3d a, Eigen::Vector3d b, Eigen::Vector3d c)
+     150             :     {
+     151           0 :       double ab = angleBetween(a, b);
+     152           0 :       double bc = angleBetween(b, c);
+     153           0 :       double ca = angleBetween(c, a);
+     154             : 
+     155           0 :       if (ab < 1e-3 and bc < 1e-3 and ca < 1e-3)
+     156             :       {
+     157           0 :         return triangleArea(ab, bc, ca);
+     158             :       }
+     159             : 
+     160           0 :       double A = solidAngle(ca, ab, bc);
+     161           0 :       double B = solidAngle(ab, bc, ca);
+     162           0 :       double C = solidAngle(bc, ca, ab);
+     163             : 
+     164           0 :       return A + B + C - M_PI;
+     165             :     }
+     166             :     //}
+     167             : 
+     168             :     /* vector distance //{ */
+     169             : 
+     170      290960 :     double dist(const vec2_t& a, const vec2_t& b)
+     171             :     {
+     172             : 
+     173      290960 :       return (a - b).norm();
+     174             :     }
+     175             : 
+     176      193983 :     double dist(const vec3_t& a, const vec3_t& b)
+     177             :     {
+     178             : 
+     179      193983 :       return (a - b).norm();
+     180             :     }
+     181             : 
+     182             :     //}
+     183             : 
+     184             :   }  // namespace geometry
+     185             : }  // namespace mrs_lib
+
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::geometry::Ray::twopointCast(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Ray::directionCast(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Ray::Ray(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Ray::Ray()0
mrs_lib::geometry::Ray::~Ray()0
mrs_lib::geometry::Cone::Cone(Eigen::Matrix<double, 3, 1, 0, 3, 1>, double, double, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Cone::Cone()0
mrs_lib::geometry::Cone::~Cone()0
mrs_lib::geometry::Cuboid::Cuboid(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Quaternion<double, 0>)0
mrs_lib::geometry::Cuboid::Cuboid(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Cuboid::Cuboid(std::vector<Eigen::Matrix<double, 3, 1, 0, 3, 1>, std::allocator<Eigen::Matrix<double, 3, 1, 0, 3, 1> > >)0
mrs_lib::geometry::Cuboid::Cuboid()0
mrs_lib::geometry::Cuboid::~Cuboid()0
mrs_lib::geometry::Ellipse::Ellipse(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Quaternion<double, 0>, double, double)0
mrs_lib::geometry::Ellipse::Ellipse()0
mrs_lib::geometry::Ellipse::~Ellipse()0
mrs_lib::geometry::Cylinder::Cylinder(Eigen::Matrix<double, 3, 1, 0, 3, 1>, double, double, Eigen::Quaternion<double, 0>)0
mrs_lib::geometry::Cylinder::Cylinder()0
mrs_lib::geometry::Cylinder::~Cylinder()0
mrs_lib::geometry::Triangle::Triangle(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Triangle::Triangle()0
mrs_lib::geometry::Triangle::~Triangle()0
mrs_lib::geometry::Rectangle::Rectangle(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Rectangle::Rectangle(std::vector<Eigen::Matrix<double, 3, 1, 0, 3, 1>, std::allocator<Eigen::Matrix<double, 3, 1, 0, 3, 1> > >)0
mrs_lib::geometry::Rectangle::Rectangle()0
mrs_lib::geometry::Rectangle::~Rectangle()0
mrs_lib::geometry::Ray::p1() const0
mrs_lib::geometry::Ray::p2() const0
mrs_lib::geometry::Ray::direction() const0
mrs_lib::geometry::Cone::projectPoint(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&) const0
mrs_lib::geometry::Cone::h() const0
mrs_lib::geometry::Cone::theta() const0
mrs_lib::geometry::Cone::center() const0
mrs_lib::geometry::Cone::getCap() const0
mrs_lib::geometry::Cone::origin() const0
mrs_lib::geometry::Cone::direction() const0
mrs_lib::geometry::Cuboid::getRectangle(int) const0
mrs_lib::geometry::Cuboid::lookupPoints(int) const0
mrs_lib::geometry::Cuboid::intersectionRay(mrs_lib::geometry::Ray, double) const0
mrs_lib::geometry::Cuboid::center() const0
mrs_lib::geometry::Cuboid::vertices() const0
mrs_lib::geometry::Ellipse::orientation() const0
mrs_lib::geometry::Ellipse::a() const0
mrs_lib::geometry::Ellipse::b() const0
mrs_lib::geometry::Ellipse::center() const0
mrs_lib::geometry::Cylinder::orientation() const0
mrs_lib::geometry::Cylinder::h() const0
mrs_lib::geometry::Cylinder::r() const0
mrs_lib::geometry::Cylinder::center() const0
mrs_lib::geometry::Cylinder::getCap(int) const0
mrs_lib::geometry::Triangle::intersectionRay(mrs_lib::geometry::Ray, double) const0
mrs_lib::geometry::Triangle::a() const0
mrs_lib::geometry::Triangle::b() const0
mrs_lib::geometry::Triangle::c() const0
mrs_lib::geometry::Triangle::center() const0
mrs_lib::geometry::Triangle::normal() const0
mrs_lib::geometry::Triangle::vertices() const0
mrs_lib::geometry::Rectangle::intersectionRay(mrs_lib::geometry::Ray, double) const0
mrs_lib::geometry::Rectangle::a() const0
mrs_lib::geometry::Rectangle::b() const0
mrs_lib::geometry::Rectangle::c() const0
mrs_lib::geometry::Rectangle::d() const0
mrs_lib::geometry::Rectangle::solidAngleRelativeTo(Eigen::Matrix<double, 3, 1, 0, 3, 1>) const0
mrs_lib::geometry::Rectangle::center() const0
mrs_lib::geometry::Rectangle::normal() const0
mrs_lib::geometry::Rectangle::isFacing(Eigen::Matrix<double, 3, 1, 0, 3, 1>) const0
mrs_lib::geometry::Rectangle::vertices() const0
mrs_lib::geometry::Rectangle::triangles() const0
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/src/geometry/shapes.cpp.func.html b/mrs_lib/src/geometry/shapes.cpp.func.html new file mode 100644 index 0000000000..72e0d8120c --- /dev/null +++ b/mrs_lib/src/geometry/shapes.cpp.func.html @@ -0,0 +1,352 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/geometry/shapes.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/src/geometry - shapes.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:03350.0 %
Date:2024-04-17 23:52:03Functions:0680.0 %
Legend: Lines: + hit + not hit +
+
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_lib::geometry::Ray::twopointCast(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Ray::directionCast(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Ray::Ray(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Ray::Ray()0
mrs_lib::geometry::Ray::~Ray()0
mrs_lib::geometry::Cone::Cone(Eigen::Matrix<double, 3, 1, 0, 3, 1>, double, double, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Cone::Cone()0
mrs_lib::geometry::Cone::~Cone()0
mrs_lib::geometry::Cuboid::Cuboid(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Quaternion<double, 0>)0
mrs_lib::geometry::Cuboid::Cuboid(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Cuboid::Cuboid(std::vector<Eigen::Matrix<double, 3, 1, 0, 3, 1>, std::allocator<Eigen::Matrix<double, 3, 1, 0, 3, 1> > >)0
mrs_lib::geometry::Cuboid::Cuboid()0
mrs_lib::geometry::Cuboid::~Cuboid()0
mrs_lib::geometry::Ellipse::Ellipse(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Quaternion<double, 0>, double, double)0
mrs_lib::geometry::Ellipse::Ellipse()0
mrs_lib::geometry::Ellipse::~Ellipse()0
mrs_lib::geometry::Cylinder::Cylinder(Eigen::Matrix<double, 3, 1, 0, 3, 1>, double, double, Eigen::Quaternion<double, 0>)0
mrs_lib::geometry::Cylinder::Cylinder()0
mrs_lib::geometry::Cylinder::~Cylinder()0
mrs_lib::geometry::Triangle::Triangle(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Triangle::Triangle()0
mrs_lib::geometry::Triangle::~Triangle()0
mrs_lib::geometry::Rectangle::Rectangle(Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>, Eigen::Matrix<double, 3, 1, 0, 3, 1>)0
mrs_lib::geometry::Rectangle::Rectangle(std::vector<Eigen::Matrix<double, 3, 1, 0, 3, 1>, std::allocator<Eigen::Matrix<double, 3, 1, 0, 3, 1> > >)0
mrs_lib::geometry::Rectangle::Rectangle()0
mrs_lib::geometry::Rectangle::~Rectangle()0
mrs_lib::geometry::Ray::p1() const0
mrs_lib::geometry::Ray::p2() const0
mrs_lib::geometry::Ray::direction() const0
mrs_lib::geometry::Cone::projectPoint(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&) const0
mrs_lib::geometry::Cone::h() const0
mrs_lib::geometry::Cone::theta() const0
mrs_lib::geometry::Cone::center() const0
mrs_lib::geometry::Cone::getCap() const0
mrs_lib::geometry::Cone::origin() const0
mrs_lib::geometry::Cone::direction() const0
mrs_lib::geometry::Cuboid::getRectangle(int) const0
mrs_lib::geometry::Cuboid::lookupPoints(int) const0
mrs_lib::geometry::Cuboid::intersectionRay(mrs_lib::geometry::Ray, double) const0
mrs_lib::geometry::Cuboid::center() const0
mrs_lib::geometry::Cuboid::vertices() const0
mrs_lib::geometry::Ellipse::orientation() const0
mrs_lib::geometry::Ellipse::a() const0
mrs_lib::geometry::Ellipse::b() const0
mrs_lib::geometry::Ellipse::center() const0
mrs_lib::geometry::Cylinder::orientation() const0
mrs_lib::geometry::Cylinder::h() const0
mrs_lib::geometry::Cylinder::r() const0
mrs_lib::geometry::Cylinder::center() const0
mrs_lib::geometry::Cylinder::getCap(int) const0
mrs_lib::geometry::Triangle::intersectionRay(mrs_lib::geometry::Ray, double) const0
mrs_lib::geometry::Triangle::a() const0
mrs_lib::geometry::Triangle::b() const0
mrs_lib::geometry::Triangle::c() const0
mrs_lib::geometry::Triangle::center() const0
mrs_lib::geometry::Triangle::normal() const0
mrs_lib::geometry::Triangle::vertices() const0
mrs_lib::geometry::Rectangle::intersectionRay(mrs_lib::geometry::Ray, double) const0
mrs_lib::geometry::Rectangle::a() const0
mrs_lib::geometry::Rectangle::b() const0
mrs_lib::geometry::Rectangle::c() const0
mrs_lib::geometry::Rectangle::d() const0
mrs_lib::geometry::Rectangle::solidAngleRelativeTo(Eigen::Matrix<double, 3, 1, 0, 3, 1>) const0
mrs_lib::geometry::Rectangle::center() const0
mrs_lib::geometry::Rectangle::normal() const0
mrs_lib::geometry::Rectangle::isFacing(Eigen::Matrix<double, 3, 1, 0, 3, 1>) const0
mrs_lib::geometry::Rectangle::vertices() const0
mrs_lib::geometry::Rectangle::triangles() const0
+
+
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Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/src/geometry/shapes.cpp.gcov.frameset.html b/mrs_lib/src/geometry/shapes.cpp.gcov.frameset.html new file mode 100644 index 0000000000..d1dafd1fc9 --- /dev/null +++ b/mrs_lib/src/geometry/shapes.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/geometry/shapes.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_lib/src/geometry/shapes.cpp.gcov.html b/mrs_lib/src/geometry/shapes.cpp.gcov.html new file mode 100644 index 0000000000..d1e98c84ac --- /dev/null +++ b/mrs_lib/src/geometry/shapes.cpp.gcov.html @@ -0,0 +1,730 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/geometry/shapes.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_lib/src/geometry - shapes.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:03350.0 %
Date:2024-04-17 23:52:03Functions:0680.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : #include <mrs_lib/geometry/shapes.h>
+       3             : #include <mrs_lib/geometry/misc.h>
+       4             : 
+       5             : namespace mrs_lib
+       6             : {
+       7             :   namespace geometry
+       8             :   {
+       9             : 
+      10             :     /* Ray //{ */
+      11             : 
+      12             :     /* constructors //{ */
+      13           0 :     Ray::Ray()
+      14             :     {
+      15           0 :       point1 = Eigen::Vector3d::Zero();
+      16           0 :       point2 = Eigen::Vector3d::Zero();
+      17           0 :     }
+      18             : 
+      19           0 :     Ray::Ray(Eigen::Vector3d p1, Eigen::Vector3d p2)
+      20             :     {
+      21           0 :       point1 = p1;
+      22           0 :       point2 = p2;
+      23           0 :     }
+      24             : 
+      25           0 :     Ray::~Ray()
+      26             :     {
+      27           0 :     }
+      28             :     //}
+      29             : 
+      30             :     /* getters //{ */
+      31           0 :     const Eigen::Vector3d Ray::p1() const
+      32             :     {
+      33           0 :       return point1;
+      34             :     }
+      35             : 
+      36           0 :     const Eigen::Vector3d Ray::p2() const
+      37             :     {
+      38           0 :       return point2;
+      39             :     }
+      40             : 
+      41           0 :     const Eigen::Vector3d Ray::direction() const
+      42             :     {
+      43           0 :       return (point2 - point1);
+      44             :     }
+      45             :     //}
+      46             : 
+      47             :     /* raycasting //{ */
+      48           0 :     Ray Ray::twopointCast(Eigen::Vector3d pointFrom, Eigen::Vector3d pointTo)
+      49             :     {
+      50           0 :       return Ray(pointFrom, pointTo);
+      51             :     }
+      52             : 
+      53           0 :     Ray Ray::directionCast(Eigen::Vector3d origin, Eigen::Vector3d direction)
+      54             :     {
+      55           0 :       return Ray(origin, origin + direction);
+      56             :     }
+      57             :     //}
+      58             : 
+      59             :     //}
+      60             : 
+      61             :     /* Triangle //{ */
+      62             : 
+      63             :     /* constructors //{ */
+      64           0 :     Triangle::Triangle()
+      65             :     {
+      66           0 :       point1 = Eigen::Vector3d(0, 0, 0);
+      67           0 :       point2 = Eigen::Vector3d(1, 0, 0);
+      68           0 :       point3 = Eigen::Vector3d(0, 0, 1);
+      69           0 :     }
+      70             : 
+      71           0 :     Triangle::Triangle(Eigen::Vector3d a, Eigen::Vector3d b, Eigen::Vector3d c)
+      72             :     {
+      73           0 :       point1 = a;
+      74           0 :       point2 = b;
+      75           0 :       point3 = c;
+      76           0 :     }
+      77             : 
+      78           0 :     Triangle::~Triangle()
+      79             :     {
+      80           0 :     }
+      81             :     //}
+      82             : 
+      83             :     /* getters //{ */
+      84           0 :     const Eigen::Vector3d Triangle::a() const
+      85             :     {
+      86           0 :       return point1;
+      87             :     }
+      88             : 
+      89           0 :     const Eigen::Vector3d Triangle::b() const
+      90             :     {
+      91           0 :       return point2;
+      92             :     }
+      93             : 
+      94           0 :     const Eigen::Vector3d Triangle::c() const
+      95             :     {
+      96           0 :       return point3;
+      97             :     }
+      98             : 
+      99           0 :     const Eigen::Vector3d Triangle::normal() const
+     100             :     {
+     101           0 :       Eigen::Vector3d n;
+     102           0 :       n = (point2 - point1).cross(point3 - point1);
+     103           0 :       return n.normalized();
+     104             :     }
+     105             : 
+     106           0 :     const Eigen::Vector3d Triangle::center() const
+     107             :     {
+     108           0 :       return (point1 + point2 + point3) / 3.0;
+     109             :     }
+     110             : 
+     111           0 :     const std::vector<Eigen::Vector3d> Triangle::vertices() const
+     112             :     {
+     113           0 :       std::vector<Eigen::Vector3d> vertices;
+     114           0 :       vertices.push_back(point1);
+     115           0 :       vertices.push_back(point2);
+     116           0 :       vertices.push_back(point3);
+     117           0 :       return vertices;
+     118             :     }
+     119             :     //}
+     120             : 
+     121             :     /* intersectionRay //{ */
+     122           0 :     const boost::optional<Eigen::Vector3d> Triangle::intersectionRay(Ray r, double epsilon) const
+     123             :     {
+     124             :       // The Möller–Trumbore algorithm
+     125             :       // https://en.wikipedia.org/wiki/M%C3%B6ller%E2%80%93Trumbore_intersection_algorithm
+     126           0 :       Eigen::Vector3d v1 = point2 - point1;
+     127           0 :       Eigen::Vector3d v2 = point3 - point1;
+     128           0 :       Eigen::Vector3d h = r.direction().cross(v2);
+     129           0 :       double res = v1.dot(h);
+     130           0 :       if (res > -epsilon && res < epsilon)
+     131             :       {
+     132           0 :         return boost::none;
+     133             :       }
+     134           0 :       double f = 1.0 / res;
+     135           0 :       Eigen::Vector3d s = r.p1() - point1;
+     136           0 :       double u = f * s.dot(h);
+     137           0 :       if (u < 0.0 || u > 1.0)
+     138             :       {
+     139           0 :         return boost::none;
+     140             :       }
+     141           0 :       Eigen::Vector3d q = s.cross(v1);
+     142           0 :       double v = f * r.direction().dot(q);
+     143           0 :       if (v < 0.0 || u + v > 1.0)
+     144             :       {
+     145           0 :         return boost::none;
+     146             :       }
+     147           0 :       double t = f * v2.dot(q);
+     148           0 :       if (t > epsilon)
+     149             :       {
+     150           0 :         Eigen::Vector3d ret = r.p1() + r.direction() * t;
+     151           0 :         return ret;
+     152             :       }
+     153           0 :       return boost::none;
+     154             :     }
+     155             :     //}
+     156             : 
+     157             :     //}
+     158             : 
+     159             :     /* Rectangle //{ */
+     160             : 
+     161             :     /* constructors //{ */
+     162           0 :     Rectangle::Rectangle()
+     163             :     {
+     164           0 :       point1 = Eigen::Vector3d(0, 0, 0);
+     165           0 :       point2 = Eigen::Vector3d(1, 0, 0);
+     166           0 :       point3 = Eigen::Vector3d(1, 1, 0);
+     167           0 :       point4 = Eigen::Vector3d(0, 1, 0);
+     168           0 :     }
+     169             : 
+     170           0 :     Rectangle::Rectangle(std::vector<Eigen::Vector3d> points)
+     171             :     {
+     172           0 :       point1 = points[0];
+     173           0 :       point2 = points[1];
+     174           0 :       point3 = points[2];
+     175           0 :       point4 = points[3];
+     176           0 :     }
+     177             : 
+     178           0 :     Rectangle::Rectangle(Eigen::Vector3d a, Eigen::Vector3d b, Eigen::Vector3d c, Eigen::Vector3d d)
+     179             :     {
+     180           0 :       point1 = a;
+     181           0 :       point2 = b;
+     182           0 :       point3 = c;
+     183           0 :       point4 = d;
+     184           0 :     }
+     185             : 
+     186           0 :     Rectangle::~Rectangle()
+     187             :     {
+     188           0 :     }
+     189             :     //}
+     190             : 
+     191             :     /* getters //{ */
+     192           0 :     const Eigen::Vector3d Rectangle::a() const
+     193             :     {
+     194           0 :       return point1;
+     195             :     }
+     196             : 
+     197           0 :     const Eigen::Vector3d Rectangle::b() const
+     198             :     {
+     199           0 :       return point2;
+     200             :     }
+     201             : 
+     202           0 :     const Eigen::Vector3d Rectangle::c() const
+     203             :     {
+     204           0 :       return point3;
+     205             :     }
+     206             : 
+     207           0 :     const Eigen::Vector3d Rectangle::d() const
+     208             :     {
+     209           0 :       return point4;
+     210             :     }
+     211             : 
+     212           0 :     const Eigen::Vector3d Rectangle::center() const
+     213             :     {
+     214           0 :       return (point1 + point2 + point3 + point4) / 4.0;
+     215             :     }
+     216             : 
+     217           0 :     const Eigen::Vector3d Rectangle::normal() const
+     218             :     {
+     219           0 :       Eigen::Vector3d n;
+     220           0 :       n = (point2 - point1).cross(point4 - point1);
+     221           0 :       return n.normalized();
+     222             :     }
+     223             : 
+     224           0 :     const std::vector<Eigen::Vector3d> Rectangle::vertices() const
+     225             :     {
+     226           0 :       std::vector<Eigen::Vector3d> vertices;
+     227           0 :       vertices.push_back(point1);
+     228           0 :       vertices.push_back(point2);
+     229           0 :       vertices.push_back(point3);
+     230           0 :       vertices.push_back(point4);
+     231           0 :       return vertices;
+     232             :     }
+     233             : 
+     234           0 :     const std::vector<Triangle> Rectangle::triangles() const
+     235             :     {
+     236           0 :       Triangle t1(point1, point2, point3);
+     237           0 :       Triangle t2(point1, point3, point4);
+     238             : 
+     239           0 :       std::vector<Triangle> triangles;
+     240           0 :       triangles.push_back(t1);
+     241           0 :       triangles.push_back(t2);
+     242           0 :       return triangles;
+     243             :     }
+     244             :     //}
+     245             : 
+     246             :     /* intersectionRay //{ */
+     247           0 :     const boost::optional<Eigen::Vector3d> Rectangle::intersectionRay(Ray r, double epsilon) const
+     248             :     {
+     249           0 :       Triangle t1 = triangles()[0];
+     250           0 :       Triangle t2 = triangles()[1];
+     251           0 :       auto result = t1.intersectionRay(r, epsilon);
+     252           0 :       if (result != boost::none)
+     253             :       {
+     254           0 :         return result;
+     255             :       }
+     256           0 :       return t2.intersectionRay(r, epsilon);
+     257             :     }
+     258             :     //}
+     259             : 
+     260             :     /* isFacing //{ */
+     261           0 :     bool Rectangle::isFacing(Eigen::Vector3d point) const
+     262             :     {
+     263           0 :       Eigen::Vector3d towards_point = point - center();
+     264           0 :       double dot_product = towards_point.dot(normal());
+     265           0 :       return dot_product > 0;
+     266             :     }
+     267             : 
+     268             :     //}
+     269             : 
+     270             :     /* solidAngleRelativeTo //{ */
+     271           0 :     double Rectangle::solidAngleRelativeTo(Eigen::Vector3d point) const
+     272             :     {
+     273           0 :       Eigen::Vector3d a = point1 - point;
+     274           0 :       Eigen::Vector3d b = point2 - point;
+     275           0 :       Eigen::Vector3d c = point3 - point;
+     276           0 :       Eigen::Vector3d d = point4 - point;
+     277             : 
+     278           0 :       a.normalize();
+     279           0 :       b.normalize();
+     280           0 :       c.normalize();
+     281           0 :       d.normalize();
+     282             : 
+     283           0 :       double t1 = mrs_lib::geometry::sphericalTriangleArea(a, b, c);
+     284           0 :       double t2 = mrs_lib::geometry::sphericalTriangleArea(c, d, a);
+     285             : 
+     286           0 :       return t1 + t2;
+     287             :     }
+     288             :     //}
+     289             : 
+     290             :     //}
+     291             : 
+     292             :     /* Cuboid //{ */
+     293             : 
+     294             :     /* constructors //{ */
+     295           0 :     Cuboid::Cuboid()
+     296             :     {
+     297           0 :       for (int i = 0; i < 8; i++)
+     298             :       {
+     299           0 :         points.push_back(Eigen::Vector3d::Zero());
+     300             :       }
+     301           0 :     }
+     302             : 
+     303           0 :     Cuboid::Cuboid(Eigen::Vector3d p0, Eigen::Vector3d p1, Eigen::Vector3d p2, Eigen::Vector3d p3, Eigen::Vector3d p4, Eigen::Vector3d p5, Eigen::Vector3d p6,
+     304           0 :                    Eigen::Vector3d p7)
+     305             :     {
+     306           0 :       points.push_back(p0);
+     307           0 :       points.push_back(p1);
+     308           0 :       points.push_back(p2);
+     309           0 :       points.push_back(p3);
+     310           0 :       points.push_back(p4);
+     311           0 :       points.push_back(p5);
+     312           0 :       points.push_back(p6);
+     313           0 :       points.push_back(p7);
+     314           0 :     }
+     315             : 
+     316           0 :     Cuboid::Cuboid(std::vector<Eigen::Vector3d> points)
+     317             :     {
+     318           0 :       this->points = points;
+     319           0 :     }
+     320             : 
+     321           0 :     Cuboid::Cuboid(Eigen::Vector3d center, Eigen::Vector3d size, Eigen::Quaterniond orientation)
+     322             :     {
+     323           0 :       Eigen::Vector3d p0(size.x() / 2.0, -size.y() / 2.0, -size.z() / 2.0);
+     324           0 :       Eigen::Vector3d p1(size.x() / 2.0, size.y() / 2.0, -size.z() / 2.0);
+     325           0 :       Eigen::Vector3d p2(size.x() / 2.0, size.y() / 2.0, size.z() / 2.0);
+     326           0 :       Eigen::Vector3d p3(size.x() / 2.0, -size.y() / 2.0, size.z() / 2.0);
+     327             : 
+     328           0 :       Eigen::Vector3d p4(-size.x() / 2.0, size.y() / 2.0, -size.z() / 2.0);
+     329           0 :       Eigen::Vector3d p5(-size.x() / 2.0, -size.y() / 2.0, -size.z() / 2.0);
+     330           0 :       Eigen::Vector3d p6(-size.x() / 2.0, -size.y() / 2.0, size.z() / 2.0);
+     331           0 :       Eigen::Vector3d p7(-size.x() / 2.0, size.y() / 2.0, size.z() / 2.0);
+     332             : 
+     333           0 :       p0 = center + orientation * p0;
+     334           0 :       p1 = center + orientation * p1;
+     335           0 :       p2 = center + orientation * p2;
+     336           0 :       p3 = center + orientation * p3;
+     337             : 
+     338           0 :       p4 = center + orientation * p4;
+     339           0 :       p5 = center + orientation * p5;
+     340           0 :       p6 = center + orientation * p6;
+     341           0 :       p7 = center + orientation * p7;
+     342             : 
+     343           0 :       points.push_back(p0);
+     344           0 :       points.push_back(p1);
+     345           0 :       points.push_back(p2);
+     346           0 :       points.push_back(p3);
+     347           0 :       points.push_back(p4);
+     348           0 :       points.push_back(p5);
+     349           0 :       points.push_back(p6);
+     350           0 :       points.push_back(p7);
+     351           0 :     }
+     352             : 
+     353           0 :     Cuboid::~Cuboid()
+     354             :     {
+     355           0 :     }
+     356             :     //}
+     357             : 
+     358             :     /* lookupPoints //{ */
+     359           0 :     std::vector<Eigen::Vector3d> Cuboid::lookupPoints(int face_idx) const
+     360             :     {
+     361           0 :       std::vector<Eigen::Vector3d> lookup;
+     362           0 :       switch (face_idx)
+     363             :       {
+     364           0 :         case Cuboid::FRONT:
+     365           0 :           lookup.push_back(points[0]);
+     366           0 :           lookup.push_back(points[1]);
+     367           0 :           lookup.push_back(points[2]);
+     368           0 :           lookup.push_back(points[3]);
+     369           0 :           break;
+     370           0 :         case Cuboid::BACK:
+     371           0 :           lookup.push_back(points[4]);
+     372           0 :           lookup.push_back(points[5]);
+     373           0 :           lookup.push_back(points[6]);
+     374           0 :           lookup.push_back(points[7]);
+     375           0 :           break;
+     376           0 :         case Cuboid::LEFT:
+     377           0 :           lookup.push_back(points[1]);
+     378           0 :           lookup.push_back(points[4]);
+     379           0 :           lookup.push_back(points[7]);
+     380           0 :           lookup.push_back(points[2]);
+     381           0 :           break;
+     382           0 :         case Cuboid::RIGHT:
+     383           0 :           lookup.push_back(points[5]);
+     384           0 :           lookup.push_back(points[0]);
+     385           0 :           lookup.push_back(points[3]);
+     386           0 :           lookup.push_back(points[6]);
+     387           0 :           break;
+     388           0 :         case Cuboid::BOTTOM:
+     389           0 :           lookup.push_back(points[5]);
+     390           0 :           lookup.push_back(points[4]);
+     391           0 :           lookup.push_back(points[1]);
+     392           0 :           lookup.push_back(points[0]);
+     393           0 :           break;
+     394           0 :         case Cuboid::TOP:
+     395           0 :           lookup.push_back(points[3]);
+     396           0 :           lookup.push_back(points[2]);
+     397           0 :           lookup.push_back(points[7]);
+     398           0 :           lookup.push_back(points[6]);
+     399           0 :           break;
+     400             :       }
+     401           0 :       return lookup;
+     402             :     }
+     403             :     //}
+     404             : 
+     405             :     /* getters //{ */
+     406           0 :     const std::vector<Eigen::Vector3d> Cuboid::vertices() const
+     407             :     {
+     408           0 :       return points;
+     409             :     }
+     410             : 
+     411           0 :     const Rectangle Cuboid::getRectangle(int face_idx) const
+     412             :     {
+     413           0 :       return Rectangle(lookupPoints(face_idx));
+     414             :     }
+     415             : 
+     416           0 :     const Eigen::Vector3d Cuboid::center() const
+     417             :     {
+     418           0 :       Eigen::Vector3d point_sum = points[0];
+     419           0 :       for (int i = 1; i < 8; i++)
+     420             :       {
+     421           0 :         point_sum += points[i];
+     422             :       }
+     423           0 :       return point_sum / 8.0;
+     424             :     }
+     425             :     //}
+     426             : 
+     427             :     /* intersectionRay //{ */
+     428           0 :     const std::vector<Eigen::Vector3d> Cuboid::intersectionRay(Ray r, double epsilon) const
+     429             :     {
+     430           0 :       std::vector<Eigen::Vector3d> ret;
+     431           0 :       for (int i = 0; i < 6; i++)
+     432             :       {
+     433           0 :         Rectangle side = getRectangle(i);
+     434           0 :         auto side_intersect = side.intersectionRay(r, epsilon);
+     435           0 :         if (side_intersect != boost::none)
+     436             :         {
+     437           0 :           ret.push_back(side_intersect.get());
+     438             :         }
+     439             :       }
+     440           0 :       return ret;
+     441             :     }
+     442             :     //}
+     443             : 
+     444             :     //}
+     445             : 
+     446             :     /* Ellipse //{ */
+     447             : 
+     448             :     /* constructors //{ */
+     449           0 :     Ellipse::Ellipse()
+     450             :     {
+     451           0 :     }
+     452             : 
+     453           0 :     Ellipse::~Ellipse()
+     454             :     {
+     455           0 :     }
+     456             : 
+     457           0 :     Ellipse::Ellipse(Eigen::Vector3d center, Eigen::Quaterniond orientation, double a, double b)
+     458             :     {
+     459           0 :       center_point = center;
+     460           0 :       absolute_orientation = orientation;
+     461           0 :       major_semi = a;
+     462           0 :       minor_semi = b;
+     463           0 :     }
+     464             :     //}
+     465             : 
+     466             :     /* getters //{ */
+     467           0 :     double Ellipse::a() const
+     468             :     {
+     469           0 :       return major_semi;
+     470             :     }
+     471             : 
+     472           0 :     double Ellipse::b() const
+     473             :     {
+     474           0 :       return minor_semi;
+     475             :     }
+     476             : 
+     477           0 :     const Eigen::Vector3d Ellipse::center() const
+     478             :     {
+     479           0 :       return center_point;
+     480             :     }
+     481             : 
+     482           0 :     const Eigen::Quaterniond Ellipse::orientation() const
+     483             :     {
+     484           0 :       return absolute_orientation;
+     485             :     }
+     486             : 
+     487             :     //}
+     488             : 
+     489             :     //}
+     490             : 
+     491             :     /* Cylinder //{ */
+     492             : 
+     493             :     /* constructors //{ */
+     494           0 :     Cylinder::Cylinder()
+     495             :     {
+     496           0 :     }
+     497             : 
+     498           0 :     Cylinder::~Cylinder()
+     499             :     {
+     500           0 :     }
+     501             : 
+     502           0 :     Cylinder::Cylinder(Eigen::Vector3d center, double radius, double height, Eigen::Quaterniond orientation)
+     503             :     {
+     504           0 :       this->center_point = center;
+     505           0 :       this->radius = radius;
+     506           0 :       this->height = height;
+     507           0 :       this->absolute_orientation = orientation;
+     508           0 :     }
+     509             :     //}
+     510             : 
+     511             :     /* getters //{ */
+     512           0 :     const Eigen::Vector3d Cylinder::center() const
+     513             :     {
+     514           0 :       return center_point;
+     515             :     }
+     516             : 
+     517           0 :     const Eigen::Quaterniond Cylinder::orientation() const
+     518             :     {
+     519           0 :       return absolute_orientation;
+     520             :     }
+     521             : 
+     522           0 :     double Cylinder::r() const
+     523             :     {
+     524           0 :       return radius;
+     525             :     }
+     526             : 
+     527           0 :     double Cylinder::h() const
+     528             :     {
+     529           0 :       return height;
+     530             :     }
+     531             : 
+     532           0 :     const Ellipse Cylinder::getCap(int index) const
+     533             :     {
+     534           0 :       Ellipse e;
+     535           0 :       Eigen::Vector3d ellipse_center;
+     536           0 :       switch (index)
+     537             :       {
+     538           0 :         case Cylinder::BOTTOM:
+     539           0 :           ellipse_center = center() - orientation() * (Eigen::Vector3d::UnitZ() * (h() / 2.0));
+     540           0 :           e = Ellipse(ellipse_center, orientation(), r(), r());
+     541           0 :           break;
+     542           0 :         case Cylinder::TOP:
+     543           0 :           ellipse_center = center() + orientation() * (Eigen::Vector3d::UnitZ() * (h() / 2.0));
+     544           0 :           e = Ellipse(ellipse_center, orientation(), r(), r());
+     545           0 :           break;
+     546             :       }
+     547           0 :       return e;
+     548             :     }
+     549             : 
+     550             :     //}
+     551             : 
+     552             :     //}
+     553             : 
+     554             :     /* Cone //{ */
+     555             : 
+     556             :     /* constructors //{ */
+     557           0 :     Cone::Cone()
+     558             :     {
+     559           0 :     }
+     560             : 
+     561           0 :     Cone::~Cone()
+     562             :     {
+     563           0 :     }
+     564             : 
+     565           0 :     Cone::Cone(Eigen::Vector3d origin_point, double angle, double height, Eigen::Vector3d absolute_direction)
+     566             :     {
+     567           0 :       this->origin_point = origin_point;
+     568           0 :       this->angle = angle;
+     569           0 :       this->height = height;
+     570           0 :       this->absolute_direction = absolute_direction.normalized();
+     571           0 :     }
+     572             :     //}
+     573             : 
+     574             :     /* getters //{ */
+     575           0 :     const Eigen::Vector3d Cone::origin() const
+     576             :     {
+     577           0 :       return origin_point;
+     578             :     }
+     579             : 
+     580           0 :     const Eigen::Vector3d Cone::direction() const
+     581             :     {
+     582           0 :       return absolute_direction;
+     583             :     }
+     584             : 
+     585           0 :     const Eigen::Vector3d Cone::center() const
+     586             :     {
+     587           0 :       return origin() + (0.5 * h()) * direction();
+     588             :     }
+     589             : 
+     590           0 :     double Cone::theta() const
+     591             :     {
+     592           0 :       return angle;
+     593             :     }
+     594             : 
+     595           0 :     double Cone::h() const
+     596             :     {
+     597           0 :       return height;
+     598             :     }
+     599             : 
+     600           0 :     const Ellipse Cone::getCap() const
+     601             :     {
+     602           0 :       Eigen::Vector3d ellipse_center = origin() + direction() * h();
+     603           0 :       Eigen::Quaterniond ellipse_orientation = Eigen::Quaterniond::FromTwoVectors(Eigen::Vector3d::UnitZ(), direction());
+     604           0 :       double cap_radius = std::tan(theta()) * h();
+     605           0 :       Ellipse e(ellipse_center, ellipse_orientation, cap_radius, cap_radius);
+     606           0 :       return e;
+     607             :     }
+     608             : 
+     609           0 :     const std::optional<Eigen::Vector3d> Cone::projectPoint(const Eigen::Vector3d& point) const
+     610             :     {
+     611             : 
+     612           0 :       Eigen::Vector3d point_vec = point - origin();
+     613           0 :       double point_axis_angle = acos((point_vec.dot(direction())) / (point_vec.norm() * direction().norm()));
+     614             : 
+     615             :       /* Eigen::Vector3d axis_projection = this->cone_axis_projector * point_vec + origin(); */
+     616             : 
+     617           0 :       Eigen::Vector3d axis_rot = direction().cross(point_vec);
+     618           0 :       axis_rot.normalize();
+     619             : 
+     620           0 :       Eigen::AngleAxis<double> my_quat(this->angle - point_axis_angle, axis_rot);
+     621             : 
+     622           0 :       Eigen::Vector3d point_on_cone = my_quat * point_vec + origin();
+     623             : 
+     624           0 :       Eigen::Vector3d vec_point_on_cone = point_on_cone - origin();
+     625           0 :       vec_point_on_cone.normalize();
+     626             : 
+     627           0 :       double beta = this->angle - point_axis_angle;
+     628             : 
+     629           0 :       if (point_axis_angle < this->angle)
+     630             :       {
+     631           0 :         return origin() + vec_point_on_cone * cos(beta) * point_vec.norm();
+     632           0 :       } else if ((point_axis_angle >= this->angle) && (point_axis_angle - this->angle) <= M_PI / 2.0)
+     633             :       {  // TODO: is this condition correct?
+     634           0 :         return origin() + vec_point_on_cone * cos(point_axis_angle - this->angle) * point_vec.norm();
+     635             :       } else
+     636             :       {
+     637           0 :         return {};
+     638             :       }
+     639             :     }
+     640             : 
+     641             :     //}
+     642             : 
+     643             :     //}
+     644             : 
+     645             :   }  // namespace geometry
+     646             : }  // namespace mrs_lib
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/src/geometry/shapes.cpp.gcov.overview.html b/mrs_lib/src/geometry/shapes.cpp.gcov.overview.html new file mode 100644 index 0000000000..5be5367fd4 --- /dev/null +++ b/mrs_lib/src/geometry/shapes.cpp.gcov.overview.html @@ -0,0 +1,182 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/geometry/shapes.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_lib/src/geometry/shapes.cpp.gcov.png b/mrs_lib/src/geometry/shapes.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..a648ccdf3602fb84c64b5d246adb511476145fd2 GIT binary patch literal 1596 zcmV-C2E+M@P)t0{{R3FUJ9e0000OP)t-s|NsB0 zs;a7|?_FK${{R500003000620&P%hU00009a7bBm000ie000ie0hKEb8vpQ- z-wPHl5SPm+yO6z&PYOr^P9n+1@kR3M{@Z_g3O@S#`ToIR+h+E%QRNNPB1r)ds^Rpk*;#9^U&pUfTf}2cP8+^N zcKL2HZVH|n(n7|XmFis*GV~H7EzUGkmf6l3lNIgzD17Rs?g{F1xqFzUM8*vixNau% z{;hSzxJ@4GG1@~ak60qxRj`E^nMPMZpBCVOz_C7sQ%en+;lGl14+S3r9N9gX>@Rmd zDl7J?>-CS!UCEe|D9j}gz45${U7)gb2#HDesLDzbB`SP6xbAt&(zbfMALn*Y zq7)b~u&zQ=)(G$UtOFS=PT|Nf%$|&lo3ByPOuj9MtO>bd)>Jpnw&8LdHppNrjZH$R^`ywOrVs^ zt%0oKHC&(U_%V-sgh~XIR*h@XHwII?o_>-CQ^}DL%xi7a0Q=U6O+%VR)JZg(XF7Tw`$vIbl+3uU|>xeqYY5#>rfba%` zNra!8RW*>4h6a)nFOdm>F#Ay+(#gR8luRhMHKZ#5$JxhTuIv2tl`t7^ z(k&ui2whm;)%|wo-f0Bd%X05y}uucO218WNSWBom>|4$9az2@m;#;~T&&des$ zm9;c*P6B5K&Sj@ajslL9#o?DO!*kR7`o!l_V(}EdKHWW%4CGTddC|OW*0pTqz(|}X z+^&{ch@T|C!7OY_ex^ES6NwGUPbjZ==g_f^`LJq|B>EJPf0|}emX z4M6G~vIICgmcn!5yuXeqP@CUF07v*eUq$BR#1&{YdZhEnBo4~OLpJymY=g)wv}k_I z+f7C;NJO0C7Hv#dO@I7UwJw^(y4kS0ik4whUx}AlG)KJ!;XbB0BeaBRhBcQSHMv5D z1pde{)J!M(b^VbO{BaWigp(CXoin?qCA&u)$PcYl{-A|1S#ZN>2RuhSY`e3l>ozby z^Z7Q4VtXX`e|8J|9{QBJh5bfmoXgcOz&6}1jO&9oiF0_tEv$@E0NSa|k|=Zwvxgw! zKrHJP_Ilox?C{0H4+x(Rk?A!u+9fM0@7!6-EhO+m$zW6#^>J&IT1<102^_EZqP*0G z*X^l+voLySg*Wa6_d2%$UcTSJ&vdy8$ zk{muhlULEXznaP9YLk=kSfq_?GF#>W#4DA2*CG*aPc%5Vpqty6%$QtYA$4A{LDH%f zobkoZmr0CWizmcHS$k!2lajU9N{m@}6E9VIn+5LQY2zP1DEB2+bwco{nnC6vNXEOW u8QsJ6Nc;aklm)h=&%Y<@AI1P2+Jt}f$c2VCd;yIB0000 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/math + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/src/mathHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1717100.0 %
Date:2024-04-17 23:52:03Functions:11100.0 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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math.cpp +
100.0%
+
100.0 %17 / 17100.0 %1 / 1
<unnamed>100.0 %17 / 17100.0 %1 / 1
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          Line data    Source code
+
+       1             : #include <mrs_lib/math.h>
+       2             : 
+       3             : namespace mrs_lib
+       4             : {
+       5             :   /* probit() function //{ */
+       6         202 :   double probit(const double quantile)
+       7             :   {
+       8             :     // polynomial coefficients of the numerator for rational polynomial approximation in the range (0.08; 0.92)
+       9             :     constexpr double a[4] =
+      10             :     {
+      11             :       2.50662823884,
+      12             :     -18.61500062529,
+      13             :      41.39119773534,
+      14             :     -25.44106049637
+      15             :     };
+      16             : 
+      17             :     // polynomial coefficients of the denominator for the rational polynomial approximation in the range (0.08; 0.92)
+      18             :     constexpr double b[4] =
+      19             :     {
+      20             :       -8.47351093090,
+      21             :       23.08336743743,
+      22             :      -21.06224101826,
+      23             :        3.13082909833
+      24             :     };
+      25             : 
+      26             :     // polynomial coefficients of the logarithmical approximation in the range (0; 0.08) U (0.92; 1)
+      27             :     constexpr double c[9] =
+      28             :     {
+      29             :       0.3374754822726147,
+      30             :       0.9761690190917186,
+      31             :       0.1607979714918209,
+      32             :       0.0276438810333863,
+      33             :       0.0038405729373609,
+      34             :       0.0003951896511919,
+      35             :       0.0000321767881768,
+      36             :       0.0000002888167364,
+      37             :       0.0000003960315187
+      38             :     };
+      39             : 
+      40             :     // correctly handle special values
+      41         202 :     if (quantile == 1.0)
+      42           1 :       return std::numeric_limits<double>::infinity();
+      43         201 :     if (quantile == 0.0)
+      44           1 :       return -std::numeric_limits<double>::infinity();
+      45         200 :     if (quantile < 0.0 || quantile > 1.0)
+      46           2 :       return std::numeric_limits<double>::quiet_NaN();
+      47             : 
+      48         198 :     const double y = quantile - 0.5;
+      49         198 :     if (std::abs(y) < 0.42)
+      50             :     {
+      51         168 :       const double r = y*y;
+      52         168 :       const double num = y*((( a[3]*r + a[2] )*r + a[1])*r + a[0]);
+      53         168 :       const double denom = (((( b[3]*r + b[2] )*r + b[1])*r + b[0])*r + 1);
+      54         168 :       return num/denom;
+      55             :     }
+      56             :     else
+      57             :     {
+      58          30 :       const double v = y > 0 ? 1.0 - quantile : quantile;
+      59          30 :       const double r = std::log(-std::log(v));
+      60          30 :       const double x = c[0] + r*( c[1] + r*( c[2] + r*( c[3] + r*( c[4] + r*( c[5] + r*( c[6] + r*( c[7] + r*c[8] )))))));
+      61          30 :       return y < 0 ? -x : x;
+      62             :     }
+      63             :   }
+      64             :   //}
+      65             : }
+
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mrs_lib::MedianFilter::addCheck(double)26
mrs_lib::MedianFilter::MedianFilter(mrs_lib::MedianFilter&&)77
mrs_lib::MedianFilter::operator=(mrs_lib::MedianFilter const&)78
mrs_lib::MedianFilter::MedianFilter(unsigned long, double, double, double)80
mrs_lib::MedianFilter::check(double)131981
mrs_lib::MedianFilter::median() const131999
mrs_lib::MedianFilter::full() const139497
mrs_lib::MedianFilter::add(double)139515
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::MedianFilter::setMaxValue(double)2
mrs_lib::MedianFilter::setMinValue(double)2
mrs_lib::MedianFilter::setBufferLength(unsigned long)2
mrs_lib::MedianFilter::setMaxDifference(double)2
mrs_lib::MedianFilter::add(double)139515
mrs_lib::MedianFilter::check(double)131981
mrs_lib::MedianFilter::clear()2
mrs_lib::MedianFilter::addCheck(double)26
mrs_lib::MedianFilter::MedianFilter(mrs_lib::MedianFilter&&)77
mrs_lib::MedianFilter::MedianFilter(mrs_lib::MedianFilter const&)1
mrs_lib::MedianFilter::MedianFilter(unsigned long, double, double, double)80
mrs_lib::MedianFilter::MedianFilter()1
mrs_lib::MedianFilter::operator=(mrs_lib::MedianFilter&&)0
mrs_lib::MedianFilter::operator=(mrs_lib::MedianFilter const&)78
mrs_lib::MedianFilter::initialized() const1
mrs_lib::MedianFilter::full() const139497
mrs_lib::MedianFilter::median() const131999
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+
          Line data    Source code
+
+       1             : #include <mrs_lib/median_filter.h>
+       2             : 
+       3             : namespace mrs_lib
+       4             : {
+       5             :   /* constructor overloads //{ */
+       6             : 
+       7          80 :   MedianFilter::MedianFilter(const size_t buffer_length, const double min_value, const double max_value, const double max_diff)
+       8             :     : m_median(std::nullopt),
+       9             :       m_min_valid(min_value),
+      10             :       m_max_valid(max_value),
+      11          80 :       m_max_diff(max_diff)
+      12             :   {
+      13          80 :     m_buffer.set_capacity(buffer_length);
+      14          80 :     m_buffer_sorted.reserve(buffer_length);
+      15          80 :   }
+      16             : 
+      17           1 :   MedianFilter::MedianFilter()
+      18             :     : m_median(std::nullopt),
+      19             :       m_min_valid(0.0),
+      20             :       m_max_valid(0.0),
+      21           1 :       m_max_diff(0.0)
+      22             :   {
+      23           1 :     m_buffer.set_capacity(0);
+      24           1 :   }
+      25             : 
+      26           1 :   MedianFilter::MedianFilter(const MedianFilter& other)
+      27             :   {
+      28           1 :     *this = other;
+      29           1 :   }
+      30             : 
+      31          77 :   MedianFilter::MedianFilter(MedianFilter&& other)
+      32             :   {
+      33          77 :     *this = other;
+      34          77 :   }
+      35             : 
+      36             :   //}
+      37             : 
+      38             :   /* operator=() method and overloads //{ */
+      39          78 :   MedianFilter& MedianFilter::operator=(const MedianFilter& other)
+      40             :   {
+      41          78 :     std::scoped_lock lck(other.m_mtx, m_mtx);
+      42             :   
+      43          78 :     m_buffer = other.m_buffer;
+      44          78 :     m_buffer_sorted = other.m_buffer_sorted;
+      45          78 :     m_median = other.m_median;
+      46             :   
+      47             :     // parameters specified by the user
+      48          78 :     m_min_valid = other.m_min_valid;
+      49          78 :     m_max_valid = other.m_max_valid;
+      50          78 :     m_max_diff = other.m_max_diff;
+      51             :   
+      52         156 :     return *this;
+      53             :   }
+      54             : 
+      55           0 :   MedianFilter& MedianFilter::operator=(MedianFilter&& other)
+      56             :   {
+      57           0 :     std::scoped_lock lck(other.m_mtx, m_mtx);
+      58             : 
+      59           0 :     m_buffer = std::move(other.m_buffer);
+      60           0 :     m_buffer_sorted = std::move(other.m_buffer_sorted);
+      61           0 :     m_median = std::move(other.m_median);
+      62             : 
+      63             :     // parameters specified by the user
+      64           0 :     m_min_valid = other.m_min_valid;
+      65           0 :     m_max_valid = other.m_max_valid;
+      66           0 :     m_max_diff = other.m_max_diff;
+      67             : 
+      68           0 :     return *this;
+      69             :   }
+      70             :   //}
+      71             : 
+      72             :   /* add() method //{ */
+      73      139515 :   void MedianFilter::add(const double value)
+      74             :   {
+      75      278984 :     std::scoped_lock lck(m_mtx);
+      76             :     // add the value to the buffer
+      77      139506 :     m_buffer.push_back(value);
+      78             :     // reset the cached median value
+      79      139504 :     m_median = std::nullopt;
+      80      139491 :   }
+      81             :   //}
+      82             : 
+      83             :   /* check() method //{ */
+      84      131981 :   bool MedianFilter::check(const double value)
+      85             :   {
+      86      131981 :     std::scoped_lock lck(m_mtx);
+      87             :     // check if all constraints are met
+      88      131983 :     const double diff = m_buffer.empty() ? 0.0 : std::abs(median() - value);
+      89      263955 :     return value > m_min_valid && value < m_max_valid && diff < m_max_diff;
+      90             :   }
+      91             :   //}
+      92             : 
+      93             :   /* addCheck() method //{ */
+      94          26 :   bool MedianFilter::addCheck(const double value)
+      95             :   {
+      96          52 :     std::scoped_lock lck(m_mtx);
+      97          26 :     add(value);
+      98          52 :     return check(value);
+      99             :   }
+     100             :   //}
+     101             : 
+     102             :   /* clear() method //{ */
+     103           2 :   void MedianFilter::clear()
+     104             :   {
+     105           4 :     std::scoped_lock lck(m_mtx);
+     106           2 :     m_median = std::nullopt;
+     107           2 :     m_buffer.clear();
+     108           2 :   }
+     109             :   //}
+     110             : 
+     111             :   /* full() method //{ */
+     112      139497 :   bool MedianFilter::full() const
+     113             :   {
+     114      278989 :     std::scoped_lock lck(m_mtx);
+     115      278997 :     return m_buffer.full();
+     116             :   }
+     117             :   //}
+     118             : 
+     119             :   /* median() method //{ */
+     120      131999 :   double MedianFilter::median() const
+     121             :   {
+     122      264001 :     std::scoped_lock lck(m_mtx);
+     123             :     // if the value was already calculated, just return it
+     124      131986 :     if (m_median.has_value())
+     125          18 :       return m_median.value();
+     126             :   
+     127             :     // check if there are even any numbers to calculate the median from
+     128      131967 :     if (m_buffer.empty())
+     129             :     {
+     130           4 :       m_median = std::numeric_limits<double>::quiet_NaN();
+     131           4 :       return m_median.value();
+     132             :     }
+     133             :   
+     134             :     // remove any elements from buffer_sorted
+     135      131964 :     m_buffer_sorted.clear();
+     136             :     // copy all elements from the input buffer to buffer_sorted
+     137      131976 :     m_buffer_sorted.insert(std::end(m_buffer_sorted), std::begin(m_buffer), std::end(m_buffer));
+     138             :     // check for the special case of the median when there is an even number of numbers in the set
+     139      131980 :     const bool even_set = m_buffer_sorted.size() % 2 == 0;
+     140             :   
+     141             :     // if it's an even set, we'll need one more element sorted than for an odd set of numbers
+     142      131958 :     const size_t median_pos = even_set ? std::ceil(m_buffer_sorted.size()/2.0) : std::floor(m_buffer_sorted.size()/2.0);
+     143             :     // actually sort the elements in buffer_sorted up to the n-th element
+     144      131954 :     std::nth_element(std::begin(m_buffer_sorted), std::begin(m_buffer_sorted)+median_pos, std::end(m_buffer_sorted));
+     145             :   
+     146             :     // special case for a median of an even set of numbers
+     147      131986 :     if (even_set)
+     148      131970 :       m_median = (m_buffer_sorted.at(median_pos) + m_buffer_sorted.at(median_pos-1))/2.0;
+     149             :     // the "normal" case with an odd set
+     150             :     else
+     151          16 :       m_median = m_buffer_sorted.at(median_pos);
+     152             :     // return the now-cached value
+     153      131972 :     return m_median.value();
+     154             :   }
+     155             :   //}
+     156             : 
+     157             :   /* initialized() method //{ */
+     158           1 :   bool MedianFilter::initialized() const
+     159             :   {
+     160           1 :     std::scoped_lock lck(m_mtx);
+     161           2 :     return m_buffer.size() > 0;
+     162             :   }
+     163             :   //}
+     164             : 
+     165             :   /* setBufferLength() method //{ */
+     166           2 :   void MedianFilter::setBufferLength(const size_t buffer_length)
+     167             :   {
+     168           4 :     std::scoped_lock lck(m_mtx);
+     169             :     // the median may change if the some values are discarded
+     170           2 :     if (buffer_length < m_buffer.size())
+     171           0 :       m_median = std::nullopt;
+     172             :   
+     173           2 :     m_buffer.set_capacity(buffer_length);
+     174           2 :     m_buffer_sorted.reserve(buffer_length);
+     175           2 :   }
+     176             :   //}
+     177             : 
+     178             :   /* setMinValue() method //{ */
+     179           2 :   void MedianFilter::setMinValue(const double min_value)
+     180             :   {
+     181           2 :     std::scoped_lock lck(m_mtx);
+     182           2 :     m_min_valid = min_value;
+     183           2 :   }
+     184             :   //}
+     185             : 
+     186             :   /* setMaxValue() method //{ */
+     187           2 :   void MedianFilter::setMaxValue(const double max_value)
+     188             :   {
+     189           2 :     std::scoped_lock lck(m_mtx);
+     190           2 :     m_max_valid = max_value;
+     191           2 :   }
+     192             :   //}
+     193             : 
+     194             :   /* setMaxDifference() method //{ */
+     195           2 :   void MedianFilter::setMaxDifference(const double max_diff)
+     196             :   {
+     197           2 :     std::scoped_lock lck(m_mtx);
+     198           2 :     m_max_diff = max_diff;
+     199           2 :   }
+     200             :   //}
+     201             : 
+     202             : } // namespace mrs_lib
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mrs_lib::ParamProvider::ParamProvider(ros::NodeHandle const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool)3978
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mrs_lib::ParamProvider::addYamlFile(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)13035
mrs_lib::ParamProvider::ParamProvider(ros::NodeHandle const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool)3978
mrs_lib::ParamProvider::findYamlNode(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const86956
mrs_lib::ParamProvider::getParam(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, XmlRpc::XmlRpcValue&) const4
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Current view:top level - mrs_lib/src/param_loader - param_provider.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:445580.0 %
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          Line data    Source code
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+       1             : #include <mrs_lib/param_provider.h>
+       2             : 
+       3             : namespace mrs_lib
+       4             : {
+       5             :   // Explicit instantiation of the tepmplated functions to precompile them into mrs_lib and speed up compilation of user program.
+       6             :   // Instantiating these functions should be sufficient to invoke precompilation of all templated ParamLoader functions.
+       7             : 
+       8             :   template bool ParamProvider::getParam<bool>(const std::string& name, bool& out_value) const;
+       9             :   template bool ParamProvider::getParam<int>(const std::string& name, int& out_value) const;
+      10             :   template bool ParamProvider::getParam<double>(const std::string& name, double& out_value) const;
+      11             :   template bool ParamProvider::getParam<std::string>(const std::string& name, std::string& out_value) const;
+      12             : 
+      13        3978 :   ParamProvider::ParamProvider(const ros::NodeHandle& nh, std::string node_name, const bool use_rosparam)
+      14        3978 :   : m_nh(nh), m_node_name(std::move(node_name)), m_use_rosparam(use_rosparam)
+      15             :   {
+      16        3978 :   }
+      17             : 
+      18       13035 :   bool ParamProvider::addYamlFile(const std::string& filepath)
+      19             :   {
+      20             :     try
+      21             :     {
+      22       26069 :       const auto loaded_yaml = YAML::LoadFile(filepath);
+      23       13035 :       YAML::Node root;
+      24       13035 :       root["root"] = loaded_yaml;
+      25       13035 :       m_yamls.emplace_back(root);
+      26       13035 :       return true;
+      27             :     }
+      28           0 :     catch (const YAML::ParserException& e)
+      29             :     {
+      30           0 :       ROS_ERROR_STREAM("[" << m_node_name << "]: Failed to parse file \"" << filepath << "\"! Parameters will not be loaded: " << e.what());
+      31           0 :       return false;
+      32             :     }
+      33           0 :     catch (const YAML::BadFile& e)
+      34             :     {
+      35           0 :       ROS_ERROR_STREAM("[" << m_node_name << "]: File \"" << filepath << "\" does not exist! Parameters will not be loaded: " << e.what());
+      36           0 :       return false;
+      37             :     }
+      38           0 :     catch (const YAML::Exception& e)
+      39             :     {
+      40           0 :       ROS_ERROR_STREAM("[" << m_node_name << "]: YAML-CPP threw an exception! Parameters will not be loaded: " << e.what());
+      41           0 :       return false;
+      42             :     }
+      43             :     return false;
+      44             :   }
+      45             : 
+      46           4 :   bool ParamProvider::getParam(const std::string& param_name, XmlRpc::XmlRpcValue& value_out) const
+      47             :   {
+      48           4 :     if (m_use_rosparam && m_nh.getParam(param_name, value_out))
+      49           2 :       return true;
+      50             : 
+      51             :     try
+      52             :     {
+      53           4 :       const auto found_node = findYamlNode(param_name);
+      54           2 :       if (found_node.has_value())
+      55           1 :         ROS_WARN_STREAM("[" << m_node_name << "]: Parameter \"" << param_name << "\" of desired type XmlRpc::XmlRpcValue is only available as a static parameter, which doesn't support loading of this type.");
+      56             :     }
+      57           0 :     catch (const YAML::Exception& e)
+      58             :     {
+      59           0 :       ROS_ERROR_STREAM("[" << m_node_name << "]: YAML-CPP threw an unknown exception: " << e.what());
+      60             :     }
+      61           2 :     return false;
+      62             :   }
+      63             : 
+      64       86956 :   std::optional<YAML::Node> ParamProvider::findYamlNode(const std::string& param_name) const
+      65             :   {
+      66      450426 :     for (const auto& yaml : m_yamls)
+      67             :     {
+      68             :       // Try to load the parameter sequentially as a map.
+      69      434954 :       auto cur_node_it = std::cbegin(yaml);
+      70             :       // The root should always be a pam
+      71      434953 :       if (!cur_node_it->second.IsMap())
+      72       13789 :         continue;
+      73             : 
+      74      421165 :       bool loaded = true;
+      75             :       {
+      76      421165 :         constexpr char delimiter = '/';
+      77      421165 :         auto substr_start = std::cbegin(param_name);
+      78      421164 :         auto substr_end = substr_start;
+      79      575250 :         do
+      80             :         {
+      81      996414 :           substr_end = std::find(substr_start, std::cend(param_name), delimiter);
+      82             :           // why can't substr or string_view take iterators? :'(
+      83      996410 :           const auto start_pos = std::distance(std::cbegin(param_name), substr_start);
+      84      996414 :           const auto count = std::distance(substr_start, substr_end);
+      85      996418 :           const std::string param_substr = param_name.substr(start_pos, count);
+      86      996418 :           substr_start = substr_end+1;
+      87             : 
+      88      996415 :           bool found = false;
+      89     4074443 :           for (auto node_it = std::cbegin(cur_node_it->second); node_it != std::cend(cur_node_it->second); ++node_it)
+      90             :           {
+      91     2081611 :             if (node_it->first.as<std::string>() == param_substr)
+      92             :             {
+      93      646735 :               cur_node_it = node_it;
+      94      646735 :               found = true;
+      95      646735 :               break;
+      96             :             }
+      97             :           }
+      98             : 
+      99      996412 :           if (!found)
+     100             :           {
+     101      349680 :             loaded = false;
+     102      349680 :             break;
+     103             :           }
+     104             :         }
+     105      646733 :         while (substr_end != std::end(param_name) && cur_node_it->second.IsMap());
+     106             :       }
+     107             : 
+     108      421164 :       if (loaded)
+     109             :       {
+     110      142970 :         return cur_node_it->second;
+     111             :       }
+     112             :     }
+     113             : 
+     114       15471 :     return std::nullopt;
+     115             :   }
+     116             : }
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mrs_lib::Profiler::Profiler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool)1275
mrs_lib::Profiler::Profiler()1275
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mrs_lib::Routine::~Routine()2491027
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mrs_lib::Routine::Routine(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::shared_ptr<ros::Publisher>, std::shared_ptr<std::mutex>, bool)1849465
mrs_lib::Routine::Routine(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, double, double, std::shared_ptr<ros::Publisher>, std::shared_ptr<std::mutex>, bool, ros::TimerEvent)641446
mrs_lib::Routine::~Routine()2491027
mrs_lib::Profiler::createRoutine(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)1849532
mrs_lib::Profiler::createRoutine(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, double, double, ros::TimerEvent)641340
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mrs_lib::Profiler::Profiler(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool)1275
mrs_lib::Profiler::Profiler()1275
mrs_lib::Profiler::operator=(mrs_lib::Profiler const&)1275
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Current view:top level - mrs_lib/src/profiler - profiler.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:3810137.6 %
Date:2024-04-17 23:52:03Functions:91090.0 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #include <mrs_lib/profiler.h>
+       2             : 
+       3             : namespace mrs_lib
+       4             : {
+       5             : 
+       6             : // | ------------------------ Profiler ------------------------ |
+       7             : 
+       8             : /* Profiler constructor //{ */
+       9             : 
+      10        1275 : Profiler::Profiler() {
+      11        1275 : }
+      12             : 
+      13        1275 : Profiler::Profiler(ros::NodeHandle& nh, std::string _node_name_, bool profiler_enabled) {
+      14             : 
+      15        1275 :   this->nh_                = std::make_shared<ros::NodeHandle>(nh);
+      16        1275 :   this->_node_name_        = _node_name_;
+      17        1275 :   this->_profiler_enabled_ = profiler_enabled;
+      18             : 
+      19        1275 :   if (profiler_enabled) {
+      20           0 :     mutex_publisher_ = std::make_unique<std::mutex>();
+      21           0 :     publisher_       = std::make_unique<ros::Publisher>(this->nh_->advertise<mrs_msgs::ProfilerUpdate>("profiler", 100, false));
+      22             :   }
+      23             : 
+      24        1275 :   ROS_INFO("[%s]: profiler initialized", _node_name_.c_str());
+      25             : 
+      26        1275 :   this->is_initialized_ = true;
+      27        1275 : }
+      28             : 
+      29           0 : Profiler::Profiler(const Profiler& other) {
+      30             : 
+      31           0 :   this->is_initialized_    = other.is_initialized_;
+      32           0 :   this->nh_                = other.nh_;
+      33           0 :   this->_node_name_        = other._node_name_;
+      34           0 :   this->_profiler_enabled_ = other._profiler_enabled_;
+      35             : 
+      36           0 :   if (this->_profiler_enabled_ && this->is_initialized_) {
+      37           0 :     mutex_publisher_ = std::make_unique<std::mutex>();
+      38           0 :     publisher_       = std::make_unique<ros::Publisher>(this->nh_->advertise<mrs_msgs::ProfilerUpdate>("profiler", 100, false));
+      39             :   }
+      40           0 : }
+      41             : 
+      42        1275 : Profiler& Profiler::operator=(const Profiler& other) {
+      43             : 
+      44        1275 :   if (this == &other) {
+      45           0 :     return *this;
+      46             :   }
+      47             : 
+      48        1275 :   this->is_initialized_    = other.is_initialized_;
+      49        1275 :   this->nh_                = other.nh_;
+      50        1275 :   this->_node_name_        = other._node_name_;
+      51        1275 :   this->_profiler_enabled_ = other._profiler_enabled_;
+      52             : 
+      53        1275 :   if (this->_profiler_enabled_ && this->is_initialized_) {
+      54           0 :     mutex_publisher_ = std::make_unique<std::mutex>();
+      55           0 :     publisher_       = std::make_unique<ros::Publisher>(this->nh_->advertise<mrs_msgs::ProfilerUpdate>("profiler", 100, false));
+      56             :   }
+      57             : 
+      58        1275 :   return *this;
+      59             : }
+      60             : 
+      61             : //}
+      62             : 
+      63             : /* Profiler::registerRoutine() for periodic //{ */
+      64             : 
+      65      641340 : Routine Profiler::createRoutine(std::string name, double expected_rate, double threshold, ros::TimerEvent event) {
+      66             : 
+      67      641340 :   return Routine(name, this->_node_name_, expected_rate, threshold, publisher_, mutex_publisher_, _profiler_enabled_, event);
+      68             : }
+      69             : 
+      70             : //}
+      71             : 
+      72             : /* Profiler::registerRoutine() normal //{ */
+      73             : 
+      74     1849532 : Routine Profiler::createRoutine(std::string name) {
+      75             : 
+      76     1849532 :   return Routine(name, this->_node_name_, publisher_, mutex_publisher_, _profiler_enabled_);
+      77             : }
+      78             : 
+      79             : //}
+      80             : 
+      81             : // | ------------------------- Routine ------------------------ |
+      82             : 
+      83             : /* Routine constructor for periodic //{ */
+      84             : 
+      85      641446 : Routine::Routine(std::string name, std::string node_name, double expected_rate, double threshold, std::shared_ptr<ros::Publisher> publisher,
+      86      641446 :                  std::shared_ptr<std::mutex> mutex_publisher, bool profiler_enabled, ros::TimerEvent event) {
+      87             : 
+      88      640348 :   if (!profiler_enabled) {
+      89      640431 :     return;
+      90             :   }
+      91             : 
+      92           0 :   _threshold_ = threshold;
+      93             : 
+      94           0 :   this->publisher_       = publisher;
+      95           0 :   this->mutex_publisher_ = mutex_publisher;
+      96             : 
+      97           0 :   this->_routine_name_  = name;
+      98           0 :   msg_out_.routine_name = name;
+      99             : 
+     100           0 :   this->_node_name_  = node_name;
+     101           0 :   msg_out_.node_name = node_name;
+     102             : 
+     103           0 :   this->_profiler_enabled_ = profiler_enabled;
+     104             : 
+     105           0 :   msg_out_.is_periodic   = true;
+     106           0 :   msg_out_.expected_rate = expected_rate;
+     107             : 
+     108           0 :   msg_out_.expected_start = event.current_expected.toSec();
+     109           0 :   msg_out_.real_start     = event.current_real.toSec();
+     110             : 
+     111           0 :   msg_out_.stamp     = ros::Time::now();
+     112           0 :   msg_out_.duration  = 0;
+     113           0 :   msg_out_.iteration = this->iteration_++;
+     114           0 :   msg_out_.event     = mrs_msgs::ProfilerUpdate::START;
+     115             : 
+     116           0 :   execution_start_ = ros::Time::now();
+     117             : 
+     118           0 :   double dt = msg_out_.real_start - msg_out_.expected_start;
+     119             : 
+     120           0 :   if (dt > _threshold_) {
+     121           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: routine '%s' was lauched late by %.3f s!", _node_name_.c_str(), _routine_name_.c_str(), dt);
+     122             :   }
+     123             : 
+     124             :   {
+     125           0 :     std::scoped_lock lock(*mutex_publisher_);
+     126             : 
+     127             :     try {
+     128           0 :       publisher_->publish(mrs_msgs::ProfilerUpdateConstPtr(new mrs_msgs::ProfilerUpdate(msg_out_)));
+     129             :     }
+     130           0 :     catch (...) {
+     131           0 :       ROS_ERROR("Exception caught during publishing topic %s.", publisher_->getTopic().c_str());
+     132             :     }
+     133             :   }
+     134             : }
+     135             : 
+     136             : //}
+     137             : 
+     138             : /* Routine constructor for normal //{ */
+     139             : 
+     140     1849465 : Routine::Routine(std::string name, std::string node_name, std::shared_ptr<ros::Publisher> publisher, std::shared_ptr<std::mutex> mutex_publisher,
+     141     1849465 :                  bool profiler_enabled) {
+     142             : 
+     143     1848243 :   if (!profiler_enabled) {
+     144     1848278 :     return;
+     145             :   }
+     146             : 
+     147           5 :   this->publisher_       = publisher;
+     148           0 :   this->mutex_publisher_ = mutex_publisher;
+     149             : 
+     150           0 :   this->_routine_name_  = name;
+     151           0 :   msg_out_.routine_name = name;
+     152             : 
+     153           0 :   this->_node_name_  = node_name;
+     154           0 :   msg_out_.node_name = node_name;
+     155             : 
+     156           0 :   this->_profiler_enabled_ = profiler_enabled;
+     157             : 
+     158           0 :   msg_out_.is_periodic   = false;
+     159           0 :   msg_out_.expected_rate = 0;
+     160             : 
+     161           0 :   msg_out_.stamp      = ros::Time::now();
+     162           0 :   msg_out_.duration   = 0;
+     163           0 :   msg_out_.iteration  = this->iteration_++;
+     164           0 :   msg_out_.event      = mrs_msgs::ProfilerUpdate::START;
+     165           0 :   msg_out_.real_start = msg_out_.stamp.toSec();
+     166             : 
+     167           0 :   execution_start_ = ros::Time::now();
+     168             : 
+     169             :   {
+     170           0 :     std::scoped_lock lock(*mutex_publisher_);
+     171             : 
+     172             :     try {
+     173           0 :       publisher_->publish(mrs_msgs::ProfilerUpdateConstPtr(new mrs_msgs::ProfilerUpdate(msg_out_)));
+     174             :     }
+     175           0 :     catch (...) {
+     176           0 :       ROS_ERROR("Exception caught during publishing topic %s.", publisher_->getTopic().c_str());
+     177             :     }
+     178             :   }
+     179             : }
+     180             : 
+     181             : //}
+     182             : 
+     183             : /* end() //{ */
+     184             : 
+     185     2490848 : void Routine::end(void) {
+     186             : 
+     187     2490848 :   if (!_profiler_enabled_) {
+     188     2490491 :     return;
+     189             :   }
+     190             : 
+     191         357 :   ros::Time execution_end = ros::Time::now();
+     192             : 
+     193           0 :   msg_out_.stamp    = ros::Time::now();
+     194           0 :   msg_out_.duration = (execution_end - execution_start_).toSec();
+     195             : 
+     196           0 :   msg_out_.event = mrs_msgs::ProfilerUpdate::END;
+     197             : 
+     198             :   {
+     199           0 :     std::scoped_lock lock(*mutex_publisher_);
+     200             : 
+     201             :     try {
+     202           0 :       publisher_->publish(mrs_msgs::ProfilerUpdateConstPtr(new mrs_msgs::ProfilerUpdate(msg_out_)));
+     203             :     }
+     204           0 :     catch (...) {
+     205           0 :       ROS_ERROR("Exception caught during publishing topic %s.", publisher_->getTopic().c_str());
+     206             :     }
+     207             :   }
+     208             : }
+     209             : 
+     210             : //}
+     211             : 
+     212     2490701 : Routine::~Routine() {
+     213             : 
+     214     2491027 :   this->end();
+     215     2489095 : }
+     216             : 
+     217             : }  // namespace mrs_lib
+
+
+
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/src/profiler/profiler.cpp.gcov.overview.html b/mrs_lib/src/profiler/profiler.cpp.gcov.overview.html new file mode 100644 index 0000000000..f66727ff8b --- /dev/null +++ b/mrs_lib/src/profiler/profiler.cpp.gcov.overview.html @@ -0,0 +1,75 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/profiler/profiler.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_lib/src/profiler/profiler.cpp.gcov.png b/mrs_lib/src/profiler/profiler.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..9724b44a6103493cc24901baf8b7a598ae3b23c7 GIT binary patch literal 829 zcmV-D1H$}?P)jX4>?fp(O*C8=7vv$G0st@QIgJxr;(ykZ$z$lG3!tG4g=aZ^cF{d z^}aVvg#$Pj6yd${+5L}WQr79RxG5%sjugjnif}L}vb9PU9VvIAj9upw z=yEW`igkF0TIBsQuHj&-iL2DBh#KJ$n(C&&%Sr&4%-Q|F1Asl42_%@G-Pax#F_2~> z<`9<+ibY&b`3P|f)V+kb-X<<5F5+VlcM@zaNood zPWc5;lzsCWG)wD`)#9uGy-iU$EA;6JSnpif2l6(ol*G*zk?c_t7duTWM!GnGS`g|g zD^|O9Qq08lnPRnT+S}V$^d(fe2G3kT*Mf1FglDFa;(F8_saS(TePSov^v);S{NR;62%sgr)|yf^&jikY3Ij-tf~Pa-tdm(YnG@19V_b8|#JmS9GS5hB zqi#nP-lln?_%=<+V(+_UL%Xx~t(2}E + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/safety_zone + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/src/safety_zoneHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:314963.3 %
Date:2024-04-17 23:52:03Functions:8988.9 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
safety_zone.cpp +
60.0%60.0%
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60.0 %15 / 2583.3 %5 / 6
<unnamed>60.0 %15 / 2583.3 %5 / 6
line_operations.cpp +
66.7%66.7%
+
66.7 %16 / 24100.0 %3 / 3
<unnamed>66.7 %16 / 24100.0 %3 / 3
+
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+ + + + +
Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_lib/src/safety_zoneHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:314963.3 %
Date:2024-04-17 23:52:03Functions:8988.9 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
safety_zone.cpp +
60.0%60.0%
+
60.0 %15 / 2583.3 %5 / 6
<unnamed>60.0 %15 / 2583.3 %5 / 6
line_operations.cpp +
66.7%66.7%
+
66.7 %16 / 24100.0 %3 / 3
<unnamed>66.7 %16 / 24100.0 %3 / 3
+
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+ + + + +
Generated by: LCOV version 1.14
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Current view:top level - mrs_lib/src/safety_zoneHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:314963.3 %
Date:2024-04-17 23:52:03Functions:8988.9 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
line_operations.cpp +
66.7%66.7%
+
66.7 %16 / 24100.0 %3 / 3
<unnamed>66.7 %16 / 24100.0 %3 / 3
safety_zone.cpp +
60.0%60.0%
+
60.0 %15 / 2583.3 %5 / 6
<unnamed>60.0 %15 / 2583.3 %5 / 6
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Generated by: LCOV version 1.14
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Current view:top level - mrs_lib/src/safety_zoneHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:314963.3 %
Date:2024-04-17 23:52:03Functions:8988.9 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
safety_zone.cpp +
60.0%60.0%
+
60.0 %15 / 2583.3 %5 / 6
line_operations.cpp +
66.7%66.7%
+
66.7 %16 / 24100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
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Current view:top level - mrs_lib/src/safety_zoneHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:314963.3 %
Date:2024-04-17 23:52:03Functions:8988.9 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
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Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
safety_zone.cpp +
60.0%60.0%
+
60.0 %15 / 2583.3 %5 / 6
line_operations.cpp +
66.7%66.7%
+
66.7 %16 / 24100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/src/safety_zone/index.html b/mrs_lib/src/safety_zone/index.html new file mode 100644 index 0000000000..3ad84f3092 --- /dev/null +++ b/mrs_lib/src/safety_zone/index.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/safety_zone + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/src/safety_zoneHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:314963.3 %
Date:2024-04-17 23:52:03Functions:8988.9 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
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Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
line_operations.cpp +
66.7%66.7%
+
66.7 %16 / 24100.0 %3 / 3
safety_zone.cpp +
60.0%60.0%
+
60.0 %15 / 2583.3 %5 / 6
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/src/safety_zone/line_operations.cpp.func-sort-c.html b/mrs_lib/src/safety_zone/line_operations.cpp.func-sort-c.html new file mode 100644 index 0000000000..d75f5caa6e --- /dev/null +++ b/mrs_lib/src/safety_zone/line_operations.cpp.func-sort-c.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/safety_zone/line_operations.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/src/safety_zone - line_operations.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:162466.7 %
Date:2024-04-17 23:52:03Functions:33100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
getScale(Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>)218
mrs_lib::Intersection::Intersection(bool, bool, Eigen::Matrix<double, 1, 2, 1, 1, 2>)252
mrs_lib::sectionIntersect(Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>)252
+
+
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_lib/src/safety_zone/line_operations.cpp.func.html b/mrs_lib/src/safety_zone/line_operations.cpp.func.html new file mode 100644 index 0000000000..ba4ae9187e --- /dev/null +++ b/mrs_lib/src/safety_zone/line_operations.cpp.func.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/safety_zone/line_operations.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_lib/src/safety_zone - line_operations.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:162466.7 %
Date:2024-04-17 23:52:03Functions:33100.0 %
Legend: Lines: + hit + not hit +
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+ +
+ + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
getScale(Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>)218
mrs_lib::Intersection::Intersection(bool, bool, Eigen::Matrix<double, 1, 2, 1, 1, 2>)252
mrs_lib::sectionIntersect(Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>)252
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Current view:top level - mrs_lib/src/safety_zone - line_operations.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:162466.7 %
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          Line data    Source code
+
+       1             : #include <mrs_lib/safety_zone/line_operations.h>
+       2             : 
+       3             : /* getScale() //{ */
+       4             : 
+       5         218 : static double getScale(Eigen::RowVector2d start, Eigen::RowVector2d vector, Eigen::RowVector2d point) {
+       6             :   // Returns the scalar that produces: start + scale * vector = point
+       7             :   // Assuming that such scalar exists
+       8         218 :   return vector(0) != 0 ? (point(0) - start(0)) / vector(0) : (point(1) - start(1)) / vector(1);
+       9             : }
+      10             : 
+      11             : //}
+      12             : 
+      13             : namespace mrs_lib
+      14             : {
+      15         252 : Intersection::Intersection(bool intersect, bool parallel, Eigen::RowVector2d point) : point(std::move(point)), parallel(parallel), intersect(intersect){}
+      16             : 
+      17             : /* sectionIntersect() //{ */
+      18             : 
+      19         252 : Intersection sectionIntersect(Eigen::RowVector2d start1, Eigen::RowVector2d end1, Eigen::RowVector2d start2, Eigen::RowVector2d end2) {
+      20         252 :   Eigen::RowVector2d vector1 = end1 - start1;
+      21         252 :   Eigen::RowVector2d vector2 = end2 - start2;
+      22             : 
+      23             :   // x - cross product (in 2d is just a scalar of z)
+      24             :   // start1 + scale1 * vector1 = start2 + scale2 * vector2  // x vector2
+      25             :   // scale1 * vector1 x vector2 = (start2 - start1) x vector2
+      26             : 
+      27             :   // cross product
+      28         252 :   double cross            = vector1(0) * vector2(1) - vector1(1) * vector2(0);
+      29         252 :   double difference_cross = (start2(0) - start1(0)) * vector2(1) - (start2(1) - start1(1)) * vector2(0);
+      30             : 
+      31         252 :   if (cross == 0) {
+      32             :     // are parallel
+      33          34 :     if (difference_cross != 0)
+      34          34 :       return Intersection{false, true};
+      35             : 
+      36             :     // are collinear
+      37           0 :     double start2Scale = getScale(start1, vector1, start2);
+      38           0 :     if (0 <= start2Scale && start2Scale <= 1)
+      39           0 :       return Intersection{true, true, start2};
+      40           0 :     double end2Scale = getScale(start1, vector1, end2);
+      41           0 :     if (0 <= end2Scale && end2Scale <= 1)
+      42           0 :       return Intersection{true, true, end2};
+      43             : 
+      44           0 :     return Intersection{false, true};
+      45             :   }
+      46             : 
+      47         218 :   double             scale1 = difference_cross / cross;
+      48         218 :   Eigen::RowVector2d point  = start1 + scale1 * vector1;
+      49         218 :   double             scale2 = getScale(start2, vector2, point);
+      50             : 
+      51         218 :   if (0 <= scale1 && scale1 <= 1 && 0 <= scale2 && scale2 <= 1) {
+      52           0 :     return Intersection{true, false, point};
+      53             :   }
+      54         218 :   return Intersection{false, false};
+      55             : }
+      56             : 
+      57             : //}
+      58             : 
+      59             : }  // namespace mrs_lib
+
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Test:MRS UAV System - Test coverage reportLines:4210340.8 %
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Current view:top level - mrs_lib/src/safety_zone/polygon - polygon.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:4210340.8 %
Date:2024-04-17 23:52:03Functions:4850.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::Polygon::inflateSelf(double)0
mrs_lib::Polygon::isClockwise()0
mrs_lib::lineIntersectGivenVector(Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>)0
mrs_lib::movePoint(Eigen::Matrix<double, 1, 2, 1, 1, 2>, double, Eigen::Matrix<double, 1, 2, 1, 1, 2>)0
mrs_lib::Polygon::doesSectionIntersect(double, double, double, double)63
mrs_lib::Polygon::Polygon(Eigen::Matrix<double, -1, -1, 0, -1, -1>)71
mrs_lib::Polygon::isPointInside(double, double)10017
mrs_lib::Polygon::getPointMessageVector(double)21962
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Current view:top level - mrs_lib/src/safety_zone/polygon - polygon.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:4210340.8 %
Date:2024-04-17 23:52:03Functions:4850.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::Polygon::inflateSelf(double)0
mrs_lib::Polygon::isClockwise()0
mrs_lib::Polygon::isPointInside(double, double)10017
mrs_lib::Polygon::doesSectionIntersect(double, double, double, double)63
mrs_lib::Polygon::getPointMessageVector(double)21962
mrs_lib::Polygon::Polygon(Eigen::Matrix<double, -1, -1, 0, -1, -1>)71
mrs_lib::lineIntersectGivenVector(Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>, Eigen::Matrix<double, 1, 2, 1, 1, 2>)0
mrs_lib::movePoint(Eigen::Matrix<double, 1, 2, 1, 1, 2>, double, Eigen::Matrix<double, 1, 2, 1, 1, 2>)0
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Current view:top level - mrs_lib/src/safety_zone/polygon - polygon.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:4210340.8 %
Date:2024-04-17 23:52:03Functions:4850.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #include <mrs_lib/safety_zone/polygon.h>
+       2             : #include <mrs_lib/safety_zone/line_operations.h>
+       3             : 
+       4             : namespace mrs_lib
+       5             : {
+       6             : 
+       7             : /* Polygon() //{ */
+       8             : 
+       9          71 : Polygon::Polygon(const Eigen::MatrixXd vertices) : vertices(vertices) {
+      10             : 
+      11          71 :   if (vertices.cols() != 2) {
+      12           0 :     ROS_WARN("(Polygon) The supplied polygon has to have 2 cols. It has %lu.", vertices.cols());
+      13           0 :     throw WrongNumberOfColumns();
+      14             :   }
+      15          71 :   if (vertices.rows() < 3) {
+      16           0 :     ROS_WARN("(Polygon) The supplied polygon has to have at least 3 vertices. It has %lu.", vertices.rows());
+      17           0 :     throw WrongNumberOfVertices();
+      18             :   }
+      19             : 
+      20          71 :   Eigen::RowVector2d edge1;
+      21          71 :   Eigen::RowVector2d edge2 = vertices.row(1) - vertices.row(0);
+      22         355 :   for (int i = 0; i < vertices.rows(); ++i) {
+      23         284 :     edge1 = edge2;
+      24         284 :     edge2 = vertices.row((i + 2) % vertices.rows()) - vertices.row((i + 1) % vertices.rows());
+      25             : 
+      26         284 :     if (edge1(0) == 0 && edge1(1) == 0) {
+      27           0 :       ROS_WARN("(Polygon) Polygon edge %d is of length zero.", i);
+      28           0 :       throw ExtraVertices();
+      29             :     }
+      30         284 :     if (edge1(0) * edge2(1) == edge1(1) * edge2(0)) {
+      31           0 :       ROS_WARN("(Polygon) Adjacent Polygon edges at vertice %d are collinear.", (int)((i + 1) % vertices.rows()));
+      32           0 :       throw ExtraVertices();
+      33             :     }
+      34             :   }
+      35          71 : }
+      36             : 
+      37             : //}
+      38             : 
+      39             : /* isPointInside() //{ */
+      40             : 
+      41       10017 : bool Polygon::isPointInside(const double px, const double py) {
+      42             : 
+      43       10017 :   int count = 0;
+      44             : 
+      45             :   // Cast a horizontal ray and see how many times it intersects all the edges
+      46       50085 :   for (int i = 0; i < vertices.rows(); ++i) {
+      47       40068 :     double v1x = vertices(i, 0);
+      48       40068 :     double v1y = vertices(i, 1);
+      49       40068 :     double v2x = vertices((i + 1) % vertices.rows(), 0);
+      50       40068 :     double v2y = vertices((i + 1) % vertices.rows(), 1);
+      51             : 
+      52       40068 :     if (v1y > py && v2y > py)
+      53        9941 :       continue;
+      54       30127 :     if (v1y <= py && v2y <= py)
+      55       10245 :       continue;
+      56       19882 :     double intersect_x    = (v1y == v2y) ? v1x : (py - v1y) * (v2x - v1x) / (v2y - v1y) + v1x;
+      57       19882 :     bool   does_intersect = intersect_x > px;
+      58       19882 :     if (does_intersect)
+      59        9941 :       ++count;
+      60             :   }
+      61             : 
+      62       10017 :   return count % 2;
+      63             : }
+      64             : 
+      65             : //}
+      66             : 
+      67             : /* doesSectionIntersect() //{ */
+      68             : 
+      69          63 : bool Polygon::doesSectionIntersect(const double startX, const double startY, const double endX, const double endY) {
+      70             : 
+      71          63 :   Eigen::RowVector2d start{startX, startY};
+      72          63 :   Eigen::RowVector2d end{endX, endY};
+      73             : 
+      74         315 :   for (int i = 0; i < vertices.rows(); ++i) {
+      75             : 
+      76         252 :     Eigen::RowVector2d edgeStart = vertices.row(i);
+      77         252 :     Eigen::RowVector2d edgeEnd   = vertices.row((i + 1) % vertices.rows());
+      78             : 
+      79         252 :     if (sectionIntersect(start, end, edgeStart, edgeEnd).intersect) {
+      80           0 :       return true;
+      81             :     }
+      82             :   }
+      83             : 
+      84          63 :   return false;
+      85             : }
+      86             : 
+      87             : //}
+      88             : 
+      89             : /* isClockwise() //{ */
+      90             : 
+      91           0 : bool Polygon::isClockwise() {
+      92             : 
+      93           0 :   int edgeIndex = 0;
+      94           0 :   if (vertices(0, 1) == vertices(1, 1))
+      95           0 :     edgeIndex = 1;
+      96             : 
+      97             :   // get the midPoint of first edge
+      98           0 :   Eigen::RowVector2d center = (vertices.row(edgeIndex) + vertices.row(edgeIndex + 1)) / 2;
+      99             : 
+     100             :   // count the intersections for a horizontal ray starting at center
+     101           0 :   int intersection_count = 0;
+     102           0 :   for (int i = 0; i < vertices.rows(); ++i) {
+     103           0 :     if (i == edgeIndex)
+     104           0 :       continue;
+     105             : 
+     106           0 :     Eigen::MatrixXd edge(2, 2);
+     107           0 :     edge.row(0) = vertices.row(i);
+     108           0 :     edge.row(1) = vertices.row((i + 1) % vertices.rows());
+     109             : 
+     110           0 :     if ((edge(0, 1) <= center(1) && edge(1, 1) <= center(1)) || (edge(0, 1) > center(1) && edge(1, 1) > center(1)))
+     111           0 :       continue;
+     112           0 :     double intersect_x = edge(0, 0) + (edge(1, 0) - edge(0, 0)) / (edge(1, 1) - edge(0, 1)) * (center(1) - edge(0, 1));
+     113           0 :     if (intersect_x >= center(0))
+     114           0 :       ++intersection_count;
+     115             :   }
+     116             : 
+     117             :   // reverse depending on the direction of edge
+     118           0 :   bool clockwise = intersection_count % 2;
+     119           0 :   if (vertices(edgeIndex + 1, 1) < vertices(edgeIndex, 0))
+     120           0 :     clockwise = !clockwise;
+     121           0 :   return clockwise;
+     122             : }
+     123             : 
+     124             : //}
+     125             : 
+     126             : /* movePoint() //{ */
+     127             : 
+     128           0 : static Eigen::RowVector2d movePoint(Eigen::RowVector2d vector, double scale, Eigen::RowVector2d point) {
+     129             : 
+     130           0 :   double             length         = sqrt(vector(0) * vector(0) + vector(1) * vector(1));
+     131           0 :   Eigen::RowVector2d unitary_vector = vector / length;
+     132           0 :   return point + scale * unitary_vector;
+     133             : }
+     134             : 
+     135             : //}
+     136             : 
+     137             : /* lineIntersectGivenVector() //{ */
+     138             : 
+     139           0 : static Intersection lineIntersectGivenVector(Eigen::RowVector2d start1, Eigen::RowVector2d vector1, Eigen::RowVector2d start2, Eigen::RowVector2d vector2) {
+     140             : 
+     141           0 :   double cross            = vector1(0) * vector2(1) - vector1(1) * vector2(0);
+     142           0 :   double difference_cross = (start2(0) - start1(0)) * vector2(1) - (start2(1) - start1(1)) * vector1(0);
+     143             : 
+     144           0 :   if (cross == 0) {
+     145           0 :     if (difference_cross == 0) {
+     146           0 :       return Intersection{true, true, start1};
+     147             :     }
+     148           0 :     return Intersection{false, true};
+     149             :   }
+     150             : 
+     151           0 :   double             scale1 = difference_cross / cross;
+     152           0 :   Eigen::RowVector2d point  = start1 + scale1 * vector1;
+     153           0 :   return Intersection{true, false, point};
+     154             : }
+     155             : 
+     156             : //}
+     157             : 
+     158             : /* inflateSelf() //{ */
+     159             : 
+     160           0 : void Polygon::inflateSelf(double amount) {
+     161             : 
+     162             :   // Also supports negative numbers
+     163           0 :   Eigen::MatrixXd result{vertices.rows(), vertices.cols()};
+     164             : 
+     165           0 :   bool clockwise = isClockwise();
+     166           0 :   amount         = (clockwise ? 1 : -1) * amount;
+     167             : 
+     168           0 :   for (int i = 0; i < vertices.rows(); ++i) {
+     169           0 :     Eigen::RowVector2d pPrev    = vertices.row((i + vertices.rows() - 1) % vertices.rows());
+     170           0 :     Eigen::RowVector2d pCurrent = vertices.row(i);
+     171           0 :     Eigen::RowVector2d pNext    = vertices.row((i + 1) % vertices.rows());
+     172             : 
+     173           0 :     Eigen::RowVector2d vector1 = pCurrent - pPrev;
+     174           0 :     Eigen::RowVector2d vector2 = pNext - pCurrent;
+     175             :     // make them orthogonally counter-clockwise
+     176           0 :     Eigen::RowVector2d vectorOrthogonal1{-vector1(1), vector1(0)};
+     177           0 :     Eigen::RowVector2d vectorOrthogonal2{-vector2(1), vector2(0)};
+     178             :     // move the currentPoint in 2 directions
+     179           0 :     pPrev = movePoint(vectorOrthogonal1, amount, pCurrent);
+     180           0 :     pNext = movePoint(vectorOrthogonal2, amount, pCurrent);
+     181             : 
+     182             :     // add the intersection as a new point
+     183           0 :     result.row(i) = lineIntersectGivenVector(pPrev, vector1, pNext, vector2).point;
+     184             :   }
+     185             : 
+     186           0 :   vertices = result.replicate(result.rows(), result.cols());
+     187           0 : }
+     188             : 
+     189             : //}
+     190             : 
+     191             : /* getPointMessageVector() //{ */
+     192             : 
+     193       21962 : std::vector<geometry_msgs::Point> Polygon::getPointMessageVector(const double z) {
+     194       21962 :   std::vector<geometry_msgs::Point> points(vertices.rows());
+     195      109810 :   for (int i = 0; i < vertices.rows(); ++i) {
+     196       87848 :     points[i].x = vertices(i, 0);
+     197       87848 :     points[i].y = vertices(i, 1);
+     198       87848 :     points[i].z = z;
+     199             :   }
+     200             : 
+     201       21962 :   return points;
+     202             : }
+     203             : 
+     204             : //}
+     205             : 
+     206             : }  // namespace mrs_lib
+
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Test:MRS UAV System - Test coverage reportLines:152560.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::SafetyZone::SafetyZone(mrs_lib::Polygon)0
mrs_lib::SafetyZone::isPathValid(double, double, double, double)63
mrs_lib::SafetyZone::SafetyZone(Eigen::Matrix<double, -1, -1, 0, -1, -1> const&)71
mrs_lib::SafetyZone::~SafetyZone()71
mrs_lib::SafetyZone::isPointValid(double, double)10017
mrs_lib::SafetyZone::getBorder()10981
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mrs_lib::SafetyZone::isPathValid(double, double, double, double)63
mrs_lib::SafetyZone::isPointValid(double, double)10017
mrs_lib::SafetyZone::getBorder()10981
mrs_lib::SafetyZone::SafetyZone(mrs_lib::Polygon)0
mrs_lib::SafetyZone::SafetyZone(Eigen::Matrix<double, -1, -1, 0, -1, -1> const&)71
mrs_lib::SafetyZone::~SafetyZone()71
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+
          Line data    Source code
+
+       1             : #include <mrs_lib/safety_zone/safety_zone.h>
+       2             : #include <mrs_lib/safety_zone/line_operations.h>
+       3             : 
+       4             : namespace mrs_lib
+       5             : {
+       6             : /* SafetyZone() //{ */
+       7             : 
+       8           0 : SafetyZone::SafetyZone(mrs_lib::Polygon border) {
+       9           0 :   outerBorder = new Polygon(border);
+      10           0 : }
+      11             : 
+      12             : //}
+      13             : 
+      14             : /* SafetyZone() //{ */
+      15             : 
+      16         142 : SafetyZone::~SafetyZone() {
+      17          71 :   delete outerBorder;
+      18          71 : }
+      19             : 
+      20             : //}
+      21             : 
+      22             : /* SafetyZone() //{ */
+      23             : 
+      24          71 : SafetyZone::SafetyZone(const Eigen::MatrixXd& outerBorderMatrix) {
+      25             : 
+      26             :   try {
+      27          71 :     outerBorder = new Polygon(outerBorderMatrix);
+      28             :   }
+      29           0 :   catch (const Polygon::WrongNumberOfVertices&) {
+      30           0 :     throw BorderError();
+      31             :   }
+      32           0 :   catch (const Polygon::WrongNumberOfColumns&) {
+      33           0 :     throw BorderError();
+      34             :   }
+      35           0 :   catch (const Polygon::ExtraVertices&) {
+      36           0 :     throw BorderError();
+      37             :   }
+      38          71 : }
+      39             : 
+      40             : //}
+      41             : 
+      42             : /* isPointValid() //{ */
+      43             : 
+      44       10017 : bool SafetyZone::isPointValid(const double px, const double py) {
+      45             : 
+      46       10017 :   if (!outerBorder->isPointInside(px, py)) {
+      47          76 :     return false;
+      48             :   }
+      49             : 
+      50        9941 :   return true;
+      51             : }
+      52             : 
+      53             : //}
+      54             : 
+      55             : /* isPathValid() //{ */
+      56             : 
+      57          63 : bool SafetyZone::isPathValid(const double p1x, const double p1y, const double p2x, const double p2y) {
+      58             : 
+      59          63 :   if (outerBorder->doesSectionIntersect(p1x, p1y, p2x, p2y)) {
+      60           0 :     return false;
+      61             :   }
+      62             : 
+      63          63 :   return true;
+      64             : }
+      65             : 
+      66             : //}
+      67             : 
+      68             : /* getBorder() //{ */
+      69             : 
+      70       10981 : Polygon SafetyZone::getBorder() {
+      71       10981 :   return *outerBorder;
+      72             : }
+      73             : 
+      74             : //}
+      75             : 
+      76             : }  // namespace mrs_lib
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Current view:top level - mrs_lib/src/scope_timerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:2014214.1 %
Date:2024-04-17 23:52:03Functions:51050.0 %
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Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
scope_timer.cpp +
14.1%14.1%
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Generated by: LCOV version 1.14
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Current view:top level - mrs_lib/src/scope_timerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:2014214.1 %
Date:2024-04-17 23:52:03Functions:51050.0 %
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Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
scope_timer.cpp +
14.1%14.1%
+
14.1 %20 / 14250.0 %5 / 10
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_lib/src/scope_timer/scope_timer.cpp.func-sort-c.html b/mrs_lib/src/scope_timer/scope_timer.cpp.func-sort-c.html new file mode 100644 index 0000000000..3fb566e851 --- /dev/null +++ b/mrs_lib/src/scope_timer/scope_timer.cpp.func-sort-c.html @@ -0,0 +1,120 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/scope_timer/scope_timer.cpp - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/src/scope_timer - scope_timer.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:2014214.1 %
Date:2024-04-17 23:52:03Functions:51050.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::ScopeTimer::getLifetime()0
mrs_lib::ScopeTimer::ScopeTimer(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Duration const&, bool, std::shared_ptr<mrs_lib::ScopeTimerLogger>)0
mrs_lib::ScopeTimer::ScopeTimer(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_lib::ScopeTimer::time_point const&, ros::Duration const&, bool, std::shared_ptr<mrs_lib::ScopeTimerLogger>)0
mrs_lib::ScopeTimerLogger::log(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::chrono::time_point<std::chrono::_V2::steady_clock, std::chrono::duration<long, std::ratio<1l, 1000000000l> > > const&, std::chrono::time_point<std::chrono::_V2::steady_clock, std::chrono::duration<long, std::ratio<1l, 1000000000l> > > const&)0
mrs_lib::ScopeTimerLogger::log(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::chrono::time_point<std::chrono::_V2::steady_clock, std::chrono::duration<long, std::ratio<1l, 1000000000l> > > const&, std::chrono::time_point<std::chrono::_V2::steady_clock, std::chrono::duration<long, std::ratio<1l, 1000000000l> > > const&)0
mrs_lib::ScopeTimerLogger::ScopeTimerLogger(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool, int)637
mrs_lib::ScopeTimerLogger::~ScopeTimerLogger()637
mrs_lib::ScopeTimer::checkpoint(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)4016276
mrs_lib::ScopeTimer::ScopeTimer(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_lib::ScopeTimerLogger>, bool)5156317
mrs_lib::ScopeTimer::~ScopeTimer()5158543
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+ + + diff --git a/mrs_lib/src/scope_timer/scope_timer.cpp.func.html b/mrs_lib/src/scope_timer/scope_timer.cpp.func.html new file mode 100644 index 0000000000..50fe0cd1b1 --- /dev/null +++ b/mrs_lib/src/scope_timer/scope_timer.cpp.func.html @@ -0,0 +1,120 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/scope_timer/scope_timer.cpp - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_lib/src/scope_timer - scope_timer.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:2014214.1 %
Date:2024-04-17 23:52:03Functions:51050.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::ScopeTimer::checkpoint(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)4016276
mrs_lib::ScopeTimer::getLifetime()0
mrs_lib::ScopeTimer::ScopeTimer(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Duration const&, bool, std::shared_ptr<mrs_lib::ScopeTimerLogger>)0
mrs_lib::ScopeTimer::ScopeTimer(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_lib::ScopeTimer::time_point const&, ros::Duration const&, bool, std::shared_ptr<mrs_lib::ScopeTimerLogger>)0
mrs_lib::ScopeTimer::ScopeTimer(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_lib::ScopeTimerLogger>, bool)5156317
mrs_lib::ScopeTimer::~ScopeTimer()5158543
mrs_lib::ScopeTimerLogger::log(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::chrono::time_point<std::chrono::_V2::steady_clock, std::chrono::duration<long, std::ratio<1l, 1000000000l> > > const&, std::chrono::time_point<std::chrono::_V2::steady_clock, std::chrono::duration<long, std::ratio<1l, 1000000000l> > > const&)0
mrs_lib::ScopeTimerLogger::log(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::chrono::time_point<std::chrono::_V2::steady_clock, std::chrono::duration<long, std::ratio<1l, 1000000000l> > > const&, std::chrono::time_point<std::chrono::_V2::steady_clock, std::chrono::duration<long, std::ratio<1l, 1000000000l> > > const&)0
mrs_lib::ScopeTimerLogger::ScopeTimerLogger(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool, int)637
mrs_lib::ScopeTimerLogger::~ScopeTimerLogger()637
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Current view:top level - mrs_lib/src/scope_timer - scope_timer.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:2014214.1 %
Date:2024-04-17 23:52:03Functions:51050.0 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #include <mrs_lib/scope_timer.h>
+       2             : 
+       3             : namespace mrs_lib
+       4             : {
+       5             : 
+       6             : // | --------------------- ScopeTimerLogger --------------------- |
+       7             : 
+       8             : /*//{ ScopeTimerLogger constructor */
+       9         637 : ScopeTimerLogger::ScopeTimerLogger(const std::string& logfile, const bool enable_logging, const int log_precision)
+      10         637 :     : _logging_enabled_(enable_logging), _log_filepath_(logfile) {
+      11             : 
+      12         637 :   if (!_logging_enabled_) {
+      13         637 :     return;
+      14           0 :   } else if (logfile.empty()) {
+      15           0 :     _logging_enabled_ = false;
+      16           0 :     ROS_INFO("[%s] ScopeTimerLogger: Logfile path not specified. Skipping logging to file.", ros::this_node::getName().c_str());
+      17           0 :     return;
+      18             :   }
+      19           0 :   _should_log_ = true;
+      20             : 
+      21             :   try {
+      22           0 :     std::scoped_lock lock(_mutex_logstream_);
+      23             : 
+      24           0 :     _logstream_ = std::ofstream(logfile, std::ios_base::out | std::ios_base::trunc);
+      25             : 
+      26           0 :     if (!_logstream_.is_open()) {
+      27           0 :       _logging_enabled_ = false;
+      28           0 :       ROS_ERROR("[%s]: Scope timer failed to create log file with path (%s). Skipping logging.", ros::this_node::getName().c_str(), logfile.c_str());
+      29           0 :       return;
+      30             :     }
+      31             : 
+      32           0 :     _logstream_ << std::fixed << std::setprecision(log_precision);
+      33           0 :     _logstream_ << "#scope,label_from,label_to,sec_start,sec_end,sec_duration" << std::endl;
+      34           0 :     _logging_enabled_ = true;
+      35             :   }
+      36           0 :   catch (...) {
+      37           0 :     ROS_ERROR("[%s]: Scope timer logger could not open logger file at: %s. Skipping logging.", ros::this_node::getName().c_str(), logfile.c_str());
+      38           0 :     return;
+      39             :   }
+      40             : 
+      41           0 :   ROS_INFO("[%s]: Scope timer logger path: %s.", ros::this_node::getName().c_str(), logfile.c_str());
+      42             : }
+      43             : /*//}*/
+      44             : 
+      45             : /*//{ ScopeTimerLogger destructor */
+      46         637 : ScopeTimerLogger::~ScopeTimerLogger() {
+      47         637 :   if (_logging_enabled_) {
+      48           0 :     ROS_DEBUG("[%s]: ScopeTimerLogger: closing logstream.", ros::this_node::getName().c_str());
+      49           0 :     _logstream_.close();
+      50             :   }
+      51         637 : }
+      52             : /*//}*/
+      53             : 
+      54             : /*//{ ScopeTimerLogger::log() */
+      55           0 : void ScopeTimerLogger::log(const std::string& scope, const chrono_tp& time_start, const chrono_tp& time_end) {
+      56           0 :   log(scope, "", "", time_start, time_end);
+      57           0 : }
+      58             : 
+      59           0 : void ScopeTimerLogger::log(const std::string& scope, const std::string& label_from, const std::string& label_to, const chrono_tp& time_start,
+      60             :                            const chrono_tp& time_end) {
+      61             : 
+      62           0 :   if (!_logging_enabled_) {
+      63           0 :     return;
+      64             :   }
+      65             : 
+      66           0 :   const std::chrono::duration<double> duration_start = std::chrono::duration_cast<std::chrono::duration<double>>(time_start.time_since_epoch());
+      67           0 :   const std::chrono::duration<double> duration_end   = std::chrono::duration_cast<std::chrono::duration<double>>(time_end.time_since_epoch());
+      68           0 :   const std::chrono::duration<double> duration_total = std::chrono::duration_cast<std::chrono::duration<double>>(time_end - time_start);
+      69             : 
+      70             :   {
+      71           0 :     std::scoped_lock lock(_mutex_logstream_);
+      72           0 :     _logstream_ << scope.c_str() << "," << label_from.c_str() << "," << label_to.c_str() << "," << duration_start.count() << "," << duration_end.count() << ","
+      73           0 :                 << duration_total.count() << std::endl;
+      74             :   }
+      75             : }
+      76             : /*//}*/
+      77             : 
+      78             : // | ------------------------ ScopeTimer ------------------------ |
+      79             : 
+      80             : std::unordered_map<std::string, ros::Time> ScopeTimer::last_print_times;
+      81             : 
+      82             : /* ScopeTimer constructor //{ */
+      83             : 
+      84           0 : ScopeTimer::ScopeTimer(const std::string& label, const ros::Duration& throttle_period, const bool enable,
+      85           0 :                        const std::shared_ptr<ScopeTimerLogger> scope_timer_logger)
+      86           0 :     : _timer_label_(label), _enable_print_or_log(enable), _throttle_period_(throttle_period), _logger_(scope_timer_logger) {
+      87             : 
+      88           0 :   checkpoints.push_back(time_point("timer start"));
+      89             : 
+      90           0 :   ROS_DEBUG("[%s] Scope timer started, label: %s", ros::this_node::getName().c_str(), label.c_str());
+      91           0 : }
+      92             : 
+      93           0 : ScopeTimer::ScopeTimer(const std::string& label, const time_point& tp0, const ros::Duration& throttle_period, const bool enable,
+      94           0 :                        const std::shared_ptr<ScopeTimerLogger> scope_timer_logger)
+      95           0 :     : _timer_label_(label), _enable_print_or_log(enable), _throttle_period_(throttle_period), _logger_(scope_timer_logger) {
+      96             : 
+      97           0 :   checkpoints.push_back(tp0);
+      98           0 :   checkpoints.push_back(time_point("timer start"));
+      99             : 
+     100           0 :   ROS_DEBUG("[%s] Scope timer started with file logger (label: %s).", ros::this_node::getName().c_str(), label.c_str());
+     101           0 : }
+     102             : 
+     103     5156317 : ScopeTimer::ScopeTimer(const std::string& label, const std::shared_ptr<ScopeTimerLogger> scope_timer_logger, const bool enable)
+     104     5156317 :     : _timer_label_(label), _enable_print_or_log(enable), _throttle_period_(ros::Duration(0.0)), _logger_(scope_timer_logger) {
+     105             : 
+     106     5145945 :   checkpoints.push_back(time_point("timer start"));
+     107             : 
+     108     5143470 :   ROS_DEBUG("[%s] Scope timer started with file logger (label: %s).", ros::this_node::getName().c_str(), label.c_str());
+     109     5143470 : }
+     110             : 
+     111             : //}
+     112             : 
+     113             : /* ScopeTimer::checkpoint() //{ */
+     114             : 
+     115     4016276 : void ScopeTimer::checkpoint(const std::string& label) {
+     116             : 
+     117     4016276 :   if (_enable_print_or_log) {
+     118           0 :     checkpoints.push_back(time_point(label));
+     119             :   }
+     120     4016276 : }
+     121             : 
+     122             : //}
+     123             : 
+     124             : /* ScopeTimer::getLifetime() //{ */
+     125             : 
+     126           0 : float ScopeTimer::getLifetime() {
+     127           0 :   const auto lifetime_us = std::chrono::duration_cast<std::chrono::microseconds>(std::chrono::steady_clock::now() - checkpoints.at(0).chrono_time).count();
+     128           0 :   return lifetime_us / 1000.0f;
+     129             : }
+     130             : 
+     131             : //}
+     132             : 
+     133             : /* ScopeTimer destructor //{ */
+     134             : 
+     135    15469206 : ScopeTimer::~ScopeTimer() {
+     136             : 
+     137     5158543 :   if (!_enable_print_or_log) {
+     138     5158575 :     return;
+     139             :   }
+     140             : 
+     141           9 :   const auto chrono_end_time = std::chrono::steady_clock::now();
+     142           0 :   const auto ros_end_time    = ros::Time::now();
+     143             : 
+     144             :   // if throttling is enabled, check time of last print and only print if applicable
+     145           0 :   if (!_throttle_period_.isZero()) {
+     146           0 :     bool       do_print = false;
+     147           0 :     const auto last_it  = last_print_times.find(_timer_label_);
+     148             :     // if this is the first print of this ScopeTimer
+     149           0 :     if (last_it == last_print_times.end()) {
+     150           0 :       do_print = true;
+     151           0 :       last_print_times.emplace(_timer_label_, ros_end_time);
+     152             :     } else {
+     153             :       // if this ScopeTimer was already printed, check how long ago
+     154           0 :       ros::Time& last_print_time = last_it->second;
+     155           0 :       if (ros_end_time - last_print_time > _throttle_period_) {
+     156             :         // if it was long ago enough, print again and update the last print time
+     157           0 :         do_print        = true;
+     158           0 :         last_print_time = ros_end_time;
+     159             :       }
+     160             :     }
+     161             : 
+     162           0 :     if (!do_print)
+     163           0 :       return;
+     164             :   }
+     165             : 
+     166             :   // If logger object exists and it should log (a path to a logger file was given by the user)
+     167           0 :   if (_logger_ && _logger_->shouldLog()) {
+     168             : 
+     169             :     // Enabled, if user sets the enable flag to true, a path to a logger file is given, and the logging stream was successfully opened
+     170           0 :     if (!_logger_->loggingEnabled()) {
+     171           0 :       return;
+     172             :     }
+     173             : 
+     174             :     // Log checkpoints, e.g., "SCOPE->checkpoint1;checkpoint1->checkpoint2"
+     175           0 :     std::string label_from = "";
+     176           0 :     for (size_t i = 1; i < checkpoints.size(); i++) {
+     177           0 :       const auto& checkpoint = checkpoints.at(i);
+     178           0 :       _logger_->log(_timer_label_, label_from, checkpoint.label, checkpoints.at(i - 1).chrono_time, checkpoint.chrono_time);
+     179           0 :       label_from = checkpoint.label;
+     180             :     }
+     181             : 
+     182             :     // Log entire scope from start to end
+     183           0 :     _logger_->log(_timer_label_, checkpoints.at(0).chrono_time, chrono_end_time);
+     184             : 
+     185             :   } else {
+     186             : 
+     187           0 :     checkpoints.push_back(time_point("scope end"));
+     188             : 
+     189           0 :     const int gap1 = 8;
+     190           0 :     const int gap2 = 8;
+     191           0 :     const int gap3 = 12;
+     192             : 
+     193           0 :     std::stringstream ss;
+     194           0 :     ss.precision(3);
+     195           0 :     ss << std::fixed;
+     196             : 
+     197           0 :     const char separator = ' ';
+     198             : 
+     199           0 :     int max_label_width = 5;
+     200           0 :     for (auto& el : checkpoints) {
+     201           0 :       el.label      = "(" + el.label + ")";
+     202           0 :       const int len = el.label.length();
+     203           0 :       if (len > max_label_width)
+     204           0 :         max_label_width = len;
+     205             :     }
+     206             : 
+     207           0 :     int width_label_column = 10;
+     208           0 :     for (unsigned long i = 1; i < checkpoints.size(); i++) {
+     209           0 :       const int len = (checkpoints.at(i).label + checkpoints.at(i - 1).label).length();
+     210           0 :       if (len > width_label_column)
+     211           0 :         width_label_column = len;
+     212             :     }
+     213           0 :     width_label_column += 7;
+     214             : 
+     215           0 :     ss << std::endl << std::left << std::setw(width_label_column) << std::setfill(separator) << " {label}";
+     216           0 :     ss << std::left << std::setw(gap1) << std::setfill(separator) << "";
+     217           0 :     ss << std::left << std::setw(gap2) << std::setfill(separator) << "{ROS time}";
+     218           0 :     ss << std::left << std::setw(gap3) << std::setfill(separator) << "";
+     219           0 :     ss << std::left << std::setw(gap2) << std::setfill(separator) << "{chrono time}" << std::endl;
+     220             : 
+     221           0 :     for (unsigned long i = 1; i < checkpoints.size(); i++) {
+     222             : 
+     223           0 :       const double ros_elapsed = (checkpoints.at(i).ros_time - checkpoints.at(i - 1).ros_time).toSec();
+     224           0 :       const int    ros_secs    = int(ros_elapsed);
+     225           0 :       const double ros_msecs   = std::fmod(ros_elapsed * 1000, 1000);
+     226             : 
+     227           0 :       const std::chrono::duration<double> chrono_elapsed = (checkpoints.at(i).chrono_time - checkpoints.at(i - 1).chrono_time);
+     228           0 :       const int                           chrono_secs    = int(chrono_elapsed.count());
+     229           0 :       const double                        chrono_msecs   = std::fmod(chrono_elapsed.count() * 1000, 1000);
+     230             : 
+     231           0 :       ss << std::left << std::setw(max_label_width) << std::setfill(separator) << checkpoints.at(i - 1).label;
+     232           0 :       ss << " -> ";
+     233           0 :       ss << std::left << std::setw(max_label_width) << std::setfill(separator) << checkpoints.at(i).label;
+     234             : 
+     235           0 :       ss << std::right << std::setw(gap1) << std::setfill(separator) << ros_secs << std::setw(0) << "s";
+     236           0 :       ss << std::right << std::setw(gap2) << std::setfill(separator) << ros_msecs << std::setw(0) << "ms";
+     237           0 :       ss << std::right << std::setw(gap3) << std::setfill(separator) << chrono_secs << std::setw(0) << "s";
+     238           0 :       ss << std::right << std::setw(gap2) << std::setfill(separator) << chrono_msecs << std::setw(0) << "ms" << std::endl;
+     239             :     }
+     240             : 
+     241           0 :     const double ros_elapsed = (ros_end_time - checkpoints.at(0).ros_time).toSec();
+     242           0 :     const int    ros_secs    = int(ros_elapsed);
+     243           0 :     const double ros_msecs   = std::fmod(ros_elapsed * 1000, 1000);
+     244             : 
+     245           0 :     const std::chrono::duration<double> chrono_elapsed = (chrono_end_time - checkpoints.at(0).chrono_time);
+     246           0 :     const int                           chrono_secs    = int(chrono_elapsed.count());
+     247           0 :     const double                        chrono_msecs   = std::fmod(chrono_elapsed.count() * 1000, 1000);
+     248             : 
+     249           0 :     ss << std::left << std::setw(width_label_column) << std::setfill(separator) << "TOTAL TIME";
+     250           0 :     ss << std::right << std::setw(gap1) << std::setfill(separator) << ros_secs << std::setw(0) << "s";
+     251           0 :     ss << std::right << std::setw(gap2) << std::setfill(separator) << ros_msecs << std::setw(0) << "ms";
+     252           0 :     ss << std::right << std::setw(gap3) << std::setfill(separator) << chrono_secs << std::setw(0) << "s";
+     253           0 :     ss << std::right << std::setw(gap2) << std::setfill(separator) << chrono_msecs << std::setw(0) << "ms" << std::endl;
+     254             : 
+     255           0 :     ROS_INFO("[%s]: Scope timer [%s] finished!%s", ros::this_node::getName().c_str(), _timer_label_.c_str(), ss.str().c_str());
+     256             :   }
+     257     5155918 : }
+     258             : 
+     259             : //}
+     260             : 
+     261             : }  // namespace mrs_lib
+
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mrs_lib::TimeoutManager::change(unsigned long, ros::Duration const&, std::function<void (ros::Time const&)> const&, ros::Time const&, bool, bool)0
mrs_lib::TimeoutManager::lastReset(unsigned long)0
mrs_lib::TimeoutManager::pauseAll()2
mrs_lib::TimeoutManager::startAll(ros::Time const&)4
mrs_lib::TimeoutManager::pause(unsigned long)9
mrs_lib::TimeoutManager::TimeoutManager(ros::NodeHandle const&, ros::Rate const&)87
mrs_lib::TimeoutManager::registerNew(ros::Duration const&, std::function<void (ros::Time const&)> const&, ros::Time const&, bool, bool)90
mrs_lib::TimeoutManager::start(unsigned long, ros::Time const&)90
mrs_lib::TimeoutManager::started(unsigned long)1584
mrs_lib::TimeoutManager::main_timer_callback(ros::TimerEvent const&)20131
mrs_lib::TimeoutManager::reset(unsigned long, ros::Time const&)183610
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mrs_lib::TimeoutManager::registerNew(ros::Duration const&, std::function<void (ros::Time const&)> const&, ros::Time const&, bool, bool)90
mrs_lib::TimeoutManager::main_timer_callback(ros::TimerEvent const&)20131
mrs_lib::TimeoutManager::pause(unsigned long)9
mrs_lib::TimeoutManager::reset(unsigned long, ros::Time const&)183610
mrs_lib::TimeoutManager::start(unsigned long, ros::Time const&)90
mrs_lib::TimeoutManager::change(unsigned long, ros::Duration const&, std::function<void (ros::Time const&)> const&, ros::Time const&, bool, bool)0
mrs_lib::TimeoutManager::started(unsigned long)1584
mrs_lib::TimeoutManager::pauseAll()2
mrs_lib::TimeoutManager::startAll(ros::Time const&)4
mrs_lib::TimeoutManager::lastReset(unsigned long)0
mrs_lib::TimeoutManager::TimeoutManager(ros::NodeHandle const&, ros::Rate const&)87
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+
          Line data    Source code
+
+       1             : #include <mrs_lib/timeout_manager.h>
+       2             : 
+       3             : namespace mrs_lib
+       4             : {
+       5             : 
+       6          87 :   TimeoutManager::TimeoutManager(const ros::NodeHandle& nh, const ros::Rate& update_rate)
+       7          87 :     : m_last_id(0)
+       8             :   {
+       9          87 :     m_main_timer = nh.createTimer(update_rate, &TimeoutManager::main_timer_callback, this);
+      10          87 :   }
+      11             : 
+      12             : 
+      13          90 :   TimeoutManager::timeout_id_t TimeoutManager::registerNew(const ros::Duration& timeout, const callback_t& callback, const ros::Time& last_reset, const bool oneshot, const bool autostart)
+      14             :   {
+      15         180 :     std::scoped_lock lck(m_mtx);
+      16          90 :     const auto new_id = m_timeouts.size();
+      17          90 :     const timeout_info_t new_info = {oneshot, autostart, callback, timeout, last_reset, last_reset};
+      18          90 :     m_timeouts.push_back(new_info);
+      19         180 :     return new_id;
+      20             :   }
+      21             : 
+      22      183610 :   void TimeoutManager::reset(const timeout_id_t id, const ros::Time& time)
+      23             :   {
+      24      183610 :     std::scoped_lock lck(m_mtx);
+      25      183610 :     m_timeouts.at(id).last_reset = time;
+      26      183609 :   }
+      27             : 
+      28           9 :   void TimeoutManager::pause(const timeout_id_t id)
+      29             :   {
+      30           9 :     std::scoped_lock lck(m_mtx);
+      31           9 :     m_timeouts.at(id).started = false;
+      32           9 :   }
+      33             : 
+      34          90 :   void TimeoutManager::start(const timeout_id_t id, const ros::Time& time)
+      35             :   {
+      36          90 :     std::scoped_lock lck(m_mtx);
+      37          90 :     m_timeouts.at(id).started = true;
+      38          90 :     m_timeouts.at(id).last_reset = time;
+      39          90 :   }
+      40             : 
+      41           2 :   void TimeoutManager::pauseAll()
+      42             :   {
+      43           4 :     std::scoped_lock lck(m_mtx);
+      44          10 :     for (auto& timeout_info : m_timeouts)
+      45           8 :       timeout_info.started = false;
+      46           2 :   }
+      47             : 
+      48           4 :   void TimeoutManager::startAll(const ros::Time& time)
+      49             :   {
+      50           8 :     std::scoped_lock lck(m_mtx);
+      51          20 :     for (auto& timeout_info : m_timeouts)
+      52             :     {
+      53          16 :       timeout_info.started = true;
+      54          16 :       timeout_info.last_reset = time;
+      55             :     }
+      56           4 :   }
+      57             : 
+      58           0 :   void TimeoutManager::change(const timeout_id_t id, const ros::Duration& timeout, const callback_t& callback, const ros::Time& last_reset, const bool oneshot, const bool autostart)
+      59             :   {
+      60           0 :     std::scoped_lock lck(m_mtx);
+      61           0 :     auto& timeout_info = m_timeouts.at(id);
+      62           0 :     timeout_info.oneshot = oneshot;
+      63           0 :     timeout_info.started = autostart;
+      64           0 :     timeout_info.timeout = timeout;
+      65           0 :     timeout_info.callback = callback;
+      66           0 :     timeout_info.last_reset = last_reset;
+      67           0 :   }
+      68             : 
+      69           0 :   ros::Time TimeoutManager::lastReset(const timeout_id_t id)
+      70             :   {
+      71           0 :     std::scoped_lock lck(m_mtx);
+      72           0 :     return m_timeouts.at(id).last_reset;
+      73             :   }
+      74             : 
+      75        1584 :   bool TimeoutManager::started(const timeout_id_t id)
+      76             :   {
+      77        1584 :     std::scoped_lock lck(m_mtx);
+      78        3168 :     return m_timeouts.at(id).started;
+      79             :   }
+      80             : 
+      81       20131 :   void TimeoutManager::main_timer_callback([[maybe_unused]] const ros::TimerEvent &evt)
+      82             :   {
+      83       20131 :     const auto now = ros::Time::now();
+      84             : 
+      85       40262 :     std::scoped_lock lck(m_mtx);
+      86       46550 :     for (auto& timeout_info : m_timeouts)
+      87             :     {
+      88             :       // don't worry, this'll get optimized out by the compiler
+      89       26419 :       const bool started = timeout_info.started;
+      90       26419 :       const bool last_reset_timeout = now - timeout_info.last_reset >= timeout_info.timeout;
+      91       26419 :       const bool last_callback_timeout = now - timeout_info.last_callback >= timeout_info.timeout;
+      92       26419 :       if (started && last_reset_timeout && last_callback_timeout)
+      93             :       {
+      94        2088 :         timeout_info.callback(timeout_info.last_reset);
+      95        2088 :         timeout_info.last_callback = now;
+      96             :         // if the timeout is oneshot, pause it
+      97        2088 :         if (timeout_info.oneshot)
+      98           0 :           timeout_info.started = false;
+      99             :       }
+     100             :     }
+     101       20131 :   }
+     102             : }
+
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+ + + diff --git a/mrs_lib/src/timer/timer.cpp.func-sort-c.html b/mrs_lib/src/timer/timer.cpp.func-sort-c.html new file mode 100644 index 0000000000..ea7dd34d45 --- /dev/null +++ b/mrs_lib/src/timer/timer.cpp.func-sort-c.html @@ -0,0 +1,152 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_lib/src/timer/timer.cpp - functions + + + + + + + + + + + + + + +
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mrs_lib::ThreadTimer::setCallback(std::function<void (ros::TimerEvent const&)> const&)0
mrs_lib::ThreadTimer::Impl::setCallback(std::function<void (ros::TimerEvent const&)> const&)0
mrs_lib::ROSTimer::setCallback(std::function<void (ros::TimerEvent const&)> const&)0
mrs_lib::ThreadTimer::Impl::setPeriod(ros::Duration const&, bool)8
mrs_lib::ThreadTimer::Impl::threadFcn()8
mrs_lib::ThreadTimer::Impl::Impl(std::function<void (ros::TimerEvent const&)> const&, ros::Duration const&, bool)8
mrs_lib::ThreadTimer::Impl::~Impl()8
mrs_lib::ThreadTimer::setPeriod(ros::Duration const&, bool)8
mrs_lib::ROSTimer::setPeriod(ros::Duration const&, bool)8
mrs_lib::ThreadTimer::Impl::stop()24
mrs_lib::ThreadTimer::Impl::start()24
mrs_lib::ThreadTimer::stop()24
mrs_lib::ThreadTimer::start()24
mrs_lib::ROSTimer::stop()24
mrs_lib::ROSTimer::start()24
mrs_lib::ThreadTimer::Impl::breakableSleep(ros::Time const&)208
mrs_lib::ThreadTimer::running()208
mrs_lib::ROSTimer::running()216
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::ThreadTimer::setCallback(std::function<void (ros::TimerEvent const&)> const&)0
mrs_lib::ThreadTimer::Impl::setCallback(std::function<void (ros::TimerEvent const&)> const&)0
mrs_lib::ThreadTimer::Impl::breakableSleep(ros::Time const&)208
mrs_lib::ThreadTimer::Impl::stop()24
mrs_lib::ThreadTimer::Impl::start()24
mrs_lib::ThreadTimer::Impl::setPeriod(ros::Duration const&, bool)8
mrs_lib::ThreadTimer::Impl::threadFcn()8
mrs_lib::ThreadTimer::Impl::Impl(std::function<void (ros::TimerEvent const&)> const&, ros::Duration const&, bool)8
mrs_lib::ThreadTimer::Impl::~Impl()8
mrs_lib::ThreadTimer::stop()24
mrs_lib::ThreadTimer::start()24
mrs_lib::ThreadTimer::running()208
mrs_lib::ThreadTimer::setPeriod(ros::Duration const&, bool)8
mrs_lib::ROSTimer::setCallback(std::function<void (ros::TimerEvent const&)> const&)0
mrs_lib::ROSTimer::stop()24
mrs_lib::ROSTimer::start()24
mrs_lib::ROSTimer::running()216
mrs_lib::ROSTimer::setPeriod(ros::Duration const&, bool)8
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Date:2024-04-17 23:52:03Functions:151883.3 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #include <mrs_lib/timer.h>
+       2             : 
+       3             : namespace mrs_lib
+       4             : {
+       5             : 
+       6             : // | ------------------------ ROSTimer ------------------------ |
+       7             : 
+       8             : /* stop() //{ */
+       9             : 
+      10          24 : void ROSTimer::stop() {
+      11             : 
+      12          48 :   std::scoped_lock lock(mutex_timer_);
+      13             : 
+      14          24 :   if (timer_) {
+      15          24 :     timer_->stop();
+      16             :   }
+      17          24 : }
+      18             : 
+      19             : //}
+      20             : 
+      21             : /* start() //{ */
+      22             : 
+      23          24 : void ROSTimer::start() {
+      24             : 
+      25          48 :   std::scoped_lock lock(mutex_timer_);
+      26             : 
+      27          24 :   if (timer_) {
+      28          24 :     timer_->start();
+      29             :   }
+      30          24 : }
+      31             : 
+      32             : //}
+      33             : 
+      34             : /* setPeriod() //{ */
+      35             : 
+      36           8 : void ROSTimer::setPeriod(const ros::Duration& duration, const bool reset) {
+      37             : 
+      38          16 :   std::scoped_lock lock(mutex_timer_);
+      39             : 
+      40           8 :   if (timer_) {
+      41           8 :     timer_->setPeriod(duration, reset);
+      42             :   }
+      43           8 : }
+      44             : 
+      45             : //}
+      46             : //
+      47             : /* setCallback() //{ */
+      48             : 
+      49           0 : void ROSTimer::setCallback([[maybe_unused]] const std::function<void(const ros::TimerEvent&)>& callback) {
+      50             : 
+      51           0 :   ROS_ERROR("[mrs_lib::ROSTimer]: setCallback(...) is not implemented for ROSTimer! Check [mrs_lib/src/timer/timer.cpp].");
+      52           0 : }
+      53             : 
+      54             : //}
+      55             : 
+      56             : /* running() //{ */
+      57             : 
+      58         216 : bool ROSTimer::running()
+      59             : {
+      60         432 :   std::scoped_lock lock(mutex_timer_);
+      61             : 
+      62         216 :   if (timer_)
+      63         216 :     return timer_->hasStarted();
+      64             :   else
+      65           0 :     return false;
+      66             : }
+      67             : 
+      68             : //}
+      69             : 
+      70             : // | ----------------------- ThreadTimer ---------------------- |
+      71             : 
+      72             : /* TheadTimer::start() //{ */
+      73             : 
+      74          24 : void ThreadTimer::start() {
+      75             : 
+      76          24 :   if (impl_) {
+      77          24 :     impl_->start();
+      78             :   }
+      79          24 : }
+      80             : 
+      81             : //}
+      82             : 
+      83             : /* ThreadTimer::stop() //{ */
+      84             : 
+      85          24 : void ThreadTimer::stop() {
+      86             : 
+      87          24 :   if (impl_) {
+      88          24 :     impl_->stop();
+      89             :   }
+      90          24 : }
+      91             : 
+      92             : //}
+      93             : 
+      94             : /* ThreadTimer::setPeriod() //{ */
+      95             : 
+      96           8 : void ThreadTimer::setPeriod(const ros::Duration& duration, [[maybe_unused]] const bool reset) {
+      97             : 
+      98           8 :   if (impl_) {
+      99           8 :     impl_->setPeriod(duration, reset);
+     100             :   }
+     101           8 : }
+     102             : 
+     103             : //}
+     104             : 
+     105             : /* ThreadTimer::setCallback() //{ */
+     106             : 
+     107           0 : void ThreadTimer::setCallback(const std::function<void(const ros::TimerEvent&)>& callback) {
+     108           0 :   if (impl_) {
+     109           0 :     impl_->setCallback(callback);
+     110             :   }
+     111           0 : }
+     112             : 
+     113             : //}
+     114             : 
+     115             : /* ThreadTimer::running() //{ */
+     116             : 
+     117         208 : bool ThreadTimer::running()
+     118             : {
+     119         208 :   if (impl_)
+     120         208 :     return impl_->running_;
+     121             :   else
+     122           0 :     return false;
+     123             : }
+     124             : 
+     125             : //}
+     126             : 
+     127             : /* ThreadTimer::Impl //{ */
+     128             : 
+     129           8 : ThreadTimer::Impl::Impl(const std::function<void(const ros::TimerEvent&)>& callback, const ros::Duration& delay_dur, const bool oneshot)
+     130           8 :   : callback_(callback), oneshot_(oneshot), delay_dur_(delay_dur)
+     131             : {
+     132           8 :   ending_  = false;
+     133           8 :   running_ = false;
+     134             : 
+     135           8 :   last_real_     = ros::Time(0);
+     136           8 :   last_expected_ = ros::Time(0);
+     137           8 :   next_expected_ = ros::Time(0);
+     138             : 
+     139           8 :   thread_ = std::thread(&ThreadTimer::Impl::threadFcn, this);
+     140           8 : }
+     141             : 
+     142           8 : ThreadTimer::Impl::~Impl()
+     143             : {
+     144             :   {
+     145             :     // signal the thread to end
+     146          16 :     std::scoped_lock lck(mutex_wakeup_, mutex_state_);
+     147           8 :     ending_ = true;
+     148           8 :     wakeup_cond_.notify_all();
+     149             :   }
+     150             :   // wait for it to die
+     151           8 :   thread_.join();
+     152           8 : }
+     153             : 
+     154          24 : void ThreadTimer::Impl::start()
+     155             : {
+     156          48 :   std::scoped_lock lck(mutex_wakeup_, mutex_state_);
+     157          24 :   if (!running_)
+     158             :   {
+     159          24 :     next_expected_ = ros::Time::now() + delay_dur_;
+     160          24 :     running_ = true;
+     161          24 :     wakeup_cond_.notify_all();
+     162             :   }
+     163          24 : }
+     164             : 
+     165          24 : void ThreadTimer::Impl::stop()
+     166             : {
+     167          48 :   std::scoped_lock lck(mutex_wakeup_, mutex_state_);
+     168          24 :   running_ = false;
+     169          24 :   wakeup_cond_.notify_all();
+     170          24 : }
+     171             : 
+     172           8 : void ThreadTimer::Impl::setPeriod(const ros::Duration& duration, [[maybe_unused]] const bool reset)
+     173             : {
+     174          16 :   std::scoped_lock lock(mutex_wakeup_, mutex_state_);
+     175           8 :   delay_dur_ = duration;
+     176             :   // gracefully handle the special case
+     177           8 :   if (duration == ros::Duration(0))
+     178           0 :     this->oneshot_  = true;
+     179           8 : }
+     180             : 
+     181           0 : void ThreadTimer::Impl::setCallback(const std::function<void(const ros::TimerEvent&)>& callback){
+     182           0 :   std::scoped_lock lock(mutex_state_);
+     183             : 
+     184           0 :   callback_ = callback;
+     185           0 : }
+     186             : 
+     187             : //}
+     188             : 
+     189             : /* ThreadTimer::breakableSleep() method //{ */
+     190         408 : bool ThreadTimer::Impl::breakableSleep(const ros::Time& until)
+     191             : {
+     192         408 :   while (ros::ok() && ros::Time::now() < until)
+     193             :   {
+     194         208 :     const std::chrono::nanoseconds dur {(until - ros::Time::now()).toNSec()};
+     195         208 :     const std::chrono::time_point<std::chrono::steady_clock> until_stl = std::chrono::steady_clock::now() + dur;
+     196         208 :     std::unique_lock lck(mutex_wakeup_);
+     197         208 :     if (!ending_ && running_)
+     198         208 :       wakeup_cond_.wait_until(lck, until_stl);
+     199             :     // check the flags while mutex_state_ is locked
+     200         208 :     if (ending_ || !running_)
+     201           8 :       return false;
+     202             :   }
+     203         200 :   return true;
+     204             : }
+     205             : //}
+     206             : 
+     207             : /* ThreadTimer::Impl::threadFcn() //{ */
+     208             : 
+     209         216 : void ThreadTimer::Impl::threadFcn()
+     210             : {
+     211         216 :   while (ros::ok() && !ending_)
+     212             :   {
+     213             :     {
+     214         216 :       std::unique_lock lck(mutex_wakeup_);
+     215             :       // if the timer is not yet started, wait for condition variable notification
+     216         216 :       if (!running_ && !ending_)
+     217          16 :         wakeup_cond_.wait(lck);
+     218             :       // The thread either got cv-notified, or running_ was already true, or it got woken up for some other reason.
+     219             :       // Check if the reason is that we should end (and end if it is).
+     220         216 :       if (ending_)
+     221           8 :         break;
+     222             :       // Check if the timer is still paused - probably was a spurious wake up (and restart the wait if it is).
+     223         208 :       if (!running_)
+     224           0 :         continue;
+     225             :     }
+     226             : 
+     227             :     // If the flow got here, the thread should attempt to wait for the specified duration.
+     228             :     // first, copy the delay we should wait for in a thread-safe manner
+     229         208 :     ros::Time next_expected;
+     230             :     {
+     231         208 :       std::scoped_lock lck(mutex_state_);
+     232         208 :       next_expected = next_expected_;
+     233             :     }
+     234         208 :     const bool interrupted = !breakableSleep(next_expected);
+     235         208 :     if (interrupted)
+     236           8 :       continue;
+     237             : 
+     238             :     {
+     239             :       // make sure the state doesn't change here
+     240         200 :       std::scoped_lock lck(mutex_state_);
+     241             :       // Again, check if everything is OK (the state may have changed while the thread was a sleeping beauty).
+     242             :       // Check if we should end (and end if it is so).
+     243         200 :       if (ending_)
+     244           0 :         break;
+     245             :       // Check if the timer is paused (and skip if it is so).
+     246         200 :       if (!running_)
+     247           0 :         continue;
+     248             : 
+     249             :       // If all is fine and dandy, actually run the callback function!
+     250             :       // if the timer is a oneshot-type, automatically pause it
+     251             :       // and do not fill out the expected fields in timer_event (we had no expectations...)
+     252         200 :       const ros::Time now = ros::Time::now();
+     253             :       // prepare the timer event
+     254         200 :       ros::TimerEvent timer_event;
+     255         200 :       if (oneshot_)
+     256             :       {
+     257           0 :         running_ = false;
+     258           0 :         timer_event.last_real        = last_real_;
+     259           0 :         timer_event.current_real     = now;
+     260             :       }
+     261             :       else
+     262             :       {
+     263         200 :         timer_event.last_expected    = last_expected_;
+     264         200 :         timer_event.last_real        = last_real_;
+     265         200 :         timer_event.current_expected = next_expected_;
+     266         200 :         timer_event.current_real     = now;
+     267             : 
+     268         200 :         last_expected_ = next_expected_;
+     269         200 :         next_expected_ = now + delay_dur_;
+     270             :       }
+     271         200 :       last_real_ = now;
+     272             :       // call the callback
+     273         200 :       callback_(timer_event);
+     274             :     }
+     275             :   }
+     276           8 : }
+     277             : 
+     278             : //}
+     279             : 
+     280             : }  // namespace mrs_lib
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mrs_lib::TransformBroadcaster::sendTransform(std::vector<geometry_msgs::TransformStamped_<std::allocator<void> >, std::allocator<geometry_msgs::TransformStamped_<std::allocator<void> > > > const&)0
mrs_lib::TransformBroadcaster::TransformBroadcaster()173
mrs_lib::TransformBroadcaster::sendTransform(geometry_msgs::TransformStamped_<std::allocator<void> > const&)1863080
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mrs_lib::TransformBroadcaster::TransformBroadcaster()173
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+
          Line data    Source code
+
+       1             : #include <mrs_lib/transform_broadcaster.h>
+       2             : 
+       3             : namespace mrs_lib
+       4             : {
+       5             : 
+       6             : /* constructor //{ */
+       7         173 : TransformBroadcaster::TransformBroadcaster() {
+       8         173 :   broadcaster_ = tf2_ros::TransformBroadcaster();
+       9         173 : }
+      10             : //}
+      11             : 
+      12             : /* sendTransform (const geometry_msgs::TransformStamped &transform) //{ */
+      13     1863080 : void TransformBroadcaster::sendTransform(const geometry_msgs::TransformStamped &transform) {
+      14     3724653 :   std::string frames_from_to = transform.header.frame_id + transform.child_frame_id;
+      15     1860069 :   if (last_messages_.count(frames_from_to) > 0) {
+      16     1861508 :     if (transform.header.stamp > last_messages_[frames_from_to]) {
+      17     1575956 :       broadcaster_.sendTransform(transform);
+      18     1578565 :       last_messages_[frames_from_to] = transform.header.stamp;
+      19             :     } else {
+      20      282223 :       ROS_WARN_ONCE("[%s]: TF_REPEATED_DATA ignoring data with redundant timestamp. Transform from frame '%s' to frame '%s'", ros::this_node::getName().c_str(),
+      21             :                     transform.header.frame_id.c_str(), transform.child_frame_id.c_str());
+      22             :     }
+      23             :   } else {
+      24        1801 :     std::pair<std::string, ros::Time> new_pair;
+      25         891 :     new_pair.first  = frames_from_to;
+      26         891 :     new_pair.second = transform.header.stamp;
+      27         891 :     broadcaster_.sendTransform(transform);
+      28         891 :     last_messages_.insert(new_pair);
+      29             :   }
+      30     1863358 : }
+      31             : //}
+      32             : 
+      33             : /* sendTransform(const std::vector<geometry_msgs::TransformStamped> &transforms) //{ */
+      34           0 : void TransformBroadcaster::sendTransform(const std::vector<geometry_msgs::TransformStamped> &transforms) {
+      35           0 :   for (auto transform : transforms) {
+      36           0 :     std::string frames_from_to = transform.header.frame_id + transform.child_frame_id;
+      37           0 :     if (last_messages_.count(frames_from_to) > 0) {
+      38           0 :       if (transform.header.stamp > last_messages_[frames_from_to]) {
+      39           0 :         broadcaster_.sendTransform(transform);
+      40           0 :         last_messages_[frames_from_to] = transform.header.stamp;
+      41             :       } else {
+      42           0 :         ROS_WARN_ONCE("[%s]: TF_REPEATED_DATA ignoring data with redundant timestamp. Transform from frame '%s' to frame '%s'",
+      43             :                       ros::this_node::getName().c_str(), transform.header.frame_id.c_str(), transform.child_frame_id.c_str());
+      44             :       }
+      45             :     } else {
+      46           0 :       std::pair<std::string, ros::Time> new_pair;
+      47           0 :       new_pair.first  = frames_from_to;
+      48           0 :       new_pair.second = transform.header.stamp;
+      49           0 :       broadcaster_.sendTransform(transform);
+      50           0 :       last_messages_.insert(new_pair);
+      51             :     }
+      52             :   }
+      53           0 : }
+      54             : //}
+      55             : 
+      56             : }  // namespace mrs_lib
+
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Function Name Sort by function nameHit count Sort by hit count
mrs_lib::Transformer::LLtoUTM(geometry_msgs::PoseStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_lib::Transformer::LLtoUTM(geometry_msgs::PointStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_lib::Transformer::LLtoUTM(geometry_msgs::Pose_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_lib::Transformer::UTMtoLL(geometry_msgs::PointStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_lib::Transformer::Transformer()0
mrs_lib::Transformer::operator=(mrs_lib::Transformer&&)0
void tf2::doTransform<cv::Point3_<double> >(cv::Point3_<double> const&, cv::Point3_<double>&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)1
mrs_lib::Transformer::getTransform(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
mrs_lib::Transformer::getTransformImpl(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
mrs_lib::Transformer::LLtoUTM(geometry_msgs::Point_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2
mrs_lib::Transformer::transformImpl(geometry_msgs::TransformStamped_<std::allocator<void> > const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)6
mrs_lib::Transformer::transformAsPoint(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)6
mrs_lib::Transformer::transformAsPoint(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)6
mrs_lib::Transformer::transformAsVector(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)6
mrs_lib::Transformer::transformAsVector(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)6
mrs_lib::Transformer::Transformer(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Duration const&)12
mrs_lib::Transformer::Transformer(ros::NodeHandle const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Duration const&)632
mrs_lib::Transformer::UTMtoLL(geometry_msgs::PoseStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1911
mrs_lib::Transformer::UTMtoLL(geometry_msgs::Pose_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1911
mrs_lib::Transformer::UTMtoLL(geometry_msgs::Point_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1913
mrs_lib::Transformer::getFramePrefix(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3832
mrs_lib::Transformer::getTransform(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)23814
mrs_lib::Transformer::transformImpl(geometry_msgs::TransformStamped_<std::allocator<void> > const&, mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)109992
mrs_lib::Transformer::setLatLon(double, double)183047
mrs_lib::Transformer::getTransformImpl(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1552058
mrs_lib::Transformer::resolveFrameImpl(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)6521417
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Current view:top level - mrs_lib/src/transformer - transformer.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:18528066.1 %
Date:2024-04-17 23:52:03Functions:202676.9 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
void tf2::doTransform<cv::Point3_<double> >(cv::Point3_<double> const&, cv::Point3_<double>&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)1
mrs_lib::Transformer::getTransform(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
mrs_lib::Transformer::getTransform(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)23814
mrs_lib::Transformer::transformImpl(geometry_msgs::TransformStamped_<std::allocator<void> > const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)6
mrs_lib::Transformer::transformImpl(geometry_msgs::TransformStamped_<std::allocator<void> > const&, mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)109992
mrs_lib::Transformer::getFramePrefix(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3832
mrs_lib::Transformer::getTransformImpl(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1
mrs_lib::Transformer::getTransformImpl(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1552058
mrs_lib::Transformer::resolveFrameImpl(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)6521417
mrs_lib::Transformer::transformAsPoint(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)6
mrs_lib::Transformer::transformAsPoint(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)6
mrs_lib::Transformer::transformAsVector(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, geometry_msgs::TransformStamped_<std::allocator<void> > const&)6
mrs_lib::Transformer::transformAsVector(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Time const&)6
mrs_lib::Transformer::LLtoUTM(geometry_msgs::PoseStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_lib::Transformer::LLtoUTM(geometry_msgs::PointStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_lib::Transformer::LLtoUTM(geometry_msgs::Pose_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_lib::Transformer::LLtoUTM(geometry_msgs::Point_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2
mrs_lib::Transformer::UTMtoLL(geometry_msgs::PoseStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1911
mrs_lib::Transformer::UTMtoLL(geometry_msgs::PointStamped_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_lib::Transformer::UTMtoLL(geometry_msgs::Pose_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1911
mrs_lib::Transformer::UTMtoLL(geometry_msgs::Point_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1913
mrs_lib::Transformer::setLatLon(double, double)183047
mrs_lib::Transformer::Transformer(ros::NodeHandle const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Duration const&)632
mrs_lib::Transformer::Transformer(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::Duration const&)12
mrs_lib::Transformer::Transformer()0
mrs_lib::Transformer::operator=(mrs_lib::Transformer&&)0
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LCOV - code coverage report
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Current view:top level - mrs_lib/src/transformer - transformer.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:18528066.1 %
Date:2024-04-17 23:52:03Functions:202676.9 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : // clang: MatousFormat
+       2             : 
+       3             : #include <mrs_lib/transformer.h>
+       4             : #include <mrs_lib/gps_conversions.h>
+       5             : #include <opencv2/core/types.hpp>
+       6             : #include <mrs_lib/geometry/conversions.h>
+       7             : #include <mutex>
+       8             : 
+       9             : using test_t = mrs_msgs::ReferenceStamped;
+      10             : /* using test_t = pcl::PointCloud<pcl::PointXYZ>; */
+      11             : template std::optional<test_t> mrs_lib::Transformer::transform<test_t>(const test_t& what, const geometry_msgs::TransformStamped& to_frame);
+      12             : template std::optional<test_t::Ptr> mrs_lib::Transformer::transform<test_t>(const test_t::Ptr& what, const geometry_msgs::TransformStamped& to_frame);
+      13             : template std::optional<test_t::Ptr> mrs_lib::Transformer::transform<test_t>(const test_t::ConstPtr& what, const geometry_msgs::TransformStamped& to_frame);
+      14             : template std::optional<test_t> mrs_lib::Transformer::transformSingle<test_t>(const test_t& what, const std::string& to_frame);
+      15             : template std::optional<test_t::Ptr> mrs_lib::Transformer::transformSingle<test_t>(const test_t::Ptr& what, const std::string& to_frame);
+      16             : template std::optional<test_t::Ptr> mrs_lib::Transformer::transformSingle<test_t>(const test_t::ConstPtr& what, const std::string& to_frame);
+      17             : 
+      18             : namespace tf2
+      19             : {
+      20             :   template <>
+      21           1 :   void doTransform(const cv::Point3d& point_in, cv::Point3d& point_out, const geometry_msgs::TransformStamped& transform)
+      22             :   {
+      23           1 :     const geometry_msgs::Point pt = mrs_lib::geometry::fromCV(point_in);
+      24           1 :     geometry_msgs::Point pt_tfd;
+      25           1 :     tf2::doTransform(pt, pt_tfd, transform);
+      26           1 :     point_out = mrs_lib::geometry::toCV(pt_tfd);
+      27           1 :   }
+      28             : }
+      29             : 
+      30             : namespace mrs_lib
+      31             : {
+      32             : 
+      33             :   // | ----------------------- Transformer ---------------------- |
+      34             : 
+      35             :   // | ------------------ user-callable methods ----------------- |
+      36             : 
+      37             :   /* Transformer() (constructors)//{ */
+      38             : 
+      39           0 :   Transformer::Transformer()
+      40             :   {
+      41           0 :   }
+      42             : 
+      43          12 :   Transformer::Transformer(const std::string& node_name, const ros::Duration& cache_time)
+      44          12 :     : initialized_(true), node_name_(node_name), tf_buffer_(std::make_unique<tf2_ros::Buffer>(cache_time)), tf_listener_ptr_(std::make_unique<tf2_ros::TransformListener>(*tf_buffer_))
+      45             :   {
+      46          12 :   }
+      47             : 
+      48         632 :   Transformer::Transformer(const ros::NodeHandle& nh, const std::string& node_name, const ros::Duration& cache_time)
+      49         632 :     : initialized_(true), node_name_(node_name), tf_buffer_(std::make_unique<tf2_ros::Buffer>(cache_time)), tf_listener_ptr_(std::make_unique<tf2_ros::TransformListener>(*tf_buffer_, nh))
+      50             :   {
+      51         632 :   }
+      52             : 
+      53           0 :   Transformer& Transformer::operator=(Transformer&& other)
+      54             :   {
+      55           0 :     std::scoped_lock lck(other.mutex_, mutex_);
+      56             : 
+      57           0 :     initialized_ = std::move(other.initialized_);
+      58           0 :     node_name_ = std::move(other.node_name_);
+      59           0 :     tf_buffer_ = std::move(other.tf_buffer_);
+      60           0 :     tf_listener_ptr_ = std::move(other.tf_listener_ptr_);
+      61             : 
+      62           0 :     default_frame_id_ = std::move(other.default_frame_id_);
+      63           0 :     prefix_ = std::move(other.prefix_);
+      64           0 :     quiet_ = std::move(other.quiet_);
+      65           0 :     lookup_timeout_ = std::move(other.lookup_timeout_);
+      66           0 :     retry_lookup_newest_ = std::move(other.retry_lookup_newest_);
+      67             : 
+      68           0 :     got_utm_zone_ = std::move(other.got_utm_zone_);
+      69           0 :     utm_zone_ = std::move(other.utm_zone_);
+      70             : 
+      71           0 :     return *this;
+      72             :   }
+      73             : 
+      74             :   //}
+      75             : 
+      76             :   /* getTransform() //{ */
+      77             : 
+      78       23814 :   std::optional<geometry_msgs::TransformStamped> Transformer::getTransform(const std::string& from_frame_raw, const std::string& to_frame_raw, const ros::Time& time_stamp)
+      79             :   {
+      80       47632 :     std::scoped_lock lck(mutex_);
+      81             : 
+      82       23818 :     if (!initialized_)
+      83             :     {
+      84           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Transformer: cannot provide transform, not initialized!", node_name_.c_str());
+      85           0 :       return std::nullopt;
+      86             :     }
+      87             : 
+      88             :     // resolve the frames
+      89       47636 :     const std::string from_frame = resolveFrameImpl(from_frame_raw);
+      90       47636 :     const std::string to_frame = resolveFrameImpl(to_frame_raw);
+      91       47636 :     const std::string latlon_frame = resolveFrameImpl(LATLON_ORIGIN);
+      92             : 
+      93       23818 :     return getTransformImpl(from_frame, to_frame, time_stamp, latlon_frame);
+      94             :   }
+      95             : 
+      96           1 :   std::optional<geometry_msgs::TransformStamped> Transformer::getTransform(const std::string& from_frame_raw, const ros::Time& from_stamp, const std::string& to_frame_raw, const ros::Time& to_stamp, const std::string& fixed_frame_raw)
+      97             :   {
+      98           2 :     std::scoped_lock lck(mutex_);
+      99             : 
+     100           1 :     if (!initialized_)
+     101             :     {
+     102           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Transformer: cannot provide transform, not initialized", node_name_.c_str());
+     103           0 :       return std::nullopt;
+     104             :     }
+     105             : 
+     106           2 :     const std::string from_frame = resolveFrameImpl(from_frame_raw);
+     107           2 :     const std::string to_frame = resolveFrameImpl(to_frame_raw);
+     108           2 :     const std::string fixed_frame = resolveFrameImpl(fixed_frame_raw);
+     109           2 :     const std::string latlon_frame = resolveFrameImpl(LATLON_ORIGIN);
+     110             : 
+     111           1 :     return getTransformImpl(from_frame, from_stamp, to_frame, to_stamp, fixed_frame, latlon_frame);
+     112             :   }
+     113             :   //}
+     114             : 
+     115             :   /* setLatLon() //{ */
+     116             : 
+     117      183047 :   void Transformer::setLatLon(const double lat, const double lon)
+     118             :   {
+     119      183047 :     std::scoped_lock lck(mutex_);
+     120             : 
+     121             :     double utm_x, utm_y;
+     122      182244 :     mrs_lib::LLtoUTM(lat, lon, utm_y, utm_x, utm_zone_.data());
+     123      182333 :     got_utm_zone_ = true;
+     124      181684 :   }
+     125             : 
+     126             :   //}
+     127             : 
+     128             :   /* transformAsVector() //{ */
+     129             : 
+     130           6 :   [[nodiscard]] std::optional<Eigen::Vector3d> Transformer::transformAsVector(const Eigen::Vector3d& what, const geometry_msgs::TransformStamped& tf)
+     131             :   {
+     132          12 :     std::scoped_lock lck(mutex_);
+     133             : 
+     134           6 :     if (!initialized_)
+     135             :     {
+     136           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Transformer: cannot transform, not initialized", node_name_.c_str());
+     137           0 :       return std::nullopt;
+     138             :     }
+     139             : 
+     140          12 :     const std::string from_frame = resolveFrameImpl(frame_from(tf));
+     141          12 :     const std::string to_frame = resolveFrameImpl(frame_to(tf));
+     142          12 :     const geometry_msgs::TransformStamped tf_resolved = create_transform(from_frame, to_frame, tf.header.stamp, tf.transform);
+     143             : 
+     144           6 :     const geometry_msgs::Vector3 vec = mrs_lib::geometry::fromEigenVec(what);
+     145           6 :     const auto tfd_vec = transformImpl(tf_resolved, vec);
+     146           6 :     if (tfd_vec.has_value())
+     147          12 :       return mrs_lib::geometry::toEigen(tfd_vec.value());
+     148             :     else
+     149           0 :       return std::nullopt;
+     150             :   }
+     151             : 
+     152           6 :   [[nodiscard]] std::optional<Eigen::Vector3d> Transformer::transformAsVector(const std::string& from_frame_raw, const Eigen::Vector3d& what, const std::string& to_frame_raw, const ros::Time& time_stamp)
+     153             :   {
+     154          12 :     std::scoped_lock lck(mutex_);
+     155             : 
+     156           6 :     if (!initialized_)
+     157             :     {
+     158           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Transformer: cannot transform, not initialized", node_name_.c_str());
+     159           0 :       return std::nullopt;
+     160             :     }
+     161             : 
+     162          12 :     const std::string from_frame = resolveFrameImpl(from_frame_raw);
+     163          12 :     const std::string to_frame = resolveFrameImpl(to_frame_raw);
+     164          12 :     const std::string latlon_frame = resolveFrameImpl(LATLON_ORIGIN);
+     165             : 
+     166             :     // get the transform
+     167          12 :     const auto tf_opt = getTransformImpl(from_frame, to_frame, time_stamp, latlon_frame);
+     168           6 :     if (!tf_opt.has_value())
+     169           0 :       return std::nullopt;
+     170           6 :     const geometry_msgs::TransformStamped& tf = tf_opt.value();
+     171             : 
+     172             :     // do the transformation
+     173          12 :     const geometry_msgs::TransformStamped tf_resolved = create_transform(from_frame, to_frame, tf.header.stamp, tf.transform);
+     174           6 :     const geometry_msgs::Vector3 vec = mrs_lib::geometry::fromEigenVec(what);
+     175           6 :     const auto tfd_vec = transformImpl(tf_resolved, vec);
+     176           6 :     if (tfd_vec.has_value())
+     177          12 :       return mrs_lib::geometry::toEigen(tfd_vec.value());
+     178             :     else
+     179           0 :       return std::nullopt;
+     180             :   }
+     181             : 
+     182             :   /* //} */
+     183             : 
+     184             :   /* transformAsPoint() //{ */
+     185             : 
+     186           6 :   [[nodiscard]] std::optional<Eigen::Vector3d> Transformer::transformAsPoint(const Eigen::Vector3d& what, const geometry_msgs::TransformStamped& tf)
+     187             :   {
+     188          12 :     std::scoped_lock lck(mutex_);
+     189             : 
+     190           6 :     if (!initialized_)
+     191             :     {
+     192           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Transformer: cannot transform, not initialized", node_name_.c_str());
+     193           0 :       return std::nullopt;
+     194             :     }
+     195             : 
+     196          12 :     const std::string from_frame = resolveFrameImpl(frame_from(tf));
+     197          12 :     const std::string to_frame = resolveFrameImpl(frame_to(tf));
+     198          12 :     const geometry_msgs::TransformStamped tf_resolved = create_transform(from_frame, to_frame, tf.header.stamp, tf.transform);
+     199             : 
+     200           6 :     geometry_msgs::Point pt;
+     201           6 :     pt.x = what.x();
+     202           6 :     pt.y = what.y();
+     203           6 :     pt.z = what.z();
+     204           6 :     const auto tfd_pt = transformImpl(tf_resolved, pt);
+     205           6 :     if (tfd_pt.has_value())
+     206          12 :       return mrs_lib::geometry::toEigen(tfd_pt.value());
+     207             :     else
+     208           0 :       return std::nullopt;
+     209             :   }
+     210             : 
+     211           6 :   [[nodiscard]] std::optional<Eigen::Vector3d> Transformer::transformAsPoint(const std::string& from_frame_raw, const Eigen::Vector3d& what, const std::string& to_frame_raw, const ros::Time& time_stamp)
+     212             :   {
+     213          12 :     std::scoped_lock lck(mutex_);
+     214             : 
+     215           6 :     if (!initialized_)
+     216             :     {
+     217           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Transformer: cannot transform, not initialized", node_name_.c_str());
+     218           0 :       return std::nullopt;
+     219             :     }
+     220             : 
+     221          12 :     const std::string from_frame = resolveFrameImpl(from_frame_raw);
+     222          12 :     const std::string to_frame = resolveFrameImpl(to_frame_raw);
+     223          12 :     const std::string latlon_frame = resolveFrameImpl(LATLON_ORIGIN);
+     224             : 
+     225             :     // get the transform
+     226          12 :     const auto tf_opt = getTransformImpl(from_frame, to_frame, time_stamp, latlon_frame);
+     227           6 :     if (!tf_opt.has_value())
+     228           0 :       return std::nullopt;
+     229           6 :     const geometry_msgs::TransformStamped& tf = tf_opt.value();
+     230             : 
+     231             :     // do the transformation
+     232          12 :     const geometry_msgs::TransformStamped tf_resolved = create_transform(from_frame, to_frame, tf.header.stamp, tf.transform);
+     233           6 :     geometry_msgs::Point pt;
+     234           6 :     pt.x = what.x();
+     235           6 :     pt.y = what.y();
+     236           6 :     pt.z = what.z();
+     237           6 :     const auto tfd_pt = transformImpl(tf_resolved, pt);
+     238           6 :     if (tfd_pt.has_value())
+     239          12 :       return mrs_lib::geometry::toEigen(tfd_pt.value());
+     240             :     else
+     241           0 :       return std::nullopt;
+     242             :   }
+     243             : 
+     244             :   /* //} */
+     245             : 
+     246             :   // | ------------- helper implementation methods -------------- |
+     247             : 
+     248             :   /* transformImpl() //{ */
+     249             : 
+     250             :   /* specialization for mrs_msgs::ReferenceStamped //{ */
+     251             :   
+     252      109992 :   std::optional<mrs_msgs::ReferenceStamped> Transformer::transformImpl(const geometry_msgs::TransformStamped& tf, const mrs_msgs::ReferenceStamped& what)
+     253             :   {
+     254             :     // create a pose message
+     255      219984 :     geometry_msgs::PoseStamped pose;
+     256      109992 :     pose.header = what.header;
+     257             :   
+     258      109992 :     pose.pose.position.x = what.reference.position.x;
+     259      109992 :     pose.pose.position.y = what.reference.position.y;
+     260      109992 :     pose.pose.position.z = what.reference.position.z;
+     261      109992 :     pose.pose.orientation = geometry::fromEigen(geometry::quaternionFromHeading(what.reference.heading));
+     262             :   
+     263             :     // try to transform the pose message
+     264      219984 :     const auto pose_opt = transformImpl(tf, pose);
+     265      109992 :     if (!pose_opt.has_value())
+     266           0 :       return std::nullopt;
+     267             :     // overwrite the pose with it's transformed value
+     268      109992 :     pose = pose_opt.value();
+     269             :   
+     270      219984 :     mrs_msgs::ReferenceStamped ret;
+     271      109992 :     ret.header = pose.header;
+     272             :   
+     273             :     // copy the new transformed data back
+     274      109992 :     ret.reference.position.x = pose.pose.position.x;
+     275      109992 :     ret.reference.position.y = pose.pose.position.y;
+     276      109992 :     ret.reference.position.z = pose.pose.position.z;
+     277      109992 :     ret.reference.heading = geometry::headingFromRot(geometry::toEigen(pose.pose.orientation));
+     278      109992 :     return ret;
+     279             :   }
+     280             :   
+     281             :   //}
+     282             : 
+     283             :   /* specialization for Eigen::Vector3d //{ */
+     284             :   
+     285           6 :   std::optional<Eigen::Vector3d> Transformer::transformImpl(const geometry_msgs::TransformStamped& tf, const Eigen::Vector3d& what)
+     286             :   {
+     287             :     // just transform it as you would a geometry_msgs::Vector3
+     288           6 :     const geometry_msgs::Vector3 as_vec = mrs_lib::geometry::fromEigenVec(what);
+     289           6 :     const auto opt = transformImpl(tf, as_vec);
+     290           6 :     if (opt.has_value())
+     291          12 :       return geometry::toEigen(opt.value());
+     292             :     else
+     293           0 :       return std::nullopt;
+     294             :   }
+     295             :   
+     296             :   //}
+     297             : 
+     298             :   //}
+     299             : 
+     300             :   /* getTransformImpl() //{ */
+     301             : 
+     302     1552058 :   std::optional<geometry_msgs::TransformStamped> Transformer::getTransformImpl(const std::string& from_frame, const std::string& to_frame, const ros::Time& time_stamp, const std::string& latlon_frame)
+     303             :   {
+     304     1552058 :     if (!initialized_)
+     305             :     {
+     306           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Transformer: cannot provide transform, not initialized!", node_name_.c_str());
+     307           0 :       return std::nullopt;
+     308             :     }
+     309             : 
+     310             :     // if any of the frames is empty, then the query is invalid, return nullopt
+     311     1552058 :     if (from_frame.empty() || to_frame.empty())
+     312             :     {
+     313           3 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Transformer: cannot transform to/from an empty frame!", node_name_.c_str());
+     314           3 :       return std::nullopt;
+     315             :     }
+     316             : 
+     317             :     // if the frames are the same, just return an identity transform
+     318     1552042 :     if (from_frame == to_frame)
+     319      349314 :       return create_transform(from_frame, to_frame, time_stamp, tf2::toMsg(tf2::Transform::getIdentity()));
+     320             : 
+     321             :     // check for a transform from/to latlon coordinates - that is a special case handled separately
+     322     1377405 :     if (from_frame == latlon_frame)
+     323             :     {
+     324             :       // find the transformation between the UTM frame and the non-latlon frame to fill the returned tf
+     325           6 :       const std::string utm_frame = getFramePrefix(from_frame) + "utm_origin";
+     326           6 :       auto tf_opt = getTransformImpl(utm_frame, to_frame, time_stamp, latlon_frame);
+     327           3 :       if (!tf_opt.has_value())
+     328           0 :         return std::nullopt;
+     329             :       // change the transformation frames to point from latlon
+     330           3 :       frame_from(*tf_opt) = from_frame;
+     331           3 :       return tf_opt;
+     332             :     }
+     333     1377399 :     else if (to_frame == latlon_frame)
+     334             :     {
+     335             :       // find the transformation between the UTM frame and the non-latlon frame to fill the returned tf
+     336        3828 :       const std::string utm_frame = getFramePrefix(to_frame) + "utm_origin";
+     337        3828 :       auto tf_opt = getTransformImpl(from_frame, utm_frame, time_stamp, latlon_frame);
+     338        1914 :       if (!tf_opt.has_value())
+     339           0 :         return std::nullopt;
+     340             :       // change the transformation frames to point to latlon
+     341        1914 :       frame_to(*tf_opt) = to_frame;
+     342        1914 :       return tf_opt;
+     343             :     }
+     344             : 
+     345     4126427 :     tf2::TransformException ex("");
+     346             :     // first try to get transform at the requested time
+     347             :     try
+     348             :     {
+     349             :       // try looking up and returning the transform
+     350     1891934 :       return tf_buffer_->lookupTransform(to_frame, from_frame, time_stamp, lookup_timeout_);
+     351             :     }
+     352     1718032 :     catch (tf2::TransformException& e)
+     353             :     {
+     354      859021 :       ex = e;
+     355             :     }
+     356             : 
+     357             :     // if that failed, try to get the newest one if requested
+     358      859011 :     if (retry_lookup_newest_)
+     359             :     {
+     360             :       try
+     361             :       {
+     362     1704837 :         return tf_buffer_->lookupTransform(to_frame, from_frame, ros::Time(0), lookup_timeout_);
+     363             :       }
+     364       26190 :       catch (tf2::TransformException& e)
+     365             :       {
+     366       13095 :         ex = e;
+     367             :       }
+     368             :     }
+     369             : 
+     370             :     // if the flow got here, we've failed to look the transform up
+     371       13125 :     if (quiet_)
+     372             :     {
+     373           0 :       ROS_DEBUG("[%s]: Transformer: Exception caught while looking up transform from \"%s\" to \"%s\": %s", node_name_.c_str(), from_frame.c_str(),
+     374             :                 to_frame.c_str(), ex.what());
+     375             :     } else
+     376             :     {
+     377       13125 :       ROS_WARN_THROTTLE(1.0, "[%s]: Transformer: Exception caught while looking up transform from \"%s\" to \"%s\": %s", node_name_.c_str(),
+     378             :                         from_frame.c_str(), to_frame.c_str(), ex.what());
+     379             :     }
+     380             : 
+     381       13126 :     return std::nullopt;
+     382             :   }
+     383             : 
+     384           1 :   std::optional<geometry_msgs::TransformStamped> Transformer::getTransformImpl(const std::string& from_frame, const ros::Time& from_stamp, const std::string& to_frame, const ros::Time& to_stamp, const std::string& fixed_frame, const std::string& latlon_frame)
+     385             :   {
+     386           1 :     if (!initialized_)
+     387             :     {
+     388           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Transformer: cannot provide transform, not initialized", node_name_.c_str());
+     389           0 :       return std::nullopt;
+     390             :     }
+     391             : 
+     392             :     // if the frames are the same, just return an identity transform
+     393           1 :     if (from_frame == to_frame)
+     394           0 :       return create_transform(from_frame, to_frame, to_stamp, tf2::toMsg(tf2::Transform::getIdentity()));
+     395             : 
+     396             :     // check for a transform from/to latlon coordinates - that is a special case handled separately
+     397           1 :     if (from_frame == latlon_frame)
+     398             :     {
+     399             :       // find the transformation between the UTM frame and the non-latlon frame to fill the returned tf
+     400           0 :       const std::string utm_frame = getFramePrefix(from_frame) + "utm_origin";
+     401           0 :       auto tf_opt = getTransformImpl(utm_frame, from_stamp, to_frame, to_stamp, fixed_frame, latlon_frame);
+     402           0 :       if (!tf_opt.has_value())
+     403           0 :         return std::nullopt;
+     404             :       // change the transformation frames to point from latlon
+     405           0 :       frame_from(*tf_opt) = from_frame;
+     406           0 :       return tf_opt;
+     407             :     }
+     408           1 :     else if (to_frame == latlon_frame)
+     409             :     {
+     410             :       // find the transformation between the UTM frame and the non-latlon frame to fill the returned tf
+     411           0 :       const std::string utm_frame = getFramePrefix(to_frame) + "utm_origin";
+     412           0 :       auto tf_opt = getTransformImpl(from_frame, from_stamp, utm_frame, to_stamp, fixed_frame, latlon_frame);
+     413           0 :       if (!tf_opt.has_value())
+     414           0 :         return std::nullopt;
+     415             :       // change the transformation frames to point to latlon
+     416           0 :       frame_to(*tf_opt) = to_frame;
+     417           0 :       return tf_opt;
+     418             :     }
+     419             : 
+     420           3 :     tf2::TransformException ex("");
+     421             :     // first try to get transform at the requested time
+     422             :     try
+     423             :     {
+     424             :       // try looking up and returning the transform
+     425           2 :       return tf_buffer_->lookupTransform(to_frame, to_stamp, from_frame, from_stamp, fixed_frame, lookup_timeout_);
+     426             :     }
+     427           0 :     catch (tf2::TransformException& e)
+     428             :     {
+     429           0 :       ex = e;
+     430             :     }
+     431             : 
+     432             :     // if that failed, try to get the newest one if requested
+     433           0 :     if (retry_lookup_newest_)
+     434             :     {
+     435             :       try
+     436             :       {
+     437           0 :         return tf_buffer_->lookupTransform(to_frame, from_frame, ros::Time(0), lookup_timeout_);
+     438             :       }
+     439           0 :       catch (tf2::TransformException& e)
+     440             :       {
+     441           0 :         ex = e;
+     442             :       }
+     443             :     }
+     444             : 
+     445             :     // if the flow got here, we've failed to look the transform up
+     446           0 :     if (quiet_)
+     447             :     {
+     448           0 :       ROS_DEBUG("[%s]: Transformer: Exception caught while looking up transform from \"%s\" to \"%s\": %s", node_name_.c_str(), from_frame.c_str(),
+     449             :                 to_frame.c_str(), ex.what());
+     450             :     } else
+     451             :     {
+     452           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: Transformer: Exception caught while looking up transform from \"%s\" to \"%s\": %s", node_name_.c_str(),
+     453             :                         from_frame.c_str(), to_frame.c_str(), ex.what());
+     454             :     }
+     455             : 
+     456           0 :     return std::nullopt;
+     457             :   }
+     458             : 
+     459             :   //}
+     460             : 
+     461             :   /* resolveFrameImpl() //{*/
+     462             : 
+     463     6521417 :   std::string Transformer::resolveFrameImpl(const std::string& frame_id)
+     464             :   {
+     465             :     // if the frame is empty, return the default frame id
+     466     6521417 :     if (frame_id.empty())
+     467        5642 :       return default_frame_id_;
+     468             : 
+     469             :     // if there is no prefix set, just return the raw frame id
+     470     6515755 :     if (prefix_.empty())
+     471     4061012 :       return frame_id;
+     472             : 
+     473             :     // if there is a default prefix set and the frame does not start with it, prefix it
+     474     2454639 :     if (frame_id.substr(0, prefix_.length()) != prefix_)
+     475     1547234 :       return prefix_ + frame_id;
+     476             : 
+     477      907555 :     return frame_id;
+     478             :   }
+     479             : 
+     480             :   //}
+     481             : 
+     482             :   /* LLtoUTM() method //{ */
+     483           2 :   geometry_msgs::Point Transformer::LLtoUTM(const geometry_msgs::Point& what, [[maybe_unused]] const std::string& prefix)
+     484             :   {
+     485             :     // convert LAT-LON to UTM
+     486           2 :     geometry_msgs::Point utm;
+     487           2 :     mrs_lib::UTM(what.x, what.y, &utm.x, &utm.y);
+     488             :     // copy the height from the input
+     489           2 :     utm.z = what.z;
+     490           2 :     return utm;
+     491             :   }
+     492             : 
+     493           0 :   geometry_msgs::PointStamped Transformer::LLtoUTM(const geometry_msgs::PointStamped& what, [[maybe_unused]] const std::string& prefix)
+     494             :   {
+     495           0 :     geometry_msgs::PointStamped ret;
+     496           0 :     ret.header.frame_id = prefix + "utm_origin";
+     497           0 :     ret.header.stamp = what.header.stamp;
+     498           0 :     ret.point = LLtoUTM(what.point, prefix);
+     499           0 :     return ret;
+     500             :   }
+     501             : 
+     502           0 :   geometry_msgs::Pose Transformer::LLtoUTM(const geometry_msgs::Pose& what, const std::string& prefix)
+     503             :   {
+     504           0 :     geometry_msgs::Pose ret;
+     505           0 :     ret.position = LLtoUTM(what.position, prefix);
+     506           0 :     ret.orientation = what.orientation;
+     507           0 :     return ret;
+     508             :   }
+     509             : 
+     510           0 :   geometry_msgs::PoseStamped Transformer::LLtoUTM(const geometry_msgs::PoseStamped& what, const std::string& prefix)
+     511             :   {
+     512           0 :     geometry_msgs::PoseStamped ret;
+     513           0 :     ret.header.frame_id = prefix + "utm_origin";
+     514           0 :     ret.header.stamp = what.header.stamp;
+     515           0 :     ret.pose = LLtoUTM(what.pose, prefix);
+     516           0 :     return ret;
+     517             :   }
+     518             :   //}
+     519             : 
+     520             :   /* UTMtoLL() method //{ */
+     521        1913 :   std::optional<geometry_msgs::Point> Transformer::UTMtoLL(const geometry_msgs::Point& what, [[maybe_unused]] const std::string& prefix)
+     522             :   {
+     523             :     // if no UTM zone was specified by the user, we don't know which one to use...
+     524        1913 :     if (!got_utm_zone_)
+     525             :     {
+     526           1 :       ROS_WARN_THROTTLE(1.0, "[%s]: cannot transform to latlong, missing UTM zone (did you call setLatLon()?)", node_name_.c_str());
+     527           1 :       return std::nullopt;
+     528             :     }
+     529             :   
+     530             :     // now apply the nonlinear transformation from UTM to LAT-LON
+     531        1912 :     geometry_msgs::Point latlon;
+     532        1912 :     mrs_lib::UTMtoLL(what.y, what.x, utm_zone_.data(), latlon.x, latlon.y);
+     533        1912 :     latlon.z = what.z;
+     534        1912 :     return latlon;
+     535             :   }
+     536             : 
+     537           0 :   std::optional<geometry_msgs::PointStamped> Transformer::UTMtoLL(const geometry_msgs::PointStamped& what, [[maybe_unused]] const std::string& prefix)
+     538             :   {
+     539           0 :     const auto opt = UTMtoLL(what.point, prefix);
+     540           0 :     if (!opt.has_value())
+     541           0 :       return std::nullopt;
+     542             : 
+     543           0 :     geometry_msgs::PointStamped ret;
+     544           0 :     ret.header.frame_id = prefix + "utm_origin";
+     545           0 :     ret.header.stamp = what.header.stamp;
+     546           0 :     ret.point = opt.value();
+     547           0 :     return ret;
+     548             :   }
+     549             : 
+     550        1911 :   std::optional<geometry_msgs::Pose> Transformer::UTMtoLL(const geometry_msgs::Pose& what, const std::string& prefix)
+     551             :   {
+     552        1911 :     const auto opt = UTMtoLL(what.position, prefix);
+     553        1911 :     if (!opt.has_value())
+     554           0 :       return std::nullopt;
+     555             : 
+     556        1911 :     geometry_msgs::Pose ret;
+     557        1911 :     ret.position = opt.value();
+     558        1911 :     ret.orientation = what.orientation;
+     559        1911 :     return ret;
+     560             :   }
+     561             : 
+     562        1911 :   std::optional<geometry_msgs::PoseStamped> Transformer::UTMtoLL(const geometry_msgs::PoseStamped& what, const std::string& prefix)
+     563             :   {
+     564        1911 :     const auto opt = UTMtoLL(what.pose, prefix);
+     565        1911 :     if (!opt.has_value())
+     566           0 :       return std::nullopt;
+     567             : 
+     568        3822 :     geometry_msgs::PoseStamped ret;
+     569        1911 :     ret.header.frame_id = prefix + "utm_origin";
+     570        1911 :     ret.header.stamp = what.header.stamp;
+     571        1911 :     ret.pose = opt.value();
+     572        1911 :     return ret;
+     573             :   }
+     574             :   //}
+     575             : 
+     576             :   /* getFramePrefix() method //{ */
+     577        3832 :   std::string Transformer::getFramePrefix(const std::string& frame_id)
+     578             :   {
+     579        3832 :     const auto firstof = frame_id.find_first_of('/');
+     580        3832 :     if (firstof == std::string::npos)
+     581           0 :       return "";
+     582             :     else
+     583        3832 :       return frame_id.substr(0, firstof+1);
+     584             :   }
+     585             :   //}
+     586             : 
+     587             : }  // namespace mrs_lib
+
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mrs_lib::AtomicScopeFlag::AtomicScopeFlag(std::atomic<bool>&)498438
mrs_lib::AtomicScopeFlag::~AtomicScopeFlag()498467
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mrs_lib::AtomicScopeFlag::~AtomicScopeFlag()498467
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Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #include <mrs_lib/utils.h>
+       2             : 
+       3             : namespace mrs_lib
+       4             : {
+       5             : 
+       6      498438 : AtomicScopeFlag::AtomicScopeFlag(std::atomic<bool>& in)
+       7      498438 :   : variable(in)
+       8             : {
+       9      498438 :   variable = true;
+      10      498461 : }
+      11             : 
+      12      996934 : AtomicScopeFlag::~AtomicScopeFlag()
+      13             : {
+      14      498467 :   variable = false;
+      15      498467 : }
+      16             : 
+      17             : }  // namespace mrs_lib
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mrs_uav_autostart::automatic_start::AutomaticStart::disarm()3
mrs_uav_autostart::automatic_start::AutomaticStart::takeoff()19
mrs_uav_autostart::automatic_start::AutomaticStart::toggleControlOutput(bool const&)25
(anonymous namespace)::ProxyExec0::ProxyExec0()31
mrs_uav_autostart::automatic_start::AutomaticStart::onInit()31
mrs_uav_autostart::automatic_start::AutomaticStart::changeState(mrs_uav_autostart::automatic_start::LandingStates_t)48
mrs_uav_autostart::automatic_start::Topic::Topic(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)63
mrs_uav_autostart::automatic_start::Topic::getTopicName[abi:cxx11]()75
mrs_uav_autostart::automatic_start::AutomaticStart::callbackGazeboSpawnerDiagnostics(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>)3107
mrs_uav_autostart::automatic_start::AutomaticStart::topicCheck()9776
mrs_uav_autostart::automatic_start::AutomaticStart::validateReference()9776
mrs_uav_autostart::automatic_start::AutomaticStart::isGazeboSimulation()9776
mrs_uav_autostart::automatic_start::AutomaticStart::preflighCheckGyro()9924
mrs_uav_autostart::automatic_start::AutomaticStart::preflighCheckHeight()9924
mrs_uav_autostart::automatic_start::AutomaticStart::preflightCheckSpeed()9924
mrs_uav_autostart::automatic_start::AutomaticStart::timerMain(ros::TimerEvent const&)18398
mrs_uav_autostart::automatic_start::Topic::getTime()39179
mrs_uav_autostart::automatic_start::Topic::updateTime()48675
mrs_uav_autostart::automatic_start::AutomaticStart::genericCallback(boost::shared_ptr<topic_tools::ShapeShifter const> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int)48679
mrs_uav_autostart::automatic_start::AutomaticStart::onInit()::{lambda(boost::shared_ptr<topic_tools::ShapeShifter const> const&)#1}::operator()(boost::shared_ptr<topic_tools::ShapeShifter const> const&) const48679
mrs_uav_autostart::automatic_start::AutomaticStart::callbackHwApiStatus(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>)119043
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+ + + diff --git a/mrs_uav_autostart/src/automatic_start.cpp.func.html b/mrs_uav_autostart/src/automatic_start.cpp.func.html new file mode 100644 index 0000000000..c0314f125f --- /dev/null +++ b/mrs_uav_autostart/src/automatic_start.cpp.func.html @@ -0,0 +1,164 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_autostart/src/automatic_start.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_autostart/src - automatic_start.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:28932588.9 %
Date:2024-04-17 23:52:03Functions:2121100.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()31
mrs_uav_autostart::automatic_start::AutomaticStart::topicCheck()9776
mrs_uav_autostart::automatic_start::AutomaticStart::changeState(mrs_uav_autostart::automatic_start::LandingStates_t)48
mrs_uav_autostart::automatic_start::AutomaticStart::genericCallback(boost::shared_ptr<topic_tools::ShapeShifter const> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int)48679
mrs_uav_autostart::automatic_start::AutomaticStart::preflighCheckGyro()9924
mrs_uav_autostart::automatic_start::AutomaticStart::validateReference()9776
mrs_uav_autostart::automatic_start::AutomaticStart::isGazeboSimulation()9776
mrs_uav_autostart::automatic_start::AutomaticStart::callbackHwApiStatus(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>)119043
mrs_uav_autostart::automatic_start::AutomaticStart::preflighCheckHeight()9924
mrs_uav_autostart::automatic_start::AutomaticStart::preflightCheckSpeed()9924
mrs_uav_autostart::automatic_start::AutomaticStart::toggleControlOutput(bool const&)25
mrs_uav_autostart::automatic_start::AutomaticStart::callbackGazeboSpawnerDiagnostics(boost::shared_ptr<mrs_msgs::GazeboSpawnerDiagnostics_<std::allocator<void> > const>)3107
mrs_uav_autostart::automatic_start::AutomaticStart::disarm()3
mrs_uav_autostart::automatic_start::AutomaticStart::onInit()31
mrs_uav_autostart::automatic_start::AutomaticStart::takeoff()19
mrs_uav_autostart::automatic_start::AutomaticStart::timerMain(ros::TimerEvent const&)18398
mrs_uav_autostart::automatic_start::Topic::updateTime()48675
mrs_uav_autostart::automatic_start::Topic::getTopicName[abi:cxx11]()75
mrs_uav_autostart::automatic_start::Topic::getTime()39179
mrs_uav_autostart::automatic_start::Topic::Topic(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)63
mrs_uav_autostart::automatic_start::AutomaticStart::onInit()::{lambda(boost::shared_ptr<topic_tools::ShapeShifter const> const&)#1}::operator()(boost::shared_ptr<topic_tools::ShapeShifter const> const&) const48679
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Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_uav_autostart/src - automatic_start.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:28932588.9 %
Date:2024-04-17 23:52:03Functions:2121100.0 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <nodelet/nodelet.h>
+       5             : 
+       6             : #include <mrs_lib/param_loader.h>
+       7             : #include <mrs_lib/mutex.h>
+       8             : #include <mrs_lib/subscribe_handler.h>
+       9             : #include <mrs_lib/publisher_handler.h>
+      10             : 
+      11             : #include <std_msgs/Bool.h>
+      12             : 
+      13             : #include <std_srvs/Trigger.h>
+      14             : #include <std_srvs/SetBool.h>
+      15             : 
+      16             : #include <mrs_msgs/ControlManagerDiagnostics.h>
+      17             : #include <mrs_msgs/UavManagerDiagnostics.h>
+      18             : #include <mrs_msgs/ValidateReference.h>
+      19             : #include <mrs_msgs/GazeboSpawnerDiagnostics.h>
+      20             : #include <mrs_msgs/HwApiStatus.h>
+      21             : #include <mrs_msgs/HwApiCapabilities.h>
+      22             : #include <mrs_msgs/EstimationDiagnostics.h>
+      23             : 
+      24             : #include <sensor_msgs/Range.h>
+      25             : #include <sensor_msgs/Imu.h>
+      26             : 
+      27             : #include <topic_tools/shape_shifter.h>
+      28             : 
+      29             : //}
+      30             : 
+      31             : namespace mrs_uav_autostart
+      32             : {
+      33             : 
+      34             : namespace automatic_start
+      35             : {
+      36             : 
+      37             : /* class Topic //{ */
+      38             : 
+      39             : class Topic {
+      40             : private:
+      41             :   std::string topic_name_;
+      42             :   ros::Time   last_time_;
+      43             : 
+      44             : public:
+      45          63 :   Topic(std::string topic_name) : topic_name_(topic_name) {
+      46          63 :     last_time_ = ros::Time::UNINITIALIZED;
+      47          63 :   }
+      48             : 
+      49       48675 :   void updateTime(void) {
+      50       48675 :     last_time_ = ros::Time::now();
+      51       48681 :   }
+      52             : 
+      53       39179 :   ros::Time getTime(void) {
+      54       39179 :     return last_time_;
+      55             :   }
+      56             : 
+      57          75 :   std::string getTopicName(void) {
+      58          75 :     return topic_name_;
+      59             :   }
+      60             : };
+      61             : 
+      62             : //}
+      63             : 
+      64             : /* class AutomaticStart //{ */
+      65             : 
+      66             : // state machine
+      67             : typedef enum
+      68             : {
+      69             :   STATE_IDLE,
+      70             :   STATE_TAKEOFF,
+      71             :   STATE_FINISHED
+      72             : } LandingStates_t;
+      73             : 
+      74             : const char* state_names[3] = {"IDLING", "TAKEOFF", "FINISHED"};
+      75             : 
+      76             : class AutomaticStart : public nodelet::Nodelet {
+      77             : 
+      78             : public:
+      79             :   virtual void onInit();
+      80             : 
+      81             : private:
+      82             :   ros::NodeHandle   nh_;
+      83             :   std::atomic<bool> is_initialized_ = false;
+      84             : 
+      85             :   std::string _uav_name_;
+      86             :   bool        _simulation_;
+      87             : 
+      88             :   // | --------------------- service clients -------------------- |
+      89             : 
+      90             :   ros::ServiceClient service_client_toggle_control_output_;
+      91             :   ros::ServiceClient service_client_arm_;
+      92             :   ros::ServiceClient service_client_takeoff_;
+      93             :   ros::ServiceClient service_client_validate_reference_;
+      94             : 
+      95             :   // | ----------------------- subscribers ---------------------- |
+      96             : 
+      97             :   mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics>     sh_estimation_diag_;
+      98             :   mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus>               sh_hw_api_status_;
+      99             :   mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities>         sh_hw_api_capabilities_;
+     100             :   mrs_lib::SubscribeHandler<sensor_msgs::Range>                  sh_distance_sensor_;
+     101             :   mrs_lib::SubscribeHandler<sensor_msgs::Imu>                    sh_imu_;
+     102             :   mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics> sh_control_manager_diag_;
+     103             :   mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics>     sh_uav_manager_diag_;
+     104             :   mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics>  sh_gazebo_spawner_diag_;
+     105             : 
+     106             :   // | ----------------------- publishers ----------------------- |
+     107             : 
+     108             :   mrs_lib::PublisherHandler<std_msgs::Bool> ph_can_takeoff_;
+     109             : 
+     110             :   // | ----------------------- main timer ----------------------- |
+     111             : 
+     112             :   ros::Timer timer_main_;
+     113             :   void       timerMain(const ros::TimerEvent& event);
+     114             :   double     _main_timer_rate_;
+     115             : 
+     116             :   // | ------------------- hw api diagnostics ------------------- |
+     117             : 
+     118             :   void              callbackHwApiStatus(const mrs_msgs::HwApiStatus::ConstPtr msg);
+     119             :   std::atomic<bool> hw_api_connected_ = false;
+     120             :   std::mutex        mutex_hw_api_status_;
+     121             : 
+     122             :   // | --------------- Gazebo spawner diagnostics --------------- |
+     123             : 
+     124             :   void                               callbackGazeboSpawnerDiagnostics(const mrs_msgs::GazeboSpawnerDiagnostics::ConstPtr msg);
+     125             :   std::atomic<bool>                  got_gazebo_spawner_diagnostics = false;
+     126             :   mrs_msgs::GazeboSpawnerDiagnostics gazebo_spawner_diagnostics_;
+     127             :   std::mutex                         mutex_gazebo_spawner_diagnostics_;
+     128             : 
+     129             :   // | ----------------- arm and offboard check ----------------- |
+     130             : 
+     131             :   ros::Time armed_time_;
+     132             :   bool      armed_ = false;
+     133             : 
+     134             :   ros::Time offboard_time_;
+     135             :   bool      offboard_ = false;
+     136             : 
+     137             :   bool we_toggled_output_ = false;
+     138             : 
+     139             :   // | ------------------------ routines ------------------------ |
+     140             : 
+     141             :   bool takeoff();
+     142             : 
+     143             :   bool validateReference();
+     144             : 
+     145             :   bool toggleControlOutput(const bool& value);
+     146             :   bool disarm();
+     147             : 
+     148             :   bool isGazeboSimulation(void);
+     149             :   bool topicCheck(void);
+     150             :   bool preflightCheckSpeed(void);
+     151             :   bool preflighCheckHeight(void);
+     152             :   bool preflighCheckGyro(void);
+     153             : 
+     154             :   bool is_gazebo_simulation_ = false;
+     155             : 
+     156             :   // | ---------------------- other params ---------------------- |
+     157             : 
+     158             :   std::string _body_frame_name_;
+     159             :   double      _pre_takeoff_sleep_;
+     160             :   bool        _handle_takeoff_ = false;
+     161             :   double      _safety_timeout_;
+     162             :   double      _control_output_timeout_;
+     163             : 
+     164             :   // | ---------------------- state machine --------------------- |
+     165             : 
+     166             :   uint current_state = STATE_IDLE;
+     167             :   void changeState(LandingStates_t new_state);
+     168             : 
+     169             :   // | --------------------- preflight check -------------------- |
+     170             : 
+     171             :   double _preflight_check_time_window_;
+     172             : 
+     173             :   // | ------------------ preflight speed check ----------------- |
+     174             : 
+     175             :   bool      _speed_check_enabled_ = false;
+     176             :   double    _speed_check_max_speed_;
+     177             :   ros::Time speed_check_violated_time_;
+     178             : 
+     179             :   // | ----------------- preflight height check ----------------- |
+     180             : 
+     181             :   bool      _height_check_enabled_ = false;
+     182             :   double    _height_check_max_height_;
+     183             :   ros::Time height_check_violated_time_;
+     184             : 
+     185             :   // | ----------------- preflight gyro check ----------------- |
+     186             : 
+     187             :   bool      _gyro_check_enabled_ = false;
+     188             :   double    _gyro_check_max_rate_;
+     189             :   ros::Time gyro_check_violated_time_;
+     190             : 
+     191             :   // | ---------------- generic topic subscribers --------------- |
+     192             : 
+     193             :   bool                     _topic_check_enabled_ = false;
+     194             :   double                   _topic_check_timeout_;
+     195             :   std::vector<std::string> _topic_check_topic_names_;
+     196             : 
+     197             :   std::vector<Topic>           topic_check_topics_;
+     198             :   std::vector<ros::Subscriber> generic_subscriber_vec_;
+     199             : 
+     200             :   // generic callback, for any topic, to monitor its rate
+     201             :   void genericCallback(const topic_tools::ShapeShifter::ConstPtr& msg, const std::string& topic_name, const int id);
+     202             : };
+     203             : 
+     204             : //}
+     205             : 
+     206             : /* onInit() //{ */
+     207             : 
+     208          31 : void AutomaticStart::onInit() {
+     209             : 
+     210          31 :   nh_ = nodelet::Nodelet::getMTPrivateNodeHandle();
+     211             : 
+     212          31 :   ros::Time::waitForValid();
+     213             : 
+     214          31 :   armed_      = false;
+     215          31 :   armed_time_ = ros::Time(0);
+     216             : 
+     217          31 :   offboard_      = false;
+     218          31 :   offboard_time_ = ros::Time(0);
+     219             : 
+     220          62 :   mrs_lib::ParamLoader param_loader(nh_, "AutomaticStart");
+     221             : 
+     222          62 :   std::string custom_config_path;
+     223             : 
+     224          31 :   param_loader.loadParam("custom_config", custom_config_path);
+     225             : 
+     226          31 :   if (custom_config_path != "") {
+     227           5 :     param_loader.addYamlFile(custom_config_path);
+     228             :   }
+     229             : 
+     230          31 :   param_loader.addYamlFileFromParam("config_private");
+     231          31 :   param_loader.addYamlFileFromParam("config_public");
+     232             : 
+     233          31 :   param_loader.loadParam("uav_name", _uav_name_);
+     234          31 :   param_loader.loadParam("simulation", _simulation_);
+     235             : 
+     236          31 :   param_loader.loadParam("main_timer_rate", _main_timer_rate_);
+     237          31 :   param_loader.loadParam("body_frame_name", _body_frame_name_);
+     238          31 :   param_loader.loadParam("control_output_timeout", _control_output_timeout_);
+     239             : 
+     240          31 :   param_loader.loadParam("safety_timeout", _safety_timeout_);
+     241          31 :   param_loader.loadParam("pre_takeoff_sleep", _pre_takeoff_sleep_);
+     242             : 
+     243          31 :   param_loader.loadParam("handle_takeoff", _handle_takeoff_);
+     244             : 
+     245          31 :   param_loader.loadParam("preflight_check/time_window", _preflight_check_time_window_);
+     246             : 
+     247          31 :   param_loader.loadParam("preflight_check/speed_check/enabled", _speed_check_enabled_);
+     248          31 :   param_loader.loadParam("preflight_check/speed_check/max_speed", _speed_check_max_speed_);
+     249             : 
+     250          31 :   param_loader.loadParam("preflight_check/height_check/enabled", _height_check_enabled_);
+     251          31 :   param_loader.loadParam("preflight_check/height_check/max_height", _height_check_max_height_);
+     252             : 
+     253          31 :   param_loader.loadParam("preflight_check/gyro_check/enabled", _gyro_check_enabled_);
+     254          31 :   param_loader.loadParam("preflight_check/gyro_check/max_rate", _gyro_check_max_rate_);
+     255             : 
+     256          31 :   param_loader.loadParam("preflight_check/topic_check/enabled", _topic_check_enabled_);
+     257          31 :   param_loader.loadParam("preflight_check/topic_check/timeout", _topic_check_timeout_);
+     258          31 :   param_loader.loadParam("preflight_check/topic_check/topics", _topic_check_topic_names_);
+     259             : 
+     260          31 :   if (!param_loader.loadedSuccessfully()) {
+     261           0 :     ROS_ERROR("[AutomaticStart]: Could not load all parameters!");
+     262           0 :     ros::shutdown();
+     263             :   }
+     264             : 
+     265             :   // | ----------------------- subscribers ---------------------- |
+     266             : 
+     267          62 :   mrs_lib::SubscribeHandlerOptions shopts;
+     268          31 :   shopts.nh                 = nh_;
+     269          31 :   shopts.node_name          = "AutomaticStart";
+     270          31 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     271          31 :   shopts.threadsafe         = true;
+     272          31 :   shopts.autostart          = true;
+     273          31 :   shopts.queue_size         = 10;
+     274          31 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     275             : 
+     276          31 :   sh_estimation_diag_      = mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics>(shopts, "estimation_diag_in");
+     277          31 :   sh_hw_api_status_        = mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus>(shopts, "hw_api_status_in", &AutomaticStart::callbackHwApiStatus, this);
+     278          31 :   sh_hw_api_capabilities_  = mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities>(shopts, "hw_api_capabilities_in");
+     279          31 :   sh_distance_sensor_      = mrs_lib::SubscribeHandler<sensor_msgs::Range>(shopts, "distance_sensor_in");
+     280          31 :   sh_imu_                  = mrs_lib::SubscribeHandler<sensor_msgs::Imu>(shopts, "imu_in");
+     281          31 :   sh_control_manager_diag_ = mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics>(shopts, "control_manager_diagnostics_in");
+     282          31 :   sh_uav_manager_diag_     = mrs_lib::SubscribeHandler<mrs_msgs::UavManagerDiagnostics>(shopts, "uav_manager_diagnostics_in");
+     283          62 :   sh_gazebo_spawner_diag_  = mrs_lib::SubscribeHandler<mrs_msgs::GazeboSpawnerDiagnostics>(shopts, "gazebo_spawner_diagnostics_in",
+     284          31 :                                                                                           &AutomaticStart::callbackGazeboSpawnerDiagnostics, this);
+     285             : 
+     286             :   // | ----------------------- publishers ----------------------- |
+     287             : 
+     288          31 :   ph_can_takeoff_ = mrs_lib::PublisherHandler<std_msgs::Bool>(nh_, "can_takeoff_out");
+     289             : 
+     290             :   // | --------------------- service clients -------------------- |
+     291             : 
+     292          31 :   service_client_takeoff_               = nh_.serviceClient<std_srvs::Trigger>("takeoff_out");
+     293          31 :   service_client_toggle_control_output_ = nh_.serviceClient<std_srvs::SetBool>("toggle_control_output_out");
+     294          31 :   service_client_arm_                   = nh_.serviceClient<std_srvs::SetBool>("arm_out");
+     295             : 
+     296          31 :   service_client_validate_reference_ = nh_.serviceClient<mrs_msgs::ValidateReference>("validate_reference_out");
+     297             : 
+     298             :   // | ------------------ setup generic topics ------------------ |
+     299             : 
+     300          31 :   if (_topic_check_enabled_) {
+     301             : 
+     302          62 :     boost::function<void(const topic_tools::ShapeShifter::ConstPtr&)> callback;
+     303             : 
+     304          94 :     for (int i = 0; i < int(_topic_check_topic_names_.size()); i++) {
+     305             : 
+     306         126 :       std::string topic_name = _topic_check_topic_names_[i];
+     307             : 
+     308          63 :       if (topic_name.at(0) != '/') {
+     309          63 :         topic_name = "/" + _uav_name_ + "/" + topic_name;
+     310             :       }
+     311             : 
+     312         126 :       Topic tmp_topic(topic_name);
+     313          63 :       topic_check_topics_.push_back(tmp_topic);
+     314             : 
+     315          63 :       int id = i;  // id to identify which topic called the generic callback
+     316             : 
+     317       48742 :       callback                       = [this, topic_name, id](const topic_tools::ShapeShifter::ConstPtr& msg) -> void { genericCallback(msg, topic_name, id); };
+     318         189 :       ros::Subscriber tmp_subscriber = nh_.subscribe(topic_name, 1, callback);
+     319             : 
+     320          63 :       generic_subscriber_vec_.push_back(tmp_subscriber);
+     321             :     }
+     322             :   }
+     323             : 
+     324             :   // | ------------------------- timers ------------------------- |
+     325             : 
+     326          31 :   timer_main_ = nh_.createTimer(ros::Rate(_main_timer_rate_), &AutomaticStart::timerMain, this);
+     327             : 
+     328             :   // | --------------------- finish the init -------------------- |
+     329             : 
+     330          31 :   is_initialized_ = true;
+     331             : 
+     332          31 :   ROS_INFO_THROTTLE(1.0, "[AutomaticStart]: initialized");
+     333          31 : }
+     334             : 
+     335             : //}
+     336             : 
+     337             : // --------------------------------------------------------------
+     338             : // |                          callbacks                         |
+     339             : // --------------------------------------------------------------
+     340             : 
+     341             : /* genericCallback() //{ */
+     342             : 
+     343       48679 : void AutomaticStart::genericCallback([[maybe_unused]] const topic_tools::ShapeShifter::ConstPtr& msg, [[maybe_unused]] const std::string& topic_name,
+     344             :                                      const int id) {
+     345       48679 :   topic_check_topics_[id].updateTime();
+     346       48681 : }
+     347             : 
+     348             : //}
+     349             : 
+     350             : /* callbackHwApiDiag() //{ */
+     351             : 
+     352      119043 : void AutomaticStart::callbackHwApiStatus(const mrs_msgs::HwApiStatus::ConstPtr msg) {
+     353             : 
+     354      119043 :   if (!is_initialized_) {
+     355           0 :     return;
+     356             :   }
+     357             : 
+     358      119043 :   ROS_INFO_ONCE("[AutomaticStart]: getting HW API diagnostics");
+     359             : 
+     360      238086 :   std::scoped_lock lock(mutex_hw_api_status_);
+     361             : 
+     362             :   // check armed_ state
+     363      119043 :   if (armed_ == false) {
+     364             : 
+     365             :     // if armed_ state changed to true, please "start the clock"
+     366       66822 :     if (msg->armed) {
+     367             : 
+     368          30 :       armed_      = true;
+     369          30 :       armed_time_ = ros::Time::now();
+     370             :     }
+     371             : 
+     372             :     // if we were armed_ previously
+     373       52221 :   } else if (armed_ == true) {
+     374             : 
+     375             :     // and we are not really now
+     376       52221 :     if (!msg->armed) {
+     377             : 
+     378           4 :       armed_ = false;
+     379             :     }
+     380             :   }
+     381             : 
+     382             :   // check offboard_ state
+     383      119043 :   if (offboard_ == false) {
+     384             : 
+     385             :     // if offboard_ state changed to true, please "start the clock"
+     386       77189 :     if (msg->offboard) {
+     387             : 
+     388          22 :       offboard_      = true;
+     389          22 :       offboard_time_ = ros::Time::now();
+     390             :     }
+     391             : 
+     392             :     // if we were in offboard_ previously
+     393       41854 :   } else if (offboard_ == true) {
+     394             : 
+     395             :     // and we are not really now
+     396       41854 :     if (!msg->offboard) {
+     397             : 
+     398           0 :       offboard_ = false;
+     399             :     }
+     400             :   }
+     401             : 
+     402      119043 :   if (msg->connected) {
+     403      115874 :     hw_api_connected_ = true;
+     404             :   }
+     405             : }
+     406             : 
+     407             : //}
+     408             : 
+     409             : /* callbackGazeboSpawnerDiagnostics() //{ */
+     410             : 
+     411        3107 : void AutomaticStart::callbackGazeboSpawnerDiagnostics(const mrs_msgs::GazeboSpawnerDiagnostics::ConstPtr msg) {
+     412             : 
+     413        3107 :   if (!is_initialized_) {
+     414           0 :     return;
+     415             :   }
+     416             : 
+     417        3107 :   ROS_INFO_ONCE("[AutomaticStart]: getting spawner diagnostics");
+     418             : 
+     419             :   {
+     420        6214 :     std::scoped_lock lock(mutex_gazebo_spawner_diagnostics_);
+     421             : 
+     422        3107 :     gazebo_spawner_diagnostics_ = *msg;
+     423             : 
+     424        3107 :     got_gazebo_spawner_diagnostics = true;
+     425             :   }
+     426             : }
+     427             : 
+     428             : //}
+     429             : 
+     430             : // --------------------------------------------------------------
+     431             : // |                           timers                           |
+     432             : // --------------------------------------------------------------
+     433             : 
+     434             : /* timerMain() //{ */
+     435             : 
+     436       18398 : void AutomaticStart::timerMain([[maybe_unused]] const ros::TimerEvent& event) {
+     437             : 
+     438       18398 :   if (!is_initialized_) {
+     439        5769 :     return;
+     440             :   }
+     441             : 
+     442       18398 :   bool got_uav_manager_diag     = sh_uav_manager_diag_.hasMsg();
+     443       18398 :   bool got_control_manager_diag = sh_control_manager_diag_.hasMsg();
+     444       18398 :   bool got_estimation_diag      = sh_estimation_diag_.hasMsg();
+     445       18398 :   bool got_hw_api               = sh_hw_api_status_.hasMsg() && sh_hw_api_capabilities_.hasMsg() && hw_api_connected_;
+     446             : 
+     447       18398 :   if (!got_control_manager_diag || !got_hw_api || !got_uav_manager_diag || !got_estimation_diag) {
+     448        5621 :     ROS_WARN_THROTTLE(5.0, "[AutomaticStart]: waiting for data: ControlManager=%s, UavManager=%s, HW Api=%s, EstimationManager=%s",
+     449             :                       got_control_manager_diag ? "true" : "FALSE", got_uav_manager_diag ? "true" : "FALSE", got_hw_api ? "true" : "FALSE",
+     450             :                       got_estimation_diag ? "true" : "FALSE");
+     451        5621 :     return;
+     452             :   }
+     453             : 
+     454       12777 :   auto [armed, offboard, armed_time, offboard_time] = mrs_lib::get_mutexed(mutex_hw_api_status_, armed_, offboard_, armed_time_, offboard_time_);
+     455       12777 :   auto control_manager_diagnostics                  = sh_control_manager_diag_.getMsg();
+     456             : 
+     457       12777 :   switch (current_state) {
+     458             : 
+     459        9924 :     case STATE_IDLE: {
+     460             : 
+     461             :       // | --------------------- preflight check -------------------- |
+     462             : 
+     463        9924 :       bool speed_valid  = preflightCheckSpeed();
+     464        9924 :       bool height_valid = preflighCheckHeight();
+     465        9924 :       bool gyros_valid  = preflighCheckGyro();
+     466             : 
+     467        9924 :       bool possibly_in_the_air = !speed_valid || !height_valid || !gyros_valid;
+     468             : 
+     469        9924 :       if (possibly_in_the_air) {
+     470             : 
+     471         148 :         ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: preflight check failed, the UAV is possibly in the air");
+     472             : 
+     473         148 :         if (armed) {
+     474             : 
+     475           6 :           ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: -- the UAV is also armed!! finishing to prevent unwanted system activation");
+     476             : 
+     477           6 :           if (we_toggled_output_) {
+     478             : 
+     479           1 :             bool res = toggleControlOutput(false);
+     480             : 
+     481           1 :             if (!res) {
+     482           0 :               ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: could not set control output OFF");
+     483             :             }
+     484             :           }
+     485             : 
+     486           6 :           changeState(STATE_FINISHED);
+     487             : 
+     488         148 :           return;
+     489             :         }
+     490             : 
+     491         142 :         return;
+     492             :       }
+     493             : 
+     494             :       // | -------------------- ready to takeoff -------------------- |
+     495             : 
+     496        9776 :       bool control_output_enabled = sh_control_manager_diag_.getMsg()->output_enabled;
+     497             : 
+     498        9776 :       std_msgs::Bool can_takeoff_msg;
+     499        9776 :       can_takeoff_msg.data = false;
+     500             : 
+     501             :       // | -------------------- preflight checks -------------------- |
+     502             : 
+     503        9776 :       bool position_valid = validateReference();
+     504        9776 :       bool got_topics     = topicCheck();
+     505             : 
+     506        9776 :       bool can_takeoff = got_topics && position_valid;
+     507             : 
+     508             :       // | ---------------------------------------------------------- |
+     509             : 
+     510        9776 :       can_takeoff_msg.data = can_takeoff;
+     511        9776 :       ph_can_takeoff_.publish(can_takeoff_msg);
+     512             : 
+     513        9776 :       if (armed && !control_output_enabled) {
+     514             : 
+     515         116 :         if (can_takeoff) {
+     516             : 
+     517          24 :           bool res = toggleControlOutput(true);
+     518             : 
+     519          24 :           if (!res) {
+     520           0 :             ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: could not set control output ON");
+     521             :           } else {
+     522          24 :             we_toggled_output_ = true;
+     523             :           }
+     524             :         }
+     525             : 
+     526         116 :         double time_from_arming = (ros::Time::now() - armed_time).toSec();
+     527             : 
+     528         116 :         if (armed_time != ros::Time::UNINITIALIZED && time_from_arming > _control_output_timeout_) {
+     529             : 
+     530           3 :           ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: could not set control output ON for %.2f secs, disarming", _control_output_timeout_);
+     531           3 :           disarm();
+     532           3 :           changeState(STATE_FINISHED);
+     533             :         }
+     534             :       }
+     535             : 
+     536        9776 :       if (_simulation_ && isGazeboSimulation()) {
+     537             : 
+     538        6050 :         std::scoped_lock lock(mutex_gazebo_spawner_diagnostics_);
+     539             : 
+     540        6050 :         if (got_gazebo_spawner_diagnostics) {
+     541             : 
+     542        6050 :           if (!gazebo_spawner_diagnostics_.spawn_called || gazebo_spawner_diagnostics_.processing) {
+     543           0 :             ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: (simulation) waiting for spawner to finish spawning UAVs");
+     544           0 :             return;
+     545             :           }
+     546             : 
+     547             :         } else {
+     548             : 
+     549           0 :           ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: (simulation) missing spawner diagnostics");
+     550           0 :           return;
+     551             :         }
+     552             :       }
+     553             : 
+     554             :       // when armed and in offboard, takeoff
+     555        9776 :       if (armed && offboard && control_output_enabled) {
+     556             : 
+     557        3265 :         ros::Duration armed_time_diff    = ros::Time::now() - armed_time;
+     558        3265 :         ros::Duration offboard_time_diff = ros::Time::now() - offboard_time;
+     559             : 
+     560        3265 :         if (armed_time_diff > ros::Duration(_safety_timeout_) && offboard_time_diff > ros::Duration(_safety_timeout_)) {
+     561             : 
+     562          20 :           if (_handle_takeoff_) {
+     563          19 :             changeState(STATE_TAKEOFF);
+     564             :           } else {
+     565           1 :             changeState(STATE_FINISHED);
+     566             :           }
+     567             : 
+     568             :         } else {
+     569             : 
+     570        3245 :           double min = (armed_time_diff < offboard_time_diff) ? armed_time_diff.toSec() : offboard_time_diff.toSec();
+     571             : 
+     572        3245 :           ROS_WARN_THROTTLE(1.0, "taking off in %.0f", (_safety_timeout_ - min));
+     573             :         }
+     574             :       }
+     575             : 
+     576        9776 :       break;
+     577             :     }
+     578             : 
+     579        2824 :     case STATE_TAKEOFF: {
+     580             : 
+     581             :       // if takeoff finished
+     582        2824 :       if (control_manager_diagnostics->flying_normally) {
+     583             : 
+     584          19 :         ROS_INFO_THROTTLE(1.0, "[AutomaticStart]: takeoff finished");
+     585             : 
+     586          19 :         changeState(STATE_FINISHED);
+     587             : 
+     588             :       } else {
+     589             : 
+     590        2805 :         ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: waiting for the takeoff to finish");
+     591             :       }
+     592             : 
+     593        2824 :       break;
+     594             :     }
+     595             : 
+     596          29 :     case STATE_FINISHED: {
+     597             : 
+     598          29 :       ROS_INFO_THROTTLE(1.0, "[AutomaticStart]: finished");
+     599          29 :       ros::requestShutdown();
+     600          29 :       break;
+     601             :     }
+     602             :   }
+     603             : }
+     604             : 
+     605             : //}
+     606             : 
+     607             : // --------------------------------------------------------------
+     608             : // |                          routines                          |
+     609             : // --------------------------------------------------------------
+     610             : 
+     611             : /* changeState() //{ */
+     612             : 
+     613          48 : void AutomaticStart::changeState(LandingStates_t new_state) {
+     614             : 
+     615          48 :   ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: switching states %s -> %s", state_names[current_state], state_names[new_state]);
+     616             : 
+     617          48 :   switch (new_state) {
+     618             : 
+     619           0 :     case STATE_IDLE: {
+     620             : 
+     621           0 :       break;
+     622             :     }
+     623             : 
+     624          19 :     case STATE_TAKEOFF: {
+     625             : 
+     626          19 :       if (_pre_takeoff_sleep_ > 1.0) {
+     627           0 :         ROS_INFO("[AutomaticStart]: sleeping for %.2f secs before takeoff", _pre_takeoff_sleep_);
+     628           0 :         ros::Duration(_pre_takeoff_sleep_).sleep();
+     629             :       }
+     630             : 
+     631          19 :       bool res = takeoff();
+     632             : 
+     633          19 :       if (!res) {
+     634             : 
+     635           0 :         current_state = STATE_FINISHED;
+     636             : 
+     637           0 :         return;
+     638             :       }
+     639             : 
+     640          19 :       break;
+     641             :     }
+     642             : 
+     643          29 :     case STATE_FINISHED: {
+     644             : 
+     645          29 :       break;
+     646             :     }
+     647             : 
+     648             :     break;
+     649             :   }
+     650             : 
+     651          48 :   current_state = new_state;
+     652             : }
+     653             : 
+     654             : //}
+     655             : 
+     656             : /* takeoff() //{ */
+     657             : 
+     658          19 : bool AutomaticStart::takeoff() {
+     659             : 
+     660          19 :   ROS_INFO_THROTTLE(1.0, "[AutomaticStart]: taking off");
+     661             : 
+     662          38 :   std_srvs::Trigger srv;
+     663             : 
+     664          19 :   bool res = service_client_takeoff_.call(srv);
+     665             : 
+     666          19 :   if (res) {
+     667             : 
+     668          19 :     if (srv.response.success) {
+     669             : 
+     670          19 :       return true;
+     671             : 
+     672             :     } else {
+     673             : 
+     674           0 :       ROS_ERROR_THROTTLE(1.0, "[AutomaticStart]: taking off failed: %s", srv.response.message.c_str());
+     675             :     }
+     676             : 
+     677             :   } else {
+     678             : 
+     679           0 :     ROS_ERROR_THROTTLE(1.0, "[AutomaticStart]: service call for taking off failed");
+     680             :   }
+     681             : 
+     682           0 :   return false;
+     683             : }
+     684             : 
+     685             : //}
+     686             : 
+     687             : /* validateReference() //{ */
+     688             : 
+     689        9776 : bool AutomaticStart::validateReference() {
+     690             : 
+     691       19552 :   mrs_msgs::ValidateReference srv_out;
+     692             : 
+     693        9776 :   srv_out.request.reference.header.frame_id = _body_frame_name_;
+     694             : 
+     695        9776 :   bool res = service_client_validate_reference_.call(srv_out);
+     696             : 
+     697        9776 :   if (res) {
+     698             : 
+     699        9775 :     if (srv_out.response.success) {
+     700             : 
+     701        9700 :       ROS_INFO_THROTTLE(1.0, "[AutomaticStart]: current position is valid");
+     702        9700 :       return true;
+     703             : 
+     704             :     } else {
+     705             : 
+     706          75 :       ROS_ERROR_THROTTLE(1.0, "[AutomaticStart]: current position is not valid (safety area, bumper)!");
+     707          75 :       return false;
+     708             :     }
+     709             : 
+     710             :   } else {
+     711             : 
+     712           1 :     ROS_ERROR_THROTTLE(1.0, "[AutomaticStart]: current position could not be validated");
+     713           1 :     return false;
+     714             :   }
+     715             : }
+     716             : 
+     717             : //}
+     718             : 
+     719             : /* toggleControlOutput() //{ */
+     720             : 
+     721          25 : bool AutomaticStart::toggleControlOutput(const bool& value) {
+     722             : 
+     723          25 :   ROS_INFO_THROTTLE(1.0, "[AutomaticStart]: setting control output %s", value ? "ON" : "OFF");
+     724             : 
+     725          50 :   std_srvs::SetBool srv;
+     726          25 :   srv.request.data = value;
+     727             : 
+     728          25 :   bool res = service_client_toggle_control_output_.call(srv);
+     729             : 
+     730          25 :   if (res) {
+     731             : 
+     732          25 :     if (srv.response.success) {
+     733             : 
+     734          25 :       return true;
+     735             : 
+     736             :     } else {
+     737             : 
+     738           0 :       ROS_ERROR_THROTTLE(1.0, "[AutomaticStart]: setting of control output failed: %s", srv.response.message.c_str());
+     739             :     }
+     740             : 
+     741             :   } else {
+     742             : 
+     743           0 :     ROS_ERROR_THROTTLE(1.0, "[AutomaticStart]: service call for toggling control output failed");
+     744             :   }
+     745             : 
+     746           0 :   return false;
+     747             : }
+     748             : 
+     749             : //}
+     750             : 
+     751             : /* disarm() //{ */
+     752             : 
+     753           3 : bool AutomaticStart::disarm() {
+     754             : 
+     755           3 :   if (!hw_api_connected_) {
+     756             : 
+     757           0 :     ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: cannot disarm, missing HW API status!");
+     758             : 
+     759           0 :     return false;
+     760             :   }
+     761             : 
+     762           3 :   auto [armed, offboard, armed_time, offboard_time] = mrs_lib::get_mutexed(mutex_hw_api_status_, armed_, offboard_, armed_time_, offboard_time_);
+     763             : 
+     764           3 :   if (offboard) {
+     765             : 
+     766           1 :     ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: cannot disarm, already in offboard mode!");
+     767             : 
+     768           1 :     return false;
+     769             :   }
+     770             : 
+     771           2 :   ROS_INFO_THROTTLE(1.0, "[AutomaticStart]: disarming");
+     772             : 
+     773           4 :   std_srvs::SetBool srv;
+     774           2 :   srv.request.data = false;
+     775             : 
+     776           2 :   bool res = service_client_arm_.call(srv);
+     777             : 
+     778           2 :   if (res) {
+     779             : 
+     780           2 :     if (srv.response.success) {
+     781             : 
+     782           2 :       return true;
+     783             : 
+     784             :     } else {
+     785             : 
+     786           0 :       ROS_ERROR_THROTTLE(1.0, "[AutomaticStart]: disarming failed");
+     787             :     }
+     788             : 
+     789             :   } else {
+     790             : 
+     791           0 :     ROS_ERROR_THROTTLE(1.0, "[AutomaticStart]: service call for disarming failed");
+     792             :   }
+     793             : 
+     794           0 :   return false;
+     795             : }
+     796             : 
+     797             : //}
+     798             : 
+     799             : /* isGazeboSimulation() //{ */
+     800             : 
+     801        9776 : bool AutomaticStart::isGazeboSimulation(void) {
+     802             : 
+     803        9776 :   if (is_gazebo_simulation_) {
+     804        6041 :     return true;
+     805             :   }
+     806             : 
+     807        7470 :   ros::V_string node_list;
+     808        3735 :   ros::master::getNodes(node_list);
+     809             : 
+     810       52167 :   for (auto& node : node_list) {
+     811       48441 :     if (node.find("mrs_drone_spawner") != std::string::npos) {
+     812           9 :       ROS_INFO("[AutomaticStart]: MRS Gazebo Simulation detected");
+     813           9 :       is_gazebo_simulation_ = true;
+     814           9 :       return true;
+     815             :     }
+     816             :   }
+     817             : 
+     818        3726 :   return false;
+     819             : }
+     820             : 
+     821             : //}
+     822             : 
+     823             : /* topicCheck() //{ */
+     824             : 
+     825        9776 : bool AutomaticStart::topicCheck(void) {
+     826             : 
+     827        9776 :   bool got_topics = true;
+     828             : 
+     829        9776 :   std::stringstream missing_topics;
+     830             : 
+     831        9776 :   if (_topic_check_enabled_) {
+     832             : 
+     833       29403 :     for (int i = 0; i < int(topic_check_topics_.size()); i++) {
+     834             : 
+     835       39179 :       if (topic_check_topics_[i].getTime() == ros::Time::UNINITIALIZED ||
+     836       39179 :           (ros::Time::now() - topic_check_topics_[i].getTime()) > ros::Duration(_topic_check_timeout_)) {
+     837             : 
+     838          75 :         missing_topics << std::endl << "\t" << topic_check_topics_[i].getTopicName();
+     839          75 :         got_topics = false;
+     840             :       }
+     841             :     }
+     842             :   }
+     843             : 
+     844        9776 :   if (!got_topics) {
+     845          75 :     ROS_WARN_STREAM_THROTTLE(1.0, "[AutomaticStart]: missing data on topics: " << missing_topics.str());
+     846             :   }
+     847             : 
+     848       19552 :   return got_topics;
+     849             : }
+     850             : 
+     851             : //}
+     852             : 
+     853             : // | -------- preflight cheks for detecting flyign UAV -------- |
+     854             : 
+     855             : /* preflightCheckSpeed() //{ */
+     856             : 
+     857        9924 : bool AutomaticStart::preflightCheckSpeed(void) {
+     858             : 
+     859        9924 :   if (!_speed_check_enabled_) {
+     860           0 :     return true;
+     861             :   }
+     862             : 
+     863       19848 :   auto estimation_diag = sh_estimation_diag_.getMsg();
+     864             : 
+     865        9924 :   double speed = std::hypot(estimation_diag->velocity.linear.x, estimation_diag->velocity.linear.y, estimation_diag->velocity.linear.z);
+     866             : 
+     867        9924 :   if (speed > _speed_check_max_speed_) {
+     868           0 :     speed_check_violated_time_ = ros::Time::now();
+     869           0 :     ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: the estimated speed (%.2f ms^-2) is over the limit (%.2f ms^-2)", speed, _speed_check_max_speed_);
+     870             :   }
+     871             : 
+     872        9924 :   if (speed_check_violated_time_ != ros::Time::UNINITIALIZED &&
+     873        9924 :       (ros::Time::now() - speed_check_violated_time_) < ros::Duration(_preflight_check_time_window_)) {
+     874           0 :     return false;
+     875             :   } else {
+     876        9924 :     return true;
+     877             :   }
+     878             : }
+     879             : 
+     880             : //}
+     881             : 
+     882             : /* preflighCheckHeight() //{ */
+     883             : 
+     884        9924 : bool AutomaticStart::preflighCheckHeight(void) {
+     885             : 
+     886        9924 :   if (!_height_check_enabled_) {
+     887         241 :     return true;
+     888             :   }
+     889             : 
+     890             :   // | ----------------- is the check possible? ----------------- |
+     891             : 
+     892       19366 :   auto capabilities = sh_hw_api_capabilities_.getMsg();
+     893             : 
+     894        9683 :   if (!capabilities->produces_distance_sensor) {
+     895           0 :     return true;
+     896             :   }
+     897             : 
+     898             :   // | -------------------- do we have data? -------------------- |
+     899             : 
+     900        9683 :   if (!sh_distance_sensor_.hasMsg()) {
+     901         669 :     return true;
+     902             :   }
+     903             : 
+     904        9014 :   double height = sh_distance_sensor_.getMsg()->range;
+     905             : 
+     906        9014 :   if (height > _height_check_max_height_) {
+     907         147 :     height_check_violated_time_ = ros::Time::now();
+     908         147 :     ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: the height (%.2f m) is over the limit (%.2f m)", height, _height_check_max_height_);
+     909             :   }
+     910             : 
+     911        9161 :   if (height_check_violated_time_ != ros::Time::UNINITIALIZED &&
+     912        9161 :       (ros::Time::now() - height_check_violated_time_) < ros::Duration(_preflight_check_time_window_)) {
+     913         147 :     return false;
+     914             :   } else {
+     915        8867 :     return true;
+     916             :   }
+     917             : }
+     918             : 
+     919             : //}
+     920             : 
+     921             : /* preflighCheckGyro() //{ */
+     922             : 
+     923        9924 : bool AutomaticStart::preflighCheckGyro(void) {
+     924             : 
+     925        9924 :   if (!_gyro_check_enabled_) {
+     926           0 :     return true;
+     927             :   }
+     928             : 
+     929             :   // | ----------------- is the check possible? ----------------- |
+     930             : 
+     931       19848 :   auto capabilities = sh_hw_api_capabilities_.getMsg();
+     932             : 
+     933        9924 :   if (!capabilities->produces_imu) {
+     934           0 :     return true;
+     935             :   }
+     936             : 
+     937             :   // | -------------------- do we have data? -------------------- |
+     938             : 
+     939        9924 :   if (!sh_imu_.hasMsg()) {
+     940           0 :     return true;
+     941             :   }
+     942             : 
+     943        9924 :   auto gyros = sh_imu_.getMsg()->angular_velocity;
+     944             : 
+     945        9924 :   if (abs(gyros.x) > _gyro_check_max_rate_ || abs(gyros.y) > _gyro_check_max_rate_ || abs(gyros.z) > _gyro_check_max_rate_) {
+     946           1 :     gyro_check_violated_time_ = ros::Time::now();
+     947           1 :     ROS_WARN_THROTTLE(1.0, "[AutomaticStart]: the angular velocity ([%.2f, %.2f, %.2f] rad/s) is over the limit (%.2f rad/s)", gyros.x, gyros.y, gyros.z,
+     948             :                       _gyro_check_max_rate_);
+     949             :   }
+     950             : 
+     951        9924 :   if (gyro_check_violated_time_ != ros::Time::UNINITIALIZED && (ros::Time::now() - gyro_check_violated_time_) < ros::Duration(_preflight_check_time_window_)) {
+     952           1 :     return false;
+     953             :   } else {
+     954        9923 :     return true;
+     955             :   }
+     956             : }
+     957             : 
+     958             : //}
+     959             : 
+     960             : }  // namespace automatic_start
+     961             : 
+     962             : }  // namespace mrs_uav_autostart
+     963             : 
+     964             : #include <pluginlib/class_list_macros.h>
+     965          31 : PLUGINLIB_EXPORT_CLASS(mrs_uav_autostart::automatic_start::AutomaticStart, nodelet::Nodelet)
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mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)2
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mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)4
mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)10
mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)35
mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)39
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Test:MRS UAV System - Test coverage reportLines:242596.0 %
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mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&)3
mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)35
mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&)2
mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)4
mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)39
mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&)3
mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&)2
mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)10
mrs_uav_controllers::common::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)2
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Current view:top level - mrs_uav_controllers/include - common.h (source / functions)HitTotalCoverage
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Date:2024-04-17 23:52:03Functions:99100.0 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #ifndef MRS_UAV_CONTROLLERS_COMMON_H
+       2             : #define MRS_UAV_CONTROLLERS_COMMON_H
+       3             : 
+       4             : #include <eigen3/Eigen/Eigen>
+       5             : #include <mrs_uav_managers/control_manager/common_handlers.h>
+       6             : #include <mrs_uav_managers/controller.h>
+       7             : #include <mrs_lib/attitude_converter.h>
+       8             : 
+       9             : namespace mrs_uav_controllers
+      10             : {
+      11             : 
+      12             : namespace common
+      13             : {
+      14             : 
+      15             : enum CONTROL_OUTPUT
+      16             : {
+      17             :   ACTUATORS_CMD,
+      18             :   CONTROL_GROUP,
+      19             :   ATTITUDE_RATE,
+      20             :   ATTITUDE,
+      21             :   ACCELERATION_HDG_RATE,
+      22             :   ACCELERATION_HDG,
+      23             :   VELOCITY_HDG_RATE,
+      24             :   VELOCITY_HDG,
+      25             :   POSITION
+      26             : };
+      27             : 
+      28             : Eigen::Vector3d orientationError(const Eigen::Matrix3d& R, const Eigen::Matrix3d& Rd);
+      29             : 
+      30             : std::optional<Eigen::Vector3d> sanitizeDesiredForce(const Eigen::Vector3d& desired_force, const double& tilt_over_limit, const double& tilt_saturation,
+      31             :                                                     const std::string& node_name);
+      32             : 
+      33             : Eigen::Matrix3d so3transform(const Eigen::Vector3d& body_z, const ::Eigen::Vector3d& heading, const bool& preserve_heading);
+      34             : 
+      35             : std::optional<CONTROL_OUTPUT> getLowestOuput(const mrs_uav_managers::control_manager::ControlOutputModalities_t& outputs);
+      36             : 
+      37             : std::optional<CONTROL_OUTPUT> getHighestOuput(const mrs_uav_managers::control_manager::ControlOutputModalities_t& outputs);
+      38             : 
+      39             : std::optional<mrs_msgs::HwApiAttitudeRateCmd> attitudeController(const mrs_msgs::UavState& uav_state, const mrs_msgs::HwApiAttitudeCmd& reference,
+      40             :                                                                  const Eigen::Vector3d& ff_rate, const Eigen::Vector3d& rate_saturation,
+      41             :                                                                  const Eigen::Vector3d& gains, const bool& parasitic_heading_rate_compensation);
+      42             : 
+      43             : std::optional<mrs_msgs::HwApiControlGroupCmd> attitudeRateController(const mrs_msgs::UavState& uav_state, const mrs_msgs::HwApiAttitudeRateCmd& reference,
+      44             :                                                                      const Eigen::Vector3d& gains);
+      45             : 
+      46             : 
+      47             : mrs_msgs::HwApiActuatorCmd actuatorMixer(const mrs_msgs::HwApiControlGroupCmd& ctrl_group_cmd, const Eigen::MatrixXd& mixer);
+      48             : 
+      49             : /* throttle extraction //{ */
+      50             : 
+      51             : std::optional<double> extractThrottle(const mrs_uav_managers::Controller::ControlOutput& control_output);
+      52             : 
+      53             : struct HwApiCmdExtractThrottleVisitor
+      54             : {
+      55           3 :   std::optional<double> operator()(const mrs_msgs::HwApiActuatorCmd& msg) {
+      56             : 
+      57           3 :     double throttle = 0;
+      58             : 
+      59           3 :     if (msg.motors.size() == 0) {
+      60           0 :       return std::nullopt;
+      61             :     }
+      62             : 
+      63           3 :     throttle = 0;
+      64             : 
+      65          15 :     for (size_t i = 0; i < msg.motors.size(); i++) {
+      66          12 :       throttle += msg.motors[i];
+      67             :     };
+      68             : 
+      69           3 :     throttle /= msg.motors.size();
+      70             : 
+      71           3 :     return throttle;
+      72             :   }
+      73           3 :   std::optional<double> operator()(const mrs_msgs::HwApiControlGroupCmd& msg) {
+      74           3 :     return msg.throttle;
+      75             :   }
+      76          35 :   std::optional<double> operator()(const mrs_msgs::HwApiAttitudeCmd& msg) {
+      77          35 :     return msg.throttle;
+      78             :   }
+      79          39 :   std::optional<double> operator()(const mrs_msgs::HwApiAttitudeRateCmd& msg) {
+      80          39 :     return msg.throttle;
+      81             :   }
+      82           2 :   std::optional<double> operator()([[maybe_unused]] const mrs_msgs::HwApiAccelerationHdgRateCmd& msg) {
+      83           2 :     return std::nullopt;
+      84             :   }
+      85           2 :   std::optional<double> operator()([[maybe_unused]] const mrs_msgs::HwApiAccelerationHdgCmd& msg) {
+      86           2 :     return std::nullopt;
+      87             :   }
+      88          10 :   std::optional<double> operator()([[maybe_unused]] const mrs_msgs::HwApiVelocityHdgRateCmd& msg) {
+      89          10 :     return std::nullopt;
+      90             :   }
+      91           4 :   std::optional<double> operator()([[maybe_unused]] const mrs_msgs::HwApiVelocityHdgCmd& msg) {
+      92           4 :     return std::nullopt;
+      93             :   }
+      94           2 :   std::optional<double> operator()([[maybe_unused]] const mrs_msgs::HwApiPositionCmd& msg) {
+      95           2 :     return std::nullopt;
+      96             :   }
+      97             : };
+      98             : 
+      99             : //}
+     100             : 
+     101             : }  // namespace common
+     102             : 
+     103             : }  // namespace mrs_uav_controllers
+     104             : 
+     105             : #endif  // MRS_UAV_CONTROLLERS_COMMON_H
+
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          Line data    Source code
+
+       1             : #ifndef PID_H
+       2             : #define PID_H
+       3             : 
+       4             : #include <math.h>
+       5             : 
+       6             : namespace mrs_uav_controllers
+       7             : {
+       8             : 
+       9             : class PIDController {
+      10             : 
+      11             : private:
+      12             :   // | ----------------------- parameters ----------------------- |
+      13             : 
+      14             :   // gains
+      15             :   double _kp_ = 0;  // proportional gain
+      16             :   double _kd_ = 0;  // derivative gain
+      17             :   double _ki_ = 0;  // integral gain
+      18             : 
+      19             :   // we remember the last control error, to calculate the difference
+      20             :   double last_error_ = 0;
+      21             :   double integral_   = 0;
+      22             : 
+      23             :   double saturation = -1;
+      24             :   double antiwindup = -1;
+      25             : 
+      26             : public:
+      27             :   PIDController();
+      28             : 
+      29             :   void setParams(const double &kp, const double &kd, const double &ki, const double &saturation, const double &antiwindup);
+      30             : 
+      31             :   void setSaturation(const double saturation = -1);
+      32             : 
+      33             :   void reset(void);
+      34             : 
+      35             :   double update(const double &error, const double &dt);
+      36             : };
+      37             : 
+      38             : // --------------------------------------------------------------
+      39             : // |                       implementation                       |
+      40             : // --------------------------------------------------------------
+      41             : 
+      42        1092 : PIDController::PIDController() {
+      43             : 
+      44        1092 :   this->reset();
+      45        1092 : }
+      46             : 
+      47        1092 : void PIDController::setParams(const double &kp, const double &kd, const double &ki, const double &saturation, const double &antiwindup) {
+      48             : 
+      49        1092 :   this->_kp_       = kp;
+      50        1092 :   this->_kd_       = kd;
+      51        1092 :   this->_ki_       = ki;
+      52        1092 :   this->saturation = saturation;
+      53        1092 :   this->antiwindup = antiwindup;
+      54        1092 : }
+      55             : 
+      56       12894 : void PIDController::setSaturation(const double saturation) {
+      57             : 
+      58       12894 :   this->saturation = saturation;
+      59       12894 : }
+      60             : 
+      61        1092 : void PIDController::reset(void) {
+      62             : 
+      63        1092 :   this->last_error_ = 0;
+      64        1092 :   this->integral_   = 0;
+      65        1092 : }
+      66             : 
+      67       12894 : double PIDController::update(const double &error, const double &dt) {
+      68             : 
+      69             :   // calculate the control error difference
+      70       12894 :   double difference = (error - last_error_) / dt;
+      71       12894 :   last_error_       = error;
+      72             : 
+      73       12894 :   double p_component = _kp_ * error;       // proportional feedback
+      74       12894 :   double d_component = _kd_ * difference;  // derivative feedback
+      75       12894 :   double i_component = _ki_ * integral_;   // derivative feedback
+      76             : 
+      77       12894 :   double sum = p_component + d_component + i_component;
+      78             : 
+      79       12894 :   if (saturation > 0) {
+      80       12894 :     if (sum >= saturation) {
+      81          28 :       sum = saturation;
+      82       12866 :     } else if (sum <= -saturation) {
+      83         107 :       sum = -saturation;
+      84             :     }
+      85             :   }
+      86             : 
+      87       12894 :   if (antiwindup > 0) {
+      88       12894 :     if (std::abs(sum) < antiwindup) {
+      89             :       // add to the integral
+      90       12493 :       integral_ += error * dt;
+      91             :     }
+      92             :   }
+      93             : 
+      94             :   // return the summ of the components
+      95       12894 :   return sum;
+      96             : }
+      97             : 
+      98             : }  // namespace mrs_uav_controllers
+      99             : 
+     100             : #endif  // PID_H
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LCOV - code coverage report
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Current view:top level - mrs_uav_controllers/src - common.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13515984.9 %
Date:2024-04-17 23:52:03Functions:99100.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_controllers::common::extractThrottle(mrs_uav_managers::Controller::ControlOutput const&)221
mrs_uav_controllers::common::actuatorMixer(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1> const&)3790
mrs_uav_controllers::common::attitudeRateController(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)7595
mrs_uav_controllers::common::getHighestOuput(mrs_uav_managers::control_manager::ControlOutputModalities_t const&)10476
mrs_uav_controllers::common::so3transform(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, bool const&)77763
mrs_uav_controllers::common::sanitizeDesiredForce(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double const&, double const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)77763
mrs_uav_controllers::common::orientationError(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&)79709
mrs_uav_controllers::common::attitudeController(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, bool const&)79709
mrs_uav_controllers::common::getLowestOuput(mrs_uav_managers::control_manager::ControlOutputModalities_t const&)83424
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Generated by: LCOV version 1.14
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Current view:top level - mrs_uav_controllers/src - common.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13515984.9 %
Date:2024-04-17 23:52:03Functions:99100.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_controllers::common::so3transform(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, bool const&)77763
mrs_uav_controllers::common::actuatorMixer(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&, Eigen::Matrix<double, -1, -1, 0, -1, -1> const&)3790
mrs_uav_controllers::common::getLowestOuput(mrs_uav_managers::control_manager::ControlOutputModalities_t const&)83424
mrs_uav_controllers::common::extractThrottle(mrs_uav_managers::Controller::ControlOutput const&)221
mrs_uav_controllers::common::getHighestOuput(mrs_uav_managers::control_manager::ControlOutputModalities_t const&)10476
mrs_uav_controllers::common::orientationError(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&, Eigen::Matrix<double, 3, 3, 0, 3, 3> const&)79709
mrs_uav_controllers::common::attitudeController(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, bool const&)79709
mrs_uav_controllers::common::sanitizeDesiredForce(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double const&, double const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)77763
mrs_uav_controllers::common::attitudeRateController(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)7595
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LCOV - code coverage report
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Current view:top level - mrs_uav_controllers/src - common.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13515984.9 %
Date:2024-04-17 23:52:03Functions:99100.0 %
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+
          Line data    Source code
+
+       1             : #include <common.h>
+       2             : 
+       3             : namespace mrs_uav_controllers
+       4             : {
+       5             : 
+       6             : namespace common
+       7             : {
+       8             : 
+       9             : /* orientationError() //{ */
+      10             : 
+      11       79709 : Eigen::Vector3d orientationError(const Eigen::Matrix3d& R, const Eigen::Matrix3d& Rd) {
+      12             : 
+      13             :   // orientation error
+      14       79709 :   Eigen::Matrix3d R_error = 0.5 * (Rd.transpose() * R - R.transpose() * Rd);
+      15             : 
+      16             :   // vectorize the orientation error
+      17             :   // clang-format off
+      18       79709 :     Eigen::Vector3d R_error_vec;
+      19       79709 :     R_error_vec << (R_error(1, 2) - R_error(2, 1)) / 2.0,
+      20       79709 :                    (R_error(2, 0) - R_error(0, 2)) / 2.0,
+      21       79709 :                    (R_error(0, 1) - R_error(1, 0)) / 2.0;
+      22             :   // clang-format on
+      23             : 
+      24      159418 :   return R_error_vec;
+      25             : }
+      26             : 
+      27             : //}
+      28             : 
+      29             : /* sanitizeDesiredForce() //{ */
+      30             : 
+      31       77763 : std::optional<Eigen::Vector3d> sanitizeDesiredForce(const Eigen::Vector3d& input, const double& tilt_safety_limit, const double& tilt_saturation,
+      32             :                                                     const std::string& node_name) {
+      33             : 
+      34             :   // calculate the force in spherical coordinates
+      35       77763 :   double theta = acos(input[2]);
+      36       77763 :   double phi   = atan2(input[1], input[0]);
+      37             : 
+      38             :   // check for the failsafe limit
+      39       77763 :   if (!std::isfinite(theta)) {
+      40           0 :     ROS_ERROR("[%s]: sanitizeDesiredForce(): NaN detected in variable 'theta', returning empty command", node_name.c_str());
+      41           0 :     return {};
+      42             :   }
+      43             : 
+      44       77763 :   if (tilt_safety_limit > 1e-3 && std::abs(theta) > tilt_safety_limit) {
+      45             : 
+      46           0 :     ROS_ERROR("[%s]: the produced tilt angle (%.2f deg) would be over the failsafe limit (%.2f deg), returning null", node_name.c_str(), (180.0 / M_PI) * theta,
+      47             :               (180.0 / M_PI) * tilt_safety_limit);
+      48           0 :     ROS_ERROR_STREAM("[" << node_name << "]: f = [" << input.transpose() << "]");
+      49             : 
+      50           0 :     return {};
+      51             :   }
+      52             : 
+      53             :   // saturate the angle
+      54             : 
+      55       77763 :   if (tilt_saturation > 1e-3 && std::abs(theta) > tilt_saturation) {
+      56           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: tilt is being saturated, desired: %.2f deg, saturated %.2f deg", node_name.c_str(), (theta / M_PI) * 180.0,
+      57             :                       (tilt_saturation / M_PI) * 180.0);
+      58           0 :     theta = tilt_saturation;
+      59             :   }
+      60             : 
+      61             :   // reconstruct the force vector back out of the spherical coordinates
+      62       77763 :   Eigen::Vector3d output(sin(theta) * cos(phi), sin(theta) * sin(phi), cos(theta));
+      63             : 
+      64       77763 :   return {output};
+      65             : }
+      66             : 
+      67             : //}
+      68             : 
+      69             : /* so3transform() //{ */
+      70             : 
+      71       77763 : Eigen::Matrix3d so3transform(const Eigen::Vector3d& body_z, const ::Eigen::Vector3d& heading, const bool& preserve_heading) {
+      72             : 
+      73       77763 :   Eigen::Vector3d body_z_normed = body_z.normalized();
+      74             : 
+      75       77763 :   Eigen::Matrix3d Rd;
+      76             : 
+      77       77763 :   if (preserve_heading) {
+      78             : 
+      79       23028 :     ROS_DEBUG_THROTTLE(1.0, "[SO3Transform]: using Baca's method");
+      80             : 
+      81             :     // | ------------------------- body z ------------------------- |
+      82       23028 :     Rd.col(2) = body_z_normed;
+      83             : 
+      84             :     // | ------------------------- body x ------------------------- |
+      85             : 
+      86             :     // construct the oblique projection
+      87       23028 :     Eigen::Matrix3d projector_body_z_compl = (Eigen::Matrix3d::Identity(3, 3) - body_z_normed * body_z_normed.transpose());
+      88             : 
+      89             :     // create a basis of the body-z complement subspace
+      90       46056 :     Eigen::MatrixXd A = Eigen::MatrixXd(3, 2);
+      91       23028 :     A.col(0)          = projector_body_z_compl.col(0);
+      92       23028 :     A.col(1)          = projector_body_z_compl.col(1);
+      93             : 
+      94             :     // create the basis of the projection null-space complement
+      95       46056 :     Eigen::MatrixXd B = Eigen::MatrixXd(3, 2);
+      96       23028 :     B.col(0)          = Eigen::Vector3d(1, 0, 0);
+      97       23028 :     B.col(1)          = Eigen::Vector3d(0, 1, 0);
+      98             : 
+      99             :     // oblique projector to <range_basis>
+     100       46056 :     Eigen::MatrixXd Bt_A               = B.transpose() * A;
+     101       46056 :     Eigen::MatrixXd Bt_A_pseudoinverse = ((Bt_A.transpose() * Bt_A).inverse()) * Bt_A.transpose();
+     102       23028 :     Eigen::MatrixXd oblique_projector  = A * Bt_A_pseudoinverse * B.transpose();
+     103             : 
+     104       23028 :     Rd.col(0) = oblique_projector * heading;
+     105       23028 :     Rd.col(0).normalize();
+     106             : 
+     107             :     // | ------------------------- body y ------------------------- |
+     108             : 
+     109       23028 :     Rd.col(1) = Rd.col(2).cross(Rd.col(0));
+     110       23028 :     Rd.col(1).normalize();
+     111             : 
+     112             :   } else {
+     113             : 
+     114       54735 :     ROS_DEBUG_THROTTLE(1.0, "[SO3Transform]: using Lee's method");
+     115             : 
+     116       54735 :     Rd.col(2) = body_z_normed;
+     117       54735 :     Rd.col(1) = Rd.col(2).cross(heading);
+     118       54735 :     Rd.col(1).normalize();
+     119       54735 :     Rd.col(0) = Rd.col(1).cross(Rd.col(2));
+     120       54735 :     Rd.col(0).normalize();
+     121             :   }
+     122             : 
+     123      155526 :   return Rd;
+     124             : }
+     125             : 
+     126             : //}
+     127             : 
+     128             : /* getLowestOutput() //{ */
+     129             : 
+     130       83424 : std::optional<CONTROL_OUTPUT> getLowestOuput(const mrs_uav_managers::control_manager::ControlOutputModalities_t& outputs) {
+     131             : 
+     132       83424 :   if (outputs.actuators) {
+     133        2397 :     return ACTUATORS_CMD;
+     134             :   }
+     135             : 
+     136       81027 :   if (outputs.control_group) {
+     137        2412 :     return CONTROL_GROUP;
+     138             :   }
+     139             : 
+     140       78615 :   if (outputs.attitude_rate) {
+     141       70721 :     return ATTITUDE_RATE;
+     142             :   }
+     143             : 
+     144        7894 :   if (outputs.attitude) {
+     145        2233 :     return ATTITUDE;
+     146             :   }
+     147             : 
+     148        5661 :   if (outputs.acceleration_hdg_rate) {
+     149         946 :     return ACCELERATION_HDG_RATE;
+     150             :   }
+     151             : 
+     152        4715 :   if (outputs.acceleration_hdg) {
+     153         959 :     return ACCELERATION_HDG;
+     154             :   }
+     155             : 
+     156        3756 :   if (outputs.velocity_hdg_rate) {
+     157        2102 :     return VELOCITY_HDG_RATE;
+     158             :   }
+     159             : 
+     160        1654 :   if (outputs.velocity_hdg) {
+     161        1180 :     return VELOCITY_HDG;
+     162             :   }
+     163             : 
+     164         474 :   if (outputs.position) {
+     165         474 :     return POSITION;
+     166             :   }
+     167             : 
+     168           0 :   return {};
+     169             : }
+     170             : 
+     171             : //}
+     172             : 
+     173             : /* getHighestOutput() //{ */
+     174             : 
+     175       10476 : std::optional<CONTROL_OUTPUT> getHighestOuput(const mrs_uav_managers::control_manager::ControlOutputModalities_t& outputs) {
+     176             : 
+     177       10476 :   if (outputs.position) {
+     178           3 :     return POSITION;
+     179             :   }
+     180             : 
+     181       10473 :   if (outputs.velocity_hdg) {
+     182           5 :     return VELOCITY_HDG;
+     183             :   }
+     184             : 
+     185       10468 :   if (outputs.velocity_hdg_rate) {
+     186         487 :     return VELOCITY_HDG_RATE;
+     187             :   }
+     188             : 
+     189        9981 :   if (outputs.acceleration_hdg) {
+     190           5 :     return ACCELERATION_HDG;
+     191             :   }
+     192             : 
+     193        9976 :   if (outputs.acceleration_hdg_rate) {
+     194           5 :     return ACCELERATION_HDG_RATE;
+     195             :   }
+     196             : 
+     197        9971 :   if (outputs.attitude) {
+     198        5725 :     return ATTITUDE;
+     199             :   }
+     200             : 
+     201        4246 :   if (outputs.attitude_rate) {
+     202        1422 :     return ATTITUDE_RATE;
+     203             :   }
+     204             : 
+     205        2824 :   if (outputs.control_group) {
+     206        1412 :     return CONTROL_GROUP;
+     207             :   }
+     208             : 
+     209        1412 :   if (outputs.actuators) {
+     210        1412 :     return ACTUATORS_CMD;
+     211             :   }
+     212             : 
+     213           0 :   return {};
+     214             : }
+     215             : 
+     216             : //}
+     217             : 
+     218             : /* extractThrottle() //{ */
+     219             : 
+     220         221 : std::optional<double> extractThrottle(const mrs_uav_managers::Controller::ControlOutput& control_output) {
+     221             : 
+     222         221 :   if (!control_output.control_output) {
+     223         121 :     return {};
+     224             :   }
+     225             : 
+     226         200 :   return std::visit(HwApiCmdExtractThrottleVisitor(), control_output.control_output.value());
+     227             : }
+     228             : 
+     229             : //}
+     230             : 
+     231             : /* attitudeController() //{ */
+     232             : 
+     233       79709 : std::optional<mrs_msgs::HwApiAttitudeRateCmd> attitudeController(const mrs_msgs::UavState& uav_state, const mrs_msgs::HwApiAttitudeCmd& reference,
+     234             :                                                                  const Eigen::Vector3d& ff_rate, const Eigen::Vector3d& rate_saturation,
+     235             :                                                                  const Eigen::Vector3d& gains, const bool& parasitic_heading_rate_compensation) {
+     236             : 
+     237       79709 :   Eigen::Matrix3d R  = mrs_lib::AttitudeConverter(uav_state.pose.orientation);
+     238       79709 :   Eigen::Matrix3d Rd = mrs_lib::AttitudeConverter(reference.orientation);
+     239             : 
+     240             :   // calculate the orientation error
+     241       79709 :   Eigen::Vector3d E = common::orientationError(R, Rd);
+     242             : 
+     243       79709 :   Eigen::Vector3d rate_feedback = gains.array() * E.array() + ff_rate.array();
+     244             : 
+     245             :   // | ----------- parasitic heading rate compensation ---------- |
+     246             : 
+     247       79709 :   if (parasitic_heading_rate_compensation) {
+     248             : 
+     249       21881 :     ROS_DEBUG_THROTTLE(1.0, "[AttitudeController]: parasitic heading rate compensation enabled");
+     250             : 
+     251             :     // compensate for the parasitic heading rate created by the desired pitch and roll rate
+     252       21881 :     Eigen::Vector3d rp_heading_rate_compensation(0, 0, 0);
+     253             : 
+     254       21881 :     Eigen::Vector3d q_feedback_yawless = rate_feedback;
+     255       21881 :     q_feedback_yawless(2)              = 0;  // nullyfy the effect of the original yaw feedback
+     256             : 
+     257       21881 :     double parasitic_heading_rate = 0;
+     258             : 
+     259             :     try {
+     260       21881 :       parasitic_heading_rate = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeadingRate(q_feedback_yawless);
+     261             :     }
+     262           0 :     catch (...) {
+     263           0 :       ROS_ERROR("[AttitudeController]: exception caught while calculating the parasitic heading rate!");
+     264             :     }
+     265             : 
+     266             :     try {
+     267       21881 :       rp_heading_rate_compensation(2) = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getYawRateIntrinsic(-parasitic_heading_rate);
+     268             :     }
+     269           0 :     catch (...) {
+     270           0 :       ROS_ERROR("[AttitudeController]: exception caught while calculating the parasitic heading rate compensation!");
+     271             :     }
+     272             : 
+     273       21881 :     rate_feedback += rp_heading_rate_compensation;
+     274             :   }
+     275             : 
+     276             :   // | --------------- saturate the attitude rate --------------- |
+     277             : 
+     278       79709 :   if (rate_feedback[0] > rate_saturation[0]) {
+     279           0 :     rate_feedback[0] = rate_saturation[0];
+     280       79709 :   } else if (rate_feedback[0] < -rate_saturation[0]) {
+     281           0 :     rate_feedback[0] = -rate_saturation[0];
+     282             :   }
+     283             : 
+     284       79709 :   if (rate_feedback[1] > rate_saturation[1]) {
+     285           0 :     rate_feedback[1] = rate_saturation[1];
+     286       79709 :   } else if (rate_feedback[1] < -rate_saturation[1]) {
+     287           0 :     rate_feedback[1] = -rate_saturation[1];
+     288             :   }
+     289             : 
+     290       79709 :   if (rate_feedback[2] > rate_saturation[2]) {
+     291           0 :     rate_feedback[2] = rate_saturation[2];
+     292       79709 :   } else if (rate_feedback[2] < -rate_saturation[2]) {
+     293           0 :     rate_feedback[2] = -rate_saturation[2];
+     294             :   }
+     295             : 
+     296             :   // | ------------ fill in the attitude rate command ----------- |
+     297             : 
+     298       79709 :   mrs_msgs::HwApiAttitudeRateCmd cmd;
+     299             : 
+     300       79709 :   cmd.stamp = ros::Time::now();
+     301             : 
+     302       79709 :   cmd.body_rate.x = rate_feedback[0];
+     303       79709 :   cmd.body_rate.y = rate_feedback[1];
+     304       79709 :   cmd.body_rate.z = rate_feedback[2];
+     305             : 
+     306       79709 :   cmd.throttle = reference.throttle;
+     307             : 
+     308      159418 :   return cmd;
+     309             : }
+     310             : 
+     311             : //}
+     312             : 
+     313             : /* attitudeRateController() //{ */
+     314             : 
+     315        7595 : std::optional<mrs_msgs::HwApiControlGroupCmd> attitudeRateController(const mrs_msgs::UavState& uav_state, const mrs_msgs::HwApiAttitudeRateCmd& reference,
+     316             :                                                                      const Eigen::Vector3d& gains) {
+     317             : 
+     318        7595 :   Eigen::Vector3d des_rate(reference.body_rate.x, reference.body_rate.y, reference.body_rate.z);
+     319        7595 :   Eigen::Vector3d cur_rate(uav_state.velocity.angular.x, uav_state.velocity.angular.y, uav_state.velocity.angular.z);
+     320             : 
+     321        7595 :   Eigen::Vector3d ctrl_group_action = (des_rate - cur_rate).array() * gains.array();
+     322             : 
+     323        7595 :   mrs_msgs::HwApiControlGroupCmd cmd;
+     324             : 
+     325        7595 :   cmd.stamp = ros::Time::now();
+     326             : 
+     327        7595 :   cmd.throttle = reference.throttle;
+     328             : 
+     329        7595 :   cmd.roll  = ctrl_group_action[0];
+     330        7595 :   cmd.pitch = ctrl_group_action[1];
+     331        7595 :   cmd.yaw   = ctrl_group_action[2];
+     332             : 
+     333       15190 :   return {cmd};
+     334             : }
+     335             : 
+     336             : //}
+     337             : 
+     338             : /* actuatorMixer() //{ */
+     339             : 
+     340        3790 : mrs_msgs::HwApiActuatorCmd actuatorMixer(const mrs_msgs::HwApiControlGroupCmd& ctrl_group_cmd, const Eigen::MatrixXd& mixer) {
+     341             : 
+     342        3790 :   Eigen::Vector4d ctrl_group(ctrl_group_cmd.roll, ctrl_group_cmd.pitch, ctrl_group_cmd.yaw, ctrl_group_cmd.throttle);
+     343             : 
+     344        7580 :   Eigen::VectorXd motors = mixer * ctrl_group;
+     345             : 
+     346        3790 :   double min = motors.minCoeff();
+     347             : 
+     348        3790 :   if (min < 0.0) {
+     349           2 :     motors.array() += abs(min);
+     350             :   }
+     351             : 
+     352        3790 :   double max = motors.maxCoeff();
+     353             : 
+     354        3790 :   if (max > 1.0) {
+     355             : 
+     356           0 :     if (ctrl_group_cmd.throttle > 1e-2) {
+     357             : 
+     358             :       // scale down roll/pitch/yaw actions to maintain desired throttle
+     359           0 :       for (int i = 0; i < 3; i++) {
+     360           0 :         ctrl_group(i) = ctrl_group(i) / (motors.mean() / ctrl_group_cmd.throttle);
+     361             :       }
+     362             : 
+     363           0 :       motors = mixer * ctrl_group;
+     364             : 
+     365             :     } else {
+     366           0 :       motors /= max;
+     367             :     }
+     368             :   }
+     369             : 
+     370             :   // | --------------------- fill in the msg -------------------- |
+     371             : 
+     372        3790 :   mrs_msgs::HwApiActuatorCmd actuator_msg;
+     373             : 
+     374        3790 :   actuator_msg.stamp = ros::Time::now();
+     375             : 
+     376       18950 :   for (int i = 0; i < motors.size(); i++) {
+     377       15160 :     actuator_msg.motors.push_back(motors[i]);
+     378             :   }
+     379             : 
+     380        7580 :   return actuator_msg;
+     381             : }
+     382             : 
+     383             : //}
+     384             : 
+     385             : }  // namespace common
+     386             : 
+     387             : }  // namespace mrs_uav_controllers
+
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_controllers::failsafe_controller::FailsafeController::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_controllers::failsafe_controller::FailsafeController::resetDisturbanceEstimators()0
mrs_uav_controllers::failsafe_controller::FailsafeController::getHeadingSafely(geometry_msgs::Quaternion_<std::allocator<void> > const&)8
mrs_uav_controllers::failsafe_controller::FailsafeController::activate(mrs_uav_managers::Controller::ControlOutput const&)8
mrs_uav_controllers::failsafe_controller::FailsafeController::deactivate()34
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_controllers::failsafe_controller::FailsafeController::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_controllers::failsafe_controller::FailsafeController::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)360
mrs_uav_controllers::failsafe_controller::FailsafeController::getStatus()975
mrs_uav_controllers::failsafe_controller::FailsafeController::updateActive(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)10193
mrs_uav_controllers::failsafe_controller::FailsafeController::updateInactive(mrs_msgs::UavState_<std::allocator<void> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)120225
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_controllers::failsafe_controller::FailsafeController::deactivate()34
mrs_uav_controllers::failsafe_controller::FailsafeController::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_controllers::failsafe_controller::FailsafeController::updateActive(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)10193
mrs_uav_controllers::failsafe_controller::FailsafeController::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)360
mrs_uav_controllers::failsafe_controller::FailsafeController::updateInactive(mrs_msgs::UavState_<std::allocator<void> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)120225
mrs_uav_controllers::failsafe_controller::FailsafeController::getHeadingSafely(geometry_msgs::Quaternion_<std::allocator<void> > const&)8
mrs_uav_controllers::failsafe_controller::FailsafeController::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_controllers::failsafe_controller::FailsafeController::resetDisturbanceEstimators()0
mrs_uav_controllers::failsafe_controller::FailsafeController::activate(mrs_uav_managers::Controller::ControlOutput const&)8
mrs_uav_controllers::failsafe_controller::FailsafeController::getStatus()975
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+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <ros/package.h>
+       5             : 
+       6             : #include <common.h>
+       7             : 
+       8             : #include <mrs_uav_managers/controller.h>
+       9             : 
+      10             : #include <mrs_lib/profiler.h>
+      11             : #include <mrs_lib/attitude_converter.h>
+      12             : #include <mrs_lib/mutex.h>
+      13             : #include <mrs_lib/subscribe_handler.h>
+      14             : 
+      15             : //}
+      16             : 
+      17             : namespace mrs_uav_controllers
+      18             : {
+      19             : 
+      20             : namespace failsafe_controller
+      21             : {
+      22             : 
+      23             : /* class FailsafeController //{ */
+      24             : 
+      25             : class FailsafeController : public mrs_uav_managers::Controller {
+      26             : 
+      27             : public:
+      28             :   bool initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      29             :                   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers);
+      30             : 
+      31             :   bool activate(const ControlOutput &last_control_output);
+      32             :   void deactivate(void);
+      33             : 
+      34             :   void updateInactive(const mrs_msgs::UavState &uav_state, const std::optional<mrs_msgs::TrackerCommand> &tracker_command);
+      35             : 
+      36             :   ControlOutput updateActive(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command);
+      37             : 
+      38             :   const mrs_msgs::ControllerStatus getStatus();
+      39             : 
+      40             :   void switchOdometrySource(const mrs_msgs::UavState &new_uav_state);
+      41             : 
+      42             :   void resetDisturbanceEstimators(void);
+      43             : 
+      44             :   const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd);
+      45             : 
+      46             :   double getHeadingSafely(const geometry_msgs::Quaternion &quaternion);
+      47             : 
+      48             : private:
+      49             :   ros::NodeHandle nh_;
+      50             : 
+      51             :   bool is_initialized_ = false;
+      52             :   bool is_active_      = false;
+      53             : 
+      54             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>  common_handlers_;
+      55             :   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers_;
+      56             : 
+      57             :   // | ----------------------- parameters ----------------------- |
+      58             : 
+      59             :   double _descend_speed_;
+      60             :   double _descend_acceleration_;
+      61             : 
+      62             :   double _kq_;
+      63             :   double _kw_;
+      64             : 
+      65             :   // | ------------------- remember uav state ------------------- |
+      66             : 
+      67             :   mrs_msgs::UavState uav_state_;
+      68             :   std::mutex         mutex_uav_state_;
+      69             : 
+      70             :   // | --------------------- throttle control --------------------- |
+      71             : 
+      72             :   double _uav_mass_;
+      73             :   double uav_mass_difference_;
+      74             : 
+      75             :   double hover_throttle_;
+      76             : 
+      77             :   double _throttle_decrease_rate_;
+      78             :   double _initial_throttle_percentage_;
+      79             : 
+      80             :   // | ----------------------- yaw control ---------------------- |
+      81             : 
+      82             :   double heading_setpoint_;
+      83             : 
+      84             :   mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped> sh_hw_api_orientation_;
+      85             : 
+      86             :   // | ------------------ activation and output ----------------- |
+      87             : 
+      88             :   ControlOutput last_control_output_;
+      89             :   ControlOutput activation_control_output_;
+      90             : 
+      91             :   ros::Time         last_update_time_;
+      92             :   std::atomic<bool> first_iteration_ = true;
+      93             : 
+      94             :   // | ------------------------ profiler ------------------------ |
+      95             : 
+      96             :   mrs_lib::Profiler profiler_;
+      97             :   bool              _profiler_enabled_ = false;
+      98             : 
+      99             :   // | ----------------------- constraints ---------------------- |
+     100             : 
+     101             :   mrs_msgs::DynamicsConstraints constraints_;
+     102             :   std::mutex                    mutex_constraints_;
+     103             : };
+     104             : 
+     105             : //}
+     106             : 
+     107             : // --------------------------------------------------------------
+     108             : // |                   controller's interface                   |
+     109             : // --------------------------------------------------------------
+     110             : 
+     111             : /* initialize() //{ */
+     112             : 
+     113          91 : bool FailsafeController::initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+     114             :                                     std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) {
+     115             : 
+     116          91 :   nh_ = nh;
+     117             : 
+     118          91 :   common_handlers_  = common_handlers;
+     119          91 :   private_handlers_ = private_handlers;
+     120             : 
+     121          91 :   _uav_mass_ = common_handlers->getMass();
+     122             : 
+     123          91 :   ros::Time::waitForValid();
+     124             : 
+     125             :   // | ---------- loading params using the parent's nh ---------- |
+     126             : 
+     127         182 :   mrs_lib::ParamLoader param_loader_parent(common_handlers->parent_nh, "ControlManager");
+     128             : 
+     129          91 :   param_loader_parent.loadParam("enable_profiler", _profiler_enabled_);
+     130             : 
+     131          91 :   if (!param_loader_parent.loadedSuccessfully()) {
+     132           0 :     ROS_ERROR("[FailsafeController]: Could not load all parameters!");
+     133           0 :     return false;
+     134             :   }
+     135             : 
+     136             :   // | -------------------- loading my params ------------------- |
+     137             : 
+     138          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_controllers") + "/config/private/failsafe_controller.yaml");
+     139          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_controllers") + "/config/public/failsafe_controller.yaml");
+     140             : 
+     141         182 :   const std::string yaml_namespace = "mrs_uav_controllers/failsafe_controller/";
+     142             : 
+     143          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "throttle_output/throttle_decrease_rate", _throttle_decrease_rate_);
+     144          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "throttle_output/initial_throttle_percentage", _initial_throttle_percentage_);
+     145             : 
+     146          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "attitude_controller/gains/kp", _kq_);
+     147             : 
+     148          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "rate_controller/gains/kp", _kw_);
+     149             : 
+     150          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "velocity_output/descend_speed", _descend_speed_);
+     151          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "acceleration_output/descend_acceleration", _descend_acceleration_);
+     152             : 
+     153          91 :   if (!private_handlers->param_loader->loadedSuccessfully()) {
+     154           0 :     ROS_ERROR("[FailsafeController]: Could not load all parameters!");
+     155           0 :     return false;
+     156             :   }
+     157             : 
+     158          91 :   _descend_speed_        = std::abs(_descend_speed_);
+     159          91 :   _descend_acceleration_ = std::abs(_descend_acceleration_);
+     160             : 
+     161          91 :   uav_mass_difference_ = 0;
+     162             : 
+     163             :   // | ----------------------- subscribers ---------------------- |
+     164             : 
+     165          91 :   mrs_lib::SubscribeHandlerOptions shopts;
+     166          91 :   shopts.nh                 = nh_;
+     167          91 :   shopts.node_name          = "FailsafeController";
+     168          91 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     169          91 :   shopts.threadsafe         = true;
+     170          91 :   shopts.autostart          = true;
+     171          91 :   shopts.queue_size         = 10;
+     172          91 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     173             : 
+     174          91 :   sh_hw_api_orientation_ = mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped>(shopts, "/" + common_handlers->uav_name + "/" + "hw_api/orientation");
+     175             : 
+     176             :   // | ----------- calculate the default hover throttle ----------- |
+     177             : 
+     178          91 :   hover_throttle_ = mrs_lib::quadratic_throttle_model::forceToThrottle(common_handlers_->throttle_model, _uav_mass_ * common_handlers_->g);
+     179             : 
+     180             :   // | ------------------------ profiler ------------------------ |
+     181             : 
+     182          91 :   profiler_ = mrs_lib::Profiler(common_handlers->parent_nh, "FailsafeController", _profiler_enabled_);
+     183             : 
+     184             :   // | ----------------------- finish init ---------------------- |
+     185             : 
+     186          91 :   ROS_INFO("[FailsafeController]: initialized");
+     187             : 
+     188          91 :   is_initialized_ = true;
+     189             : 
+     190          91 :   return true;
+     191             : }
+     192             : 
+     193             : //}
+     194             : 
+     195             : /* activate() //{ */
+     196             : 
+     197           8 : bool FailsafeController::activate(const ControlOutput &last_control_output) {
+     198             : 
+     199          16 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     200             : 
+     201           8 :   if (!last_control_output.control_output) {
+     202             : 
+     203           0 :     ROS_WARN("[FailsafeController]: activated without getting the last controller's command");
+     204             : 
+     205           0 :     return false;
+     206             : 
+     207             :   } else {
+     208             : 
+     209             :     // | -------------- calculate the initial heading ------------- |
+     210             : 
+     211           8 :     if (sh_hw_api_orientation_.getMsg()) {
+     212             : 
+     213          16 :       auto hw_api_orientation = sh_hw_api_orientation_.getMsg();
+     214             : 
+     215           8 :       heading_setpoint_ = getHeadingSafely(hw_api_orientation->quaternion);
+     216             : 
+     217           8 :       ROS_INFO("[FailsafeController]: activated with heading = %.2f rad", heading_setpoint_);
+     218             : 
+     219             :     } else {
+     220             : 
+     221           0 :       ROS_ERROR("[FailsafeController]: missing orientation from HW API, activated with heading = 0 rad");
+     222             : 
+     223           0 :       heading_setpoint_ = 0;
+     224             :     }
+     225             : 
+     226           8 :     activation_control_output_ = last_control_output;
+     227             : 
+     228           8 :     if (last_control_output.diagnostics.mass_estimator) {
+     229           7 :       uav_mass_difference_ = last_control_output.diagnostics.mass_difference;
+     230             :     } else {
+     231           1 :       uav_mass_difference_ = 0;
+     232             :     }
+     233             : 
+     234           8 :     activation_control_output_.diagnostics.controller_enforcing_constraints = false;
+     235             : 
+     236           8 :     hover_throttle_ = _initial_throttle_percentage_ * mrs_lib::quadratic_throttle_model::forceToThrottle(
+     237           8 :                                                           common_handlers_->throttle_model, (_uav_mass_ + uav_mass_difference_) * common_handlers_->g);
+     238             : 
+     239           8 :     ROS_INFO("[FailsafeController]: activated with uav_mass_difference %.2f kg.", uav_mass_difference_);
+     240             :   }
+     241             : 
+     242           8 :   first_iteration_ = true;
+     243             : 
+     244           8 :   is_active_ = true;
+     245             : 
+     246           8 :   return true;
+     247             : }
+     248             : 
+     249             : //}
+     250             : 
+     251             : /* deactivate() //{ */
+     252             : 
+     253          34 : void FailsafeController::deactivate(void) {
+     254             : 
+     255          34 :   is_active_           = false;
+     256          34 :   first_iteration_     = false;
+     257          34 :   uav_mass_difference_ = 0;
+     258             : 
+     259          34 :   ROS_INFO("[FailsafeController]: deactivated");
+     260          34 : }
+     261             : 
+     262             : //}
+     263             : 
+     264             : /* updateInactive() //{ */
+     265             : 
+     266      120225 : void FailsafeController::updateInactive(const mrs_msgs::UavState &uav_state, [[maybe_unused]] const std::optional<mrs_msgs::TrackerCommand> &tracker_command) {
+     267             : 
+     268      120225 :   mrs_lib::set_mutexed(mutex_uav_state_, uav_state, uav_state_);
+     269             : 
+     270      120225 :   last_update_time_ = ros::Time::now();
+     271             : 
+     272      120225 :   first_iteration_ = false;
+     273      120225 : }
+     274             : 
+     275             : //}
+     276             : 
+     277             : /* //{ updateWhenAcctive() */
+     278             : 
+     279       10193 : FailsafeController::ControlOutput FailsafeController::updateActive(const mrs_msgs::UavState &                       uav_state,
+     280             :                                                                    [[maybe_unused]] const mrs_msgs::TrackerCommand &tracker_command) {
+     281             : 
+     282       30579 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("update");
+     283       30579 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("FailsafeController::update", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+     284             : 
+     285             :   {
+     286       20386 :     std::scoped_lock lock(mutex_uav_state_);
+     287             : 
+     288       10193 :     uav_state_ = uav_state;
+     289             :   }
+     290             : 
+     291       10193 :   if (!is_active_) {
+     292           0 :     return ControlOutput();
+     293             :   }
+     294             : 
+     295       10193 :   auto constraints = mrs_lib::get_mutexed(mutex_constraints_, constraints_);
+     296             : 
+     297             :   // | -------------------- calculate the dt -------------------- |
+     298             : 
+     299             :   double dt;
+     300             : 
+     301       10193 :   if (first_iteration_) {
+     302           8 :     dt               = 0.01;
+     303           8 :     first_iteration_ = false;
+     304             :   } else {
+     305       10185 :     dt = (ros::Time::now() - last_update_time_).toSec();
+     306             :   }
+     307             : 
+     308       10193 :   last_update_time_ = ros::Time::now();
+     309             : 
+     310       10193 :   hover_throttle_ -= _throttle_decrease_rate_ * dt;
+     311             : 
+     312       10193 :   if (!std::isfinite(hover_throttle_)) {
+     313           0 :     hover_throttle_ = 0;
+     314           0 :     ROS_ERROR("[FailsafeController]: NaN detected in variable 'hover_throttle', setting it to 0 and returning!!!");
+     315       10193 :   } else if (hover_throttle_ > 1.0) {
+     316           0 :     hover_throttle_ = 1.0;
+     317       10193 :   } else if (hover_throttle_ < 0.0) {
+     318           0 :     hover_throttle_ = 0.0;
+     319             :   }
+     320             : 
+     321             :   // | --------------- prepare the control output --------------- |
+     322             : 
+     323       20386 :   FailsafeController::ControlOutput control_output;
+     324             : 
+     325       10193 :   control_output.diagnostics.controller = "FailsafeController";
+     326             : 
+     327       10193 :   auto highest_modality = common::getHighestOuput(common_handlers_->control_output_modalities);
+     328             : 
+     329       10193 :   if (!highest_modality) {
+     330           0 :     ROS_ERROR_THROTTLE(1.0, "[FailsafeController]: output modalities are empty! This error should never appear.");
+     331           0 :     return control_output;
+     332             :   }
+     333             : 
+     334       10193 :   control_output.diagnostics.controller = "FailsafeController";
+     335             : 
+     336             :   // --------------------------------------------------------------
+     337             :   // |                       position output                      |
+     338             :   // --------------------------------------------------------------
+     339             : 
+     340       10193 :   if (highest_modality.value() == common::POSITION) {
+     341           0 :     ROS_INFO_THROTTLE(1.0, "[FailsafeController]: returning empty command, because we are at the position modality");
+     342           0 :     return control_output;
+     343             :   }
+     344             : 
+     345             :   // --------------------------------------------------------------
+     346             :   // |                       velocity output                      |
+     347             :   // --------------------------------------------------------------
+     348             : 
+     349       10193 :   if (highest_modality.value() == common::VELOCITY_HDG) {
+     350             : 
+     351           0 :     mrs_msgs::HwApiVelocityHdgCmd vel_cmd;
+     352             : 
+     353           0 :     vel_cmd.header.stamp = ros::Time::now();
+     354             : 
+     355           0 :     vel_cmd.velocity.x = 0;
+     356           0 :     vel_cmd.velocity.y = 0;
+     357           0 :     vel_cmd.velocity.z = -_descend_speed_;
+     358           0 :     vel_cmd.heading    = heading_setpoint_;
+     359             : 
+     360           0 :     ROS_DEBUG_THROTTLE(1.0, "[FailsafeController]: returning velocity+hdg output");
+     361           0 :     control_output.control_output = vel_cmd;
+     362           0 :     return control_output;
+     363             :   }
+     364             : 
+     365       10193 :   if (highest_modality.value() == common::VELOCITY_HDG_RATE) {
+     366             : 
+     367         956 :     mrs_msgs::HwApiVelocityHdgRateCmd vel_cmd;
+     368             : 
+     369         478 :     vel_cmd.header.stamp = ros::Time::now();
+     370             : 
+     371         478 :     vel_cmd.velocity.x   = 0;
+     372         478 :     vel_cmd.velocity.y   = 0;
+     373         478 :     vel_cmd.velocity.z   = -_descend_speed_;
+     374         478 :     vel_cmd.heading_rate = 0.0;
+     375             : 
+     376         478 :     ROS_DEBUG_THROTTLE(1.0, "[FailsafeController]: returning velocity+hdg rate output");
+     377         478 :     control_output.control_output = vel_cmd;
+     378         478 :     return control_output;
+     379             :   }
+     380             : 
+     381             :   // --------------------------------------------------------------
+     382             :   // |                     acceleration output                    |
+     383             :   // --------------------------------------------------------------
+     384             : 
+     385        9715 :   if (highest_modality.value() == common::ACCELERATION_HDG) {
+     386             : 
+     387           0 :     mrs_msgs::HwApiAccelerationHdgCmd acc_cmd;
+     388             : 
+     389           0 :     acc_cmd.header.stamp = ros::Time::now();
+     390             : 
+     391           0 :     acc_cmd.acceleration.x = 0;
+     392           0 :     acc_cmd.acceleration.y = 0;
+     393           0 :     acc_cmd.acceleration.z = -_descend_acceleration_;
+     394           0 :     acc_cmd.heading        = heading_setpoint_;
+     395             : 
+     396           0 :     ROS_DEBUG_THROTTLE(1.0, "[FailsafeController]: returning acceleration+hdg output");
+     397           0 :     control_output.control_output = acc_cmd;
+     398           0 :     return control_output;
+     399             :   }
+     400             : 
+     401        9715 :   if (highest_modality.value() == common::ACCELERATION_HDG_RATE) {
+     402             : 
+     403           0 :     mrs_msgs::HwApiAccelerationHdgRateCmd acc_cmd;
+     404             : 
+     405           0 :     acc_cmd.header.stamp = ros::Time::now();
+     406             : 
+     407           0 :     acc_cmd.acceleration.x = 0;
+     408           0 :     acc_cmd.acceleration.y = 0;
+     409           0 :     acc_cmd.acceleration.z = -_descend_acceleration_;
+     410           0 :     acc_cmd.heading_rate   = 0.0;
+     411             : 
+     412           0 :     ROS_DEBUG_THROTTLE(1.0, "[FailsafeController]: returning acceleration+hdg rate output");
+     413           0 :     control_output.control_output = acc_cmd;
+     414           0 :     return control_output;
+     415             :   }
+     416             : 
+     417             :   // --------------------------------------------------------------
+     418             :   // |                       attitude output                      |
+     419             :   // --------------------------------------------------------------
+     420             : 
+     421        9715 :   mrs_msgs::HwApiAttitudeCmd attitude_cmd;
+     422             : 
+     423        9715 :   attitude_cmd.stamp       = ros::Time::now();
+     424        9715 :   attitude_cmd.orientation = mrs_lib::AttitudeConverter(0, 0, heading_setpoint_);
+     425        9715 :   attitude_cmd.throttle    = hover_throttle_;
+     426             : 
+     427        9715 :   if (highest_modality.value() == common::ATTITUDE) {
+     428        5536 :     ROS_DEBUG_THROTTLE(1.0, "[FailsafeController]: returning attitude output");
+     429        5536 :     control_output.control_output = attitude_cmd;
+     430        5536 :     return control_output;
+     431             :   }
+     432             : 
+     433             :   // --------------------------------------------------------------
+     434             :   // |                      attitude control                      |
+     435             :   // --------------------------------------------------------------
+     436             : 
+     437        4179 :   Eigen::Vector3d attitude_rate_saturation(constraints.roll_rate, constraints.pitch_rate, constraints.yaw_rate);
+     438        4179 :   Eigen::Vector3d rate_ff(0, 0, 0);
+     439        4179 :   Eigen::Vector3d Kq(_kq_, _kq_, _kq_);
+     440             : 
+     441        4179 :   auto attitude_rate_command = common::attitudeController(uav_state, attitude_cmd, rate_ff, attitude_rate_saturation, Kq, false);
+     442             : 
+     443        4179 :   if (highest_modality.value() == common::ATTITUDE_RATE) {
+     444        1393 :     ROS_DEBUG_THROTTLE(1.0, "[FailsafeController]: returning attitude rate output");
+     445        1393 :     control_output.control_output = attitude_rate_command;
+     446        1393 :     return control_output;
+     447             :   }
+     448             : 
+     449             :   // --------------------------------------------------------------
+     450             :   // |                    attitude rate control                   |
+     451             :   // --------------------------------------------------------------
+     452             : 
+     453        2786 :   Eigen::Vector3d Kw = common_handlers_->detailed_model_params->inertia.diagonal() * _kw_;
+     454             : 
+     455        2786 :   auto control_group_command = common::attitudeRateController(uav_state, attitude_rate_command.value(), Kw);
+     456             : 
+     457        2786 :   if (highest_modality.value() == common::CONTROL_GROUP) {
+     458        1393 :     ROS_DEBUG_THROTTLE(1.0, "[FailsafeController]: returning control group output");
+     459        1393 :     control_output.control_output = control_group_command;
+     460        1393 :     return control_output;
+     461             :   }
+     462             : 
+     463             :   // --------------------------------------------------------------
+     464             :   // |                            mixer                           |
+     465             :   // --------------------------------------------------------------
+     466             : 
+     467        2786 :   mrs_msgs::HwApiActuatorCmd actuator_cmd = common::actuatorMixer(control_group_command.value(), common_handlers_->detailed_model_params->control_group_mixer);
+     468             : 
+     469        1393 :   ROS_DEBUG_THROTTLE(1.0, "[FailsafeController]: returning actuators output");
+     470        1393 :   control_output.control_output = actuator_cmd;
+     471        1393 :   return control_output;
+     472             : }
+     473             : 
+     474             : //}
+     475             : 
+     476             : /* getStatus() //{ */
+     477             : 
+     478         975 : const mrs_msgs::ControllerStatus FailsafeController::getStatus() {
+     479             : 
+     480         975 :   mrs_msgs::ControllerStatus controller_status;
+     481             : 
+     482         975 :   controller_status.active = is_active_;
+     483             : 
+     484         975 :   return controller_status;
+     485             : }
+     486             : 
+     487             : //}
+     488             : 
+     489             : /* switchOdometrySource() //{ */
+     490             : 
+     491           0 : void FailsafeController::switchOdometrySource([[maybe_unused]] const mrs_msgs::UavState &new_uav_state) {
+     492           0 : }
+     493             : 
+     494             : //}
+     495             : 
+     496             : /* resetDisturbanceEstimators() //{ */
+     497             : 
+     498           0 : void FailsafeController::resetDisturbanceEstimators(void) {
+     499           0 : }
+     500             : 
+     501             : //}
+     502             : 
+     503             : /* setConstraints() //{ */
+     504             : 
+     505         360 : const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr FailsafeController::setConstraints([
+     506             :     [maybe_unused]] const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &constraints) {
+     507             : 
+     508         360 :   if (!is_initialized_) {
+     509           0 :     return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse());
+     510             :   }
+     511             : 
+     512         360 :   mrs_lib::set_mutexed(mutex_constraints_, constraints->constraints, constraints_);
+     513             : 
+     514         360 :   ROS_INFO("[FailsafeController]: updating constraints");
+     515             : 
+     516         720 :   mrs_msgs::DynamicsConstraintsSrvResponse res;
+     517         360 :   res.success = true;
+     518         360 :   res.message = "constraints updated";
+     519             : 
+     520         360 :   return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse(res));
+     521             : }
+     522             : 
+     523             : //}
+     524             : 
+     525             : /* getHeadingSafely() //{ */
+     526             : 
+     527           8 : double FailsafeController::getHeadingSafely(const geometry_msgs::Quaternion &quaternion) {
+     528             : 
+     529             :   try {
+     530           8 :     return mrs_lib::AttitudeConverter(quaternion).getHeading();
+     531             :   }
+     532           0 :   catch (...) {
+     533             :   }
+     534             : 
+     535             :   try {
+     536           0 :     return mrs_lib::AttitudeConverter(quaternion).getYaw();
+     537             :   }
+     538           0 :   catch (...) {
+     539             :   }
+     540             : 
+     541           0 :   return 0;
+     542             : }
+     543             : 
+     544             : //}
+     545             : 
+     546             : }  // namespace failsafe_controller
+     547             : 
+     548             : }  // namespace mrs_uav_controllers
+     549             : 
+     550             : #include <pluginlib/class_list_macros.h>
+     551          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_controllers::failsafe_controller::FailsafeController, mrs_uav_managers::Controller)
+
+
+
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Current view:top level - mrs_uav_controllers/srcHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1766217281.3 %
Date:2024-04-17 23:52:03Functions:586687.9 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
midair_activation_controller.cpp +
88.7%88.7%
+
88.7 %134 / 15181.8 %9 / 11
<unnamed>88.7 %134 / 15181.8 %9 / 11
failsafe_controller.cpp +
72.7%72.7%
+
72.7 %141 / 19481.8 %9 / 11
<unnamed>72.7 %141 / 19481.8 %9 / 11
se3_controller.cpp +
79.7%79.7%
+
79.7 %617 / 77488.2 %15 / 17
<unnamed>79.7 %617 / 77488.2 %15 / 17
mpc_controller.cpp +
82.7%82.7%
+
82.7 %739 / 89488.9 %16 / 18
<unnamed>82.7 %739 / 89488.9 %16 / 18
common.cpp +
84.9%84.9%
+
84.9 %135 / 159100.0 %9 / 9
<unnamed>84.9 %135 / 159100.0 %9 / 9
+
+
+ + + + +
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Test:MRS UAV System - Test coverage reportLines:1766217281.3 %
Date:2024-04-17 23:52:03Functions:586687.9 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Test:MRS UAV System - Test coverage reportLines:1766217281.3 %
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Current view:top level - mrs_uav_controllers/src - midair_activation_controller.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13415188.7 %
Date:2024-04-17 23:52:03Functions:91181.8 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_controllers::midair_activation_controller::MidairActivationController::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_controllers::midair_activation_controller::MidairActivationController::resetDisturbanceEstimators()0
mrs_uav_controllers::midair_activation_controller::MidairActivationController::getHeadingSafely(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)13
mrs_uav_controllers::midair_activation_controller::MidairActivationController::deactivate()86
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_controllers::midair_activation_controller::MidairActivationController::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_controllers::midair_activation_controller::MidairActivationController::getStatus()102
mrs_uav_controllers::midair_activation_controller::MidairActivationController::activate(mrs_uav_managers::Controller::ControlOutput const&)129
mrs_uav_controllers::midair_activation_controller::MidairActivationController::updateActive(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)283
mrs_uav_controllers::midair_activation_controller::MidairActivationController::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)360
mrs_uav_controllers::midair_activation_controller::MidairActivationController::updateInactive(mrs_msgs::UavState_<std::allocator<void> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)130135
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Current view:top level - mrs_uav_controllers/src - midair_activation_controller.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13415188.7 %
Date:2024-04-17 23:52:03Functions:91181.8 %
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_controllers::midair_activation_controller::MidairActivationController::deactivate()86
mrs_uav_controllers::midair_activation_controller::MidairActivationController::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_controllers::midair_activation_controller::MidairActivationController::updateActive(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)283
mrs_uav_controllers::midair_activation_controller::MidairActivationController::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)360
mrs_uav_controllers::midair_activation_controller::MidairActivationController::updateInactive(mrs_msgs::UavState_<std::allocator<void> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)130135
mrs_uav_controllers::midair_activation_controller::MidairActivationController::getHeadingSafely(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)13
mrs_uav_controllers::midair_activation_controller::MidairActivationController::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_controllers::midair_activation_controller::MidairActivationController::resetDisturbanceEstimators()0
mrs_uav_controllers::midair_activation_controller::MidairActivationController::activate(mrs_uav_managers::Controller::ControlOutput const&)129
mrs_uav_controllers::midair_activation_controller::MidairActivationController::getStatus()102
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LCOV - code coverage report
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Current view:top level - mrs_uav_controllers/src - midair_activation_controller.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13415188.7 %
Date:2024-04-17 23:52:03Functions:91181.8 %
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          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <ros/package.h>
+       5             : 
+       6             : #include <common.h>
+       7             : 
+       8             : #include <mrs_uav_managers/controller.h>
+       9             : 
+      10             : #include <mrs_lib/profiler.h>
+      11             : #include <mrs_lib/attitude_converter.h>
+      12             : #include <mrs_lib/mutex.h>
+      13             : #include <mrs_lib/param_loader.h>
+      14             : 
+      15             : //}
+      16             : 
+      17             : namespace mrs_uav_controllers
+      18             : {
+      19             : 
+      20             : namespace midair_activation_controller
+      21             : {
+      22             : 
+      23             : /* class MidairActivationController //{ */
+      24             : 
+      25             : class MidairActivationController : public mrs_uav_managers::Controller {
+      26             : 
+      27             : public:
+      28             :   bool initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      29             :                   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers);
+      30             : 
+      31             :   bool activate(const ControlOutput &last_control_output);
+      32             : 
+      33             :   void deactivate(void);
+      34             : 
+      35             :   void updateInactive(const mrs_msgs::UavState &uav_state, const std::optional<mrs_msgs::TrackerCommand> &tracker_command);
+      36             : 
+      37             :   ControlOutput updateActive(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command);
+      38             : 
+      39             :   const mrs_msgs::ControllerStatus getStatus();
+      40             : 
+      41             :   void switchOdometrySource(const mrs_msgs::UavState &new_uav_state);
+      42             : 
+      43             :   void resetDisturbanceEstimators(void);
+      44             : 
+      45             :   const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd);
+      46             : 
+      47             : private:
+      48             :   ros::NodeHandle nh_;
+      49             : 
+      50             :   bool is_initialized_ = false;
+      51             :   bool is_active_      = false;
+      52             : 
+      53             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>  common_handlers_;
+      54             :   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers_;
+      55             : 
+      56             :   // | ------------------------ uav state ----------------------- |
+      57             : 
+      58             :   mrs_msgs::UavState uav_state_;
+      59             :   std::mutex         mutex_uav_state_;
+      60             : 
+      61             :   // | --------------------- thrust control --------------------- |
+      62             : 
+      63             :   double _uav_mass_;
+      64             :   double uav_mass_difference_;
+      65             : 
+      66             :   double hover_throttle_;
+      67             : 
+      68             :   // | ------------------------ profiler ------------------------ |
+      69             : 
+      70             :   mrs_lib::Profiler profiler_;
+      71             :   bool              _profiler_enabled_ = false;
+      72             : 
+      73             :   // | ------------------------ routines ------------------------ |
+      74             : 
+      75             :   double getHeadingSafely(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command);
+      76             : };
+      77             : 
+      78             : //}
+      79             : 
+      80             : // --------------------------------------------------------------
+      81             : // |                   controller's interface                   |
+      82             : // --------------------------------------------------------------
+      83             : 
+      84             : /* initialize() //{ */
+      85             : 
+      86          91 : bool MidairActivationController::initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      87             :                                             std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) {
+      88             : 
+      89          91 :   nh_ = nh;
+      90             : 
+      91          91 :   common_handlers_  = common_handlers;
+      92          91 :   private_handlers_ = private_handlers;
+      93             : 
+      94          91 :   _uav_mass_ = common_handlers->getMass();
+      95             : 
+      96          91 :   ros::Time::waitForValid();
+      97             : 
+      98             :   // | ---------- loading params using the parent's nh ---------- |
+      99             : 
+     100         182 :   mrs_lib::ParamLoader param_loader_parent(common_handlers->parent_nh, "ControlManager");
+     101             : 
+     102          91 :   param_loader_parent.loadParam("enable_profiler", _profiler_enabled_);
+     103             : 
+     104          91 :   if (!param_loader_parent.loadedSuccessfully()) {
+     105           0 :     ROS_ERROR("[MidairActivationController]: Could not load all parameters!");
+     106           0 :     return false;
+     107             :   }
+     108             : 
+     109             :   // | -------------------- loading my params ------------------- |
+     110             : 
+     111          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_controllers") + "/config/private/midair_activation_controller.yaml");
+     112          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_controllers") + "/config/public/midair_activation_controller.yaml");
+     113             : 
+     114          91 :   if (!private_handlers->param_loader->loadedSuccessfully()) {
+     115           0 :     ROS_ERROR("[MidairActivationController]: Could not load all parameters!");
+     116           0 :     return false;
+     117             :   }
+     118             : 
+     119          91 :   uav_mass_difference_ = 0;
+     120             : 
+     121             :   // | ------------------------ profiler ------------------------ |
+     122             : 
+     123          91 :   profiler_ = mrs_lib::Profiler(common_handlers->parent_nh, "MidairActivationController", _profiler_enabled_);
+     124             : 
+     125             :   // | ----------------------- finish init ---------------------- |
+     126             : 
+     127          91 :   ROS_INFO("[MidairActivationController]: initialized");
+     128             : 
+     129          91 :   is_initialized_ = true;
+     130             : 
+     131          91 :   return true;
+     132             : }
+     133             : 
+     134             : //}
+     135             : 
+     136             : /* activate() //{ */
+     137             : 
+     138         129 : bool MidairActivationController::activate([[maybe_unused]] const ControlOutput &last_control_output) {
+     139             : 
+     140         129 :   ROS_INFO("[MidairActivationController]: activating");
+     141             : 
+     142         129 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     143             : 
+     144         129 :   hover_throttle_ = mrs_lib::quadratic_throttle_model::forceToThrottle(common_handlers_->throttle_model, _uav_mass_ * common_handlers_->g);
+     145             : 
+     146         129 :   is_active_ = true;
+     147             : 
+     148         129 :   ROS_INFO("[MidairActivationController]: activated, hover throttle %.2f", hover_throttle_);
+     149             : 
+     150         258 :   return true;
+     151             : }
+     152             : 
+     153             : //}
+     154             : 
+     155             : /* deactivate() //{ */
+     156             : 
+     157          86 : void MidairActivationController::deactivate(void) {
+     158             : 
+     159          86 :   is_active_           = false;
+     160          86 :   uav_mass_difference_ = 0;
+     161             : 
+     162          86 :   ROS_INFO("[MidairActivationController]: deactivated");
+     163          86 : }
+     164             : 
+     165             : //}
+     166             : 
+     167             : /* updateInactive() //{ */
+     168             : 
+     169      130135 : void MidairActivationController::updateInactive(const mrs_msgs::UavState &                                      uav_state,
+     170             :                                                 [[maybe_unused]] const std::optional<mrs_msgs::TrackerCommand> &tracker_command) {
+     171             : 
+     172      130135 :   mrs_lib::set_mutexed(mutex_uav_state_, uav_state, uav_state_);
+     173      130135 : }
+     174             : 
+     175             : //}
+     176             : 
+     177             : /* //{ updateWhenAcctive() */
+     178             : 
+     179         283 : MidairActivationController::ControlOutput MidairActivationController::updateActive(const mrs_msgs::UavState &      uav_state,
+     180             :                                                                                    const mrs_msgs::TrackerCommand &tracker_command) {
+     181             : 
+     182         849 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("update");
+     183             :   mrs_lib::ScopeTimer timer =
+     184         849 :       mrs_lib::ScopeTimer("MidairActivationController::update", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+     185             : 
+     186         283 :   mrs_lib::set_mutexed(mutex_uav_state_, uav_state, uav_state_);
+     187             : 
+     188         283 :   if (!is_active_) {
+     189           0 :     return Controller::ControlOutput();
+     190             :   }
+     191             : 
+     192             :   // | --------------- prepare the control output --------------- |
+     193             : 
+     194         566 :   ControlOutput control_output;
+     195             : 
+     196         283 :   control_output.diagnostics.controller = "MidairActivationController";
+     197             : 
+     198         283 :   auto highest_modality = common::getHighestOuput(common_handlers_->control_output_modalities);
+     199             : 
+     200         283 :   if (!highest_modality) {
+     201             : 
+     202           0 :     ROS_ERROR_THROTTLE(1.0, "[MidairActivationController]: output modalities are empty! This error should never appear.");
+     203             : 
+     204           0 :     return control_output;
+     205             :   }
+     206             : 
+     207         283 :   switch (highest_modality.value()) {
+     208             : 
+     209           3 :     case common::POSITION: {
+     210             : 
+     211           6 :       mrs_msgs::HwApiPositionCmd cmd;
+     212             : 
+     213           3 :       cmd.header.stamp    = ros::Time::now();
+     214           3 :       cmd.header.frame_id = uav_state.header.frame_id;
+     215             : 
+     216           3 :       cmd.position.x = uav_state.pose.position.x;
+     217           3 :       cmd.position.y = uav_state.pose.position.y;
+     218           3 :       cmd.position.z = uav_state.pose.position.z;
+     219             : 
+     220           3 :       cmd.heading = getHeadingSafely(uav_state, tracker_command);
+     221             : 
+     222           3 :       control_output.control_output = cmd;
+     223             : 
+     224           3 :       break;
+     225             :     }
+     226             : 
+     227           5 :     case common::VELOCITY_HDG: {
+     228             : 
+     229          10 :       mrs_msgs::HwApiVelocityHdgCmd cmd;
+     230             : 
+     231           5 :       cmd.header.stamp    = ros::Time::now();
+     232           5 :       cmd.header.frame_id = uav_state.header.frame_id;
+     233             : 
+     234           5 :       cmd.velocity.x = uav_state.velocity.linear.x;
+     235           5 :       cmd.velocity.y = uav_state.velocity.linear.y;
+     236           5 :       cmd.velocity.z = uav_state.velocity.linear.z;
+     237             : 
+     238           5 :       cmd.heading = getHeadingSafely(uav_state, tracker_command);
+     239             : 
+     240           5 :       control_output.control_output = cmd;
+     241             : 
+     242           5 :       break;
+     243             :     }
+     244             : 
+     245           9 :     case common::VELOCITY_HDG_RATE: {
+     246             : 
+     247          18 :       mrs_msgs::HwApiVelocityHdgRateCmd cmd;
+     248             : 
+     249           9 :       cmd.header.stamp    = ros::Time::now();
+     250           9 :       cmd.header.frame_id = uav_state.header.frame_id;
+     251             : 
+     252           9 :       cmd.velocity.x = uav_state.velocity.linear.x;
+     253           9 :       cmd.velocity.y = uav_state.velocity.linear.y;
+     254           9 :       cmd.velocity.z = uav_state.velocity.linear.z;
+     255             : 
+     256           9 :       cmd.heading_rate = 0;
+     257             : 
+     258           9 :       control_output.control_output = cmd;
+     259             : 
+     260           9 :       break;
+     261             :     }
+     262             : 
+     263           5 :     case common::ACCELERATION_HDG: {
+     264             : 
+     265          10 :       mrs_msgs::HwApiAccelerationHdgCmd cmd;
+     266             : 
+     267           5 :       cmd.header.stamp    = ros::Time::now();
+     268           5 :       cmd.header.frame_id = uav_state.header.frame_id;
+     269             : 
+     270           5 :       cmd.acceleration.x = uav_state.acceleration.linear.x;
+     271           5 :       cmd.acceleration.y = uav_state.acceleration.linear.y;
+     272           5 :       cmd.acceleration.z = uav_state.acceleration.linear.z;
+     273             : 
+     274           5 :       cmd.heading = getHeadingSafely(uav_state, tracker_command);
+     275             : 
+     276           5 :       control_output.control_output = cmd;
+     277             : 
+     278           5 :       break;
+     279             :     }
+     280             : 
+     281           5 :     case common::ACCELERATION_HDG_RATE: {
+     282             : 
+     283          10 :       mrs_msgs::HwApiAccelerationHdgRateCmd cmd;
+     284             : 
+     285           5 :       cmd.header.stamp    = ros::Time::now();
+     286           5 :       cmd.header.frame_id = uav_state.header.frame_id;
+     287             : 
+     288           5 :       cmd.acceleration.x = uav_state.acceleration.linear.x;
+     289           5 :       cmd.acceleration.y = uav_state.acceleration.linear.y;
+     290           5 :       cmd.acceleration.z = uav_state.acceleration.linear.z;
+     291             : 
+     292           5 :       cmd.heading_rate = 0;
+     293             : 
+     294           5 :       control_output.control_output = cmd;
+     295             : 
+     296           5 :       break;
+     297             :     }
+     298             : 
+     299         189 :     case common::ATTITUDE: {
+     300             : 
+     301         189 :       mrs_msgs::HwApiAttitudeCmd cmd;
+     302             : 
+     303         189 :       cmd.stamp = ros::Time::now();
+     304             : 
+     305         189 :       cmd.orientation = uav_state.pose.orientation;
+     306         189 :       cmd.throttle    = hover_throttle_;
+     307             : 
+     308         189 :       control_output.control_output = cmd;
+     309             : 
+     310         189 :       break;
+     311             :     }
+     312             : 
+     313          29 :     case common::ATTITUDE_RATE: {
+     314             : 
+     315          29 :       mrs_msgs::HwApiAttitudeRateCmd cmd;
+     316             : 
+     317          29 :       cmd.stamp = ros::Time::now();
+     318             : 
+     319          29 :       cmd.body_rate.x = 0;
+     320          29 :       cmd.body_rate.y = 0;
+     321          29 :       cmd.body_rate.z = 0;
+     322             : 
+     323          29 :       cmd.throttle = hover_throttle_;
+     324             : 
+     325          29 :       control_output.control_output = cmd;
+     326             : 
+     327          29 :       break;
+     328             :     }
+     329             : 
+     330          19 :     case common::CONTROL_GROUP: {
+     331             : 
+     332          19 :       mrs_msgs::HwApiControlGroupCmd cmd;
+     333             : 
+     334          19 :       cmd.stamp = ros::Time::now();
+     335             : 
+     336          19 :       cmd.roll     = 0;
+     337          19 :       cmd.pitch    = 0;
+     338          19 :       cmd.yaw      = 0;
+     339          19 :       cmd.throttle = hover_throttle_;
+     340             : 
+     341          19 :       control_output.control_output = cmd;
+     342             : 
+     343          19 :       break;
+     344             :     }
+     345             : 
+     346          19 :     case common::ACTUATORS_CMD: {
+     347             : 
+     348          38 :       mrs_msgs::HwApiActuatorCmd cmd;
+     349             : 
+     350          19 :       cmd.stamp = ros::Time::now();
+     351             : 
+     352          95 :       for (int i = 0; i < common_handlers_->throttle_model.n_motors; i++) {
+     353          76 :         cmd.motors.push_back(hover_throttle_);
+     354             :       }
+     355             : 
+     356          19 :       control_output.control_output = cmd;
+     357             : 
+     358          19 :       break;
+     359             :     }
+     360             :   }
+     361             : 
+     362         283 :   return control_output;
+     363             : }  // namespace midair_activation_controller
+     364             : 
+     365             : //}
+     366             : 
+     367             : /* getStatus() //{ */
+     368             : 
+     369         102 : const mrs_msgs::ControllerStatus MidairActivationController::getStatus() {
+     370             : 
+     371         102 :   mrs_msgs::ControllerStatus controller_status;
+     372             : 
+     373         102 :   controller_status.active = is_active_;
+     374             : 
+     375         102 :   return controller_status;
+     376             : }
+     377             : 
+     378             : //}
+     379             : 
+     380             : /* switchOdometrySource() //{ */
+     381             : 
+     382           0 : void MidairActivationController::switchOdometrySource([[maybe_unused]] const mrs_msgs::UavState &new_uav_state) {
+     383           0 : }
+     384             : 
+     385             : //}
+     386             : 
+     387             : /* resetDisturbanceEstimators() //{ */
+     388             : 
+     389           0 : void MidairActivationController::resetDisturbanceEstimators(void) {
+     390           0 : }
+     391             : 
+     392             : //}
+     393             : 
+     394             : /* setConstraints() //{ */
+     395             : 
+     396         360 : const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr MidairActivationController::setConstraints([
+     397             :     [maybe_unused]] const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &constraints) {
+     398             : 
+     399         360 :   return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse());
+     400             : }
+     401             : 
+     402             : //}
+     403             : 
+     404             : /* getHeadingSafely() //{ */
+     405             : 
+     406          13 : double MidairActivationController::getHeadingSafely(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command) {
+     407             : 
+     408             :   try {
+     409          13 :     return mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+     410             :   }
+     411           0 :   catch (...) {
+     412             :   }
+     413             : 
+     414             :   try {
+     415           0 :     return mrs_lib::AttitudeConverter(uav_state.pose.orientation).getYaw();
+     416             :   }
+     417           0 :   catch (...) {
+     418             :   }
+     419             : 
+     420           0 :   if (tracker_command.use_heading) {
+     421           0 :     return tracker_command.heading;
+     422             :   }
+     423             : 
+     424           0 :   return 0;
+     425             : }
+     426             : 
+     427             : //}
+     428             : 
+     429             : }  // namespace midair_activation_controller
+     430             : 
+     431             : }  // namespace mrs_uav_controllers
+     432             : 
+     433             : #include <pluginlib/class_list_macros.h>
+     434          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_controllers::midair_activation_controller::MidairActivationController, mrs_uav_managers::Controller)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + diff --git a/mrs_uav_controllers/src/midair_activation_controller.cpp.gcov.png b/mrs_uav_controllers/src/midair_activation_controller.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..49f6832acd8e49470672760900f2d06888ca2a29 GIT binary patch literal 1228 zcmV;-1T*`IP);0000OP)t-s|NsB0 zs;a7|?_FK${{R500003000620&P%hU00009a7bBm000ie000ie0hKEb8vph4Hy$oLH;~?T|h?sE{F^y{nigeQwS&~b%McnB~@KD?`FrCR}1JerB z`tpc`p(qsvr?`mJYP(o^_aBZTKe^FMlq%#+_n`w!7&I8E78#6xR}J&Gq9x*3_Evvh zun+-#4j^u*0U{tcbe0W{aO#482VxHqa#70hs!`{o8eJivg0;&vg{FoIyt2JS^u7Yu1_<`hK&0f<5qD6I7WmN)ga?n_bI z7hQQSj-4jKD1hkk*v>Sa+|u7#mR}ae%ZEUEr)b}!T-?r|o{h-$QE)Rg&(n;FcK>&U zZbT)1Bi-~kYdvcm*O!E8Owl+oYI~Je)K(F7gll>VlPQ3hjf0738i48X`}jOI=c=v& zcs}AZ%Cn~!HNP zS4x-_hT_%A!1~;xGX7AQGF^>7T;=BL-AC8*Lh)`_`>5bPT!xRvwYoeS#4YgLbi+fO zay{875@xqUku0s&J(8c#rYD0VZ|AGiwOQdLg$@-Nh|@7vlgNBTOS7ERtSL&0Tp#0T z&$8&_@=p(iA6Z_5bZ|?!UvJDvrnSL@L~hOGT9ZvT-0q20JKgqNN0@R^TP3q)p{qJzPu~_kVzAwNe?obgTdz+? zqr|d=G|MVB*%t-_J~6f#3HNH4%Qy!yB-)hVZWZD#s56Rkqx14t;qB7>ESenC%X70hNB#R7%t54`RU+eO899}jWkU~WO&?XhAuq1H4}QIioLKK>RT zzjYekPM@yiNj#~T_EhYM$g3zKsWhC*+<<1{4`}^I8d=kN+6xD&hxtgAX6FEu%#-F# zV8Ga^fb2PdxYjscM1V@fv+LrD9K^I|p5l!T0tucEfls+p=UF@A1IUH`@U!_>B?K~5 zO3(XD%e~Sgc(f?}tln=go!cs8-lDlji!#SK-Eot9jccjW + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_controllers/src/mpc_controller.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_controllers/src - mpc_controller.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:73989482.7 %
Date:2024-04-17 23:52:03Functions:161888.9 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_controllers::mpc_controller::MpcController::callbackSetIntegralTerms(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_controllers::mpc_controller::MpcController::resetDisturbanceEstimators()0
mrs_uav_controllers::mpc_controller::MpcController::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)5
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_controllers::mpc_controller::MpcController::deactivate()157
mrs_uav_controllers::mpc_controller::MpcController::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)182
mrs_uav_controllers::mpc_controller::MpcController::callbackDrs(mrs_uav_controllers::mpc_controllerConfig&, unsigned int)182
mrs_uav_controllers::mpc_controller::MpcController::activate(mrs_uav_managers::Controller::ControlOutput const&)194
mrs_uav_controllers::mpc_controller::MpcController::positionPassthrough(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)234
mrs_uav_controllers::mpc_controller::MpcController::PIDVelocityOutput(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&, mrs_uav_controllers::common::CONTROL_OUTPUT const&, double const&)617
mrs_uav_controllers::mpc_controller::MpcController::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)720
mrs_uav_controllers::mpc_controller::MpcController::getStatus()12495
mrs_uav_controllers::mpc_controller::MpcController::timerGains(ros::TimerEvent const&)13636
mrs_uav_controllers::mpc_controller::MpcController::MPC(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&, double const&, mrs_uav_controllers::common::CONTROL_OUTPUT const&)55667
mrs_uav_controllers::mpc_controller::MpcController::getHeadingSafely(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)56284
mrs_uav_controllers::mpc_controller::MpcController::updateActive(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)56518
mrs_uav_controllers::mpc_controller::MpcController::calculateGainChange(double, double, double, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool&)109088
mrs_uav_controllers::mpc_controller::MpcController::updateInactive(mrs_msgs::UavState_<std::allocator<void> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)204318
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_controllers/src/mpc_controller.cpp.func.html b/mrs_uav_controllers/src/mpc_controller.cpp.func.html new file mode 100644 index 0000000000..ba876e6682 --- /dev/null +++ b/mrs_uav_controllers/src/mpc_controller.cpp.func.html @@ -0,0 +1,152 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_controllers/src/mpc_controller.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_controllers/src - mpc_controller.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:73989482.7 %
Date:2024-04-17 23:52:03Functions:161888.9 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_controllers::mpc_controller::MpcController::deactivate()157
mrs_uav_controllers::mpc_controller::MpcController::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)182
mrs_uav_controllers::mpc_controller::MpcController::timerGains(ros::TimerEvent const&)13636
mrs_uav_controllers::mpc_controller::MpcController::callbackDrs(mrs_uav_controllers::mpc_controllerConfig&, unsigned int)182
mrs_uav_controllers::mpc_controller::MpcController::updateActive(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)56518
mrs_uav_controllers::mpc_controller::MpcController::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)720
mrs_uav_controllers::mpc_controller::MpcController::updateInactive(mrs_msgs::UavState_<std::allocator<void> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)204318
mrs_uav_controllers::mpc_controller::MpcController::getHeadingSafely(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)56284
mrs_uav_controllers::mpc_controller::MpcController::PIDVelocityOutput(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&, mrs_uav_controllers::common::CONTROL_OUTPUT const&, double const&)617
mrs_uav_controllers::mpc_controller::MpcController::calculateGainChange(double, double, double, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool&)109088
mrs_uav_controllers::mpc_controller::MpcController::positionPassthrough(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)234
mrs_uav_controllers::mpc_controller::MpcController::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)5
mrs_uav_controllers::mpc_controller::MpcController::callbackSetIntegralTerms(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_controllers::mpc_controller::MpcController::resetDisturbanceEstimators()0
mrs_uav_controllers::mpc_controller::MpcController::MPC(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&, double const&, mrs_uav_controllers::common::CONTROL_OUTPUT const&)55667
mrs_uav_controllers::mpc_controller::MpcController::activate(mrs_uav_managers::Controller::ControlOutput const&)194
mrs_uav_controllers::mpc_controller::MpcController::getStatus()12495
+
+
+ + + +
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Current view:top level - mrs_uav_controllers/src - mpc_controller.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:73989482.7 %
Date:2024-04-17 23:52:03Functions:161888.9 %
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+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <ros/package.h>
+       5             : 
+       6             : #include <common.h>
+       7             : #include <pid.hpp>
+       8             : 
+       9             : #include <mrs_uav_managers/controller.h>
+      10             : 
+      11             : #include <mpc_controller.h>
+      12             : 
+      13             : #include <dynamic_reconfigure/server.h>
+      14             : #include <mrs_uav_controllers/mpc_controllerConfig.h>
+      15             : 
+      16             : #include <std_srvs/SetBool.h>
+      17             : 
+      18             : #include <mrs_lib/profiler.h>
+      19             : #include <mrs_lib/utils.h>
+      20             : #include <mrs_lib/mutex.h>
+      21             : #include <mrs_lib/attitude_converter.h>
+      22             : #include <mrs_lib/geometry/cyclic.h>
+      23             : 
+      24             : #include <geometry_msgs/Vector3Stamped.h>
+      25             : 
+      26             : //}
+      27             : 
+      28             : #define OUTPUT_ACTUATORS 0
+      29             : #define OUTPUT_CONTROL_GROUP 1
+      30             : #define OUTPUT_ATTITUDE_RATE 2
+      31             : #define OUTPUT_ATTITUDE 3
+      32             : 
+      33             : namespace mrs_uav_controllers
+      34             : {
+      35             : 
+      36             : namespace mpc_controller
+      37             : {
+      38             : 
+      39             : /* structs //{ */
+      40             : 
+      41             : typedef struct
+      42             : {
+      43             :   double kiwxy;          // world xy integral gain
+      44             :   double kibxy;          // body xy integral gain
+      45             :   double kiwxy_lim;      // world xy integral limit
+      46             :   double kibxy_lim;      // body xy integral limit
+      47             :   double km;             // mass estimator gain
+      48             :   double km_lim;         // mass estimator limit
+      49             :   double kq_roll_pitch;  // pitch/roll attitude gain
+      50             :   double kq_yaw;         // yaw attitude gain
+      51             :   double kw_rp;          // attitude rate gain
+      52             :   double kw_y;           // attitude rate gain
+      53             : } Gains_t;
+      54             : 
+      55             : //}
+      56             : 
+      57             : /* //{ class MpcController */
+      58             : 
+      59             : class MpcController : public mrs_uav_managers::Controller {
+      60             : 
+      61             : public:
+      62             :   bool initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      63             :                   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers);
+      64             : 
+      65             :   bool activate(const ControlOutput &last_control_output);
+      66             : 
+      67             :   void deactivate(void);
+      68             : 
+      69             :   void updateInactive(const mrs_msgs::UavState &uav_state, const std::optional<mrs_msgs::TrackerCommand> &tracker_command);
+      70             : 
+      71             :   ControlOutput updateActive(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command);
+      72             : 
+      73             :   const mrs_msgs::ControllerStatus getStatus();
+      74             : 
+      75             :   void switchOdometrySource(const mrs_msgs::UavState &new_uav_state);
+      76             : 
+      77             :   void resetDisturbanceEstimators(void);
+      78             : 
+      79             :   const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd);
+      80             : 
+      81             : private:
+      82             :   ros::NodeHandle nh_;
+      83             : 
+      84             :   bool is_initialized_ = false;
+      85             :   bool is_active_      = false;
+      86             : 
+      87             :   std::string name_;
+      88             : 
+      89             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>  common_handlers_;
+      90             :   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers_;
+      91             : 
+      92             :   // | ------------------------ uav state ----------------------- |
+      93             : 
+      94             :   mrs_msgs::UavState uav_state_;
+      95             :   std::mutex         mutex_uav_state_;
+      96             : 
+      97             :   // | --------------- dynamic reconfigure server --------------- |
+      98             : 
+      99             :   boost::recursive_mutex                            mutex_drs_;
+     100             :   typedef mrs_uav_controllers::mpc_controllerConfig DrsConfig_t;
+     101             :   typedef dynamic_reconfigure::Server<DrsConfig_t>  Drs_t;
+     102             :   boost::shared_ptr<Drs_t>                          drs_;
+     103             :   void                                              callbackDrs(mrs_uav_controllers::mpc_controllerConfig &config, uint32_t level);
+     104             :   DrsConfig_t                                       drs_params_;
+     105             : 
+     106             :   // | ----------------------- controllers ---------------------- |
+     107             : 
+     108             :   void positionPassthrough(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command);
+     109             : 
+     110             :   void PIDVelocityOutput(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command, const common::CONTROL_OUTPUT &control_output,
+     111             :                          const double &dt);
+     112             : 
+     113             :   void MPC(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command, const double &dt,
+     114             :            const common::CONTROL_OUTPUT &output_modality);
+     115             : 
+     116             :   // | ----------------------- constraints ---------------------- |
+     117             : 
+     118             :   mrs_msgs::DynamicsConstraints constraints_;
+     119             :   std::mutex                    mutex_constraints_;
+     120             : 
+     121             :   // | -------- throttle generation and mass estimation --------- |
+     122             : 
+     123             :   double _uav_mass_;
+     124             :   double uav_mass_difference_;
+     125             : 
+     126             :   Gains_t gains_;
+     127             : 
+     128             :   // | ------------------- configurable gains ------------------- |
+     129             : 
+     130             :   std::mutex mutex_gains_;       // locks the gains the are used and filtered
+     131             :   std::mutex mutex_drs_params_;  // locks the gains that came from the drs
+     132             : 
+     133             :   ros::Timer timer_gains_;
+     134             :   void       timerGains(const ros::TimerEvent &event);
+     135             : 
+     136             :   double _gain_filtering_rate_;
+     137             : 
+     138             :   // | --------------------- gain filtering --------------------- |
+     139             : 
+     140             :   double calculateGainChange(const double dt, const double current_value, const double desired_value, const bool bypass_rate, std::string name, bool &updated);
+     141             : 
+     142             :   double getHeadingSafely(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command);
+     143             : 
+     144             :   double _gains_filter_change_rate_;
+     145             :   double _gains_filter_min_change_rate_;
+     146             : 
+     147             :   // | ----------------------- gain muting ---------------------- |
+     148             : 
+     149             :   std::atomic<bool> mute_gains_            = false;
+     150             :   std::atomic<bool> mute_gains_by_tracker_ = false;
+     151             :   double            _gain_mute_coefficient_;
+     152             : 
+     153             :   // | ------------ controller limits and saturations ----------- |
+     154             : 
+     155             :   bool   _tilt_angle_failsafe_enabled_;
+     156             :   double _tilt_angle_failsafe_;
+     157             : 
+     158             :   double _throttle_saturation_;
+     159             : 
+     160             :   // | ------------------ activation and output ----------------- |
+     161             : 
+     162             :   ControlOutput last_control_output_;
+     163             :   ControlOutput activation_control_output_;
+     164             : 
+     165             :   ros::Time         last_update_time_;
+     166             :   std::atomic<bool> first_iteration_ = true;
+     167             : 
+     168             :   // | ----------------- integral terms enabler ----------------- |
+     169             : 
+     170             :   ros::ServiceServer service_set_integral_terms_;
+     171             :   bool               callbackSetIntegralTerms(std_srvs::SetBool::Request &req, std_srvs::SetBool::Response &res);
+     172             :   bool               integral_terms_enabled_ = true;
+     173             : 
+     174             :   // | --------------------- MPC controller --------------------- |
+     175             : 
+     176             :   // number of states
+     177             :   int _n_states_;
+     178             : 
+     179             :   // time steps
+     180             :   double _dt1_;  // the first time step
+     181             :   double _dt2_;  // all the other steps
+     182             : 
+     183             :   // the last control input
+     184             :   double mpc_solver_x_u_ = 0;
+     185             :   double mpc_solver_y_u_ = 0;
+     186             :   double mpc_solver_z_u_ = 0;
+     187             : 
+     188             :   int _horizon_length_;
+     189             : 
+     190             :   // constraints
+     191             :   double _max_speed_horizontal_, _max_acceleration_horizontal_, _max_jerk_;
+     192             :   double _max_speed_vertical_, _max_acceleration_vertical_, _max_u_vertical_;
+     193             : 
+     194             :   // Q and S matrix diagonals for horizontal
+     195             :   std::vector<double> _mat_Q_, _mat_S_;
+     196             : 
+     197             :   // Q and S matrix diagonals for vertical
+     198             :   std::vector<double> _mat_Q_z_, _mat_S_z_;
+     199             : 
+     200             :   // MPC solver handlers
+     201             :   std::shared_ptr<mrs_mpc_solvers::mpc_controller::Solver> mpc_solver_x_;
+     202             :   std::shared_ptr<mrs_mpc_solvers::mpc_controller::Solver> mpc_solver_y_;
+     203             :   std::shared_ptr<mrs_mpc_solvers::mpc_controller::Solver> mpc_solver_z_;
+     204             : 
+     205             :   // MPC solver params
+     206             :   bool _mpc_solver_verbose_ = false;
+     207             :   int  _mpc_solver_max_iterations_;
+     208             : 
+     209             :   // | ------------------------ profiler ------------------------ |
+     210             : 
+     211             :   mrs_lib::Profiler profiler_;
+     212             :   bool              _profiler_enabled_ = false;
+     213             : 
+     214             :   // | ------------------------ integrals ----------------------- |
+     215             : 
+     216             :   Eigen::Vector2d Ib_b_;  // body error integral in the body frame
+     217             :   Eigen::Vector2d Iw_w_;  // world error integral in the world_frame
+     218             :   std::mutex      mutex_integrals_;
+     219             : 
+     220             :   // | ------------------------- rampup ------------------------- |
+     221             : 
+     222             :   bool   _rampup_enabled_ = false;
+     223             :   double _rampup_speed_;
+     224             : 
+     225             :   bool      rampup_active_ = false;
+     226             :   double    rampup_throttle_;
+     227             :   int       rampup_direction_;
+     228             :   double    rampup_duration_;
+     229             :   ros::Time rampup_start_time_;
+     230             :   ros::Time rampup_last_time_;
+     231             : 
+     232             :   // | ---------------------- position pid ---------------------- |
+     233             : 
+     234             :   double _pos_pid_p_;
+     235             :   double _pos_pid_i_;
+     236             :   double _pos_pid_d_;
+     237             : 
+     238             :   double _hdg_pid_p_;
+     239             :   double _hdg_pid_i_;
+     240             :   double _hdg_pid_d_;
+     241             : 
+     242             :   PIDController position_pid_x_;
+     243             :   PIDController position_pid_y_;
+     244             :   PIDController position_pid_z_;
+     245             :   PIDController position_pid_heading_;
+     246             : };
+     247             : 
+     248             : //}
+     249             : 
+     250             : // --------------------------------------------------------------
+     251             : // |                   controller's interface                   |
+     252             : // --------------------------------------------------------------
+     253             : 
+     254             : /* //{ initialize() */
+     255             : 
+     256         182 : bool MpcController::initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+     257             :                                std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) {
+     258             : 
+     259         182 :   nh_ = nh;
+     260             : 
+     261         182 :   common_handlers_  = common_handlers;
+     262         182 :   private_handlers_ = private_handlers;
+     263             : 
+     264         182 :   _uav_mass_ = common_handlers_->getMass();
+     265         182 :   name_      = private_handlers_->runtime_name;
+     266             : 
+     267         182 :   ros::Time::waitForValid();
+     268             : 
+     269             :   // | ---------- loading params using the parent's nh ---------- |
+     270             : 
+     271         364 :   mrs_lib::ParamLoader param_loader_parent(common_handlers->parent_nh, "ControlManager");
+     272             : 
+     273         182 :   param_loader_parent.loadParam("enable_profiler", _profiler_enabled_);
+     274             : 
+     275         182 :   if (!param_loader_parent.loadedSuccessfully()) {
+     276           0 :     ROS_ERROR("[%s]: Could not load all parameters!", name_.c_str());
+     277           0 :     return false;
+     278             :   }
+     279             : 
+     280             :   // | -------------------- loading my params ------------------- |
+     281             : 
+     282         182 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_controllers") + "/config/private/mpc_controller.yaml");
+     283         182 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_controllers") + "/config/public/mpc_controller.yaml");
+     284         182 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_controllers") + "/config/private/" + private_handlers->name_space + ".yaml");
+     285         182 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_controllers") + "/config/public/" + private_handlers->name_space + ".yaml");
+     286             : 
+     287         364 :   const std::string yaml_namespace = "mrs_uav_controllers/" + private_handlers_->name_space + "/";
+     288             : 
+     289             :   // load the dynamicall model parameters
+     290         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_model/number_of_states", _n_states_);
+     291         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_model/dt1", _dt1_);
+     292         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_model/dt2", _dt2_);
+     293             : 
+     294         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_parameters/horizon_length", _horizon_length_);
+     295             : 
+     296         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_parameters/horizontal/max_speed", _max_speed_horizontal_);
+     297         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_parameters/horizontal/max_acceleration", _max_acceleration_horizontal_);
+     298         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_parameters/horizontal/max_jerk", _max_jerk_);
+     299             : 
+     300         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_parameters/horizontal/Q", _mat_Q_);
+     301         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_parameters/horizontal/S", _mat_S_);
+     302             : 
+     303         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_parameters/vertical/max_speed", _max_speed_vertical_);
+     304         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_parameters/vertical/max_acceleration", _max_acceleration_vertical_);
+     305         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_parameters/vertical/max_u", _max_u_vertical_);
+     306             : 
+     307         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_parameters/vertical/Q", _mat_Q_z_);
+     308         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/mpc_parameters/vertical/S", _mat_S_z_);
+     309             : 
+     310         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/solver/verbose", _mpc_solver_verbose_);
+     311         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "mpc/solver/max_iterations", _mpc_solver_max_iterations_);
+     312             : 
+     313             :   // | ------------------------- rampup ------------------------- |
+     314             : 
+     315         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/rampup/enabled", _rampup_enabled_);
+     316         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/rampup/speed", _rampup_speed_);
+     317             : 
+     318             :   // | --------------------- integral gains --------------------- |
+     319             : 
+     320         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gains/integral_gains/kiw", gains_.kiwxy);
+     321         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gains/integral_gains/kib", gains_.kibxy);
+     322             : 
+     323             :   // integrator limits
+     324         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gains/integral_gains/kiw_lim", gains_.kiwxy_lim);
+     325         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gains/integral_gains/kib_lim", gains_.kibxy_lim);
+     326             : 
+     327             :   // | ------------- height and attitude controller ------------- |
+     328             : 
+     329             :   // attitude gains
+     330         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gains/attitude/roll_pitch", gains_.kq_roll_pitch);
+     331         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gains/attitude/yaw", gains_.kq_yaw);
+     332             : 
+     333             :   // attitude rate gains
+     334         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gains/attitude_rate/roll_pitch", gains_.kw_rp);
+     335         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gains/attitude_rate/yaw", gains_.kw_y);
+     336             : 
+     337             :   // mass estimator
+     338         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/mass_estimator/km", gains_.km);
+     339         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/mass_estimator/km_lim", gains_.km_lim);
+     340             : 
+     341             :   // constraints
+     342         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/constraints/tilt_angle_failsafe/enabled", _tilt_angle_failsafe_enabled_);
+     343         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/constraints/tilt_angle_failsafe/limit", _tilt_angle_failsafe_);
+     344             : 
+     345         182 :   _tilt_angle_failsafe_ = M_PI * (_tilt_angle_failsafe_ / 180.0);
+     346             : 
+     347         182 :   if (_tilt_angle_failsafe_enabled_ && fabs(_tilt_angle_failsafe_) < 1e-3) {
+     348           0 :     ROS_ERROR("[%s]: constraints/tilt_angle_failsafe/enabled = 'TRUE' but the limit is too low", name_.c_str());
+     349           0 :     return false;
+     350             :   }
+     351             : 
+     352         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/constraints/throttle_saturation", _throttle_saturation_);
+     353             : 
+     354             :   // gain filtering
+     355         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gain_filtering/perc_change_rate", _gains_filter_change_rate_);
+     356         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gain_filtering/min_change_rate", _gains_filter_min_change_rate_);
+     357         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gain_filtering/rate", _gain_filtering_rate_);
+     358         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/gain_filtering/gain_mute_coefficient", _gain_mute_coefficient_);
+     359             : 
+     360             :   // angular rate feed forward
+     361         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/angular_rate_feedforward/jerk", drs_params_.jerk_feedforward);
+     362             : 
+     363             :   // output mode
+     364         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "so3/preferred_output", drs_params_.preferred_output_mode);
+     365             : 
+     366             :   // | ------------------- position pid params ------------------ |
+     367             : 
+     368         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/translation_gains/p", _pos_pid_p_);
+     369         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/translation_gains/i", _pos_pid_i_);
+     370         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/translation_gains/d", _pos_pid_d_);
+     371             : 
+     372         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/heading_gains/p", _hdg_pid_p_);
+     373         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/heading_gains/i", _hdg_pid_i_);
+     374         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/heading_gains/d", _hdg_pid_d_);
+     375             : 
+     376         182 :   if (!private_handlers->param_loader->loadedSuccessfully()) {
+     377           0 :     ROS_ERROR("[%s]: Could not load all parameters!", this->name_.c_str());
+     378           0 :     return false;
+     379             :   }
+     380             : 
+     381             :   // | ---------------- prepare stuff from params --------------- |
+     382             : 
+     383         182 :   if (!(drs_params_.preferred_output_mode == OUTPUT_ACTUATORS || drs_params_.preferred_output_mode == OUTPUT_CONTROL_GROUP ||
+     384         182 :         drs_params_.preferred_output_mode == OUTPUT_ATTITUDE_RATE || drs_params_.preferred_output_mode == OUTPUT_ATTITUDE)) {
+     385           0 :     ROS_ERROR("[%s]: preferred output mode has to be {0, 1, 2, 3}!", this->name_.c_str());
+     386           0 :     return false;
+     387             :   }
+     388             : 
+     389         182 :   uav_mass_difference_ = 0;
+     390         182 :   Iw_w_                = Eigen::Vector2d::Zero(2);
+     391         182 :   Ib_b_                = Eigen::Vector2d::Zero(2);
+     392             : 
+     393             :   // | ----------------- prepare the MPC solver ----------------- |
+     394             : 
+     395         182 :   mpc_solver_x_ = std::make_shared<mrs_mpc_solvers::mpc_controller::Solver>(name_, _mpc_solver_verbose_, _mpc_solver_max_iterations_, _mat_Q_, _mat_S_, _dt1_,
+     396         182 :                                                                             _dt2_, 0, 1.0);
+     397         182 :   mpc_solver_y_ = std::make_shared<mrs_mpc_solvers::mpc_controller::Solver>(name_, _mpc_solver_verbose_, _mpc_solver_max_iterations_, _mat_Q_, _mat_S_, _dt1_,
+     398         182 :                                                                             _dt2_, 0, 1.0);
+     399         182 :   mpc_solver_z_ = std::make_shared<mrs_mpc_solvers::mpc_controller::Solver>(name_, _mpc_solver_verbose_, _mpc_solver_max_iterations_, _mat_Q_z_, _mat_S_z_,
+     400         182 :                                                                             _dt1_, _dt2_, 0.5, 0.5);
+     401             : 
+     402             :   // | --------------- dynamic reconfigure server --------------- |
+     403             : 
+     404         182 :   drs_params_.kiwxy         = gains_.kiwxy;
+     405         182 :   drs_params_.kibxy         = gains_.kibxy;
+     406         182 :   drs_params_.kq_roll_pitch = gains_.kq_roll_pitch;
+     407         182 :   drs_params_.kq_yaw        = gains_.kq_yaw;
+     408         182 :   drs_params_.km            = gains_.km;
+     409         182 :   drs_params_.km_lim        = gains_.km_lim;
+     410         182 :   drs_params_.kiwxy_lim     = gains_.kiwxy_lim;
+     411         182 :   drs_params_.kibxy_lim     = gains_.kibxy_lim;
+     412             : 
+     413         182 :   drs_.reset(new Drs_t(mutex_drs_, nh_));
+     414         182 :   drs_->updateConfig(drs_params_);
+     415         182 :   Drs_t::CallbackType f = boost::bind(&MpcController::callbackDrs, this, _1, _2);
+     416         182 :   drs_->setCallback(f);
+     417             : 
+     418             :   // | --------------------- service servers -------------------- |
+     419             : 
+     420         182 :   service_set_integral_terms_ = nh_.advertiseService("set_integral_terms_in", &MpcController::callbackSetIntegralTerms, this);
+     421             : 
+     422             :   // | ------------------------- timers ------------------------- |
+     423             : 
+     424         182 :   timer_gains_ = nh_.createTimer(ros::Rate(_gain_filtering_rate_), &MpcController::timerGains, this, false, false);
+     425             : 
+     426             :   // | ---------------------- position pid ---------------------- |
+     427             : 
+     428         182 :   position_pid_x_.setParams(_pos_pid_p_, _pos_pid_d_, _pos_pid_i_, -1, 1.0);
+     429         182 :   position_pid_y_.setParams(_pos_pid_p_, _pos_pid_d_, _pos_pid_i_, -1, 1.0);
+     430         182 :   position_pid_z_.setParams(_pos_pid_p_, _pos_pid_d_, _pos_pid_i_, -1, 1.0);
+     431         182 :   position_pid_heading_.setParams(_hdg_pid_p_, _hdg_pid_d_, _hdg_pid_i_, -1, 0.1);
+     432             : 
+     433             :   // | ------------------------ profiler ------------------------ |
+     434             : 
+     435         182 :   profiler_ = mrs_lib::Profiler(common_handlers->parent_nh, "MpcController", _profiler_enabled_);
+     436             : 
+     437             :   // | ----------------------- finish init ---------------------- |
+     438             : 
+     439         182 :   ROS_INFO("[%s]: initialized", this->name_.c_str());
+     440             : 
+     441         182 :   is_initialized_ = true;
+     442             : 
+     443         182 :   return true;
+     444             : }
+     445             : 
+     446             : //}
+     447             : 
+     448             : /* //{ activate() */
+     449             : 
+     450         194 : bool MpcController::activate(const ControlOutput &last_control_output) {
+     451             : 
+     452         194 :   activation_control_output_ = last_control_output;
+     453             : 
+     454         194 :   double activation_mass = _uav_mass_;
+     455             : 
+     456         194 :   if (activation_control_output_.diagnostics.mass_estimator) {
+     457           7 :     uav_mass_difference_ = activation_control_output_.diagnostics.mass_difference;
+     458           7 :     activation_mass += uav_mass_difference_;
+     459           7 :     ROS_INFO("[%s]: setting mass difference from the last control output: %.2f kg", this->name_.c_str(), uav_mass_difference_);
+     460             :   }
+     461             : 
+     462         194 :   last_control_output_.diagnostics.controller_enforcing_constraints = false;
+     463             : 
+     464         194 :   if (activation_control_output_.diagnostics.disturbance_estimator) {
+     465           7 :     Ib_b_[0] = -activation_control_output_.diagnostics.disturbance_bx_b;
+     466           7 :     Ib_b_[1] = -activation_control_output_.diagnostics.disturbance_by_b;
+     467             : 
+     468           7 :     Iw_w_[0] = -activation_control_output_.diagnostics.disturbance_wx_w;
+     469           7 :     Iw_w_[1] = -activation_control_output_.diagnostics.disturbance_wy_w;
+     470             : 
+     471           7 :     ROS_INFO(
+     472             :         "[%s]: setting disturbances from the last control output: Ib_b_: %.2f, %.2f N, Iw_w_: "
+     473             :         "%.2f, %.2f N",
+     474             :         this->name_.c_str(), Ib_b_[0], Ib_b_[1], Iw_w_[0], Iw_w_[1]);
+     475             :   }
+     476             : 
+     477             :   // did the last controller use manual throttle control?
+     478         194 :   auto throttle_last_controller = common::extractThrottle(activation_control_output_);
+     479             : 
+     480             :   // rampup check
+     481         194 :   if (_rampup_enabled_ && throttle_last_controller) {
+     482             : 
+     483          66 :     double hover_throttle = mrs_lib::quadratic_throttle_model::forceToThrottle(common_handlers_->throttle_model, activation_mass * common_handlers_->g);
+     484             : 
+     485          66 :     double throttle_difference = hover_throttle - throttle_last_controller.value();
+     486             : 
+     487          66 :     if (throttle_difference > 0) {
+     488          34 :       rampup_direction_ = 1;
+     489          32 :     } else if (throttle_difference < 0) {
+     490           3 :       rampup_direction_ = -1;
+     491             :     } else {
+     492          29 :       rampup_direction_ = 0;
+     493             :     }
+     494             : 
+     495          66 :     ROS_INFO("[%s]: activating rampup with initial throttle: %.4f, target: %.4f", name_.c_str(), throttle_last_controller.value(), hover_throttle);
+     496             : 
+     497          66 :     rampup_active_     = true;
+     498          66 :     rampup_start_time_ = ros::Time::now();
+     499          66 :     rampup_last_time_  = ros::Time::now();
+     500          66 :     rampup_throttle_   = throttle_last_controller.value();
+     501             : 
+     502          66 :     rampup_duration_ = fabs(throttle_difference) / _rampup_speed_;
+     503             :   }
+     504             : 
+     505         194 :   first_iteration_ = true;
+     506         194 :   mute_gains_      = true;
+     507             : 
+     508         194 :   timer_gains_.start();
+     509             : 
+     510         194 :   ROS_INFO("[%s]: activated", this->name_.c_str());
+     511             : 
+     512         194 :   is_active_ = true;
+     513             : 
+     514         194 :   return true;
+     515             : }
+     516             : 
+     517             : //}
+     518             : 
+     519             : /* //{ deactivate() */
+     520             : 
+     521         157 : void MpcController::deactivate(void) {
+     522             : 
+     523         157 :   is_active_           = false;
+     524         157 :   first_iteration_     = false;
+     525         157 :   uav_mass_difference_ = 0;
+     526             : 
+     527         157 :   timer_gains_.stop();
+     528             : 
+     529         157 :   ROS_INFO("[%s]: deactivated", this->name_.c_str());
+     530         157 : }
+     531             : 
+     532             : //}
+     533             : 
+     534             : /* updateInactive() //{ */
+     535             : 
+     536      204318 : void MpcController::updateInactive(const mrs_msgs::UavState &uav_state, [[maybe_unused]] const std::optional<mrs_msgs::TrackerCommand> &tracker_command) {
+     537             : 
+     538      204318 :   mrs_lib::set_mutexed(mutex_uav_state_, uav_state, uav_state_);
+     539             : 
+     540      204318 :   last_update_time_ = uav_state.header.stamp;
+     541             : 
+     542      204318 :   first_iteration_ = false;
+     543      204318 : }
+     544             : 
+     545             : //}
+     546             : 
+     547             : /* //{ updateWhenAcctive() */
+     548             : 
+     549       56518 : MpcController::ControlOutput MpcController::updateActive(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command) {
+     550             : 
+     551      169554 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("updateActive");
+     552      169554 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("MpcController::updateActive", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+     553             : 
+     554      113036 :   auto drs_params = mrs_lib::get_mutexed(mutex_drs_params_, drs_params_);
+     555             : 
+     556       56518 :   mrs_lib::set_mutexed(mutex_uav_state_, uav_state, uav_state_);
+     557             : 
+     558       56518 :   last_control_output_.desired_heading_rate          = {};
+     559       56518 :   last_control_output_.desired_orientation           = {};
+     560       56518 :   last_control_output_.desired_unbiased_acceleration = {};
+     561       56518 :   last_control_output_.control_output                = {};
+     562             : 
+     563       56518 :   if (!is_active_) {
+     564           0 :     return last_control_output_;
+     565             :   }
+     566             : 
+     567             :   // | -------------------- calculate the dt -------------------- |
+     568             : 
+     569             :   double dt;
+     570             : 
+     571       56518 :   if (first_iteration_) {
+     572          66 :     dt               = 0.01;
+     573          66 :     first_iteration_ = false;
+     574             :   } else {
+     575       56452 :     dt = (uav_state.header.stamp - last_update_time_).toSec();
+     576             :   }
+     577             : 
+     578       56518 :   last_update_time_ = uav_state.header.stamp;
+     579             : 
+     580       56518 :   if (fabs(dt) < 0.001) {
+     581             : 
+     582           0 :     ROS_DEBUG("[%s]: the last odometry message came too close (%.2f s)!", name_.c_str(), dt);
+     583             : 
+     584           0 :     dt = 0.01;
+     585             :   }
+     586             : 
+     587             :   // | ----------- obtain the lowest possible modality ---------- |
+     588             : 
+     589       56518 :   auto lowest_modality = common::getLowestOuput(common_handlers_->control_output_modalities);
+     590             : 
+     591       56518 :   if (!lowest_modality) {
+     592             : 
+     593           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: output modalities are empty! This error should never appear.", name_.c_str());
+     594             : 
+     595           0 :     return last_control_output_;
+     596             :   }
+     597             : 
+     598             :   // | ----- we might prefer some output mode over the other ---- |
+     599             : 
+     600       56518 :   if (drs_params.preferred_output_mode == OUTPUT_ATTITUDE_RATE && common_handlers_->control_output_modalities.attitude_rate) {
+     601       51286 :     ROS_DEBUG_THROTTLE(1.0, "[%s]: prioritizing attitude rate output", name_.c_str());
+     602       51286 :     lowest_modality = common::ATTITUDE_RATE;
+     603        5232 :   } else if (drs_params.preferred_output_mode == OUTPUT_ATTITUDE && common_handlers_->control_output_modalities.attitude) {
+     604           0 :     ROS_DEBUG_THROTTLE(1.0, "[%s]: prioritizing attitude output", name_.c_str());
+     605           0 :     lowest_modality = common::ATTITUDE;
+     606        5232 :   } else if (drs_params.preferred_output_mode == OUTPUT_CONTROL_GROUP && common_handlers_->control_output_modalities.control_group) {
+     607           0 :     ROS_DEBUG_THROTTLE(1.0, "[%s]: prioritizing control group output", name_.c_str());
+     608           0 :     lowest_modality = common::CONTROL_GROUP;
+     609        5232 :   } else if (drs_params.preferred_output_mode == OUTPUT_ACTUATORS && common_handlers_->control_output_modalities.actuators) {
+     610           0 :     ROS_DEBUG_THROTTLE(1.0, "[%s]: prioritizing actuators output", name_.c_str());
+     611           0 :     lowest_modality = common::ACTUATORS_CMD;
+     612             :   }
+     613             : 
+     614       56518 :   switch (lowest_modality.value()) {
+     615             : 
+     616         234 :     case common::POSITION: {
+     617         234 :       positionPassthrough(uav_state, tracker_command);
+     618         234 :       break;
+     619             :     }
+     620             : 
+     621         249 :     case common::VELOCITY_HDG: {
+     622         249 :       PIDVelocityOutput(uav_state, tracker_command, common::VELOCITY_HDG, dt);
+     623         249 :       break;
+     624             :     }
+     625             : 
+     626         368 :     case common::VELOCITY_HDG_RATE: {
+     627         368 :       PIDVelocityOutput(uav_state, tracker_command, common::VELOCITY_HDG_RATE, dt);
+     628         368 :       break;
+     629             :     }
+     630             : 
+     631         450 :     case common::ACCELERATION_HDG: {
+     632         450 :       MPC(uav_state, tracker_command, dt, common::ACCELERATION_HDG);
+     633         450 :       break;
+     634             :     }
+     635             : 
+     636         482 :     case common::ACCELERATION_HDG_RATE: {
+     637         482 :       MPC(uav_state, tracker_command, dt, common::ACCELERATION_HDG_RATE);
+     638         482 :       break;
+     639             :     }
+     640             : 
+     641        1086 :     case common::ATTITUDE: {
+     642        1086 :       MPC(uav_state, tracker_command, dt, common::ATTITUDE);
+     643        1086 :       break;
+     644             :     }
+     645             : 
+     646       51286 :     case common::ATTITUDE_RATE: {
+     647       51286 :       MPC(uav_state, tracker_command, dt, common::ATTITUDE_RATE);
+     648       51286 :       break;
+     649             :     }
+     650             : 
+     651        1178 :     case common::CONTROL_GROUP: {
+     652        1178 :       MPC(uav_state, tracker_command, dt, common::CONTROL_GROUP);
+     653        1178 :       break;
+     654             :     }
+     655             : 
+     656        1185 :     case common::ACTUATORS_CMD: {
+     657        1185 :       MPC(uav_state, tracker_command, dt, common::ACTUATORS_CMD);
+     658        1185 :       break;
+     659             :     }
+     660             : 
+     661           0 :     default: {
+     662           0 :       break;
+     663             :     }
+     664             :   }
+     665             : 
+     666       56518 :   return last_control_output_;
+     667             : }
+     668             : 
+     669             : //}
+     670             : 
+     671             : /* //{ getStatus() */
+     672             : 
+     673       12495 : const mrs_msgs::ControllerStatus MpcController::getStatus() {
+     674             : 
+     675       12495 :   mrs_msgs::ControllerStatus controller_status;
+     676             : 
+     677       12495 :   controller_status.active = is_active_;
+     678             : 
+     679       12495 :   return controller_status;
+     680             : }
+     681             : 
+     682             : //}
+     683             : 
+     684             : /* switchOdometrySource() //{ */
+     685             : 
+     686           5 : void MpcController::switchOdometrySource(const mrs_msgs::UavState &new_uav_state) {
+     687             : 
+     688           5 :   ROS_INFO("[%s]: switching the odometry source", this->name_.c_str());
+     689             : 
+     690          10 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     691             : 
+     692             :   // | ----- transform world disturabances to the new frame ----- |
+     693             : 
+     694          10 :   geometry_msgs::Vector3Stamped world_integrals;
+     695             : 
+     696           5 :   world_integrals.header.stamp    = ros::Time::now();
+     697           5 :   world_integrals.header.frame_id = uav_state.header.frame_id;
+     698             : 
+     699           5 :   world_integrals.vector.x = Iw_w_[0];
+     700           5 :   world_integrals.vector.y = Iw_w_[1];
+     701           5 :   world_integrals.vector.z = 0;
+     702             : 
+     703          10 :   auto res = common_handlers_->transformer->transformSingle(world_integrals, new_uav_state.header.frame_id);
+     704             : 
+     705           5 :   if (res) {
+     706             : 
+     707           5 :     std::scoped_lock lock(mutex_integrals_);
+     708             : 
+     709           5 :     Iw_w_[0] = res.value().vector.x;
+     710           5 :     Iw_w_[1] = res.value().vector.y;
+     711             : 
+     712             :   } else {
+     713             : 
+     714           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: could not transform world integral to the new frame", this->name_.c_str());
+     715             : 
+     716           0 :     std::scoped_lock lock(mutex_integrals_);
+     717             : 
+     718           0 :     Iw_w_[0] = 0;
+     719           0 :     Iw_w_[1] = 0;
+     720             :   }
+     721           5 : }
+     722             : 
+     723             : //}
+     724             : 
+     725             : /* resetDisturbanceEstimators() //{ */
+     726             : 
+     727           0 : void MpcController::resetDisturbanceEstimators(void) {
+     728             : 
+     729           0 :   std::scoped_lock lock(mutex_integrals_);
+     730             : 
+     731           0 :   Iw_w_ = Eigen::Vector2d::Zero(2);
+     732           0 :   Ib_b_ = Eigen::Vector2d::Zero(2);
+     733           0 : }
+     734             : 
+     735             : //}
+     736             : 
+     737             : /* setConstraints() //{ */
+     738             : 
+     739         720 : const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr MpcController::setConstraints([
+     740             :     [maybe_unused]] const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &constraints) {
+     741             : 
+     742         720 :   if (!is_initialized_) {
+     743           0 :     return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse());
+     744             :   }
+     745             : 
+     746         720 :   mrs_lib::set_mutexed(mutex_constraints_, constraints->constraints, constraints_);
+     747             : 
+     748         720 :   ROS_INFO("[%s]: updating constraints", this->name_.c_str());
+     749             : 
+     750        1440 :   mrs_msgs::DynamicsConstraintsSrvResponse res;
+     751         720 :   res.success = true;
+     752         720 :   res.message = "constraints updated";
+     753             : 
+     754         720 :   return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse(res));
+     755             : }
+     756             : 
+     757             : //}
+     758             : 
+     759             : // --------------------------------------------------------------
+     760             : // |                         controllers                        |
+     761             : // --------------------------------------------------------------
+     762             : 
+     763             : /* Mpc() //{ */
+     764             : 
+     765       55667 : void MpcController::MPC(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command, const double &dt,
+     766             :                         const common::CONTROL_OUTPUT &output_modality) {
+     767             : 
+     768      111334 :   auto drs_params  = mrs_lib::get_mutexed(mutex_drs_params_, drs_params_);
+     769       55667 :   auto constraints = mrs_lib::get_mutexed(mutex_constraints_, constraints_);
+     770       55667 :   auto gains       = mrs_lib::get_mutexed(mutex_gains_, gains_);
+     771             : 
+     772             :   // | ----------------- get the current heading ---------------- |
+     773             : 
+     774       55667 :   double uav_heading = getHeadingSafely(uav_state, tracker_command);
+     775             : 
+     776             :   // | ------------------- prepare constraints ------------------ |
+     777             : 
+     778       55667 :   double max_speed_horizontal        = _max_speed_horizontal_;
+     779       55667 :   double max_speed_vertical          = _max_speed_vertical_;
+     780       55667 :   double max_acceleration_horizontal = _max_acceleration_horizontal_;
+     781       55667 :   double max_acceleration_vertical   = _max_acceleration_vertical_;
+     782       55667 :   double max_jerk                    = _max_jerk_;
+     783       55667 :   double max_u_vertical              = _max_u_vertical_;
+     784             : 
+     785       55667 :   if (tracker_command.use_full_state_prediction) {
+     786             : 
+     787       36703 :     max_speed_horizontal = 1.5 * (constraints.horizontal_speed);
+     788       36703 :     max_speed_vertical   = 1.5 * (constraints.vertical_ascending_speed < constraints.vertical_descending_speed ? constraints.vertical_ascending_speed
+     789             :                                                                                                              : constraints.vertical_descending_speed);
+     790             : 
+     791       36703 :     max_acceleration_horizontal = 1.5 * (constraints.horizontal_acceleration);
+     792       36703 :     max_acceleration_vertical =
+     793       36703 :         1.5 * (constraints.vertical_ascending_acceleration < constraints.vertical_descending_acceleration ? constraints.vertical_ascending_acceleration
+     794             :                                                                                                           : constraints.vertical_descending_acceleration);
+     795             : 
+     796       36703 :     max_jerk       = 1.5 * constraints.horizontal_jerk;
+     797       36703 :     max_u_vertical = 1.5 * (constraints.vertical_ascending_jerk < constraints.vertical_descending_jerk ? constraints.vertical_ascending_jerk
+     798             :                                                                                                        : constraints.vertical_descending_jerk);
+     799             :   }
+     800             : 
+     801             :   // --------------------------------------------------------------
+     802             :   // |          load the control reference and estimates          |
+     803             :   // --------------------------------------------------------------
+     804             : 
+     805             :   // Rp - position reference in global frame
+     806             :   // Rv - velocity reference in global frame
+     807             :   // Ra - velocity reference in global frame
+     808             : 
+     809       55667 :   Eigen::Vector3d Rp = Eigen::Vector3d::Zero(3);
+     810       55667 :   Eigen::Vector3d Rv = Eigen::Vector3d::Zero(3);
+     811       55667 :   Eigen::Vector3d Ra = Eigen::Vector3d::Zero(3);
+     812             : 
+     813       55667 :   Rp << tracker_command.position.x, tracker_command.position.y, tracker_command.position.z;  // fill the desired position
+     814       55667 :   Rv << tracker_command.velocity.x, tracker_command.velocity.y, tracker_command.velocity.z;
+     815             : 
+     816             :   // | ------ store the estimated values from the uav state ----- |
+     817             : 
+     818             :   // Op - position in global frame
+     819             :   // Ov - velocity in global frame
+     820       55667 :   Eigen::Vector3d Op(uav_state.pose.position.x, uav_state.pose.position.y, uav_state.pose.position.z);
+     821       55667 :   Eigen::Vector3d Ov(uav_state.velocity.linear.x, uav_state.velocity.linear.y, uav_state.velocity.linear.z);
+     822             : 
+     823             :   // R - current uav attitude
+     824       55667 :   Eigen::Matrix3d R = mrs_lib::AttitudeConverter(uav_state.pose.orientation);
+     825             : 
+     826             :   // Ow - UAV angular rate
+     827       55667 :   Eigen::Vector3d Ow(uav_state.velocity.angular.x, uav_state.velocity.angular.y, uav_state.velocity.angular.z);
+     828             : 
+     829             :   // --------------------------------------------------------------
+     830             :   // |                     MPC lateral control                    |
+     831             :   // --------------------------------------------------------------
+     832             : 
+     833             :   // | --------------- calculate the control erros -------------- |
+     834             : 
+     835       55667 :   Eigen::Vector3d Ep = Rp - Op;
+     836       55667 :   Eigen::Vector3d Ev = Rv - Ov;
+     837             : 
+     838             :   // | ------------------- initial conditions ------------------- |
+     839             : 
+     840      111334 :   Eigen::MatrixXd initial_x = Eigen::MatrixXd::Zero(3, 1);
+     841      111334 :   Eigen::MatrixXd initial_y = Eigen::MatrixXd::Zero(3, 1);
+     842      111334 :   Eigen::MatrixXd initial_z = Eigen::MatrixXd::Zero(3, 1);
+     843             : 
+     844             :   /* initial x //{ */
+     845             : 
+     846             :   {
+     847             :     double acceleration;
+     848             :     double velocity;
+     849       55667 :     double coef = 1.5;
+     850             : 
+     851       55667 :     if (fabs(uav_state.acceleration.linear.x) < coef * max_acceleration_horizontal) {
+     852       55667 :       acceleration = uav_state.acceleration.linear.x;
+     853             :     } else {
+     854           0 :       acceleration = tracker_command.acceleration.x;
+     855             : 
+     856           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: odometry x acceleration exceeds constraints (%.2f > %.1f * %.2f m), using reference for initial condition", name_.c_str(),
+     857             :                          fabs(uav_state.acceleration.linear.x), coef, max_acceleration_horizontal);
+     858             :     }
+     859             : 
+     860       55667 :     if (fabs(uav_state.velocity.linear.x) < coef * max_speed_horizontal) {
+     861       55667 :       velocity = uav_state.velocity.linear.x;
+     862             :     } else {
+     863           0 :       velocity = tracker_command.velocity.x;
+     864             : 
+     865           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: odometry x velocity exceeds constraints (%.2f > %0.1f * %.2f m), using reference for initial condition", name_.c_str(),
+     866             :                          fabs(uav_state.velocity.linear.x), coef, max_speed_horizontal);
+     867             :     }
+     868             : 
+     869       55667 :     initial_x << uav_state.pose.position.x, velocity, acceleration;
+     870             :   }
+     871             : 
+     872             :   //}
+     873             : 
+     874             :   /* initial y //{ */
+     875             : 
+     876             :   {
+     877             :     double acceleration;
+     878             :     double velocity;
+     879       55667 :     double coef = 1.5;
+     880             : 
+     881       55667 :     if (fabs(uav_state.acceleration.linear.y) < coef * max_acceleration_horizontal) {
+     882       55667 :       acceleration = uav_state.acceleration.linear.y;
+     883             :     } else {
+     884           0 :       acceleration = tracker_command.acceleration.y;
+     885             : 
+     886           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: odometry y acceleration exceeds constraints (%.2f > %.1f * %.2f m), using reference for initial condition", name_.c_str(),
+     887             :                          fabs(uav_state.acceleration.linear.y), coef, max_acceleration_horizontal);
+     888             :     }
+     889             : 
+     890       55667 :     if (fabs(uav_state.velocity.linear.y) < coef * max_speed_horizontal) {
+     891       55667 :       velocity = uav_state.velocity.linear.y;
+     892             :     } else {
+     893           0 :       velocity = tracker_command.velocity.y;
+     894             : 
+     895           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: odometry y velocity exceeds constraints (%.2f > %0.1f * %.2f m), using reference for initial condition", name_.c_str(),
+     896             :                          fabs(uav_state.velocity.linear.y), coef, max_speed_horizontal);
+     897             :     }
+     898             : 
+     899       55667 :     initial_y << uav_state.pose.position.y, velocity, acceleration;
+     900             :   }
+     901             : 
+     902             :   //}
+     903             : 
+     904             :   /* initial z //{ */
+     905             : 
+     906             :   {
+     907             :     double acceleration;
+     908             :     double velocity;
+     909       55667 :     double coef = 1.5;
+     910             : 
+     911       55667 :     if (fabs(uav_state.acceleration.linear.z) < coef * max_acceleration_horizontal) {
+     912       55667 :       acceleration = uav_state.acceleration.linear.z;
+     913             :     } else {
+     914           0 :       acceleration = tracker_command.acceleration.z;
+     915             : 
+     916           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: odometry z acceleration exceeds constraints (%.2f > %.1f * %.2f m), using reference for initial condition", name_.c_str(),
+     917             :                          fabs(uav_state.acceleration.linear.z), coef, max_acceleration_horizontal);
+     918             :     }
+     919             : 
+     920       55667 :     if (fabs(uav_state.velocity.linear.z) < coef * max_speed_vertical) {
+     921       55667 :       velocity = uav_state.velocity.linear.z;
+     922             :     } else {
+     923           0 :       velocity = tracker_command.velocity.z;
+     924             : 
+     925           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: odometry z velocity exceeds constraints (%.2f > %0.1f * %.2f m), using reference for initial condition", name_.c_str(),
+     926             :                          fabs(uav_state.velocity.linear.z), coef, max_speed_vertical);
+     927             :     }
+     928             : 
+     929       55667 :     initial_z << uav_state.pose.position.z, velocity, acceleration;
+     930             :   }
+     931             : 
+     932             :   //}
+     933             : 
+     934             :   // | ---------------------- set reference --------------------- |
+     935             : 
+     936      111334 :   Eigen::MatrixXd mpc_reference_x = Eigen::MatrixXd::Zero(_horizon_length_ * _n_states_, 1);
+     937      111334 :   Eigen::MatrixXd mpc_reference_y = Eigen::MatrixXd::Zero(_horizon_length_ * _n_states_, 1);
+     938      111334 :   Eigen::MatrixXd mpc_reference_z = Eigen::MatrixXd::Zero(_horizon_length_ * _n_states_, 1);
+     939             : 
+     940             :   // prepare the full reference vector
+     941       55667 :   if (tracker_command.use_full_state_prediction) {
+     942             : 
+     943       36703 :     mpc_reference_x(0, 0) = tracker_command.position.x;
+     944       36703 :     mpc_reference_y(0, 0) = tracker_command.position.y;
+     945       36703 :     mpc_reference_z(0, 0) = tracker_command.position.z;
+     946             : 
+     947             :     // TODO !! this is a very crude way of sampling from the desired full-state prediction, which only works
+     948             :     // with the MpcTracker. Rework this please.
+     949             : 
+     950      954278 :     for (int i = 1; i < _horizon_length_; i++) {
+     951      917575 :       mpc_reference_x((i * _n_states_) + 0, 0) = tracker_command.full_state_prediction.position[i].x;
+     952      917575 :       mpc_reference_y((i * _n_states_) + 0, 0) = tracker_command.full_state_prediction.position[i].y;
+     953      917575 :       mpc_reference_z((i * _n_states_) + 0, 0) = tracker_command.full_state_prediction.position[i].z;
+     954             :     }
+     955             : 
+     956      954278 :     for (int i = 1; i < _horizon_length_; i++) {
+     957      917575 :       mpc_reference_x((i * _n_states_) + 1, 0) = tracker_command.full_state_prediction.velocity[i].x;
+     958      917575 :       mpc_reference_y((i * _n_states_) + 1, 0) = tracker_command.full_state_prediction.velocity[i].y;
+     959      917575 :       mpc_reference_z((i * _n_states_) + 1, 0) = tracker_command.full_state_prediction.velocity[i].z;
+     960             :     }
+     961             : 
+     962      954278 :     for (int i = 1; i < _horizon_length_; i++) {
+     963      917575 :       mpc_reference_x((i * _n_states_) + 2, 0) = tracker_command.full_state_prediction.acceleration[i].x;
+     964      917575 :       mpc_reference_y((i * _n_states_) + 2, 0) = tracker_command.full_state_prediction.acceleration[i].y;
+     965      917575 :       mpc_reference_z((i * _n_states_) + 2, 0) = tracker_command.full_state_prediction.acceleration[i].z;
+     966             :     }
+     967             : 
+     968             :   } else {
+     969             : 
+     970      512028 :     for (int i = 0; i < _horizon_length_; i++) {
+     971      493064 :       mpc_reference_x((i * _n_states_) + 0, 0) = tracker_command.position.x;
+     972      493064 :       mpc_reference_y((i * _n_states_) + 0, 0) = tracker_command.position.y;
+     973      493064 :       mpc_reference_z((i * _n_states_) + 0, 0) = tracker_command.position.z;
+     974             :     }
+     975             :   }
+     976             : 
+     977             :   // | ------------------ set the penalizations ----------------- |
+     978             : 
+     979      111334 :   std::vector<double> temp_Q_horizontal = _mat_Q_;
+     980      111334 :   std::vector<double> temp_Q_vertical   = _mat_Q_z_;
+     981             : 
+     982      111334 :   std::vector<double> temp_S_horizontal = _mat_S_;
+     983      111334 :   std::vector<double> temp_S_vertical   = _mat_S_z_;
+     984             : 
+     985       55667 :   if (!tracker_command.use_position_horizontal) {
+     986           0 :     temp_Q_horizontal[0] = 0;
+     987           0 :     temp_S_horizontal[0] = 0;
+     988             :   }
+     989             : 
+     990       55667 :   if (!tracker_command.use_velocity_horizontal) {
+     991           0 :     temp_Q_horizontal[1] = 0;
+     992           0 :     temp_S_horizontal[1] = 0;
+     993             :   }
+     994             : 
+     995       55667 :   if (!tracker_command.use_position_vertical) {
+     996           0 :     temp_Q_vertical[0] = 0;
+     997           0 :     temp_S_vertical[0] = 0;
+     998             :   }
+     999             : 
+    1000       55667 :   if (!tracker_command.use_velocity_vertical) {
+    1001           0 :     temp_Q_vertical[1] = 0;
+    1002           0 :     temp_S_vertical[1] = 0;
+    1003             :   }
+    1004             : 
+    1005             :   // | ------------------------ optimize ------------------------ |
+    1006             : 
+    1007       55667 :   mpc_solver_x_->setQ(temp_Q_horizontal);
+    1008       55667 :   mpc_solver_x_->setS(temp_S_horizontal);
+    1009       55667 :   mpc_solver_x_->setParams();
+    1010       55667 :   mpc_solver_x_->setLastInput(mpc_solver_x_u_);
+    1011       55667 :   mpc_solver_x_->loadReference(mpc_reference_x);
+    1012       55667 :   mpc_solver_x_->setLimits(max_speed_horizontal, 999, max_acceleration_horizontal, max_jerk, _dt1_, _dt2_);
+    1013       55667 :   mpc_solver_x_->setInitialState(initial_x);
+    1014       55667 :   [[maybe_unused]] int iters_x = mpc_solver_x_->solveMPC();
+    1015       55667 :   mpc_solver_x_u_              = mpc_solver_x_->getFirstControlInput();
+    1016             : 
+    1017       55667 :   mpc_solver_y_->setQ(temp_Q_horizontal);
+    1018       55667 :   mpc_solver_y_->setS(temp_S_horizontal);
+    1019       55667 :   mpc_solver_y_->setParams();
+    1020       55667 :   mpc_solver_y_->setLastInput(mpc_solver_y_u_);
+    1021       55667 :   mpc_solver_y_->loadReference(mpc_reference_y);
+    1022       55667 :   mpc_solver_y_->setLimits(max_speed_horizontal, 999, max_acceleration_horizontal, max_jerk, _dt1_, _dt2_);
+    1023       55667 :   mpc_solver_y_->setInitialState(initial_y);
+    1024       55667 :   [[maybe_unused]] int iters_y = mpc_solver_y_->solveMPC();
+    1025       55667 :   mpc_solver_y_u_              = mpc_solver_y_->getFirstControlInput();
+    1026             : 
+    1027       55667 :   mpc_solver_z_->setQ(temp_Q_vertical);
+    1028       55667 :   mpc_solver_z_->setS(temp_S_vertical);
+    1029       55667 :   mpc_solver_z_->setParams();
+    1030       55667 :   mpc_solver_z_->setLastInput(mpc_solver_z_u_);
+    1031       55667 :   mpc_solver_z_->loadReference(mpc_reference_z);
+    1032       55667 :   mpc_solver_z_->setLimits(max_speed_vertical, max_acceleration_vertical, max_u_vertical, 999.0, _dt1_, _dt2_);
+    1033       55667 :   mpc_solver_z_->setInitialState(initial_z);
+    1034       55667 :   [[maybe_unused]] int iters_z = mpc_solver_z_->solveMPC();
+    1035       55667 :   mpc_solver_z_u_              = mpc_solver_z_->getFirstControlInput();
+    1036             : 
+    1037             :   // | ----------- disable lateral feedback if needed ----------- |
+    1038             : 
+    1039       55667 :   if (tracker_command.disable_position_gains) {
+    1040           0 :     mpc_solver_x_u_ = 0;
+    1041           0 :     mpc_solver_y_u_ = 0;
+    1042             :   }
+    1043             : 
+    1044             :   // | --------------------- load the gains --------------------- |
+    1045             : 
+    1046       55667 :   mute_gains_by_tracker_ = tracker_command.disable_position_gains;
+    1047             : 
+    1048       55667 :   Eigen::Array3d Kw(0, 0, 0);
+    1049       55667 :   Eigen::Array3d Kq;
+    1050             : 
+    1051             :   {
+    1052       55667 :     std::scoped_lock lock(mutex_gains_);
+    1053             : 
+    1054       55667 :     Kq << gains.kq_roll_pitch, gains.kq_roll_pitch, gains.kq_yaw;
+    1055             : 
+    1056       55667 :     Kw[0] = gains.kw_rp;
+    1057       55667 :     Kw[1] = gains.kw_rp;
+    1058       55667 :     Kw[2] = gains.kw_y;
+    1059             :   }
+    1060             : 
+    1061             :   // | ---------- desired orientation matrix and force ---------- |
+    1062             : 
+    1063             :   // get body integral in the world frame
+    1064             : 
+    1065       55667 :   Eigen::Vector2d Ib_w = Eigen::Vector2d(0, 0);
+    1066             : 
+    1067             :   {
+    1068             : 
+    1069      111334 :     geometry_msgs::Vector3Stamped Ib_b_stamped;
+    1070             : 
+    1071       55667 :     Ib_b_stamped.header.stamp    = ros::Time::now();
+    1072       55667 :     Ib_b_stamped.header.frame_id = "fcu_untilted";
+    1073       55667 :     Ib_b_stamped.vector.x        = Ib_b_(0);
+    1074       55667 :     Ib_b_stamped.vector.y        = Ib_b_(1);
+    1075       55667 :     Ib_b_stamped.vector.z        = 0;
+    1076             : 
+    1077      111334 :     auto res = common_handlers_->transformer->transformSingle(Ib_b_stamped, uav_state_.header.frame_id);
+    1078             : 
+    1079       55667 :     if (res) {
+    1080       55667 :       Ib_w[0] = res.value().vector.x;
+    1081       55667 :       Ib_w[1] = res.value().vector.y;
+    1082             :     } else {
+    1083           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: could not transform the Ib_b_ to the world frame", name_.c_str());
+    1084             :     }
+    1085             :   }
+    1086             : 
+    1087             :   // construct the desired force vector
+    1088             : 
+    1089       55667 :   if (tracker_command.use_acceleration && !tracker_command.use_full_state_prediction) {
+    1090        1661 :     Ra << tracker_command.acceleration.x + mpc_solver_x_u_, tracker_command.acceleration.y + mpc_solver_y_u_, tracker_command.acceleration.z + mpc_solver_z_u_;
+    1091             :   } else {
+    1092       54006 :     Ra << mpc_solver_x_u_, mpc_solver_y_u_, mpc_solver_z_u_;
+    1093             :   }
+    1094             : 
+    1095       55667 :   double total_mass = _uav_mass_ + uav_mass_difference_;
+    1096             : 
+    1097       55667 :   Eigen::Vector3d feed_forward = total_mass * (Eigen::Vector3d(0, 0, common_handlers_->g) + Ra);
+    1098             : 
+    1099       55667 :   Eigen::Vector3d integral_feedback;
+    1100             :   {
+    1101       55667 :     std::scoped_lock lock(mutex_integrals_);
+    1102             : 
+    1103       55667 :     integral_feedback << Ib_w[0] + Iw_w_[0], Ib_w[1] + Iw_w_[1], 0;
+    1104             :   }
+    1105             : 
+    1106             :   // --------------------------------------------------------------
+    1107             :   // |                 integrators and estimators                 |
+    1108             :   // --------------------------------------------------------------
+    1109             : 
+    1110             :   /* world error integrator //{ */
+    1111             : 
+    1112             :   // --------------------------------------------------------------
+    1113             :   // |                  integrate the world error                 |
+    1114             :   // --------------------------------------------------------------
+    1115             : 
+    1116             :   {
+    1117      111334 :     std::scoped_lock lock(mutex_gains_, mutex_integrals_);
+    1118             : 
+    1119       55667 :     Eigen::Vector3d integration_switch(1, 1, 0);
+    1120             : 
+    1121             :     // integrate the world error
+    1122             : 
+    1123             :     // antiwindup
+    1124       55667 :     double temp_gain = gains.kiwxy;
+    1125       55667 :     if (!tracker_command.disable_antiwindups) {
+    1126       46942 :       if (rampup_active_ || sqrt(pow(uav_state.velocity.linear.x, 2) + pow(uav_state.velocity.linear.y, 2)) > 0.3) {
+    1127       18730 :         temp_gain = 0;
+    1128       18730 :         ROS_DEBUG_THROTTLE(1.0, "[%s]: anti-windup for world integral kicks in", this->name_.c_str());
+    1129             :       }
+    1130             :     }
+    1131             : 
+    1132       55667 :     if (integral_terms_enabled_) {
+    1133       55667 :       if (tracker_command.use_position_horizontal) {
+    1134       55667 :         Iw_w_ += temp_gain * Ep.head(2) * dt;
+    1135           0 :       } else if (tracker_command.use_velocity_horizontal) {
+    1136           0 :         Iw_w_ += temp_gain * Ev.head(2) * dt;
+    1137             :       }
+    1138             :     }
+    1139             : 
+    1140             :     // saturate the world X
+    1141       55667 :     bool world_integral_saturated = false;
+    1142       55667 :     if (!std::isfinite(Iw_w_[0])) {
+    1143           0 :       Iw_w_[0] = 0;
+    1144           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable 'Iw_w_[0]', setting it to 0!!!", this->name_.c_str());
+    1145       55667 :     } else if (Iw_w_[0] > gains.kiwxy_lim) {
+    1146           0 :       Iw_w_[0]                 = gains.kiwxy_lim;
+    1147           0 :       world_integral_saturated = true;
+    1148       55667 :     } else if (Iw_w_[0] < -gains.kiwxy_lim) {
+    1149           0 :       Iw_w_[0]                 = -gains.kiwxy_lim;
+    1150           0 :       world_integral_saturated = true;
+    1151             :     }
+    1152             : 
+    1153       55667 :     if (gains.kiwxy_lim >= 0 && world_integral_saturated) {
+    1154           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: MPC's world X integral is being saturated!", this->name_.c_str());
+    1155             :     }
+    1156             : 
+    1157             :     // saturate the world Y
+    1158       55667 :     world_integral_saturated = false;
+    1159       55667 :     if (!std::isfinite(Iw_w_[1])) {
+    1160           0 :       Iw_w_[1] = 0;
+    1161           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable 'Iw_w_[1]', setting it to 0!!!", this->name_.c_str());
+    1162       55667 :     } else if (Iw_w_[1] > gains.kiwxy_lim) {
+    1163           0 :       Iw_w_[1]                 = gains.kiwxy_lim;
+    1164           0 :       world_integral_saturated = true;
+    1165       55667 :     } else if (Iw_w_[1] < -gains.kiwxy_lim) {
+    1166           0 :       Iw_w_[1]                 = -gains.kiwxy_lim;
+    1167           0 :       world_integral_saturated = true;
+    1168             :     }
+    1169             : 
+    1170       55667 :     if (gains.kiwxy_lim >= 0 && world_integral_saturated) {
+    1171           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: MPC's world Y integral is being saturated!", this->name_.c_str());
+    1172             :     }
+    1173             :   }
+    1174             : 
+    1175             :   //}
+    1176             : 
+    1177             :   /* body error integrator //{ */
+    1178             : 
+    1179             :   {
+    1180      111334 :     std::scoped_lock lock(mutex_gains_);
+    1181             : 
+    1182       55667 :     Eigen::Vector2d Ep_fcu_untilted = Eigen::Vector2d(0, 0);  // position error in the untilted frame of the UAV
+    1183       55667 :     Eigen::Vector2d Ev_fcu_untilted = Eigen::Vector2d(0, 0);  // velocity error in the untilted frame of the UAV
+    1184             : 
+    1185             :     // get the position control error in the fcu_untilted frame
+    1186             :     {
+    1187             : 
+    1188      111334 :       geometry_msgs::Vector3Stamped Ep_stamped;
+    1189             : 
+    1190       55667 :       Ep_stamped.header.stamp    = ros::Time::now();
+    1191       55667 :       Ep_stamped.header.frame_id = uav_state_.header.frame_id;
+    1192       55667 :       Ep_stamped.vector.x        = Ep(0);
+    1193       55667 :       Ep_stamped.vector.y        = Ep(1);
+    1194       55667 :       Ep_stamped.vector.z        = Ep(2);
+    1195             : 
+    1196      167001 :       auto res = common_handlers_->transformer->transformSingle(Ep_stamped, "fcu_untilted");
+    1197             : 
+    1198       55667 :       if (res) {
+    1199       55667 :         Ep_fcu_untilted[0] = res.value().vector.x;
+    1200       55667 :         Ep_fcu_untilted[1] = res.value().vector.y;
+    1201             :       } else {
+    1202           0 :         ROS_ERROR_THROTTLE(1.0, "[%s]: could not transform the position error to fcu_untilted", name_.c_str());
+    1203             :       }
+    1204             :     }
+    1205             : 
+    1206             :     // get the velocity control error in the fcu_untilted frame
+    1207             :     {
+    1208      111334 :       geometry_msgs::Vector3Stamped Ev_stamped;
+    1209             : 
+    1210       55667 :       Ev_stamped.header.stamp    = ros::Time::now();
+    1211       55667 :       Ev_stamped.header.frame_id = uav_state_.header.frame_id;
+    1212       55667 :       Ev_stamped.vector.x        = Ev(0);
+    1213       55667 :       Ev_stamped.vector.y        = Ev(1);
+    1214       55667 :       Ev_stamped.vector.z        = Ev(2);
+    1215             : 
+    1216      167001 :       auto res = common_handlers_->transformer->transformSingle(Ev_stamped, "fcu_untilted");
+    1217             : 
+    1218       55667 :       if (res) {
+    1219       55667 :         Ev_fcu_untilted[0] = res.value().vector.x;
+    1220       55667 :         Ev_fcu_untilted[1] = res.value().vector.x;
+    1221             :       } else {
+    1222           0 :         ROS_ERROR_THROTTLE(1.0, "[%s]: could not transform the velocity error to fcu_untilted", name_.c_str());
+    1223             :       }
+    1224             :     }
+    1225             : 
+    1226             :     // integrate the body error
+    1227             : 
+    1228             :     // antiwindup
+    1229       55667 :     double temp_gain = gains.kibxy;
+    1230       55667 :     if (!tracker_command.disable_antiwindups) {
+    1231       46942 :       if (rampup_active_ || sqrt(pow(uav_state.velocity.linear.x, 2) + pow(uav_state.velocity.linear.y, 2)) > 0.3) {
+    1232       18730 :         temp_gain = 0;
+    1233       18730 :         ROS_DEBUG_THROTTLE(1.0, "[%s]: anti-windup for body integral kicks in", this->name_.c_str());
+    1234             :       }
+    1235             :     }
+    1236             : 
+    1237       55667 :     if (integral_terms_enabled_) {
+    1238       55667 :       if (tracker_command.use_position_horizontal) {
+    1239       55667 :         Ib_b_ += temp_gain * Ep_fcu_untilted * dt;
+    1240           0 :       } else if (tracker_command.use_velocity_horizontal) {
+    1241           0 :         Ib_b_ += temp_gain * Ev_fcu_untilted * dt;
+    1242             :       }
+    1243             :     }
+    1244             : 
+    1245             :     // saturate the body X
+    1246       55667 :     bool body_integral_saturated = false;
+    1247       55667 :     if (!std::isfinite(Ib_b_[0])) {
+    1248           0 :       Ib_b_[0] = 0;
+    1249           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable 'Ib_b_[0]', setting it to 0!!!", this->name_.c_str());
+    1250       55667 :     } else if (Ib_b_[0] > gains.kibxy_lim) {
+    1251           0 :       Ib_b_[0]                = gains.kibxy_lim;
+    1252           0 :       body_integral_saturated = true;
+    1253       55667 :     } else if (Ib_b_[0] < -gains.kibxy_lim) {
+    1254           0 :       Ib_b_[0]                = -gains.kibxy_lim;
+    1255           0 :       body_integral_saturated = true;
+    1256             :     }
+    1257             : 
+    1258       55667 :     if (gains.kibxy_lim > 0 && body_integral_saturated) {
+    1259           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: MPC's body pitch integral is being saturated!", this->name_.c_str());
+    1260             :     }
+    1261             : 
+    1262             :     // saturate the body
+    1263       55667 :     body_integral_saturated = false;
+    1264       55667 :     if (!std::isfinite(Ib_b_[1])) {
+    1265           0 :       Ib_b_[1] = 0;
+    1266           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable 'Ib_b_[1]', setting it to 0!!!", this->name_.c_str());
+    1267       55667 :     } else if (Ib_b_[1] > gains.kibxy_lim) {
+    1268           0 :       Ib_b_[1]                = gains.kibxy_lim;
+    1269           0 :       body_integral_saturated = true;
+    1270       55667 :     } else if (Ib_b_[1] < -gains.kibxy_lim) {
+    1271           0 :       Ib_b_[1]                = -gains.kibxy_lim;
+    1272           0 :       body_integral_saturated = true;
+    1273             :     }
+    1274             : 
+    1275       55667 :     if (gains.kibxy_lim > 0 && body_integral_saturated) {
+    1276           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: MPC's body roll integral is being saturated!", this->name_.c_str());
+    1277             :     }
+    1278             :   }
+    1279             : 
+    1280             :   //}
+    1281             : 
+    1282       55667 :   Eigen::Vector3d des_acc = integral_feedback / total_mass + Ra;
+    1283             : 
+    1284       55667 :   if (output_modality == common::ACCELERATION_HDG || output_modality == common::ACCELERATION_HDG_RATE) {
+    1285             : 
+    1286         932 :     if (output_modality == common::ACCELERATION_HDG) {
+    1287             : 
+    1288         900 :       mrs_msgs::HwApiAccelerationHdgCmd cmd;
+    1289             : 
+    1290         450 :       cmd.acceleration.x = des_acc[0];
+    1291         450 :       cmd.acceleration.y = des_acc[1];
+    1292         450 :       cmd.acceleration.z = des_acc[2];
+    1293             : 
+    1294         450 :       cmd.heading = tracker_command.heading;
+    1295             : 
+    1296         450 :       last_control_output_.control_output = cmd;
+    1297             : 
+    1298             :     } else {
+    1299             : 
+    1300         482 :       double des_hdg_ff = 0;
+    1301             : 
+    1302         482 :       if (tracker_command.use_heading_rate) {
+    1303         482 :         des_hdg_ff = tracker_command.heading_rate;
+    1304             :       }
+    1305             : 
+    1306         964 :       mrs_msgs::HwApiAccelerationHdgRateCmd cmd;
+    1307             : 
+    1308         482 :       cmd.acceleration.x = des_acc[0];
+    1309         482 :       cmd.acceleration.y = des_acc[1];
+    1310         482 :       cmd.acceleration.z = des_acc[2];
+    1311             : 
+    1312         482 :       position_pid_heading_.setSaturation(constraints.heading_speed);
+    1313             : 
+    1314         482 :       double hdg_err = mrs_lib::geometry::sradians::diff(tracker_command.heading, uav_heading);
+    1315             : 
+    1316         482 :       double des_hdg_rate = position_pid_heading_.update(hdg_err, dt) + des_hdg_ff;
+    1317             : 
+    1318         482 :       cmd.heading_rate = des_hdg_rate;
+    1319             : 
+    1320         482 :       last_control_output_.desired_heading_rate = des_hdg_rate;
+    1321             : 
+    1322         482 :       last_control_output_.control_output = cmd;
+    1323             :     }
+    1324             : 
+    1325             :     // | -------------- unbiased desired acceleration ------------- |
+    1326             : 
+    1327         932 :     Eigen::Vector3d unbiased_des_acc(0, 0, 0);
+    1328             : 
+    1329             :     {
+    1330             : 
+    1331        1864 :       geometry_msgs::Vector3Stamped world_accel;
+    1332             : 
+    1333         932 :       world_accel.header.stamp    = ros::Time::now();
+    1334         932 :       world_accel.header.frame_id = uav_state.header.frame_id;
+    1335         932 :       world_accel.vector.x        = Ra[0];
+    1336         932 :       world_accel.vector.y        = Ra[1];
+    1337         932 :       world_accel.vector.z        = Ra[2];
+    1338             : 
+    1339        2796 :       auto res = common_handlers_->transformer->transformSingle(world_accel, "fcu");
+    1340             : 
+    1341         932 :       if (res) {
+    1342         932 :         unbiased_des_acc << res.value().vector.x, res.value().vector.y, res.value().vector.z;
+    1343             :       }
+    1344             :     }
+    1345             : 
+    1346             :     // fill the unbiased desired accelerations
+    1347         932 :     last_control_output_.desired_unbiased_acceleration = unbiased_des_acc;
+    1348             : 
+    1349             :     // | ----------------- fill in the diagnostics ---------------- |
+    1350             : 
+    1351         932 :     last_control_output_.diagnostics.ramping_up = false;
+    1352             : 
+    1353         932 :     last_control_output_.diagnostics.mass_estimator  = false;
+    1354         932 :     last_control_output_.diagnostics.mass_difference = 0;
+    1355         932 :     last_control_output_.diagnostics.total_mass      = total_mass;
+    1356             : 
+    1357         932 :     last_control_output_.diagnostics.disturbance_estimator = true;
+    1358             : 
+    1359         932 :     last_control_output_.diagnostics.disturbance_bx_b = -Ib_b_[0];
+    1360         932 :     last_control_output_.diagnostics.disturbance_by_b = -Ib_b_[1];
+    1361             : 
+    1362         932 :     last_control_output_.diagnostics.disturbance_bx_w = -Ib_w[0];
+    1363         932 :     last_control_output_.diagnostics.disturbance_by_w = -Ib_w[1];
+    1364             : 
+    1365         932 :     last_control_output_.diagnostics.disturbance_wx_w = -Iw_w_[0];
+    1366         932 :     last_control_output_.diagnostics.disturbance_wy_w = -Iw_w_[1];
+    1367             : 
+    1368         932 :     last_control_output_.diagnostics.controller_enforcing_constraints = !tracker_command.use_full_state_prediction;
+    1369             : 
+    1370         932 :     last_control_output_.diagnostics.horizontal_speed_constraint = 0.5 * max_speed_horizontal;
+    1371         932 :     last_control_output_.diagnostics.horizontal_acc_constraint   = 0.5 * max_acceleration_horizontal;
+    1372             : 
+    1373         932 :     last_control_output_.diagnostics.vertical_asc_speed_constraint = 0.5 * max_speed_vertical;
+    1374         932 :     last_control_output_.diagnostics.vertical_asc_acc_constraint   = 0.5 * max_acceleration_vertical;
+    1375             : 
+    1376         932 :     last_control_output_.diagnostics.vertical_desc_speed_constraint = 0.5 * max_speed_vertical;
+    1377         932 :     last_control_output_.diagnostics.vertical_desc_acc_constraint   = 0.5 * max_acceleration_vertical;
+    1378             : 
+    1379         932 :     last_control_output_.diagnostics.controller = name_;
+    1380             : 
+    1381         932 :     return;
+    1382             :   }
+    1383             : 
+    1384             :   /* mass estimatior //{ */
+    1385             : 
+    1386             :   // --------------------------------------------------------------
+    1387             :   // |                integrate the mass difference               |
+    1388             :   // --------------------------------------------------------------
+    1389             : 
+    1390             :   {
+    1391      109470 :     std::scoped_lock lock(mutex_gains_);
+    1392             : 
+    1393             :     // antiwindup
+    1394       54735 :     double temp_gain = gains.km;
+    1395      108434 :     if (rampup_active_ ||
+    1396       53699 :         (fabs(uav_state.velocity.linear.z) > 0.3 && ((Ep[2] > 0 && uav_state.velocity.linear.z > 0) || (Ep[2] < 0 && uav_state.velocity.linear.z < 0)))) {
+    1397       14449 :       temp_gain = 0;
+    1398       14449 :       ROS_DEBUG_THROTTLE(1.0, "[%s]: anti-windup for the mass kicks in", this->name_.c_str());
+    1399             :     }
+    1400             : 
+    1401       54735 :     if (tracker_command.use_position_vertical) {
+    1402       54735 :       uav_mass_difference_ += temp_gain * Ep[2] * dt;
+    1403             :     }
+    1404             : 
+    1405             :     // saturate the mass estimator
+    1406       54735 :     bool uav_mass_saturated = false;
+    1407       54735 :     if (!std::isfinite(uav_mass_difference_)) {
+    1408           0 :       uav_mass_difference_ = 0;
+    1409           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in variable 'uav_mass_difference_', setting it to 0 and returning!!!", this->name_.c_str());
+    1410       54735 :     } else if (uav_mass_difference_ > gains.km_lim) {
+    1411           0 :       uav_mass_difference_ = gains.km_lim;
+    1412           0 :       uav_mass_saturated   = true;
+    1413       54735 :     } else if (uav_mass_difference_ < -gains.km_lim) {
+    1414           0 :       uav_mass_difference_ = -gains.km_lim;
+    1415           0 :       uav_mass_saturated   = true;
+    1416             :     }
+    1417             : 
+    1418       54735 :     if (uav_mass_saturated) {
+    1419           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: The UAV mass difference is being saturated to %.2f!", this->name_.c_str(), uav_mass_difference_);
+    1420             :     }
+    1421             :   }
+    1422             : 
+    1423             :   //}
+    1424             : 
+    1425       54735 :   Eigen::Vector3d f = integral_feedback + feed_forward;
+    1426             : 
+    1427             :   // | ----------- limiting the downwards acceleration ---------- |
+    1428             :   // the downwards force produced by the position and the acceleration feedback should not be larger than the gravity
+    1429             : 
+    1430             :   // if the downwards part of the force is close to counter-act the gravity acceleration
+    1431       54735 :   if (f[2] < 0) {
+    1432             : 
+    1433           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: the calculated downwards desired force is negative (%.2f) -> mitigating flip", this->name_.c_str(), f[2]);
+    1434             : 
+    1435           0 :     f << 0, 0, 1;
+    1436             :   }
+    1437             : 
+    1438             :   // | ------------------- sanitize tilt angle ------------------ |
+    1439             : 
+    1440       54735 :   double tilt_safety_limit = _tilt_angle_failsafe_enabled_ ? _tilt_angle_failsafe_ : std::numeric_limits<double>::max();
+    1441             : 
+    1442       54735 :   auto f_normed_sanitized = common::sanitizeDesiredForce(f.normalized(), tilt_safety_limit, constraints.tilt, "MpcController");
+    1443             : 
+    1444       54735 :   if (!f_normed_sanitized) {
+    1445             : 
+    1446           0 :     ROS_INFO("[%s]: f = [%.2f, %.2f, %.2f]", this->name_.c_str(), f[0], f[1], f[2]);
+    1447           0 :     ROS_INFO("[%s]: integral feedback: [%.2f, %.2f, %.2f]", this->name_.c_str(), integral_feedback[0], integral_feedback[1], integral_feedback[2]);
+    1448           0 :     ROS_INFO("[%s]: feed forward: [%.2f, %.2f, %.2f]", this->name_.c_str(), feed_forward[0], feed_forward[1], feed_forward[2]);
+    1449           0 :     ROS_INFO("[%s]: tracker_cmd: x: %.2f, y: %.2f, z: %.2f, heading: %.2f", this->name_.c_str(), tracker_command.position.x, tracker_command.position.y,
+    1450             :              tracker_command.position.z, tracker_command.heading);
+    1451           0 :     ROS_INFO("[%s]: odometry: x: %.2f, y: %.2f, z: %.2f, heading: %.2f", this->name_.c_str(), uav_state.pose.position.x, uav_state.pose.position.y,
+    1452             :              uav_state.pose.position.z, uav_heading);
+    1453             : 
+    1454           0 :     return;
+    1455             :   }
+    1456             : 
+    1457       54735 :   Eigen::Vector3d f_normed = f_normed_sanitized.value();
+    1458             : 
+    1459             :   // --------------------------------------------------------------
+    1460             :   // |               desired orientation + throttle               |
+    1461             :   // --------------------------------------------------------------
+    1462             : 
+    1463             :   // | ------------------- desired orientation ------------------ |
+    1464             : 
+    1465       54735 :   Eigen::Matrix3d Rd;
+    1466             : 
+    1467       54735 :   if (tracker_command.use_orientation) {
+    1468             : 
+    1469             :     // fill in the desired orientation based on the desired orientation from the control command
+    1470           0 :     Rd = mrs_lib::AttitudeConverter(tracker_command.orientation);
+    1471             : 
+    1472           0 :     if (tracker_command.use_heading) {
+    1473             :       try {
+    1474           0 :         Rd = mrs_lib::AttitudeConverter(Rd).setHeading(tracker_command.heading);
+    1475             :       }
+    1476           0 :       catch (...) {
+    1477           0 :         ROS_WARN_THROTTLE(1.0, "[%s]: failed to add heading to the desired orientation matrix", this->name_.c_str());
+    1478             :       }
+    1479             :     }
+    1480             : 
+    1481             :   } else {
+    1482             : 
+    1483       54735 :     Eigen::Vector3d bxd;  // desired heading vector
+    1484             : 
+    1485       54735 :     if (tracker_command.use_heading) {
+    1486       54735 :       bxd << cos(tracker_command.heading), sin(tracker_command.heading), 0;
+    1487             :     } else {
+    1488           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: desired heading was not specified, using current heading instead!", this->name_.c_str());
+    1489           0 :       bxd << cos(uav_heading), sin(uav_heading), 0;
+    1490             :     }
+    1491             : 
+    1492       54735 :     Rd = common::so3transform(f_normed, bxd, false);
+    1493             :   }
+    1494             : 
+    1495             :   // | -------------------- desired throttle -------------------- |
+    1496             : 
+    1497       54735 :   double desired_thrust_force = f.dot(R.col(2));
+    1498       54735 :   double throttle             = 0;
+    1499             : 
+    1500       54735 :   if (rampup_active_) {
+    1501             : 
+    1502             :     // deactivate the rampup when the times up
+    1503        1036 :     if (fabs((ros::Time::now() - rampup_start_time_).toSec()) >= rampup_duration_) {
+    1504             : 
+    1505          59 :       rampup_active_ = false;
+    1506             : 
+    1507          59 :       ROS_INFO("[%s]: rampup finished", name_.c_str());
+    1508             : 
+    1509             :     } else {
+    1510             : 
+    1511         977 :       double rampup_dt = (ros::Time::now() - rampup_last_time_).toSec();
+    1512             : 
+    1513         977 :       rampup_throttle_ += double(rampup_direction_) * _rampup_speed_ * rampup_dt;
+    1514             : 
+    1515         977 :       rampup_last_time_ = ros::Time::now();
+    1516             : 
+    1517         977 :       throttle = rampup_throttle_;
+    1518             : 
+    1519         977 :       ROS_INFO_THROTTLE(0.1, "[%s]: ramping up throttle, %.4f", name_.c_str(), throttle);
+    1520             :     }
+    1521             : 
+    1522             :   } else {
+    1523             : 
+    1524       53699 :     if (desired_thrust_force >= 0) {
+    1525       53699 :       throttle = mrs_lib::quadratic_throttle_model::forceToThrottle(common_handlers_->throttle_model, desired_thrust_force);
+    1526             :     } else {
+    1527           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: just so you know, the desired throttle force is negative (%.2f)", name_.c_str(), desired_thrust_force);
+    1528             :     }
+    1529             :   }
+    1530             : 
+    1531             :   // | ------------------- throttle saturation ------------------ |
+    1532             : 
+    1533       54735 :   bool throttle_saturated = false;
+    1534             : 
+    1535       54735 :   if (!std::isfinite(throttle)) {
+    1536             : 
+    1537           0 :     ROS_ERROR("[%s]: NaN detected in variable 'throttle'!!!", name_.c_str());
+    1538           0 :     return;
+    1539             : 
+    1540       54735 :   } else if (throttle > _throttle_saturation_) {
+    1541          29 :     throttle = _throttle_saturation_;
+    1542          29 :     ROS_WARN_THROTTLE(0.1, "[%s]: saturating throttle to %.2f", name_.c_str(), _throttle_saturation_);
+    1543       54706 :   } else if (throttle < 0.0) {
+    1544           0 :     throttle = 0.0;
+    1545           0 :     ROS_WARN_THROTTLE(0.1, "[%s]: saturating throttle to 0.0", name_.c_str());
+    1546             :   }
+    1547             : 
+    1548       54735 :   if (throttle_saturated) {
+    1549           0 :     ROS_WARN_THROTTLE(0.1, "[%s]: ---------------------------", name_.c_str());
+    1550           0 :     ROS_WARN_THROTTLE(0.1, "[%s]: desired state: pos [x: %.2f, y: %.2f, z: %.2f, hdg: %.2f]", name_.c_str(), tracker_command.position.x,
+    1551             :                       tracker_command.position.y, tracker_command.position.z, tracker_command.heading);
+    1552           0 :     ROS_WARN_THROTTLE(0.1, "[%s]: desired state: vel [x: %.2f, y: %.2f, z: %.2f, hdg: %.2f]", name_.c_str(), tracker_command.velocity.x,
+    1553             :                       tracker_command.velocity.y, tracker_command.velocity.z, tracker_command.heading_rate);
+    1554           0 :     ROS_WARN_THROTTLE(0.1, "[%s]: desired state: acc [x: %.2f, y: %.2f, z: %.2f, hdg: %.2f]", name_.c_str(), tracker_command.acceleration.x,
+    1555             :                       tracker_command.acceleration.y, tracker_command.acceleration.z, tracker_command.heading_acceleration);
+    1556           0 :     ROS_WARN_THROTTLE(0.1, "[%s]: desired state: jerk [x: %.2f, y: %.2f, z: %.2f, hdg: %.2f]", name_.c_str(), tracker_command.jerk.x, tracker_command.jerk.y,
+    1557             :                       tracker_command.jerk.z, tracker_command.heading_jerk);
+    1558           0 :     ROS_WARN_THROTTLE(0.1, "[%s]: ---------------------------", name_.c_str());
+    1559           0 :     ROS_WARN_THROTTLE(0.1, "[%s]: current state: pos [x: %.2f, y: %.2f, z: %.2f, hdg: %.2f]", name_.c_str(), uav_state.pose.position.x,
+    1560             :                       uav_state.pose.position.y, uav_state.pose.position.z, uav_heading);
+    1561           0 :     ROS_WARN_THROTTLE(0.1, "[%s]: current state: vel [x: %.2f, y: %.2f, z: %.2f, yaw rate: %.2f]", name_.c_str(), uav_state.velocity.linear.x,
+    1562             :                       uav_state.velocity.linear.y, uav_state.velocity.linear.z, uav_state.velocity.angular.z);
+    1563           0 :     ROS_WARN_THROTTLE(0.1, "[%s]: ---------------------------", name_.c_str());
+    1564             :   }
+    1565             : 
+    1566             :   // | -------------- unbiased desired acceleration ------------- |
+    1567             : 
+    1568       54735 :   double desired_x_accel = 0;
+    1569       54735 :   double desired_y_accel = 0;
+    1570       54735 :   double desired_z_accel = 0;
+    1571             : 
+    1572             :   {
+    1573       54735 :     Eigen::Vector3d thrust_vector = desired_thrust_force * Rd.col(2);
+    1574             : 
+    1575       54735 :     double world_accel_x = (thrust_vector[0] / total_mass) - (Iw_w_[0] / total_mass) - (Ib_w[0] / total_mass);
+    1576       54735 :     double world_accel_y = (thrust_vector[1] / total_mass) - (Iw_w_[1] / total_mass) - (Ib_w[1] / total_mass);
+    1577             : 
+    1578             :     // TODO change to z from IMU?
+    1579       54735 :     double world_accel_z = tracker_command.acceleration.z;
+    1580             : 
+    1581      109470 :     geometry_msgs::Vector3Stamped world_accel;
+    1582             : 
+    1583       54735 :     world_accel.header.stamp    = ros::Time::now();
+    1584       54735 :     world_accel.header.frame_id = uav_state.header.frame_id;
+    1585       54735 :     world_accel.vector.x        = world_accel_x;
+    1586       54735 :     world_accel.vector.y        = world_accel_y;
+    1587       54735 :     world_accel.vector.z        = world_accel_z;
+    1588             : 
+    1589      164205 :     auto res = common_handlers_->transformer->transformSingle(world_accel, "fcu");
+    1590             : 
+    1591       54735 :     if (res) {
+    1592             : 
+    1593       54735 :       desired_x_accel = res.value().vector.x;
+    1594       54735 :       desired_y_accel = res.value().vector.y;
+    1595       54735 :       desired_z_accel = res.value().vector.z;
+    1596             :     }
+    1597             :   }
+    1598             : 
+    1599             :   // | --------------- fill the resulting command --------------- |
+    1600             : 
+    1601             :   // fill the desired orientation for the tilt error check
+    1602       54735 :   last_control_output_.desired_orientation = mrs_lib::AttitudeConverter(Rd);
+    1603             : 
+    1604             :   // fill the unbiased desired accelerations
+    1605       54735 :   last_control_output_.desired_unbiased_acceleration = Eigen::Vector3d(desired_x_accel, desired_y_accel, desired_z_accel);
+    1606             : 
+    1607             :   // | ----------------- fill in the diagnostics ---------------- |
+    1608             : 
+    1609       54735 :   last_control_output_.diagnostics.ramping_up = rampup_active_;
+    1610             : 
+    1611       54735 :   last_control_output_.diagnostics.mass_estimator  = true;
+    1612       54735 :   last_control_output_.diagnostics.mass_difference = uav_mass_difference_;
+    1613       54735 :   last_control_output_.diagnostics.total_mass      = total_mass;
+    1614             : 
+    1615       54735 :   last_control_output_.diagnostics.disturbance_estimator = true;
+    1616             : 
+    1617       54735 :   last_control_output_.diagnostics.disturbance_bx_b = -Ib_b_[0];
+    1618       54735 :   last_control_output_.diagnostics.disturbance_by_b = -Ib_b_[1];
+    1619             : 
+    1620       54735 :   last_control_output_.diagnostics.disturbance_bx_w = -Ib_w[0];
+    1621       54735 :   last_control_output_.diagnostics.disturbance_by_w = -Ib_w[1];
+    1622             : 
+    1623       54735 :   last_control_output_.diagnostics.disturbance_wx_w = -Iw_w_[0];
+    1624       54735 :   last_control_output_.diagnostics.disturbance_wy_w = -Iw_w_[1];
+    1625             : 
+    1626       54735 :   last_control_output_.diagnostics.controller_enforcing_constraints = !tracker_command.use_full_state_prediction;
+    1627             : 
+    1628       54735 :   last_control_output_.diagnostics.horizontal_speed_constraint = 0.5 * _max_speed_horizontal_;
+    1629       54735 :   last_control_output_.diagnostics.horizontal_acc_constraint   = 0.5 * _max_acceleration_horizontal_;
+    1630             : 
+    1631       54735 :   last_control_output_.diagnostics.vertical_asc_speed_constraint = 0.5 * _max_speed_vertical_;
+    1632       54735 :   last_control_output_.diagnostics.vertical_asc_acc_constraint   = 0.5 * _max_acceleration_vertical_;
+    1633             : 
+    1634       54735 :   last_control_output_.diagnostics.vertical_desc_speed_constraint = 0.5 * _max_speed_vertical_;
+    1635       54735 :   last_control_output_.diagnostics.vertical_desc_acc_constraint   = 0.5 * _max_acceleration_vertical_;
+    1636             : 
+    1637       54735 :   last_control_output_.diagnostics.controller = name_;
+    1638             : 
+    1639             :   // | ------------ construct the attitude reference ------------ |
+    1640             : 
+    1641       54735 :   mrs_msgs::HwApiAttitudeCmd attitude_cmd;
+    1642             : 
+    1643       54735 :   attitude_cmd.stamp       = ros::Time::now();
+    1644       54735 :   attitude_cmd.orientation = mrs_lib::AttitudeConverter(Rd);
+    1645       54735 :   attitude_cmd.throttle    = throttle;
+    1646             : 
+    1647       54735 :   if (output_modality == common::ATTITUDE) {
+    1648             : 
+    1649        1086 :     last_control_output_.control_output = attitude_cmd;
+    1650             : 
+    1651        1086 :     return;
+    1652             :   }
+    1653             : 
+    1654             :   // --------------------------------------------------------------
+    1655             :   // |                      attitude control                      |
+    1656             :   // --------------------------------------------------------------
+    1657             : 
+    1658       53649 :   Eigen::Vector3d rate_feedforward = Eigen::Vector3d::Zero(3);
+    1659             : 
+    1660       53649 :   if (tracker_command.use_attitude_rate) {
+    1661             : 
+    1662           0 :     rate_feedforward << tracker_command.attitude_rate.x, tracker_command.attitude_rate.y, tracker_command.attitude_rate.z;
+    1663             : 
+    1664       53649 :   } else if (tracker_command.use_heading_rate) {
+    1665             : 
+    1666             :     // to fill in the feed forward yaw rate
+    1667       53648 :     double desired_yaw_rate = 0;
+    1668             : 
+    1669             :     try {
+    1670       53648 :       desired_yaw_rate = mrs_lib::AttitudeConverter(Rd).getYawRateIntrinsic(tracker_command.heading_rate);
+    1671             :     }
+    1672           0 :     catch (...) {
+    1673           0 :       ROS_ERROR("[%s]: exception caught while calculating the desired_yaw_rate feedforward", name_.c_str());
+    1674             :     }
+    1675             : 
+    1676       53648 :     rate_feedforward << 0, 0, desired_yaw_rate;
+    1677             :   }
+    1678             : 
+    1679             :   // | ------------ jerk feedforward -> angular rate ------------ |
+    1680             : 
+    1681       53649 :   Eigen::Vector3d jerk_feedforward = Eigen::Vector3d(0, 0, 0);
+    1682             : 
+    1683       53649 :   if (tracker_command.use_jerk && drs_params.jerk_feedforward) {
+    1684             : 
+    1685       34687 :     ROS_DEBUG_THROTTLE(1.0, "[%s]: using jerk feedforward", name_.c_str());
+    1686             : 
+    1687       34687 :     Eigen::Matrix3d I;
+    1688       34687 :     I << 0, 1, 0, -1, 0, 0, 0, 0, 0;
+    1689       34687 :     Eigen::Vector3d desired_jerk = Eigen::Vector3d(tracker_command.jerk.x, tracker_command.jerk.y, tracker_command.jerk.z);
+    1690       34687 :     jerk_feedforward             = (I.transpose() * Rd.transpose() * desired_jerk) / (desired_thrust_force / total_mass);
+    1691             :   }
+    1692             : 
+    1693             :   // | --------------- run the attitude controller -------------- |
+    1694             : 
+    1695       53649 :   Eigen::Vector3d attitude_rate_saturation(constraints.roll_rate, constraints.pitch_rate, constraints.yaw_rate);
+    1696             : 
+    1697       53649 :   auto attitude_rate_command = common::attitudeController(uav_state, attitude_cmd, jerk_feedforward + rate_feedforward, attitude_rate_saturation, Kq, false);
+    1698             : 
+    1699       53649 :   if (!attitude_rate_command) {
+    1700           0 :     return;
+    1701             :   }
+    1702             : 
+    1703             :   // | --------- fill in the already known attitude rate -------- |
+    1704             : 
+    1705             :   {
+    1706             :     try {
+    1707       53649 :       last_control_output_.desired_heading_rate = mrs_lib::AttitudeConverter(R).getHeadingRate(attitude_rate_command->body_rate);
+    1708             :     }
+    1709           0 :     catch (...) {
+    1710             :     }
+    1711             :   }
+    1712             : 
+    1713             :   // | ---------- construct the attitude rate reference --------- |
+    1714             : 
+    1715       53649 :   if (output_modality == common::ATTITUDE_RATE) {
+    1716             : 
+    1717       51286 :     last_control_output_.control_output = attitude_rate_command;
+    1718             : 
+    1719       51286 :     return;
+    1720             :   }
+    1721             : 
+    1722             :   // --------------------------------------------------------------
+    1723             :   // |                    Attitude rate control                   |
+    1724             :   // --------------------------------------------------------------
+    1725             : 
+    1726        2363 :   Kw = common_handlers_->detailed_model_params->inertia.diagonal().array() * Kw;
+    1727             : 
+    1728        2363 :   auto control_group_command = common::attitudeRateController(uav_state, attitude_rate_command.value(), Kw);
+    1729             : 
+    1730        2363 :   if (!control_group_command) {
+    1731           0 :     return;
+    1732             :   }
+    1733             : 
+    1734        2363 :   if (output_modality == common::CONTROL_GROUP) {
+    1735             : 
+    1736        1178 :     last_control_output_.control_output = control_group_command;
+    1737             : 
+    1738        1178 :     return;
+    1739             :   }
+    1740             : 
+    1741             :   // --------------------------------------------------------------
+    1742             :   // |                        output mixer                        |
+    1743             :   // --------------------------------------------------------------
+    1744             : 
+    1745        2370 :   mrs_msgs::HwApiActuatorCmd actuator_cmd = common::actuatorMixer(control_group_command.value(), common_handlers_->detailed_model_params->control_group_mixer);
+    1746             : 
+    1747        1185 :   last_control_output_.control_output = actuator_cmd;
+    1748             : 
+    1749        1185 :   return;
+    1750             : }
+    1751             : 
+    1752             : //}
+    1753             : 
+    1754             : /* positionPassthrough() //{ */
+    1755             : 
+    1756         234 : void MpcController::positionPassthrough(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command) {
+    1757             : 
+    1758         234 :   if (!tracker_command.use_position_vertical || !tracker_command.use_position_horizontal || !tracker_command.use_heading) {
+    1759           0 :     ROS_ERROR("[%s]: the tracker did not provide position+hdg reference", name_.c_str());
+    1760           0 :     return;
+    1761             :   }
+    1762             : 
+    1763         468 :   mrs_msgs::HwApiPositionCmd cmd;
+    1764             : 
+    1765         234 :   cmd.header.frame_id = uav_state.header.frame_id;
+    1766         234 :   cmd.header.stamp    = ros::Time::now();
+    1767             : 
+    1768         234 :   cmd.position = tracker_command.position;
+    1769         234 :   cmd.heading  = tracker_command.heading;
+    1770             : 
+    1771         234 :   last_control_output_.control_output = cmd;
+    1772             : 
+    1773             :   // fill the unbiased desired accelerations
+    1774         234 :   last_control_output_.desired_unbiased_acceleration = {};
+    1775         234 :   last_control_output_.desired_orientation           = {};
+    1776         234 :   last_control_output_.desired_heading_rate          = {};
+    1777             : 
+    1778             :   // | ----------------- fill in the diagnostics ---------------- |
+    1779             : 
+    1780         234 :   last_control_output_.diagnostics.ramping_up = false;
+    1781             : 
+    1782         234 :   last_control_output_.diagnostics.mass_estimator  = false;
+    1783         234 :   last_control_output_.diagnostics.mass_difference = 0;
+    1784             : 
+    1785         234 :   last_control_output_.diagnostics.disturbance_estimator = false;
+    1786             : 
+    1787         234 :   last_control_output_.diagnostics.disturbance_bx_b = 0;
+    1788         234 :   last_control_output_.diagnostics.disturbance_by_b = 0;
+    1789             : 
+    1790         234 :   last_control_output_.diagnostics.disturbance_bx_w = 0;
+    1791         234 :   last_control_output_.diagnostics.disturbance_by_w = 0;
+    1792             : 
+    1793         234 :   last_control_output_.diagnostics.disturbance_wx_w = 0;
+    1794         234 :   last_control_output_.diagnostics.disturbance_wy_w = 0;
+    1795             : 
+    1796         234 :   last_control_output_.diagnostics.controller_enforcing_constraints = !tracker_command.use_full_state_prediction;
+    1797             : 
+    1798         234 :   last_control_output_.diagnostics.horizontal_speed_constraint = 0.5 * _max_speed_horizontal_;
+    1799         234 :   last_control_output_.diagnostics.horizontal_acc_constraint   = 0.5 * _max_acceleration_horizontal_;
+    1800             : 
+    1801         234 :   last_control_output_.diagnostics.vertical_asc_speed_constraint = 0.5 * _max_speed_vertical_;
+    1802         234 :   last_control_output_.diagnostics.vertical_asc_acc_constraint   = 0.5 * _max_acceleration_vertical_;
+    1803             : 
+    1804         234 :   last_control_output_.diagnostics.vertical_desc_speed_constraint = 0.5 * _max_speed_vertical_;
+    1805         234 :   last_control_output_.diagnostics.vertical_desc_acc_constraint   = 0.5 * _max_acceleration_vertical_;
+    1806             : 
+    1807         234 :   last_control_output_.diagnostics.controller = name_;
+    1808             : }
+    1809             : 
+    1810             : //}
+    1811             : 
+    1812             : /* PIDVelocityOutput() //{ */
+    1813             : 
+    1814         617 : void MpcController::PIDVelocityOutput(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command,
+    1815             :                                       const common::CONTROL_OUTPUT &control_output, const double &dt) {
+    1816             : 
+    1817         617 :   if (!tracker_command.use_position_vertical || !tracker_command.use_position_horizontal || !tracker_command.use_heading) {
+    1818           0 :     ROS_ERROR("[%s]: the tracker did not provide position+hdg reference", name_.c_str());
+    1819           0 :     return;
+    1820             :   }
+    1821             : 
+    1822         617 :   auto constraints = mrs_lib::get_mutexed(mutex_constraints_, constraints_);
+    1823             : 
+    1824         617 :   Eigen::Vector3d pos_ref = Eigen::Vector3d(tracker_command.position.x, tracker_command.position.y, tracker_command.position.z);
+    1825         617 :   Eigen::Vector3d pos     = Eigen::Vector3d(uav_state.pose.position.x, uav_state.pose.position.y, uav_state.pose.position.z);
+    1826             : 
+    1827         617 :   double hdg_ref = tracker_command.heading;
+    1828         617 :   double hdg     = getHeadingSafely(uav_state, tracker_command);
+    1829             : 
+    1830             :   // | ------------------ velocity feedforward ------------------ |
+    1831             : 
+    1832         617 :   Eigen::Vector3d vel_ff(0, 0, 0);
+    1833             : 
+    1834         617 :   if (tracker_command.use_velocity_horizontal && tracker_command.use_velocity_vertical) {
+    1835         617 :     vel_ff = Eigen::Vector3d(tracker_command.velocity.x, tracker_command.velocity.y, tracker_command.velocity.z);
+    1836             :   }
+    1837             : 
+    1838             :   // | --------------------- control errors --------------------- |
+    1839             : 
+    1840         617 :   Eigen::Vector3d Ep = pos_ref - pos;
+    1841             : 
+    1842             :   // | --------------------------- pid -------------------------- |
+    1843             : 
+    1844         617 :   position_pid_x_.setSaturation(constraints.horizontal_speed);
+    1845         617 :   position_pid_y_.setSaturation(constraints.horizontal_speed);
+    1846         617 :   position_pid_z_.setSaturation(std::min(constraints.vertical_ascending_speed, constraints.vertical_descending_speed));
+    1847             : 
+    1848         617 :   double des_vel_x = position_pid_x_.update(Ep[0], dt);
+    1849         617 :   double des_vel_y = position_pid_y_.update(Ep[1], dt);
+    1850         617 :   double des_vel_z = position_pid_z_.update(Ep[2], dt);
+    1851             : 
+    1852             :   // | -------------------- position feedback ------------------- |
+    1853             : 
+    1854         617 :   Eigen::Vector3d des_vel = Eigen::Vector3d(des_vel_x, des_vel_y, des_vel_z) + vel_ff;
+    1855             : 
+    1856         617 :   if (control_output == common::VELOCITY_HDG) {
+    1857             : 
+    1858             :     // | --------------------- fill the output -------------------- |
+    1859             : 
+    1860         498 :     mrs_msgs::HwApiVelocityHdgCmd cmd;
+    1861             : 
+    1862         249 :     cmd.header.frame_id = uav_state.header.frame_id;
+    1863         249 :     cmd.header.stamp    = ros::Time::now();
+    1864             : 
+    1865         249 :     cmd.velocity.x = des_vel[0];
+    1866         249 :     cmd.velocity.y = des_vel[1];
+    1867         249 :     cmd.velocity.z = des_vel[2];
+    1868             : 
+    1869         249 :     cmd.heading = tracker_command.heading;
+    1870             : 
+    1871         249 :     last_control_output_.control_output = cmd;
+    1872             : 
+    1873         368 :   } else if (control_output == common::VELOCITY_HDG_RATE) {
+    1874             : 
+    1875         368 :     position_pid_heading_.setSaturation(constraints.heading_speed);
+    1876             : 
+    1877         368 :     double hdg_err = mrs_lib::geometry::sradians::diff(hdg_ref, hdg);
+    1878             : 
+    1879         368 :     double des_hdg_rate = position_pid_heading_.update(hdg_err, dt);
+    1880             : 
+    1881             :     // | --------------------------- ff --------------------------- |
+    1882             : 
+    1883         368 :     double des_hdg_ff = 0;
+    1884             : 
+    1885         368 :     if (tracker_command.use_heading_rate) {
+    1886         368 :       des_hdg_ff = tracker_command.heading_rate;
+    1887             :     }
+    1888             : 
+    1889             :     // | --------------------- fill the output -------------------- |
+    1890             : 
+    1891         736 :     mrs_msgs::HwApiVelocityHdgRateCmd cmd;
+    1892             : 
+    1893         368 :     cmd.header.frame_id = uav_state.header.frame_id;
+    1894         368 :     cmd.header.stamp    = ros::Time::now();
+    1895             : 
+    1896         368 :     cmd.velocity.x = des_vel[0];
+    1897         368 :     cmd.velocity.y = des_vel[1];
+    1898         368 :     cmd.velocity.z = des_vel[2];
+    1899             : 
+    1900         368 :     cmd.heading_rate = des_hdg_rate + des_hdg_ff;
+    1901             : 
+    1902         368 :     last_control_output_.control_output = cmd;
+    1903             :   } else {
+    1904             : 
+    1905           0 :     ROS_ERROR("[%s]: the required output of the position PID is not supported", name_.c_str());
+    1906           0 :     return;
+    1907             :   }
+    1908             : 
+    1909             :   // fill the unbiased desired accelerations
+    1910         617 :   last_control_output_.desired_unbiased_acceleration = {};
+    1911         617 :   last_control_output_.desired_orientation           = {};
+    1912         617 :   last_control_output_.desired_heading_rate          = {};
+    1913             : 
+    1914             :   // | ----------------- fill in the diagnostics ---------------- |
+    1915             : 
+    1916         617 :   last_control_output_.diagnostics.ramping_up = false;
+    1917             : 
+    1918         617 :   last_control_output_.diagnostics.mass_estimator  = false;
+    1919         617 :   last_control_output_.diagnostics.mass_difference = 0;
+    1920             : 
+    1921         617 :   last_control_output_.diagnostics.disturbance_estimator = false;
+    1922             : 
+    1923         617 :   last_control_output_.diagnostics.disturbance_bx_b = 0;
+    1924         617 :   last_control_output_.diagnostics.disturbance_by_b = 0;
+    1925             : 
+    1926         617 :   last_control_output_.diagnostics.disturbance_bx_w = 0;
+    1927         617 :   last_control_output_.diagnostics.disturbance_by_w = 0;
+    1928             : 
+    1929         617 :   last_control_output_.diagnostics.disturbance_wx_w = 0;
+    1930         617 :   last_control_output_.diagnostics.disturbance_wy_w = 0;
+    1931             : 
+    1932         617 :   last_control_output_.diagnostics.controller_enforcing_constraints = !tracker_command.use_full_state_prediction;
+    1933             : 
+    1934         617 :   last_control_output_.diagnostics.horizontal_speed_constraint = 0.5 * _max_speed_horizontal_;
+    1935         617 :   last_control_output_.diagnostics.horizontal_acc_constraint   = 0.5 * _max_acceleration_horizontal_;
+    1936             : 
+    1937         617 :   last_control_output_.diagnostics.vertical_asc_speed_constraint = 0.5 * _max_speed_vertical_;
+    1938         617 :   last_control_output_.diagnostics.vertical_asc_acc_constraint   = 0.5 * _max_acceleration_vertical_;
+    1939             : 
+    1940         617 :   last_control_output_.diagnostics.vertical_desc_speed_constraint = 0.5 * _max_speed_vertical_;
+    1941         617 :   last_control_output_.diagnostics.vertical_desc_acc_constraint   = 0.5 * _max_acceleration_vertical_;
+    1942             : 
+    1943         617 :   last_control_output_.diagnostics.controller = name_;
+    1944             : }
+    1945             : 
+    1946             : //}
+    1947             : 
+    1948             : // --------------------------------------------------------------
+    1949             : // |                          callbacks                         |
+    1950             : // --------------------------------------------------------------
+    1951             : 
+    1952             : /* //{ callbackDrs() */
+    1953             : 
+    1954         182 : void MpcController::callbackDrs(mrs_uav_controllers::mpc_controllerConfig &config, [[maybe_unused]] uint32_t level) {
+    1955             : 
+    1956         182 :   mrs_lib::set_mutexed(mutex_drs_params_, config, drs_params_);
+    1957             : 
+    1958         182 :   ROS_INFO("[%s]: DRS updated gains", this->name_.c_str());
+    1959         182 : }
+    1960             : 
+    1961             : //}
+    1962             : 
+    1963             : /* //{ callbackSetIntegralTerms() */
+    1964             : 
+    1965           0 : bool MpcController::callbackSetIntegralTerms(std_srvs::SetBool::Request &req, std_srvs::SetBool::Response &res) {
+    1966             : 
+    1967           0 :   if (!is_initialized_)
+    1968           0 :     return false;
+    1969             : 
+    1970           0 :   integral_terms_enabled_ = req.data;
+    1971             : 
+    1972           0 :   std::stringstream ss;
+    1973             : 
+    1974           0 :   ss << "integral terms %s" << (integral_terms_enabled_ ? "enabled" : "disabled");
+    1975             : 
+    1976           0 :   ROS_INFO_STREAM_THROTTLE(1.0, "[" << name_.c_str() << "]: " << ss.str());
+    1977             : 
+    1978           0 :   res.message = ss.str();
+    1979           0 :   res.success = true;
+    1980             : 
+    1981           0 :   return true;
+    1982             : }
+    1983             : 
+    1984             : //}
+    1985             : 
+    1986             : // --------------------------------------------------------------
+    1987             : // |                           timers                           |
+    1988             : // --------------------------------------------------------------
+    1989             : 
+    1990             : /* timerGains() //{ */
+    1991             : 
+    1992       13636 : void MpcController::timerGains(const ros::TimerEvent &event) {
+    1993             : 
+    1994       40908 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerGains", _gain_filtering_rate_, 1.0, event);
+    1995             :   mrs_lib::ScopeTimer timer =
+    1996       40908 :       mrs_lib::ScopeTimer("MpcController::timerGains", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+    1997             : 
+    1998       27272 :   auto drs_params = mrs_lib::get_mutexed(mutex_drs_params_, drs_params_);
+    1999       13636 :   auto gains      = mrs_lib::get_mutexed(mutex_gains_, gains_);
+    2000             : 
+    2001             :   // When muting the gains, we want to bypass the filter,
+    2002             :   // so it happens immediately.
+    2003       13636 :   bool   bypass_filter = (mute_gains_ || mute_gains_by_tracker_);
+    2004       13636 :   double gain_coeff    = (mute_gains_ || mute_gains_by_tracker_) ? _gain_mute_coefficient_ : 1.0;
+    2005             : 
+    2006       13636 :   mute_gains_ = false;
+    2007             : 
+    2008       13636 :   const double dt = (event.current_real - event.last_real).toSec();
+    2009             : 
+    2010       13636 :   bool updated = false;
+    2011             : 
+    2012       13636 :   gains.kq_roll_pitch = calculateGainChange(dt, gains.kq_roll_pitch, drs_params.kq_roll_pitch * gain_coeff, bypass_filter, "kq_roll_pitch", updated);
+    2013       13636 :   gains.kq_yaw        = calculateGainChange(dt, gains.kq_yaw, drs_params.kq_yaw * gain_coeff, bypass_filter, "kq_yaw", updated);
+    2014       13636 :   gains.km            = calculateGainChange(dt, gains.km, drs_params.km * gain_coeff, bypass_filter, "km", updated);
+    2015       13636 :   gains.kiwxy         = calculateGainChange(dt, gains.kiwxy, drs_params.kiwxy * gain_coeff, bypass_filter, "kiwxy", updated);
+    2016       13636 :   gains.kibxy         = calculateGainChange(dt, gains.kibxy, drs_params.kibxy * gain_coeff, bypass_filter, "kibxy", updated);
+    2017             : 
+    2018             :   // do not apply muting on these gains
+    2019       13636 :   gains.kiwxy_lim = calculateGainChange(dt, gains.kiwxy_lim, drs_params.kiwxy_lim, false, "kiwxy_lim", updated);
+    2020       13636 :   gains.kibxy_lim = calculateGainChange(dt, gains.kibxy_lim, drs_params.kibxy_lim, false, "kibxy_lim", updated);
+    2021       13636 :   gains.km_lim    = calculateGainChange(dt, gains.km_lim, drs_params.km_lim, false, "km_lim", updated);
+    2022             : 
+    2023       13636 :   mrs_lib::set_mutexed(mutex_gains_, gains, gains_);
+    2024             : 
+    2025             :   // set the gains back to dynamic reconfigure
+    2026             :   // and only do it when some filtering occurs
+    2027       13636 :   if (updated) {
+    2028             : 
+    2029        1372 :     drs_params.kiwxy         = gains.kiwxy;
+    2030        1372 :     drs_params.kibxy         = gains.kibxy;
+    2031        1372 :     drs_params.kq_roll_pitch = gains.kq_roll_pitch;
+    2032        1372 :     drs_params.kq_yaw        = gains.kq_yaw;
+    2033        1372 :     drs_params.km            = gains.km;
+    2034        1372 :     drs_params.km_lim        = gains.km_lim;
+    2035        1372 :     drs_params.kiwxy_lim     = gains.kiwxy_lim;
+    2036        1372 :     drs_params.kibxy_lim     = gains.kibxy_lim;
+    2037             : 
+    2038        1372 :     drs_->updateConfig(drs_params);
+    2039             : 
+    2040        1372 :     ROS_INFO_THROTTLE(10.0, "[%s]: gains have been updated", name_.c_str());
+    2041             :   }
+    2042       13636 : }
+    2043             : 
+    2044             : //}
+    2045             : 
+    2046             : // --------------------------------------------------------------
+    2047             : // |                       other routines                       |
+    2048             : // --------------------------------------------------------------
+    2049             : 
+    2050             : /* calculateGainChange() //{ */
+    2051             : 
+    2052      109088 : double MpcController::calculateGainChange(const double dt, const double current_value, const double desired_value, const bool bypass_rate, std::string name,
+    2053             :                                           bool &updated) {
+    2054             : 
+    2055      109088 :   double change = desired_value - current_value;
+    2056             : 
+    2057      109088 :   double gains_filter_max_change = _gains_filter_change_rate_ * dt;
+    2058      109088 :   double gains_filter_min_change = _gains_filter_min_change_rate_ * dt;
+    2059             : 
+    2060      109088 :   if (!bypass_rate) {
+    2061             : 
+    2062             :     // if current value is near 0...
+    2063             :     double change_in_perc;
+    2064             :     double saturated_change;
+    2065             : 
+    2066      108323 :     if (fabs(current_value) < 1e-6) {
+    2067           0 :       change *= gains_filter_max_change;
+    2068             :     } else {
+    2069             : 
+    2070      108323 :       saturated_change = change;
+    2071             : 
+    2072      108323 :       change_in_perc = (current_value + saturated_change) / current_value - 1.0;
+    2073             : 
+    2074      108323 :       if (change_in_perc > gains_filter_max_change) {
+    2075        5335 :         saturated_change = current_value * gains_filter_max_change;
+    2076      102988 :       } else if (change_in_perc < -gains_filter_max_change) {
+    2077           0 :         saturated_change = current_value * -gains_filter_max_change;
+    2078             :       }
+    2079             : 
+    2080      108323 :       if (fabs(saturated_change) < fabs(change) * gains_filter_min_change) {
+    2081           0 :         change *= gains_filter_min_change;
+    2082             :       } else {
+    2083      108323 :         change = saturated_change;
+    2084             :       }
+    2085             :     }
+    2086             :   }
+    2087             : 
+    2088      109088 :   if (fabs(change) > 1e-3) {
+    2089        6860 :     ROS_DEBUG("[%s]: changing gain '%s' from %.2f to %.2f", name_.c_str(), name.c_str(), current_value, desired_value);
+    2090        6860 :     updated = true;
+    2091             :   }
+    2092             : 
+    2093      109088 :   return current_value + change;
+    2094             : }
+    2095             : 
+    2096             : //}
+    2097             : 
+    2098             : /* getHeadingSafely() //{ */
+    2099             : 
+    2100       56284 : double MpcController::getHeadingSafely(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command) {
+    2101             : 
+    2102             :   try {
+    2103       56284 :     return mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+    2104             :   }
+    2105           0 :   catch (...) {
+    2106             :   }
+    2107             : 
+    2108             :   try {
+    2109           0 :     return mrs_lib::AttitudeConverter(uav_state.pose.orientation).getYaw();
+    2110             :   }
+    2111           0 :   catch (...) {
+    2112             :   }
+    2113             : 
+    2114           0 :   if (tracker_command.use_heading) {
+    2115           0 :     return tracker_command.heading;
+    2116             :   }
+    2117             : 
+    2118           0 :   return 0;
+    2119             : }
+    2120             : 
+    2121             : //}
+    2122             : 
+    2123             : //}
+    2124             : 
+    2125             : }  // namespace mpc_controller
+    2126             : 
+    2127             : }  // namespace mrs_uav_controllers
+    2128             : 
+    2129             : #include <pluginlib/class_list_macros.h>
+    2130          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_controllers::mpc_controller::MpcController, mrs_uav_managers::Controller)
+
+
+
+ + + + +
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LCOV - code coverage report
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Current view:top level - mrs_uav_controllers/src - se3_controller.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:61777479.7 %
Date:2024-04-17 23:52:03Functions:151788.2 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_controllers::se3_controller::Se3Controller::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_controllers::se3_controller::Se3Controller::resetDisturbanceEstimators()0
mrs_uav_controllers::se3_controller::Se3Controller::deactivate()23
mrs_uav_controllers::se3_controller::Se3Controller::activate(mrs_uav_managers::Controller::ControlOutput const&)27
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_controllers::se3_controller::Se3Controller::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_controllers::se3_controller::Se3Controller::callbackDrs(mrs_uav_controllers::se3_controllerConfig&, unsigned int)183
mrs_uav_controllers::se3_controller::Se3Controller::positionPassthrough(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)240
mrs_uav_controllers::se3_controller::Se3Controller::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)360
mrs_uav_controllers::se3_controller::Se3Controller::PIDVelocityOutput(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&, mrs_uav_controllers::common::CONTROL_OUTPUT const&, double const&)2665
mrs_uav_controllers::se3_controller::Se3Controller::getStatus()2759
mrs_uav_controllers::se3_controller::Se3Controller::timerGains(ros::TimerEvent const&)4328
mrs_uav_controllers::se3_controller::Se3Controller::SE3Controller(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&, double const&, mrs_uav_controllers::common::CONTROL_OUTPUT const&)24001
mrs_uav_controllers::se3_controller::Se3Controller::getHeadingSafely(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)26666
mrs_uav_controllers::se3_controller::Se3Controller::updateActive(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)26906
mrs_uav_controllers::se3_controller::Se3Controller::calculateGainChange(double, double, double, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool&)60592
mrs_uav_controllers::se3_controller::Se3Controller::updateInactive(mrs_msgs::UavState_<std::allocator<void> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)103512
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Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_uav_controllers/src - se3_controller.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:61777479.7 %
Date:2024-04-17 23:52:03Functions:151788.2 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_controllers::se3_controller::Se3Controller::deactivate()23
mrs_uav_controllers::se3_controller::Se3Controller::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_controllers::se3_controller::Se3Controller::timerGains(ros::TimerEvent const&)4328
mrs_uav_controllers::se3_controller::Se3Controller::callbackDrs(mrs_uav_controllers::se3_controllerConfig&, unsigned int)183
mrs_uav_controllers::se3_controller::Se3Controller::updateActive(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)26906
mrs_uav_controllers::se3_controller::Se3Controller::SE3Controller(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&, double const&, mrs_uav_controllers::common::CONTROL_OUTPUT const&)24001
mrs_uav_controllers::se3_controller::Se3Controller::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)360
mrs_uav_controllers::se3_controller::Se3Controller::updateInactive(mrs_msgs::UavState_<std::allocator<void> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)103512
mrs_uav_controllers::se3_controller::Se3Controller::getHeadingSafely(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)26666
mrs_uav_controllers::se3_controller::Se3Controller::PIDVelocityOutput(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&, mrs_uav_controllers::common::CONTROL_OUTPUT const&, double const&)2665
mrs_uav_controllers::se3_controller::Se3Controller::calculateGainChange(double, double, double, bool, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool&)60592
mrs_uav_controllers::se3_controller::Se3Controller::positionPassthrough(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_msgs::TrackerCommand_<std::allocator<void> > const&)240
mrs_uav_controllers::se3_controller::Se3Controller::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_controllers::se3_controller::Se3Controller::resetDisturbanceEstimators()0
mrs_uav_controllers::se3_controller::Se3Controller::activate(mrs_uav_managers::Controller::ControlOutput const&)27
mrs_uav_controllers::se3_controller::Se3Controller::getStatus()2759
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Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_uav_controllers/src - se3_controller.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:61777479.7 %
Date:2024-04-17 23:52:03Functions:151788.2 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <ros/package.h>
+       5             : 
+       6             : #include <common.h>
+       7             : #include <pid.hpp>
+       8             : 
+       9             : #include <mrs_uav_managers/controller.h>
+      10             : 
+      11             : #include <dynamic_reconfigure/server.h>
+      12             : #include <mrs_uav_controllers/se3_controllerConfig.h>
+      13             : 
+      14             : #include <mrs_lib/profiler.h>
+      15             : #include <mrs_lib/utils.h>
+      16             : #include <mrs_lib/mutex.h>
+      17             : #include <mrs_lib/attitude_converter.h>
+      18             : #include <mrs_lib/geometry/cyclic.h>
+      19             : 
+      20             : #include <geometry_msgs/Vector3Stamped.h>
+      21             : 
+      22             : //}
+      23             : 
+      24             : #define OUTPUT_ACTUATORS 0
+      25             : #define OUTPUT_CONTROL_GROUP 1
+      26             : #define OUTPUT_ATTITUDE_RATE 2
+      27             : #define OUTPUT_ATTITUDE 3
+      28             : 
+      29             : namespace mrs_uav_controllers
+      30             : {
+      31             : 
+      32             : namespace se3_controller
+      33             : {
+      34             : 
+      35             : /* structs //{ */
+      36             : 
+      37             : typedef struct
+      38             : {
+      39             :   double kpxy;           // position xy gain
+      40             :   double kvxy;           // velocity xy gain
+      41             :   double kaxy;           // acceleration xy gain (feed forward, =1)
+      42             :   double kiwxy;          // world xy integral gain
+      43             :   double kibxy;          // body xy integral gain
+      44             :   double kiwxy_lim;      // world xy integral limit
+      45             :   double kibxy_lim;      // body xy integral limit
+      46             :   double kpz;            // position z gain
+      47             :   double kvz;            // velocity z gain
+      48             :   double kaz;            // acceleration z gain (feed forward, =1)
+      49             :   double km;             // mass estimator gain
+      50             :   double km_lim;         // mass estimator limit
+      51             :   double kq_roll_pitch;  // pitch/roll attitude gain
+      52             :   double kq_yaw;         // yaw attitude gain
+      53             :   double kw_roll_pitch;  // attitude rate gain
+      54             :   double kw_yaw;         // attitude rate gain
+      55             : } Gains_t;
+      56             : 
+      57             : //}
+      58             : 
+      59             : /* //{ class Se3Controller */
+      60             : 
+      61             : class Se3Controller : public mrs_uav_managers::Controller {
+      62             : 
+      63             : public:
+      64             :   bool initialize(const ros::NodeHandle& nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      65             :                   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers);
+      66             : 
+      67             :   bool activate(const ControlOutput& last_control_output);
+      68             : 
+      69             :   void deactivate(void);
+      70             : 
+      71             :   void updateInactive(const mrs_msgs::UavState& uav_state, const std::optional<mrs_msgs::TrackerCommand>& tracker_command);
+      72             : 
+      73             :   ControlOutput updateActive(const mrs_msgs::UavState& uav_state, const mrs_msgs::TrackerCommand& tracker_command);
+      74             : 
+      75             :   const mrs_msgs::ControllerStatus getStatus();
+      76             : 
+      77             :   void switchOdometrySource(const mrs_msgs::UavState& new_uav_state);
+      78             : 
+      79             :   void resetDisturbanceEstimators(void);
+      80             : 
+      81             :   const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr& cmd);
+      82             : 
+      83             : private:
+      84             :   ros::NodeHandle nh_;
+      85             : 
+      86             :   bool is_initialized_ = false;
+      87             :   bool is_active_      = false;
+      88             : 
+      89             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>  common_handlers_;
+      90             :   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers_;
+      91             : 
+      92             :   // | ------------------------ uav state ----------------------- |
+      93             : 
+      94             :   mrs_msgs::UavState uav_state_;
+      95             :   std::mutex         mutex_uav_state_;
+      96             : 
+      97             :   // | --------------- dynamic reconfigure server --------------- |
+      98             : 
+      99             :   boost::recursive_mutex                            mutex_drs_;
+     100             :   typedef mrs_uav_controllers::se3_controllerConfig DrsConfig_t;
+     101             :   typedef dynamic_reconfigure::Server<DrsConfig_t>  Drs_t;
+     102             :   boost::shared_ptr<Drs_t>                          drs_;
+     103             :   void                                              callbackDrs(mrs_uav_controllers::se3_controllerConfig& config, uint32_t level);
+     104             :   DrsConfig_t                                       drs_params_;
+     105             : 
+     106             :   // | ----------------------- controllers ---------------------- |
+     107             : 
+     108             :   void positionPassthrough(const mrs_msgs::UavState& uav_state, const mrs_msgs::TrackerCommand& tracker_command);
+     109             : 
+     110             :   void PIDVelocityOutput(const mrs_msgs::UavState& uav_state, const mrs_msgs::TrackerCommand& tracker_command, const common::CONTROL_OUTPUT& control_output,
+     111             :                          const double& dt);
+     112             : 
+     113             :   void SE3Controller(const mrs_msgs::UavState& uav_state, const mrs_msgs::TrackerCommand& tracker_command, const double& dt,
+     114             :                      const common::CONTROL_OUTPUT& output_modality);
+     115             : 
+     116             :   // | ----------------------- constraints ---------------------- |
+     117             : 
+     118             :   mrs_msgs::DynamicsConstraints constraints_;
+     119             :   std::mutex                    mutex_constraints_;
+     120             : 
+     121             :   // | --------- throttle generation and mass estimation -------- |
+     122             : 
+     123             :   double _uav_mass_;
+     124             :   double uav_mass_difference_;
+     125             : 
+     126             :   Gains_t gains_;
+     127             : 
+     128             :   std::mutex mutex_gains_;       // locks the gains the are used and filtered
+     129             :   std::mutex mutex_drs_params_;  // locks the gains that came from the drs
+     130             : 
+     131             :   ros::Timer timer_gains_;
+     132             :   void       timerGains(const ros::TimerEvent& event);
+     133             : 
+     134             :   double _gain_filtering_rate_;
+     135             : 
+     136             :   // | ----------------------- gain muting ---------------------- |
+     137             : 
+     138             :   std::atomic<bool> mute_gains_            = false;
+     139             :   std::atomic<bool> mute_gains_by_tracker_ = false;
+     140             :   double            _gain_mute_coefficient_;
+     141             : 
+     142             :   // | --------------------- gain filtering --------------------- |
+     143             : 
+     144             :   double calculateGainChange(const double dt, const double current_value, const double desired_value, const bool bypass_rate, std::string name, bool& updated);
+     145             : 
+     146             :   double getHeadingSafely(const mrs_msgs::UavState& uav_state, const mrs_msgs::TrackerCommand& tracker_command);
+     147             : 
+     148             :   double _gains_filter_change_rate_;
+     149             :   double _gains_filter_min_change_rate_;
+     150             : 
+     151             :   // | ------------ controller limits and saturations ----------- |
+     152             : 
+     153             :   bool   _tilt_angle_failsafe_enabled_;
+     154             :   double _tilt_angle_failsafe_;
+     155             : 
+     156             :   double _throttle_saturation_;
+     157             : 
+     158             :   // | ------------------ activation and output ----------------- |
+     159             : 
+     160             :   ControlOutput last_control_output_;
+     161             :   ControlOutput activation_control_output_;
+     162             : 
+     163             :   ros::Time         last_update_time_;
+     164             :   std::atomic<bool> first_iteration_ = true;
+     165             : 
+     166             :   // | ------------------------ profiler_ ------------------------ |
+     167             : 
+     168             :   mrs_lib::Profiler profiler_;
+     169             :   bool              _profiler_enabled_ = false;
+     170             : 
+     171             :   // | ------------------------ integrals ----------------------- |
+     172             : 
+     173             :   Eigen::Vector2d Ib_b_;  // body error integral in the body frame
+     174             :   Eigen::Vector2d Iw_w_;  // world error integral in the world_frame
+     175             :   std::mutex      mutex_integrals_;
+     176             : 
+     177             :   // | ------------------------- rampup ------------------------- |
+     178             : 
+     179             :   bool   _rampup_enabled_ = false;
+     180             :   double _rampup_speed_;
+     181             : 
+     182             :   bool      rampup_active_ = false;
+     183             :   double    rampup_throttle_;
+     184             :   int       rampup_direction_;
+     185             :   double    rampup_duration_;
+     186             :   ros::Time rampup_start_time_;
+     187             :   ros::Time rampup_last_time_;
+     188             : 
+     189             :   // | ---------------------- position pid ---------------------- |
+     190             : 
+     191             :   double _pos_pid_p_;
+     192             :   double _pos_pid_i_;
+     193             :   double _pos_pid_d_;
+     194             : 
+     195             :   double _hdg_pid_p_;
+     196             :   double _hdg_pid_i_;
+     197             :   double _hdg_pid_d_;
+     198             : 
+     199             :   PIDController position_pid_x_;
+     200             :   PIDController position_pid_y_;
+     201             :   PIDController position_pid_z_;
+     202             :   PIDController position_pid_heading_;
+     203             : };
+     204             : 
+     205             : //}
+     206             : 
+     207             : // --------------------------------------------------------------
+     208             : // |                   controller's interface                   |
+     209             : // --------------------------------------------------------------
+     210             : 
+     211             : /* //{ initialize() */
+     212             : 
+     213          91 : bool Se3Controller::initialize(const ros::NodeHandle& nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+     214             :                                std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) {
+     215             : 
+     216          91 :   nh_ = nh;
+     217             : 
+     218          91 :   common_handlers_  = common_handlers;
+     219          91 :   private_handlers_ = private_handlers;
+     220             : 
+     221          91 :   _uav_mass_ = common_handlers->getMass();
+     222             : 
+     223          91 :   ros::Time::waitForValid();
+     224             : 
+     225             :   // | ---------- loading params using the parent's nh ---------- |
+     226             : 
+     227         182 :   mrs_lib::ParamLoader param_loader_parent(common_handlers->parent_nh, "ControlManager");
+     228             : 
+     229          91 :   param_loader_parent.loadParam("enable_profiler", _profiler_enabled_);
+     230             : 
+     231          91 :   if (!param_loader_parent.loadedSuccessfully()) {
+     232           0 :     ROS_ERROR("[MidairActivationController]: Could not load all parameters!");
+     233           0 :     return false;
+     234             :   }
+     235             : 
+     236             :   // | -------------------- loading my params ------------------- |
+     237             : 
+     238          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_controllers") + "/config/private/se3_controller.yaml");
+     239          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_controllers") + "/config/public/se3_controller.yaml");
+     240             : 
+     241         182 :   const std::string yaml_namespace = "mrs_uav_controllers/se3_controller/";
+     242             : 
+     243             :   // lateral gains
+     244          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/horizontal/kp", gains_.kpxy);
+     245          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/horizontal/kv", gains_.kvxy);
+     246          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/horizontal/ka", gains_.kaxy);
+     247             : 
+     248          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/horizontal/kiw", gains_.kiwxy);
+     249          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/horizontal/kib", gains_.kibxy);
+     250             : 
+     251             :   // | ------------------------- rampup ------------------------- |
+     252             : 
+     253          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/rampup/enabled", _rampup_enabled_);
+     254          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/rampup/speed", _rampup_speed_);
+     255             : 
+     256             :   // height gains
+     257          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/vertical/kp", gains_.kpz);
+     258          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/vertical/kv", gains_.kvz);
+     259          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/vertical/ka", gains_.kaz);
+     260             : 
+     261             :   // attitude gains
+     262          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/attitude/kq_roll_pitch", gains_.kq_roll_pitch);
+     263          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/attitude/kq_yaw", gains_.kq_yaw);
+     264             : 
+     265             :   // attitude rate gains
+     266          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/attitude_rate_gains/kw_roll_pitch", gains_.kw_roll_pitch);
+     267          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/attitude_rate_gains/kw_yaw", gains_.kw_yaw);
+     268             : 
+     269             :   // mass estimator
+     270          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/mass_estimator/km", gains_.km);
+     271          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/mass_estimator/km_lim", gains_.km_lim);
+     272             : 
+     273             :   // integrator limits
+     274          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/horizontal/kiw_lim", gains_.kiwxy_lim);
+     275          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/default_gains/horizontal/kib_lim", gains_.kibxy_lim);
+     276             : 
+     277             :   // constraints
+     278          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/constraints/tilt_angle_failsafe/enabled", _tilt_angle_failsafe_enabled_);
+     279          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/constraints/tilt_angle_failsafe/limit", _tilt_angle_failsafe_);
+     280             : 
+     281          91 :   _tilt_angle_failsafe_ = M_PI * (_tilt_angle_failsafe_ / 180.0);
+     282             : 
+     283          91 :   if (_tilt_angle_failsafe_enabled_ && fabs(_tilt_angle_failsafe_) < 1e-3) {
+     284           0 :     ROS_ERROR("[Se3Controller]: constraints/tilt_angle_failsafe/enabled = 'TRUE' but the limit is too low");
+     285           0 :     return false;
+     286             :   }
+     287             : 
+     288          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/constraints/throttle_saturation", _throttle_saturation_);
+     289             : 
+     290             :   // gain filtering
+     291          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/gain_filtering/perc_change_rate", _gains_filter_change_rate_);
+     292          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/gain_filtering/min_change_rate", _gains_filter_min_change_rate_);
+     293          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/gain_filtering/rate", _gain_filtering_rate_);
+     294          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/gain_filtering/gain_mute_coefficient", _gain_mute_coefficient_);
+     295             : 
+     296             :   // output mode
+     297          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/preferred_output", drs_params_.preferred_output_mode);
+     298             : 
+     299          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/rotation_matrix", drs_params_.rotation_type);
+     300             : 
+     301             :   // angular rate feed forward
+     302         182 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/angular_rate_feedforward/parasitic_pitch_roll",
+     303          91 :                                             drs_params_.pitch_roll_heading_rate_compensation);
+     304          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "se3/angular_rate_feedforward/jerk", drs_params_.jerk_feedforward);
+     305             : 
+     306             :   // | ------------------- position pid params ------------------ |
+     307             : 
+     308          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/translation_gains/p", _pos_pid_p_);
+     309          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/translation_gains/i", _pos_pid_i_);
+     310          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/translation_gains/d", _pos_pid_d_);
+     311             : 
+     312          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/heading_gains/p", _hdg_pid_p_);
+     313          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/heading_gains/i", _hdg_pid_i_);
+     314          91 :   private_handlers->param_loader->loadParam(yaml_namespace + "position_controller/heading_gains/d", _hdg_pid_d_);
+     315             : 
+     316             :   // | ------------------ finish loading params ----------------- |
+     317             : 
+     318          91 :   if (!private_handlers->param_loader->loadedSuccessfully()) {
+     319           0 :     ROS_ERROR("[Se3Controller]: could not load all parameters!");
+     320           0 :     return false;
+     321             :   }
+     322             : 
+     323             :   // | ---------------- prepare stuff from params --------------- |
+     324             : 
+     325          91 :   if (!(drs_params_.preferred_output_mode == OUTPUT_ACTUATORS || drs_params_.preferred_output_mode == OUTPUT_CONTROL_GROUP ||
+     326          91 :         drs_params_.preferred_output_mode == OUTPUT_ATTITUDE_RATE || drs_params_.preferred_output_mode == OUTPUT_ATTITUDE)) {
+     327           0 :     ROS_ERROR("[Se3Controller]: preferred output mode has to be {0, 1, 2, 3}!");
+     328           0 :     return false;
+     329             :   }
+     330             : 
+     331             :   // initialize the integrals
+     332          91 :   uav_mass_difference_ = 0;
+     333          91 :   Iw_w_                = Eigen::Vector2d::Zero(2);
+     334          91 :   Ib_b_                = Eigen::Vector2d::Zero(2);
+     335             : 
+     336             :   // | --------------- dynamic reconfigure server --------------- |
+     337             : 
+     338          91 :   drs_params_.kpxy             = gains_.kpxy;
+     339          91 :   drs_params_.kvxy             = gains_.kvxy;
+     340          91 :   drs_params_.kaxy             = gains_.kaxy;
+     341          91 :   drs_params_.kiwxy            = gains_.kiwxy;
+     342          91 :   drs_params_.kibxy            = gains_.kibxy;
+     343          91 :   drs_params_.kpz              = gains_.kpz;
+     344          91 :   drs_params_.kvz              = gains_.kvz;
+     345          91 :   drs_params_.kaz              = gains_.kaz;
+     346          91 :   drs_params_.kq_roll_pitch    = gains_.kq_roll_pitch;
+     347          91 :   drs_params_.kq_yaw           = gains_.kq_yaw;
+     348          91 :   drs_params_.kiwxy_lim        = gains_.kiwxy_lim;
+     349          91 :   drs_params_.kibxy_lim        = gains_.kibxy_lim;
+     350          91 :   drs_params_.km               = gains_.km;
+     351          91 :   drs_params_.km_lim           = gains_.km_lim;
+     352          91 :   drs_params_.jerk_feedforward = true;
+     353             : 
+     354          91 :   drs_.reset(new Drs_t(mutex_drs_, nh_));
+     355          91 :   drs_->updateConfig(drs_params_);
+     356          91 :   Drs_t::CallbackType f = boost::bind(&Se3Controller::callbackDrs, this, _1, _2);
+     357          91 :   drs_->setCallback(f);
+     358             : 
+     359             :   // | ------------------------- timers ------------------------- |
+     360             : 
+     361          91 :   timer_gains_ = nh_.createTimer(ros::Rate(_gain_filtering_rate_), &Se3Controller::timerGains, this, false, false);
+     362             : 
+     363             :   // | ---------------------- position pid ---------------------- |
+     364             : 
+     365          91 :   position_pid_x_.setParams(_pos_pid_p_, _pos_pid_d_, _pos_pid_i_, -1, 1.0);
+     366          91 :   position_pid_y_.setParams(_pos_pid_p_, _pos_pid_d_, _pos_pid_i_, -1, 1.0);
+     367          91 :   position_pid_z_.setParams(_pos_pid_p_, _pos_pid_d_, _pos_pid_i_, -1, 1.0);
+     368          91 :   position_pid_heading_.setParams(_hdg_pid_p_, _hdg_pid_d_, _hdg_pid_i_, -1, 0.1);
+     369             : 
+     370             :   // | ------------------------ profiler ------------------------ |
+     371             : 
+     372          91 :   profiler_ = mrs_lib::Profiler(common_handlers_->parent_nh, "Se3Controller", _profiler_enabled_);
+     373             : 
+     374             :   // | ----------------------- finish init ---------------------- |
+     375             : 
+     376          91 :   ROS_INFO("[Se3Controller]: initialized");
+     377             : 
+     378          91 :   is_initialized_ = true;
+     379             : 
+     380          91 :   return true;
+     381             : }
+     382             : 
+     383             : //}
+     384             : 
+     385             : /* //{ activate() */
+     386             : 
+     387          27 : bool Se3Controller::activate(const ControlOutput& last_control_output) {
+     388             : 
+     389          27 :   activation_control_output_ = last_control_output;
+     390             : 
+     391          27 :   double activation_mass = _uav_mass_;
+     392             : 
+     393          27 :   if (activation_control_output_.diagnostics.mass_estimator) {
+     394           1 :     uav_mass_difference_ = activation_control_output_.diagnostics.mass_difference;
+     395           1 :     activation_mass += uav_mass_difference_;
+     396           1 :     ROS_INFO("[Se3Controller]: setting mass difference from the last control output: %.2f kg", uav_mass_difference_);
+     397             :   }
+     398             : 
+     399          27 :   last_control_output_.diagnostics.controller_enforcing_constraints = false;
+     400             : 
+     401          27 :   if (activation_control_output_.diagnostics.disturbance_estimator) {
+     402           1 :     Ib_b_[0] = -activation_control_output_.diagnostics.disturbance_bx_b;
+     403           1 :     Ib_b_[1] = -activation_control_output_.diagnostics.disturbance_by_b;
+     404             : 
+     405           1 :     Iw_w_[0] = -activation_control_output_.diagnostics.disturbance_wx_w;
+     406           1 :     Iw_w_[1] = -activation_control_output_.diagnostics.disturbance_wy_w;
+     407             : 
+     408           1 :     ROS_INFO(
+     409             :         "[Se3Controller]: setting disturbances from the last control output: Ib_b_: %.2f, %.2f N, Iw_w_: "
+     410             :         "%.2f, %.2f N",
+     411             :         Ib_b_[0], Ib_b_[1], Iw_w_[0], Iw_w_[1]);
+     412             :   }
+     413             : 
+     414             :   // did the last controller use manual throttle control?
+     415          27 :   auto throttle_last_controller = common::extractThrottle(activation_control_output_);
+     416             : 
+     417             :   // rampup check
+     418          27 :   if (_rampup_enabled_ && throttle_last_controller) {
+     419             : 
+     420          14 :     double hover_throttle = mrs_lib::quadratic_throttle_model::forceToThrottle(common_handlers_->throttle_model, activation_mass * common_handlers_->g);
+     421             : 
+     422          14 :     double throttle_difference = hover_throttle - throttle_last_controller.value();
+     423             : 
+     424          14 :     if (throttle_difference > 0) {
+     425           3 :       rampup_direction_ = 1;
+     426          11 :     } else if (throttle_difference < 0) {
+     427           0 :       rampup_direction_ = -1;
+     428             :     } else {
+     429          11 :       rampup_direction_ = 0;
+     430             :     }
+     431             : 
+     432          14 :     ROS_INFO("[Se3Controller]: activating rampup with initial throttle: %.4f, target: %.4f", throttle_last_controller.value(), hover_throttle);
+     433             : 
+     434          14 :     rampup_active_     = true;
+     435          14 :     rampup_start_time_ = ros::Time::now();
+     436          14 :     rampup_last_time_  = ros::Time::now();
+     437          14 :     rampup_throttle_   = throttle_last_controller.value();
+     438             : 
+     439          14 :     rampup_duration_ = fabs(throttle_difference) / _rampup_speed_;
+     440             :   }
+     441             : 
+     442          27 :   first_iteration_ = true;
+     443          27 :   mute_gains_      = true;
+     444             : 
+     445          27 :   timer_gains_.start();
+     446             : 
+     447             :   // | ------------------ finish the activation ----------------- |
+     448             : 
+     449          27 :   ROS_INFO("[Se3Controller]: activated");
+     450             : 
+     451          27 :   is_active_ = true;
+     452             : 
+     453          27 :   return true;
+     454             : }
+     455             : 
+     456             : //}
+     457             : 
+     458             : /* //{ deactivate() */
+     459             : 
+     460          23 : void Se3Controller::deactivate(void) {
+     461             : 
+     462          23 :   is_active_           = false;
+     463          23 :   first_iteration_     = false;
+     464          23 :   uav_mass_difference_ = 0;
+     465             : 
+     466          23 :   timer_gains_.stop();
+     467             : 
+     468          23 :   ROS_INFO("[Se3Controller]: deactivated");
+     469          23 : }
+     470             : 
+     471             : //}
+     472             : 
+     473             : /* updateInactive() //{ */
+     474             : 
+     475      103512 : void Se3Controller::updateInactive(const mrs_msgs::UavState& uav_state, [[maybe_unused]] const std::optional<mrs_msgs::TrackerCommand>& tracker_command) {
+     476             : 
+     477      103512 :   mrs_lib::set_mutexed(mutex_uav_state_, uav_state, uav_state_);
+     478             : 
+     479      103512 :   last_update_time_ = uav_state.header.stamp;
+     480             : 
+     481      103512 :   first_iteration_ = false;
+     482      103512 : }
+     483             : 
+     484             : //}
+     485             : 
+     486             : /* //{ updateWhenActive() */
+     487             : 
+     488       26906 : Se3Controller::ControlOutput Se3Controller::updateActive(const mrs_msgs::UavState& uav_state, const mrs_msgs::TrackerCommand& tracker_command) {
+     489             : 
+     490       80718 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("updateActive");
+     491       80718 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("Se3Controller::updateActive", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+     492             : 
+     493       53812 :   auto drs_params = mrs_lib::get_mutexed(mutex_drs_params_, drs_params_);
+     494             : 
+     495       26906 :   mrs_lib::set_mutexed(mutex_uav_state_, uav_state, uav_state_);
+     496             : 
+     497       26906 :   last_control_output_.desired_heading_rate          = {};
+     498       26906 :   last_control_output_.desired_orientation           = {};
+     499       26906 :   last_control_output_.desired_unbiased_acceleration = {};
+     500       26906 :   last_control_output_.control_output                = {};
+     501             : 
+     502             :   // | -------------------- calculate the dt -------------------- |
+     503             : 
+     504             :   double dt;
+     505             : 
+     506       26906 :   if (first_iteration_) {
+     507          27 :     dt               = 0.01;
+     508          27 :     first_iteration_ = false;
+     509             :   } else {
+     510       26879 :     dt = (uav_state.header.stamp - last_update_time_).toSec();
+     511             :   }
+     512             : 
+     513       26906 :   last_update_time_ = uav_state.header.stamp;
+     514             : 
+     515       26906 :   if (fabs(dt) < 0.001) {
+     516             : 
+     517           0 :     ROS_DEBUG("[Se3Controller]: the last odometry message came too close (%.2f s)!", dt);
+     518             : 
+     519           0 :     dt = 0.01;
+     520             :   }
+     521             : 
+     522             :   // | ----------- obtain the lowest possible modality ---------- |
+     523             : 
+     524       26906 :   auto lowest_modality = common::getLowestOuput(common_handlers_->control_output_modalities);
+     525             : 
+     526       26906 :   if (!lowest_modality) {
+     527             : 
+     528           0 :     ROS_ERROR_THROTTLE(1.0, "[Se3Controller]: output modalities are empty! This error should never appear.");
+     529             : 
+     530           0 :     return last_control_output_;
+     531             :   }
+     532             : 
+     533             :   // | ----- we might prefer some output mode over the other ---- |
+     534             : 
+     535       26906 :   if (drs_params.preferred_output_mode == OUTPUT_ATTITUDE_RATE && common_handlers_->control_output_modalities.attitude_rate) {
+     536       19435 :     ROS_DEBUG_THROTTLE(1.0, "[Se3Controller]: prioritizing attitude rate output");
+     537       19435 :     lowest_modality = common::ATTITUDE_RATE;
+     538        7471 :   } else if (drs_params.preferred_output_mode == OUTPUT_ATTITUDE && common_handlers_->control_output_modalities.attitude) {
+     539           0 :     ROS_DEBUG_THROTTLE(1.0, "[Se3Controller]: prioritizing attitude output");
+     540           0 :     lowest_modality = common::ATTITUDE;
+     541        7471 :   } else if (drs_params.preferred_output_mode == OUTPUT_CONTROL_GROUP && common_handlers_->control_output_modalities.control_group) {
+     542           0 :     ROS_DEBUG_THROTTLE(1.0, "[Se3Controller]: prioritizing control group output");
+     543           0 :     lowest_modality = common::CONTROL_GROUP;
+     544        7471 :   } else if (drs_params.preferred_output_mode == OUTPUT_ACTUATORS && common_handlers_->control_output_modalities.actuators) {
+     545           0 :     ROS_DEBUG_THROTTLE(1.0, "[Se3Controller]: prioritizing actuators output");
+     546           0 :     lowest_modality = common::ACTUATORS_CMD;
+     547             :   }
+     548             : 
+     549       26906 :   switch (lowest_modality.value()) {
+     550             : 
+     551         240 :     case common::POSITION: {
+     552         240 :       positionPassthrough(uav_state, tracker_command);
+     553         240 :       break;
+     554             :     }
+     555             : 
+     556         931 :     case common::VELOCITY_HDG: {
+     557         931 :       PIDVelocityOutput(uav_state, tracker_command, common::VELOCITY_HDG, dt);
+     558         931 :       break;
+     559             :     }
+     560             : 
+     561        1734 :     case common::VELOCITY_HDG_RATE: {
+     562        1734 :       PIDVelocityOutput(uav_state, tracker_command, common::VELOCITY_HDG_RATE, dt);
+     563        1734 :       break;
+     564             :     }
+     565             : 
+     566         509 :     case common::ACCELERATION_HDG: {
+     567         509 :       SE3Controller(uav_state, tracker_command, dt, common::ACCELERATION_HDG);
+     568         509 :       break;
+     569             :     }
+     570             : 
+     571         464 :     case common::ACCELERATION_HDG_RATE: {
+     572         464 :       SE3Controller(uav_state, tracker_command, dt, common::ACCELERATION_HDG_RATE);
+     573         464 :       break;
+     574             :     }
+     575             : 
+     576        1147 :     case common::ATTITUDE: {
+     577        1147 :       SE3Controller(uav_state, tracker_command, dt, common::ATTITUDE);
+     578        1147 :       break;
+     579             :     }
+     580             : 
+     581       19435 :     case common::ATTITUDE_RATE: {
+     582       19435 :       SE3Controller(uav_state, tracker_command, dt, common::ATTITUDE_RATE);
+     583       19435 :       break;
+     584             :     }
+     585             : 
+     586        1234 :     case common::CONTROL_GROUP: {
+     587        1234 :       SE3Controller(uav_state, tracker_command, dt, common::CONTROL_GROUP);
+     588        1234 :       break;
+     589             :     }
+     590             : 
+     591        1212 :     case common::ACTUATORS_CMD: {
+     592        1212 :       SE3Controller(uav_state, tracker_command, dt, common::ACTUATORS_CMD);
+     593        1212 :       break;
+     594             :     }
+     595             : 
+     596       26906 :     default: {
+     597             :     }
+     598             :   }
+     599             : 
+     600       26906 :   return last_control_output_;
+     601             : }
+     602             : 
+     603             : //}
+     604             : 
+     605             : /* //{ getStatus() */
+     606             : 
+     607        2759 : const mrs_msgs::ControllerStatus Se3Controller::getStatus() {
+     608             : 
+     609        2759 :   mrs_msgs::ControllerStatus controller_status;
+     610             : 
+     611        2759 :   controller_status.active = is_active_;
+     612             : 
+     613        2759 :   return controller_status;
+     614             : }
+     615             : 
+     616             : //}
+     617             : 
+     618             : /* switchOdometrySource() //{ */
+     619             : 
+     620           0 : void Se3Controller::switchOdometrySource(const mrs_msgs::UavState& new_uav_state) {
+     621             : 
+     622           0 :   ROS_INFO("[Se3Controller]: switching the odometry source");
+     623             : 
+     624           0 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     625             : 
+     626             :   // | ----- transform world disturabances to the new frame ----- |
+     627             : 
+     628           0 :   geometry_msgs::Vector3Stamped world_integrals;
+     629             : 
+     630           0 :   world_integrals.header.stamp    = ros::Time::now();
+     631           0 :   world_integrals.header.frame_id = uav_state.header.frame_id;
+     632             : 
+     633           0 :   world_integrals.vector.x = Iw_w_[0];
+     634           0 :   world_integrals.vector.y = Iw_w_[1];
+     635           0 :   world_integrals.vector.z = 0;
+     636             : 
+     637           0 :   auto res = common_handlers_->transformer->transformSingle(world_integrals, new_uav_state.header.frame_id);
+     638             : 
+     639           0 :   if (res) {
+     640             : 
+     641           0 :     std::scoped_lock lock(mutex_integrals_);
+     642             : 
+     643           0 :     Iw_w_[0] = res.value().vector.x;
+     644           0 :     Iw_w_[1] = res.value().vector.y;
+     645             : 
+     646             :   } else {
+     647             : 
+     648           0 :     ROS_ERROR_THROTTLE(1.0, "[Se3Controller]: could not transform world integral to the new frame");
+     649             : 
+     650           0 :     std::scoped_lock lock(mutex_integrals_);
+     651             : 
+     652           0 :     Iw_w_[0] = 0;
+     653           0 :     Iw_w_[1] = 0;
+     654             :   }
+     655           0 : }
+     656             : 
+     657             : //}
+     658             : 
+     659             : /* resetDisturbanceEstimators() //{ */
+     660             : 
+     661           0 : void Se3Controller::resetDisturbanceEstimators(void) {
+     662             : 
+     663           0 :   std::scoped_lock lock(mutex_integrals_);
+     664             : 
+     665           0 :   Iw_w_ = Eigen::Vector2d::Zero(2);
+     666           0 :   Ib_b_ = Eigen::Vector2d::Zero(2);
+     667           0 : }
+     668             : 
+     669             : //}
+     670             : 
+     671             : /* setConstraints() //{ */
+     672             : 
+     673         360 : const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr Se3Controller::setConstraints([
+     674             :     [maybe_unused]] const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr& constraints) {
+     675             : 
+     676         360 :   if (!is_initialized_) {
+     677           0 :     return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse());
+     678             :   }
+     679             : 
+     680         360 :   mrs_lib::set_mutexed(mutex_constraints_, constraints->constraints, constraints_);
+     681             : 
+     682         360 :   ROS_INFO("[Se3Controller]: updating constraints");
+     683             : 
+     684         720 :   mrs_msgs::DynamicsConstraintsSrvResponse res;
+     685         360 :   res.success = true;
+     686         360 :   res.message = "constraints updated";
+     687             : 
+     688         360 :   return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse(res));
+     689             : }
+     690             : 
+     691             : //}
+     692             : 
+     693             : // --------------------------------------------------------------
+     694             : // |                         controllers                        |
+     695             : // --------------------------------------------------------------
+     696             : 
+     697             : /* SE3Controller() //{ */
+     698             : 
+     699       24001 : void Se3Controller::SE3Controller(const mrs_msgs::UavState& uav_state, const mrs_msgs::TrackerCommand& tracker_command, const double& dt,
+     700             :                                   const common::CONTROL_OUTPUT& output_modality) {
+     701             : 
+     702       48002 :   auto drs_params  = mrs_lib::get_mutexed(mutex_drs_params_, drs_params_);
+     703       24001 :   auto constraints = mrs_lib::get_mutexed(mutex_constraints_, constraints_);
+     704       24001 :   auto gains       = mrs_lib::get_mutexed(mutex_gains_, gains_);
+     705             : 
+     706             :   // | ----------------- get the current heading ---------------- |
+     707             : 
+     708       24001 :   double uav_heading = getHeadingSafely(uav_state, tracker_command);
+     709             : 
+     710             :   // --------------------------------------------------------------
+     711             :   // |          load the control reference and estimates          |
+     712             :   // --------------------------------------------------------------
+     713             : 
+     714             :   // Rp - position reference in global frame
+     715             :   // Rv - velocity reference in global frame
+     716             :   // Ra - velocity reference in global frame
+     717             : 
+     718       24001 :   Eigen::Vector3d Rp = Eigen::Vector3d::Zero(3);
+     719       24001 :   Eigen::Vector3d Rv = Eigen::Vector3d::Zero(3);
+     720       24001 :   Eigen::Vector3d Ra = Eigen::Vector3d::Zero(3);
+     721             : 
+     722       24001 :   if (tracker_command.use_position_vertical || tracker_command.use_position_horizontal) {
+     723             : 
+     724       24001 :     if (tracker_command.use_position_horizontal) {
+     725       24001 :       Rp[0] = tracker_command.position.x;
+     726       24001 :       Rp[1] = tracker_command.position.y;
+     727             :     } else {
+     728           0 :       Rv[0] = 0;
+     729           0 :       Rv[1] = 0;
+     730             :     }
+     731             : 
+     732       24001 :     if (tracker_command.use_position_vertical) {
+     733       24001 :       Rp[2] = tracker_command.position.z;
+     734             :     } else {
+     735           0 :       Rv[2] = 0;
+     736             :     }
+     737             :   }
+     738             : 
+     739       24001 :   if (tracker_command.use_velocity_horizontal) {
+     740       24001 :     Rv[0] = tracker_command.velocity.x;
+     741       24001 :     Rv[1] = tracker_command.velocity.y;
+     742             :   } else {
+     743           0 :     Rv[0] = 0;
+     744           0 :     Rv[1] = 0;
+     745             :   }
+     746             : 
+     747       24001 :   if (tracker_command.use_velocity_vertical) {
+     748       24001 :     Rv[2] = tracker_command.velocity.z;
+     749             :   } else {
+     750           0 :     Rv[2] = 0;
+     751             :   }
+     752             : 
+     753       24001 :   if (tracker_command.use_acceleration) {
+     754       24001 :     Ra << tracker_command.acceleration.x, tracker_command.acceleration.y, tracker_command.acceleration.z;
+     755             :   } else {
+     756           0 :     Ra << 0, 0, 0;
+     757             :   }
+     758             : 
+     759             :   // | ------ store the estimated values from the uav state ----- |
+     760             : 
+     761             :   // Op - position in global frame
+     762             :   // Ov - velocity in global frame
+     763       24001 :   Eigen::Vector3d Op(uav_state.pose.position.x, uav_state.pose.position.y, uav_state.pose.position.z);
+     764       24001 :   Eigen::Vector3d Ov(uav_state.velocity.linear.x, uav_state.velocity.linear.y, uav_state.velocity.linear.z);
+     765             : 
+     766             :   // R - current uav attitude
+     767       24001 :   Eigen::Matrix3d R = mrs_lib::AttitudeConverter(uav_state.pose.orientation);
+     768             : 
+     769             :   // Ow - UAV angular rate
+     770       24001 :   Eigen::Vector3d Ow(uav_state.velocity.angular.x, uav_state.velocity.angular.y, uav_state.velocity.angular.z);
+     771             : 
+     772             :   // | -------------- calculate the control errors -------------- |
+     773             : 
+     774             :   // position control error
+     775       24001 :   Eigen::Vector3d Ep(0, 0, 0);
+     776             : 
+     777       24001 :   if (tracker_command.use_position_horizontal || tracker_command.use_position_vertical) {
+     778       24001 :     Ep = Rp - Op;
+     779             :   }
+     780             : 
+     781             :   // velocity control error
+     782       24001 :   Eigen::Vector3d Ev(0, 0, 0);
+     783             : 
+     784       24001 :   if (tracker_command.use_velocity_horizontal || tracker_command.use_velocity_vertical ||
+     785           0 :       tracker_command.use_position_vertical) {  // use_position_vertical = true, not a mistake, this provides dampening
+     786       24001 :     Ev = Rv - Ov;
+     787             :   }
+     788             : 
+     789             :   // | --------------------- load the gains --------------------- |
+     790             : 
+     791       24001 :   mute_gains_by_tracker_ = tracker_command.disable_position_gains;
+     792             : 
+     793       24001 :   Eigen::Vector3d Ka(0, 0, 0);
+     794       24001 :   Eigen::Array3d  Kp(0, 0, 0);
+     795       24001 :   Eigen::Array3d  Kv(0, 0, 0);
+     796       24001 :   Eigen::Array3d  Kq(0, 0, 0);
+     797       24001 :   Eigen::Array3d  Kw(0, 0, 0);
+     798             : 
+     799             :   {
+     800       24001 :     std::scoped_lock lock(mutex_gains_);
+     801             : 
+     802       24001 :     if (tracker_command.use_position_horizontal) {
+     803       24001 :       Kp[0] = gains.kpxy;
+     804       24001 :       Kp[1] = gains.kpxy;
+     805             :     } else {
+     806           0 :       Kp[0] = 0;
+     807           0 :       Kp[1] = 0;
+     808             :     }
+     809             : 
+     810       24001 :     if (tracker_command.use_position_vertical) {
+     811       24001 :       Kp[2] = gains.kpz;
+     812             :     } else {
+     813           0 :       Kp[2] = 0;
+     814             :     }
+     815             : 
+     816       24001 :     if (tracker_command.use_velocity_horizontal) {
+     817       24001 :       Kv[0] = gains.kvxy;
+     818       24001 :       Kv[1] = gains.kvxy;
+     819             :     } else {
+     820           0 :       Kv[0] = 0;
+     821           0 :       Kv[1] = 0;
+     822             :     }
+     823             : 
+     824             :     // special case: if want to control z-pos but not the velocity => at least provide z dampening, therefore kvz_
+     825       24001 :     if (tracker_command.use_velocity_vertical || tracker_command.use_position_vertical) {
+     826       24001 :       Kv[2] = gains.kvz;
+     827             :     } else {
+     828           0 :       Kv[2] = 0;
+     829             :     }
+     830             : 
+     831       24001 :     if (tracker_command.use_acceleration) {
+     832       24001 :       Ka << gains.kaxy, gains.kaxy, gains.kaz;
+     833             :     } else {
+     834           0 :       Ka << 0, 0, 0;
+     835             :     }
+     836             : 
+     837       24001 :     if (!tracker_command.use_attitude_rate) {
+     838       24001 :       Kq << gains.kq_roll_pitch, gains.kq_roll_pitch, gains.kq_yaw;
+     839             :     }
+     840             : 
+     841       24001 :     Kw[0] = gains.kw_roll_pitch;
+     842       24001 :     Kw[1] = gains.kw_roll_pitch;
+     843       24001 :     Kw[2] = gains.kw_yaw;
+     844             :   }
+     845             : 
+     846       24001 :   Kp = Kp * (_uav_mass_ + uav_mass_difference_);
+     847       24001 :   Kv = Kv * (_uav_mass_ + uav_mass_difference_);
+     848             : 
+     849             :   // | --------------- desired orientation matrix --------------- |
+     850             : 
+     851             :   // get body integral in the world frame
+     852             : 
+     853       24001 :   Eigen::Vector2d Ib_w = Eigen::Vector2d(0, 0);
+     854             : 
+     855             :   {
+     856       48002 :     geometry_msgs::Vector3Stamped Ib_b_stamped;
+     857             : 
+     858       24001 :     Ib_b_stamped.header.stamp    = ros::Time::now();
+     859       24001 :     Ib_b_stamped.header.frame_id = "fcu_untilted";
+     860       24001 :     Ib_b_stamped.vector.x        = Ib_b_(0);
+     861       24001 :     Ib_b_stamped.vector.y        = Ib_b_(1);
+     862       24001 :     Ib_b_stamped.vector.z        = 0;
+     863             : 
+     864       48002 :     auto res = common_handlers_->transformer->transformSingle(Ib_b_stamped, uav_state_.header.frame_id);
+     865             : 
+     866       24001 :     if (res) {
+     867       24001 :       Ib_w[0] = res.value().vector.x;
+     868       24001 :       Ib_w[1] = res.value().vector.y;
+     869             :     } else {
+     870           0 :       ROS_ERROR_THROTTLE(1.0, "[Se3Controller]: could not transform the Ib_b_ to the world frame");
+     871             :     }
+     872             :   }
+     873             : 
+     874             :   // construct the desired force vector
+     875             : 
+     876       24001 :   double total_mass = _uav_mass_ + uav_mass_difference_;
+     877             : 
+     878       24001 :   Eigen::Vector3d feed_forward      = total_mass * (Eigen::Vector3d(0, 0, common_handlers_->g) + Ra);
+     879       24001 :   Eigen::Vector3d position_feedback = Kp * Ep.array();
+     880       24001 :   Eigen::Vector3d velocity_feedback = Kv * Ev.array();
+     881       24001 :   Eigen::Vector3d integral_feedback;
+     882             :   {
+     883       24001 :     std::scoped_lock lock(mutex_integrals_);
+     884             : 
+     885       24001 :     integral_feedback << Ib_w[0] + Iw_w_[0], Ib_w[1] + Iw_w_[1], 0;
+     886             :   }
+     887             : 
+     888             :   // --------------------------------------------------------------
+     889             :   // |                 integrators and estimators                 |
+     890             :   // --------------------------------------------------------------
+     891             : 
+     892             :   /* world error integrator //{ */
+     893             : 
+     894             :   // --------------------------------------------------------------
+     895             :   // |                  integrate the world error                 |
+     896             :   // --------------------------------------------------------------
+     897             : 
+     898             :   {
+     899       48002 :     std::scoped_lock lock(mutex_gains_, mutex_integrals_);
+     900             : 
+     901       24001 :     Eigen::Vector3d integration_switch(1, 1, 0);
+     902             : 
+     903             :     // integrate the world error
+     904       24001 :     if (tracker_command.use_position_horizontal) {
+     905       24001 :       Iw_w_ += gains.kiwxy * Ep.head(2) * dt;
+     906           0 :     } else if (tracker_command.use_velocity_horizontal) {
+     907           0 :       Iw_w_ += gains.kiwxy * Ev.head(2) * dt;
+     908             :     }
+     909             : 
+     910             :     // saturate the world X
+     911       24001 :     bool world_integral_saturated = false;
+     912       24001 :     if (!std::isfinite(Iw_w_[0])) {
+     913           0 :       Iw_w_[0] = 0;
+     914           0 :       ROS_ERROR_THROTTLE(1.0, "[Se3Controller]: NaN detected in variable 'Iw_w_[0]', setting it to 0!!!");
+     915       24001 :     } else if (Iw_w_[0] > gains.kiwxy_lim) {
+     916           0 :       Iw_w_[0]                 = gains.kiwxy_lim;
+     917           0 :       world_integral_saturated = true;
+     918       24001 :     } else if (Iw_w_[0] < -gains.kiwxy_lim) {
+     919           0 :       Iw_w_[0]                 = -gains.kiwxy_lim;
+     920           0 :       world_integral_saturated = true;
+     921             :     }
+     922             : 
+     923       24001 :     if (gains.kiwxy_lim >= 0 && world_integral_saturated) {
+     924           0 :       ROS_WARN_THROTTLE(1.0, "[Se3Controller]: SE3's world X integral is being saturated!");
+     925             :     }
+     926             : 
+     927             :     // saturate the world Y
+     928       24001 :     world_integral_saturated = false;
+     929       24001 :     if (!std::isfinite(Iw_w_[1])) {
+     930           0 :       Iw_w_[1] = 0;
+     931           0 :       ROS_ERROR_THROTTLE(1.0, "[Se3Controller]: NaN detected in variable 'Iw_w_[1]', setting it to 0!!!");
+     932       24001 :     } else if (Iw_w_[1] > gains.kiwxy_lim) {
+     933           0 :       Iw_w_[1]                 = gains.kiwxy_lim;
+     934           0 :       world_integral_saturated = true;
+     935       24001 :     } else if (Iw_w_[1] < -gains.kiwxy_lim) {
+     936           0 :       Iw_w_[1]                 = -gains.kiwxy_lim;
+     937           0 :       world_integral_saturated = true;
+     938             :     }
+     939             : 
+     940       24001 :     if (gains.kiwxy_lim >= 0 && world_integral_saturated) {
+     941           0 :       ROS_WARN_THROTTLE(1.0, "[Se3Controller]: SE3's world Y integral is being saturated!");
+     942             :     }
+     943             :   }
+     944             : 
+     945             :   //}
+     946             : 
+     947             :   /* body error integrator //{ */
+     948             : 
+     949             :   // --------------------------------------------------------------
+     950             :   // |                  integrate the body error                  |
+     951             :   // --------------------------------------------------------------
+     952             : 
+     953             :   {
+     954       48002 :     std::scoped_lock lock(mutex_gains_);
+     955             : 
+     956       24001 :     Eigen::Vector2d Ep_fcu_untilted = Eigen::Vector2d(0, 0);  // position error in the untilted frame of the UAV
+     957       24001 :     Eigen::Vector2d Ev_fcu_untilted = Eigen::Vector2d(0, 0);  // velocity error in the untilted frame of the UAV
+     958             : 
+     959             :     // get the position control error in the fcu_untilted frame
+     960             :     {
+     961             : 
+     962       48002 :       geometry_msgs::Vector3Stamped Ep_stamped;
+     963             : 
+     964       24001 :       Ep_stamped.header.stamp    = ros::Time::now();
+     965       24001 :       Ep_stamped.header.frame_id = uav_state_.header.frame_id;
+     966       24001 :       Ep_stamped.vector.x        = Ep(0);
+     967       24001 :       Ep_stamped.vector.y        = Ep(1);
+     968       24001 :       Ep_stamped.vector.z        = Ep(2);
+     969             : 
+     970       72003 :       auto res = common_handlers_->transformer->transformSingle(Ep_stamped, "fcu_untilted");
+     971             : 
+     972       24001 :       if (res) {
+     973       24001 :         Ep_fcu_untilted[0] = res.value().vector.x;
+     974       24001 :         Ep_fcu_untilted[1] = res.value().vector.y;
+     975             :       } else {
+     976           0 :         ROS_ERROR_THROTTLE(1.0, "[Se3Controller]: could not transform the position error to fcu_untilted");
+     977             :       }
+     978             :     }
+     979             : 
+     980             :     // get the velocity control error in the fcu_untilted frame
+     981             :     {
+     982       48002 :       geometry_msgs::Vector3Stamped Ev_stamped;
+     983             : 
+     984       24001 :       Ev_stamped.header.stamp    = ros::Time::now();
+     985       24001 :       Ev_stamped.header.frame_id = uav_state_.header.frame_id;
+     986       24001 :       Ev_stamped.vector.x        = Ev(0);
+     987       24001 :       Ev_stamped.vector.y        = Ev(1);
+     988       24001 :       Ev_stamped.vector.z        = Ev(2);
+     989             : 
+     990       72003 :       auto res = common_handlers_->transformer->transformSingle(Ev_stamped, "fcu_untilted");
+     991             : 
+     992       24001 :       if (res) {
+     993       24001 :         Ev_fcu_untilted[0] = res.value().vector.x;
+     994       24001 :         Ev_fcu_untilted[1] = res.value().vector.x;
+     995             :       } else {
+     996           0 :         ROS_ERROR_THROTTLE(1.0, "[Se3Controller]: could not transform the velocity error to fcu_untilted");
+     997             :       }
+     998             :     }
+     999             : 
+    1000             :     // integrate the body error
+    1001       24001 :     if (tracker_command.use_position_horizontal) {
+    1002       24001 :       Ib_b_ += gains.kibxy * Ep_fcu_untilted * dt;
+    1003           0 :     } else if (tracker_command.use_velocity_horizontal) {
+    1004           0 :       Ib_b_ += gains.kibxy * Ev_fcu_untilted * dt;
+    1005             :     }
+    1006             : 
+    1007             :     // saturate the body
+    1008       24001 :     bool body_integral_saturated = false;
+    1009       24001 :     if (!std::isfinite(Ib_b_[0])) {
+    1010           0 :       Ib_b_[0] = 0;
+    1011           0 :       ROS_ERROR_THROTTLE(1.0, "[Se3Controller]: NaN detected in variable 'Ib_b_[0]', setting it to 0!!!");
+    1012       24001 :     } else if (Ib_b_[0] > gains.kibxy_lim) {
+    1013           0 :       Ib_b_[0]                = gains.kibxy_lim;
+    1014           0 :       body_integral_saturated = true;
+    1015       24001 :     } else if (Ib_b_[0] < -gains.kibxy_lim) {
+    1016           0 :       Ib_b_[0]                = -gains.kibxy_lim;
+    1017           0 :       body_integral_saturated = true;
+    1018             :     }
+    1019             : 
+    1020       24001 :     if (gains.kibxy_lim > 0 && body_integral_saturated) {
+    1021           0 :       ROS_WARN_THROTTLE(1.0, "[Se3Controller]: SE3's body pitch integral is being saturated!");
+    1022             :     }
+    1023             : 
+    1024             :     // saturate the body
+    1025       24001 :     body_integral_saturated = false;
+    1026       24001 :     if (!std::isfinite(Ib_b_[1])) {
+    1027           0 :       Ib_b_[1] = 0;
+    1028           0 :       ROS_ERROR_THROTTLE(1.0, "[Se3Controller]: NaN detected in variable 'Ib_b_[1]', setting it to 0!!!");
+    1029       24001 :     } else if (Ib_b_[1] > gains.kibxy_lim) {
+    1030           0 :       Ib_b_[1]                = gains.kibxy_lim;
+    1031           0 :       body_integral_saturated = true;
+    1032       24001 :     } else if (Ib_b_[1] < -gains.kibxy_lim) {
+    1033           0 :       Ib_b_[1]                = -gains.kibxy_lim;
+    1034           0 :       body_integral_saturated = true;
+    1035             :     }
+    1036             : 
+    1037       24001 :     if (gains.kibxy_lim > 0 && body_integral_saturated) {
+    1038           0 :       ROS_WARN_THROTTLE(1.0, "[Se3Controller]: SE3's body roll integral is being saturated!");
+    1039             :     }
+    1040             :   }
+    1041             : 
+    1042             :   //}
+    1043             : 
+    1044       24001 :   if (output_modality == common::ACCELERATION_HDG || output_modality == common::ACCELERATION_HDG_RATE) {
+    1045             : 
+    1046         973 :     Eigen::Vector3d des_acc = (position_feedback + velocity_feedback + integral_feedback) / total_mass + Ra;
+    1047             : 
+    1048         973 :     if (output_modality == common::ACCELERATION_HDG) {
+    1049             : 
+    1050        1018 :       mrs_msgs::HwApiAccelerationHdgCmd cmd;
+    1051             : 
+    1052         509 :       cmd.acceleration.x = des_acc[0];
+    1053         509 :       cmd.acceleration.y = des_acc[1];
+    1054         509 :       cmd.acceleration.z = des_acc[2];
+    1055             : 
+    1056         509 :       cmd.heading = tracker_command.heading;
+    1057             : 
+    1058         509 :       last_control_output_.control_output = cmd;
+    1059             : 
+    1060             :     } else {
+    1061             : 
+    1062         464 :       double des_hdg_ff = 0;
+    1063             : 
+    1064         464 :       if (tracker_command.use_heading_rate) {
+    1065         464 :         des_hdg_ff = tracker_command.heading_rate;
+    1066             :       }
+    1067             : 
+    1068         928 :       mrs_msgs::HwApiAccelerationHdgRateCmd cmd;
+    1069             : 
+    1070         464 :       cmd.acceleration.x = des_acc[0];
+    1071         464 :       cmd.acceleration.y = des_acc[1];
+    1072         464 :       cmd.acceleration.z = des_acc[2];
+    1073             : 
+    1074         464 :       position_pid_heading_.setSaturation(constraints.heading_speed);
+    1075             : 
+    1076         464 :       double hdg_err = mrs_lib::geometry::sradians::diff(tracker_command.heading, uav_heading);
+    1077             : 
+    1078         464 :       double des_hdg_rate = position_pid_heading_.update(hdg_err, dt) + des_hdg_ff;
+    1079             : 
+    1080         464 :       cmd.heading_rate = des_hdg_rate;
+    1081             : 
+    1082         464 :       last_control_output_.desired_heading_rate = des_hdg_rate;
+    1083             : 
+    1084         464 :       last_control_output_.control_output = cmd;
+    1085             :     }
+    1086             : 
+    1087             :     // | -------------- unbiased desired acceleration ------------- |
+    1088             : 
+    1089         973 :     Eigen::Vector3d unbiased_des_acc(0, 0, 0);
+    1090             : 
+    1091             :     {
+    1092             : 
+    1093         973 :       Eigen::Vector3d unbiased_des_acc_world = (position_feedback + velocity_feedback) / total_mass + Ra;
+    1094             : 
+    1095        1946 :       geometry_msgs::Vector3Stamped world_accel;
+    1096             : 
+    1097         973 :       world_accel.header.stamp    = ros::Time::now();
+    1098         973 :       world_accel.header.frame_id = uav_state.header.frame_id;
+    1099         973 :       world_accel.vector.x        = unbiased_des_acc_world[0];
+    1100         973 :       world_accel.vector.y        = unbiased_des_acc_world[1];
+    1101         973 :       world_accel.vector.z        = unbiased_des_acc_world[2];
+    1102             : 
+    1103        2919 :       auto res = common_handlers_->transformer->transformSingle(world_accel, "fcu");
+    1104             : 
+    1105         973 :       if (res) {
+    1106         973 :         unbiased_des_acc << res.value().vector.x, res.value().vector.y, res.value().vector.z;
+    1107             :       }
+    1108             :     }
+    1109             : 
+    1110             :     // fill the unbiased desired accelerations
+    1111         973 :     last_control_output_.desired_unbiased_acceleration = unbiased_des_acc;
+    1112             : 
+    1113             :     // | ----------------- fill in the diagnostics ---------------- |
+    1114             : 
+    1115         973 :     last_control_output_.diagnostics.ramping_up = false;
+    1116             : 
+    1117         973 :     last_control_output_.diagnostics.mass_estimator  = false;
+    1118         973 :     last_control_output_.diagnostics.mass_difference = 0;
+    1119         973 :     last_control_output_.diagnostics.total_mass      = total_mass;
+    1120             : 
+    1121         973 :     last_control_output_.diagnostics.disturbance_estimator = true;
+    1122             : 
+    1123         973 :     last_control_output_.diagnostics.disturbance_bx_b = -Ib_b_[0];
+    1124         973 :     last_control_output_.diagnostics.disturbance_by_b = -Ib_b_[1];
+    1125             : 
+    1126         973 :     last_control_output_.diagnostics.disturbance_bx_w = -Ib_w[0];
+    1127         973 :     last_control_output_.diagnostics.disturbance_by_w = -Ib_w[1];
+    1128             : 
+    1129         973 :     last_control_output_.diagnostics.disturbance_wx_w = -Iw_w_[0];
+    1130         973 :     last_control_output_.diagnostics.disturbance_wy_w = -Iw_w_[1];
+    1131             : 
+    1132         973 :     last_control_output_.diagnostics.controller_enforcing_constraints = false;
+    1133             : 
+    1134         973 :     last_control_output_.diagnostics.controller = "Se3Controller";
+    1135             : 
+    1136         973 :     return;
+    1137             :   }
+    1138             : 
+    1139             :   /* mass estimatior //{ */
+    1140             : 
+    1141             :   // --------------------------------------------------------------
+    1142             :   // |                integrate the mass difference               |
+    1143             :   // --------------------------------------------------------------
+    1144             : 
+    1145             :   {
+    1146       46056 :     std::scoped_lock lock(mutex_gains_);
+    1147             : 
+    1148       23028 :     if (tracker_command.use_position_vertical && !rampup_active_) {
+    1149       23014 :       uav_mass_difference_ += gains.km * Ep[2] * dt;
+    1150             :     }
+    1151             : 
+    1152             :     // saturate the mass estimator
+    1153       23028 :     bool uav_mass_saturated = false;
+    1154       23028 :     if (!std::isfinite(uav_mass_difference_)) {
+    1155           0 :       uav_mass_difference_ = 0;
+    1156           0 :       ROS_WARN_THROTTLE(1.0, "[Se3Controller]: NaN detected in variable 'uav_mass_difference_', setting it to 0 and returning!!!");
+    1157       23028 :     } else if (uav_mass_difference_ > gains.km_lim) {
+    1158           0 :       uav_mass_difference_ = gains.km_lim;
+    1159           0 :       uav_mass_saturated   = true;
+    1160       23028 :     } else if (uav_mass_difference_ < -gains.km_lim) {
+    1161           0 :       uav_mass_difference_ = -gains.km_lim;
+    1162           0 :       uav_mass_saturated   = true;
+    1163             :     }
+    1164             : 
+    1165       23028 :     if (uav_mass_saturated) {
+    1166           0 :       ROS_WARN_THROTTLE(1.0, "[Se3Controller]: The UAV mass difference is being saturated to %.2f!", uav_mass_difference_);
+    1167             :     }
+    1168             :   }
+    1169             : 
+    1170             :   //}
+    1171             : 
+    1172       23028 :   Eigen::Vector3d f = position_feedback + velocity_feedback + integral_feedback + feed_forward;
+    1173             : 
+    1174             :   // | ----------- limiting the downwards acceleration ---------- |
+    1175             :   // the downwards force produced by the position and the acceleration feedback should not be larger than the gravity
+    1176             : 
+    1177             :   // if the downwards part of the force is close to counter-act the gravity acceleration
+    1178       23028 :   if (f[2] < 0) {
+    1179             : 
+    1180           0 :     ROS_WARN_THROTTLE(1.0, "[Se3Controller]: the calculated downwards desired force is negative (%.2f) -> mitigating flip", f[2]);
+    1181             : 
+    1182           0 :     f << 0, 0, 1;
+    1183             :   }
+    1184             : 
+    1185             :   // | ------------------- sanitize tilt angle ------------------ |
+    1186             : 
+    1187       23028 :   double tilt_safety_limit = _tilt_angle_failsafe_enabled_ ? _tilt_angle_failsafe_ : std::numeric_limits<double>::max();
+    1188             : 
+    1189       23028 :   auto f_normed_sanitized = common::sanitizeDesiredForce(f.normalized(), tilt_safety_limit, constraints.tilt, "Se3Controller");
+    1190             : 
+    1191       23028 :   if (!f_normed_sanitized) {
+    1192             : 
+    1193           0 :     ROS_INFO("[Se3Controller]: position feedback: [%.2f, %.2f, %.2f]", position_feedback[0], position_feedback[1], position_feedback[2]);
+    1194           0 :     ROS_INFO("[Se3Controller]: velocity feedback: [%.2f, %.2f, %.2f]", velocity_feedback[0], velocity_feedback[1], velocity_feedback[2]);
+    1195           0 :     ROS_INFO("[Se3Controller]: integral feedback: [%.2f, %.2f, %.2f]", integral_feedback[0], integral_feedback[1], integral_feedback[2]);
+    1196           0 :     ROS_INFO("[Se3Controller]: tracker_cmd: x: %.2f, y: %.2f, z: %.2f, heading: %.2f", tracker_command.position.x, tracker_command.position.y,
+    1197             :              tracker_command.position.z, tracker_command.heading);
+    1198           0 :     ROS_INFO("[Se3Controller]: odometry: x: %.2f, y: %.2f, z: %.2f, heading: %.2f", uav_state.pose.position.x, uav_state.pose.position.y,
+    1199             :              uav_state.pose.position.z, uav_heading);
+    1200             : 
+    1201           0 :     return;
+    1202             :   }
+    1203             : 
+    1204       23028 :   Eigen::Vector3d f_normed = f_normed_sanitized.value();
+    1205             : 
+    1206             :   // --------------------------------------------------------------
+    1207             :   // |               desired orientation + throttle               |
+    1208             :   // --------------------------------------------------------------
+    1209             : 
+    1210             :   // | ------------------- desired orientation ------------------ |
+    1211             : 
+    1212       23028 :   Eigen::Matrix3d Rd;
+    1213             : 
+    1214       23028 :   if (tracker_command.use_orientation) {
+    1215             : 
+    1216             :     // fill in the desired orientation based on the desired orientation from the control command
+    1217           0 :     Rd = mrs_lib::AttitudeConverter(tracker_command.orientation);
+    1218             : 
+    1219           0 :     if (tracker_command.use_heading) {
+    1220             :       try {
+    1221           0 :         Rd = mrs_lib::AttitudeConverter(Rd).setHeading(tracker_command.heading);
+    1222             :       }
+    1223           0 :       catch (...) {
+    1224           0 :         ROS_ERROR_THROTTLE(1.0, "[Se3Controller]: could not set the desired heading");
+    1225             :       }
+    1226             :     }
+    1227             : 
+    1228             :   } else {
+    1229             : 
+    1230       23028 :     Eigen::Vector3d bxd;  // desired heading vector
+    1231             : 
+    1232       23028 :     if (tracker_command.use_heading) {
+    1233       23028 :       bxd << cos(tracker_command.heading), sin(tracker_command.heading), 0;
+    1234             :     } else {
+    1235           0 :       ROS_WARN_THROTTLE(10.0, "[Se3Controller]: desired heading was not specified, using current heading instead!");
+    1236           0 :       bxd << cos(uav_heading), sin(uav_heading), 0;
+    1237             :     }
+    1238             : 
+    1239       23028 :     Rd = common::so3transform(f_normed, bxd, drs_params.rotation_type == 1);
+    1240             :   }
+    1241             : 
+    1242             :   // | -------------------- desired throttle -------------------- |
+    1243             : 
+    1244       23028 :   double desired_thrust_force = f.dot(R.col(2));
+    1245       23028 :   double throttle             = 0;
+    1246             : 
+    1247       23028 :   if (tracker_command.use_throttle) {
+    1248             : 
+    1249             :     // the throttle is overriden from the tracker command
+    1250           0 :     throttle = tracker_command.throttle;
+    1251             : 
+    1252       23028 :   } else if (rampup_active_) {
+    1253             : 
+    1254             :     // deactivate the rampup when the times up
+    1255          14 :     if (fabs((ros::Time::now() - rampup_start_time_).toSec()) >= rampup_duration_) {
+    1256             : 
+    1257          14 :       rampup_active_ = false;
+    1258             : 
+    1259          14 :       ROS_INFO("[Se3Controller]: rampup finished");
+    1260             : 
+    1261             :     } else {
+    1262             : 
+    1263           0 :       double rampup_dt = (ros::Time::now() - rampup_last_time_).toSec();
+    1264             : 
+    1265           0 :       rampup_throttle_ += double(rampup_direction_) * _rampup_speed_ * rampup_dt;
+    1266             : 
+    1267           0 :       rampup_last_time_ = ros::Time::now();
+    1268             : 
+    1269           0 :       throttle = rampup_throttle_;
+    1270             : 
+    1271           0 :       ROS_INFO_THROTTLE(0.1, "[Se3Controller]: ramping up throttle, %.4f", throttle);
+    1272             :     }
+    1273             : 
+    1274             :   } else {
+    1275             : 
+    1276       23014 :     if (desired_thrust_force >= 0) {
+    1277       23014 :       throttle = mrs_lib::quadratic_throttle_model::forceToThrottle(common_handlers_->throttle_model, desired_thrust_force);
+    1278             :     } else {
+    1279           0 :       ROS_WARN_THROTTLE(1.0, "[Se3Controller]: just so you know, the desired throttle force is negative (%.2f)", desired_thrust_force);
+    1280             :     }
+    1281             :   }
+    1282             : 
+    1283             :   // | ------------------- throttle saturation ------------------ |
+    1284             : 
+    1285       23028 :   bool throttle_saturated = false;
+    1286             : 
+    1287       23028 :   if (!std::isfinite(throttle)) {
+    1288             : 
+    1289           0 :     ROS_ERROR("[Se3Controller]: NaN detected in variable 'throttle'!!!");
+    1290           0 :     return;
+    1291             : 
+    1292       23028 :   } else if (throttle > _throttle_saturation_) {
+    1293           0 :     throttle = _throttle_saturation_;
+    1294           0 :     ROS_WARN_THROTTLE(0.1, "[Se3Controller]: saturating throttle to %.2f", _throttle_saturation_);
+    1295       23028 :   } else if (throttle < 0.0) {
+    1296           0 :     throttle = 0.0;
+    1297           0 :     ROS_WARN_THROTTLE(0.1, "[Se3Controller]: saturating throttle to 0.0");
+    1298             :   }
+    1299             : 
+    1300       23028 :   if (throttle_saturated) {
+    1301           0 :     ROS_WARN_THROTTLE(0.1, "[Se3Controller]: ---------------------------");
+    1302           0 :     ROS_WARN_THROTTLE(0.1, "[Se3Controller]: desired state: pos [x: %.2f, y: %.2f, z: %.2f, hdg: %.2f]", tracker_command.position.x, tracker_command.position.y,
+    1303             :                       tracker_command.position.z, tracker_command.heading);
+    1304           0 :     ROS_WARN_THROTTLE(0.1, "[Se3Controller]: desired state: vel [x: %.2f, y: %.2f, z: %.2f, hdg: %.2f]", tracker_command.velocity.x, tracker_command.velocity.y,
+    1305             :                       tracker_command.velocity.z, tracker_command.heading_rate);
+    1306           0 :     ROS_WARN_THROTTLE(0.1, "[Se3Controller]: desired state: acc [x: %.2f, y: %.2f, z: %.2f, hdg: %.2f]", tracker_command.acceleration.x,
+    1307             :                       tracker_command.acceleration.y, tracker_command.acceleration.z, tracker_command.heading_acceleration);
+    1308           0 :     ROS_WARN_THROTTLE(0.1, "[Se3Controller]: desired state: jerk [x: %.2f, y: %.2f, z: %.2f, hdg: %.2f]", tracker_command.jerk.x, tracker_command.jerk.y,
+    1309             :                       tracker_command.jerk.z, tracker_command.heading_jerk);
+    1310           0 :     ROS_WARN_THROTTLE(0.1, "[Se3Controller]: ---------------------------");
+    1311           0 :     ROS_WARN_THROTTLE(0.1, "[Se3Controller]: current state: pos [x: %.2f, y: %.2f, z: %.2f, hdg: %.2f]", uav_state.pose.position.x, uav_state.pose.position.y,
+    1312             :                       uav_state.pose.position.z, uav_heading);
+    1313           0 :     ROS_WARN_THROTTLE(0.1, "[Se3Controller]: current state: vel [x: %.2f, y: %.2f, z: %.2f, yaw rate: %.2f]", uav_state.velocity.linear.x,
+    1314             :                       uav_state.velocity.linear.y, uav_state.velocity.linear.z, uav_state.velocity.angular.z);
+    1315           0 :     ROS_WARN_THROTTLE(0.1, "[Se3Controller]: ---------------------------");
+    1316             :   }
+    1317             : 
+    1318             :   // | -------------- unbiased desired acceleration ------------- |
+    1319             : 
+    1320       23028 :   Eigen::Vector3d unbiased_des_acc(0, 0, 0);
+    1321             : 
+    1322             :   {
+    1323       23028 :     Eigen::Vector3d unbiased_des_acc_world = (position_feedback + velocity_feedback) / total_mass + Ra;
+    1324             : 
+    1325       46056 :     geometry_msgs::Vector3Stamped world_accel;
+    1326             : 
+    1327       23028 :     world_accel.header.stamp    = ros::Time::now();
+    1328       23028 :     world_accel.header.frame_id = uav_state.header.frame_id;
+    1329       23028 :     world_accel.vector.x        = unbiased_des_acc_world[0];
+    1330       23028 :     world_accel.vector.y        = unbiased_des_acc_world[1];
+    1331       23028 :     world_accel.vector.z        = unbiased_des_acc_world[2];
+    1332             : 
+    1333       69084 :     auto res = common_handlers_->transformer->transformSingle(world_accel, "fcu");
+    1334             : 
+    1335       23028 :     if (res) {
+    1336       23028 :       unbiased_des_acc << res.value().vector.x, res.value().vector.y, res.value().vector.z;
+    1337             :     }
+    1338             :   }
+    1339             : 
+    1340             :   // | --------------- fill the resulting command --------------- |
+    1341             : 
+    1342             :   // fill the desired orientation for the tilt error check
+    1343       23028 :   last_control_output_.desired_orientation = mrs_lib::AttitudeConverter(Rd);
+    1344             : 
+    1345             :   // fill the unbiased desired accelerations
+    1346       23028 :   last_control_output_.desired_unbiased_acceleration = unbiased_des_acc;
+    1347             : 
+    1348             :   // | ----------------- fill in the diagnostics ---------------- |
+    1349             : 
+    1350       23028 :   last_control_output_.diagnostics.ramping_up = rampup_active_;
+    1351             : 
+    1352       23028 :   last_control_output_.diagnostics.mass_estimator  = true;
+    1353       23028 :   last_control_output_.diagnostics.mass_difference = uav_mass_difference_;
+    1354       23028 :   last_control_output_.diagnostics.total_mass      = total_mass;
+    1355             : 
+    1356       23028 :   last_control_output_.diagnostics.disturbance_estimator = true;
+    1357             : 
+    1358       23028 :   last_control_output_.diagnostics.disturbance_bx_b = -Ib_b_[0];
+    1359       23028 :   last_control_output_.diagnostics.disturbance_by_b = -Ib_b_[1];
+    1360             : 
+    1361       23028 :   last_control_output_.diagnostics.disturbance_bx_w = -Ib_w[0];
+    1362       23028 :   last_control_output_.diagnostics.disturbance_by_w = -Ib_w[1];
+    1363             : 
+    1364       23028 :   last_control_output_.diagnostics.disturbance_wx_w = -Iw_w_[0];
+    1365       23028 :   last_control_output_.diagnostics.disturbance_wy_w = -Iw_w_[1];
+    1366             : 
+    1367       23028 :   last_control_output_.diagnostics.controller_enforcing_constraints = false;
+    1368             : 
+    1369       23028 :   last_control_output_.diagnostics.controller = "Se3Controller";
+    1370             : 
+    1371             :   // | ------------ construct the attitude reference ------------ |
+    1372             : 
+    1373       23028 :   mrs_msgs::HwApiAttitudeCmd attitude_cmd;
+    1374             : 
+    1375       23028 :   attitude_cmd.stamp       = ros::Time::now();
+    1376       23028 :   attitude_cmd.orientation = mrs_lib::AttitudeConverter(Rd);
+    1377       23028 :   attitude_cmd.throttle    = throttle;
+    1378             : 
+    1379       23028 :   if (output_modality == common::ATTITUDE) {
+    1380             : 
+    1381        1147 :     last_control_output_.control_output = attitude_cmd;
+    1382             : 
+    1383        1147 :     return;
+    1384             :   }
+    1385             : 
+    1386             :   // --------------------------------------------------------------
+    1387             :   // |                      attitude control                      |
+    1388             :   // --------------------------------------------------------------
+    1389             : 
+    1390       21881 :   Eigen::Vector3d rate_feedforward = Eigen::Vector3d::Zero(3);
+    1391             : 
+    1392       21881 :   if (tracker_command.use_attitude_rate) {
+    1393             : 
+    1394           0 :     rate_feedforward << tracker_command.attitude_rate.x, tracker_command.attitude_rate.y, tracker_command.attitude_rate.z;
+    1395             : 
+    1396       21881 :   } else if (tracker_command.use_heading_rate) {
+    1397             : 
+    1398             :     // to fill in the feed forward yaw rate
+    1399       21881 :     double desired_yaw_rate = 0;
+    1400             : 
+    1401             :     try {
+    1402       21881 :       desired_yaw_rate = mrs_lib::AttitudeConverter(Rd).getYawRateIntrinsic(tracker_command.heading_rate);
+    1403             :     }
+    1404           0 :     catch (...) {
+    1405           0 :       ROS_ERROR("[Se3Controller]: exception caught while calculating the desired_yaw_rate feedforward");
+    1406             :     }
+    1407             : 
+    1408       21881 :     rate_feedforward << 0, 0, desired_yaw_rate;
+    1409             :   }
+    1410             : 
+    1411             :   // | ------------ jerk feedforward -> angular rate ------------ |
+    1412             : 
+    1413       21881 :   Eigen::Vector3d jerk_feedforward = Eigen::Vector3d(0, 0, 0);
+    1414             : 
+    1415       21881 :   if (tracker_command.use_jerk && drs_params.jerk_feedforward) {
+    1416             : 
+    1417       21874 :     ROS_DEBUG_THROTTLE(1.0, "[Se3Controller]: using jerk feedforward");
+    1418             : 
+    1419       21874 :     Eigen::Matrix3d I;
+    1420       21874 :     I << 0, 1, 0, -1, 0, 0, 0, 0, 0;
+    1421       21874 :     Eigen::Vector3d desired_jerk = Eigen::Vector3d(tracker_command.jerk.x, tracker_command.jerk.y, tracker_command.jerk.z);
+    1422       21874 :     jerk_feedforward             = (I.transpose() * Rd.transpose() * desired_jerk) / (desired_thrust_force / total_mass);
+    1423             :   }
+    1424             : 
+    1425             :   // | --------------- run the attitude controller -------------- |
+    1426             : 
+    1427       21881 :   Eigen::Vector3d attitude_rate_saturation(constraints.roll_rate, constraints.pitch_rate, constraints.yaw_rate);
+    1428             : 
+    1429       21881 :   auto attitude_rate_command = common::attitudeController(uav_state, attitude_cmd, jerk_feedforward + rate_feedforward, attitude_rate_saturation, Kq,
+    1430       43762 :                                                           drs_params.pitch_roll_heading_rate_compensation);
+    1431             : 
+    1432       21881 :   if (!attitude_rate_command) {
+    1433           0 :     return;
+    1434             :   }
+    1435             : 
+    1436             :   // | --------- fill in the already known attitude rate -------- |
+    1437             : 
+    1438             :   {
+    1439             :     try {
+    1440       21881 :       last_control_output_.desired_heading_rate = mrs_lib::AttitudeConverter(R).getHeadingRate(attitude_rate_command->body_rate);
+    1441             :     }
+    1442           0 :     catch (...) {
+    1443             :     }
+    1444             :   }
+    1445             : 
+    1446             :   // | ---------- construct the attitude rate reference --------- |
+    1447             : 
+    1448       21881 :   if (output_modality == common::ATTITUDE_RATE) {
+    1449             : 
+    1450       19435 :     last_control_output_.control_output = attitude_rate_command;
+    1451             : 
+    1452       19435 :     return;
+    1453             :   }
+    1454             : 
+    1455             :   // --------------------------------------------------------------
+    1456             :   // |                    Attitude rate control                   |
+    1457             :   // --------------------------------------------------------------
+    1458             : 
+    1459        2446 :   Kw = common_handlers_->detailed_model_params->inertia.diagonal().array() * Kw;
+    1460             : 
+    1461        2446 :   auto control_group_command = common::attitudeRateController(uav_state, attitude_rate_command.value(), Kw);
+    1462             : 
+    1463        2446 :   if (!control_group_command) {
+    1464           0 :     return;
+    1465             :   }
+    1466             : 
+    1467        2446 :   if (output_modality == common::CONTROL_GROUP) {
+    1468             : 
+    1469        1234 :     last_control_output_.control_output = control_group_command;
+    1470             : 
+    1471        1234 :     return;
+    1472             :   }
+    1473             : 
+    1474             :   // --------------------------------------------------------------
+    1475             :   // |                        output mixer                        |
+    1476             :   // --------------------------------------------------------------
+    1477             : 
+    1478        2424 :   mrs_msgs::HwApiActuatorCmd actuator_cmd = common::actuatorMixer(control_group_command.value(), common_handlers_->detailed_model_params->control_group_mixer);
+    1479             : 
+    1480        1212 :   last_control_output_.control_output = actuator_cmd;
+    1481             : 
+    1482        1212 :   return;
+    1483             : }
+    1484             : 
+    1485             : //}
+    1486             : 
+    1487             : /* positionPassthrough() //{ */
+    1488             : 
+    1489         240 : void Se3Controller::positionPassthrough(const mrs_msgs::UavState& uav_state, const mrs_msgs::TrackerCommand& tracker_command) {
+    1490             : 
+    1491         240 :   if (!tracker_command.use_position_vertical || !tracker_command.use_position_horizontal || !tracker_command.use_heading) {
+    1492           0 :     ROS_ERROR("[Se3Controller]: the tracker did not provide position+hdg reference");
+    1493           0 :     return;
+    1494             :   }
+    1495             : 
+    1496         480 :   mrs_msgs::HwApiPositionCmd cmd;
+    1497             : 
+    1498         240 :   cmd.header.frame_id = uav_state.header.frame_id;
+    1499         240 :   cmd.header.stamp    = ros::Time::now();
+    1500             : 
+    1501         240 :   cmd.position = tracker_command.position;
+    1502         240 :   cmd.heading  = tracker_command.heading;
+    1503             : 
+    1504         240 :   last_control_output_.control_output = cmd;
+    1505             : 
+    1506             :   // fill the unbiased desired accelerations
+    1507         240 :   last_control_output_.desired_unbiased_acceleration = {};
+    1508         240 :   last_control_output_.desired_orientation           = {};
+    1509         240 :   last_control_output_.desired_heading_rate          = {};
+    1510             : 
+    1511             :   // | ----------------- fill in the diagnostics ---------------- |
+    1512             : 
+    1513         240 :   last_control_output_.diagnostics.ramping_up = false;
+    1514             : 
+    1515         240 :   last_control_output_.diagnostics.mass_estimator  = false;
+    1516         240 :   last_control_output_.diagnostics.mass_difference = 0;
+    1517             : 
+    1518         240 :   last_control_output_.diagnostics.disturbance_estimator = false;
+    1519             : 
+    1520         240 :   last_control_output_.diagnostics.disturbance_bx_b = 0;
+    1521         240 :   last_control_output_.diagnostics.disturbance_by_b = 0;
+    1522             : 
+    1523         240 :   last_control_output_.diagnostics.disturbance_bx_w = 0;
+    1524         240 :   last_control_output_.diagnostics.disturbance_by_w = 0;
+    1525             : 
+    1526         240 :   last_control_output_.diagnostics.disturbance_wx_w = 0;
+    1527         240 :   last_control_output_.diagnostics.disturbance_wy_w = 0;
+    1528             : 
+    1529         240 :   last_control_output_.diagnostics.controller_enforcing_constraints = false;
+    1530             : 
+    1531         240 :   last_control_output_.diagnostics.controller = "Se3Controller";
+    1532             : }
+    1533             : 
+    1534             : //}
+    1535             : 
+    1536             : /* PIDVelocityOutput() //{ */
+    1537             : 
+    1538        2665 : void Se3Controller::PIDVelocityOutput(const mrs_msgs::UavState& uav_state, const mrs_msgs::TrackerCommand& tracker_command,
+    1539             :                                       const common::CONTROL_OUTPUT& control_output, const double& dt) {
+    1540             : 
+    1541        2665 :   if (!tracker_command.use_position_vertical || !tracker_command.use_position_horizontal || !tracker_command.use_heading) {
+    1542           0 :     ROS_ERROR("[Se3Controller]: the tracker did not provide position+hdg reference");
+    1543           0 :     return;
+    1544             :   }
+    1545             : 
+    1546        2665 :   auto constraints = mrs_lib::get_mutexed(mutex_constraints_, constraints_);
+    1547        2665 :   auto gains       = mrs_lib::get_mutexed(mutex_gains_, gains_);
+    1548             : 
+    1549        2665 :   Eigen::Vector3d pos_ref = Eigen::Vector3d(tracker_command.position.x, tracker_command.position.y, tracker_command.position.z);
+    1550        2665 :   Eigen::Vector3d pos     = Eigen::Vector3d(uav_state.pose.position.x, uav_state.pose.position.y, uav_state.pose.position.z);
+    1551             : 
+    1552        2665 :   double hdg_ref = tracker_command.heading;
+    1553        2665 :   double hdg     = getHeadingSafely(uav_state, tracker_command);
+    1554             : 
+    1555             :   // | ------------------ velocity feedforward ------------------ |
+    1556             : 
+    1557        2665 :   Eigen::Vector3d vel_ff(0, 0, 0);
+    1558             : 
+    1559        2665 :   if (tracker_command.use_velocity_horizontal && tracker_command.use_velocity_vertical) {
+    1560        2665 :     vel_ff = Eigen::Vector3d(tracker_command.velocity.x, tracker_command.velocity.y, tracker_command.velocity.z);
+    1561             :   }
+    1562             : 
+    1563             :   // | -------------------------- gains ------------------------- |
+    1564             : 
+    1565        2665 :   Eigen::Vector3d Kp;
+    1566             : 
+    1567             :   {
+    1568        2665 :     std::scoped_lock lock(mutex_gains_);
+    1569             : 
+    1570        2665 :     Kp << gains.kpxy, gains.kpxy, gains.kpz;
+    1571             :   }
+    1572             : 
+    1573             :   // | --------------------- control errors --------------------- |
+    1574             : 
+    1575        2665 :   Eigen::Vector3d Ep = pos_ref - pos;
+    1576             : 
+    1577             :   // | --------------------------- pid -------------------------- |
+    1578             : 
+    1579        2665 :   position_pid_x_.setSaturation(constraints.horizontal_speed);
+    1580        2665 :   position_pid_y_.setSaturation(constraints.horizontal_speed);
+    1581        2665 :   position_pid_z_.setSaturation(std::min(constraints.vertical_ascending_speed, constraints.vertical_descending_speed));
+    1582             : 
+    1583        2665 :   double des_vel_x = position_pid_x_.update(Ep[0], dt);
+    1584        2665 :   double des_vel_y = position_pid_y_.update(Ep[1], dt);
+    1585        2665 :   double des_vel_z = position_pid_z_.update(Ep[2], dt);
+    1586             : 
+    1587             :   // | -------------------- position feedback ------------------- |
+    1588             : 
+    1589        2665 :   Eigen::Vector3d des_vel = Eigen::Vector3d(des_vel_x, des_vel_y, des_vel_z) + vel_ff;
+    1590             : 
+    1591        2665 :   if (control_output == common::VELOCITY_HDG) {
+    1592             : 
+    1593             :     // | --------------------- fill the output -------------------- |
+    1594             : 
+    1595        1862 :     mrs_msgs::HwApiVelocityHdgCmd cmd;
+    1596             : 
+    1597         931 :     cmd.header.frame_id = uav_state.header.frame_id;
+    1598         931 :     cmd.header.stamp    = ros::Time::now();
+    1599             : 
+    1600         931 :     cmd.velocity.x = des_vel[0];
+    1601         931 :     cmd.velocity.y = des_vel[1];
+    1602         931 :     cmd.velocity.z = des_vel[2];
+    1603             : 
+    1604         931 :     cmd.heading = tracker_command.heading;
+    1605             : 
+    1606         931 :     last_control_output_.control_output = cmd;
+    1607             : 
+    1608        1734 :   } else if (control_output == common::VELOCITY_HDG_RATE) {
+    1609             : 
+    1610        1734 :     position_pid_heading_.setSaturation(constraints.heading_speed);
+    1611             : 
+    1612        1734 :     double hdg_err = mrs_lib::geometry::sradians::diff(hdg_ref, hdg);
+    1613             : 
+    1614        1734 :     double des_hdg_rate = position_pid_heading_.update(hdg_err, dt);
+    1615             : 
+    1616             :     // | --------------------------- ff --------------------------- |
+    1617             : 
+    1618        1734 :     double des_hdg_ff = 0;
+    1619             : 
+    1620        1734 :     if (tracker_command.use_heading_rate) {
+    1621        1734 :       des_hdg_ff = tracker_command.heading_rate;
+    1622             :     }
+    1623             : 
+    1624             :     // | --------------------- fill the output -------------------- |
+    1625             : 
+    1626        3468 :     mrs_msgs::HwApiVelocityHdgRateCmd cmd;
+    1627             : 
+    1628        1734 :     cmd.header.frame_id = uav_state.header.frame_id;
+    1629        1734 :     cmd.header.stamp    = ros::Time::now();
+    1630             : 
+    1631        1734 :     cmd.velocity.x = des_vel[0];
+    1632        1734 :     cmd.velocity.y = des_vel[1];
+    1633        1734 :     cmd.velocity.z = des_vel[2];
+    1634             : 
+    1635        1734 :     cmd.heading_rate = des_hdg_rate + des_hdg_ff;
+    1636             : 
+    1637        1734 :     last_control_output_.control_output = cmd;
+    1638             :   } else {
+    1639             : 
+    1640           0 :     ROS_ERROR("[Se3Controller]: the required output of the position PID is not supported");
+    1641           0 :     return;
+    1642             :   }
+    1643             : 
+    1644             :   // fill the unbiased desired accelerations
+    1645        2665 :   last_control_output_.desired_unbiased_acceleration = {};
+    1646        2665 :   last_control_output_.desired_orientation           = {};
+    1647        2665 :   last_control_output_.desired_heading_rate          = {};
+    1648             : 
+    1649             :   // | ----------------- fill in the diagnostics ---------------- |
+    1650             : 
+    1651        2665 :   last_control_output_.diagnostics.ramping_up = false;
+    1652             : 
+    1653        2665 :   last_control_output_.diagnostics.mass_estimator  = false;
+    1654        2665 :   last_control_output_.diagnostics.mass_difference = 0;
+    1655             : 
+    1656        2665 :   last_control_output_.diagnostics.disturbance_estimator = false;
+    1657             : 
+    1658        2665 :   last_control_output_.diagnostics.disturbance_bx_b = 0;
+    1659        2665 :   last_control_output_.diagnostics.disturbance_by_b = 0;
+    1660             : 
+    1661        2665 :   last_control_output_.diagnostics.disturbance_bx_w = 0;
+    1662        2665 :   last_control_output_.diagnostics.disturbance_by_w = 0;
+    1663             : 
+    1664        2665 :   last_control_output_.diagnostics.disturbance_wx_w = 0;
+    1665        2665 :   last_control_output_.diagnostics.disturbance_wy_w = 0;
+    1666             : 
+    1667        2665 :   last_control_output_.diagnostics.controller_enforcing_constraints = false;
+    1668             : 
+    1669        2665 :   last_control_output_.diagnostics.controller = "Se3Controller";
+    1670             : }
+    1671             : 
+    1672             : //}
+    1673             : 
+    1674             : // --------------------------------------------------------------
+    1675             : // |                          callbacks                         |
+    1676             : 
+    1677             : 
+    1678             : /* //{ callbackDrs() */
+    1679             : 
+    1680         183 : void Se3Controller::callbackDrs(mrs_uav_controllers::se3_controllerConfig& config, [[maybe_unused]] uint32_t level) {
+    1681             : 
+    1682         183 :   mrs_lib::set_mutexed(mutex_drs_params_, config, drs_params_);
+    1683             : 
+    1684         183 :   ROS_INFO("[Se3Controller]: DRS updated gains");
+    1685         183 : }
+    1686             : 
+    1687             : //}
+    1688             : 
+    1689             : // --------------------------------------------------------------
+    1690             : // |                           timers                           |
+    1691             : // --------------------------------------------------------------
+    1692             : 
+    1693             : /* timerGains() //{ */
+    1694             : 
+    1695        4328 : void Se3Controller::timerGains(const ros::TimerEvent& event) {
+    1696             : 
+    1697       12984 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerGains", _gain_filtering_rate_, 1.0, event);
+    1698             :   mrs_lib::ScopeTimer timer =
+    1699       12984 :       mrs_lib::ScopeTimer("Se3Controller::timerGains", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+    1700             : 
+    1701        8656 :   auto drs_params = mrs_lib::get_mutexed(mutex_drs_params_, drs_params_);
+    1702        4328 :   auto gains      = mrs_lib::get_mutexed(mutex_gains_, gains_);
+    1703             : 
+    1704             :   // When muting the gains, we want to bypass the filter,
+    1705             :   // so it happens immediately.
+    1706        4328 :   bool   bypass_filter = (mute_gains_ || mute_gains_by_tracker_);
+    1707        4328 :   double gain_coeff    = (mute_gains_ || mute_gains_by_tracker_) ? _gain_mute_coefficient_ : 1.0;
+    1708             : 
+    1709        4328 :   mute_gains_ = false;
+    1710             : 
+    1711        4328 :   const double dt = (event.current_real - event.last_real).toSec();
+    1712             : 
+    1713        4328 :   bool updated = false;
+    1714             : 
+    1715        4328 :   gains.kpxy          = calculateGainChange(dt, gains.kpxy, drs_params.kpxy * gain_coeff, bypass_filter, "kpxy", updated);
+    1716        4328 :   gains.kvxy          = calculateGainChange(dt, gains.kvxy, drs_params.kvxy * gain_coeff, bypass_filter, "kvxy", updated);
+    1717        4328 :   gains.kaxy          = calculateGainChange(dt, gains.kaxy, drs_params.kaxy * gain_coeff, bypass_filter, "kaxy", updated);
+    1718        4328 :   gains.kiwxy         = calculateGainChange(dt, gains.kiwxy, drs_params.kiwxy * gain_coeff, bypass_filter, "kiwxy", updated);
+    1719        4328 :   gains.kibxy         = calculateGainChange(dt, gains.kibxy, drs_params.kibxy * gain_coeff, bypass_filter, "kibxy", updated);
+    1720        4328 :   gains.kpz           = calculateGainChange(dt, gains.kpz, drs_params.kpz * gain_coeff, bypass_filter, "kpz", updated);
+    1721        4328 :   gains.kvz           = calculateGainChange(dt, gains.kvz, drs_params.kvz * gain_coeff, bypass_filter, "kvz", updated);
+    1722        4328 :   gains.kaz           = calculateGainChange(dt, gains.kaz, drs_params.kaz * gain_coeff, bypass_filter, "kaz", updated);
+    1723        4328 :   gains.kq_roll_pitch = calculateGainChange(dt, gains.kq_roll_pitch, drs_params.kq_roll_pitch * gain_coeff, bypass_filter, "kq_roll_pitch", updated);
+    1724        4328 :   gains.kq_yaw        = calculateGainChange(dt, gains.kq_yaw, drs_params.kq_yaw * gain_coeff, bypass_filter, "kq_yaw", updated);
+    1725        4328 :   gains.km            = calculateGainChange(dt, gains.km, drs_params.km * gain_coeff, bypass_filter, "km", updated);
+    1726             : 
+    1727             :   // do not apply muting on these gains
+    1728        4328 :   gains.kiwxy_lim = calculateGainChange(dt, gains.kiwxy_lim, drs_params.kiwxy_lim, false, "kiwxy_lim", updated);
+    1729        4328 :   gains.kibxy_lim = calculateGainChange(dt, gains.kibxy_lim, drs_params.kibxy_lim, false, "kibxy_lim", updated);
+    1730        4328 :   gains.km_lim    = calculateGainChange(dt, gains.km_lim, drs_params.km_lim, false, "km_lim", updated);
+    1731             : 
+    1732        4328 :   mrs_lib::set_mutexed(mutex_gains_, gains, gains_);
+    1733             : 
+    1734             :   // set the gains back to dynamic reconfigure
+    1735             :   // and only do it when some filtering occurs
+    1736        4328 :   if (updated) {
+    1737             : 
+    1738         243 :     drs_params.kpxy          = gains.kpxy;
+    1739         243 :     drs_params.kvxy          = gains.kvxy;
+    1740         243 :     drs_params.kaxy          = gains.kaxy;
+    1741         243 :     drs_params.kiwxy         = gains.kiwxy;
+    1742         243 :     drs_params.kibxy         = gains.kibxy;
+    1743         243 :     drs_params.kpz           = gains.kpz;
+    1744         243 :     drs_params.kvz           = gains.kvz;
+    1745         243 :     drs_params.kaz           = gains.kaz;
+    1746         243 :     drs_params.kq_roll_pitch = gains.kq_roll_pitch;
+    1747         243 :     drs_params.kq_yaw        = gains.kq_yaw;
+    1748         243 :     drs_params.kiwxy_lim     = gains.kiwxy_lim;
+    1749         243 :     drs_params.kibxy_lim     = gains.kibxy_lim;
+    1750         243 :     drs_params.km            = gains.km;
+    1751         243 :     drs_params.km_lim        = gains.km_lim;
+    1752             : 
+    1753         243 :     drs_->updateConfig(drs_params);
+    1754             : 
+    1755         243 :     ROS_INFO_THROTTLE(10.0, "[Se3Controller]: gains have been updated");
+    1756             :   }
+    1757        4328 : }
+    1758             : 
+    1759             : //}
+    1760             : 
+    1761             : // --------------------------------------------------------------
+    1762             : // |                       other routines                       |
+    1763             : // --------------------------------------------------------------
+    1764             : 
+    1765             : /* calculateGainChange() //{ */
+    1766             : 
+    1767       60592 : double Se3Controller::calculateGainChange(const double dt, const double current_value, const double desired_value, const bool bypass_rate, std::string name,
+    1768             :                                           bool& updated) {
+    1769             : 
+    1770       60592 :   double change = desired_value - current_value;
+    1771             : 
+    1772       60592 :   double gains_filter_max_change = _gains_filter_change_rate_ * dt;
+    1773       60592 :   double gains_filter_min_change = _gains_filter_min_change_rate_ * dt;
+    1774             : 
+    1775       60592 :   if (!bypass_rate) {
+    1776             : 
+    1777             :     // if current value is near 0...
+    1778             :     double change_in_perc;
+    1779             :     double saturated_change;
+    1780             : 
+    1781       60295 :     if (fabs(current_value) < 1e-6) {
+    1782           0 :       change *= gains_filter_max_change;
+    1783             :     } else {
+    1784             : 
+    1785       60295 :       saturated_change = change;
+    1786             : 
+    1787       60295 :       change_in_perc = (current_value + saturated_change) / current_value - 1.0;
+    1788             : 
+    1789       60295 :       if (change_in_perc > gains_filter_max_change) {
+    1790        2079 :         saturated_change = current_value * gains_filter_max_change;
+    1791       58216 :       } else if (change_in_perc < -gains_filter_max_change) {
+    1792          24 :         saturated_change = current_value * -gains_filter_max_change;
+    1793             :       }
+    1794             : 
+    1795       60295 :       if (fabs(saturated_change) < fabs(change) * gains_filter_min_change) {
+    1796          20 :         change *= gains_filter_min_change;
+    1797             :       } else {
+    1798       60275 :         change = saturated_change;
+    1799             :       }
+    1800             :     }
+    1801             :   }
+    1802             : 
+    1803       60592 :   if (fabs(change) > 1e-3) {
+    1804        2690 :     ROS_DEBUG("[Se3Controller]: changing gain '%s' from %.2f to %.2f", name.c_str(), current_value, desired_value);
+    1805        2690 :     updated = true;
+    1806             :   }
+    1807             : 
+    1808       60592 :   return current_value + change;
+    1809             : }
+    1810             : 
+    1811             : //}
+    1812             : 
+    1813             : /* getHeadingSafely() //{ */
+    1814             : 
+    1815       26666 : double Se3Controller::getHeadingSafely(const mrs_msgs::UavState& uav_state, const mrs_msgs::TrackerCommand& tracker_command) {
+    1816             : 
+    1817             :   try {
+    1818       26666 :     return mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+    1819             :   }
+    1820           0 :   catch (...) {
+    1821             :   }
+    1822             : 
+    1823             :   try {
+    1824           0 :     return mrs_lib::AttitudeConverter(uav_state.pose.orientation).getYaw();
+    1825             :   }
+    1826           0 :   catch (...) {
+    1827             :   }
+    1828             : 
+    1829           0 :   if (tracker_command.use_heading) {
+    1830           0 :     return tracker_command.heading;
+    1831             :   }
+    1832             : 
+    1833           0 :   return 0;
+    1834             : }
+    1835             : 
+    1836             : //}
+    1837             : 
+    1838             : }  // namespace se3_controller
+    1839             : 
+    1840             : }  // namespace mrs_uav_controllers
+    1841             : 
+    1842             : #include <pluginlib/class_list_macros.h>
+    1843          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_controllers::se3_controller::Se3Controller, mrs_uav_managers::Controller)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_controllers/src/se3_controller.cpp.gcov.overview.html b/mrs_uav_controllers/src/se3_controller.cpp.gcov.overview.html new file mode 100644 index 0000000000..363703df5f --- /dev/null +++ b/mrs_uav_controllers/src/se3_controller.cpp.gcov.overview.html @@ -0,0 +1,481 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_controllers/src/se3_controller.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + 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+ Overview +
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LCOV - code coverage report
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Test:MRS UAV System - Test coverage reportLines:44100.0 %
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Current view:top level - mrs_uav_managers/include/control_managerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
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Current view:top level - mrs_uav_managers/include/control_managerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:1010100.0 %
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Current view:top level - mrs_uav_managers/include/control_manager - output_publisher.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:1010100.0 %
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Function Name Sort by function nameHit count Sort by hit count
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&)477
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)951
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&)964
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)1185
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)2589
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&)3809
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&)3824
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)7958
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)86604
mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::PublisherVisitor(mrs_uav_managers::control_manager::OutputPublisher*)108361
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Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_uav_managers/include/control_manager - output_publisher.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:1010100.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::PublisherVisitor(mrs_uav_managers::control_manager::OutputPublisher*)108361
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > >(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&)3809
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > >(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)7958
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiPositionCmd_<std::allocator<void> > >(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&)477
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > >(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)1185
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > >(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)86604
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > >(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&)3824
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > >(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&)964
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > >(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)2589
void mrs_uav_managers::control_manager::OutputPublisher::PublisherVisitor::operator()<mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > >(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)951
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LCOV - code coverage report
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Current view:top level - mrs_uav_managers/include/control_manager - output_publisher.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:1010100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef CONTROL_MANAGER_OUTPUT_PUBLISHER
+       2             : #define CONTROL_MANAGER_OUTPUT_PUBLISHER
+       3             : 
+       4             : #include <mrs_lib/publisher_handler.h>
+       5             : 
+       6             : #include <mrs_uav_managers/controller.h>
+       7             : 
+       8             : namespace mrs_uav_managers
+       9             : {
+      10             : 
+      11             : namespace control_manager
+      12             : {
+      13             : 
+      14             : class OutputPublisher {
+      15             : 
+      16             : public:
+      17             :   OutputPublisher();
+      18             : 
+      19             :   OutputPublisher(ros::NodeHandle& nh);
+      20             : 
+      21             :   void publish(const Controller::HwApiOutputVariant& control_output);
+      22             : 
+      23             : private:
+      24             :   mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd>            ph_hw_api_actuator_cmd_;
+      25             :   mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd>        ph_hw_api_control_group_cmd_;
+      26             :   mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd>        ph_hw_api_attitude_rate_cmd_;
+      27             :   mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd>            ph_hw_api_attitude_cmd_;
+      28             :   mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd> ph_hw_api_acceleration_hdg_rate_cmd_;
+      29             :   mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd>     ph_hw_api_acceleration_hdg_cmd_;
+      30             :   mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd>     ph_hw_api_velocity_hdg_rate_cmd_;
+      31             :   mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd>         ph_hw_api_velocity_hdg_cmd_;
+      32             :   mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd>            ph_hw_api_position_cmd_;
+      33             : 
+      34             :   void publish(const mrs_msgs::HwApiActuatorCmd& msg);
+      35             :   void publish(const mrs_msgs::HwApiControlGroupCmd& msg);
+      36             :   void publish(const mrs_msgs::HwApiAttitudeRateCmd& msg);
+      37             :   void publish(const mrs_msgs::HwApiAttitudeCmd& msg);
+      38             :   void publish(const mrs_msgs::HwApiAccelerationHdgRateCmd& msg);
+      39             :   void publish(const mrs_msgs::HwApiAccelerationHdgCmd& msg);
+      40             :   void publish(const mrs_msgs::HwApiVelocityHdgRateCmd& msg);
+      41             :   void publish(const mrs_msgs::HwApiVelocityHdgCmd& msg);
+      42             :   void publish(const mrs_msgs::HwApiPositionCmd& msg);
+      43             : 
+      44             :   class PublisherVisitor {
+      45             : 
+      46             :   public:
+      47      108361 :     PublisherVisitor(OutputPublisher* obj) : obj_(obj){};
+      48             : 
+      49             :     OutputPublisher* obj_;
+      50             : 
+      51             :     template <class T>
+      52      108361 :     void operator()(const T& msg) {
+      53      108361 :       obj_->publish(msg);
+      54      108361 :     }
+      55             :   };
+      56             : };
+      57             : 
+      58             : }  // namespace control_manager
+      59             : 
+      60             : }  // namespace mrs_uav_managers
+      61             : 
+      62             : #endif  //  CONTROL_MANAGER_OUTPUT_PUBLISHER
+
+
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+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/include/control_manager/output_publisher.h.gcov.overview.html b/mrs_uav_managers/include/control_manager/output_publisher.h.gcov.overview.html new file mode 100644 index 0000000000..09b263e5e1 --- /dev/null +++ b/mrs_uav_managers/include/control_manager/output_publisher.h.gcov.overview.html @@ -0,0 +1,36 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/control_manager/output_publisher.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

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+ + diff --git a/mrs_uav_managers/include/control_manager/output_publisher.h.gcov.png b/mrs_uav_managers/include/control_manager/output_publisher.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..fdd688bb370f7663153724647927eaa459667bca GIT binary patch literal 332 zcmeAS@N?(olHy`uVBq!ia0vp^0YGfW!VDz+4mNH9QW60^A+G=b|6c_J%iqVwzWUF= zunH&+rp|e9UJ7J$7I;J!GcfQS0b$0e+I-SL!CRg#jv*eMTc_R@JgmUO63D)Y^##MP z_qxsoW@77=HNHQc`DTrZj!g2}RPCgyMn{X24zmu;3tZ^#7E%+I9$1z2-~Hw84U=k2 z4|j*$Z0-BVwQ#LZPe@1*@1FIJ-4-|f*Lgnua4f;i^kDBLO$82VM}aqiJexoA?e=!; zP1$C<>VaG4@4cUR8vfjSmptKVZex36aP6U&;q4|#;dgdw2qk^7v)`$HtkLlNGdUR# zYu`;D4^40T_+7%T&EUnw&}9A@Oy}y>9psSfzqj9wQ#d|**7eZ4D=rjGy76rCwIcb5 X-I2 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_managers/include/mrs_uav_managers - agl_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:2366.7 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::AglEstimator::~AglEstimator()0
mrs_uav_managers::AglEstimator::AglEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)70
mrs_uav_managers::AglEstimator::~AglEstimator().270
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LCOV - code coverage report
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Current view:top level - mrs_uav_managers/include/mrs_uav_managers - agl_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:2366.7 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::AglEstimator::AglEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)70
mrs_uav_managers::AglEstimator::~AglEstimator()0
mrs_uav_managers::AglEstimator::~AglEstimator().270
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+
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h.gcov.frameset.html b/mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h.gcov.frameset.html new file mode 100644 index 0000000000..ca31d3043e --- /dev/null +++ b/mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h.gcov.html b/mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h.gcov.html new file mode 100644 index 0000000000..0971700583 --- /dev/null +++ b/mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h.gcov.html @@ -0,0 +1,157 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_managers/include/mrs_uav_managers - agl_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:2366.7 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef MRS_UAV_MANAGERS_AGL_ESTIMATOR_H
+       2             : #define MRS_UAV_MANAGERS_AGL_ESTIMATOR_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <Eigen/Dense>
+       9             : 
+      10             : #include <nav_msgs/Odometry.h>
+      11             : 
+      12             : #include <mrs_msgs/UavState.h>
+      13             : #include <mrs_msgs/Float64Stamped.h>
+      14             : #include <mrs_msgs/Float64ArrayStamped.h>
+      15             : #include <mrs_msgs/HwApiCapabilities.h>
+      16             : 
+      17             : #include <mrs_uav_managers/estimation_manager/estimator.h>
+      18             : #include <mrs_uav_managers/estimation_manager/support.h>
+      19             : 
+      20             : //}
+      21             : 
+      22             : namespace mrs_uav_managers
+      23             : {
+      24             : 
+      25             : namespace agl
+      26             : {
+      27             : const char type[] = "AGL";
+      28             : }
+      29             : 
+      30             : using namespace estimation_manager;
+      31             : 
+      32             : class AglEstimator : public Estimator {
+      33             : 
+      34             : protected:
+      35             :   const std::string package_name_ = "mrs_uav_state_estimators";
+      36             : 
+      37             :   ros::NodeHandle nh_;
+      38             : 
+      39             :   mrs_msgs::Float64Stamped agl_height_;
+      40             :   mrs_msgs::Float64Stamped agl_height_init_;
+      41             :   mutable std::mutex       mtx_agl_height_;
+      42             : 
+      43             :   mrs_msgs::Float64ArrayStamped agl_height_cov_;
+      44             :   mrs_msgs::Float64ArrayStamped agl_height_cov_init_;
+      45             :   mutable std::mutex            mtx_agl_height_cov_;
+      46             : 
+      47             :   bool is_override_frame_id_ = false;
+      48             : 
+      49             : protected:
+      50             :   mutable mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>      ph_agl_height_;
+      51             :   mutable mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped> ph_agl_height_cov_;
+      52             : 
+      53             : public:
+      54          70 :   AglEstimator(const std::string &name, const std::string &frame_id, const std::string &package_name)
+      55          70 :       : Estimator(agl::type, name, frame_id), package_name_(package_name) {
+      56          70 :   }
+      57             : 
+      58          70 :   virtual ~AglEstimator(void) {
+      59          70 :   }
+      60             : 
+      61             :   // virtual methods
+      62             :   virtual mrs_msgs::Float64Stamped getUavAglHeight() const     = 0;
+      63             :   virtual std::vector<double>      getHeightCovariance() const = 0;
+      64             : 
+      65             :   // implemented methods
+      66             :   void publishAglHeight() const;
+      67             :   void publishCovariance() const;
+      68             :   bool isCompatibleWithHwApi(const mrs_msgs::HwApiCapabilitiesConstPtr &hw_api_capabilities) const;
+      69             : };
+      70             : 
+      71             : }  // namespace mrs_uav_managers
+      72             : 
+      73             : #endif  // MRS_UAV_MANAGERS_AGL_ESTIMATOR_H
+
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+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h.gcov.overview.html b/mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h.gcov.overview.html new file mode 100644 index 0000000000..21f3af39aa --- /dev/null +++ b/mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h.gcov.overview.html @@ -0,0 +1,39 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h.gcov.png b/mrs_uav_managers/include/mrs_uav_managers/agl_estimator.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..d88c3428e27de2da87a77f1e9b45246bce5c1009 GIT binary patch literal 397 zcmeAS@N?(olHy`uVBq!ia0vp^0YL1@!VDxMp6xjcq$C1-LR|m<|Gx?dmcNgUef6J# zVHHpuOr7)IycEdhEbxddW?X?_wfUqO7#O8JT^vI^I**2N^Bq>;m@551^bPNq zf9122k3Q-bES1dkxxB~jU(@G%i}R249^oF@8-^V(Ynvcr7WJ?T*XcTjST)6V%To!AaM zVduIYRMU7w<@9e;50Qhsq7K!Y7H0fOOAcJ-FL2X1>-ZLKhy8pP p#LM#zrZ}!(zhtL;GxNsIIKPIdz%zeOxB$bB!PC{xWt~$(697r3r%?a^ literal 0 HcmV?d00001 diff --git a/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.func-sort-c.html b/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.func-sort-c.html new file mode 100644 index 0000000000..43de4bce6b --- /dev/null +++ b/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.func-sort-c.html @@ -0,0 +1,188 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_managers/include/mrs_uav_managers/control_manager - common.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:539655.2 %
Date:2024-04-17 23:52:03Functions:192770.4 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiPositionCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)477
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&)477
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)951
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)951
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)964
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&)964
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1185
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)1185
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2589
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)3144
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3809
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3824
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&)5201
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&)5217
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)7958
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)13491
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)14463
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)72143
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)89270
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.func.html b/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.func.html new file mode 100644 index 0000000000..07ee6544e4 --- /dev/null +++ b/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.func.html @@ -0,0 +1,188 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/include/mrs_uav_managers/control_manager - common.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:539655.2 %
Date:2024-04-17 23:52:03Functions:192770.4 %
Legend: Lines: + hit + not hit +
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+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3809
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)7958
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)477
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1185
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)72143
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3824
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)964
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2589
mrs_uav_managers::control_manager::HwApiValidateVisitor::operator()(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)951
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiPositionCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)14463
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiInitializeVisitor::operator()(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)0
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&)5201
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)13491
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&)477
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)1185
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)89270
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&)5217
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&)964
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)3144
mrs_uav_managers::control_manager::HwApiCmdExtractThrottleVisitor::operator()(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)951
+
+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.gcov.frameset.html b/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.gcov.frameset.html new file mode 100644 index 0000000000..20a444da4e --- /dev/null +++ b/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.gcov.html b/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.gcov.html new file mode 100644 index 0000000000..a852607eb9 --- /dev/null +++ b/mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h.gcov.html @@ -0,0 +1,380 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/mrs_uav_managers/control_manager/common.h + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/include/mrs_uav_managers/control_manager - common.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:539655.2 %
Date:2024-04-17 23:52:03Functions:192770.4 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef CONTROL_MANAGER_COMMON_H
+       2             : #define CONTROL_MANAGER_COMMON_H
+       3             : 
+       4             : #include <ros/ros.h>
+       5             : 
+       6             : #include <vector>
+       7             : #include <string>
+       8             : #include <optional>
+       9             : #include <variant>
+      10             : 
+      11             : #include <mrs_lib/attitude_converter.h>
+      12             : #include <mrs_lib/param_loader.h>
+      13             : 
+      14             : #include <mrs_uav_managers/control_manager/common_handlers.h>
+      15             : #include <mrs_uav_managers/controller.h>
+      16             : 
+      17             : #include <mrs_msgs/TrackerCommand.h>
+      18             : #include <mrs_msgs/UavState.h>
+      19             : #include <mrs_msgs/VelocityReference.h>
+      20             : 
+      21             : #include <mrs_msgs/HwApiActuatorCmd.h>
+      22             : #include <mrs_msgs/HwApiControlGroupCmd.h>
+      23             : #include <mrs_msgs/HwApiAttitudeRateCmd.h>
+      24             : #include <mrs_msgs/HwApiAttitudeCmd.h>
+      25             : #include <mrs_msgs/HwApiAccelerationHdgRateCmd.h>
+      26             : #include <mrs_msgs/HwApiAccelerationHdgCmd.h>
+      27             : #include <mrs_msgs/HwApiVelocityHdgRateCmd.h>
+      28             : #include <mrs_msgs/HwApiVelocityHdgCmd.h>
+      29             : #include <mrs_msgs/HwApiPositionCmd.h>
+      30             : 
+      31             : #include <mrs_msgs/HwApiCapabilities.h>
+      32             : 
+      33             : #include <nav_msgs/Odometry.h>
+      34             : 
+      35             : namespace mrs_uav_managers
+      36             : {
+      37             : 
+      38             : namespace control_manager
+      39             : {
+      40             : 
+      41             : enum CONTROL_OUTPUT
+      42             : {
+      43             :   ACTUATORS_CMD,
+      44             :   CONTROL_GROUP,
+      45             :   ATTITUDE_RATE,
+      46             :   ATTITUDE,
+      47             :   ACCELERATION_HDG_RATE,
+      48             :   ACCELERATION_HDG,
+      49             :   VELOCITY_HDG_RATE,
+      50             :   VELOCITY_HDG,
+      51             :   POSITION
+      52             : };
+      53             : 
+      54             : CONTROL_OUTPUT getLowestOuput(const ControlOutputModalities_t& outputs);
+      55             : 
+      56             : CONTROL_OUTPUT getHighestOuput(const ControlOutputModalities_t& outputs);
+      57             : 
+      58             : std::optional<unsigned int> idxInVector(const std::string& str, const std::vector<std::string>& vec);
+      59             : 
+      60             : // checks for invalid values in the result from trackers
+      61             : bool validateTrackerCommand(const std::optional<mrs_msgs::TrackerCommand>& msg, const std::string& node_name, const std::string& var_name);
+      62             : 
+      63             : // checks for invalid messages in/out
+      64             : bool validateOdometry(const nav_msgs::Odometry& msg, const std::string& node_name, const std::string& var_name);
+      65             : bool validateUavState(const mrs_msgs::UavState& msg, const std::string& node_name, const std::string& var_nam);
+      66             : bool validateVelocityReference(const mrs_msgs::VelocityReference& msg, const std::string& node_name, const std::string& var_name);
+      67             : bool validateReference(const mrs_msgs::Reference& msg, const std::string& node_name, const std::string& var_name);
+      68             : 
+      69             : std::optional<DetailedModelParams_t> loadDetailedUavModelParams(ros::NodeHandle& nh, const std::string& node_name, const std::string& platform_config,
+      70             :                                                                 const std::string& custom_config);
+      71             : 
+      72             : // translates the channel values to desired range
+      73             : double RCChannelToRange(double rc_value, double range, double deadband);
+      74             : 
+      75             : /* throttle extraction //{ */
+      76             : 
+      77             : std::optional<double> extractThrottle(const Controller::ControlOutput& control_output);
+      78             : 
+      79             : struct HwApiCmdExtractThrottleVisitor
+      80             : {
+      81        5201 :   std::optional<double> operator()(const mrs_msgs::HwApiActuatorCmd& msg) {
+      82             : 
+      83        5201 :     if (msg.motors.size() == 0) {
+      84           0 :       return std::nullopt;
+      85             :     }
+      86             : 
+      87        5201 :     double throttle = 0;
+      88             : 
+      89       26005 :     for (size_t i = 0; i < msg.motors.size(); i++) {
+      90       20804 :       throttle += msg.motors[i];
+      91             :     };
+      92             : 
+      93        5201 :     throttle /= msg.motors.size();
+      94             : 
+      95        5201 :     return throttle;
+      96             :   }
+      97        5217 :   std::optional<double> operator()(const mrs_msgs::HwApiControlGroupCmd& msg) {
+      98        5217 :     return msg.throttle;
+      99             :   }
+     100       13491 :   std::optional<double> operator()(const mrs_msgs::HwApiAttitudeCmd& msg) {
+     101       13491 :     return msg.throttle;
+     102             :   }
+     103       89270 :   std::optional<double> operator()(const mrs_msgs::HwApiAttitudeRateCmd& msg) {
+     104       89270 :     return msg.throttle;
+     105             :   }
+     106         951 :   std::optional<double> operator()([[maybe_unused]] const mrs_msgs::HwApiAccelerationHdgRateCmd& msg) {
+     107         951 :     return std::nullopt;
+     108             :   }
+     109         964 :   std::optional<double> operator()([[maybe_unused]] const mrs_msgs::HwApiAccelerationHdgCmd& msg) {
+     110         964 :     return std::nullopt;
+     111             :   }
+     112        3144 :   std::optional<double> operator()([[maybe_unused]] const mrs_msgs::HwApiVelocityHdgRateCmd& msg) {
+     113        3144 :     return std::nullopt;
+     114             :   }
+     115        1185 :   std::optional<double> operator()([[maybe_unused]] const mrs_msgs::HwApiVelocityHdgCmd& msg) {
+     116        1185 :     return std::nullopt;
+     117             :   }
+     118         477 :   std::optional<double> operator()([[maybe_unused]] const mrs_msgs::HwApiPositionCmd& msg) {
+     119         477 :     return std::nullopt;
+     120             :   }
+     121             : };
+     122             : 
+     123             : //}
+     124             : 
+     125             : /* control output validation //{ */
+     126             : 
+     127             : bool validateControlOutput(const Controller::ControlOutput& control_output, const ControlOutputModalities_t& output_modalities, const std::string& node_name,
+     128             :                            const std::string& var_name);
+     129             : 
+     130             : // validation of hw api messages
+     131             : bool validateHwApiActuatorCmd(const mrs_msgs::HwApiActuatorCmd& msg, const std::string& node_name, const std::string& var_name);
+     132             : bool validateHwApiControlGroupCmd(const mrs_msgs::HwApiControlGroupCmd& msg, const std::string& node_name, const std::string& var_name);
+     133             : bool validateHwApiAttitudeCmd(const mrs_msgs::HwApiAttitudeCmd& msg, const std::string& node_name, const std::string& var_name);
+     134             : bool validateHwApiAttitudeRateCmd(const mrs_msgs::HwApiAttitudeRateCmd& msg, const std::string& node_name, const std::string& var_name);
+     135             : bool validateHwApiAccelerationHdgRateCmd(const mrs_msgs::HwApiAccelerationHdgRateCmd& msg, const std::string& node_name, const std::string& var_name);
+     136             : bool validateHwApiAccelerationHdgCmd(const mrs_msgs::HwApiAccelerationHdgCmd& msg, const std::string& node_name, const std::string& var_name);
+     137             : bool validateHwApiVelocityHdgRateCmd(const mrs_msgs::HwApiVelocityHdgRateCmd& msg, const std::string& node_name, const std::string& var_name);
+     138             : bool validateHwApiVelocityHdgCmd(const mrs_msgs::HwApiVelocityHdgCmd& msg, const std::string& node_name, const std::string& var_name);
+     139             : bool validateHwApiPositionCmd(const mrs_msgs::HwApiPositionCmd& msg, const std::string& node_name, const std::string& var_name);
+     140             : 
+     141             : struct HwApiValidateVisitor
+     142             : {
+     143        3809 :   bool operator()(const mrs_msgs::HwApiActuatorCmd& msg, const ControlOutputModalities_t& output_modalities, const std::string& node_name,
+     144             :                   const std::string& var_name) {
+     145             : 
+     146        3809 :     if (!output_modalities.actuators) {
+     147           0 :       ROS_ERROR("[%s]: The controller returned an output modality (actuator cmd) that is not supported by the hardware API", node_name.c_str());
+     148           0 :       return false;
+     149             :     }
+     150             : 
+     151        3809 :     return validateHwApiActuatorCmd(msg, node_name, var_name);
+     152             :   }
+     153        3824 :   bool operator()(const mrs_msgs::HwApiControlGroupCmd& msg, const ControlOutputModalities_t& output_modalities, const std::string& node_name,
+     154             :                   const std::string& var_name) {
+     155             : 
+     156        3824 :     if (!output_modalities.control_group) {
+     157           0 :       ROS_ERROR("[%s]: The controller returned an output modality (control group cmd) that is not supported by the hardware API", node_name.c_str());
+     158           0 :       return false;
+     159             :     }
+     160             : 
+     161        3824 :     return validateHwApiControlGroupCmd(msg, node_name, var_name);
+     162             :   }
+     163        7958 :   bool operator()(const mrs_msgs::HwApiAttitudeCmd& msg, const ControlOutputModalities_t& output_modalities, const std::string& node_name,
+     164             :                   const std::string& var_name) {
+     165             : 
+     166        7958 :     if (!output_modalities.attitude) {
+     167           0 :       ROS_ERROR("[%s]: The controller returned an output modality (attitude cmd) that is not supported by the hardware API", node_name.c_str());
+     168           0 :       return false;
+     169             :     }
+     170             : 
+     171        7958 :     return validateHwApiAttitudeCmd(msg, node_name, var_name);
+     172             :   }
+     173       72143 :   bool operator()(const mrs_msgs::HwApiAttitudeRateCmd& msg, const ControlOutputModalities_t& output_modalities, const std::string& node_name,
+     174             :                   const std::string& var_name) {
+     175             : 
+     176       72143 :     if (!output_modalities.attitude_rate) {
+     177           0 :       ROS_ERROR("[%s]: The controller returned an output modality (attitude rate cmd) that is not supported by the hardware API", node_name.c_str());
+     178           0 :       return false;
+     179             :     }
+     180             : 
+     181       72143 :     return validateHwApiAttitudeRateCmd(msg, node_name, var_name);
+     182             :   }
+     183         951 :   bool operator()(const mrs_msgs::HwApiAccelerationHdgRateCmd& msg, const ControlOutputModalities_t& output_modalities, const std::string& node_name,
+     184             :                   const std::string& var_name) {
+     185             : 
+     186         951 :     if (!output_modalities.acceleration_hdg_rate) {
+     187           0 :       ROS_ERROR("[%s]: The controller returned an output modality (acceleration+hdg rate cmd) that is not supported by the hardware API", node_name.c_str());
+     188           0 :       return false;
+     189             :     }
+     190             : 
+     191         951 :     return validateHwApiAccelerationHdgRateCmd(msg, node_name, var_name);
+     192             :   }
+     193         964 :   bool operator()(const mrs_msgs::HwApiAccelerationHdgCmd& msg, const ControlOutputModalities_t& output_modalities, const std::string& node_name,
+     194             :                   const std::string& var_name) {
+     195             : 
+     196         964 :     if (!output_modalities.acceleration_hdg) {
+     197           0 :       ROS_ERROR("[%s]: The controller returned an output modality (acceleration+hdg cmd) that is not supported by the hardware API", node_name.c_str());
+     198           0 :       return false;
+     199             :     }
+     200             : 
+     201         964 :     return validateHwApiAccelerationHdgCmd(msg, node_name, var_name);
+     202             :   }
+     203        2589 :   bool operator()(const mrs_msgs::HwApiVelocityHdgRateCmd& msg, const ControlOutputModalities_t& output_modalities, const std::string& node_name,
+     204             :                   const std::string& var_name) {
+     205             : 
+     206        2589 :     if (!output_modalities.velocity_hdg_rate) {
+     207           0 :       ROS_ERROR("[%s]: The controller returned an output modality (velocity+hdg rate cmd) that is not supported by the hardware API", node_name.c_str());
+     208           0 :       return false;
+     209             :     }
+     210             : 
+     211        2589 :     return validateHwApiVelocityHdgRateCmd(msg, node_name, var_name);
+     212             :   }
+     213        1185 :   bool operator()(const mrs_msgs::HwApiVelocityHdgCmd& msg, const ControlOutputModalities_t& output_modalities, const std::string& node_name,
+     214             :                   const std::string& var_name) {
+     215             : 
+     216        1185 :     if (!output_modalities.velocity_hdg) {
+     217           0 :       ROS_ERROR("[%s]: The controller returned an output modality (velocity+hdg cmd) that is not supported by the hardware API", node_name.c_str());
+     218           0 :       return false;
+     219             :     }
+     220             : 
+     221        1185 :     return validateHwApiVelocityHdgCmd(msg, node_name, var_name);
+     222             :   }
+     223         477 :   bool operator()(const mrs_msgs::HwApiPositionCmd& msg, const ControlOutputModalities_t& output_modalities, const std::string& node_name,
+     224             :                   const std::string& var_name) {
+     225             : 
+     226         477 :     if (!output_modalities.position) {
+     227           0 :       ROS_ERROR("[%s]: The controller returned an output modality (position cmd) that is not supported by the hardware API", node_name.c_str());
+     228           0 :       return false;
+     229             :     }
+     230             : 
+     231         477 :     return validateHwApiPositionCmd(msg, node_name, var_name);
+     232             :   }
+     233             : };
+     234             : 
+     235             : //}
+     236             : 
+     237             : /* control output initialization //{ */
+     238             : 
+     239             : Controller::HwApiOutputVariant initializeDefaultOutput(const ControlOutputModalities_t& possible_outputs, const mrs_msgs::UavState& uav_state,
+     240             :                                                        const double& min_throttle, const double& n_motors);
+     241             : 
+     242             : void initializeHwApiCmd(mrs_msgs::HwApiActuatorCmd& msg, const double& min_throttle, const double& n_motors);
+     243             : void initializeHwApiCmd(mrs_msgs::HwApiControlGroupCmd& msg, const double& min_throttle);
+     244             : void initializeHwApiCmd(mrs_msgs::HwApiAttitudeRateCmd& msg, const double& min_throttle);
+     245             : void initializeHwApiCmd(mrs_msgs::HwApiAttitudeCmd& msg, const mrs_msgs::UavState& uav_state, const double& min_throttle);
+     246             : void initializeHwApiCmd(mrs_msgs::HwApiAccelerationHdgRateCmd& msg, const mrs_msgs::UavState& uav_state);
+     247             : void initializeHwApiCmd(mrs_msgs::HwApiAccelerationHdgCmd& msg, const mrs_msgs::UavState& uav_state);
+     248             : void initializeHwApiCmd(mrs_msgs::HwApiVelocityHdgRateCmd& msg, const mrs_msgs::UavState& uav_state);
+     249             : void initializeHwApiCmd(mrs_msgs::HwApiVelocityHdgCmd& msg, const mrs_msgs::UavState& uav_state);
+     250             : void initializeHwApiCmd(mrs_msgs::HwApiPositionCmd& msg, const mrs_msgs::UavState& uav_state);
+     251             : 
+     252             : struct HwApiInitializeVisitor
+     253             : {
+     254           0 :   void operator()(mrs_msgs::HwApiActuatorCmd& msg, [[maybe_unused]] const mrs_msgs::UavState& uav_state, const double& min_throttle, const double& n_motors) {
+     255           0 :     initializeHwApiCmd(msg, min_throttle, n_motors);
+     256           0 :   }
+     257           0 :   void operator()(mrs_msgs::HwApiControlGroupCmd& msg, [[maybe_unused]] const mrs_msgs::UavState& uav_state, const double& min_throttle,
+     258             :                   [[maybe_unused]] const double& n_motors) {
+     259           0 :     initializeHwApiCmd(msg, min_throttle);
+     260           0 :   }
+     261           0 :   void operator()(mrs_msgs::HwApiAttitudeCmd& msg, const mrs_msgs::UavState& uav_state, const double& min_throttle, [[maybe_unused]] const double& n_motors) {
+     262           0 :     initializeHwApiCmd(msg, uav_state, min_throttle);
+     263           0 :   }
+     264       14463 :   void operator()(mrs_msgs::HwApiAttitudeRateCmd& msg, [[maybe_unused]] const mrs_msgs::UavState& uav_state, const double& min_throttle,
+     265             :                   [[maybe_unused]] const double& n_motors) {
+     266       14463 :     initializeHwApiCmd(msg, min_throttle);
+     267       14463 :   }
+     268           0 :   void operator()(mrs_msgs::HwApiAccelerationHdgRateCmd& msg, const mrs_msgs::UavState& uav_state, [[maybe_unused]] const double& min_throttle,
+     269             :                   [[maybe_unused]] const double& n_motors) {
+     270           0 :     initializeHwApiCmd(msg, uav_state);
+     271           0 :   }
+     272           0 :   void operator()(mrs_msgs::HwApiAccelerationHdgCmd& msg, const mrs_msgs::UavState& uav_state, [[maybe_unused]] const double& min_throttle,
+     273             :                   [[maybe_unused]] const double& n_motors) {
+     274           0 :     initializeHwApiCmd(msg, uav_state);
+     275           0 :   }
+     276           0 :   void operator()(mrs_msgs::HwApiVelocityHdgRateCmd& msg, const mrs_msgs::UavState& uav_state, [[maybe_unused]] const double& min_throttle,
+     277             :                   [[maybe_unused]] const double& n_motors) {
+     278           0 :     initializeHwApiCmd(msg, uav_state);
+     279           0 :   }
+     280           0 :   void operator()(mrs_msgs::HwApiVelocityHdgCmd& msg, const mrs_msgs::UavState& uav_state, [[maybe_unused]] const double& min_throttle,
+     281             :                   [[maybe_unused]] const double& n_motors) {
+     282           0 :     initializeHwApiCmd(msg, uav_state);
+     283           0 :   }
+     284           0 :   void operator()(mrs_msgs::HwApiPositionCmd& msg, const mrs_msgs::UavState& uav_state, [[maybe_unused]] const double& min_throttle,
+     285             :                   [[maybe_unused]] const double& n_motors) {
+     286           0 :     initializeHwApiCmd(msg, uav_state);
+     287           0 :   }
+     288             : };
+     289             : 
+     290             : //}
+     291             : 
+     292             : }  // namespace control_manager
+     293             : 
+     294             : }  // namespace mrs_uav_managers
+     295             : 
+     296             : #endif  // CONTROL_MANAGER_COMMON_H
+
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          Line data    Source code
+
+       1             : #ifndef MRS_UAV_CONTROLLER_H
+       2             : #define MRS_UAV_CONTROLLER_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <mrs_uav_managers/control_manager/common_handlers.h>
+       9             : #include <mrs_uav_managers/control_manager/private_handlers.h>
+      10             : 
+      11             : #include <mrs_msgs/HwApiActuatorCmd.h>
+      12             : #include <mrs_msgs/HwApiControlGroupCmd.h>
+      13             : #include <mrs_msgs/HwApiAttitudeRateCmd.h>
+      14             : #include <mrs_msgs/HwApiAttitudeCmd.h>
+      15             : #include <mrs_msgs/HwApiAccelerationHdgRateCmd.h>
+      16             : #include <mrs_msgs/HwApiAccelerationHdgCmd.h>
+      17             : #include <mrs_msgs/HwApiVelocityHdgRateCmd.h>
+      18             : #include <mrs_msgs/HwApiVelocityHdgCmd.h>
+      19             : #include <mrs_msgs/HwApiPositionCmd.h>
+      20             : 
+      21             : #include <mrs_msgs/ControllerDiagnostics.h>
+      22             : #include <mrs_msgs/ControllerStatus.h>
+      23             : #include <mrs_msgs/TrackerCommand.h>
+      24             : #include <mrs_msgs/UavState.h>
+      25             : 
+      26             : #include <mrs_msgs/DynamicsConstraintsSrv.h>
+      27             : #include <mrs_msgs/DynamicsConstraintsSrvRequest.h>
+      28             : #include <mrs_msgs/DynamicsConstraintsSrvResponse.h>
+      29             : 
+      30             : //}
+      31             : 
+      32             : namespace mrs_uav_managers
+      33             : {
+      34             : 
+      35             : class Controller {
+      36             : public:
+      37             :   typedef std::variant<mrs_msgs::HwApiActuatorCmd, mrs_msgs::HwApiControlGroupCmd, mrs_msgs::HwApiAttitudeRateCmd, mrs_msgs::HwApiAttitudeCmd,
+      38             :                        mrs_msgs::HwApiAccelerationHdgRateCmd, mrs_msgs::HwApiAccelerationHdgCmd, mrs_msgs::HwApiVelocityHdgRateCmd,
+      39             :                        mrs_msgs::HwApiVelocityHdgCmd, mrs_msgs::HwApiPositionCmd>
+      40             :       HwApiOutputVariant;
+      41             : 
+      42             :   typedef struct
+      43             :   {
+      44             :     std::optional<HwApiOutputVariant> control_output;
+      45             :     mrs_msgs::ControllerDiagnostics   diagnostics;
+      46             : 
+      47             :     /**
+      48             :      * @brief Desired orientation is used for checking the orientation control error.
+      49             :      *        This variable is optional, fill it in if you know it.
+      50             :      */
+      51             :     std::optional<Eigen::Quaterniond> desired_orientation;
+      52             : 
+      53             :     /**
+      54             :      * @brief Desired unbiased acceleration is used by the MRS odometry as control input.
+      55             :      *        This variable is optional, fill it in if you know it.
+      56             :      */
+      57             :     std::optional<Eigen::Vector3d> desired_unbiased_acceleration;
+      58             : 
+      59             :     /**
+      60             :      * @brief Desired heading rate caused by the controllers control action.
+      61             :      *        This variable is optional, fill it in if you know it.
+      62             :      */
+      63             :     std::optional<double> desired_heading_rate;
+      64             :   } ControlOutput;
+      65             : 
+      66             :   /**
+      67             :    * @brief Initializes the controller. It is called once for every controller. The runtime is not limited.
+      68             :    *
+      69             :    * @param nh the node handle of the ControlManager
+      70             :    * @param name of the controller for distinguishing multiple running instances of the same code
+      71             :    * @param name_space the parameter namespace of the controller, can be used during initialization of the private node handle
+      72             :    * @param common_handlers handlers shared between trackers and controllers
+      73             :    * @param private_handlers handlers provided individually to each controller
+      74             :    *
+      75             :    * @return true if success
+      76             :    */
+      77             :   virtual bool initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      78             :                           std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) = 0;
+      79             : 
+      80             :   /**
+      81             :    * @brief It is called before the controller output will be required and used. Should not take much time (within miliseconds).
+      82             :    *
+      83             :    * @param last_attitude_cmd the last command produced by the last active controller. Should be used as an initial condition, e.g., for re-initializing
+      84             :    * integrators and estimators.
+      85             :    *
+      86             :    * @return true if success
+      87             :    */
+      88             :   virtual bool activate(const ControlOutput &last_control_output) = 0;
+      89             : 
+      90             :   /**
+      91             :    * @brief is called when this controller's output is no longer needed. However, it can be activated later.
+      92             :    */
+      93             :   virtual void deactivate(void) = 0;
+      94             : 
+      95             :   /**
+      96             :    * @brief It may be called to reset the controllers disturbance estimators.
+      97             :    */
+      98             :   virtual void resetDisturbanceEstimators(void) = 0;
+      99             : 
+     100             :   /**
+     101             :    * @brief This method is called in the main feedback control loop when your controller is NOT active. You can use this to validate your results without endangering the drone.
+     102             :    *        The method is called even before the flight with just the uav_state being supplied.
+     103             :    *
+     104             :    * @param uav_state current estimated state of the UAV dynamics
+     105             :    * @param tracker_command current required control reference (is optional)
+     106             :    */
+     107             :   virtual void updateInactive(const mrs_msgs::UavState &uav_state, const std::optional<mrs_msgs::TrackerCommand> &tracker_command) = 0;
+     108             : 
+     109             :   /**
+     110             :    * @brief This method is called in the main feedback control loop when your controller IS active and when it is supposed to produce a control output.
+     111             :    *
+     112             :    * @param uav_state current estimated state of the UAV dynamics
+     113             :    * @param tracker_command current required control reference
+     114             :    *
+     115             :    * @return produced control output
+     116             :    */
+     117             :   virtual ControlOutput updateActive(const mrs_msgs::UavState &uav_state, const mrs_msgs::TrackerCommand &tracker_command) = 0;
+     118             : 
+     119             :   /**
+     120             :    * @brief A request for the controller's status.
+     121             :    *
+     122             :    * @return the controller's status
+     123             :    */
+     124             :   virtual const mrs_msgs::ControllerStatus getStatus() = 0;
+     125             : 
+     126             :   /**
+     127             :    * @brief It is called during every switch of reference frames of the UAV state estimate.
+     128             :    * The controller should recalculate its internal states from old the frame to the new one.
+     129             :    *
+     130             :    * @param new_uav_state the new UavState which will come in the next update()
+     131             :    */
+     132             :   virtual void switchOdometrySource(const mrs_msgs::UavState &new_uav_state) = 0;
+     133             : 
+     134             :   /**
+     135             :    * @brief Request for setting new constraints.
+     136             :    *
+     137             :    * @param constraints to be set
+     138             :    *
+     139             :    * @return a service response
+     140             :    */
+     141             :   virtual const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &constraints) = 0;
+     142             : 
+     143         455 :   virtual ~Controller() = default;
+     144             : };
+     145             : 
+     146             : }  // namespace mrs_uav_managers
+     147             : 
+     148             : #endif
+
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mrs_uav_managers::Estimator::~Estimator()0
mrs_uav_managers::Estimator::Estimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)529
mrs_uav_managers::Estimator::~Estimator().2529
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mrs_uav_managers::Estimator::Estimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)529
mrs_uav_managers::Estimator::~Estimator()0
mrs_uav_managers::Estimator::~Estimator().2529
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          Line data    Source code
+
+       1             : #ifndef MRS_UAV_MANAGERS_ESTIMATION_MANAGER_ESTIMATOR_H
+       2             : #define MRS_UAV_MANAGERS_ESTIMATION_MANAGER_ESTIMATOR_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <Eigen/Dense>
+       9             : 
+      10             : #include <nav_msgs/Odometry.h>
+      11             : 
+      12             : #include <sensor_msgs/Imu.h>
+      13             : 
+      14             : #include <mrs_msgs/UavState.h>
+      15             : #include <mrs_msgs/EstimatorInput.h>
+      16             : #include <mrs_msgs/EstimatorDiagnostics.h>
+      17             : 
+      18             : #include <mrs_lib/publisher_handler.h>
+      19             : #include <mrs_lib/attitude_converter.h>
+      20             : #include <mrs_lib/param_loader.h>
+      21             : #include <mrs_lib/mutex.h>
+      22             : 
+      23             : 
+      24             : #include <mrs_uav_managers/estimation_manager/types.h>
+      25             : #include <mrs_uav_managers/estimation_manager/support.h>
+      26             : #include <mrs_uav_managers/estimation_manager/common_handlers.h>
+      27             : #include <mrs_uav_managers/estimation_manager/private_handlers.h>
+      28             : 
+      29             : //}
+      30             : 
+      31             : namespace mrs_uav_managers
+      32             : {
+      33             : 
+      34             : /* using namespace estimation_manager; */
+      35             : 
+      36             : using namespace mrs_uav_managers::estimation_manager;
+      37             : 
+      38             : class Estimator {
+      39             : 
+      40             : protected:
+      41             :   mutable mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics> ph_diagnostics_;
+      42             : 
+      43             :   const std::string type_;
+      44             :   const std::string name_;
+      45             :   const std::string package_name_;
+      46             : 
+      47             :   std::string frame_id_;  // cannot be constant - must remain overridable by loaded parameter
+      48             :   std::string ns_frame_id_;
+      49             : 
+      50             :   std::shared_ptr<CommonHandlers_t>  ch_;
+      51             :   std::shared_ptr<PrivateHandlers_t> ph_;
+      52             : 
+      53             :   double max_flight_z_ = -1.0;
+      54             : 
+      55             :   std::atomic_bool is_mitigating_jump_ = false;
+      56             : 
+      57             : private:
+      58             :   SMStates_t         previous_sm_state_ = SMStates_t::UNINITIALIZED_STATE;
+      59             :   SMStates_t         current_sm_state_  = SMStates_t::UNINITIALIZED_STATE;
+      60             :   mutable std::mutex mutex_current_state_;
+      61             : 
+      62             : protected:
+      63         529 :   Estimator(const std::string &type, const std::string &name, const std::string &frame_id) : type_(type), name_(name), frame_id_(frame_id) {
+      64         529 :   }
+      65             : 
+      66         529 :   virtual ~Estimator(void) {
+      67         529 :   }
+      68             : 
+      69             : public:
+      70             :   // virtual methods
+      71             :   virtual void initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) = 0;
+      72             :   virtual bool start(void)                                                                                                                = 0;
+      73             :   virtual bool pause(void)                                                                                                                = 0;
+      74             :   virtual bool reset(void)                                                                                                                = 0;
+      75             : 
+      76             :   // implemented methods
+      77             :   // access methods
+      78             :   std::string getName(void) const;
+      79             :   std::string getPrintName(void) const;
+      80             :   std::string getType(void) const;
+      81             :   std::string getFrameId(void) const;
+      82             :   double      getMaxFlightZ(void) const;
+      83             :   std::string getSmStateString(const SMStates_t &state) const;
+      84             :   std::string getCurrentSmStateString(void) const;
+      85             :   SMStates_t  getCurrentSmState() const;
+      86             : 
+      87             :   void setCurrentSmState(const SMStates_t &new_state);
+      88             : 
+      89             :   bool isMitigatingJump() const;
+      90             : 
+      91             :   // state machine methods
+      92             :   bool changeState(SMStates_t new_state);
+      93             :   bool isInState(const SMStates_t &state_in) const;
+      94             :   bool isInitialized() const;
+      95             :   bool isReady() const;
+      96             :   bool isStarted() const;
+      97             :   bool isRunning() const;
+      98             :   bool isStopped() const;
+      99             :   bool isError() const;
+     100             : 
+     101             :   void publishDiagnostics() const;
+     102             : 
+     103             :   tf2::Vector3          getAccGlobal(const sensor_msgs::Imu::ConstPtr &input_msg, const double hdg);
+     104             :   tf2::Vector3          getAccGlobal(const mrs_msgs::EstimatorInput::ConstPtr &input_msg, const double hdg);
+     105             :   tf2::Vector3          getAccGlobal(const geometry_msgs::Vector3Stamped &acc_stamped, const double hdg);
+     106             :   std::optional<double> getHeadingRate(const nav_msgs::OdometryConstPtr &odom_msg);
+     107             : };
+     108             : 
+     109             : }  // namespace mrs_uav_managers
+     110             : 
+     111             : #endif  // MRS_UAV_MANAGERS_ESTIMATION_MANAGER_ESTIMATOR_H
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Test:MRS UAV System - Test coverage reportLines:10610997.2 %
Date:2024-04-17 23:52:03Functions:171894.4 %
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Test:MRS UAV System - Test coverage reportLines:10610997.2 %
Date:2024-04-17 23:52:03Functions:171894.4 %
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Test:MRS UAV System - Test coverage reportLines:10610997.2 %
Date:2024-04-17 23:52:03Functions:171894.4 %
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Current view:top level - mrs_uav_managers/include/mrs_uav_managers/estimation_managerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:10610997.2 %
Date:2024-04-17 23:52:03Functions:171894.4 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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100.0%
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support.h +
97.1%97.1%
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97.1 %102 / 105100.0 %15 / 15
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Test:MRS UAV System - Test coverage reportLines:10210597.1 %
Date:2024-04-17 23:52:03Functions:1515100.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::estimation_manager::Support::getPoseDiff(geometry_msgs::Pose_<std::allocator<void> > const&, geometry_msgs::Pose_<std::allocator<void> > const&)5
mrs_uav_managers::estimation_manager::Support::frameIdToEstimatorName(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)10
mrs_uav_managers::estimation_manager::Support::isStringInVector(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&)283
mrs_uav_managers::estimation_manager::Support::toLowercase(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)364
mrs_uav_managers::estimation_manager::Support::toSnakeCase(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2088
mrs_uav_managers::estimation_manager::Support::applyPoseDiff(geometry_msgs::Pose_<std::allocator<void> > const&, geometry_msgs::Pose_<std::allocator<void> > const&)155064
mrs_uav_managers::estimation_manager::Support::rotateVecByHdg(geometry_msgs::Vector3_<std::allocator<void> > const&, double)278419
mrs_uav_managers::estimation_manager::Support::msgFromTf2(tf2::Transform const&)325002
mrs_uav_managers::estimation_manager::Support::uavStateToOdom(mrs_msgs::UavState_<std::allocator<void> > const&)338830
mrs_uav_managers::estimation_manager::Support::rotateVector(geometry_msgs::Vector3_<std::allocator<void> > const&, geometry_msgs::Quaternion_<std::allocator<void> > const&)339770
mrs_uav_managers::estimation_manager::Support::noNans(geometry_msgs::Quaternion_<std::allocator<void> > const&)361198
mrs_uav_managers::estimation_manager::Support::pointToVector3(geometry_msgs::Point_<std::allocator<void> > const&)683642
mrs_uav_managers::estimation_manager::Support::poseFromTf2(tf2::Transform const&)698638
mrs_uav_managers::estimation_manager::Support::tf2FromPose(geometry_msgs::Pose_<std::allocator<void> > const&)1024532
mrs_uav_managers::estimation_manager::Support::noNans(geometry_msgs::TransformStamped_<std::allocator<void> > const&)1177044
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Current view:top level - mrs_uav_managers/include/mrs_uav_managers/estimation_manager - support.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:10210597.1 %
Date:2024-04-17 23:52:03Functions:1515100.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::estimation_manager::Support::msgFromTf2(tf2::Transform const&)325002
mrs_uav_managers::estimation_manager::Support::getPoseDiff(geometry_msgs::Pose_<std::allocator<void> > const&, geometry_msgs::Pose_<std::allocator<void> > const&)5
mrs_uav_managers::estimation_manager::Support::poseFromTf2(tf2::Transform const&)698638
mrs_uav_managers::estimation_manager::Support::tf2FromPose(geometry_msgs::Pose_<std::allocator<void> > const&)1024532
mrs_uav_managers::estimation_manager::Support::toLowercase(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)364
mrs_uav_managers::estimation_manager::Support::toSnakeCase(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2088
mrs_uav_managers::estimation_manager::Support::rotateVector(geometry_msgs::Vector3_<std::allocator<void> > const&, geometry_msgs::Quaternion_<std::allocator<void> > const&)339770
mrs_uav_managers::estimation_manager::Support::applyPoseDiff(geometry_msgs::Pose_<std::allocator<void> > const&, geometry_msgs::Pose_<std::allocator<void> > const&)155064
mrs_uav_managers::estimation_manager::Support::pointToVector3(geometry_msgs::Point_<std::allocator<void> > const&)683642
mrs_uav_managers::estimation_manager::Support::rotateVecByHdg(geometry_msgs::Vector3_<std::allocator<void> > const&, double)278419
mrs_uav_managers::estimation_manager::Support::uavStateToOdom(mrs_msgs::UavState_<std::allocator<void> > const&)338830
mrs_uav_managers::estimation_manager::Support::isStringInVector(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&)283
mrs_uav_managers::estimation_manager::Support::frameIdToEstimatorName(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)10
mrs_uav_managers::estimation_manager::Support::noNans(geometry_msgs::Quaternion_<std::allocator<void> > const&)361198
mrs_uav_managers::estimation_manager::Support::noNans(geometry_msgs::TransformStamped_<std::allocator<void> > const&)1177044
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Current view:top level - mrs_uav_managers/include/mrs_uav_managers/estimation_manager - support.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:10210597.1 %
Date:2024-04-17 23:52:03Functions:1515100.0 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #pragma once
+       2             : #ifndef ESTIMATION_MANAGER_SUPPORT_H
+       3             : #define ESTIMATION_MANAGER_SUPPORT_H
+       4             : 
+       5             : /* includes //{ */
+       6             : 
+       7             : #include <string.h>
+       8             : 
+       9             : #include <tf2_geometry_msgs/tf2_geometry_msgs.h>
+      10             : 
+      11             : #include <geometry_msgs/TransformStamped.h>
+      12             : #include <geometry_msgs/Pose.h>
+      13             : #include <geometry_msgs/PointStamped.h>
+      14             : 
+      15             : #include <nav_msgs/Odometry.h>
+      16             : 
+      17             : #include <mrs_msgs/UavState.h>
+      18             : 
+      19             : #include <mrs_lib/attitude_converter.h>
+      20             : #include <mrs_lib/transformer.h>
+      21             : 
+      22             : //}
+      23             : 
+      24             : namespace mrs_uav_managers
+      25             : {
+      26             : 
+      27             : namespace estimation_manager
+      28             : {
+      29             : 
+      30             : /*//{ class Support */
+      31             : class Support {
+      32             : 
+      33             : public:
+      34             : 
+      35             :   const static inline std::string waiting_for_string = "\033[0;36mWAITING FOR:\033[0m";
+      36             : 
+      37             :   /*//{ toSnakeCase() */
+      38        2088 :   static std::string toSnakeCase(const std::string& str_in) {
+      39             : 
+      40        2088 :     std::string str(1, tolower(str_in[0]));
+      41             : 
+      42       32801 :     for (auto it = str_in.begin() + 1; it != str_in.end(); ++it) {
+      43       30713 :       if (isupper(*it) && *(it - 1) != '_' && islower(*(it - 1))) {
+      44        1725 :         str += "_";
+      45             :       }
+      46       30713 :       str += *it;
+      47             :     }
+      48             : 
+      49        2088 :     std::transform(str.begin(), str.end(), str.begin(), ::tolower);
+      50             : 
+      51        2088 :     return str;
+      52             :   }
+      53             :   /*//}*/
+      54             : 
+      55             : /* toLowercase() //{ */
+      56             : 
+      57         364 : static std::string toLowercase(const std::string str_in) {
+      58         364 :   std::string str_out = str_in;
+      59         364 :   std::transform(str_out.begin(), str_out.end(), str_out.begin(), ::tolower);
+      60         364 :   return str_out;
+      61             : }
+      62             : 
+      63             : //}
+      64             : 
+      65             : /* toUppercase() //{ */
+      66             : 
+      67             : static std::string toUppercase(const std::string str_in) {
+      68             :   std::string str_out = str_in;
+      69             :   std::transform(str_out.begin(), str_out.end(), str_out.begin(), ::toupper);
+      70             :   return str_out;
+      71             : }
+      72             : 
+      73             : //}
+      74             : 
+      75             :   /*//{ stateCovToString() */
+      76             :   template <typename StateCov>
+      77             :   static std::string stateCovToString(const StateCov& sc) {
+      78             :     std::stringstream ss;
+      79             :     ss << "State:\n";
+      80             :     for (int i = 0; i < sc.x.rows(); i++) {
+      81             :       for (int j = 0; j < sc.x.cols(); j++) {
+      82             :         ss << sc.x(i, j) << " ";
+      83             :       }
+      84             :       ss << "\n";
+      85             :     }
+      86             :     ss << "Cov:\n";
+      87             :     for (int i = 0; i < sc.P.rows(); i++) {
+      88             :       for (int j = 0; j < sc.P.cols(); j++) {
+      89             :         ss << sc.P(i, j) << " ";
+      90             :       }
+      91             :       ss << "\n";
+      92             :     }
+      93             :     return ss.str();
+      94             :   }
+      95             :   /*//}*/
+      96             : 
+      97             :   /* //{ rotateVecByHdg() */
+      98      278419 :   static tf2::Vector3 rotateVecByHdg(const geometry_msgs::Vector3& vec_in, const double hdg_in) {
+      99             : 
+     100      278419 :     const tf2::Quaternion q_hdg = mrs_lib::AttitudeConverter(0, 0, 0).setHeading(hdg_in);
+     101             : 
+     102      275084 :     const tf2::Vector3 vec_tf2(vec_in.x, vec_in.y, vec_in.z);
+     103             : 
+     104      275189 :     const tf2::Vector3 vec_rotated = tf2::quatRotate(q_hdg, vec_tf2);
+     105             : 
+     106      546588 :     return vec_rotated;
+     107             :   }
+     108             :   //}
+     109             : 
+     110             :   /* noNans() //{ */
+     111     1177044 :   static bool noNans(const geometry_msgs::TransformStamped& tf) {
+     112             : 
+     113     3528470 :     return (std::isfinite(tf.transform.rotation.x) && std::isfinite(tf.transform.rotation.y) && std::isfinite(tf.transform.rotation.z) &&
+     114     4703178 :             std::isfinite(tf.transform.rotation.w) && std::isfinite(tf.transform.translation.x) && std::isfinite(tf.transform.translation.y) &&
+     115     2352247 :             std::isfinite(tf.transform.translation.z));
+     116             :   }
+     117             :   //}
+     118             : 
+     119             :   /* noNans() //{ */
+     120      361198 :   static bool noNans(const geometry_msgs::Quaternion& q) {
+     121             : 
+     122      361198 :     return (std::isfinite(q.x) && std::isfinite(q.y) && std::isfinite(q.z) && std::isfinite(q.w));
+     123             :   }
+     124             :   //}
+     125             : 
+     126             :   /* isZeroQuaternion() //{ */
+     127             :   static bool isZeroQuaternion(const geometry_msgs::Quaternion& q) {
+     128             : 
+     129             :     return (q.x == 0 && q.y == 0 && q.z == 0 && q.w == 0);
+     130             :   }
+     131             :   //}
+     132             : 
+     133             :   /* tf2FromPose() //{ */
+     134             : 
+     135     1024532 :   static tf2::Transform tf2FromPose(const geometry_msgs::Pose& pose_in) {
+     136             : 
+     137     1024532 :     tf2::Vector3 position(pose_in.position.x, pose_in.position.y, pose_in.position.z);
+     138             : 
+     139     1024143 :     tf2::Quaternion q;
+     140     1023910 :     tf2::fromMsg(pose_in.orientation, q);
+     141             : 
+     142     1023981 :     tf2::Transform tf_out(q, position);
+     143             : 
+     144     2044478 :     return tf_out;
+     145             :   }
+     146             : 
+     147             :   //}
+     148             : 
+     149             :   /* poseFromTf2() //{ */
+     150             : 
+     151      698638 :   static geometry_msgs::Pose poseFromTf2(const tf2::Transform& tf_in) {
+     152             : 
+     153      698638 :     geometry_msgs::Pose pose_out;
+     154      697010 :     pose_out.position.x = tf_in.getOrigin().getX();
+     155      697672 :     pose_out.position.y = tf_in.getOrigin().getY();
+     156      697846 :     pose_out.position.z = tf_in.getOrigin().getZ();
+     157             : 
+     158      698932 :     pose_out.orientation = tf2::toMsg(tf_in.getRotation());
+     159             : 
+     160      698949 :     return pose_out;
+     161             :   }
+     162             : 
+     163             :   //}
+     164             : 
+     165             :   /* msgFromTf2() //{ */
+     166      325002 :   static geometry_msgs::Transform msgFromTf2(const tf2::Transform& tf_in) {
+     167             : 
+     168      325002 :     geometry_msgs::Transform tf_out;
+     169      325002 :     tf_out.translation.x = tf_in.getOrigin().getX();
+     170      325002 :     tf_out.translation.y = tf_in.getOrigin().getY();
+     171      325002 :     tf_out.translation.z = tf_in.getOrigin().getZ();
+     172      325002 :     tf_out.rotation = tf2::toMsg(tf_in.getRotation());
+     173             : 
+     174      325002 :     return tf_out;
+     175             :   }
+     176             : 
+     177             :   //}
+     178             :   
+     179             :   /* tf2FromMsg() //{ */
+     180             :   static tf2::Transform tf2FromMsg(const geometry_msgs::Transform& tf_in) {
+     181             : 
+     182             :     tf2::Transform tf_out;
+     183             :     tf_out.setOrigin(tf2::Vector3(tf_in.translation.x, tf_in.translation.y, tf_in.translation.z));
+     184             :     tf_out.setRotation(tf2::Quaternion(tf_in.rotation.x, tf_in.rotation.y, tf_in.rotation.z, tf_in.rotation.w));
+     185             : 
+     186             :     return tf_out;
+     187             :   }
+     188             : 
+     189             :   //}
+     190             :  
+     191             :   /* pointToVector3() //{ */
+     192             : 
+     193      683642 :   static geometry_msgs::Vector3 pointToVector3(const geometry_msgs::Point& point_in) {
+     194             : 
+     195      683642 :     geometry_msgs::Vector3 vec_out;
+     196      683334 :     vec_out.x = point_in.x;
+     197      683334 :     vec_out.y = point_in.y;
+     198      683334 :     vec_out.z = point_in.z;
+     199             : 
+     200      683334 :     return vec_out;
+     201             :   }
+     202             : 
+     203             :   //}
+     204             : 
+     205             :   /*//{ rotateVector() */
+     206      339770 :   static geometry_msgs::Vector3 rotateVector(const geometry_msgs::Vector3& vec_in, const geometry_msgs::Quaternion& q_in) {
+     207             : 
+     208             :     try {
+     209      339770 :       Eigen::Matrix3d        R = mrs_lib::AttitudeConverter(q_in);
+     210      339786 :       Eigen::Vector3d        vec_in_eigen(vec_in.x, vec_in.y, vec_in.z);
+     211      339149 :       Eigen::Vector3d        vec_eigen_rotated = R * vec_in_eigen;
+     212      339538 :       geometry_msgs::Vector3 vec_out;
+     213      338492 :       vec_out.x = vec_eigen_rotated[0];
+     214      338435 :       vec_out.y = vec_eigen_rotated[1];
+     215      338853 :       vec_out.z = vec_eigen_rotated[2];
+     216      339006 :       return vec_out;
+     217             :     }
+     218           0 :     catch (...) {
+     219           0 :       ROS_ERROR_THROTTLE(1.0, "[Support::rotateVector()]: failed");
+     220           0 :       return vec_in;
+     221             :     }
+     222             :   }
+     223             :   /*//}*/
+     224             : 
+     225             :   /*//{ uavStateToOdom() */
+     226      338830 :   static nav_msgs::Odometry uavStateToOdom(const mrs_msgs::UavState& uav_state) {
+     227      338830 :     nav_msgs::Odometry odom;
+     228      338777 :     odom.header              = uav_state.header;
+     229      338717 :     odom.child_frame_id      = uav_state.child_frame_id;
+     230      338654 :     odom.pose.pose           = uav_state.pose;
+     231      338654 :     odom.twist.twist.angular = uav_state.velocity.angular;
+     232             : 
+     233      338654 :     tf2::Quaternion q;
+     234      338669 :     tf2::fromMsg(odom.pose.pose.orientation, q);
+     235      338680 :     odom.twist.twist.linear = Support::rotateVector(uav_state.velocity.linear, mrs_lib::AttitudeConverter(q.inverse()));
+     236             : 
+     237      675884 :     return odom;
+     238             :   }
+     239             :   /*//}*/
+     240             : 
+     241             :   /*//{ getPoseDiff() */
+     242           5 :   static geometry_msgs::Pose getPoseDiff(const geometry_msgs::Pose& p1, const geometry_msgs::Pose& p2) {
+     243             : 
+     244           5 :     tf2::Vector3 v1, v2;
+     245           5 :     tf2::fromMsg(p1.position, v1);
+     246           5 :     tf2::fromMsg(p2.position, v2);
+     247           5 :     const tf2::Vector3 v3 = v1 - v2;
+     248             : 
+     249           5 :     tf2::Quaternion q1, q2;
+     250           5 :     tf2::fromMsg(p1.orientation, q1);
+     251           5 :     tf2::fromMsg(p2.orientation, q2);
+     252           5 :     tf2::Quaternion q3 = q2 * q1.inverse();
+     253           5 :     q3.normalize();
+     254             : 
+     255           5 :     geometry_msgs::Pose pose_diff;
+     256           5 :     tf2::toMsg(v3, pose_diff.position);
+     257           5 :     pose_diff.orientation = tf2::toMsg(q3);
+     258             : 
+     259          10 :     return pose_diff;
+     260             :   }
+     261             :   /*//}*/
+     262             : 
+     263             :   /*//{ applyPoseDiff() */
+     264      155064 :   static geometry_msgs::Pose applyPoseDiff(const geometry_msgs::Pose& pose_in, const geometry_msgs::Pose& pose_diff) {
+     265             : 
+     266      155064 :     tf2::Vector3    pos_in;
+     267      155064 :     tf2::Quaternion q_in;
+     268      155064 :     tf2::fromMsg(pose_in.position, pos_in);
+     269      155064 :     tf2::fromMsg(pose_in.orientation, q_in);
+     270             : 
+     271      155064 :     tf2::Vector3    pos_diff;
+     272      155064 :     tf2::Quaternion q_diff;
+     273      155064 :     tf2::fromMsg(pose_diff.position, pos_diff);
+     274      155064 :     tf2::fromMsg(pose_diff.orientation, q_diff);
+     275             : 
+     276      155064 :     const tf2::Vector3    pos_out = tf2::quatRotate(q_diff.inverse(), (pos_in - pos_diff));
+     277      155064 :     const tf2::Quaternion q_out   = q_diff.inverse() * q_in;
+     278             : 
+     279      155064 :     geometry_msgs::Pose pose_out;
+     280      155064 :     tf2::toMsg(pos_out, pose_out.position);
+     281      155064 :     pose_out.orientation = tf2::toMsg(q_out);
+     282             : 
+     283      310128 :     return pose_out;
+     284             :   }
+     285             : 
+     286             :   //}
+     287             : 
+     288             :   /*//{ loadParamFile() */
+     289             :   static void loadParamFile(const std::string& file_path, const std::string& ns = "") {
+     290             :     std::string command = "rosparam load " + file_path + " " + ns;
+     291             :     int         result  = std::system(command.c_str());
+     292             :     if (result != 0) {
+     293             :       ROS_ERROR_STREAM("Could not set config file " << file_path << " to the parameter server.");
+     294             :     }
+     295             :   }
+     296             :   /*//}*/
+     297             : 
+     298             :   /*//{ isStringInVector() */
+     299         283 :   static bool isStringInVector(const std::string& value, const std::vector<std::string>& str_vec) {
+     300         283 :     return std::find(str_vec.begin(), str_vec.end(), value) != str_vec.end();
+     301             :   }
+     302             :   /*//}*/
+     303             : 
+     304             :   /*//{ frameIdToEstimatorName() */
+     305          10 :   static std::string frameIdToEstimatorName(const std::string& str_in) {
+     306          20 :     const std::string str_tmp = str_in.substr(str_in.find("/")+1, str_in.size());
+     307          20 :     return str_tmp.substr(0, str_tmp.find("_origin") );
+     308             :   }
+     309             :   /*//}*/
+     310             : 
+     311             : private:
+     312             :   Support() {
+     313             :   }
+     314             : };
+     315             : /*//}*/
+     316             : 
+     317             : }  // namespace estimation_manager
+     318             : 
+     319             : }  // namespace mrs_uav_managers
+     320             : 
+     321             : #endif  // ESTIMATION_MANAGER_SUPPORT_H
+
+
+
+ + + + +
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+ + diff --git a/mrs_uav_managers/include/mrs_uav_managers/estimation_manager/support.h.gcov.png b/mrs_uav_managers/include/mrs_uav_managers/estimation_manager/support.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..600621ddc5631c697485f23bb4f61bac03ab2008 GIT binary patch literal 1232 zcmV;>1TXuEP)!aTS z5Vxy9aa$M9sV);`M%x_es-`opvt%zamd49~b&(2;7v*P+*T~+(SeKduCv-i{ynqp} zt`=~5&$R1S-*r3#i7w3&6ffc2>{^8=EOel}ywZVbG_g?7Js zOYN}r?4-J1fl5?sUnT#0=>^cV@jd;UHk^K}S4Vyd4Jhsu~gD~z$WSv=u z(-}ITB2b>r+!Hkg6^)ph9gQKV2U7M^>Y;6?<`EgM0NDh5xxzI|3r{K>X^&q1zIsx? z?q&eEyhkc4iX~{Wz5}I=Nc@!!MDD{sKgmTl0Y<>wzF*tJ58`ZT>%-MJqrFuKM4gpv z`9#;H;BubP5p{v$RVcTfud+wOV|(};Ld}UOBw@S*B#}kG0XQxUNl-ZJnW)eMevv(P z<15cSV0M_Hotv4~0&h&=`+z(HXUIS9&HC9{PB$O}A?e35UiwEgBH*#*5rlozDv;E( z2FKVR-{U)qQs`ND&UP+yDdlJ9;m2k|QdvV0s7cxVZ9rMeo}#<=@fDsTmu{QfRij|_ z6uBOqG$L`f?CtI4e#jP*%jQ5fS`FA5a0l)qW7~2Q5Qn2`dVLG9Z;W>uLWz zf7;CgEfU)E_2TcI1o+SXb{Tt}M&Pg3A5pMuQIj=Obfe)p4Ex8um4U$CaCnR;Jlyt5IPT=mbfITR!t)s$VjotR1Qf{h4W=N?}sNBD{Kl zrB$;+z)x6(on=^Ag=86;aVOAP9CUjDm#wdv}L(8>hN~JiX zO+lPfdvRfM4lya5f;ns~Zn=&_qR-9M!hF>RqWFJA{@Ie9&;jrrA2>9y!lBHRS;F@! zo(XZs4E(pQpZigPK$nIFln5+?CK;ao#J*5WVx2&8)ajD)?Jv6HRJ>?zV& zOtAUFmM=P*2B!e@rv#+7;DsZsSR^>Uhny6g-7DR|)k7)-r}wX?pMR9p{{ShfR7eLX uuF}o73AH3g65Djf>tl2z?7tTjweTN4ektG-6b(NB0000 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/mrs_uav_managers + + + + + + + + + + + + + + +
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mrs_uav_managers::StateEstimator::~StateEstimator()0
mrs_uav_managers::StateEstimator::StateEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)98
mrs_uav_managers::StateEstimator::~StateEstimator().298
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mrs_uav_managers::StateEstimator::StateEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)98
mrs_uav_managers::StateEstimator::~StateEstimator()0
mrs_uav_managers::StateEstimator::~StateEstimator().298
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          Line data    Source code
+
+       1             : #ifndef MRS_UAV_MANAGERS_STATE_ESTIMATOR_H
+       2             : #define MRS_UAV_MANAGERS_STATE_ESTIMATOR_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <Eigen/Dense>
+       9             : 
+      10             : #include <nav_msgs/Odometry.h>
+      11             : 
+      12             : #include <mrs_msgs/UavState.h>
+      13             : #include <mrs_msgs/Float64ArrayStamped.h>
+      14             : #include <mrs_msgs/HwApiCapabilities.h>
+      15             : 
+      16             : #include <mrs_uav_managers/estimation_manager/estimator.h>
+      17             : 
+      18             : //}
+      19             : 
+      20             : namespace mrs_uav_managers
+      21             : {
+      22             : 
+      23             : namespace state
+      24             : {
+      25             : const char type[] = "STATE";
+      26             : }
+      27             : 
+      28             : using namespace estimation_manager;
+      29             : 
+      30             : class StateEstimator : public Estimator {
+      31             : 
+      32             : protected:
+      33             :   const std::string package_name_ = "mrs_uav_state_estimators";
+      34             : 
+      35             :   ros::NodeHandle nh_;
+      36             : 
+      37             :   mrs_msgs::UavState uav_state_;
+      38             :   mrs_msgs::UavState uav_state_init_;
+      39             :   mutable std::mutex mtx_uav_state_;
+      40             : 
+      41             :   nav_msgs::Odometry odom_;
+      42             :   mutable std::mutex mtx_odom_;
+      43             : 
+      44             :   nav_msgs::Odometry innovation_;
+      45             :   nav_msgs::Odometry innovation_init_;
+      46             :   mutable std::mutex mtx_innovation_;
+      47             : 
+      48             :   mrs_msgs::Float64ArrayStamped pose_covariance_, twist_covariance_;
+      49             :   mutable std::mutex            mtx_covariance_;
+      50             : 
+      51             :   bool is_override_frame_id_ = false;
+      52             : 
+      53             : protected:
+      54             :   mutable mrs_lib::PublisherHandler<mrs_msgs::UavState>               ph_uav_state_;
+      55             :   mutable mrs_lib::PublisherHandler<nav_msgs::Odometry>               ph_odom_;
+      56             :   mutable mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped>    ph_pose_covariance_, ph_twist_covariance_;
+      57             :   mutable mrs_lib::PublisherHandler<nav_msgs::Odometry>               ph_innovation_;
+      58             :   mutable mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped> ph_attitude_;
+      59             : 
+      60             : public:
+      61          98 :   StateEstimator(const std::string &name, const std::string &frame_id, const std::string &package_name)
+      62          98 :       : Estimator(state::type, name, frame_id), package_name_(package_name) {
+      63          98 :   }
+      64             : 
+      65          98 :   virtual ~StateEstimator(void) {
+      66          98 :   }
+      67             : 
+      68             :   virtual bool setUavState(const mrs_msgs::UavState &uav_state) = 0;
+      69             : 
+      70             :   // implemented methods
+      71             :   std::optional<mrs_msgs::UavState>        getUavState();
+      72             :   nav_msgs::Odometry                       getInnovation() const;
+      73             :   std::vector<double>                      getPoseCovariance() const;
+      74             :   std::vector<double>                      getTwistCovariance() const;
+      75             :   void                                     publishUavState() const;
+      76             :   void                                     publishOdom() const;
+      77             :   void                                     publishCovariance() const;
+      78             :   void                                     publishInnovation() const;
+      79             :   std::optional<geometry_msgs::Quaternion> rotateQuaternionByHeading(const geometry_msgs::Quaternion &q, const double hdg) const;
+      80             :   bool                                     isCompatibleWithHwApi(const mrs_msgs::HwApiCapabilitiesConstPtr &hw_api_capabilities) const;
+      81             : };
+      82             : 
+      83             : }  // namespace mrs_uav_managers
+      84             : 
+      85             : #endif  // MRS_UAV_MANAGERS_STATE_ESTIMATOR_H
+
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mrs_uav_managers::Tracker::~Tracker()0
mrs_uav_managers::Tracker::~Tracker().2547
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mrs_uav_managers::Tracker::~Tracker()0
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          Line data    Source code
+
+       1             : #ifndef MRS_UAV_TRACKER_H
+       2             : #define MRS_UAV_TRACKER_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <mrs_uav_managers/control_manager/common_handlers.h>
+       9             : #include <mrs_uav_managers/control_manager/private_handlers.h>
+      10             : 
+      11             : #include <mrs_msgs/TrackerCommand.h>
+      12             : #include <mrs_msgs/TrackerStatus.h>
+      13             : #include <mrs_msgs/UavState.h>
+      14             : 
+      15             : #include <mrs_msgs/Float64Srv.h>
+      16             : #include <mrs_msgs/Float64SrvRequest.h>
+      17             : #include <mrs_msgs/Float64SrvResponse.h>
+      18             : 
+      19             : #include <mrs_msgs/Float64.h>
+      20             : 
+      21             : #include <mrs_msgs/ReferenceSrv.h>
+      22             : #include <mrs_msgs/ReferenceSrvRequest.h>
+      23             : #include <mrs_msgs/ReferenceSrvResponse.h>
+      24             : 
+      25             : #include <mrs_msgs/VelocityReferenceSrv.h>
+      26             : #include <mrs_msgs/VelocityReferenceSrvRequest.h>
+      27             : #include <mrs_msgs/VelocityReferenceSrvResponse.h>
+      28             : 
+      29             : #include <mrs_msgs/TrajectoryReferenceSrv.h>
+      30             : #include <mrs_msgs/TrajectoryReferenceSrvRequest.h>
+      31             : #include <mrs_msgs/TrajectoryReferenceSrvResponse.h>
+      32             : 
+      33             : #include <std_srvs/Trigger.h>
+      34             : #include <std_srvs/TriggerRequest.h>
+      35             : #include <std_srvs/TriggerResponse.h>
+      36             : 
+      37             : #include <std_srvs/SetBool.h>
+      38             : #include <std_srvs/SetBoolRequest.h>
+      39             : #include <std_srvs/SetBoolResponse.h>
+      40             : 
+      41             : #include <mrs_msgs/DynamicsConstraintsSrv.h>
+      42             : #include <mrs_msgs/DynamicsConstraintsSrvRequest.h>
+      43             : #include <mrs_msgs/DynamicsConstraintsSrvResponse.h>
+      44             : 
+      45             : #include <mrs_uav_managers/controller.h>
+      46             : 
+      47             : //}
+      48             : 
+      49             : namespace mrs_uav_managers
+      50             : {
+      51             : 
+      52             : class Tracker {
+      53             : 
+      54             : public:
+      55             :   /**
+      56             :    * @brief It is called once for every tracker. The runtime is not limited.
+      57             :    *
+      58             :    * @param nh the node handle of the ControlManager
+      59             :    * @param uav_name the UAV name (e.g., "uav1")
+      60             :    * @param common_handlers handlers shared between trackers and controllers
+      61             :    * @param private_handlers handlers provided individually to each tracker
+      62             :    *
+      63             :    * @return true if success
+      64             :    */
+      65             :   virtual bool initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      66             :                           std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) = 0;
+      67             : 
+      68             :   /**
+      69             :    * @brief It is called before the trackers output will be required and used. Should not take much time (within miliseconds).
+      70             :    *
+      71             :    * @param last_tracker_cmd the last command produced by the last active tracker. Should be used as an initial condition to maintain a smooth reference.
+      72             :    *
+      73             :    * @return true if success and message
+      74             :    */
+      75             :   virtual std::tuple<bool, std::string> activate(const std::optional<mrs_msgs::TrackerCommand> &last_tracker_cmd) = 0;
+      76             : 
+      77             :   /**
+      78             :    * @brief is called when this trackers output is no longer needed. However, it can be activated later.
+      79             :    */
+      80             :   virtual void deactivate(void) = 0;
+      81             : 
+      82             :   /**
+      83             :    * @brief It is called during every switch of reference frames of the UAV state estimate.
+      84             :    * The tracker should recalculate its internal states from old the frame to the new one.
+      85             :    *
+      86             :    * @param new_uav_state the new UavState which will come in the next update()
+      87             :    *
+      88             :    * @return a service response
+      89             :    */
+      90             :   virtual const std_srvs::TriggerResponse::ConstPtr switchOdometrySource(const mrs_msgs::UavState &new_uav_state) = 0;
+      91             : 
+      92             :   /**
+      93             :    * @brief Request for reseting the tracker's states given the UAV is static.
+      94             :    *
+      95             :    * @return true if success
+      96             :    */
+      97             :   virtual bool resetStatic(void) = 0;
+      98             : 
+      99             :   /**
+     100             :    * @brief The most important routine. It is called with every state estimator update and it should produce a new reference for the controllers.
+     101             :    *        The run time should be as short as possible (<= 1 ms).
+     102             :    *
+     103             :    * @param uav_state the latest UAV state estimate
+     104             :    * @param last_attitude_cmd the last controller's output command (may be useful)
+     105             :    *
+     106             :    * @return the new reference for the controllers
+     107             :    */
+     108             :   virtual std::optional<mrs_msgs::TrackerCommand> update(const mrs_msgs::UavState &uav_state, const Controller::ControlOutput &last_control_output) = 0;
+     109             : 
+     110             :   /**
+     111             :    * @brief A request for the tracker's status.
+     112             :    *
+     113             :    * @return the tracker's status
+     114             :    */
+     115             :   virtual const mrs_msgs::TrackerStatus getStatus() = 0;
+     116             : 
+     117             :   /**
+     118             :    * @brief Request for a flight to a given coordinates.
+     119             :    *
+     120             :    * @param cmd the reference
+     121             :    *
+     122             :    * @return a service response
+     123             :    */
+     124             :   virtual const mrs_msgs::ReferenceSrvResponse::ConstPtr setReference(const mrs_msgs::ReferenceSrvRequest::ConstPtr &cmd) = 0;
+     125             : 
+     126             :   /**
+     127             :    * @brief Request for desired velocity reference
+     128             :    *
+     129             :    * @param cmd the reference
+     130             :    *
+     131             :    * @return a service response
+     132             :    */
+     133             :   virtual const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr setVelocityReference(const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr &cmd) = 0;
+     134             : 
+     135             :   /**
+     136             :    * @brief Request for a flight along a given trajectory
+     137             :    *
+     138             :    * @param cmd the reference trajectory
+     139             :    *
+     140             :    * @return a service response
+     141             :    */
+     142             :   virtual const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr setTrajectoryReference(const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr &cmd) = 0;
+     143             : 
+     144             :   /**
+     145             :    * @brief Request for stopping the motion of the UAV.
+     146             :    *
+     147             :    * @param trigger service request
+     148             :    *
+     149             :    * @return a service response
+     150             :    */
+     151             :   virtual const std_srvs::TriggerResponse::ConstPtr hover(const std_srvs::TriggerRequest::ConstPtr &cmd) = 0;
+     152             : 
+     153             :   /**
+     154             :    * @brief Request to goto to the first trajectory coordinate.
+     155             :    *
+     156             :    * @param trigger service request
+     157             :    *
+     158             :    * @return a service response
+     159             :    */
+     160             :   virtual const std_srvs::TriggerResponse::ConstPtr gotoTrajectoryStart(const std_srvs::TriggerRequest::ConstPtr &cmd) = 0;
+     161             : 
+     162             :   /**
+     163             :    * @brief Request to start tracking of the pre-loaded trajectory
+     164             :    *
+     165             :    * @param trigger service request
+     166             :    *
+     167             :    * @return a service response
+     168             :    */
+     169             :   virtual const std_srvs::TriggerResponse::ConstPtr startTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd) = 0;
+     170             : 
+     171             :   /**
+     172             :    * @brief Request to stop tracking of the pre-loaded trajectory. The hover() routine will be engaged, thus it should be implemented by the tracker.
+     173             :    *
+     174             :    * @param trigger service request
+     175             :    *
+     176             :    * @return a service response
+     177             :    */
+     178             :   virtual const std_srvs::TriggerResponse::ConstPtr stopTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd) = 0;
+     179             : 
+     180             :   /**
+     181             :    * @brief Request to resume the previously stopped trajectory tracking.
+     182             :    *
+     183             :    * @param trigger service request
+     184             :    *
+     185             :    * @return a service response
+     186             :    */
+     187             :   virtual const std_srvs::TriggerResponse::ConstPtr resumeTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd) = 0;
+     188             : 
+     189             :   /**
+     190             :    * @brief Request for enabling/disabling callbacks.
+     191             :    *
+     192             :    * @param cmd service request
+     193             :    *
+     194             :    * @return a service response
+     195             :    */
+     196             :   virtual const std_srvs::SetBoolResponse::ConstPtr enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr &cmd) = 0;
+     197             : 
+     198             :   /**
+     199             :    * @brief Request for setting new constraints.
+     200             :    *
+     201             :    * @param constraints to be set
+     202             :    *
+     203             :    * @return a service response
+     204             :    */
+     205             :   virtual const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &constraints) = 0;
+     206             : 
+     207         547 :   virtual ~Tracker() = default;
+     208             : };
+     209             : 
+     210             : }  // namespace mrs_uav_managers
+     211             : 
+     212             : #endif
+
+
+
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mrs_uav_managers::TfMappingOrigin::TfMappingOrigin(ros::NodeHandle, std::shared_ptr<mrs_lib::ParamLoader>, std::shared_ptr<mrs_lib::TransformBroadcaster> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t>)0
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          Line data    Source code
+
+       1             : #pragma once
+       2             : #ifndef TF_MAPPING_ORIGIN_H
+       3             : #define TF_MAPPING_ORIGIN_H
+       4             : 
+       5             : #include <ros/ros.h>
+       6             : 
+       7             : #include <mrs_lib/param_loader.h>
+       8             : #include <mrs_lib/subscribe_handler.h>
+       9             : #include <mrs_lib/transform_broadcaster.h>
+      10             : #include <mrs_lib/attitude_converter.h>
+      11             : #include <mrs_lib/publisher_handler.h>
+      12             : 
+      13             : #include <nav_msgs/Odometry.h>
+      14             : #include <geometry_msgs/QuaternionStamped.h>
+      15             : #include <geometry_msgs/TransformStamped.h>
+      16             : 
+      17             : #include <mrs_uav_managers/estimation_manager/support.h>
+      18             : #include <mrs_uav_managers/estimation_manager/common_handlers.h>
+      19             : 
+      20             : namespace mrs_uav_managers
+      21             : {
+      22             : 
+      23             : /*//{ class TfMappingOrigin */
+      24             : class TfMappingOrigin {
+      25             : 
+      26             :   using Support = estimation_manager::Support;
+      27             : 
+      28             : public:
+      29             :   /*//{ constructor */
+      30           0 :   TfMappingOrigin(ros::NodeHandle nh, std::shared_ptr<mrs_lib::ParamLoader> param_loader, const std::shared_ptr<mrs_lib::TransformBroadcaster>& broadcaster,
+      31             :                   const std::shared_ptr<estimation_manager::CommonHandlers_t> ch)
+      32           0 :       : nh_(nh), broadcaster_(broadcaster), ch_(ch) {
+      33             : 
+      34           0 :     ROS_INFO("[%s]: initializing", getPrintName().c_str());
+      35             : 
+      36           0 :     const std::string yaml_prefix = "mrs_uav_managers/transform_manager/mapping_origin_tf/";
+      37             : 
+      38             :     /*//{ load mapping origin parameters */
+      39           0 :     param_loader->loadParam(yaml_prefix + "debug_prints", debug_prints_);
+      40           0 :     param_loader->loadParam(yaml_prefix + "lateral_topic", lateral_topic_);
+      41           0 :     param_loader->loadParam(yaml_prefix + "altitude_topic", altitude_topic_);
+      42           0 :     param_loader->loadParam(yaml_prefix + "orientation_topic", orientation_topic_);
+      43           0 :     param_loader->loadParam(yaml_prefix + "inverted", tf_inverted_);
+      44           0 :     param_loader->loadParam(yaml_prefix + "custom_frame_id/enabled", custom_frame_id_enabled_);
+      45             : 
+      46           0 :     if (custom_frame_id_enabled_) {
+      47           0 :       param_loader->loadParam(yaml_prefix + "custom_frame_id/frame_id", custom_frame_id_);
+      48             :     }
+      49             : 
+      50           0 :     if (!param_loader->loadedSuccessfully()) {
+      51           0 :       ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getPrintName().c_str());
+      52           0 :       ros::shutdown();
+      53             :     }
+      54             : 
+      55             :     /*//}*/
+      56             : 
+      57             :     /*//{ initialize subscribers */
+      58           0 :     mrs_lib::SubscribeHandlerOptions shopts;
+      59           0 :     shopts.nh                 = nh_;
+      60           0 :     shopts.node_name          = getPrintName();
+      61           0 :     shopts.no_message_timeout = mrs_lib::no_timeout;
+      62           0 :     shopts.threadsafe         = true;
+      63           0 :     shopts.autostart          = true;
+      64           0 :     shopts.queue_size         = 10;
+      65           0 :     shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+      66             : 
+      67             :     sh_mapping_odom_lat_ =
+      68           0 :         mrs_lib::SubscribeHandler<nav_msgs::Odometry>(shopts, "/" + ch_->uav_name + "/" + lateral_topic_, &TfMappingOrigin::callbackMappingOdomLat, this);
+      69             : 
+      70           0 :     if (orientation_topic_ != lateral_topic_) {
+      71           0 :       sh_mapping_odom_rot_ = mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped>(shopts, "/" + ch_->uav_name + "/" + orientation_topic_.c_str(),
+      72           0 :                                                                                          &TfMappingOrigin::callbackMappingOdomRot, this);
+      73             :     }
+      74             : 
+      75           0 :     if (altitude_topic_ != lateral_topic_) {
+      76           0 :       sh_mapping_odom_alt_ = mrs_lib::SubscribeHandler<nav_msgs::Odometry>(shopts, "/" + ch_->uav_name + "/" + altitude_topic_.c_str(),
+      77           0 :                                                                            &TfMappingOrigin::callbackMappingOdomAlt, this);
+      78             :     }
+      79             :     /*//}*/
+      80             : 
+      81           0 :     ph_map_delay_ = mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>(nh_, "map_delay_out", 10);
+      82             : 
+      83           0 :     is_initialized_ = true;
+      84           0 :     ROS_INFO("[%s]: initialized", getPrintName().c_str());
+      85           0 :   }
+      86             :   /*//}*/
+      87             : 
+      88             :   /*//{ getName() */
+      89             :   std::string getName() {
+      90             :     return name_;
+      91             :   }
+      92             :   /*//}*/
+      93             : 
+      94             :   /*//{ getPrintName() */
+      95           0 :   std::string getPrintName() {
+      96           0 :     return ch_->nodelet_name + "/" + name_;
+      97             :   }
+      98             :   /*//}*/
+      99             : 
+     100             : private:
+     101             :   const std::string name_ = "TfMappingOrigin";
+     102             : 
+     103             :   ros::NodeHandle nh_;
+     104             : 
+     105             :   std::shared_ptr<mrs_lib::TransformBroadcaster> broadcaster_;
+     106             : 
+     107             :   std::shared_ptr<estimation_manager::CommonHandlers_t> ch_;
+     108             : 
+     109             :   std::atomic_bool is_initialized_ = false;
+     110             : 
+     111             :   mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped> ph_map_delay_;
+     112             : 
+     113             :   bool        debug_prints_;
+     114             :   bool        tf_inverted_;
+     115             :   bool        custom_frame_id_enabled_;
+     116             :   std::string custom_frame_id_;
+     117             :   double      cache_duration_;
+     118             : 
+     119             :   std::string                                   lateral_topic_;
+     120             :   mrs_lib::SubscribeHandler<nav_msgs::Odometry> sh_mapping_odom_lat_;
+     121             :   std::vector<nav_msgs::Odometry>               vec_mapping_odom_lat_;
+     122             :   std::atomic_bool                              got_mapping_odom_lat_ = false;
+     123             :   std::atomic<double>                           timestamp_lat_;
+     124             : 
+     125             :   /*//{ callbackMappingOdomLat() */
+     126             : 
+     127           0 :   void callbackMappingOdomLat(const nav_msgs::Odometry::ConstPtr msg) {
+     128             : 
+     129           0 :     if (!is_initialized_) {
+     130           0 :       return;
+     131             :     }
+     132             : 
+     133           0 :     timestamp_lat_ = msg->header.stamp.toSec();
+     134             : 
+     135           0 :     if (!got_mapping_odom_lat_) {
+     136           0 :       got_mapping_odom_lat_ = true;
+     137             :     }
+     138             : 
+     139           0 :     if (!got_mapping_odom_rot_ && orientation_topic_ == lateral_topic_) {
+     140           0 :       got_mapping_odom_rot_ = true;
+     141             :     }
+     142             : 
+     143           0 :     if (!got_mapping_odom_alt_ && altitude_topic_ == lateral_topic_) {
+     144           0 :       got_mapping_odom_alt_ = true;
+     145             :     }
+     146             : 
+     147           0 :     mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("TfMappingOrigin::callbackMappingOdomLat", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     148             : 
+     149           0 :     const double hdg_mapping_old = mrs_lib::AttitudeConverter(msg->pose.pose.orientation).getHeading();
+     150             : 
+     151             :     /* publish mapping origin tf //{ */
+     152             : 
+     153           0 :     bool clear_needed = false;
+     154             : 
+     155           0 :     if (got_mapping_odom_rot_ && got_mapping_odom_alt_) {
+     156           0 :       std::scoped_lock lock(mtx_mapping_odom_rot_);
+     157             : 
+     158             :       // Copy mapping odometry
+     159           0 :       nav_msgs::Odometry mapping_odom;
+     160           0 :       mapping_odom = *msg;
+     161             : 
+     162             :       // Find corresponding orientation
+     163           0 :       geometry_msgs::QuaternionStamped rot_tmp           = *sh_mapping_odom_rot_.getMsg();  // start with newest msg
+     164           0 :       ros::Time                        dbg_timestamp_rot = rot_tmp.header.stamp;
+     165           0 :       tf2::Quaternion                  tf2_rot;
+     166             : 
+     167           0 :       for (size_t i = 0; i < vec_mapping_odom_rot_.size(); i++) {
+     168           0 :         if (mapping_odom.header.stamp < vec_mapping_odom_rot_.at(i).header.stamp) {
+     169             : 
+     170             :           // Choose an orientation with closest timestamp
+     171           0 :           double time_diff      = std::fabs(vec_mapping_odom_rot_.at(i).header.stamp.toSec() - mapping_odom.header.stamp.toSec());
+     172           0 :           double time_diff_prev = std::numeric_limits<double>::max();
+     173           0 :           if (i > 0) {
+     174           0 :             time_diff_prev = std::fabs(vec_mapping_odom_rot_.at(i - 1).header.stamp.toSec() - mapping_odom.header.stamp.toSec());
+     175             :           }
+     176           0 :           if (time_diff_prev < time_diff && i > 0) {
+     177           0 :             i = i - 1;
+     178             :           }
+     179             : 
+     180             :           // Cache is too small if it is full and its oldest element is used
+     181           0 :           if (clear_needed && i == 0) {
+     182           0 :             ROS_WARN_THROTTLE(1.0, "[%s] Mapping orientation cache is too small.", getPrintName().c_str());
+     183             :           }
+     184           0 :           rot_tmp           = vec_mapping_odom_rot_.at(i);
+     185           0 :           dbg_timestamp_rot = vec_mapping_odom_rot_.at(i).header.stamp;
+     186           0 :           break;
+     187             :         }
+     188             :       }
+     189             : 
+     190           0 :       tf2_rot = mrs_lib::AttitudeConverter(rot_tmp.quaternion);
+     191             : 
+     192             :       // Obtain heading from orientation
+     193           0 :       double hdg = 0;
+     194             :       try {
+     195           0 :         hdg = mrs_lib::AttitudeConverter(rot_tmp.quaternion).getHeading();
+     196             :       }
+     197           0 :       catch (...) {
+     198           0 :         ROS_WARN("[%s]: failed to getHeading() from rot_tmp", getPrintName().c_str());
+     199             :       }
+     200             : 
+     201             :       // Build rotation matrix from difference between new heading and old heading
+     202           0 :       tf2::Matrix3x3 rot_mat = mrs_lib::AttitudeConverter(Eigen::AngleAxisd(hdg_mapping_old - hdg, Eigen::Vector3d::UnitZ()));
+     203             : 
+     204             :       // Transform the mavros orientation by the rotation matrix
+     205           0 :       geometry_msgs::Quaternion new_orientation = mrs_lib::AttitudeConverter(tf2::Transform(rot_mat) * tf2_rot);
+     206             : 
+     207             :       // Set new orientation
+     208           0 :       mapping_odom.pose.pose.orientation = new_orientation;
+     209             : 
+     210             : 
+     211             :       // Find corresponding local odom
+     212           0 :       double    odom_alt          = msg->pose.pose.position.z;  // start with newest msg
+     213           0 :       ros::Time dbg_timestamp_alt = msg->header.stamp;
+     214           0 :       for (size_t i = 0; i < vec_mapping_odom_alt_.size(); i++) {
+     215           0 :         if (mapping_odom.header.stamp < vec_mapping_odom_alt_.at(i).header.stamp) {
+     216             : 
+     217             :           // Choose orientation with closest timestamp
+     218           0 :           double time_diff      = std::fabs(vec_mapping_odom_alt_.at(i).header.stamp.toSec() - mapping_odom.header.stamp.toSec());
+     219           0 :           double time_diff_prev = std::numeric_limits<double>::max();
+     220           0 :           if (i > 0) {
+     221           0 :             time_diff_prev = std::fabs(vec_mapping_odom_alt_.at(i - 1).header.stamp.toSec() - mapping_odom.header.stamp.toSec());
+     222             :           }
+     223           0 :           if (time_diff_prev < time_diff && i > 0) {
+     224           0 :             i = i - 1;
+     225             :           }
+     226             :           // Cache is too small if it is full and its oldest element is used
+     227           0 :           if (clear_needed && i == 0) {
+     228           0 :             ROS_WARN_THROTTLE(1.0, "[%s] mapping orientation cache (for mapping tf) is too small.", getPrintName().c_str());
+     229             :           }
+     230           0 :           odom_alt          = vec_mapping_odom_alt_.at(i).pose.pose.position.z;
+     231           0 :           dbg_timestamp_alt = vec_mapping_odom_alt_.at(i).header.stamp;
+     232           0 :           break;
+     233             :         }
+     234             :       }
+     235             : 
+     236             :       // Set altitude
+     237           0 :       mapping_odom.pose.pose.position.z = odom_alt;
+     238             : 
+     239             :       // Get inverse transform
+     240           0 :       tf2::Transform      tf_mapping_inv   = Support::tf2FromPose(mapping_odom.pose.pose).inverse();
+     241           0 :       geometry_msgs::Pose pose_mapping_inv = Support::poseFromTf2(tf_mapping_inv);
+     242             : 
+     243           0 :       geometry_msgs::TransformStamped tf_mapping;
+     244           0 :       tf_mapping.header.stamp    = mapping_odom.header.stamp;
+     245           0 :       tf_mapping.header.frame_id = ch_->frames.ns_fcu;
+     246           0 :       if (custom_frame_id_enabled_) {
+     247           0 :         tf_mapping.child_frame_id = ch_->uav_name + "/" + custom_frame_id_;
+     248             :       } else {
+     249           0 :         tf_mapping.child_frame_id = mapping_odom.header.frame_id;
+     250             :       }
+     251           0 :       tf_mapping.transform.translation = Support::pointToVector3(pose_mapping_inv.position);
+     252           0 :       tf_mapping.transform.rotation    = pose_mapping_inv.orientation;
+     253             : 
+     254           0 :       if (Support::noNans(tf_mapping)) {
+     255             :         try {
+     256           0 :           broadcaster_->sendTransform(tf_mapping);
+     257             :         }
+     258           0 :         catch (...) {
+     259           0 :           ROS_ERROR("[%s]: Exception caught during publishing TF: %s - %s.", getPrintName().c_str(), tf_mapping.child_frame_id.c_str(),
+     260             :                     tf_mapping.header.frame_id.c_str());
+     261             :         }
+     262             :       } else {
+     263           0 :         ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in transform from %s to %s. Not publishing tf.", getPrintName().c_str(), tf_mapping.header.frame_id.c_str(),
+     264             :                           tf_mapping.child_frame_id.c_str());
+     265             :       }
+     266             : 
+     267             :       // debug timestamps: rot and alt timestamps should be as close as possible to lat_timestamp, the delay is the difference between current time and the time
+     268             :       // of acquisition of scan that was used to calculate the pose estimate
+     269           0 :       if (debug_prints_) {
+     270           0 :         ROS_INFO("[%s] lat timestamp: %.6f, rot stamp: %.6f (diff: %.6f),  alt stamp: %.6f (diff: %.6f), delay: %.6f", getPrintName().c_str(),
+     271             :                  mapping_odom.header.stamp.toSec(), dbg_timestamp_rot.toSec(), dbg_timestamp_rot.toSec() - mapping_odom.header.stamp.toSec(),
+     272             :                  dbg_timestamp_alt.toSec(), dbg_timestamp_alt.toSec() - mapping_odom.header.stamp.toSec(),
+     273             :                  ros::Time::now().toSec() - mapping_odom.header.stamp.toSec());
+     274             :       }
+     275             : 
+     276           0 :       mrs_msgs::Float64Stamped map_delay_msg;
+     277           0 :       map_delay_msg.header.stamp = ros::Time::now();
+     278           0 :       map_delay_msg.value        = ros::Time::now().toSec() - mapping_odom.header.stamp.toSec();
+     279           0 :       ph_map_delay_.publish(map_delay_msg);
+     280             :     }
+     281             : 
+     282             :     //}
+     283             :   }
+     284             :   /*//}*/
+     285             : 
+     286             :   std::string                                                 orientation_topic_;
+     287             :   mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped> sh_mapping_odom_rot_;
+     288             :   std::vector<geometry_msgs::QuaternionStamped>               vec_mapping_odom_rot_;
+     289             :   std::mutex                                                  mtx_mapping_odom_rot_;
+     290             :   std::atomic_bool                                            got_mapping_odom_rot_ = false;
+     291             : 
+     292             :   /*//{ callbackMappingOdomRot() */
+     293           0 :   void callbackMappingOdomRot(const geometry_msgs::QuaternionStamped::ConstPtr msg) {
+     294             : 
+     295           0 :     if (!is_initialized_) {
+     296           0 :       return;
+     297             :     }
+     298             : 
+     299           0 :     if (!got_mapping_odom_lat_) {
+     300           0 :       return;
+     301             :     }
+     302             : 
+     303           0 :     std::scoped_lock lock(mtx_mapping_odom_rot_);
+     304             : 
+     305             :     // Add new data
+     306           0 :     vec_mapping_odom_rot_.push_back(*msg);
+     307             : 
+     308             :     // Delete old data
+     309           0 :     size_t index_delete = 0;
+     310           0 :     bool   clear_needed = false;
+     311           0 :     for (size_t i = 0; i < vec_mapping_odom_rot_.size(); i++) {
+     312           0 :       if (timestamp_lat_ - vec_mapping_odom_rot_.at(i).header.stamp.toSec() > cache_duration_) {
+     313           0 :         index_delete = i;
+     314           0 :         clear_needed = true;
+     315             :       } else {
+     316           0 :         break;
+     317             :       }
+     318             :     }
+     319           0 :     if (clear_needed) {
+     320           0 :       for (int i = (int)index_delete; i >= 0; i--) {
+     321           0 :         vec_mapping_odom_rot_.erase(vec_mapping_odom_rot_.begin() + i);
+     322             :       }
+     323           0 :       clear_needed = false;
+     324             :     }
+     325             : 
+     326           0 :     if (!got_mapping_odom_rot_) {
+     327           0 :       got_mapping_odom_rot_ = true;
+     328             :     }
+     329             : 
+     330           0 :     if (debug_prints_) {
+     331           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: mapping odom rot cache size: %lu", getPrintName().c_str(), vec_mapping_odom_rot_.size());
+     332             :     }
+     333             :   }
+     334             :   /*//}*/
+     335             : 
+     336             :   std::string                                   altitude_topic_;
+     337             :   mrs_lib::SubscribeHandler<nav_msgs::Odometry> sh_mapping_odom_alt_;
+     338             :   std::vector<nav_msgs::Odometry>               vec_mapping_odom_alt_;
+     339             :   std::mutex                                    mtx_mapping_odom_alt_;
+     340             :   std::atomic_bool                              got_mapping_odom_alt_ = false;
+     341             : 
+     342             :   /*//{ callbackMappingOdomAlt() */
+     343           0 :   void callbackMappingOdomAlt(const nav_msgs::Odometry::ConstPtr msg) {
+     344             : 
+     345           0 :     if (!is_initialized_) {
+     346           0 :       return;
+     347             :     }
+     348             : 
+     349           0 :     if (!got_mapping_odom_lat_) {
+     350           0 :       return;
+     351             :     }
+     352             : 
+     353           0 :     std::scoped_lock lock(mtx_mapping_odom_alt_);
+     354             : 
+     355             :     // Add new data
+     356           0 :     vec_mapping_odom_alt_.push_back(*msg);
+     357             : 
+     358             :     // Delete old data
+     359           0 :     size_t index_delete = 0;
+     360           0 :     bool   clear_needed = false;
+     361           0 :     for (size_t i = 0; i < vec_mapping_odom_alt_.size(); i++) {
+     362           0 :       if (timestamp_lat_ - vec_mapping_odom_alt_.at(i).header.stamp.toSec() > cache_duration_) {
+     363           0 :         index_delete = i;
+     364           0 :         clear_needed = true;
+     365             :       } else {
+     366           0 :         break;
+     367             :       }
+     368             :     }
+     369           0 :     if (clear_needed) {
+     370           0 :       for (int i = (int)index_delete; i >= 0; i--) {
+     371           0 :         vec_mapping_odom_alt_.erase(vec_mapping_odom_alt_.begin() + i);
+     372             :       }
+     373           0 :       clear_needed = false;
+     374             :     }
+     375             : 
+     376           0 :     if (!got_mapping_odom_alt_) {
+     377           0 :       got_mapping_odom_alt_ = true;
+     378             :     }
+     379             : 
+     380           0 :     if (debug_prints_) {
+     381           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: mapping odom alt cache size: %lu", getPrintName().c_str(), vec_mapping_odom_alt_.size());
+     382             :     }
+     383             :   }
+     384             :   /*//}*/
+     385             : };
+     386             : /*//}*/
+     387             : 
+     388             : }  // namespace mrs_uav_managers
+     389             : 
+     390             : #endif
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/include/transform_manager/tf_mapping_origin.h.gcov.overview.html b/mrs_uav_managers/include/transform_manager/tf_mapping_origin.h.gcov.overview.html new file mode 100644 index 0000000000..8218f6ae36 --- /dev/null +++ b/mrs_uav_managers/include/transform_manager/tf_mapping_origin.h.gcov.overview.html @@ -0,0 +1,118 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/transform_manager/tf_mapping_origin.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ Overview +
+ + diff --git a/mrs_uav_managers/include/transform_manager/tf_mapping_origin.h.gcov.png b/mrs_uav_managers/include/transform_manager/tf_mapping_origin.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..e3d425e3e4319475911ce94a36b8a1ec26ea482f GIT binary patch literal 1536 zcmV+b2LJhqP)fFt&%}Y=;1N(Rt_>#|c)`|cl;5Az%*)9Km%cd5r zUFGeDo-=U20yZ*9J;hlZ%g6PN%&PDs(; zZQc_ql5}Li1&Wc7j2)Hi6v5(q4xMcKUGtTf7AM^CH`7`Hq6Oj%SYJ$l#Hs^eflJTm z6p`qXXZXg6UEq{=1lAoAtqYAy$_SbcWen$csNogxCj?gk&dhVSGAl{NP7wm29|q@Y zJs4C201!2gJu7X(j5MBlK)G+azz7s|2PmwkK%m&);SVZSo1!8DZ7cg4);@CJiEei| z@#X0H03yC>iXcB^isGE>I+Nt-zrYjN%B+1Rv4N zlHIWnIcxoG_QBZN1S=8k+u|La^#LJA-*Fo7%06O(&vKt-d2wQvr|baD(zTYWcZ@0& zP1W!{os`xbscoT+wK$x073aO#paFUR0W!q)WsE;mM%nOwSVkT#oz`@HFoZgGdiJF= z7Yv2+U}%3iS9nYnN!^h$cCCq?k^K=lkPbA+iVa1xc~1MdQV2#`S7!t7uGZCeW388E z#CoN>(6^^%oM_OURDjfKwBv1n6dPJ|uld@;H1_FdxxGX6cb)-=S)A0a$Y{1>js{mI zL)Gz4*s-1hyf*rvtm}qQ1dPNy&mvYQQ@^#7Xl5^5uId|p8ohg&dsTWvo$Go-Dzv0|7P7xJ!4NNnyJ3y7(SM_ z^0KpDSt+z2)$L?BzT?m5Z<6d&q;$uH%f1FiWfHNYEW+1yTb19^SF5b|`O^iyEt*yL zOSgNAo~ebsJDl*4Ct!cd^y71Oi?y($AuEu}=zl~RK57!!TQ?>6<6DMD6wPJ$KUdeh zxz?+zw!Nv{|5kO~AW2PUK)y{&|FoPEg2)(oe_G9(Z$1*qEu(GOW{kc?k!N763n#bLRnqN0) zx1>EhgkziLaw*D{3X&4MJaWlONLPEx0`s)C&V3E00k?sLLUCoJ=4s+YJYR$wu_qSU zaNhCJ(%yW;mV1N2g@;R@q?(7Thw2Z2Cmoh1B0tYGn@hh=eaE9kMmv7={(3|ccg5&V zlkK;X z!aARa46O0;V?gl)dc!TrW;}=UPO3YbiFpQqHxMJQGvMf)wA{LyfYvFOG2d3}jJvop z`5?wl2i-=$rVm$ajVH~;KD_ft5dnTUrBoF^bLBhSYoe!s9y~%vhu=$2EB?F=pslL2 z(tq&*mX1U%u*DJ{PNg)``koHp&pwy(?EoyS$ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/transform_manager/tf_source.h - functions + + + + + + + + + + + + + + +
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/include/transform_manager - tf_source.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:19224080.0 %
Date:2024-04-17 23:52:03Functions:131492.9 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::TfSource::publishLocalTf(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_uav_managers::TfSource::setIsUtmSource(bool)10
mrs_uav_managers::TfSource::getIsUtmSource()18
mrs_uav_managers::TfSource::getIsUtmBased()20
mrs_uav_managers::TfSource::setUtmOrigin(geometry_msgs::Point_<std::allocator<void> > const&)98
mrs_uav_managers::TfSource::setWorldOrigin(geometry_msgs::Point_<std::allocator<void> > const&)98
mrs_uav_managers::TfSource::TfSource(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::NodeHandle, std::shared_ptr<mrs_lib::ParamLoader>, std::shared_ptr<mrs_lib::TransformBroadcaster> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t>, bool)98
mrs_uav_managers::TfSource::getName[abi:cxx11]()803
mrs_uav_managers::TfSource::republishInFrame(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >&)143678
mrs_uav_managers::TfSource::publishTfFromOdom(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)183573
mrs_uav_managers::TfSource::callbackTfSourceOdom(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)183679
mrs_uav_managers::TfSource::publishTfFromAtt(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const> const&)189770
mrs_uav_managers::TfSource::callbackTfSourceAtt(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)189791
mrs_uav_managers::TfSource::getPrintName[abi:cxx11]()887141
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/include/transform_manager/tf_source.h.func.html b/mrs_uav_managers/include/transform_manager/tf_source.h.func.html new file mode 100644 index 0000000000..2cd5f32823 --- /dev/null +++ b/mrs_uav_managers/include/transform_manager/tf_source.h.func.html @@ -0,0 +1,136 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/transform_manager/tf_source.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_managers/include/transform_manager - tf_source.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:19224080.0 %
Date:2024-04-17 23:52:03Functions:131492.9 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::TfSource::getPrintName[abi:cxx11]()887141
mrs_uav_managers::TfSource::setUtmOrigin(geometry_msgs::Point_<std::allocator<void> > const&)98
mrs_uav_managers::TfSource::getIsUtmBased()20
mrs_uav_managers::TfSource::getIsUtmSource()18
mrs_uav_managers::TfSource::publishLocalTf(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_uav_managers::TfSource::setIsUtmSource(bool)10
mrs_uav_managers::TfSource::setWorldOrigin(geometry_msgs::Point_<std::allocator<void> > const&)98
mrs_uav_managers::TfSource::publishTfFromAtt(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const> const&)189770
mrs_uav_managers::TfSource::republishInFrame(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_lib::PublisherHandler<nav_msgs::Odometry_<std::allocator<void> > >&)143678
mrs_uav_managers::TfSource::publishTfFromOdom(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)183573
mrs_uav_managers::TfSource::callbackTfSourceAtt(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)189791
mrs_uav_managers::TfSource::callbackTfSourceOdom(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)183679
mrs_uav_managers::TfSource::getName[abi:cxx11]()803
mrs_uav_managers::TfSource::TfSource(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::NodeHandle, std::shared_ptr<mrs_lib::ParamLoader>, std::shared_ptr<mrs_lib::TransformBroadcaster> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t>, bool)98
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+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/include/transform_manager/tf_source.h.gcov.frameset.html b/mrs_uav_managers/include/transform_manager/tf_source.h.gcov.frameset.html new file mode 100644 index 0000000000..4f63eb0600 --- /dev/null +++ b/mrs_uav_managers/include/transform_manager/tf_source.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/transform_manager/tf_source.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_managers/include/transform_manager/tf_source.h.gcov.html b/mrs_uav_managers/include/transform_manager/tf_source.h.gcov.html new file mode 100644 index 0000000000..b24ccd5631 --- /dev/null +++ b/mrs_uav_managers/include/transform_manager/tf_source.h.gcov.html @@ -0,0 +1,704 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/include/transform_manager/tf_source.h + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_managers/include/transform_manager - tf_source.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:19224080.0 %
Date:2024-04-17 23:52:03Functions:131492.9 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #pragma once
+       2             : #ifndef TF_SOURCE_H
+       3             : #define TF_SOURCE_H
+       4             : 
+       5             : #include <ros/ros.h>
+       6             : 
+       7             : #include <mrs_lib/param_loader.h>
+       8             : #include <mrs_lib/subscribe_handler.h>
+       9             : #include <mrs_lib/publisher_handler.h>
+      10             : #include <mrs_lib/attitude_converter.h>
+      11             : #include <mrs_lib/transformer.h>
+      12             : #include <mrs_lib/transform_broadcaster.h>
+      13             : #include <mrs_lib/gps_conversions.h>
+      14             : 
+      15             : #include <tf2_ros/transform_broadcaster.h>
+      16             : #include <tf2_ros/static_transform_broadcaster.h>
+      17             : 
+      18             : #include <geometry_msgs/TransformStamped.h>
+      19             : 
+      20             : #include <nav_msgs/Odometry.h>
+      21             : 
+      22             : #include <memory>
+      23             : #include <string>
+      24             : 
+      25             : #include <mrs_uav_managers/estimation_manager/support.h>
+      26             : #include <mrs_uav_managers/estimation_manager/common_handlers.h>
+      27             : 
+      28             : namespace mrs_uav_managers
+      29             : {
+      30             : 
+      31             : /*//{ class TfSource */
+      32             : class TfSource {
+      33             : 
+      34             :   using Support = estimation_manager::Support;
+      35             : 
+      36             : public:
+      37             :   /*//{ constructor */
+      38          98 :   TfSource(const std::string& name, ros::NodeHandle nh, std::shared_ptr<mrs_lib::ParamLoader> param_loader,
+      39             :            const std::shared_ptr<mrs_lib::TransformBroadcaster>& broadcaster, const std::shared_ptr<estimation_manager::CommonHandlers_t> ch,
+      40             :            const bool is_utm_source)
+      41          98 :       : name_(name), nh_(nh), broadcaster_(broadcaster), ch_(ch), is_utm_source_(is_utm_source) {
+      42             : 
+      43          98 :     ROS_INFO("[%s]: initializing", getPrintName().c_str());
+      44             : 
+      45          98 :     if (name != "dummy") {
+      46             : 
+      47             :       /*//{ load parameters */
+      48             : 
+      49         196 :       const std::string yaml_prefix = "mrs_uav_managers/transform_manager/";
+      50             : 
+      51         196 :       std::string odom_topic, attitude_topic, ns;
+      52             : 
+      53          98 :       param_loader->loadParam(yaml_prefix + getName() + "/odom_topic", odom_topic);
+      54          98 :       param_loader->loadParam(yaml_prefix + getName() + "/custom_frame_id/enabled", custom_frame_id_enabled_, false);
+      55          98 :       if (custom_frame_id_enabled_) {
+      56           0 :         param_loader->loadParam(yaml_prefix + getName() + "/custom_frame_id/frame_id", custom_frame_id_);
+      57             :       }
+      58          98 :       param_loader->loadParam(yaml_prefix + getName() + "/tf_from_attitude/enabled", tf_from_attitude_enabled_);
+      59          98 :       if (tf_from_attitude_enabled_) {
+      60          97 :         param_loader->loadParam(yaml_prefix + getName() + "/tf_from_attitude/attitude_topic", attitude_topic);
+      61             :       }
+      62          98 :       param_loader->loadParam(yaml_prefix + getName() + "/namespace", ns);
+      63          98 :       full_topic_odom_     = "/" + ch_->uav_name + "/" + ns + "/" + odom_topic;
+      64          98 :       full_topic_attitude_ = "/" + ch_->uav_name + "/" + ns + "/" + attitude_topic;
+      65          98 :       param_loader->loadParam(yaml_prefix + getName() + "/inverted", is_inverted_);
+      66          98 :       param_loader->loadParam(yaml_prefix + getName() + "/republish_in_frames", republish_in_frames_);
+      67             : 
+      68             :       /* coordinate frames origins //{ */
+      69          98 :       param_loader->loadParam(yaml_prefix + getName() + "/utm_based", is_utm_based_);
+      70             :       /* param_loader->loadParam(yaml_prefix + getName() + "/publish_local_tf", publish_local_tf_); */
+      71             : 
+      72             :       /*//{ utm source */
+      73          98 :       if (is_utm_based_) {
+      74         194 :         std::string utm_origin_parent_frame_id;
+      75          97 :         param_loader->loadParam(yaml_prefix + "utm_origin_tf/parent", utm_origin_parent_frame_id);
+      76          97 :         ns_utm_origin_parent_frame_id_ = ch_->uav_name + "/" + utm_origin_parent_frame_id;
+      77             : 
+      78          97 :         std::string utm_origin_child_frame_id;
+      79          97 :         param_loader->loadParam(yaml_prefix + "utm_origin_tf/child", utm_origin_child_frame_id);
+      80          97 :         ns_utm_origin_child_frame_id_ = ch_->uav_name + "/" + utm_origin_child_frame_id;
+      81             :       }
+      82             :       /*//}*/
+      83             : 
+      84             :       /*//{ world source */
+      85          98 :       if (is_utm_based_) {
+      86         194 :         std::string world_origin_parent_frame_id;
+      87          97 :         param_loader->loadParam(yaml_prefix + "world_origin_tf/parent", world_origin_parent_frame_id);
+      88          97 :         ns_world_origin_parent_frame_id_ = ch_->uav_name + "/" + world_origin_parent_frame_id;
+      89             : 
+      90          97 :         std::string world_origin_child_frame_id;
+      91          97 :         param_loader->loadParam(yaml_prefix + "world_origin_tf/child", world_origin_child_frame_id);
+      92          97 :         ns_world_origin_child_frame_id_ = ch_->uav_name + "/" + world_origin_child_frame_id;
+      93             :       }
+      94             :       /*//}*/
+      95             : 
+      96             :       //}
+      97             : 
+      98          98 :       if (!param_loader->loadedSuccessfully()) {
+      99           0 :         ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getPrintName().c_str());
+     100           0 :         ros::shutdown();
+     101             :       }
+     102             : 
+     103             :       /*//}*/
+     104             : 
+     105             :       /*//{ initialize subscribers */
+     106         196 :       mrs_lib::SubscribeHandlerOptions shopts;
+     107          98 :       shopts.nh                 = nh_;
+     108          98 :       shopts.node_name          = getPrintName();
+     109          98 :       shopts.no_message_timeout = mrs_lib::no_timeout;
+     110          98 :       shopts.threadsafe         = true;
+     111          98 :       shopts.autostart          = true;
+     112          98 :       shopts.queue_size         = 10;
+     113          98 :       shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     114             : 
+     115          98 :       sh_tf_source_odom_ = mrs_lib::SubscribeHandler<nav_msgs::Odometry>(shopts, full_topic_odom_, &TfSource::callbackTfSourceOdom, this);
+     116          98 :       if (tf_from_attitude_enabled_) {
+     117          97 :         sh_tf_source_att_ = mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped>(shopts, full_topic_attitude_, &TfSource::callbackTfSourceAtt, this);
+     118             :       }
+     119             : 
+     120          98 :       if (is_utm_source_) {
+     121          90 :         sh_altitude_amsl_ = mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude>(shopts, "altitude_amsl_in");
+     122             :       }
+     123             : 
+     124             :     }
+     125             :     /*//}*/
+     126             : 
+     127         173 :     for (auto frame_id : republish_in_frames_) {
+     128          75 :       republishers_.push_back(
+     129         150 :           std::make_pair(frame_id, mrs_lib::PublisherHandler<nav_msgs::Odometry>(nh_, full_topic_odom_ + "/" + frame_id.substr(0, frame_id.find("_origin")))));
+     130             :     }
+     131          98 :     is_initialized_ = true;
+     132          98 :     ROS_INFO("[%s]: initialized", getPrintName().c_str());
+     133          98 :   }
+     134             :   /*//}*/
+     135             : 
+     136             :   /*//{ getName() */
+     137         803 :   std::string getName() {
+     138         803 :     return name_;
+     139             :   }
+     140             :   /*//}*/
+     141             : 
+     142             :   /*//{ getPrintName() */
+     143      887141 :   std::string getPrintName() {
+     144     1777332 :     return ch_->nodelet_name + "/" + name_;
+     145             :   }
+     146             :   /*//}*/
+     147             : 
+     148             :   /*//{ getIsUtmBased() */
+     149          20 :   bool getIsUtmBased() {
+     150          20 :     return is_utm_based_;
+     151             :   }
+     152             :   /*//}*/
+     153             : 
+     154             :   /*//{ getIsUtmSource() */
+     155          18 :   bool getIsUtmSource() {
+     156          18 :     return is_utm_source_;
+     157             :   }
+     158             :   /*//}*/
+     159             : 
+     160             :   /*//{ setIsUtmSource() */
+     161          10 :   void setIsUtmSource(const bool is_utm_source) {
+     162          10 :     if (is_utm_source) {
+     163           5 :       mrs_lib::SubscribeHandlerOptions shopts;
+     164           5 :       shopts.nh                 = nh_;
+     165           5 :       shopts.node_name          = getPrintName();
+     166           5 :       shopts.no_message_timeout = mrs_lib::no_timeout;
+     167           5 :       shopts.threadsafe         = true;
+     168           5 :       shopts.autostart          = true;
+     169           5 :       shopts.queue_size         = 10;
+     170           5 :       shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     171           5 :       sh_altitude_amsl_ = mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude>(shopts, "altitude_amsl_in");
+     172             :     }
+     173          10 :     is_utm_source_ = is_utm_source;
+     174          10 :   }
+     175             :   /*//}*/
+     176             : 
+     177             :   /*//{ setUtmOrigin() */
+     178          98 :   void setUtmOrigin(const geometry_msgs::Point& pt) {
+     179             : 
+     180          98 :     if (is_utm_based_ && !is_utm_origin_set_) {
+     181          97 :       utm_origin_        = pt;
+     182          97 :       is_utm_origin_set_ = true;
+     183             :     }
+     184          98 :   }
+     185             :   /*//}*/
+     186             : 
+     187             :   /*//{ setWorldOrigin() */
+     188          98 :   void setWorldOrigin(const geometry_msgs::Point& pt) {
+     189             : 
+     190          98 :     if (is_utm_based_ && !is_world_origin_set_) {
+     191          97 :       world_origin_        = pt;
+     192          97 :       is_world_origin_set_ = true;
+     193             :     }
+     194          98 :   }
+     195             :   /*//}*/
+     196             : 
+     197             : private:
+     198             :   const std::string name_;
+     199             :   const std::string ns_fcu_frame_id_;
+     200             : 
+     201             :   ros::NodeHandle nh_;
+     202             : 
+     203             :   std::shared_ptr<mrs_lib::TransformBroadcaster> broadcaster_;
+     204             :   tf2_ros::StaticTransformBroadcaster            static_broadcaster_;
+     205             : 
+     206             :   std::shared_ptr<estimation_manager::CommonHandlers_t> ch_;
+     207             : 
+     208             :   bool is_inverted_;
+     209             : 
+     210             :   bool             is_utm_based_;
+     211             :   bool             publish_local_tf_ = false;
+     212             :   bool             publish_utm_tf_   = false;
+     213             :   bool             publish_world_tf_ = false;
+     214             :   std::atomic_bool is_utm_source_    = false;
+     215             :   std::string      ns_utm_origin_parent_frame_id_;
+     216             :   std::string      ns_utm_origin_child_frame_id_;
+     217             : 
+     218             :   bool                 is_utm_origin_set_ = false;
+     219             :   geometry_msgs::Point utm_origin_;
+     220             : 
+     221             :   std::string ns_world_origin_parent_frame_id_;
+     222             :   std::string ns_world_origin_child_frame_id_;
+     223             : 
+     224             :   bool                 is_world_origin_set_ = false;
+     225             :   geometry_msgs::Point world_origin_;
+     226             : 
+     227             :   std::string full_topic_odom_;
+     228             :   std::string full_topic_attitude_;
+     229             :   bool        tf_from_attitude_enabled_ = false;
+     230             : 
+     231             :   bool        custom_frame_id_enabled_;
+     232             :   std::string custom_frame_id_;
+     233             : 
+     234             :   std::atomic_bool is_initialized_               = false;
+     235             :   std::atomic_bool is_local_static_tf_published_ = false;
+     236             :   std::atomic_bool is_utm_static_tf_published_   = false;
+     237             :   std::atomic_bool is_world_static_tf_published_ = false;
+     238             : 
+     239             :   std::vector<std::string> republish_in_frames_;
+     240             : 
+     241             :   std::vector<std::pair<std::string, mrs_lib::PublisherHandler<nav_msgs::Odometry>>> republishers_;
+     242             : 
+     243             :   mrs_lib::SubscribeHandler<nav_msgs::Odometry>               sh_tf_source_odom_;
+     244             :   mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped> sh_tf_source_att_;
+     245             :   mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude>          sh_altitude_amsl_;
+     246             :   nav_msgs::OdometryConstPtr                                  first_msg_;
+     247             :   bool                                                        got_first_msg_ = false;
+     248             : 
+     249             : 
+     250             :   /*//{ callbackTfSourceOdom()*/
+     251      183679 :   void callbackTfSourceOdom(const nav_msgs::Odometry::ConstPtr msg) {
+     252             : 
+     253      183679 :     if (!is_initialized_) {
+     254           0 :       return;
+     255             :     }
+     256             : 
+     257      550976 :     mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer(getPrintName() + "::callbackTfSourceOdom", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     258             : 
+     259      183619 :     scope_timer.checkpoint("get msg");
+     260             : 
+     261      183661 :     if (!got_first_msg_) {
+     262          98 :       first_msg_     = msg;
+     263          98 :       got_first_msg_ = true;
+     264             :     }
+     265             : 
+     266      183661 :     publishTfFromOdom(msg);
+     267      183703 :     scope_timer.checkpoint("pub tf");
+     268             : 
+     269      183698 :     if (publish_local_tf_ && !is_local_static_tf_published_) {
+     270           0 :       publishLocalTf(msg->header.frame_id);
+     271           0 :       scope_timer.checkpoint("pub local tf");
+     272             :     }
+     273             : 
+     274             :     /* if (publish_utm_tf_ && is_utm_based_ && is_utm_origin_set_ && !is_utm_static_tf_published_) { */
+     275             :     /*   publishUtmTf(msg->header.frame_id); */
+     276             :     /*   scope_timer.checkpoint("pub utm tf"); */
+     277             :     /* } */
+     278             : 
+     279             :     /* if (publish_world_tf_ && is_utm_based_ && is_world_origin_set_ && !is_world_static_tf_published_) { */
+     280             :     /*   publishWorldTf(msg->header.frame_id); */
+     281             :     /*   scope_timer.checkpoint("pub world tf"); */
+     282             :     /* } */
+     283             : 
+     284      327376 :     for (auto republisher : republishers_) {
+     285      143678 :       republishInFrame(msg, ch_->uav_name + "/" + republisher.first, republisher.second);
+     286             :     }
+     287             :   }
+     288             :   /*//}*/
+     289             : 
+     290             :   /*//{ callbackTfSourceAtt()*/
+     291      189791 :   void callbackTfSourceAtt(const geometry_msgs::QuaternionStamped::ConstPtr msg) {
+     292             : 
+     293      189791 :     if (!is_initialized_) {
+     294           0 :       return;
+     295             :     }
+     296             : 
+     297      569298 :     mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer(getPrintName() + "::callbackTfSourceAtt", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     298             : 
+     299      189728 :     scope_timer.checkpoint("get msg");
+     300      189779 :     publishTfFromAtt(msg);
+     301             :   }
+     302             :   /*//}*/
+     303             : 
+     304             :   /* publishTfFromOdom() //{*/
+     305      183573 :   void publishTfFromOdom(const nav_msgs::OdometryConstPtr& odom) {
+     306             : 
+     307      367259 :     mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer(getPrintName() + "::publishTfFromOdom", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     308             : 
+     309      183664 :     const tf2::Transform      tf       = Support::tf2FromPose(odom->pose.pose);
+     310      183654 :     const tf2::Transform      tf_inv   = tf.inverse();
+     311      183677 :     const geometry_msgs::Pose pose_inv = Support::poseFromTf2(tf_inv);
+     312             : 
+     313             :     /*//{ tf source origin */
+     314      183628 :     geometry_msgs::TransformStamped tf_msg;
+     315      183589 :     tf_msg.header.stamp         = odom->header.stamp;
+     316      183605 :     std::string origin_frame_id = custom_frame_id_enabled_ ? ch_->uav_name + "/" + custom_frame_id_ : odom->header.frame_id;
+     317      183607 :     if (is_inverted_) {
+     318             : 
+     319      183607 :       tf_msg.header.frame_id       = ch_->frames.ns_fcu;
+     320      183614 :       tf_msg.child_frame_id        = origin_frame_id;
+     321      183578 :       tf_msg.transform.translation = Support::pointToVector3(pose_inv.position);
+     322      183665 :       tf_msg.transform.rotation    = pose_inv.orientation;
+     323             : 
+     324             :     } else {
+     325           0 :       tf_msg.header.frame_id       = origin_frame_id;
+     326           0 :       tf_msg.child_frame_id        = ch_->frames.ns_fcu;
+     327           0 :       tf_msg.transform.translation = Support::pointToVector3(odom->pose.pose.position);
+     328           0 :       tf_msg.transform.rotation    = odom->pose.pose.orientation;
+     329             :     }
+     330             : 
+     331      183665 :     if (Support::noNans(tf_msg)) {
+     332             :       try {
+     333      183608 :         broadcaster_->sendTransform(tf_msg);
+     334             :       }
+     335           0 :       catch (...) {
+     336           0 :         ROS_ERROR("exception caught ");
+     337             :       }
+     338             : 
+     339      183704 :       if (tf_from_attitude_enabled_) {
+     340      182666 :         if (is_inverted_) {
+     341      182668 :           tf_msg.child_frame_id += "_att_only";
+     342             :         } else {
+     343           0 :           tf_msg.header.frame_id += "_att_only";
+     344             :         }
+     345             :         try {
+     346      182667 :           broadcaster_->sendTransform(tf_msg);
+     347             :         }
+     348           0 :         catch (...) {
+     349           0 :           ROS_ERROR("exception caught ");
+     350             :         }
+     351             :       }
+     352             :       /*//}*/
+     353             : 
+     354             :       /*//{ tf utm origin */
+     355             : 
+     356      183706 :       geometry_msgs::TransformStamped tf_utm_msg;
+     357      183705 :       if (is_utm_source_) {
+     358             :         
+     359      162501 :         if (!is_utm_origin_set_) {
+     360           0 :           ROS_INFO_THROTTLE(5.0, "[%s]: %s utm_origin initialization", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     361           0 :           return;
+     362             :         }
+     363             : 
+     364      162501 :         geometry_msgs::Pose pose_utm = odom->pose.pose;
+     365      162501 :         pose_utm.position.x += utm_origin_.x - first_msg_->pose.pose.position.x;
+     366      162501 :         pose_utm.position.y += utm_origin_.y - first_msg_->pose.pose.position.y;
+     367             : 
+     368      162501 :         if (sh_altitude_amsl_.hasMsg()) {
+     369      162500 :           pose_utm.position.z = sh_altitude_amsl_.getMsg()->amsl;
+     370             :         } else {
+     371           1 :           ROS_WARN_THROTTLE(5.0, "[%s]: AMSL altitude not available.", getPrintName().c_str());
+     372             :         }
+     373             : 
+     374      162501 :         tf_utm_msg.header.stamp    = odom->header.stamp;
+     375      162501 :         tf_utm_msg.header.frame_id = ns_utm_origin_parent_frame_id_;
+     376      162501 :         tf_utm_msg.child_frame_id  = ns_utm_origin_child_frame_id_;
+     377             : 
+     378      162501 :         tf2::Transform tf_utm;
+     379      162501 :         if (is_inverted_) {
+     380      162501 :           tf_utm = Support::tf2FromPose(pose_utm).inverse();
+     381             :         } else {
+     382           0 :           tf_utm = Support::tf2FromPose(pose_utm);
+     383             :         }
+     384      162501 :         tf_utm_msg.transform = Support::msgFromTf2(tf_utm);
+     385             : 
+     386             :         try {
+     387      162501 :           broadcaster_->sendTransform(tf_utm_msg);
+     388      162501 :           ROS_INFO_ONCE("[%s]: publishing utm_origin tf", getPrintName().c_str());
+     389             :         }
+     390           0 :         catch (...) {
+     391           0 :           ROS_ERROR("exception caught ");
+     392             :         }
+     393             :       }
+     394             :       /*//}*/
+     395             : 
+     396             :       /*//{ tf world origin */
+     397      183703 :       if (is_utm_source_) {
+     398      325002 :         geometry_msgs::TransformStamped tf_world_msg;
+     399      162501 :         tf_world_msg.header.stamp    = odom->header.stamp;
+     400      162501 :         tf_world_msg.header.frame_id = ns_world_origin_parent_frame_id_;
+     401      162501 :         tf_world_msg.child_frame_id  = ns_world_origin_child_frame_id_;
+     402             : 
+     403      162501 :         tf2::Transform tf_world;
+     404      162501 :         tf_world.setOrigin(tf2::Vector3(world_origin_.x, world_origin_.y, world_origin_.z));
+     405      162501 :         tf_world.setRotation(tf2::Quaternion(0, 0, 0, 1));
+     406             : 
+     407      162501 :         geometry_msgs::Pose pose_utm = odom->pose.pose;
+     408      162501 :         pose_utm.position.x += utm_origin_.x - first_msg_->pose.pose.position.x;
+     409      162501 :         pose_utm.position.y += utm_origin_.y - first_msg_->pose.pose.position.y;
+     410             : 
+     411      162501 :         tf2::Transform tf_utm;
+     412      162501 :         if (is_inverted_) {
+     413      162501 :           tf_utm = Support::tf2FromPose(pose_utm).inverse();
+     414             :         } else {
+     415           0 :           tf_utm = Support::tf2FromPose(pose_utm);
+     416             :         }
+     417             : 
+     418      162501 :         tf_world_msg.transform          = Support::msgFromTf2(tf_utm * tf_world);
+     419      162501 :         tf_world_msg.transform.rotation = pose_inv.orientation;
+     420             : 
+     421             :         try {
+     422      162501 :           broadcaster_->sendTransform(tf_world_msg);
+     423      162501 :           ROS_INFO_ONCE("[%s]: publishing world_origin tf", getPrintName().c_str());
+     424             :         }
+     425           0 :         catch (...) {
+     426           0 :           ROS_ERROR("exception caught ");
+     427             :         }
+     428             :       }
+     429             : 
+     430             :       /*//}*/
+     431             : 
+     432             :     } else {
+     433           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in transform from %s to %s. Not publishing tf.", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     434             :                         tf_msg.child_frame_id.c_str());
+     435             :     }
+     436      183705 :     ROS_INFO_ONCE("[%s]: Broadcasting transform from parent frame: %s to child frame: %s based on topic: %s", getPrintName().c_str(),
+     437             :                   tf_msg.header.frame_id.c_str(), tf_msg.child_frame_id.c_str(), full_topic_odom_.c_str());
+     438             :   }
+     439             :   /*//}*/
+     440             : 
+     441             :   /* publishTfFromAtt() //{*/
+     442      189770 :   void publishTfFromAtt(const geometry_msgs::QuaternionStampedConstPtr& msg) {
+     443             : 
+     444      569354 :     mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer(getPrintName() + "::publishTfFromAtt", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     445             : 
+     446      379574 :     geometry_msgs::TransformStamped tf_msg;
+     447      189750 :     tf_msg.header.stamp = msg->header.stamp;
+     448             : 
+     449      189750 :     geometry_msgs::Pose pose;
+     450      189733 :     pose.position.x = 0.0;
+     451      189733 :     pose.position.y = 0.0;
+     452      189733 :     pose.position.z = 0.0;
+     453      189733 :     pose.orientation = msg->quaternion;
+     454      189735 :     if (is_inverted_) {
+     455             : 
+     456      189735 :       const tf2::Transform      tf       = Support::tf2FromPose(pose);
+     457      189751 :       const tf2::Transform      tf_inv   = tf.inverse();
+     458      189755 :       const geometry_msgs::Pose pose_inv = Support::poseFromTf2(tf_inv);
+     459             : 
+     460      189765 :       tf_msg.header.frame_id       = ch_->frames.ns_fcu;
+     461      189740 :       tf_msg.child_frame_id        = msg->header.frame_id;
+     462      189752 :       tf_msg.transform.translation = Support::pointToVector3(pose_inv.position);
+     463      189763 :       tf_msg.transform.rotation    = pose_inv.orientation;
+     464             : 
+     465             :     } else {
+     466           0 :       tf_msg.header.frame_id       = msg->header.frame_id;
+     467           0 :       tf_msg.child_frame_id        = ch_->frames.ns_fcu;
+     468           0 :       tf_msg.transform.translation = Support::pointToVector3(pose.position);
+     469           0 :       tf_msg.transform.rotation    = pose.orientation;
+     470             :     }
+     471             : 
+     472      189763 :     if (Support::noNans(tf_msg)) {
+     473             :       try {
+     474      189741 :         scope_timer.checkpoint("before pub");
+     475      189753 :         broadcaster_->sendTransform(tf_msg);
+     476      189798 :         scope_timer.checkpoint("after pub");
+     477             :       }
+     478           0 :       catch (...) {
+     479           0 :         ROS_ERROR("exception caught ");
+     480             :       }
+     481             :     } else {
+     482           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in transform from %s to %s. Not publishing tf.", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     483             :                         tf_msg.child_frame_id.c_str());
+     484             :     }
+     485      189798 :     ROS_INFO_ONCE("[%s]: Broadcasting transform from parent frame: %s to child frame: %s based on topic: %s", getPrintName().c_str(),
+     486             :                   tf_msg.header.frame_id.c_str(), tf_msg.child_frame_id.c_str(), full_topic_attitude_.c_str());
+     487      189796 :   }
+     488             :   /*//}*/
+     489             : 
+     490             :   /* publishLocalTf() //{*/
+     491           0 :   void publishLocalTf(const std::string& frame_id) {
+     492             : 
+     493           0 :     mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer(getPrintName() + "::publishLocalTf", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     494             : 
+     495           0 :     geometry_msgs::TransformStamped tf_msg;
+     496           0 :     tf_msg.header.stamp = ros::Time::now();
+     497             : 
+     498           0 :     tf_msg.header.frame_id       = frame_id;
+     499           0 :     tf_msg.child_frame_id        = frame_id.substr(0, frame_id.find("_origin")) + "_local_origin";
+     500           0 :     tf_msg.transform.translation = Support::pointToVector3(first_msg_->pose.pose.position);
+     501           0 :     tf_msg.transform.rotation    = first_msg_->pose.pose.orientation;
+     502             : 
+     503           0 :     if (Support::noNans(tf_msg)) {
+     504             :       try {
+     505           0 :         static_broadcaster_.sendTransform(tf_msg);
+     506             :       }
+     507           0 :       catch (...) {
+     508           0 :         ROS_ERROR("exception caught ");
+     509             :       }
+     510             :     } else {
+     511           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in transform from %s to %s. Not publishing tf.", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     512             :                         tf_msg.child_frame_id.c_str());
+     513             :     }
+     514           0 :     ROS_INFO_ONCE("[%s]: Broadcasting transform from parent frame: %s to child frame: %s based on first message of: %s", getPrintName().c_str(),
+     515             :                   tf_msg.header.frame_id.c_str(), tf_msg.child_frame_id.c_str(), full_topic_odom_.c_str());
+     516           0 :     is_local_static_tf_published_ = true;
+     517           0 :   }
+     518             :   /*//}*/
+     519             : 
+     520             :   /* publishUtmTf() //{*/
+     521             :   void publishUtmTf(const std::string& frame_id) {
+     522             : 
+     523             :     mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer(getPrintName() + "::publishUtmTf", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     524             : 
+     525             :     geometry_msgs::TransformStamped tf_msg;
+     526             :     tf_msg.header.stamp = ros::Time::now();
+     527             : 
+     528             :     tf_msg.header.frame_id         = frame_id;
+     529             :     tf_msg.child_frame_id          = frame_id.substr(0, frame_id.find("_origin")) + "_utm_origin";
+     530             :     tf_msg.transform.translation.x = -utm_origin_.x;  // minus because inverse tf tree
+     531             :     tf_msg.transform.translation.y = -utm_origin_.y;  // minus because inverse tf tree
+     532             :     tf_msg.transform.translation.z = -utm_origin_.z;  // minus because inverse tf tree
+     533             :     tf_msg.transform.rotation.x    = 0;
+     534             :     tf_msg.transform.rotation.y    = 0;
+     535             :     tf_msg.transform.rotation.z    = 0;
+     536             :     tf_msg.transform.rotation.w    = 1;
+     537             : 
+     538             :     if (Support::noNans(tf_msg)) {
+     539             :       try {
+     540             :         static_broadcaster_.sendTransform(tf_msg);
+     541             :       }
+     542             :       catch (...) {
+     543             :         ROS_ERROR("exception caught ");
+     544             :       }
+     545             :     } else {
+     546             :       ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in transform from %s to %s. Not publishing tf.", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     547             :                         tf_msg.child_frame_id.c_str());
+     548             :     }
+     549             :     ROS_INFO_ONCE("[%s]: Broadcasting transform from parent frame: %s to child frame: %s based on first message of: %s", getPrintName().c_str(),
+     550             :                   tf_msg.header.frame_id.c_str(), tf_msg.child_frame_id.c_str(), full_topic_odom_.c_str());
+     551             :     is_utm_static_tf_published_ = true;
+     552             :   }
+     553             :   /*//}*/
+     554             : 
+     555             :   /* publishWorldTf() //{*/
+     556             :   void publishWorldTf(const std::string& frame_id) {
+     557             : 
+     558             :     mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer(getPrintName() + "::publishWorldTf", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     559             : 
+     560             :     geometry_msgs::TransformStamped tf_msg;
+     561             :     tf_msg.header.stamp = ros::Time::now();
+     562             : 
+     563             :     tf_msg.header.frame_id         = frame_id;
+     564             :     tf_msg.child_frame_id          = frame_id.substr(0, frame_id.find("_origin")) + "_world_origin";
+     565             :     tf_msg.transform.translation.x = -(utm_origin_.x - world_origin_.x);  // minus because inverse tf tree
+     566             :     tf_msg.transform.translation.y = -(utm_origin_.y - world_origin_.y);  // minus because inverse tf tree
+     567             :     /* tf_msg.transform.translation.z = -(utm_origin_.z);                    // minus because inverse tf tree */
+     568             :     tf_msg.transform.translation.z = 0;
+     569             :     tf_msg.transform.rotation.x    = 0;
+     570             :     tf_msg.transform.rotation.y    = 0;
+     571             :     tf_msg.transform.rotation.z    = 0;
+     572             :     tf_msg.transform.rotation.w    = 1;
+     573             : 
+     574             :     if (Support::noNans(tf_msg)) {
+     575             :       try {
+     576             :         static_broadcaster_.sendTransform(tf_msg);
+     577             :       }
+     578             :       catch (...) {
+     579             :         ROS_ERROR("exception caught ");
+     580             :       }
+     581             :     } else {
+     582             :       ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in transform from %s to %s. Not publishing tf.", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     583             :                         tf_msg.child_frame_id.c_str());
+     584             :     }
+     585             :     ROS_INFO_ONCE("[%s]: Broadcasting transform from parent frame: %s to child frame: %s based on first message of: %s", getPrintName().c_str(),
+     586             :                   tf_msg.header.frame_id.c_str(), tf_msg.child_frame_id.c_str(), full_topic_odom_.c_str());
+     587             :     is_world_static_tf_published_ = true;
+     588             :   }
+     589             :   /*//}*/
+     590             : 
+     591             :   /* republishInFrame() //{*/
+     592      143678 :   void republishInFrame(const nav_msgs::OdometryConstPtr& msg, const std::string& frame_id, mrs_lib::PublisherHandler<nav_msgs::Odometry>& ph) {
+     593             : 
+     594      287356 :     mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer(getPrintName() + "::republishInFrame", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     595             : 
+     596      143678 :     nav_msgs::Odometry msg_out = *msg;
+     597      143678 :     msg_out.header.frame_id    = frame_id;
+     598             : 
+     599      143678 :     geometry_msgs::PoseStamped pose;
+     600      143678 :     pose.header = msg->header;
+     601      143678 :     pose.pose   = msg->pose.pose;
+     602             : 
+     603      143678 :     auto res = ch_->transformer->transformSingle(pose, frame_id);
+     604      143678 :     if (res) {
+     605      135113 :       msg_out.pose.pose = res->pose;
+     606      135113 :       ph.publish(msg_out);
+     607             :     } else {
+     608        8565 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Could not transform pose to %s. Not republishing odom in this frame.", getPrintName().c_str(), frame_id.c_str());
+     609        8565 :       return;
+     610             :     }
+     611             :   }
+     612             : 
+     613             :   /*//}*/
+     614             : };
+     615             : 
+     616             : /*//}*/
+     617             : 
+     618             : }  // namespace mrs_uav_managers
+     619             : 
+     620             : #endif
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
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LCOV - code coverage report
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Current view:top level - mrs_uav_managers/src - constraint_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:19423283.6 %
Date:2024-04-17 23:52:03Functions:88100.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::constraint_manager::ConstraintManager::callbackConstraintsOverride(mrs_msgs::ConstraintsOverrideRequest_<std::allocator<void> >&, mrs_msgs::ConstraintsOverrideResponse_<std::allocator<void> >&)1
mrs_uav_managers::constraint_manager::ConstraintManager::callbackSetConstraints(mrs_msgs::StringRequest_<std::allocator<void> >&, mrs_msgs::StringResponse_<std::allocator<void> >&)3
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::constraint_manager::ConstraintManager::onInit()91
mrs_uav_managers::constraint_manager::ConstraintManager::setConstraints(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)94
mrs_uav_managers::constraint_manager::ConstraintManager::timerDiagnostics(ros::TimerEvent const&)2050
mrs_uav_managers::constraint_manager::ConstraintManager::stringInVector(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&)2455
mrs_uav_managers::constraint_manager::ConstraintManager::timerConstraintManagement(ros::TimerEvent const&)20917
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/src/constraint_manager.cpp.func.html b/mrs_uav_managers/src/constraint_manager.cpp.func.html new file mode 100644 index 0000000000..082826d37c --- /dev/null +++ b/mrs_uav_managers/src/constraint_manager.cpp.func.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/constraint_manager.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_managers/src - constraint_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:19423283.6 %
Date:2024-04-17 23:52:03Functions:88100.0 %
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::constraint_manager::ConstraintManager::setConstraints(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)94
mrs_uav_managers::constraint_manager::ConstraintManager::stringInVector(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&)2455
mrs_uav_managers::constraint_manager::ConstraintManager::timerDiagnostics(ros::TimerEvent const&)2050
mrs_uav_managers::constraint_manager::ConstraintManager::callbackSetConstraints(mrs_msgs::StringRequest_<std::allocator<void> >&, mrs_msgs::StringResponse_<std::allocator<void> >&)3
mrs_uav_managers::constraint_manager::ConstraintManager::timerConstraintManagement(ros::TimerEvent const&)20917
mrs_uav_managers::constraint_manager::ConstraintManager::callbackConstraintsOverride(mrs_msgs::ConstraintsOverrideRequest_<std::allocator<void> >&, mrs_msgs::ConstraintsOverrideResponse_<std::allocator<void> >&)1
mrs_uav_managers::constraint_manager::ConstraintManager::onInit()91
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/src/constraint_manager.cpp.gcov.frameset.html b/mrs_uav_managers/src/constraint_manager.cpp.gcov.frameset.html new file mode 100644 index 0000000000..0360404b95 --- /dev/null +++ b/mrs_uav_managers/src/constraint_manager.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/constraint_manager.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_managers/src/constraint_manager.cpp.gcov.html b/mrs_uav_managers/src/constraint_manager.cpp.gcov.html new file mode 100644 index 0000000000..e7d025a211 --- /dev/null +++ b/mrs_uav_managers/src/constraint_manager.cpp.gcov.html @@ -0,0 +1,716 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/constraint_manager.cpp + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_managers/src - constraint_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:19423283.6 %
Date:2024-04-17 23:52:03Functions:88100.0 %
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+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <nodelet/nodelet.h>
+       5             : 
+       6             : #include <std_msgs/String.h>
+       7             : 
+       8             : #include <mrs_msgs/ConstraintManagerDiagnostics.h>
+       9             : #include <mrs_msgs/EstimationDiagnostics.h>
+      10             : #include <mrs_msgs/DynamicsConstraintsSrv.h>
+      11             : #include <mrs_msgs/DynamicsConstraintsSrvRequest.h>
+      12             : #include <mrs_msgs/String.h>
+      13             : #include <mrs_msgs/ConstraintsOverride.h>
+      14             : 
+      15             : #include <mrs_lib/profiler.h>
+      16             : #include <mrs_lib/scope_timer.h>
+      17             : #include <mrs_lib/param_loader.h>
+      18             : #include <mrs_lib/mutex.h>
+      19             : #include <mrs_lib/publisher_handler.h>
+      20             : #include <mrs_lib/service_client_handler.h>
+      21             : #include <mrs_lib/subscribe_handler.h>
+      22             : 
+      23             : #include <dynamic_reconfigure/ReconfigureRequest.h>
+      24             : #include <dynamic_reconfigure/Reconfigure.h>
+      25             : #include <dynamic_reconfigure/Config.h>
+      26             : 
+      27             : //}
+      28             : 
+      29             : namespace mrs_uav_managers
+      30             : {
+      31             : 
+      32             : namespace constraint_manager
+      33             : {
+      34             : 
+      35             : /* //{ class ConstraintManager */
+      36             : 
+      37             : class ConstraintManager : public nodelet::Nodelet {
+      38             : 
+      39             : public:
+      40             :   virtual void onInit();
+      41             : 
+      42             : private:
+      43             :   ros::NodeHandle nh_;
+      44             : 
+      45             :   std::atomic<bool> is_initialized_ = false;
+      46             : 
+      47             :   // | ----------------------- parameters ----------------------- |
+      48             : 
+      49             :   std::vector<std::string> _estimator_type_names_;
+      50             : 
+      51             :   std::vector<std::string>                                       _constraint_names_;
+      52             :   std::map<std::string, mrs_msgs::DynamicsConstraintsSrvRequest> _constraints_;
+      53             : 
+      54             :   std::map<std::string, std::vector<std::string>> _map_type_allowed_constraints_;
+      55             :   std::map<std::string, std::string>              _map_type_default_constraints_;
+      56             : 
+      57             :   // | --------------------- service clients -------------------- |
+      58             : 
+      59             :   mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv> sc_set_constraints_;
+      60             : 
+      61             :   // | ----------------------- subscribers ---------------------- |
+      62             : 
+      63             :   mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics> sh_estimation_diag_;
+      64             : 
+      65             :   // | ------------- constraint management ------------- |
+      66             : 
+      67             :   bool setConstraints(std::string constraints_names);
+      68             : 
+      69             :   ros::ServiceServer service_server_set_constraints_;
+      70             :   bool               callbackSetConstraints(mrs_msgs::String::Request& req, mrs_msgs::String::Response& res);
+      71             : 
+      72             :   std::string last_estimator_name_;
+      73             :   std::mutex  mutex_last_estimator_name_;
+      74             : 
+      75             :   void       timerConstraintManagement(const ros::TimerEvent& event);
+      76             :   ros::Timer timer_constraint_management_;
+      77             :   double     _constraint_management_rate_;
+      78             : 
+      79             :   std::string current_constraints_;
+      80             :   std::mutex  mutex_current_constraints_;
+      81             : 
+      82             :   // | ------------------ constraints override ------------------ |
+      83             : 
+      84             :   ros::ServiceServer service_server_constraints_override_;
+      85             :   bool               callbackConstraintsOverride(mrs_msgs::ConstraintsOverride::Request& req, mrs_msgs::ConstraintsOverride::Response& res);
+      86             : 
+      87             :   std::atomic<bool>                    override_constraints_         = false;
+      88             :   std::atomic<bool>                    constraints_override_updated_ = false;
+      89             :   std::mutex                           mutex_constraints_override_;
+      90             :   mrs_msgs::ConstraintsOverrideRequest constraints_override_;
+      91             : 
+      92             :   // | ------------------ diagnostics publisher ----------------- |
+      93             : 
+      94             :   mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics> ph_diagnostics_;
+      95             : 
+      96             :   void       timerDiagnostics(const ros::TimerEvent& event);
+      97             :   ros::Timer timer_diagnostics_;
+      98             :   double     _diagnostics_rate_;
+      99             : 
+     100             :   // | ------------------------ profiler ------------------------ |
+     101             : 
+     102             :   mrs_lib::Profiler profiler_;
+     103             :   bool              _profiler_enabled_ = false;
+     104             : 
+     105             :   // | ------------------- scope timer logger ------------------- |
+     106             : 
+     107             :   bool                                       scope_timer_enabled_ = false;
+     108             :   std::shared_ptr<mrs_lib::ScopeTimerLogger> scope_timer_logger_;
+     109             : 
+     110             :   // | ------------------------- helpers ------------------------ |
+     111             : 
+     112             :   bool stringInVector(const std::string& value, const std::vector<std::string>& vector);
+     113             : };
+     114             : 
+     115             : //}
+     116             : 
+     117             : /* //{ onInit() */
+     118             : 
+     119          91 : void ConstraintManager::onInit() {
+     120             : 
+     121          91 :   nh_ = nodelet::Nodelet::getMTPrivateNodeHandle();
+     122             : 
+     123          91 :   ros::Time::waitForValid();
+     124             : 
+     125          91 :   ROS_INFO("[ConstraintManager]: initializing");
+     126             : 
+     127             :   // | ------------------------- params ------------------------- |
+     128             : 
+     129         182 :   mrs_lib::ParamLoader param_loader(nh_, "ConstraintManager");
+     130             : 
+     131         182 :   std::string custom_config_path;
+     132         182 :   std::string platform_config_path;
+     133             : 
+     134          91 :   param_loader.loadParam("custom_config", custom_config_path);
+     135          91 :   param_loader.loadParam("platform_config", platform_config_path);
+     136             : 
+     137          91 :   if (custom_config_path != "") {
+     138          91 :     param_loader.addYamlFile(custom_config_path);
+     139             :   }
+     140             : 
+     141          91 :   if (platform_config_path != "") {
+     142          91 :     param_loader.addYamlFile(platform_config_path);
+     143             :   }
+     144             : 
+     145          91 :   param_loader.addYamlFileFromParam("private_config");
+     146          91 :   param_loader.addYamlFileFromParam("public_config");
+     147          91 :   param_loader.addYamlFileFromParam("public_constraints");
+     148             : 
+     149         182 :   const std::string yaml_prefix = "mrs_uav_managers/constraint_manager/";
+     150             : 
+     151             :   // params passed from the launch file are not prefixed
+     152          91 :   param_loader.loadParam("enable_profiler", _profiler_enabled_);
+     153             : 
+     154          91 :   param_loader.loadParam(yaml_prefix + "constraints", _constraint_names_);
+     155             : 
+     156          91 :   param_loader.loadParam(yaml_prefix + "estimator_types", _estimator_type_names_);
+     157             : 
+     158          91 :   param_loader.loadParam(yaml_prefix + "rate", _constraint_management_rate_);
+     159          91 :   param_loader.loadParam(yaml_prefix + "diagnostics_rate", _diagnostics_rate_);
+     160             : 
+     161          91 :   std::vector<std::string>::iterator it;
+     162             : 
+     163             :   // loading constraint names
+     164         364 :   for (it = _constraint_names_.begin(); it != _constraint_names_.end(); ++it) {
+     165             : 
+     166         273 :     ROS_INFO_STREAM("[ConstraintManager]: loading constraints '" << *it << "'");
+     167             : 
+     168         273 :     mrs_msgs::DynamicsConstraintsSrvRequest new_constraints;
+     169             : 
+     170         273 :     param_loader.loadParam(yaml_prefix + *it + "/horizontal/speed", new_constraints.constraints.horizontal_speed);
+     171         273 :     param_loader.loadParam(yaml_prefix + *it + "/horizontal/acceleration", new_constraints.constraints.horizontal_acceleration);
+     172         273 :     param_loader.loadParam(yaml_prefix + *it + "/horizontal/jerk", new_constraints.constraints.horizontal_jerk);
+     173         273 :     param_loader.loadParam(yaml_prefix + *it + "/horizontal/snap", new_constraints.constraints.horizontal_snap);
+     174             : 
+     175         273 :     param_loader.loadParam(yaml_prefix + *it + "/vertical/ascending/speed", new_constraints.constraints.vertical_ascending_speed);
+     176         273 :     param_loader.loadParam(yaml_prefix + *it + "/vertical/ascending/acceleration", new_constraints.constraints.vertical_ascending_acceleration);
+     177         273 :     param_loader.loadParam(yaml_prefix + *it + "/vertical/ascending/jerk", new_constraints.constraints.vertical_ascending_jerk);
+     178         273 :     param_loader.loadParam(yaml_prefix + *it + "/vertical/ascending/snap", new_constraints.constraints.vertical_ascending_snap);
+     179             : 
+     180         273 :     param_loader.loadParam(yaml_prefix + *it + "/vertical/descending/speed", new_constraints.constraints.vertical_descending_speed);
+     181         273 :     param_loader.loadParam(yaml_prefix + *it + "/vertical/descending/acceleration", new_constraints.constraints.vertical_descending_acceleration);
+     182         273 :     param_loader.loadParam(yaml_prefix + *it + "/vertical/descending/jerk", new_constraints.constraints.vertical_descending_jerk);
+     183         273 :     param_loader.loadParam(yaml_prefix + *it + "/vertical/descending/snap", new_constraints.constraints.vertical_descending_snap);
+     184             : 
+     185         273 :     param_loader.loadParam(yaml_prefix + *it + "/heading/speed", new_constraints.constraints.heading_speed);
+     186         273 :     param_loader.loadParam(yaml_prefix + *it + "/heading/acceleration", new_constraints.constraints.heading_acceleration);
+     187         273 :     param_loader.loadParam(yaml_prefix + *it + "/heading/jerk", new_constraints.constraints.heading_jerk);
+     188         273 :     param_loader.loadParam(yaml_prefix + *it + "/heading/snap", new_constraints.constraints.heading_snap);
+     189             : 
+     190         273 :     param_loader.loadParam(yaml_prefix + *it + "/angular_speed/roll", new_constraints.constraints.roll_rate);
+     191         273 :     param_loader.loadParam(yaml_prefix + *it + "/angular_speed/pitch", new_constraints.constraints.pitch_rate);
+     192         273 :     param_loader.loadParam(yaml_prefix + *it + "/angular_speed/yaw", new_constraints.constraints.yaw_rate);
+     193             : 
+     194             :     double tilt_deg;
+     195             : 
+     196         273 :     param_loader.loadParam(yaml_prefix + *it + "/tilt", tilt_deg);
+     197             : 
+     198         273 :     new_constraints.constraints.tilt = M_PI * (tilt_deg / 180.0);
+     199             : 
+     200         273 :     _constraints_.insert(std::pair<std::string, mrs_msgs::DynamicsConstraintsSrvRequest>(*it, new_constraints));
+     201             :   }
+     202             : 
+     203             :   // loading the allowed constraints lists
+     204         728 :   for (it = _estimator_type_names_.begin(); it != _estimator_type_names_.end(); ++it) {
+     205             : 
+     206         637 :     std::vector<std::string> temp_vector;
+     207         637 :     param_loader.loadParam(yaml_prefix + "allowed_constraints/" + *it, temp_vector);
+     208             : 
+     209         637 :     std::vector<std::string>::iterator it2;
+     210        2354 :     for (it2 = temp_vector.begin(); it2 != temp_vector.end(); ++it2) {
+     211        1717 :       if (!stringInVector(*it2, _constraint_names_)) {
+     212           0 :         ROS_ERROR("[ConstraintManager]: the element '%s' of %s/allowed_constraints is not a valid constraint!", it2->c_str(), it->c_str());
+     213           0 :         ros::shutdown();
+     214             :       }
+     215             :     }
+     216             : 
+     217         637 :     _map_type_allowed_constraints_.insert(std::pair<std::string, std::vector<std::string>>(*it, temp_vector));
+     218             :   }
+     219             : 
+     220             :   // loading the default constraints
+     221         728 :   for (it = _estimator_type_names_.begin(); it != _estimator_type_names_.end(); ++it) {
+     222             : 
+     223         637 :     std::string temp_str;
+     224         637 :     param_loader.loadParam(yaml_prefix + "default_constraints/" + *it, temp_str);
+     225             : 
+     226         637 :     if (!stringInVector(temp_str, _map_type_allowed_constraints_.at(*it))) {
+     227           0 :       ROS_ERROR("[ConstraintManager]: the element '%s' of %s/allowed_constraints is not a valid constraint!", temp_str.c_str(), it->c_str());
+     228           0 :       ros::shutdown();
+     229             :     }
+     230             : 
+     231         637 :     _map_type_default_constraints_.insert(std::pair<std::string, std::string>(*it, temp_str));
+     232             :   }
+     233             : 
+     234          91 :   ROS_INFO("[ConstraintManager]: done loading dynamic params");
+     235             : 
+     236          91 :   current_constraints_ = "";
+     237          91 :   last_estimator_name_ = "";
+     238             : 
+     239             :   // | ------------------------ services ------------------------ |
+     240             : 
+     241          91 :   service_server_set_constraints_ = nh_.advertiseService("set_constraints_in", &ConstraintManager::callbackSetConstraints, this);
+     242             : 
+     243          91 :   service_server_constraints_override_ = nh_.advertiseService("constraints_override_in", &ConstraintManager::callbackConstraintsOverride, this);
+     244             : 
+     245          91 :   sc_set_constraints_ = mrs_lib::ServiceClientHandler<mrs_msgs::DynamicsConstraintsSrv>(nh_, "set_constraints_out");
+     246             : 
+     247             :   // | ----------------------- subscribers ---------------------- |
+     248             : 
+     249         182 :   mrs_lib::SubscribeHandlerOptions shopts;
+     250          91 :   shopts.nh                 = nh_;
+     251          91 :   shopts.node_name          = "ConstraintManager";
+     252          91 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     253          91 :   shopts.threadsafe         = true;
+     254          91 :   shopts.autostart          = true;
+     255          91 :   shopts.queue_size         = 10;
+     256          91 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     257             : 
+     258          91 :   sh_estimation_diag_ = mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics>(shopts, "estimation_diagnostics_in");
+     259             : 
+     260             :   // | ----------------------- publishers ----------------------- |
+     261             : 
+     262          91 :   ph_diagnostics_ = mrs_lib::PublisherHandler<mrs_msgs::ConstraintManagerDiagnostics>(nh_, "diagnostics_out", 10);
+     263             : 
+     264             :   // | ------------------------- timers ------------------------- |
+     265             : 
+     266          91 :   timer_constraint_management_ = nh_.createTimer(ros::Rate(_constraint_management_rate_), &ConstraintManager::timerConstraintManagement, this);
+     267          91 :   timer_diagnostics_           = nh_.createTimer(ros::Rate(_diagnostics_rate_), &ConstraintManager::timerDiagnostics, this);
+     268             : 
+     269             :   // | ------------------------ profiler ------------------------ |
+     270             : 
+     271          91 :   profiler_ = mrs_lib::Profiler(nh_, "ConstraintManager", _profiler_enabled_);
+     272             : 
+     273             :   // | ------------------- scope timer logger ------------------- |
+     274             : 
+     275          91 :   param_loader.loadParam(yaml_prefix + "scope_timer/enabled", scope_timer_enabled_);
+     276         273 :   const std::string scope_timer_log_filename = param_loader.loadParam2("scope_timer/log_filename", std::string(""));
+     277          91 :   scope_timer_logger_                        = std::make_shared<mrs_lib::ScopeTimerLogger>(scope_timer_log_filename, scope_timer_enabled_);
+     278             : 
+     279             :   // | ----------------------- finish init ---------------------- |
+     280             : 
+     281          91 :   if (!param_loader.loadedSuccessfully()) {
+     282           0 :     ROS_ERROR("[ConstraintManager]: Could not load all parameters!");
+     283           0 :     ros::shutdown();
+     284             :   }
+     285             : 
+     286          91 :   is_initialized_ = true;
+     287             : 
+     288          91 :   ROS_INFO("[ConstraintManager]: initialized");
+     289             : 
+     290          91 :   ROS_DEBUG("[ConstraintManager]: debug output is enabled");
+     291          91 : }
+     292             : 
+     293             : //}
+     294             : 
+     295             : // --------------------------------------------------------------
+     296             : // |                           methods                          |
+     297             : // --------------------------------------------------------------
+     298             : 
+     299             : /* setConstraints() //{ */
+     300             : 
+     301          94 : bool ConstraintManager::setConstraints(std::string constraints_name) {
+     302             : 
+     303          94 :   std::map<std::string, mrs_msgs::DynamicsConstraintsSrvRequest>::iterator it;
+     304          94 :   it = _constraints_.find(constraints_name);
+     305             : 
+     306          94 :   if (it == _constraints_.end()) {
+     307           0 :     ROS_ERROR("[ConstraintManager]: could not setConstraints(), the constraint name '%s' is not on the list", constraints_name.c_str());
+     308           0 :     return false;
+     309             :   }
+     310             : 
+     311         188 :   mrs_msgs::DynamicsConstraintsSrv srv_call;
+     312             : 
+     313          94 :   srv_call.request = it->second;
+     314             : 
+     315          94 :   if (override_constraints_) {
+     316             : 
+     317           1 :     auto constraints_override = mrs_lib::get_mutexed(mutex_constraints_override_, constraints_override_);
+     318             : 
+     319           1 :     if (constraints_override.acceleration_horizontal > 0 &&
+     320           1 :         constraints_override.acceleration_horizontal <= srv_call.request.constraints.horizontal_acceleration) {
+     321           1 :       srv_call.request.constraints.horizontal_acceleration = constraints_override.acceleration_horizontal;
+     322             :     } else {
+     323           0 :       ROS_ERROR_THROTTLE(1.0, "[ConstraintManager]: required horizontal acceleration override is out of bounds");
+     324             :     }
+     325             : 
+     326           1 :     if (constraints_override.acceleration_vertical > 0 &&
+     327           1 :         constraints_override.acceleration_vertical <= srv_call.request.constraints.vertical_ascending_acceleration &&
+     328           1 :         constraints_override.acceleration_vertical <= srv_call.request.constraints.vertical_descending_acceleration) {
+     329           1 :       srv_call.request.constraints.vertical_ascending_acceleration  = constraints_override.acceleration_vertical;
+     330           1 :       srv_call.request.constraints.vertical_descending_acceleration = constraints_override.acceleration_vertical;
+     331             :     } else {
+     332           0 :       ROS_ERROR_THROTTLE(1.0, "[ConstraintManager]: required vertical acceleration override is out of bounds");
+     333             :     }
+     334             :   }
+     335             : 
+     336          94 :   bool res = sc_set_constraints_.call(srv_call);
+     337             : 
+     338          94 :   if (!res) {
+     339             : 
+     340           0 :     ROS_WARN_THROTTLE(1.0, "[ConstraintManager]: the service for setting constraints has failed!");
+     341           0 :     return false;
+     342             : 
+     343             :   } else {
+     344             : 
+     345          94 :     if (srv_call.response.success) {
+     346             : 
+     347          94 :       mrs_lib::set_mutexed(mutex_current_constraints_, constraints_name, current_constraints_);
+     348          94 :       return true;
+     349             : 
+     350             :     } else {
+     351             : 
+     352           0 :       ROS_WARN_THROTTLE(1.0, "[ConstraintManager]: set service for setting constraints returned: '%s'", srv_call.response.message.c_str());
+     353           0 :       return false;
+     354             :     }
+     355             :   }
+     356             : }
+     357             : 
+     358             : //}
+     359             : 
+     360             : // --------------------------------------------------------------
+     361             : // |                          callbacks                         |
+     362             : // --------------------------------------------------------------
+     363             : 
+     364             : // | -------------------- service callbacks ------------------- |
+     365             : 
+     366             : /* //{ callbackSetConstraints() */
+     367             : 
+     368           3 : bool ConstraintManager::callbackSetConstraints(mrs_msgs::String::Request& req, mrs_msgs::String::Response& res) {
+     369             : 
+     370           3 :   if (!is_initialized_) {
+     371           0 :     return false;
+     372             :   }
+     373             : 
+     374           6 :   std::stringstream ss;
+     375             : 
+     376           3 :   if (!sh_estimation_diag_.hasMsg()) {
+     377             : 
+     378           0 :     ss << "missing odometry diagnostics";
+     379             : 
+     380           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ConstraintManager]: " << ss.str());
+     381             : 
+     382           0 :     res.message = ss.str();
+     383           0 :     res.success = false;
+     384           0 :     return true;
+     385             :   }
+     386             : 
+     387           6 :   auto estimation_diagnostics = sh_estimation_diag_.getMsg();
+     388             : 
+     389           3 :   if (!stringInVector(req.value, _constraint_names_)) {
+     390             : 
+     391           1 :     ss << "the constraints '" << req.value.c_str() << "' do not exist (in the ConstraintManager's config)";
+     392             : 
+     393           1 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ConstraintManager]: " << ss.str());
+     394             : 
+     395           1 :     res.message = ss.str();
+     396           1 :     res.success = false;
+     397           1 :     return true;
+     398             :   }
+     399             : 
+     400           2 :   if (!stringInVector(req.value, _map_type_allowed_constraints_.at(estimation_diagnostics->current_state_estimator))) {
+     401             : 
+     402           0 :     ss << "the constraints '" << req.value.c_str() << "' are not allowed given the current odometry type";
+     403             : 
+     404           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ConstraintManager]: " << ss.str());
+     405             : 
+     406           0 :     res.message = ss.str();
+     407           0 :     res.success = false;
+     408           0 :     return true;
+     409             :   }
+     410             : 
+     411           2 :   override_constraints_ = false;
+     412             : 
+     413             :   // try to set the constraints
+     414           2 :   if (!setConstraints(req.value)) {
+     415             : 
+     416           0 :     ss << "the ControlManager could not set the constraints";
+     417             : 
+     418           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ConstraintManager]: " << ss.str());
+     419             : 
+     420           0 :     res.message = ss.str();
+     421           0 :     res.success = false;
+     422           0 :     return true;
+     423             : 
+     424             :   } else {
+     425             : 
+     426           2 :     ss << "the constraints '" << req.value.c_str() << "' were set";
+     427             : 
+     428           2 :     ROS_INFO_STREAM_THROTTLE(1.0, "[ConstraintManager]: " << ss.str());
+     429             : 
+     430           2 :     res.message = ss.str();
+     431           2 :     res.success = true;
+     432           2 :     return true;
+     433             :   }
+     434             : }
+     435             : 
+     436             : //}
+     437             : 
+     438             : /* callackConstraintsOverride() //{ */
+     439             : 
+     440           1 : bool ConstraintManager::callbackConstraintsOverride(mrs_msgs::ConstraintsOverride::Request& req, mrs_msgs::ConstraintsOverride::Response& res) {
+     441             : 
+     442           1 :   if (!is_initialized_) {
+     443           0 :     return false;
+     444             :   }
+     445             : 
+     446             :   {
+     447           1 :     std::scoped_lock lock(mutex_constraints_override_);
+     448             : 
+     449           1 :     constraints_override_ = req;
+     450             :   }
+     451             : 
+     452           1 :   override_constraints_         = true;
+     453           1 :   constraints_override_updated_ = true;
+     454             : 
+     455           1 :   ROS_INFO_THROTTLE(0.1, "[ConstraintManager]: setting constraints override");
+     456             : 
+     457           1 :   res.message = "override set";
+     458           1 :   res.success = true;
+     459             : 
+     460           1 :   return true;
+     461             : }
+     462             : 
+     463             : //}
+     464             : 
+     465             : // --------------------------------------------------------------
+     466             : // |                           timers                           |
+     467             : // --------------------------------------------------------------
+     468             : 
+     469             : /* timerConstraintManagement() //{ */
+     470             : 
+     471       20917 : void ConstraintManager::timerConstraintManagement(const ros::TimerEvent& event) {
+     472             : 
+     473       20917 :   if (!is_initialized_) {
+     474        4657 :     return;
+     475             :   }
+     476             : 
+     477       41834 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerConstraintManagement", _constraint_management_rate_, 0.01, event);
+     478       41834 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ContraintManager::timerConstraintManagement", scope_timer_logger_, scope_timer_enabled_);
+     479             : 
+     480       20917 :   auto current_constraints = mrs_lib::get_mutexed(mutex_current_constraints_, current_constraints_);
+     481       20917 :   auto last_estimator_name = mrs_lib::get_mutexed(mutex_last_estimator_name_, last_estimator_name_);
+     482             : 
+     483       20917 :   if (!sh_estimation_diag_.hasMsg()) {
+     484        4657 :     return;
+     485             :   }
+     486             : 
+     487       16260 :   auto estimation_diagnostics = sh_estimation_diag_.getMsg();
+     488             : 
+     489             :   // | --- automatically set constraints when the state estimator changes -- |
+     490       16260 :   if (estimation_diagnostics->current_state_estimator != last_estimator_name_) {
+     491             : 
+     492          96 :     ROS_INFO_THROTTLE(1.0, "[ConstraintManager]: the state estimator has changed! %s -> %s", last_estimator_name_.c_str(),
+     493             :                       estimation_diagnostics->current_state_estimator.c_str());
+     494             : 
+     495          96 :     std::map<std::string, std::string>::iterator it;
+     496          96 :     it = _map_type_default_constraints_.find(estimation_diagnostics->current_state_estimator);
+     497             : 
+     498          96 :     if (it == _map_type_default_constraints_.end()) {
+     499             : 
+     500           0 :       ROS_WARN_THROTTLE(1.0, "[ConstraintManager]: the state estimator type '%s' was not specified in the constraint_manager's config!",
+     501             :                         estimation_diagnostics->current_state_estimator.c_str());
+     502             : 
+     503             :     } else {
+     504             : 
+     505             :       // if the current constraints are within the allowed state estimator types, do nothing
+     506          96 :       if (stringInVector(current_constraints, _map_type_allowed_constraints_.at(estimation_diagnostics->current_state_estimator))) {
+     507             : 
+     508           5 :         last_estimator_name = estimation_diagnostics->current_state_estimator;
+     509             : 
+     510             :         // else, try to set the initial constraints
+     511             :       } else {
+     512             : 
+     513          91 :         ROS_WARN_THROTTLE(1.0, "[ConstraintManager]: the current constraints '%s' are not within the allowed constraints for '%s'", current_constraints.c_str(),
+     514             :                           estimation_diagnostics->current_state_estimator.c_str());
+     515             : 
+     516          91 :         if (setConstraints(it->second)) {
+     517             : 
+     518          91 :           last_estimator_name = estimation_diagnostics->current_state_estimator;
+     519             : 
+     520          91 :           ROS_INFO_THROTTLE(1.0, "[ConstraintManager]: constraints set to initial: '%s'", it->second.c_str());
+     521             : 
+     522             :         } else {
+     523             : 
+     524           0 :           ROS_WARN_THROTTLE(1.0, "[ConstraintManager]: could not set constraints!");
+     525             :         }
+     526             :       }
+     527             :     }
+     528             :   }
+     529             : 
+     530       16260 :   if (constraints_override_updated_) {
+     531             : 
+     532           1 :     std::map<std::string, std::string>::iterator it;
+     533           1 :     it = _map_type_default_constraints_.find(last_estimator_name_);
+     534             : 
+     535           1 :     ROS_INFO_THROTTLE(0.1, "[ConstraintManager]: re-setting constraints with user value override");
+     536             : 
+     537           1 :     if (setConstraints(it->second)) {
+     538           1 :       constraints_override_updated_ = false;
+     539             :     } else {
+     540           0 :       ROS_WARN_THROTTLE(1.0, "[ConstraintManager]: could not re-set the constraints!");
+     541             :     }
+     542             :   }
+     543             : 
+     544       16260 :   mrs_lib::set_mutexed(mutex_last_estimator_name_, last_estimator_name, last_estimator_name_);
+     545             : }
+     546             : 
+     547             : //}
+     548             : 
+     549             : /* timerDiagnostics() //{ */
+     550             : 
+     551        2050 : void ConstraintManager::timerDiagnostics(const ros::TimerEvent& event) {
+     552             : 
+     553        2050 :   if (!is_initialized_) {
+     554         451 :     return;
+     555             :   }
+     556             : 
+     557        4100 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerDiagnostics", _diagnostics_rate_, 0.01, event);
+     558        4100 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ContraintManager::timerDiagnostics", scope_timer_logger_, scope_timer_enabled_);
+     559             : 
+     560        2050 :   if (!sh_estimation_diag_.hasMsg()) {
+     561         451 :     ROS_WARN_THROTTLE(10.0, "[ConstraintManager]: can not do constraint management, missing estimation diagnostics!");
+     562         451 :     return;
+     563             :   }
+     564             : 
+     565        1599 :   auto estimation_diagnostics = sh_estimation_diag_.getMsg();
+     566             : 
+     567        1599 :   auto current_constraints = mrs_lib::get_mutexed(mutex_current_constraints_, current_constraints_);
+     568             : 
+     569        1599 :   if (current_constraints == "") {  // this could happend just before timerConstraintManagement() finishes
+     570           0 :     return;
+     571             :   }
+     572             : 
+     573        1599 :   mrs_msgs::ConstraintManagerDiagnostics diagnostics;
+     574             : 
+     575        1599 :   diagnostics.stamp        = ros::Time::now();
+     576        1599 :   diagnostics.current_name = current_constraints;
+     577        1599 :   diagnostics.loaded       = _constraint_names_;
+     578             : 
+     579             :   // get the available constraints
+     580             :   {
+     581        1599 :     std::map<std::string, std::vector<std::string>>::iterator it;
+     582        1599 :     it = _map_type_allowed_constraints_.find(estimation_diagnostics->current_state_estimator);
+     583             : 
+     584        1599 :     if (it == _map_type_allowed_constraints_.end()) {
+     585           0 :       ROS_WARN_THROTTLE(1.0, "[ConstraintManager]: the state estimator '%s' was not specified in the constraint_manager's config!",
+     586             :                         estimation_diagnostics->current_state_estimator.c_str());
+     587             :     } else {
+     588        1599 :       diagnostics.available = it->second;
+     589             :     }
+     590             :   }
+     591             : 
+     592             :   // get the current constraint values
+     593             :   {
+     594        1599 :     std::map<std::string, mrs_msgs::DynamicsConstraintsSrvRequest>::iterator it;
+     595        1599 :     it = _constraints_.find(current_constraints);
+     596             : 
+     597        1599 :     if (it == _constraints_.end()) {
+     598           0 :       ROS_ERROR("[ConstraintManager]: current constraints '%s' not found in the constraint list!", current_constraints.c_str());
+     599           0 :       return;
+     600             :     }
+     601             : 
+     602        1599 :     diagnostics.current_values = it->second.constraints;
+     603             :   }
+     604             : 
+     605        1599 :   ph_diagnostics_.publish(diagnostics);
+     606             : }
+     607             : 
+     608             : //}
+     609             : 
+     610             : // --------------------------------------------------------------
+     611             : // |                          routines                          |
+     612             : // --------------------------------------------------------------
+     613             : 
+     614             : /* stringInVector() //{ */
+     615             : 
+     616        2455 : bool ConstraintManager::stringInVector(const std::string& value, const std::vector<std::string>& vector) {
+     617             : 
+     618        2455 :   if (std::find(vector.begin(), vector.end(), value) == vector.end()) {
+     619          92 :     return false;
+     620             :   } else {
+     621        2363 :     return true;
+     622             :   }
+     623             : }
+     624             : 
+     625             : //}
+     626             : 
+     627             : }  // namespace constraint_manager
+     628             : 
+     629             : }  // namespace mrs_uav_managers
+     630             : 
+     631             : #include <pluginlib/class_list_macros.h>
+     632          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_managers::constraint_manager::ConstraintManager, nodelet::Nodelet)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/constraint_manager.cpp.gcov.overview.html b/mrs_uav_managers/src/constraint_manager.cpp.gcov.overview.html new file mode 100644 index 0000000000..38d8adfdaf --- /dev/null +++ b/mrs_uav_managers/src/constraint_manager.cpp.gcov.overview.html @@ -0,0 +1,178 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/constraint_manager.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_uav_managers/src/constraint_manager.cpp.gcov.png b/mrs_uav_managers/src/constraint_manager.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..03e1afb2d1b810401174bd96ea12ced517ab36aa GIT binary patch literal 2195 zcmV;E2yFL>P);gK@$-!Vnj{XIjUG{3Xx(_-Y{YXEALuN$YLTwIgb@`QsF`q z)))}9Mq5{UCkXpYJ@x+o1meMzM1#Y7#$DI?zM<>+Fif<~+}{HbWm$mTmu6_Ww>Uk{ z1I9oC6e0yFNA(;LqdHG*_94!25YE``nk=;Dc!KdGM+;-Kb{U5n-zlwjm}Rv?CIZi~URO3y+dLXsc$a zlX0w+kfUr@c!pmmgp^w(ly{x9X6){qEFsxE&-5HzsYeq9`ABoH{u0^NF&{ji>5QOx?!A~NxbX}64t#(=w;7e;XP&1 zC1kkRs!dA(Lnr@gLTT6IOUSu;m@1m-D!P=Z-qyC1!S`t7P<1>4 z1MZC@RLrh7MKh%BqE2uM(8%MEeXfg40V&*O???l|p#WGX*Vk>9nbV=NcBxB$q3X>O zka#WivaWESu4!Gf{xcv{0yUW^1SbZ%4F#5rdY(2cak3Q@;5>0YV|7p2uOQ_lt^l<{fZJs&)!~N;2EIeMR)$;}k~#FzjL(5V8RPE^hX4 z;0RwK9(*JKV2kvrCmj`a5 zE2--za>#e~_=->WESqWdVC_`Ylhr;{guEV)_OL=i8wrOg{Qad=`0xqo90^2-Bs^T! z+;C-&3A7+0HNN2E3w)k>lm=2^+ZEn?+L%*#J`@;F(!?ItanY`iCp5J)K+3Mi>*pyn zwkNzc_6>vUhO0Y2CebWX##<9je6$ds#%(&RIOBD9fBMR%u5e;dmKD=xOm)rm6VgJy z5~hq4WdcCQJ=Lu6$|h1$Rq|k8BsRicSCK@zAHQ`0E!U$y|}B*I7E1jcs;M*e)MwVqosOWyRo-F z#X)#J#{}TjKCWRV?(yHAP>1+u#x)w$6*rT5&oK|jbDovVAorfi!QB?`2^E)jIY0cX zvx1bzdlo)yXx>r*x;-?*6Zan9HX*7)^HqX0IyC>n)yIHBvLp}J%`?9t4;LFd4TVBY z?U@vs7I?xtPr6h$`19&DI~vcTHsm)r+m992<2Ui zOC+DP%-|ZpSp|&W^broQE%Ao2D-6!`!Hb||7^)ldM-=Ui|J}sGd1wp^jt_+%nGNjx zbmf^fOEMqjR%L#a_~awMUnoUP zV^nABu{O-dDH_?a7U##cWbJdZDD3=Wn{nfJD#iu-z7k39WARXCJ_;`oMK!x}Tbd~@ zww|Xby)o4JK75{nZrScXfN705-yW4u2It^@y- z)yKW7xI=H|;j7!554GXS@)^toaq2rxeQxw+)`q&-0g&`qA-KmcKhDCN + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/common/common.cpp - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_managers/src/control_manager/common - common.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:23456741.3 %
Date:2024-04-17 23:52:03Functions:213167.7 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::control_manager::getHighestOuput(mrs_uav_managers::control_manager::ControlOutputModalities_t const&)0
mrs_uav_managers::control_manager::validateOdometry(nav_msgs::Odometry_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> >&, double const&, double const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiPositionCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> >&, double const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::control_manager::loadDetailedUavModelParams(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_uav_managers::control_manager::validateHwApiPositionCmd(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)477
mrs_uav_managers::control_manager::validateVelocityReference(mrs_msgs::VelocityReference_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)477
mrs_uav_managers::control_manager::validateHwApiAccelerationHdgRateCmd(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)951
mrs_uav_managers::control_manager::validateHwApiAccelerationHdgCmd(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)964
mrs_uav_managers::control_manager::validateHwApiVelocityHdgCmd(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1185
mrs_uav_managers::control_manager::idxInVector(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&)1422
mrs_uav_managers::control_manager::RCChannelToRange(double, double, double)2220
mrs_uav_managers::control_manager::validateHwApiVelocityHdgRateCmd(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2589
mrs_uav_managers::control_manager::validateHwApiActuatorCmd(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3809
mrs_uav_managers::control_manager::validateHwApiControlGroupCmd(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3824
mrs_uav_managers::control_manager::validateReference(mrs_msgs::Reference_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)10404
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> >&, double const&)14463
mrs_uav_managers::control_manager::initializeDefaultOutput(mrs_uav_managers::control_manager::ControlOutputModalities_t const&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)14463
mrs_uav_managers::control_manager::getLowestOuput(mrs_uav_managers::control_manager::ControlOutputModalities_t const&)14926
mrs_uav_managers::control_manager::validateHwApiAttitudeRateCmd(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)72143
mrs_uav_managers::control_manager::validateTrackerCommand(std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)83711
mrs_uav_managers::control_manager::validateControlOutput(mrs_uav_managers::Controller::ControlOutput const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)93900
mrs_uav_managers::control_manager::validateHwApiAttitudeCmd(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)101856
mrs_uav_managers::control_manager::validateUavState(mrs_msgs::UavState_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)130389
mrs_uav_managers::control_manager::extractThrottle(mrs_uav_managers::Controller::ControlOutput const&)141050
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/src/control_manager/common/common.cpp.func.html b/mrs_uav_managers/src/control_manager/common/common.cpp.func.html new file mode 100644 index 0000000000..636f710cee --- /dev/null +++ b/mrs_uav_managers/src/control_manager/common/common.cpp.func.html @@ -0,0 +1,204 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/common/common.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_managers/src/control_manager/common - common.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:23456741.3 %
Date:2024-04-17 23:52:03Functions:213167.7 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::control_manager::idxInVector(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&)1422
mrs_uav_managers::control_manager::getLowestOuput(mrs_uav_managers::control_manager::ControlOutputModalities_t const&)14926
mrs_uav_managers::control_manager::extractThrottle(mrs_uav_managers::Controller::ControlOutput const&)141050
mrs_uav_managers::control_manager::getHighestOuput(mrs_uav_managers::control_manager::ControlOutputModalities_t const&)0
mrs_uav_managers::control_manager::RCChannelToRange(double, double, double)2220
mrs_uav_managers::control_manager::validateOdometry(nav_msgs::Odometry_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_uav_managers::control_manager::validateUavState(mrs_msgs::UavState_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)130389
mrs_uav_managers::control_manager::validateReference(mrs_msgs::Reference_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)10404
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> >&, double const&, double const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiPositionCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> >&, double const&)14463
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> >&, double const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::control_manager::initializeHwApiCmd(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> >&, mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::control_manager::validateControlOutput(mrs_uav_managers::Controller::ControlOutput const&, mrs_uav_managers::control_manager::ControlOutputModalities_t const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)93900
mrs_uav_managers::control_manager::validateTrackerCommand(std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)83711
mrs_uav_managers::control_manager::initializeDefaultOutput(mrs_uav_managers::control_manager::ControlOutputModalities_t const&, mrs_msgs::UavState_<std::allocator<void> > const&, double const&, double const&)14463
mrs_uav_managers::control_manager::validateHwApiActuatorCmd(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3809
mrs_uav_managers::control_manager::validateHwApiAttitudeCmd(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)101856
mrs_uav_managers::control_manager::validateHwApiPositionCmd(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)477
mrs_uav_managers::control_manager::validateVelocityReference(mrs_msgs::VelocityReference_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)477
mrs_uav_managers::control_manager::loadDetailedUavModelParams(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_uav_managers::control_manager::validateHwApiVelocityHdgCmd(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)1185
mrs_uav_managers::control_manager::validateHwApiAttitudeRateCmd(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)72143
mrs_uav_managers::control_manager::validateHwApiControlGroupCmd(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)3824
mrs_uav_managers::control_manager::validateHwApiAccelerationHdgCmd(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)964
mrs_uav_managers::control_manager::validateHwApiVelocityHdgRateCmd(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)2589
mrs_uav_managers::control_manager::validateHwApiAccelerationHdgRateCmd(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)951
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/src/control_manager/common/common.cpp.gcov.frameset.html b/mrs_uav_managers/src/control_manager/common/common.cpp.gcov.frameset.html new file mode 100644 index 0000000000..41b7eb37bb --- /dev/null +++ b/mrs_uav_managers/src/control_manager/common/common.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/common/common.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_managers/src/control_manager/common/common.cpp.gcov.html b/mrs_uav_managers/src/control_manager/common/common.cpp.gcov.html new file mode 100644 index 0000000000..9358660664 --- /dev/null +++ b/mrs_uav_managers/src/control_manager/common/common.cpp.gcov.html @@ -0,0 +1,1312 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/common/common.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_managers/src/control_manager/common - common.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:23456741.3 %
Date:2024-04-17 23:52:03Functions:213167.7 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #include <mrs_uav_managers/control_manager/common.h>
+       2             : 
+       3             : namespace mrs_uav_managers
+       4             : {
+       5             : 
+       6             : namespace control_manager
+       7             : {
+       8             : 
+       9             : /* idxInVector() //{ */
+      10             : 
+      11        1422 : std::optional<unsigned int> idxInVector(const std::string& str, const std::vector<std::string>& vec) {
+      12             : 
+      13        4007 :   for (unsigned int i = 0; i < vec.size(); i++) {
+      14        4003 :     if (str == vec[i]) {
+      15        1418 :       return {i};
+      16             :     }
+      17             :   }
+      18             : 
+      19           4 :   return {};
+      20             : }
+      21             : 
+      22             : //}
+      23             : 
+      24             : /* validateTrackerCommand() //{ */
+      25             : 
+      26       83711 : bool validateTrackerCommand(const std::optional<mrs_msgs::TrackerCommand>& msg, const std::string& node_name, const std::string& var_name) {
+      27             : 
+      28       83711 :   if (!msg) {
+      29           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: the optional variable '%s' is not set!!!", node_name.c_str(), var_name.c_str());
+      30           0 :     return false;
+      31             :   }
+      32             : 
+      33             :   // check positions
+      34             : 
+      35       83711 :   if (!std::isfinite(msg->position.x)) {
+      36           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->position.x'!!!", node_name.c_str(), var_name.c_str());
+      37           0 :     return false;
+      38             :   }
+      39             : 
+      40       83711 :   if (!std::isfinite(msg->position.y)) {
+      41           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->position.y'!!!", node_name.c_str(), var_name.c_str());
+      42           0 :     return false;
+      43             :   }
+      44             : 
+      45       83711 :   if (!std::isfinite(msg->position.z)) {
+      46           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->position.z'!!!", node_name.c_str(), var_name.c_str());
+      47           0 :     return false;
+      48             :   }
+      49             : 
+      50             :   // check velocities
+      51             : 
+      52       83711 :   if (!std::isfinite(msg->velocity.x)) {
+      53           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->velocity.x'!!!", node_name.c_str(), var_name.c_str());
+      54           0 :     return false;
+      55             :   }
+      56             : 
+      57       83711 :   if (!std::isfinite(msg->velocity.y)) {
+      58           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->velocity.y'!!!", node_name.c_str(), var_name.c_str());
+      59           0 :     return false;
+      60             :   }
+      61             : 
+      62       83711 :   if (!std::isfinite(msg->velocity.z)) {
+      63           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->velocity.z'!!!", node_name.c_str(), var_name.c_str());
+      64           0 :     return false;
+      65             :   }
+      66             : 
+      67             :   // check accelerations
+      68             : 
+      69       83711 :   if (!std::isfinite(msg->acceleration.x)) {
+      70           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->acceleration.x'!!!", node_name.c_str(), var_name.c_str());
+      71           0 :     return false;
+      72             :   }
+      73             : 
+      74       83711 :   if (!std::isfinite(msg->acceleration.y)) {
+      75           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->acceleration.y'!!!", node_name.c_str(), var_name.c_str());
+      76           0 :     return false;
+      77             :   }
+      78             : 
+      79       83711 :   if (!std::isfinite(msg->acceleration.z)) {
+      80           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->acceleration.z'!!!", node_name.c_str(), var_name.c_str());
+      81           0 :     return false;
+      82             :   }
+      83             : 
+      84             :   // check jerk
+      85             : 
+      86       83711 :   if (!std::isfinite(msg->jerk.x)) {
+      87           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->jerk.x'!!!", node_name.c_str(), var_name.c_str());
+      88           0 :     return false;
+      89             :   }
+      90             : 
+      91       83711 :   if (!std::isfinite(msg->jerk.y)) {
+      92           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->jerk.y'!!!", node_name.c_str(), var_name.c_str());
+      93           0 :     return false;
+      94             :   }
+      95             : 
+      96       83711 :   if (!std::isfinite(msg->jerk.z)) {
+      97           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->jerk.z'!!!", node_name.c_str(), var_name.c_str());
+      98           0 :     return false;
+      99             :   }
+     100             : 
+     101             :   // check snap
+     102             : 
+     103       83711 :   if (!std::isfinite(msg->snap.x)) {
+     104           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->snap.x'!!!", node_name.c_str(), var_name.c_str());
+     105           0 :     return false;
+     106             :   }
+     107             : 
+     108       83711 :   if (!std::isfinite(msg->snap.y)) {
+     109           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->snap.y'!!!", node_name.c_str(), var_name.c_str());
+     110           0 :     return false;
+     111             :   }
+     112             : 
+     113       83711 :   if (!std::isfinite(msg->snap.z)) {
+     114           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->snap.z'!!!", node_name.c_str(), var_name.c_str());
+     115           0 :     return false;
+     116             :   }
+     117             : 
+     118             :   // check attitude rate
+     119             : 
+     120       83711 :   if (!std::isfinite(msg->attitude_rate.x)) {
+     121           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->attitude_rate.x'!!!", node_name.c_str(), var_name.c_str());
+     122           0 :     return false;
+     123             :   }
+     124             : 
+     125       83711 :   if (!std::isfinite(msg->attitude_rate.y)) {
+     126           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->attitude_rate.y'!!!", node_name.c_str(), var_name.c_str());
+     127           0 :     return false;
+     128             :   }
+     129             : 
+     130       83711 :   if (!std::isfinite(msg->attitude_rate.z)) {
+     131           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->attitude_rate.z'!!!", node_name.c_str(), var_name.c_str());
+     132           0 :     return false;
+     133             :   }
+     134             : 
+     135             :   // check heading
+     136             : 
+     137       83711 :   if (!std::isfinite(msg->heading)) {
+     138           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->heading'!!!", node_name.c_str(), var_name.c_str());
+     139           0 :     return false;
+     140             :   }
+     141             : 
+     142       83711 :   if (!std::isfinite(msg->heading_rate)) {
+     143           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->heading_rate'!!!", node_name.c_str(), var_name.c_str());
+     144           0 :     return false;
+     145             :   }
+     146             : 
+     147       83711 :   if (!std::isfinite(msg->heading_acceleration)) {
+     148           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->heading_acceleration'!!!", node_name.c_str(), var_name.c_str());
+     149           0 :     return false;
+     150             :   }
+     151             : 
+     152       83711 :   if (!std::isfinite(msg->heading_jerk)) {
+     153           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->heading_jerk'!!!", node_name.c_str(), var_name.c_str());
+     154           0 :     return false;
+     155             :   }
+     156             : 
+     157             :   // check throttle
+     158             : 
+     159       83711 :   if (!std::isfinite(msg->throttle)) {
+     160           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s->throttle'!!!", node_name.c_str(), var_name.c_str());
+     161           0 :     return false;
+     162             :   }
+     163             : 
+     164       83711 :   return true;
+     165             : }
+     166             : 
+     167             : //}
+     168             : 
+     169             : /* validateOdometry() //{ */
+     170             : 
+     171           0 : bool validateOdometry(const nav_msgs::Odometry& msg, const std::string& node_name, const std::string& var_name) {
+     172             : 
+     173             :   // check position
+     174             : 
+     175           0 :   if (!std::isfinite(msg.pose.pose.position.x)) {
+     176           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.pose.position.x'!!!", node_name.c_str(), var_name.c_str());
+     177           0 :     return false;
+     178             :   }
+     179             : 
+     180           0 :   if (!std::isfinite(msg.pose.pose.position.y)) {
+     181           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.pose.position.y'!!!", node_name.c_str(), var_name.c_str());
+     182           0 :     return false;
+     183             :   }
+     184             : 
+     185           0 :   if (!std::isfinite(msg.pose.pose.position.z)) {
+     186           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.pose.position.z'!!!", node_name.c_str(), var_name.c_str());
+     187           0 :     return false;
+     188             :   }
+     189             : 
+     190             :   // check orientation
+     191             : 
+     192           0 :   if (!std::isfinite(msg.pose.pose.orientation.x)) {
+     193           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.pose.orientation.x'!!!", node_name.c_str(), var_name.c_str());
+     194           0 :     return false;
+     195             :   }
+     196             : 
+     197           0 :   if (!std::isfinite(msg.pose.pose.orientation.y)) {
+     198           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.pose.orientation.y'!!!", node_name.c_str(), var_name.c_str());
+     199           0 :     return false;
+     200             :   }
+     201             : 
+     202           0 :   if (!std::isfinite(msg.pose.pose.orientation.z)) {
+     203           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.pose.orientation.z'!!!", node_name.c_str(), var_name.c_str());
+     204           0 :     return false;
+     205             :   }
+     206             : 
+     207           0 :   if (!std::isfinite(msg.pose.pose.orientation.w)) {
+     208           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.pose.orientation.w'!!!", node_name.c_str(), var_name.c_str());
+     209           0 :     return false;
+     210             :   }
+     211             : 
+     212             :   // check velocity
+     213             : 
+     214           0 :   if (!std::isfinite(msg.twist.twist.linear.x)) {
+     215           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.twist.twist.linear.x'!!!", node_name.c_str(), var_name.c_str());
+     216           0 :     return false;
+     217             :   }
+     218             : 
+     219           0 :   if (!std::isfinite(msg.twist.twist.linear.y)) {
+     220           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.twist.twist.linear.y'!!!", node_name.c_str(), var_name.c_str());
+     221           0 :     return false;
+     222             :   }
+     223             : 
+     224           0 :   if (!std::isfinite(msg.twist.twist.linear.z)) {
+     225           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.twist.twist.linear.z'!!!", node_name.c_str(), var_name.c_str());
+     226           0 :     return false;
+     227             :   }
+     228             : 
+     229           0 :   return true;
+     230             : }
+     231             : 
+     232             : //}
+     233             : 
+     234             : /* validateVelocityReference() //{ */
+     235             : 
+     236         477 : bool validateVelocityReference(const mrs_msgs::VelocityReference& msg, const std::string& node_name, const std::string& var_name) {
+     237             : 
+     238             :   // check velocity
+     239             : 
+     240         477 :   if (!std::isfinite(msg.velocity.x)) {
+     241           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.x'!!!", node_name.c_str(), var_name.c_str());
+     242           0 :     return false;
+     243             :   }
+     244             : 
+     245         477 :   if (!std::isfinite(msg.velocity.y)) {
+     246           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.y'!!!", node_name.c_str(), var_name.c_str());
+     247           0 :     return false;
+     248             :   }
+     249             : 
+     250         477 :   if (!std::isfinite(msg.velocity.z)) {
+     251           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.z'!!!", node_name.c_str(), var_name.c_str());
+     252           0 :     return false;
+     253             :   }
+     254             : 
+     255         477 :   if (!std::isfinite(msg.altitude)) {
+     256           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.altitude'!!!", node_name.c_str(), var_name.c_str());
+     257           0 :     return false;
+     258             :   }
+     259             : 
+     260         477 :   if (!std::isfinite(msg.heading)) {
+     261           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.heading'!!!", node_name.c_str(), var_name.c_str());
+     262           0 :     return false;
+     263             :   }
+     264             : 
+     265         477 :   if (!std::isfinite(msg.heading_rate)) {
+     266           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.heading_rate'!!!", node_name.c_str(), var_name.c_str());
+     267           0 :     return false;
+     268             :   }
+     269             : 
+     270         477 :   return true;
+     271             : }
+     272             : 
+     273             : //}
+     274             : 
+     275             : /* validateReference() //{ */
+     276             : 
+     277       10404 : bool validateReference(const mrs_msgs::Reference& msg, const std::string& node_name, const std::string& var_name) {
+     278             : 
+     279             :   // check position
+     280             : 
+     281       10404 :   if (!std::isfinite(msg.position.x)) {
+     282           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.position.x'!!!", node_name.c_str(), var_name.c_str());
+     283           0 :     return false;
+     284             :   }
+     285             : 
+     286       10404 :   if (!std::isfinite(msg.position.y)) {
+     287           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.position.y'!!!", node_name.c_str(), var_name.c_str());
+     288           0 :     return false;
+     289             :   }
+     290             : 
+     291       10404 :   if (!std::isfinite(msg.position.z)) {
+     292           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.position.z'!!!", node_name.c_str(), var_name.c_str());
+     293           0 :     return false;
+     294             :   }
+     295             : 
+     296             :   // check heading
+     297             : 
+     298       10404 :   if (!std::isfinite(msg.heading)) {
+     299           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.heading'!!!", node_name.c_str(), var_name.c_str());
+     300           0 :     return false;
+     301             :   }
+     302             : 
+     303       10404 :   return true;
+     304             : }
+     305             : 
+     306             : //}
+     307             : 
+     308             : /* validateUavState() //{ */
+     309             : 
+     310      130389 : bool validateUavState(const mrs_msgs::UavState& msg, const std::string& node_name, const std::string& var_name) {
+     311             : 
+     312             :   // check position
+     313             : 
+     314      130389 :   if (!std::isfinite(msg.pose.position.x)) {
+     315           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.position.x'!!!", node_name.c_str(), var_name.c_str());
+     316           0 :     return false;
+     317             :   }
+     318             : 
+     319      130389 :   if (!std::isfinite(msg.pose.position.y)) {
+     320           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.position.y'!!!", node_name.c_str(), var_name.c_str());
+     321           0 :     return false;
+     322             :   }
+     323             : 
+     324      130389 :   if (!std::isfinite(msg.pose.position.z)) {
+     325           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.position.z'!!!", node_name.c_str(), var_name.c_str());
+     326           0 :     return false;
+     327             :   }
+     328             : 
+     329             :   // check orientation
+     330             : 
+     331      130389 :   if (!std::isfinite(msg.pose.orientation.x)) {
+     332           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.orientation.x'!!!", node_name.c_str(), var_name.c_str());
+     333           0 :     return false;
+     334             :   }
+     335             : 
+     336      130389 :   if (!std::isfinite(msg.pose.orientation.y)) {
+     337           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.orientation.y'!!!", node_name.c_str(), var_name.c_str());
+     338           0 :     return false;
+     339             :   }
+     340             : 
+     341      130389 :   if (!std::isfinite(msg.pose.orientation.z)) {
+     342           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.orientation.z'!!!", node_name.c_str(), var_name.c_str());
+     343           0 :     return false;
+     344             :   }
+     345             : 
+     346      130389 :   if (!std::isfinite(msg.pose.orientation.w)) {
+     347           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pose.orientation.w'!!!", node_name.c_str(), var_name.c_str());
+     348           0 :     return false;
+     349             :   }
+     350             : 
+     351             :   // check linear velocity
+     352             : 
+     353      130389 :   if (!std::isfinite(msg.velocity.linear.x)) {
+     354           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.linear.x'!!!", node_name.c_str(), var_name.c_str());
+     355           0 :     return false;
+     356             :   }
+     357             : 
+     358      130389 :   if (!std::isfinite(msg.velocity.linear.y)) {
+     359           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.linear.y'!!!", node_name.c_str(), var_name.c_str());
+     360           0 :     return false;
+     361             :   }
+     362             : 
+     363      130389 :   if (!std::isfinite(msg.velocity.linear.z)) {
+     364           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.linear.z'!!!", node_name.c_str(), var_name.c_str());
+     365           0 :     return false;
+     366             :   }
+     367             : 
+     368             :   // check angular velocity
+     369             : 
+     370      130389 :   if (!std::isfinite(msg.velocity.angular.x)) {
+     371           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.angular.x'!!!", node_name.c_str(), var_name.c_str());
+     372           0 :     return false;
+     373             :   }
+     374             : 
+     375      130389 :   if (!std::isfinite(msg.velocity.angular.y)) {
+     376           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.angular.y'!!!", node_name.c_str(), var_name.c_str());
+     377           0 :     return false;
+     378             :   }
+     379             : 
+     380      130389 :   if (!std::isfinite(msg.velocity.angular.z)) {
+     381           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.angular.z'!!!", node_name.c_str(), var_name.c_str());
+     382           0 :     return false;
+     383             :   }
+     384             : 
+     385             :   // check linear acceleration
+     386             : 
+     387      130389 :   if (!std::isfinite(msg.acceleration.linear.x)) {
+     388           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.linear.x'!!!", node_name.c_str(), var_name.c_str());
+     389           0 :     return false;
+     390             :   }
+     391             : 
+     392      130389 :   if (!std::isfinite(msg.acceleration.linear.y)) {
+     393           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.linear.y'!!!", node_name.c_str(), var_name.c_str());
+     394           0 :     return false;
+     395             :   }
+     396             : 
+     397      130389 :   if (!std::isfinite(msg.acceleration.linear.z)) {
+     398           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.linear.z'!!!", node_name.c_str(), var_name.c_str());
+     399           0 :     return false;
+     400             :   }
+     401             : 
+     402             :   // check angular acceleration
+     403             : 
+     404      130389 :   if (!std::isfinite(msg.acceleration.angular.x)) {
+     405           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.angular.x'!!!", node_name.c_str(), var_name.c_str());
+     406           0 :     return false;
+     407             :   }
+     408             : 
+     409      130389 :   if (!std::isfinite(msg.acceleration.angular.y)) {
+     410           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.angular.y'!!!", node_name.c_str(), var_name.c_str());
+     411           0 :     return false;
+     412             :   }
+     413             : 
+     414      130389 :   if (!std::isfinite(msg.acceleration.angular.z)) {
+     415           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.angular.z'!!!", node_name.c_str(), var_name.c_str());
+     416           0 :     return false;
+     417             :   }
+     418             : 
+     419             :   // check acceleration angular disturbance
+     420             : 
+     421      130389 :   if (!std::isfinite(msg.acceleration_disturbance.angular.x)) {
+     422           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration_disturbance.angular.x'!!!", node_name.c_str(), var_name.c_str());
+     423           0 :     return false;
+     424             :   }
+     425             : 
+     426      130389 :   if (!std::isfinite(msg.acceleration_disturbance.angular.y)) {
+     427           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration_disturbance.angular.y'!!!", node_name.c_str(), var_name.c_str());
+     428           0 :     return false;
+     429             :   }
+     430             : 
+     431      130389 :   if (!std::isfinite(msg.acceleration_disturbance.angular.z)) {
+     432           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration_disturbance.angular.z'!!!", node_name.c_str(), var_name.c_str());
+     433           0 :     return false;
+     434             :   }
+     435             : 
+     436             :   // check acceleration linear disturbance
+     437             : 
+     438      130389 :   if (!std::isfinite(msg.acceleration_disturbance.linear.x)) {
+     439           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration_disturbance.linear.x'!!!", node_name.c_str(), var_name.c_str());
+     440           0 :     return false;
+     441             :   }
+     442             : 
+     443      130389 :   if (!std::isfinite(msg.acceleration_disturbance.linear.y)) {
+     444           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration_disturbance.linear.y'!!!", node_name.c_str(), var_name.c_str());
+     445           0 :     return false;
+     446             :   }
+     447             : 
+     448      130389 :   if (!std::isfinite(msg.acceleration_disturbance.linear.z)) {
+     449           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration_disturbance.linear.z'!!!", node_name.c_str(), var_name.c_str());
+     450           0 :     return false;
+     451             :   }
+     452             : 
+     453      130389 :   return true;
+     454             : }
+     455             : 
+     456             : //}
+     457             : 
+     458             : /* RCChannelToRange() //{ */
+     459             : 
+     460        2220 : double RCChannelToRange(double rc_value, double range, double deadband) {
+     461             : 
+     462        2220 :   double tmp_neg1_to_1 = (rc_value - 0.5) * 2.0;
+     463             : 
+     464        2220 :   if (tmp_neg1_to_1 > 1.0) {
+     465           0 :     tmp_neg1_to_1 = 1.0;
+     466        2220 :   } else if (tmp_neg1_to_1 < -1.0) {
+     467           0 :     tmp_neg1_to_1 = -1.0;
+     468             :   }
+     469             : 
+     470             :   // check the deadband
+     471        2220 :   if (tmp_neg1_to_1 < deadband && tmp_neg1_to_1 > -deadband) {
+     472        1743 :     return 0.0;
+     473             :   }
+     474             : 
+     475         477 :   if (tmp_neg1_to_1 > 0) {
+     476             : 
+     477         267 :     double tmp = (tmp_neg1_to_1 - deadband) / (1.0 - deadband);
+     478             : 
+     479         267 :     return range * tmp;
+     480             : 
+     481             :   } else {
+     482             : 
+     483         210 :     double tmp = (-tmp_neg1_to_1 - deadband) / (1.0 - deadband);
+     484             : 
+     485         210 :     return -range * tmp;
+     486             :   }
+     487             : 
+     488             :   return 0.0;
+     489             : }
+     490             : 
+     491             : //}
+     492             : 
+     493             : /* loadDetailedUavModelParams() //{ */
+     494             : 
+     495          91 : std::optional<DetailedModelParams_t> loadDetailedUavModelParams(ros::NodeHandle& nh, const std::string& node_name, const std::string& platform_config,
+     496             :                                                                 const std::string& custom_config) {
+     497             : 
+     498         182 :   mrs_lib::ParamLoader param_loader(nh, node_name);
+     499             : 
+     500          91 :   if (custom_config != "") {
+     501          91 :     param_loader.addYamlFile(custom_config);
+     502             :   }
+     503             : 
+     504          91 :   if (platform_config != "") {
+     505          91 :     param_loader.addYamlFile(platform_config);
+     506             :   }
+     507             : 
+     508             :   double mass;
+     509             :   double arm_length;
+     510             :   double body_height;
+     511             :   double force_constant;
+     512             :   double torque_constant;
+     513             :   double prop_radius;
+     514             :   double rpm_min;
+     515             :   double rpm_max;
+     516             : 
+     517          91 :   bool detailed_loaded = true;
+     518             : 
+     519          91 :   detailed_loaded *= param_loader.loadParam("uav_mass", mass, 0.0);
+     520             : 
+     521          91 :   detailed_loaded *= param_loader.loadParam("model_params/arm_length", arm_length, 0.0);
+     522          91 :   detailed_loaded *= param_loader.loadParam("model_params/body_height", body_height, 0.0);
+     523             : 
+     524          91 :   detailed_loaded *= param_loader.loadParam("model_params/propulsion/force_constant", force_constant, 0.0);
+     525          91 :   detailed_loaded *= param_loader.loadParam("model_params/propulsion/torque_constant", torque_constant, 0.0);
+     526          91 :   detailed_loaded *= param_loader.loadParam("model_params/propulsion/prop_radius", prop_radius, 0.0);
+     527          91 :   detailed_loaded *= param_loader.loadParam("model_params/propulsion/rpm/min", rpm_min, 0.0);
+     528          91 :   detailed_loaded *= param_loader.loadParam("model_params/propulsion/rpm/max", rpm_max, 0.0);
+     529             : 
+     530         182 :   Eigen::MatrixXd allocation_matrix;
+     531             : 
+     532          91 :   detailed_loaded *= param_loader.loadMatrixDynamic("model_params/propulsion/allocation_matrix", allocation_matrix, Eigen::Matrix4d::Identity(), 4, -1);
+     533             : 
+     534          91 :   if (!detailed_loaded) {
+     535           0 :     ROS_WARN(
+     536             :         "[%s]: detailed UAV model params not loaded, missing some parameters. This will not permit operations when ACTUATORS or CONTROL_GROUP control "
+     537             :         "outputs would be possible.",
+     538             :         node_name.c_str());
+     539           0 :     return {};
+     540             :   } else {
+     541          91 :     ROS_INFO("[%s]: detailed UAV model params successfully loaded.", node_name.c_str());
+     542             :   }
+     543             : 
+     544          91 :   int n_motors = allocation_matrix.cols();
+     545             : 
+     546         182 :   DetailedModelParams_t model_params;
+     547             : 
+     548          91 :   model_params.arm_length  = arm_length;
+     549          91 :   model_params.body_height = body_height;
+     550          91 :   model_params.prop_radius = prop_radius;
+     551             : 
+     552          91 :   Eigen::Matrix3d inertia_matrix;
+     553             : 
+     554          91 :   bool inertia_loaded = param_loader.loadMatrixStatic("model_params/inertia_matrix", inertia_matrix, Eigen::Matrix3d::Identity());
+     555             : 
+     556          91 :   if (inertia_loaded) {
+     557             : 
+     558           0 :     model_params.inertia = inertia_matrix;
+     559           0 :     ROS_INFO("[%s]: inertia matrix loaded from config file:", node_name.c_str());
+     560           0 :     ROS_INFO_STREAM(model_params.inertia);
+     561             : 
+     562             :   } else {
+     563             : 
+     564          91 :     ROS_INFO("[%s]: inertia matrix missing in the config file, computing it from the other params.", node_name.c_str());
+     565             : 
+     566             :     // create the inertia matrix
+     567          91 :     model_params.inertia       = Eigen::Matrix3d::Zero();
+     568          91 :     model_params.inertia(0, 0) = mass * (3.0 * arm_length * arm_length + body_height * body_height) / 12.0;
+     569          91 :     model_params.inertia(1, 1) = mass * (3.0 * arm_length * arm_length + body_height * body_height) / 12.0;
+     570          91 :     model_params.inertia(2, 2) = (mass * arm_length * arm_length) / 2.0;
+     571             : 
+     572          91 :     ROS_INFO("[%s]: inertia computed form parameters:", node_name.c_str());
+     573          91 :     ROS_INFO_STREAM(model_params.inertia);
+     574             :   }
+     575             : 
+     576             :   // create the force-torque allocation matrix
+     577          91 :   model_params.force_torque_mixer = allocation_matrix;
+     578          91 :   model_params.force_torque_mixer.row(0) *= arm_length * force_constant;
+     579          91 :   model_params.force_torque_mixer.row(1) *= arm_length * force_constant;
+     580          91 :   model_params.force_torque_mixer.row(2) *= torque_constant * (3.0 * prop_radius) * force_constant;
+     581          91 :   model_params.force_torque_mixer.row(3) *= force_constant;
+     582             : 
+     583             :   // | ------- create the control group allocation matrix ------- |
+     584             : 
+     585             :   // pseudoinverse of the force-torque matrix (maximum norm)
+     586             :   Eigen::MatrixXd alloc_tmp =
+     587         182 :       model_params.force_torque_mixer.transpose() * (model_params.force_torque_mixer * model_params.force_torque_mixer.transpose()).inverse();
+     588             : 
+     589             :   // | ------------- normalize the allocation matrix ------------ |
+     590             :   // this will make it match the PX4 control group mixing
+     591             : 
+     592             :   // the first two columns (roll, pitch)
+     593         461 :   for (int i = 0; i < n_motors; i++) {
+     594         370 :     alloc_tmp.block(i, 0, 1, 2).normalize();
+     595             :   }
+     596             : 
+     597             :   // the 3rd column (yaw)
+     598         461 :   for (int i = 0; i < n_motors; i++) {
+     599         370 :     if (alloc_tmp(i, 2) > 1e-2) {
+     600         185 :       alloc_tmp(i, 2) = 1.0;
+     601         185 :     } else if (alloc_tmp(i, 2) < -1e-2) {
+     602         185 :       alloc_tmp(i, 2) = -1.0;
+     603             :     } else {
+     604           0 :       alloc_tmp(i, 2) = 0.0;
+     605             :     }
+     606             :   }
+     607             : 
+     608             :   // the 4th column (throttle)
+     609         461 :   for (int i = 0; i < n_motors; i++) {
+     610         370 :     alloc_tmp(i, 3) = 1.0;
+     611             :   }
+     612             : 
+     613          91 :   model_params.control_group_mixer = alloc_tmp;
+     614             : 
+     615          91 :   return model_params;
+     616             : }
+     617             : 
+     618             : //}
+     619             : 
+     620             : /* getLowestOutput() //{ */
+     621             : 
+     622       14926 : CONTROL_OUTPUT getLowestOuput(const ControlOutputModalities_t& outputs) {
+     623             : 
+     624       14926 :   if (outputs.actuators) {
+     625          16 :     return ACTUATORS_CMD;
+     626             :   }
+     627             : 
+     628       14910 :   if (outputs.control_group) {
+     629          16 :     return CONTROL_GROUP;
+     630             :   }
+     631             : 
+     632       14894 :   if (outputs.attitude_rate) {
+     633       14787 :     return ATTITUDE_RATE;
+     634             :   }
+     635             : 
+     636         107 :   if (outputs.attitude) {
+     637          16 :     return ATTITUDE;
+     638             :   }
+     639             : 
+     640          91 :   if (outputs.acceleration_hdg_rate) {
+     641          10 :     return ACCELERATION_HDG_RATE;
+     642             :   }
+     643             : 
+     644          81 :   if (outputs.acceleration_hdg) {
+     645          10 :     return ACCELERATION_HDG;
+     646             :   }
+     647             : 
+     648          71 :   if (outputs.velocity_hdg_rate) {
+     649          41 :     return VELOCITY_HDG_RATE;
+     650             :   }
+     651             : 
+     652          30 :   if (outputs.velocity_hdg) {
+     653          20 :     return VELOCITY_HDG;
+     654             :   }
+     655             : 
+     656          10 :   return POSITION;
+     657             : }
+     658             : 
+     659             : //}
+     660             : 
+     661             : /* getHighestOutput() //{ */
+     662             : 
+     663           0 : CONTROL_OUTPUT getHighestOuput(const ControlOutputModalities_t& outputs) {
+     664             : 
+     665           0 :   if (outputs.position) {
+     666           0 :     return POSITION;
+     667             :   }
+     668             : 
+     669           0 :   if (outputs.velocity_hdg) {
+     670           0 :     return VELOCITY_HDG;
+     671             :   }
+     672             : 
+     673           0 :   if (outputs.velocity_hdg_rate) {
+     674           0 :     return VELOCITY_HDG_RATE;
+     675             :   }
+     676             : 
+     677           0 :   if (outputs.acceleration_hdg) {
+     678           0 :     return ACCELERATION_HDG;
+     679             :   }
+     680             : 
+     681           0 :   if (outputs.acceleration_hdg_rate) {
+     682           0 :     return ACCELERATION_HDG_RATE;
+     683             :   }
+     684             : 
+     685           0 :   if (outputs.attitude) {
+     686           0 :     return ATTITUDE;
+     687             :   }
+     688             : 
+     689           0 :   if (outputs.attitude_rate) {
+     690           0 :     return ATTITUDE_RATE;
+     691             :   }
+     692             : 
+     693           0 :   if (outputs.control_group) {
+     694           0 :     return CONTROL_GROUP;
+     695             :   }
+     696             : 
+     697           0 :   return ACTUATORS_CMD;
+     698             : }
+     699             : 
+     700             : //}
+     701             : 
+     702             : // | -------- extraction of throttle out of hw api cmds ------- |
+     703             : 
+     704             : /* extractThrottle() //{ */
+     705             : 
+     706      141050 : std::optional<double> extractThrottle(const Controller::ControlOutput& control_output) {
+     707             : 
+     708      141050 :   if (!control_output.control_output) {
+     709       21150 :     return {};
+     710             :   }
+     711             : 
+     712      239800 :   return std::visit(HwApiCmdExtractThrottleVisitor(), control_output.control_output.value());
+     713             : }
+     714             : 
+     715             : //}
+     716             : 
+     717             : // | -------------- validation of HW api commands ------------- |
+     718             : 
+     719             : /* validateControlOutput() //{ */
+     720             : 
+     721       93900 : bool validateControlOutput(const Controller::ControlOutput& control_output, const ControlOutputModalities_t& output_modalities, const std::string& node_name,
+     722             :                            const std::string& var_name) {
+     723             : 
+     724       93900 :   if (!control_output.control_output) {
+     725           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: the optional variable '%s' is not set!!!", node_name.c_str(), var_name.c_str());
+     726           0 :     return false;
+     727             :   }
+     728             : 
+     729       93900 :   std::variant<ControlOutputModalities_t> output_modalities_var{output_modalities};
+     730      187800 :   std::variant<std::string>               node_name_var{node_name};
+     731       93900 :   std::variant<std::string>               var_name_var{var_name};
+     732             : 
+     733       93900 :   return std::visit(HwApiValidateVisitor(), control_output.control_output.value(), output_modalities_var, node_name_var, var_name_var);
+     734             : }
+     735             : 
+     736             : //}
+     737             : 
+     738             : /* validateHwApiActuatorCmd() //{ */
+     739             : 
+     740        3809 : bool validateHwApiActuatorCmd(const mrs_msgs::HwApiActuatorCmd& msg, const std::string& node_name, const std::string& var_name) {
+     741             : 
+     742       19045 :   for (size_t i = 0; i < msg.motors.size(); i++) {
+     743       15236 :     if (!std::isfinite(msg.motors[i])) {
+     744           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.motors[%d]'!!!", node_name.c_str(), var_name.c_str(), int(i));
+     745           0 :       return false;
+     746             :     }
+     747             :   }
+     748             : 
+     749        3809 :   return true;
+     750             : }
+     751             : 
+     752             : //}
+     753             : 
+     754             : /* validateHwApiControlGroupCmd() //{ */
+     755             : 
+     756        3824 : bool validateHwApiControlGroupCmd(const mrs_msgs::HwApiControlGroupCmd& msg, const std::string& node_name, const std::string& var_name) {
+     757             : 
+     758        3824 :   if (!std::isfinite(msg.roll)) {
+     759           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.roll'!!!", node_name.c_str(), var_name.c_str());
+     760           0 :     return false;
+     761             :   }
+     762             : 
+     763        3824 :   if (!std::isfinite(msg.pitch)) {
+     764           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.pitch'!!!", node_name.c_str(), var_name.c_str());
+     765           0 :     return false;
+     766             :   }
+     767             : 
+     768        3824 :   if (!std::isfinite(msg.yaw)) {
+     769           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.yaw'!!!", node_name.c_str(), var_name.c_str());
+     770           0 :     return false;
+     771             :   }
+     772             : 
+     773        3824 :   if (!std::isfinite(msg.throttle)) {
+     774           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.throttle'!!!", node_name.c_str(), var_name.c_str());
+     775           0 :     return false;
+     776             :   }
+     777             : 
+     778        3824 :   return true;
+     779             : }
+     780             : 
+     781             : //}
+     782             : 
+     783             : /* validateHwApiAttitudeCmd() //{ */
+     784             : 
+     785      101856 : bool validateHwApiAttitudeCmd(const mrs_msgs::HwApiAttitudeCmd& msg, const std::string& node_name, const std::string& var_name) {
+     786             : 
+     787             :   // check the orientation
+     788             : 
+     789      101856 :   if (!std::isfinite(msg.orientation.x)) {
+     790           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.orientation.x'!!!", node_name.c_str(), var_name.c_str());
+     791           0 :     return false;
+     792             :   }
+     793             : 
+     794      101856 :   if (!std::isfinite(msg.orientation.y)) {
+     795           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.orientation.y'!!!", node_name.c_str(), var_name.c_str());
+     796           0 :     return false;
+     797             :   }
+     798             : 
+     799      101856 :   if (!std::isfinite(msg.orientation.z)) {
+     800           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.orientation.z'!!!", node_name.c_str(), var_name.c_str());
+     801           0 :     return false;
+     802             :   }
+     803             : 
+     804      101856 :   if (!std::isfinite(msg.orientation.w)) {
+     805           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.orientation.w'!!!", node_name.c_str(), var_name.c_str());
+     806           0 :     return false;
+     807             :   }
+     808             : 
+     809             :   // check the throttle
+     810             : 
+     811      101856 :   if (!std::isfinite(msg.throttle)) {
+     812           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.throttle'!!!", node_name.c_str(), var_name.c_str());
+     813           0 :     return false;
+     814             :   }
+     815             : 
+     816      101856 :   return true;
+     817             : }
+     818             : 
+     819             : //}
+     820             : 
+     821             : /* validateHwApiAttitudeRateCmd() //{ */
+     822             : 
+     823       72143 : bool validateHwApiAttitudeRateCmd(const mrs_msgs::HwApiAttitudeRateCmd& msg, const std::string& node_name, const std::string& var_name) {
+     824             : 
+     825             :   // check the body rate
+     826             : 
+     827       72143 :   if (!std::isfinite(msg.body_rate.x)) {
+     828           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.body_rate.x'!!!", node_name.c_str(), var_name.c_str());
+     829           0 :     return false;
+     830             :   }
+     831             : 
+     832       72143 :   if (!std::isfinite(msg.body_rate.y)) {
+     833           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.body_rate.y'!!!", node_name.c_str(), var_name.c_str());
+     834           0 :     return false;
+     835             :   }
+     836             : 
+     837       72143 :   if (!std::isfinite(msg.body_rate.z)) {
+     838           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.body_rate.z'!!!", node_name.c_str(), var_name.c_str());
+     839           0 :     return false;
+     840             :   }
+     841             : 
+     842             :   // check the throttle
+     843             : 
+     844       72143 :   if (!std::isfinite(msg.throttle)) {
+     845           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.throttle'!!!", node_name.c_str(), var_name.c_str());
+     846           0 :     return false;
+     847             :   }
+     848             : 
+     849       72143 :   return true;
+     850             : }
+     851             : 
+     852             : //}
+     853             : 
+     854             : /* validateHwApiAccelerationHdgRateCmd() //{ */
+     855             : 
+     856         951 : bool validateHwApiAccelerationHdgRateCmd(const mrs_msgs::HwApiAccelerationHdgRateCmd& msg, const std::string& node_name, const std::string& var_name) {
+     857             : 
+     858             :   // | ----------------- check the acceleration ----------------- |
+     859             : 
+     860         951 :   if (!std::isfinite(msg.acceleration.x)) {
+     861           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.x'!!!", node_name.c_str(), var_name.c_str());
+     862           0 :     return false;
+     863             :   }
+     864             : 
+     865         951 :   if (!std::isfinite(msg.acceleration.y)) {
+     866           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.y'!!!", node_name.c_str(), var_name.c_str());
+     867           0 :     return false;
+     868             :   }
+     869             : 
+     870         951 :   if (!std::isfinite(msg.acceleration.z)) {
+     871           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.z'!!!", node_name.c_str(), var_name.c_str());
+     872           0 :     return false;
+     873             :   }
+     874             : 
+     875             :   // check the heading rate
+     876             : 
+     877         951 :   if (!std::isfinite(msg.heading_rate)) {
+     878           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.heading_rate'!!!", node_name.c_str(), var_name.c_str());
+     879           0 :     return false;
+     880             :   }
+     881             : 
+     882         951 :   return true;
+     883             : }
+     884             : 
+     885             : //}
+     886             : 
+     887             : /* validateHwApiAccelerationHdgCmd() //{ */
+     888             : 
+     889         964 : bool validateHwApiAccelerationHdgCmd(const mrs_msgs::HwApiAccelerationHdgCmd& msg, const std::string& node_name, const std::string& var_name) {
+     890             : 
+     891             :   // | ----------------- check the acceleration ----------------- |
+     892             : 
+     893         964 :   if (!std::isfinite(msg.acceleration.x)) {
+     894           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.x'!!!", node_name.c_str(), var_name.c_str());
+     895           0 :     return false;
+     896             :   }
+     897             : 
+     898         964 :   if (!std::isfinite(msg.acceleration.y)) {
+     899           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.y'!!!", node_name.c_str(), var_name.c_str());
+     900           0 :     return false;
+     901             :   }
+     902             : 
+     903         964 :   if (!std::isfinite(msg.acceleration.z)) {
+     904           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.acceleration.z'!!!", node_name.c_str(), var_name.c_str());
+     905           0 :     return false;
+     906             :   }
+     907             : 
+     908             :   // check the heading
+     909             : 
+     910         964 :   if (!std::isfinite(msg.heading)) {
+     911           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.heading'!!!", node_name.c_str(), var_name.c_str());
+     912           0 :     return false;
+     913             :   }
+     914             : 
+     915         964 :   return true;
+     916             : }
+     917             : 
+     918             : //}
+     919             : 
+     920             : /* validateHwApiVelocityHdgRateCmd() //{ */
+     921             : 
+     922        2589 : bool validateHwApiVelocityHdgRateCmd(const mrs_msgs::HwApiVelocityHdgRateCmd& msg, const std::string& node_name, const std::string& var_name) {
+     923             : 
+     924             :   // | ----------------- check the velocity ----------------- |
+     925             : 
+     926        2589 :   if (!std::isfinite(msg.velocity.x)) {
+     927           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.x'!!!", node_name.c_str(), var_name.c_str());
+     928           0 :     return false;
+     929             :   }
+     930             : 
+     931        2589 :   if (!std::isfinite(msg.velocity.y)) {
+     932           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.y'!!!", node_name.c_str(), var_name.c_str());
+     933           0 :     return false;
+     934             :   }
+     935             : 
+     936        2589 :   if (!std::isfinite(msg.velocity.z)) {
+     937           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.z'!!!", node_name.c_str(), var_name.c_str());
+     938           0 :     return false;
+     939             :   }
+     940             : 
+     941             :   // check the heading rate
+     942             : 
+     943        2589 :   if (!std::isfinite(msg.heading_rate)) {
+     944           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.heading_rate'!!!", node_name.c_str(), var_name.c_str());
+     945           0 :     return false;
+     946             :   }
+     947             : 
+     948        2589 :   return true;
+     949             : }
+     950             : 
+     951             : //}
+     952             : 
+     953             : /* validateHwApiVelocityHdgCmd() //{ */
+     954             : 
+     955        1185 : bool validateHwApiVelocityHdgCmd(const mrs_msgs::HwApiVelocityHdgCmd& msg, const std::string& node_name, const std::string& var_name) {
+     956             : 
+     957             :   // | ----------------- check the velocity ----------------- |
+     958             : 
+     959        1185 :   if (!std::isfinite(msg.velocity.x)) {
+     960           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.x'!!!", node_name.c_str(), var_name.c_str());
+     961           0 :     return false;
+     962             :   }
+     963             : 
+     964        1185 :   if (!std::isfinite(msg.velocity.y)) {
+     965           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.y'!!!", node_name.c_str(), var_name.c_str());
+     966           0 :     return false;
+     967             :   }
+     968             : 
+     969        1185 :   if (!std::isfinite(msg.velocity.z)) {
+     970           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.velocity.z'!!!", node_name.c_str(), var_name.c_str());
+     971           0 :     return false;
+     972             :   }
+     973             : 
+     974             :   // check the heading
+     975             : 
+     976        1185 :   if (!std::isfinite(msg.heading)) {
+     977           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.heading'!!!", node_name.c_str(), var_name.c_str());
+     978           0 :     return false;
+     979             :   }
+     980             : 
+     981        1185 :   return true;
+     982             : }
+     983             : 
+     984             : //}
+     985             : 
+     986             : /* validateHwApiPositionHdgCmd() //{ */
+     987             : 
+     988         477 : bool validateHwApiPositionCmd(const mrs_msgs::HwApiPositionCmd& msg, const std::string& node_name, const std::string& var_name) {
+     989             : 
+     990             :   // | ----------------- check the position ----------------- |
+     991             : 
+     992         477 :   if (!std::isfinite(msg.position.x)) {
+     993           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.position.x'!!!", node_name.c_str(), var_name.c_str());
+     994           0 :     return false;
+     995             :   }
+     996             : 
+     997         477 :   if (!std::isfinite(msg.position.y)) {
+     998           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.position.y'!!!", node_name.c_str(), var_name.c_str());
+     999           0 :     return false;
+    1000             :   }
+    1001             : 
+    1002         477 :   if (!std::isfinite(msg.position.z)) {
+    1003           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.position.z'!!!", node_name.c_str(), var_name.c_str());
+    1004           0 :     return false;
+    1005             :   }
+    1006             : 
+    1007             :   // check the heading
+    1008             : 
+    1009         477 :   if (!std::isfinite(msg.heading)) {
+    1010           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in variable '%s.heading'!!!", node_name.c_str(), var_name.c_str());
+    1011           0 :     return false;
+    1012             :   }
+    1013             : 
+    1014         477 :   return true;
+    1015             : }
+    1016             : 
+    1017             : //}
+    1018             : 
+    1019             : // | ------------ initialization of HW api commands ----------- |
+    1020             : 
+    1021             : /* initializeDefaultOutput() //{ */
+    1022             : 
+    1023       14463 : Controller::HwApiOutputVariant initializeDefaultOutput(const ControlOutputModalities_t& possible_outputs, const mrs_msgs::UavState& uav_state,
+    1024             :                                                        const double& min_throttle, const double& n_motors) {
+    1025             : 
+    1026       14463 :   CONTROL_OUTPUT lowest_output = getLowestOuput(possible_outputs);
+    1027             : 
+    1028       14463 :   Controller::HwApiOutputVariant output;
+    1029             : 
+    1030       14463 :   switch (lowest_output) {
+    1031           0 :     case ACTUATORS_CMD: {
+    1032           0 :       output = mrs_msgs::HwApiActuatorCmd();
+    1033           0 :       break;
+    1034             :     }
+    1035           0 :     case CONTROL_GROUP: {
+    1036           0 :       output = mrs_msgs::HwApiControlGroupCmd();
+    1037           0 :       break;
+    1038             :     }
+    1039       14463 :     case ATTITUDE_RATE: {
+    1040       14463 :       output = mrs_msgs::HwApiAttitudeRateCmd();
+    1041       14463 :       break;
+    1042             :     }
+    1043           0 :     case ATTITUDE: {
+    1044           0 :       output = mrs_msgs::HwApiAttitudeCmd();
+    1045           0 :       break;
+    1046             :     }
+    1047           0 :     case ACCELERATION_HDG_RATE: {
+    1048           0 :       output = mrs_msgs::HwApiAccelerationHdgRateCmd();
+    1049           0 :       break;
+    1050             :     }
+    1051           0 :     case ACCELERATION_HDG: {
+    1052           0 :       output = mrs_msgs::HwApiAccelerationHdgCmd();
+    1053           0 :       break;
+    1054             :     }
+    1055           0 :     case VELOCITY_HDG_RATE: {
+    1056           0 :       output = mrs_msgs::HwApiVelocityHdgRateCmd();
+    1057           0 :       break;
+    1058             :     }
+    1059           0 :     case VELOCITY_HDG: {
+    1060           0 :       output = mrs_msgs::HwApiVelocityHdgCmd();
+    1061           0 :       break;
+    1062             :     }
+    1063           0 :     case POSITION: {
+    1064           0 :       output = mrs_msgs::HwApiPositionCmd();
+    1065           0 :       break;
+    1066             :     }
+    1067             :   }
+    1068             : 
+    1069       28926 :   std::variant<mrs_msgs::UavState> uav_state_var{uav_state};
+    1070       14463 :   std::variant<double>             min_throttle_var{min_throttle};
+    1071       14463 :   std::variant<double>             n_motors_var{n_motors};
+    1072             : 
+    1073       14463 :   std::visit(HwApiInitializeVisitor(), output, uav_state_var, min_throttle_var, n_motors_var);
+    1074             : 
+    1075       28926 :   return output;
+    1076             : }  // namespace mrs_uav_managers
+    1077             : 
+    1078             : //}
+    1079             : 
+    1080             : /* initializeHwApiCmd(mrs_msgs::HwApiActuatorCmd& msg) //{ */
+    1081             : 
+    1082           0 : void initializeHwApiCmd(mrs_msgs::HwApiActuatorCmd& msg, const double& min_throttle, const double& n_motors) {
+    1083             : 
+    1084           0 :   msg.stamp = ros::Time::now();
+    1085             : 
+    1086           0 :   for (int i = 0; i < n_motors; i++) {
+    1087           0 :     msg.motors.push_back(min_throttle);
+    1088             :   }
+    1089           0 : }
+    1090             : 
+    1091             : //}
+    1092             : 
+    1093             : /* initializeHwApiCmd(mrs_msgs::HwApiControlGroupCmd& msg) //{ */
+    1094             : 
+    1095           0 : void initializeHwApiCmd(mrs_msgs::HwApiControlGroupCmd& msg, const double& min_throttle) {
+    1096             : 
+    1097           0 :   msg.stamp = ros::Time::now();
+    1098             : 
+    1099           0 :   msg.roll     = 0;
+    1100           0 :   msg.pitch    = 0;
+    1101           0 :   msg.yaw      = 0;
+    1102           0 :   msg.throttle = min_throttle;
+    1103           0 : }
+    1104             : 
+    1105             : //}
+    1106             : 
+    1107             : /* initializeHwApiCmd(mrs_msgs::HwApiAttitudeRateCmd& msg) //{ */
+    1108             : 
+    1109       14463 : void initializeHwApiCmd(mrs_msgs::HwApiAttitudeRateCmd& msg, const double& min_throttle) {
+    1110             : 
+    1111       14463 :   msg.stamp = ros::Time::now();
+    1112             : 
+    1113       14463 :   msg.body_rate.x = 0;
+    1114       14463 :   msg.body_rate.y = 0;
+    1115       14463 :   msg.body_rate.z = 0;
+    1116       14463 :   msg.throttle    = min_throttle;
+    1117       14463 : }
+    1118             : 
+    1119             : //}
+    1120             : 
+    1121             : /* initializeHwApiCmd(mrs_msgs::HwApiAttitudeCmd& msg) //{ */
+    1122             : 
+    1123           0 : void initializeHwApiCmd(mrs_msgs::HwApiAttitudeCmd& msg, const mrs_msgs::UavState& uav_state, const double& min_throttle) {
+    1124             : 
+    1125           0 :   msg.stamp = ros::Time::now();
+    1126             : 
+    1127           0 :   msg.orientation = uav_state.pose.orientation;
+    1128           0 :   msg.throttle    = min_throttle;
+    1129           0 : }
+    1130             : 
+    1131             : //}
+    1132             : 
+    1133             : /* initializeHwApiCmd(mrs_msgs::HwApiAccelerationHdgRateCmd& msg) //{ */
+    1134             : 
+    1135           0 : void initializeHwApiCmd(mrs_msgs::HwApiAccelerationHdgRateCmd& msg, const mrs_msgs::UavState& uav_state) {
+    1136             : 
+    1137           0 :   msg.header.frame_id = uav_state.header.frame_id;
+    1138           0 :   msg.header.stamp    = ros::Time::now();
+    1139             : 
+    1140           0 :   msg.acceleration.x = 0;
+    1141           0 :   msg.acceleration.y = 0;
+    1142           0 :   msg.acceleration.z = 0;
+    1143           0 :   msg.heading_rate   = 0;
+    1144           0 : }
+    1145             : 
+    1146             : //}
+    1147             : 
+    1148             : /* initializeHwApiCmd(mrs_msgs::HwApiAccelerationHdgCmd& msg) //{ */
+    1149             : 
+    1150           0 : void initializeHwApiCmd(mrs_msgs::HwApiAccelerationHdgCmd& msg, const mrs_msgs::UavState& uav_state) {
+    1151             : 
+    1152           0 :   msg.header.frame_id = uav_state.header.frame_id;
+    1153           0 :   msg.header.stamp    = ros::Time::now();
+    1154             : 
+    1155           0 :   msg.acceleration.x = 0;
+    1156           0 :   msg.acceleration.y = 0;
+    1157           0 :   msg.acceleration.z = 0;
+    1158             : 
+    1159             :   try {
+    1160           0 :     msg.heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+    1161             :   }
+    1162           0 :   catch (std::runtime_error& exrun) {
+    1163           0 :     msg.heading = 0;
+    1164             :   }
+    1165           0 : }
+    1166             : 
+    1167             : //}
+    1168             : 
+    1169             : /* initializeHwApiCmd(mrs_msgs::HwApiVelocityHdgRateCmd& msg) //{ */
+    1170             : 
+    1171           0 : void initializeHwApiCmd(mrs_msgs::HwApiVelocityHdgRateCmd& msg, const mrs_msgs::UavState& uav_state) {
+    1172             : 
+    1173           0 :   msg.header.frame_id = uav_state.header.frame_id;
+    1174           0 :   msg.header.stamp    = ros::Time::now();
+    1175             : 
+    1176           0 :   msg.velocity.x   = 0;
+    1177           0 :   msg.velocity.y   = 0;
+    1178           0 :   msg.velocity.z   = 0;
+    1179           0 :   msg.heading_rate = 0;
+    1180           0 : }
+    1181             : 
+    1182             : //}
+    1183             : 
+    1184             : /* initializeHwApiCmd(mrs_msgs::HwApiVelocityHdgCmd& msg) //{ */
+    1185             : 
+    1186           0 : void initializeHwApiCmd(mrs_msgs::HwApiVelocityHdgCmd& msg, const mrs_msgs::UavState& uav_state) {
+    1187             : 
+    1188           0 :   msg.header.frame_id = uav_state.header.frame_id;
+    1189           0 :   msg.header.stamp    = ros::Time::now();
+    1190             : 
+    1191           0 :   msg.velocity.x = 0;
+    1192           0 :   msg.velocity.y = 0;
+    1193           0 :   msg.velocity.z = 0;
+    1194             : 
+    1195             :   try {
+    1196           0 :     msg.heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+    1197             :   }
+    1198           0 :   catch (std::runtime_error& exrun) {
+    1199           0 :     msg.heading = 0;
+    1200             :   }
+    1201           0 : }
+    1202             : 
+    1203             : //}
+    1204             : 
+    1205             : /* initializeHwApiCmd(mrs_msgs::HwApiPositionCmd& msg) //{ */
+    1206             : 
+    1207           0 : void initializeHwApiCmd(mrs_msgs::HwApiPositionCmd& msg, const mrs_msgs::UavState& uav_state) {
+    1208             : 
+    1209           0 :   msg.header.frame_id = uav_state.header.frame_id;
+    1210           0 :   msg.header.stamp    = ros::Time::now();
+    1211             : 
+    1212           0 :   msg.position.x = uav_state.pose.position.x;
+    1213           0 :   msg.position.y = uav_state.pose.position.y;
+    1214           0 :   msg.position.z = uav_state.pose.position.z;
+    1215             : 
+    1216             :   try {
+    1217           0 :     msg.heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+    1218             :   }
+    1219           0 :   catch (std::runtime_error& exrun) {
+    1220           0 :     msg.heading = 0;
+    1221             :   }
+    1222           0 : }
+    1223             : 
+    1224             : //}
+    1225             : 
+    1226             : }  // namespace control_manager
+    1227             : 
+    1228             : }  // namespace mrs_uav_managers
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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Test:MRS UAV System - Test coverage reportLines:23456741.3 %
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Test:MRS UAV System - Test coverage reportLines:23456741.3 %
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Current view:top level - mrs_uav_managers/src/control_manager/commonHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:23456741.3 %
Date:2024-04-17 23:52:03Functions:213167.7 %
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Test:MRS UAV System - Test coverage reportLines:23456741.3 %
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Test:MRS UAV System - Test coverage reportLines:23456741.3 %
Date:2024-04-17 23:52:03Functions:213167.7 %
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Current view:top level - mrs_uav_managers/src/control_manager/commonHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:23456741.3 %
Date:2024-04-17 23:52:03Functions:213167.7 %
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Current view:top level - mrs_uav_managers/src/control_manager - control_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:2329365363.8 %
Date:2024-04-17 23:52:03Functions:7711169.4 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::control_manager::ControlManager::parachuteSrv()0
mrs_uav_managers::control_manager::ControlManager::callbackHover(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::loadConfigFile(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)0
mrs_uav_managers::control_manager::ControlManager::timerPirouette(ros::TimerEvent const&)0
mrs_uav_managers::control_manager::ControlManager::callbackGetMinZ(mrs_msgs::GetFloat64Request_<std::allocator<void> >&, mrs_msgs::GetFloat64Response_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackGotoFcu(mrs_msgs::Vec4Request_<std::allocator<void> >&, mrs_msgs::Vec4Response_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackSetMinZ(mrs_msgs::Float64StampedSrvRequest_<std::allocator<void> >&, mrs_msgs::Float64StampedSrvResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::deployParachute[abi:cxx11]()0
mrs_uav_managers::control_manager::ControlManager::timeoutUavState(double const&)0
mrs_uav_managers::control_manager::ControlManager::callbackJoystick(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>)0
mrs_uav_managers::control_manager::ControlManager::callbackOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)0
mrs_uav_managers::control_manager::ControlManager::callbackParachute(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackPirouette(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackSetHeading(mrs_msgs::Vec1Request_<std::allocator<void> >&, mrs_msgs::Vec1Response_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackUseJoystick(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackEnableBumper(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackGotoAltitude(mrs_msgs::Vec1Request_<std::allocator<void> >&, mrs_msgs::Vec1Response_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackTransformPose(mrs_msgs::TransformPoseSrvRequest_<std::allocator<void> >&, mrs_msgs::TransformPoseSrvResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackUseSafetyArea(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackReferenceTopic(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>)0
mrs_uav_managers::control_manager::ControlManager::stopTrajectoryTracking[abi:cxx11]()0
mrs_uav_managers::control_manager::ControlManager::callbackReferenceService(mrs_msgs::ReferenceStampedSrvRequest_<std::allocator<void> >&, mrs_msgs::ReferenceStampedSrvResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackTransformVector3(mrs_msgs::TransformVector3SrvRequest_<std::allocator<void> >&, mrs_msgs::TransformVector3SrvResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::resumeTrajectoryTracking[abi:cxx11]()0
mrs_uav_managers::control_manager::ControlManager::callbackValidateReference(mrs_msgs::ValidateReferenceRequest_<std::allocator<void> >&, mrs_msgs::ValidateReferenceResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackSetHeadingRelative(mrs_msgs::Vec1Request_<std::allocator<void> >&, mrs_msgs::Vec1Response_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackTrackerResetStatic(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackTransformReference(mrs_msgs::TransformReferenceSrvRequest_<std::allocator<void> >&, mrs_msgs::TransformReferenceSrvResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackValidateReferenceList(mrs_msgs::ValidateReferenceListRequest_<std::allocator<void> >&, mrs_msgs::ValidateReferenceListResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackStopTrajectoryTracking(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackVelocityReferenceTopic(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>)0
mrs_uav_managers::control_manager::ControlManager::callbackResumeTrajectoryTracking(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackTrajectoryReferenceTopic(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>)0
mrs_uav_managers::control_manager::ControlManager::hover[abi:cxx11]()0
mrs_uav_managers::control_manager::ControlManager::gotoTrajectoryStart[abi:cxx11]()1
mrs_uav_managers::control_manager::ControlManager::startTrajectoryTracking[abi:cxx11]()1
mrs_uav_managers::control_manager::ControlManager::callbackGotoTrajectoryStart(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)1
mrs_uav_managers::control_manager::ControlManager::callbackStartTrajectoryTracking(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)1
mrs_uav_managers::control_manager::ControlManager::callbackEland(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)2
mrs_uav_managers::control_manager::ControlManager::callbackEHover(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)2
mrs_uav_managers::control_manager::ControlManager::callbackFailsafe(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)4
mrs_uav_managers::control_manager::ControlManager::setTrajectoryReference[abi:cxx11](mrs_msgs::TrajectoryReference_<std::allocator<void> >)4
mrs_uav_managers::control_manager::ControlManager::callbackTrajectoryReferenceService(mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> >&, mrs_msgs::TrajectoryReferenceSrvResponse_<std::allocator<void> >&)4
mrs_uav_managers::control_manager::ControlManager::ehover[abi:cxx11]()4
mrs_uav_managers::control_manager::ControlManager::callbackArm(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)7
mrs_uav_managers::control_manager::ControlManager::callbackFailsafeEscalating(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)7
mrs_uav_managers::control_manager::ControlManager::getNextEscFailsafeState()8
mrs_uav_managers::control_manager::ControlManager::eland[abi:cxx11]()8
mrs_uav_managers::control_manager::ControlManager::elandSrv()8
mrs_uav_managers::control_manager::ControlManager::failsafe[abi:cxx11]()8
mrs_uav_managers::control_manager::ControlManager::changeLandingState(mrs_uav_managers::control_manager::LandingStates_t)12
mrs_uav_managers::control_manager::ControlManager::odometryCallbacksSrv(bool)16
mrs_uav_managers::control_manager::ControlManager::isOffboard()18
mrs_uav_managers::control_manager::ControlManager::arming[abi:cxx11](bool)18
mrs_uav_managers::control_manager::ControlManager::callbackGotoRelative(mrs_msgs::Vec4Request_<std::allocator<void> >&, mrs_msgs::Vec4Response_<std::allocator<void> >&)23
mrs_uav_managers::control_manager::ControlManager::callbackGoto(mrs_msgs::Vec4Request_<std::allocator<void> >&, mrs_msgs::Vec4Response_<std::allocator<void> >&)26
mrs_uav_managers::control_manager::ControlManager::isPathToPointInSafetyArea2d(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&, mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)31
mrs_uav_managers::control_manager::ControlManager::setReference[abi:cxx11](mrs_msgs::ReferenceStamped_<std::allocator<void> >)49
mrs_uav_managers::control_manager::ControlManager::ungripSrv()64
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::control_manager::ControlManager::initialize()91
mrs_uav_managers::control_manager::ControlManager::preinitialize()91
mrs_uav_managers::control_manager::ControlManager::setConstraints(mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const&)91
mrs_uav_managers::control_manager::ControlManager::onInit()91
mrs_uav_managers::control_manager::ControlManager::callbackToggleOutput(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)93
mrs_uav_managers::control_manager::ControlManager::callbackEmergencyReference(mrs_msgs::ReferenceStampedSrvRequest_<std::allocator<void> >&, mrs_msgs::ReferenceStampedSrvResponse_<std::allocator<void> >&)93
mrs_uav_managers::control_manager::ControlManager::setCallbacks(bool)94
mrs_uav_managers::control_manager::ControlManager::callbackSetConstraints(mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> >&, mrs_msgs::DynamicsConstraintsSrvResponse_<std::allocator<void> >&)94
mrs_uav_managers::control_manager::ControlManager::callbackEnableCallbacks(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)94
mrs_uav_managers::control_manager::ControlManager::toggleOutput(bool const&)114
mrs_uav_managers::control_manager::ControlManager::bumperGetSectorId(double const&, double const&, double const&)120
mrs_uav_managers::control_manager::ControlManager::escalatingFailsafe[abi:cxx11]()145
mrs_uav_managers::control_manager::ControlManager::timerHwApiCapabilities(ros::TimerEvent const&)158
mrs_uav_managers::control_manager::ControlManager::callbackSwitchController(mrs_msgs::StringRequest_<std::allocator<void> >&, mrs_msgs::StringResponse_<std::allocator<void> >&)177
mrs_uav_managers::control_manager::ControlManager::callbackSwitchTracker(mrs_msgs::StringRequest_<std::allocator<void> >&, mrs_msgs::StringResponse_<std::allocator<void> >&)178
mrs_uav_managers::control_manager::ControlManager::initializeControlOutput()192
mrs_uav_managers::control_manager::ControlManager::switchTracker(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)210
mrs_uav_managers::control_manager::ControlManager::switchController(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)211
mrs_uav_managers::control_manager::ControlManager::setConstraintsToTrackers(mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const&)299
mrs_uav_managers::control_manager::ControlManager::bumperPushFromObstacle()320
mrs_uav_managers::control_manager::ControlManager::setConstraintsToControllers(mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const&)360
mrs_uav_managers::control_manager::ControlManager::timerEland(ros::TimerEvent const&)443
mrs_uav_managers::control_manager::ControllerParams::ControllerParams(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, double, double, double, bool)455
mrs_uav_managers::control_manager::ControlManager::getMass()471
mrs_uav_managers::control_manager::ControlManager::setVelocityReference[abi:cxx11](mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const&)477
mrs_uav_managers::control_manager::ControlManager::velocityReferenceToReference(mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const&)477
mrs_uav_managers::control_manager::ControlManager::callbackVelocityReferenceService(mrs_msgs::VelocityReferenceStampedSrvRequest_<std::allocator<void> >&, mrs_msgs::VelocityReferenceStampedSrvResponse_<std::allocator<void> >&)477
mrs_uav_managers::control_manager::ControlManager::isPathToPointInSafetyArea3d(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&, mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)526
mrs_uav_managers::control_manager::TrackerParams::TrackerParams(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool)547
mrs_uav_managers::control_manager::ControlManager::isPointInSafetyArea3d(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)1170
mrs_uav_managers::control_manager::ControlManager::timerBumper(ros::TimerEvent const&)2183
mrs_uav_managers::control_manager::ControlManager::callbackValidateReference2d(mrs_msgs::ValidateReferenceRequest_<std::allocator<void> >&, mrs_msgs::ValidateReferenceResponse_<std::allocator<void> >&)9775
mrs_uav_managers::control_manager::ControlManager::isPointInSafetyArea2d(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)9930
mrs_uav_managers::control_manager::ControlManager::timerFailsafe(ros::TimerEvent const&)10189
mrs_uav_managers::control_manager::ControlManager::getMaxZ(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)11661
mrs_uav_managers::control_manager::ControlManager::getMinZ(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)11661
mrs_uav_managers::control_manager::ControlManager::timerStatus(ros::TimerEvent const&)16239
mrs_uav_managers::control_manager::ControlManager::publishDiagnostics()16331
mrs_uav_managers::control_manager::ControlManager::isFlyingNormally()16657
mrs_uav_managers::control_manager::ControlManager::callbackRC(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>)21018
mrs_uav_managers::control_manager::ControlManager::timerJoystick(ros::TimerEvent const&)57636
mrs_uav_managers::control_manager::ControlManager::callbackGNSS(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)90128
mrs_uav_managers::control_manager::ControlManager::enforceControllersConstraints(mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const&)119705
mrs_uav_managers::control_manager::ControlManager::updateTrackers()120229
mrs_uav_managers::control_manager::ControlManager::asyncControl()129610
mrs_uav_managers::control_manager::ControlManager::updateControllers(mrs_msgs::UavState_<std::allocator<void> > const&)130418
mrs_uav_managers::control_manager::ControlManager::publishControlReferenceOdom(std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&, mrs_uav_managers::Controller::ControlOutput const&)130418
mrs_uav_managers::control_manager::ControlManager::publish()130418
mrs_uav_managers::control_manager::ControlManager::callbackUavState(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)155064
mrs_uav_managers::control_manager::ControlManager::timerSafety(ros::TimerEvent const&)297352
mrs_uav_managers::control_manager::ControlManager::callbackHwApiStatus(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>)383079
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+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/control_manager/control_manager.cpp.func.html b/mrs_uav_managers/src/control_manager/control_manager.cpp.func.html new file mode 100644 index 0000000000..e48ddc0b7d --- /dev/null +++ b/mrs_uav_managers/src/control_manager/control_manager.cpp.func.html @@ -0,0 +1,524 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/control_manager.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/src/control_manager - control_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:2329365363.8 %
Date:2024-04-17 23:52:03Functions:7711169.4 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::control_manager::TrackerParams::TrackerParams(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, bool)547
mrs_uav_managers::control_manager::ControlManager::callbackRC(boost::shared_ptr<mrs_msgs::HwApiRcChannels_<std::allocator<void> > const>)21018
mrs_uav_managers::control_manager::ControlManager::initialize()91
mrs_uav_managers::control_manager::ControlManager::isOffboard()18
mrs_uav_managers::control_manager::ControlManager::timerEland(ros::TimerEvent const&)443
mrs_uav_managers::control_manager::ControlManager::callbackArm(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)7
mrs_uav_managers::control_manager::ControlManager::timerBumper(ros::TimerEvent const&)2183
mrs_uav_managers::control_manager::ControlManager::timerSafety(ros::TimerEvent const&)297352
mrs_uav_managers::control_manager::ControlManager::timerStatus(ros::TimerEvent const&)16239
mrs_uav_managers::control_manager::ControlManager::asyncControl()129610
mrs_uav_managers::control_manager::ControlManager::callbackGNSS(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)90128
mrs_uav_managers::control_manager::ControlManager::callbackGoto(mrs_msgs::Vec4Request_<std::allocator<void> >&, mrs_msgs::Vec4Response_<std::allocator<void> >&)26
mrs_uav_managers::control_manager::ControlManager::parachuteSrv()0
mrs_uav_managers::control_manager::ControlManager::setCallbacks(bool)94
mrs_uav_managers::control_manager::ControlManager::setReference[abi:cxx11](mrs_msgs::ReferenceStamped_<std::allocator<void> >)49
mrs_uav_managers::control_manager::ControlManager::toggleOutput(bool const&)114
mrs_uav_managers::control_manager::ControlManager::callbackEland(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)2
mrs_uav_managers::control_manager::ControlManager::callbackHover(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::preinitialize()91
mrs_uav_managers::control_manager::ControlManager::switchTracker(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)210
mrs_uav_managers::control_manager::ControlManager::timerFailsafe(ros::TimerEvent const&)10189
mrs_uav_managers::control_manager::ControlManager::timerJoystick(ros::TimerEvent const&)57636
mrs_uav_managers::control_manager::ControlManager::callbackEHover(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)2
mrs_uav_managers::control_manager::ControlManager::loadConfigFile(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)0
mrs_uav_managers::control_manager::ControlManager::setConstraints(mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const&)91
mrs_uav_managers::control_manager::ControlManager::timerPirouette(ros::TimerEvent const&)0
mrs_uav_managers::control_manager::ControlManager::updateTrackers()120229
mrs_uav_managers::control_manager::ControlManager::callbackGetMinZ(mrs_msgs::GetFloat64Request_<std::allocator<void> >&, mrs_msgs::GetFloat64Response_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackGotoFcu(mrs_msgs::Vec4Request_<std::allocator<void> >&, mrs_msgs::Vec4Response_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackSetMinZ(mrs_msgs::Float64StampedSrvRequest_<std::allocator<void> >&, mrs_msgs::Float64StampedSrvResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::deployParachute[abi:cxx11]()0
mrs_uav_managers::control_manager::ControlManager::timeoutUavState(double const&)0
mrs_uav_managers::control_manager::ControlManager::callbackFailsafe(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)4
mrs_uav_managers::control_manager::ControlManager::callbackJoystick(boost::shared_ptr<sensor_msgs::Joy_<std::allocator<void> > const>)0
mrs_uav_managers::control_manager::ControlManager::callbackOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)0
mrs_uav_managers::control_manager::ControlManager::callbackUavState(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)155064
mrs_uav_managers::control_manager::ControlManager::isFlyingNormally()16657
mrs_uav_managers::control_manager::ControlManager::switchController(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)211
mrs_uav_managers::control_manager::ControlManager::bumperGetSectorId(double const&, double const&, double const&)120
mrs_uav_managers::control_manager::ControlManager::callbackParachute(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackPirouette(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::updateControllers(mrs_msgs::UavState_<std::allocator<void> > const&)130418
mrs_uav_managers::control_manager::ControlManager::callbackSetHeading(mrs_msgs::Vec1Request_<std::allocator<void> >&, mrs_msgs::Vec1Response_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::changeLandingState(mrs_uav_managers::control_manager::LandingStates_t)12
mrs_uav_managers::control_manager::ControlManager::escalatingFailsafe[abi:cxx11]()145
mrs_uav_managers::control_manager::ControlManager::publishDiagnostics()16331
mrs_uav_managers::control_manager::ControlManager::callbackHwApiStatus(boost::shared_ptr<mrs_msgs::HwApiStatus_<std::allocator<void> > const>)383079
mrs_uav_managers::control_manager::ControlManager::callbackUseJoystick(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::gotoTrajectoryStart[abi:cxx11]()1
mrs_uav_managers::control_manager::ControlManager::callbackEnableBumper(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackGotoAltitude(mrs_msgs::Vec1Request_<std::allocator<void> >&, mrs_msgs::Vec1Response_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackGotoRelative(mrs_msgs::Vec4Request_<std::allocator<void> >&, mrs_msgs::Vec4Response_<std::allocator<void> >&)23
mrs_uav_managers::control_manager::ControlManager::callbackToggleOutput(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)93
mrs_uav_managers::control_manager::ControlManager::odometryCallbacksSrv(bool)16
mrs_uav_managers::control_manager::ControlManager::setVelocityReference[abi:cxx11](mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const&)477
mrs_uav_managers::control_manager::ControlManager::callbackSwitchTracker(mrs_msgs::StringRequest_<std::allocator<void> >&, mrs_msgs::StringResponse_<std::allocator<void> >&)178
mrs_uav_managers::control_manager::ControlManager::callbackTransformPose(mrs_msgs::TransformPoseSrvRequest_<std::allocator<void> >&, mrs_msgs::TransformPoseSrvResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackUseSafetyArea(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::isPointInSafetyArea2d(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)9930
mrs_uav_managers::control_manager::ControlManager::isPointInSafetyArea3d(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)1170
mrs_uav_managers::control_manager::ControlManager::bumperPushFromObstacle()320
mrs_uav_managers::control_manager::ControlManager::callbackReferenceTopic(boost::shared_ptr<mrs_msgs::ReferenceStamped_<std::allocator<void> > const>)0
mrs_uav_managers::control_manager::ControlManager::callbackSetConstraints(mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> >&, mrs_msgs::DynamicsConstraintsSrvResponse_<std::allocator<void> >&)94
mrs_uav_managers::control_manager::ControlManager::setTrajectoryReference[abi:cxx11](mrs_msgs::TrajectoryReference_<std::allocator<void> >)4
mrs_uav_managers::control_manager::ControlManager::stopTrajectoryTracking[abi:cxx11]()0
mrs_uav_managers::control_manager::ControlManager::timerHwApiCapabilities(ros::TimerEvent const&)158
mrs_uav_managers::control_manager::ControlManager::callbackEnableCallbacks(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)94
mrs_uav_managers::control_manager::ControlManager::getNextEscFailsafeState()8
mrs_uav_managers::control_manager::ControlManager::initializeControlOutput()192
mrs_uav_managers::control_manager::ControlManager::startTrajectoryTracking[abi:cxx11]()1
mrs_uav_managers::control_manager::ControlManager::callbackReferenceService(mrs_msgs::ReferenceStampedSrvRequest_<std::allocator<void> >&, mrs_msgs::ReferenceStampedSrvResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackSwitchController(mrs_msgs::StringRequest_<std::allocator<void> >&, mrs_msgs::StringResponse_<std::allocator<void> >&)177
mrs_uav_managers::control_manager::ControlManager::callbackTransformVector3(mrs_msgs::TransformVector3SrvRequest_<std::allocator<void> >&, mrs_msgs::TransformVector3SrvResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::resumeTrajectoryTracking[abi:cxx11]()0
mrs_uav_managers::control_manager::ControlManager::setConstraintsToTrackers(mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const&)299
mrs_uav_managers::control_manager::ControlManager::callbackValidateReference(mrs_msgs::ValidateReferenceRequest_<std::allocator<void> >&, mrs_msgs::ValidateReferenceResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackEmergencyReference(mrs_msgs::ReferenceStampedSrvRequest_<std::allocator<void> >&, mrs_msgs::ReferenceStampedSrvResponse_<std::allocator<void> >&)93
mrs_uav_managers::control_manager::ControlManager::callbackFailsafeEscalating(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)7
mrs_uav_managers::control_manager::ControlManager::callbackSetHeadingRelative(mrs_msgs::Vec1Request_<std::allocator<void> >&, mrs_msgs::Vec1Response_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackTrackerResetStatic(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackTransformReference(mrs_msgs::TransformReferenceSrvRequest_<std::allocator<void> >&, mrs_msgs::TransformReferenceSrvResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackGotoTrajectoryStart(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)1
mrs_uav_managers::control_manager::ControlManager::callbackValidateReference2d(mrs_msgs::ValidateReferenceRequest_<std::allocator<void> >&, mrs_msgs::ValidateReferenceResponse_<std::allocator<void> >&)9775
mrs_uav_managers::control_manager::ControlManager::isPathToPointInSafetyArea2d(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&, mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)31
mrs_uav_managers::control_manager::ControlManager::isPathToPointInSafetyArea3d(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&, mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)526
mrs_uav_managers::control_manager::ControlManager::publishControlReferenceOdom(std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&, mrs_uav_managers::Controller::ControlOutput const&)130418
mrs_uav_managers::control_manager::ControlManager::setConstraintsToControllers(mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const&)360
mrs_uav_managers::control_manager::ControlManager::velocityReferenceToReference(mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const&)477
mrs_uav_managers::control_manager::ControlManager::callbackValidateReferenceList(mrs_msgs::ValidateReferenceListRequest_<std::allocator<void> >&, mrs_msgs::ValidateReferenceListResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::enforceControllersConstraints(mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const&)119705
mrs_uav_managers::control_manager::ControlManager::callbackStopTrajectoryTracking(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackVelocityReferenceTopic(boost::shared_ptr<mrs_msgs::VelocityReferenceStamped_<std::allocator<void> > const>)0
mrs_uav_managers::control_manager::ControlManager::callbackStartTrajectoryTracking(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)1
mrs_uav_managers::control_manager::ControlManager::callbackResumeTrajectoryTracking(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)0
mrs_uav_managers::control_manager::ControlManager::callbackTrajectoryReferenceTopic(boost::shared_ptr<mrs_msgs::TrajectoryReference_<std::allocator<void> > const>)0
mrs_uav_managers::control_manager::ControlManager::callbackVelocityReferenceService(mrs_msgs::VelocityReferenceStampedSrvRequest_<std::allocator<void> >&, mrs_msgs::VelocityReferenceStampedSrvResponse_<std::allocator<void> >&)477
mrs_uav_managers::control_manager::ControlManager::callbackTrajectoryReferenceService(mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> >&, mrs_msgs::TrajectoryReferenceSrvResponse_<std::allocator<void> >&)4
mrs_uav_managers::control_manager::ControlManager::eland[abi:cxx11]()8
mrs_uav_managers::control_manager::ControlManager::hover[abi:cxx11]()0
mrs_uav_managers::control_manager::ControlManager::arming[abi:cxx11](bool)18
mrs_uav_managers::control_manager::ControlManager::ehover[abi:cxx11]()4
mrs_uav_managers::control_manager::ControlManager::onInit()91
mrs_uav_managers::control_manager::ControlManager::getMass()471
mrs_uav_managers::control_manager::ControlManager::getMaxZ(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)11661
mrs_uav_managers::control_manager::ControlManager::getMinZ(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)11661
mrs_uav_managers::control_manager::ControlManager::publish()130418
mrs_uav_managers::control_manager::ControlManager::elandSrv()8
mrs_uav_managers::control_manager::ControlManager::failsafe[abi:cxx11]()8
mrs_uav_managers::control_manager::ControlManager::ungripSrv()64
mrs_uav_managers::control_manager::ControllerParams::ControllerParams(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, double, double, double, bool)455
+
+
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Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/control_manager/control_manager.cpp.gcov.frameset.html b/mrs_uav_managers/src/control_manager/control_manager.cpp.gcov.frameset.html new file mode 100644 index 0000000000..34fe5178be --- /dev/null +++ b/mrs_uav_managers/src/control_manager/control_manager.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/control_manager.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_managers/src/control_manager/control_manager.cpp.gcov.html b/mrs_uav_managers/src/control_manager/control_manager.cpp.gcov.html new file mode 100644 index 0000000000..664f115563 --- /dev/null +++ b/mrs_uav_managers/src/control_manager/control_manager.cpp.gcov.html @@ -0,0 +1,8847 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/control_manager.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/src/control_manager - control_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:2329365363.8 %
Date:2024-04-17 23:52:03Functions:7711169.4 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <ros/package.h>
+       5             : #include <nodelet/nodelet.h>
+       6             : 
+       7             : #include <mrs_uav_managers/control_manager/common.h>
+       8             : #include <control_manager/output_publisher.h>
+       9             : 
+      10             : #include <mrs_uav_managers/controller.h>
+      11             : #include <mrs_uav_managers/tracker.h>
+      12             : 
+      13             : #include <mrs_msgs/String.h>
+      14             : #include <mrs_msgs/Float64Stamped.h>
+      15             : #include <mrs_msgs/Float64StampedSrv.h>
+      16             : #include <mrs_msgs/ObstacleSectors.h>
+      17             : #include <mrs_msgs/BoolStamped.h>
+      18             : #include <mrs_msgs/ControlManagerDiagnostics.h>
+      19             : #include <mrs_msgs/DynamicsConstraints.h>
+      20             : #include <mrs_msgs/ControlError.h>
+      21             : #include <mrs_msgs/GetFloat64.h>
+      22             : #include <mrs_msgs/ValidateReference.h>
+      23             : #include <mrs_msgs/ValidateReferenceList.h>
+      24             : #include <mrs_msgs/TrackerCommand.h>
+      25             : #include <mrs_msgs/EstimatorInput.h>
+      26             : 
+      27             : #include <geometry_msgs/Point32.h>
+      28             : #include <geometry_msgs/TwistStamped.h>
+      29             : #include <geometry_msgs/PoseArray.h>
+      30             : #include <geometry_msgs/Vector3Stamped.h>
+      31             : 
+      32             : #include <nav_msgs/Odometry.h>
+      33             : 
+      34             : #include <sensor_msgs/Joy.h>
+      35             : #include <sensor_msgs/NavSatFix.h>
+      36             : 
+      37             : #include <mrs_lib/safety_zone/safety_zone.h>
+      38             : #include <mrs_lib/profiler.h>
+      39             : #include <mrs_lib/param_loader.h>
+      40             : #include <mrs_lib/utils.h>
+      41             : #include <mrs_lib/mutex.h>
+      42             : #include <mrs_lib/transformer.h>
+      43             : #include <mrs_lib/geometry/misc.h>
+      44             : #include <mrs_lib/geometry/cyclic.h>
+      45             : #include <mrs_lib/attitude_converter.h>
+      46             : #include <mrs_lib/subscribe_handler.h>
+      47             : #include <mrs_lib/msg_extractor.h>
+      48             : #include <mrs_lib/quadratic_throttle_model.h>
+      49             : #include <mrs_lib/publisher_handler.h>
+      50             : #include <mrs_lib/service_client_handler.h>
+      51             : 
+      52             : #include <mrs_msgs/HwApiCapabilities.h>
+      53             : #include <mrs_msgs/HwApiStatus.h>
+      54             : #include <mrs_msgs/HwApiRcChannels.h>
+      55             : 
+      56             : #include <mrs_msgs/HwApiActuatorCmd.h>
+      57             : #include <mrs_msgs/HwApiControlGroupCmd.h>
+      58             : #include <mrs_msgs/HwApiAttitudeRateCmd.h>
+      59             : #include <mrs_msgs/HwApiAttitudeCmd.h>
+      60             : #include <mrs_msgs/HwApiAccelerationHdgRateCmd.h>
+      61             : #include <mrs_msgs/HwApiAccelerationHdgCmd.h>
+      62             : #include <mrs_msgs/HwApiVelocityHdgRateCmd.h>
+      63             : #include <mrs_msgs/HwApiVelocityHdgCmd.h>
+      64             : #include <mrs_msgs/HwApiPositionCmd.h>
+      65             : 
+      66             : #include <std_msgs/Float64.h>
+      67             : 
+      68             : #include <future>
+      69             : 
+      70             : #include <pluginlib/class_loader.h>
+      71             : 
+      72             : #include <nodelet/loader.h>
+      73             : 
+      74             : #include <eigen3/Eigen/Eigen>
+      75             : 
+      76             : #include <visualization_msgs/Marker.h>
+      77             : #include <visualization_msgs/MarkerArray.h>
+      78             : 
+      79             : #include <mrs_msgs/Reference.h>
+      80             : #include <mrs_msgs/ReferenceStamped.h>
+      81             : #include <mrs_msgs/ReferenceList.h>
+      82             : #include <mrs_msgs/TrajectoryReference.h>
+      83             : 
+      84             : #include <mrs_msgs/ReferenceStampedSrv.h>
+      85             : #include <mrs_msgs/ReferenceStampedSrvRequest.h>
+      86             : #include <mrs_msgs/ReferenceStampedSrvResponse.h>
+      87             : 
+      88             : #include <mrs_msgs/VelocityReferenceStampedSrv.h>
+      89             : #include <mrs_msgs/VelocityReferenceStampedSrvRequest.h>
+      90             : #include <mrs_msgs/VelocityReferenceStampedSrvResponse.h>
+      91             : 
+      92             : #include <mrs_msgs/TransformReferenceSrv.h>
+      93             : #include <mrs_msgs/TransformReferenceSrvRequest.h>
+      94             : #include <mrs_msgs/TransformReferenceSrvResponse.h>
+      95             : 
+      96             : #include <mrs_msgs/TransformPoseSrv.h>
+      97             : #include <mrs_msgs/TransformPoseSrvRequest.h>
+      98             : #include <mrs_msgs/TransformPoseSrvResponse.h>
+      99             : 
+     100             : #include <mrs_msgs/TransformVector3Srv.h>
+     101             : #include <mrs_msgs/TransformVector3SrvRequest.h>
+     102             : #include <mrs_msgs/TransformVector3SrvResponse.h>
+     103             : 
+     104             : #include <mrs_msgs/Float64StampedSrv.h>
+     105             : #include <mrs_msgs/Float64StampedSrvRequest.h>
+     106             : #include <mrs_msgs/Float64StampedSrvResponse.h>
+     107             : 
+     108             : #include <mrs_msgs/Vec4.h>
+     109             : #include <mrs_msgs/Vec4Request.h>
+     110             : #include <mrs_msgs/Vec4Response.h>
+     111             : 
+     112             : #include <mrs_msgs/Vec1.h>
+     113             : #include <mrs_msgs/Vec1Request.h>
+     114             : #include <mrs_msgs/Vec1Response.h>
+     115             : 
+     116             : //}
+     117             : 
+     118             : /* defines //{ */
+     119             : 
+     120             : #define TAU 2 * M_PI
+     121             : #define REF_X 0
+     122             : #define REF_Y 1
+     123             : #define REF_Z 2
+     124             : #define REF_HEADING 3
+     125             : #define ELAND_STR "eland"
+     126             : #define EHOVER_STR "ehover"
+     127             : #define ESCALATING_FAILSAFE_STR "escalating_failsafe"
+     128             : #define FAILSAFE_STR "failsafe"
+     129             : #define INPUT_UAV_STATE 0
+     130             : #define INPUT_ODOMETRY 1
+     131             : #define RC_DEADBAND 0.2
+     132             : 
+     133             : //}
+     134             : 
+     135             : /* using //{ */
+     136             : 
+     137             : using vec2_t = mrs_lib::geometry::vec_t<2>;
+     138             : using vec3_t = mrs_lib::geometry::vec_t<3>;
+     139             : 
+     140             : using radians  = mrs_lib::geometry::radians;
+     141             : using sradians = mrs_lib::geometry::sradians;
+     142             : 
+     143             : //}
+     144             : 
+     145             : namespace mrs_uav_managers
+     146             : {
+     147             : 
+     148             : namespace control_manager
+     149             : {
+     150             : 
+     151             : /* //{ class ControlManager */
+     152             : 
+     153             : // state machine
+     154             : typedef enum
+     155             : {
+     156             : 
+     157             :   IDLE_STATE,
+     158             :   LANDING_STATE,
+     159             : 
+     160             : } LandingStates_t;
+     161             : 
+     162             : const char* state_names[2] = {"IDLING", "LANDING"};
+     163             : 
+     164             : // state machine
+     165             : typedef enum
+     166             : {
+     167             : 
+     168             :   FCU_FRAME,
+     169             :   RELATIVE_FRAME,
+     170             :   ABSOLUTE_FRAME
+     171             : 
+     172             : } ReferenceFrameType_t;
+     173             : 
+     174             : // state machine
+     175             : typedef enum
+     176             : {
+     177             : 
+     178             :   ESC_NONE_STATE     = 0,
+     179             :   ESC_EHOVER_STATE   = 1,
+     180             :   ESC_ELAND_STATE    = 2,
+     181             :   ESC_FAILSAFE_STATE = 3,
+     182             :   ESC_FINISHED_STATE = 4,
+     183             : 
+     184             : } EscalatingFailsafeStates_t;
+     185             : 
+     186             : /* class ControllerParams() //{ */
+     187             : 
+     188             : class ControllerParams {
+     189             : 
+     190             : public:
+     191             :   ControllerParams(std::string address, std::string name_space, double eland_threshold, double failsafe_threshold, double odometry_innovation_threshold,
+     192             :                    bool human_switchable);
+     193             : 
+     194             : public:
+     195             :   double      failsafe_threshold;
+     196             :   double      eland_threshold;
+     197             :   double      odometry_innovation_threshold;
+     198             :   std::string address;
+     199             :   std::string name_space;
+     200             :   bool        human_switchable;
+     201             : };
+     202             : 
+     203         455 : ControllerParams::ControllerParams(std::string address, std::string name_space, double eland_threshold, double failsafe_threshold,
+     204         455 :                                    double odometry_innovation_threshold, bool human_switchable) {
+     205             : 
+     206         455 :   this->eland_threshold               = eland_threshold;
+     207         455 :   this->odometry_innovation_threshold = odometry_innovation_threshold;
+     208         455 :   this->failsafe_threshold            = failsafe_threshold;
+     209         455 :   this->address                       = address;
+     210         455 :   this->name_space                    = name_space;
+     211         455 :   this->human_switchable              = human_switchable;
+     212         455 : }
+     213             : 
+     214             : //}
+     215             : 
+     216             : /* class TrackerParams() //{ */
+     217             : 
+     218             : class TrackerParams {
+     219             : 
+     220             : public:
+     221             :   TrackerParams(std::string address, std::string name_space, bool human_switchable);
+     222             : 
+     223             : public:
+     224             :   std::string address;
+     225             :   std::string name_space;
+     226             :   bool        human_switchable;
+     227             : };
+     228             : 
+     229         547 : TrackerParams::TrackerParams(std::string address, std::string name_space, bool human_switchable) {
+     230             : 
+     231         547 :   this->address          = address;
+     232         547 :   this->name_space       = name_space;
+     233         547 :   this->human_switchable = human_switchable;
+     234         547 : }
+     235             : 
+     236             : //}
+     237             : 
+     238             : class ControlManager : public nodelet::Nodelet {
+     239             : 
+     240             : public:
+     241             :   virtual void onInit();
+     242             : 
+     243             : private:
+     244             :   ros::NodeHandle   nh_;
+     245             :   std::atomic<bool> is_initialized_ = false;
+     246             :   std::string       _uav_name_;
+     247             :   std::string       _body_frame_;
+     248             : 
+     249             :   std::string _custom_config_;
+     250             :   std::string _platform_config_;
+     251             :   std::string _world_config_;
+     252             :   std::string _network_config_;
+     253             : 
+     254             :   // | --------------- dynamic loading of trackers -------------- |
+     255             : 
+     256             :   std::unique_ptr<pluginlib::ClassLoader<mrs_uav_managers::Tracker>> tracker_loader_;  // pluginlib loader of dynamically loaded trackers
+     257             :   std::vector<std::string>                                           _tracker_names_;  // list of tracker names
+     258             :   std::map<std::string, TrackerParams>                               trackers_;        // map between tracker names and tracker param
+     259             :   std::vector<boost::shared_ptr<mrs_uav_managers::Tracker>>          tracker_list_;    // list of trackers, routines are callable from this
+     260             :   std::mutex                                                         mutex_tracker_list_;
+     261             : 
+     262             :   // | ------------- dynamic loading of controllers ------------- |
+     263             : 
+     264             :   std::unique_ptr<pluginlib::ClassLoader<mrs_uav_managers::Controller>> controller_loader_;  // pluginlib loader of dynamically loaded controllers
+     265             :   std::vector<std::string>                                              _controller_names_;  // list of controller names
+     266             :   std::map<std::string, ControllerParams>                               controllers_;        // map between controller names and controller params
+     267             :   std::vector<boost::shared_ptr<mrs_uav_managers::Controller>>          controller_list_;    // list of controllers, routines are callable from this
+     268             :   std::mutex                                                            mutex_controller_list_;
+     269             : 
+     270             :   // | ------------------------- HW API ------------------------- |
+     271             : 
+     272             :   mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities> sh_hw_api_capabilities_;
+     273             : 
+     274             :   OutputPublisher control_output_publisher_;
+     275             : 
+     276             :   ControlOutputModalities_t _hw_api_inputs_;
+     277             : 
+     278             :   double desired_uav_state_rate_ = 100.0;
+     279             : 
+     280             :   // this timer will check till we already got the hardware api diagnostics
+     281             :   // then it will trigger the initialization of the controllers and finish
+     282             :   // the initialization of the ControlManager
+     283             :   ros::Timer timer_hw_api_capabilities_;
+     284             :   void       timerHwApiCapabilities(const ros::TimerEvent& event);
+     285             : 
+     286             :   void preinitialize(void);
+     287             :   void initialize(void);
+     288             : 
+     289             :   // | ------------ tracker and controller switching ------------ |
+     290             : 
+     291             :   std::tuple<bool, std::string> switchController(const std::string& controller_name);
+     292             :   std::tuple<bool, std::string> switchTracker(const std::string& tracker_name);
+     293             : 
+     294             :   // the time of last switching of a tracker or a controller
+     295             :   ros::Time  controller_tracker_switch_time_;
+     296             :   std::mutex mutex_controller_tracker_switch_time_;
+     297             : 
+     298             :   // | -------------------- the transformer  -------------------- |
+     299             : 
+     300             :   std::shared_ptr<mrs_lib::Transformer> transformer_;
+     301             : 
+     302             :   // | ------------------- scope timer logger ------------------- |
+     303             : 
+     304             :   bool                                       scope_timer_enabled_ = false;
+     305             :   std::shared_ptr<mrs_lib::ScopeTimerLogger> scope_timer_logger_;
+     306             : 
+     307             :   // | --------------------- general params --------------------- |
+     308             : 
+     309             :   // defines the type of state input: odometry or uav_state mesasge types
+     310             :   int _state_input_;
+     311             : 
+     312             :   // names of important trackers
+     313             :   std::string _null_tracker_name_;     // null tracker is active when UAV is not in the air
+     314             :   std::string _ehover_tracker_name_;   // ehover tracker is used for emergency hovering
+     315             :   std::string _landoff_tracker_name_;  // landoff is used for landing and takeoff
+     316             : 
+     317             :   // names of important controllers
+     318             :   std::string _failsafe_controller_name_;  // controller used for feed-forward failsafe
+     319             :   std::string _eland_controller_name_;     // controller used for emergancy landing
+     320             : 
+     321             :   // joystick control
+     322             :   bool        _joystick_enabled_ = false;
+     323             :   int         _joystick_mode_;
+     324             :   std::string _joystick_tracker_name_;
+     325             :   std::string _joystick_controller_name_;
+     326             :   std::string _joystick_fallback_tracker_name_;
+     327             :   std::string _joystick_fallback_controller_name_;
+     328             : 
+     329             :   // should disarm after emergancy landing?
+     330             :   bool _eland_disarm_enabled_ = false;
+     331             : 
+     332             :   // enabling the emergency handoff -> will disable eland and failsafe
+     333             :   bool _rc_emergency_handoff_ = false;
+     334             : 
+     335             :   // what throttle should be output when null tracker is active?
+     336             :   double _min_throttle_null_tracker_ = 0.0;
+     337             : 
+     338             :   // rates of all the timers
+     339             :   double _status_timer_rate_   = 0;
+     340             :   double _safety_timer_rate_   = 0;
+     341             :   double _elanding_timer_rate_ = 0;
+     342             :   double _failsafe_timer_rate_ = 0;
+     343             :   double _bumper_timer_rate_   = 0;
+     344             : 
+     345             :   bool _snap_trajectory_to_safety_area_ = false;
+     346             : 
+     347             :   // | -------------- uav_state/odometry subscriber ------------- |
+     348             : 
+     349             :   mrs_lib::SubscribeHandler<nav_msgs::Odometry> sh_odometry_;
+     350             :   mrs_lib::SubscribeHandler<mrs_msgs::UavState> sh_uav_state_;
+     351             : 
+     352             :   mrs_msgs::UavState uav_state_;
+     353             :   mrs_msgs::UavState previous_uav_state_;
+     354             :   bool               got_uav_state_               = false;
+     355             :   double             _uav_state_max_missing_time_ = 0;  // how long should we tolerate missing state estimate?
+     356             :   double             uav_roll_                    = 0;
+     357             :   double             uav_pitch_                   = 0;
+     358             :   double             uav_yaw_                     = 0;
+     359             :   double             uav_heading_                 = 0;
+     360             :   std::mutex         mutex_uav_state_;
+     361             : 
+     362             :   // odometry hiccup detection
+     363             :   double uav_state_avg_dt_        = 1;
+     364             :   double uav_state_hiccup_factor_ = 1;
+     365             :   int    uav_state_count_         = 0;
+     366             : 
+     367             :   mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix> sh_gnss_;
+     368             : 
+     369             :   // | -------------- safety area max z subscriber -------------- |
+     370             : 
+     371             :   mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped> sh_max_z_;
+     372             : 
+     373             :   // | ------------- odometry innovation subscriber ------------- |
+     374             : 
+     375             :   // odometry innovation is published by the odometry node
+     376             :   // it is used to issue eland if the estimator's input is too wonky
+     377             :   mrs_lib::SubscribeHandler<nav_msgs::Odometry> sh_odometry_innovation_;
+     378             : 
+     379             :   // | --------------------- common handlers -------------------- |
+     380             : 
+     381             :   // contains handlers that are shared with trackers and controllers
+     382             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers_;
+     383             : 
+     384             :   // | --------------- tracker and controller IDs --------------- |
+     385             : 
+     386             :   // keeping track of currently active controllers and trackers
+     387             :   unsigned int active_tracker_idx_    = 0;
+     388             :   unsigned int active_controller_idx_ = 0;
+     389             : 
+     390             :   // indeces of some notable trackers
+     391             :   unsigned int _ehover_tracker_idx_               = 0;
+     392             :   unsigned int _landoff_tracker_idx_              = 0;
+     393             :   unsigned int _joystick_tracker_idx_             = 0;
+     394             :   unsigned int _joystick_controller_idx_          = 0;
+     395             :   unsigned int _failsafe_controller_idx_          = 0;
+     396             :   unsigned int _joystick_fallback_controller_idx_ = 0;
+     397             :   unsigned int _joystick_fallback_tracker_idx_    = 0;
+     398             :   unsigned int _null_tracker_idx_                 = 0;
+     399             :   unsigned int _eland_controller_idx_             = 0;
+     400             : 
+     401             :   // | -------------- enabling the output publisher ------------- |
+     402             : 
+     403             :   void              toggleOutput(const bool& input);
+     404             :   std::atomic<bool> output_enabled_ = false;
+     405             : 
+     406             :   // | ----------------------- publishers ----------------------- |
+     407             : 
+     408             :   mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics>     ph_controller_diagnostics_;
+     409             :   mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand>            ph_tracker_cmd_;
+     410             :   mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput>            ph_mrs_odom_input_;
+     411             :   mrs_lib::PublisherHandler<nav_msgs::Odometry>                  ph_control_reference_odom_;
+     412             :   mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics> ph_diagnostics_;
+     413             :   mrs_lib::PublisherHandler<std_msgs::Empty>                     ph_offboard_on_;
+     414             :   mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>            ph_tilt_error_;
+     415             :   mrs_lib::PublisherHandler<std_msgs::Float64>                   ph_mass_estimate_;
+     416             :   mrs_lib::PublisherHandler<std_msgs::Float64>                   ph_mass_nominal_;
+     417             :   mrs_lib::PublisherHandler<std_msgs::Float64>                   ph_throttle_;
+     418             :   mrs_lib::PublisherHandler<std_msgs::Float64>                   ph_thrust_;
+     419             :   mrs_lib::PublisherHandler<mrs_msgs::ControlError>              ph_control_error_;
+     420             :   mrs_lib::PublisherHandler<visualization_msgs::MarkerArray>     ph_safety_area_markers_;
+     421             :   mrs_lib::PublisherHandler<visualization_msgs::MarkerArray>     ph_safety_area_coordinates_markers_;
+     422             :   mrs_lib::PublisherHandler<visualization_msgs::MarkerArray>     ph_disturbances_markers_;
+     423             :   mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints>       ph_current_constraints_;
+     424             :   mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>            ph_heading_;
+     425             :   mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>            ph_speed_;
+     426             : 
+     427             :   // | --------------------- service servers -------------------- |
+     428             : 
+     429             :   ros::ServiceServer service_server_switch_tracker_;
+     430             :   ros::ServiceServer service_server_switch_controller_;
+     431             :   ros::ServiceServer service_server_reset_tracker_;
+     432             :   ros::ServiceServer service_server_hover_;
+     433             :   ros::ServiceServer service_server_ehover_;
+     434             :   ros::ServiceServer service_server_failsafe_;
+     435             :   ros::ServiceServer service_server_failsafe_escalating_;
+     436             :   ros::ServiceServer service_server_toggle_output_;
+     437             :   ros::ServiceServer service_server_arm_;
+     438             :   ros::ServiceServer service_server_enable_callbacks_;
+     439             :   ros::ServiceServer service_server_set_constraints_;
+     440             :   ros::ServiceServer service_server_use_joystick_;
+     441             :   ros::ServiceServer service_server_use_safety_area_;
+     442             :   ros::ServiceServer service_server_emergency_reference_;
+     443             :   ros::ServiceServer service_server_pirouette_;
+     444             :   ros::ServiceServer service_server_eland_;
+     445             :   ros::ServiceServer service_server_parachute_;
+     446             :   ros::ServiceServer service_server_set_min_z_;
+     447             : 
+     448             :   // human callbable services for references
+     449             :   ros::ServiceServer service_server_goto_;
+     450             :   ros::ServiceServer service_server_goto_fcu_;
+     451             :   ros::ServiceServer service_server_goto_relative_;
+     452             :   ros::ServiceServer service_server_goto_altitude_;
+     453             :   ros::ServiceServer service_server_set_heading_;
+     454             :   ros::ServiceServer service_server_set_heading_relative_;
+     455             : 
+     456             :   // the reference service and subscriber
+     457             :   ros::ServiceServer                                    service_server_reference_;
+     458             :   mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped> sh_reference_;
+     459             : 
+     460             :   // the velocity reference service and subscriber
+     461             :   ros::ServiceServer                                            service_server_velocity_reference_;
+     462             :   mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped> sh_velocity_reference_;
+     463             : 
+     464             :   // trajectory tracking
+     465             :   ros::ServiceServer                                       service_server_trajectory_reference_;
+     466             :   mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference> sh_trajectory_reference_;
+     467             :   ros::ServiceServer                                       service_server_start_trajectory_tracking_;
+     468             :   ros::ServiceServer                                       service_server_stop_trajectory_tracking_;
+     469             :   ros::ServiceServer                                       service_server_resume_trajectory_tracking_;
+     470             :   ros::ServiceServer                                       service_server_goto_trajectory_start_;
+     471             : 
+     472             :   // transform service servers
+     473             :   ros::ServiceServer service_server_transform_reference_;
+     474             :   ros::ServiceServer service_server_transform_pose_;
+     475             :   ros::ServiceServer service_server_transform_vector3_;
+     476             : 
+     477             :   // safety area services
+     478             :   ros::ServiceServer service_server_validate_reference_;
+     479             :   ros::ServiceServer service_server_validate_reference_2d_;
+     480             :   ros::ServiceServer service_server_validate_reference_list_;
+     481             : 
+     482             :   // bumper service servers
+     483             :   ros::ServiceServer service_server_bumper_enabler_;
+     484             :   ros::ServiceServer service_server_bumper_repulsion_enabler_;
+     485             : 
+     486             :   // service clients
+     487             :   mrs_lib::ServiceClientHandler<std_srvs::SetBool> sch_arming_;
+     488             :   mrs_lib::ServiceClientHandler<std_srvs::Trigger> sch_eland_;
+     489             :   mrs_lib::ServiceClientHandler<std_srvs::Trigger> sch_shutdown_;
+     490             :   mrs_lib::ServiceClientHandler<std_srvs::SetBool> sch_set_odometry_callbacks_;
+     491             :   mrs_lib::ServiceClientHandler<std_srvs::Trigger> sch_parachute_;
+     492             : 
+     493             :   // safety area min z servers
+     494             :   ros::ServiceServer service_server_get_min_z_;
+     495             : 
+     496             :   // | --------- trackers' and controllers' last results -------- |
+     497             : 
+     498             :   // the last result of an active tracker
+     499             :   std::optional<mrs_msgs::TrackerCommand> last_tracker_cmd_;
+     500             :   std::mutex                              mutex_last_tracker_cmd_;
+     501             : 
+     502             :   // the last result of an active controller
+     503             :   Controller::ControlOutput last_control_output_;
+     504             :   std::mutex                mutex_last_control_output_;
+     505             : 
+     506             :   // | -------------- HW API diagnostics subscriber ------------- |
+     507             : 
+     508             :   mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus> sh_hw_api_status_;
+     509             : 
+     510             :   bool offboard_mode_          = false;
+     511             :   bool offboard_mode_was_true_ = false;  // if it was ever true
+     512             :   bool armed_                  = false;
+     513             : 
+     514             :   // | -------------------- throttle and mass ------------------- |
+     515             : 
+     516             :   // throttle mass estimation during eland
+     517             :   double    throttle_mass_estimate_   = 0;
+     518             :   bool      throttle_under_threshold_ = false;
+     519             :   ros::Time throttle_mass_estimate_first_time_;
+     520             : 
+     521             :   // | ---------------------- safety params --------------------- |
+     522             : 
+     523             :   // failsafe when tilt error is too large
+     524             :   bool   _tilt_error_disarm_enabled_;
+     525             :   double _tilt_error_disarm_timeout_;
+     526             :   double _tilt_error_disarm_threshold_;
+     527             : 
+     528             :   ros::Time tilt_error_disarm_time_;
+     529             :   bool      tilt_error_disarm_over_thr_ = false;
+     530             : 
+     531             :   // elanding when tilt error is too large
+     532             :   bool   _tilt_limit_eland_enabled_;
+     533             :   double _tilt_limit_eland_ = 0;  // [rad]
+     534             : 
+     535             :   // disarming when tilt error is too large
+     536             :   bool   _tilt_limit_disarm_enabled_;
+     537             :   double _tilt_limit_disarm_ = 0;  // [rad]
+     538             : 
+     539             :   // elanding when yaw error is too large
+     540             :   bool   _yaw_error_eland_enabled_;
+     541             :   double _yaw_error_eland_ = 0;  // [rad]
+     542             : 
+     543             :   // keeping track of control errors
+     544             :   std::optional<double> tilt_error_ = 0;
+     545             :   std::optional<double> yaw_error_  = 0;
+     546             :   std::mutex            mutex_attitude_error_;
+     547             : 
+     548             :   std::optional<Eigen::Vector3d> position_error_;
+     549             :   std::mutex                     mutex_position_error_;
+     550             : 
+     551             :   // control error for triggering failsafe, eland, etc.
+     552             :   // this filled with the current controllers failsafe threshold
+     553             :   double _failsafe_threshold_                = 0;  // control error for triggering failsafe
+     554             :   double _eland_threshold_                   = 0;  // control error for triggering eland
+     555             :   bool   _odometry_innovation_check_enabled_ = false;
+     556             :   double _odometry_innovation_threshold_     = 0;  // innovation size for triggering eland
+     557             : 
+     558             :   bool callbacks_enabled_ = true;
+     559             : 
+     560             :   // | ------------------------ parachute ----------------------- |
+     561             : 
+     562             :   bool _parachute_enabled_ = false;
+     563             : 
+     564             :   std::tuple<bool, std::string> deployParachute(void);
+     565             :   bool                          parachuteSrv(void);
+     566             : 
+     567             :   // | ----------------------- safety area ---------------------- |
+     568             : 
+     569             :   // safety area
+     570             :   std::unique_ptr<mrs_lib::SafetyZone> safety_zone_;
+     571             : 
+     572             :   std::atomic<bool> use_safety_area_ = false;
+     573             : 
+     574             :   std::string _safety_area_horizontal_frame_;
+     575             :   std::string _safety_area_vertical_frame_;
+     576             : 
+     577             :   std::atomic<double> _safety_area_min_z_ = 0;
+     578             : 
+     579             :   double _safety_area_max_z_ = 0;
+     580             : 
+     581             :   // safety area routines
+     582             :   // those are passed to trackers using the common_handlers object
+     583             :   bool   isPointInSafetyArea2d(const mrs_msgs::ReferenceStamped& point);
+     584             :   bool   isPointInSafetyArea3d(const mrs_msgs::ReferenceStamped& point);
+     585             :   bool   isPathToPointInSafetyArea2d(const mrs_msgs::ReferenceStamped& from, const mrs_msgs::ReferenceStamped& to);
+     586             :   bool   isPathToPointInSafetyArea3d(const mrs_msgs::ReferenceStamped& from, const mrs_msgs::ReferenceStamped& to);
+     587             :   double getMinZ(const std::string& frame_id);
+     588             :   double getMaxZ(const std::string& frame_id);
+     589             : 
+     590             :   // | ------------------------ callbacks ----------------------- |
+     591             : 
+     592             :   // topic callbacks
+     593             :   void callbackOdometry(const nav_msgs::Odometry::ConstPtr msg);
+     594             :   void callbackUavState(const mrs_msgs::UavState::ConstPtr msg);
+     595             :   void callbackHwApiStatus(const mrs_msgs::HwApiStatus::ConstPtr msg);
+     596             :   void callbackGNSS(const sensor_msgs::NavSatFix::ConstPtr msg);
+     597             :   void callbackRC(const mrs_msgs::HwApiRcChannels::ConstPtr msg);
+     598             : 
+     599             :   // topic timeouts
+     600             :   void timeoutUavState(const double& missing_for);
+     601             : 
+     602             :   // switching controller and tracker services
+     603             :   bool callbackSwitchTracker(mrs_msgs::String::Request& req, mrs_msgs::String::Response& res);
+     604             :   bool callbackSwitchController(mrs_msgs::String::Request& req, mrs_msgs::String::Response& res);
+     605             :   bool callbackTrackerResetStatic(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     606             : 
+     607             :   // reference callbacks
+     608             :   void callbackReferenceTopic(const mrs_msgs::ReferenceStamped::ConstPtr msg);
+     609             :   void callbackVelocityReferenceTopic(const mrs_msgs::VelocityReferenceStamped::ConstPtr msg);
+     610             :   void callbackTrajectoryReferenceTopic(const mrs_msgs::TrajectoryReference::ConstPtr msg);
+     611             :   bool callbackGoto(mrs_msgs::Vec4::Request& req, mrs_msgs::Vec4::Response& res);
+     612             :   bool callbackGotoFcu(mrs_msgs::Vec4::Request& req, mrs_msgs::Vec4::Response& res);
+     613             :   bool callbackGotoRelative(mrs_msgs::Vec4::Request& req, mrs_msgs::Vec4::Response& res);
+     614             :   bool callbackGotoAltitude(mrs_msgs::Vec1::Request& req, mrs_msgs::Vec1::Response& res);
+     615             :   bool callbackSetHeading(mrs_msgs::Vec1::Request& req, mrs_msgs::Vec1::Response& res);
+     616             :   bool callbackSetHeadingRelative(mrs_msgs::Vec1::Request& req, mrs_msgs::Vec1::Response& res);
+     617             :   bool callbackReferenceService(mrs_msgs::ReferenceStampedSrv::Request& req, mrs_msgs::ReferenceStampedSrv::Response& res);
+     618             :   bool callbackVelocityReferenceService(mrs_msgs::VelocityReferenceStampedSrv::Request& req, mrs_msgs::VelocityReferenceStampedSrv::Response& res);
+     619             :   bool callbackTrajectoryReferenceService(mrs_msgs::TrajectoryReferenceSrv::Request& req, mrs_msgs::TrajectoryReferenceSrv::Response& res);
+     620             :   bool callbackEmergencyReference(mrs_msgs::ReferenceStampedSrv::Request& req, mrs_msgs::ReferenceStampedSrv::Response& res);
+     621             : 
+     622             :   // safety callbacks
+     623             :   bool callbackHover(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     624             :   bool callbackStartTrajectoryTracking([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     625             :   bool callbackStopTrajectoryTracking([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     626             :   bool callbackResumeTrajectoryTracking([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     627             :   bool callbackGotoTrajectoryStart([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     628             :   bool callbackEHover(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     629             :   bool callbackFailsafe(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     630             :   bool callbackFailsafeEscalating(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     631             :   bool callbackEland(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     632             :   bool callbackParachute([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     633             :   bool callbackSetMinZ(mrs_msgs::Float64StampedSrv::Request& req, mrs_msgs::Float64StampedSrv::Response& res);
+     634             :   bool callbackToggleOutput(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res);
+     635             :   bool callbackArm(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res);
+     636             :   bool callbackEnableCallbacks(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res);
+     637             :   bool callbackEnableBumper(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res);
+     638             :   bool callbackUseSafetyArea(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res);
+     639             : 
+     640             :   bool callbackGetMinZ(mrs_msgs::GetFloat64::Request& req, mrs_msgs::GetFloat64::Response& res);
+     641             : 
+     642             :   bool callbackValidateReference(mrs_msgs::ValidateReference::Request& req, mrs_msgs::ValidateReference::Response& res);
+     643             :   bool callbackValidateReference2d(mrs_msgs::ValidateReference::Request& req, mrs_msgs::ValidateReference::Response& res);
+     644             :   bool callbackValidateReferenceList(mrs_msgs::ValidateReferenceList::Request& req, mrs_msgs::ValidateReferenceList::Response& res);
+     645             : 
+     646             :   // transformation callbacks
+     647             :   bool callbackTransformReference(mrs_msgs::TransformReferenceSrv::Request& req, mrs_msgs::TransformReferenceSrv::Response& res);
+     648             :   bool callbackTransformPose(mrs_msgs::TransformPoseSrv::Request& req, mrs_msgs::TransformPoseSrv::Response& res);
+     649             :   bool callbackTransformVector3(mrs_msgs::TransformVector3Srv::Request& req, mrs_msgs::TransformVector3Srv::Response& res);
+     650             : 
+     651             :   // | ----------------------- constraints ---------------------- |
+     652             : 
+     653             :   // sets constraints to all trackers
+     654             :   bool callbackSetConstraints(mrs_msgs::DynamicsConstraintsSrv::Request& req, mrs_msgs::DynamicsConstraintsSrv::Response& res);
+     655             : 
+     656             :   // constraints management
+     657             :   bool              got_constraints_ = false;
+     658             :   std::mutex        mutex_constraints_;
+     659             :   void              setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest& constraints);
+     660             :   void              setConstraintsToTrackers(const mrs_msgs::DynamicsConstraintsSrvRequest& constraints);
+     661             :   void              setConstraintsToControllers(const mrs_msgs::DynamicsConstraintsSrvRequest& constraints);
+     662             :   std::atomic<bool> constraints_being_enforced_ = false;
+     663             : 
+     664             :   std::optional<mrs_msgs::DynamicsConstraintsSrvRequest> enforceControllersConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest& constraints);
+     665             : 
+     666             :   mrs_msgs::DynamicsConstraintsSrvRequest current_constraints_;
+     667             :   mrs_msgs::DynamicsConstraintsSrvRequest sanitized_constraints_;
+     668             : 
+     669             :   // | ------------------ emergency triggered? ------------------ |
+     670             : 
+     671             :   std::atomic<bool> failsafe_triggered_ = false;
+     672             :   std::atomic<bool> eland_triggered_    = false;
+     673             : 
+     674             :   // | ------------------------- timers ------------------------- |
+     675             : 
+     676             :   // timer for regular status publishing
+     677             :   ros::Timer timer_status_;
+     678             :   void       timerStatus(const ros::TimerEvent& event);
+     679             : 
+     680             :   // timer for issuing the failsafe landing
+     681             :   ros::Timer timer_failsafe_;
+     682             :   void       timerFailsafe(const ros::TimerEvent& event);
+     683             : 
+     684             :   // oneshot timer for running controllers and trackers
+     685             :   void              asyncControl(void);
+     686             :   std::atomic<bool> running_async_control_ = false;
+     687             :   std::future<void> async_control_result_;
+     688             : 
+     689             :   // timer for issuing emergancy landing
+     690             :   ros::Timer timer_eland_;
+     691             :   void       timerEland(const ros::TimerEvent& event);
+     692             : 
+     693             :   // timer for regular checking of controller errors
+     694             :   ros::Timer        timer_safety_;
+     695             :   void              timerSafety(const ros::TimerEvent& event);
+     696             :   std::atomic<bool> running_safety_timer_        = false;
+     697             :   std::atomic<bool> odometry_switch_in_progress_ = false;
+     698             : 
+     699             :   // timer for issuing the pirouette
+     700             :   ros::Timer timer_pirouette_;
+     701             :   void       timerPirouette(const ros::TimerEvent& event);
+     702             : 
+     703             :   // | --------------------- obstacle bumper -------------------- |
+     704             : 
+     705             :   // bumper timer
+     706             :   ros::Timer timer_bumper_;
+     707             :   void       timerBumper(const ros::TimerEvent& event);
+     708             : 
+     709             :   // bumper subscriber
+     710             :   mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors> sh_bumper_;
+     711             : 
+     712             :   bool        _bumper_switch_tracker_    = false;
+     713             :   bool        _bumper_switch_controller_ = false;
+     714             :   std::string _bumper_tracker_name_;
+     715             :   std::string _bumper_controller_name_;
+     716             :   std::string bumper_previous_tracker_;
+     717             :   std::string bumper_previous_controller_;
+     718             : 
+     719             :   std::atomic<bool> bumper_enabled_   = false;
+     720             :   std::atomic<bool> bumper_repulsing_ = false;
+     721             : 
+     722             :   bool _bumper_horizontal_derive_from_dynamics_;
+     723             :   bool _bumper_vertical_derive_from_dynamics_;
+     724             : 
+     725             :   double _bumper_horizontal_distance_ = 0;
+     726             :   double _bumper_vertical_distance_   = 0;
+     727             : 
+     728             :   double _bumper_horizontal_overshoot_ = 0;
+     729             :   double _bumper_vertical_overshoot_   = 0;
+     730             : 
+     731             :   int  bumperGetSectorId(const double& x, const double& y, const double& z);
+     732             :   void bumperPushFromObstacle(void);
+     733             : 
+     734             :   // | --------------- safety checks and failsafes -------------- |
+     735             : 
+     736             :   // escalating failsafe (eland -> failsafe -> disarm)
+     737             :   bool                       _service_escalating_failsafe_enabled_ = false;
+     738             :   bool                       _rc_escalating_failsafe_enabled_      = false;
+     739             :   double                     _escalating_failsafe_timeout_         = 0;
+     740             :   ros::Time                  escalating_failsafe_time_;
+     741             :   bool                       _escalating_failsafe_ehover_   = false;
+     742             :   bool                       _escalating_failsafe_eland_    = false;
+     743             :   bool                       _escalating_failsafe_failsafe_ = false;
+     744             :   double                     _rc_escalating_failsafe_threshold_;
+     745             :   int                        _rc_escalating_failsafe_channel_  = 0;
+     746             :   bool                       rc_escalating_failsafe_triggered_ = false;
+     747             :   EscalatingFailsafeStates_t state_escalating_failsafe_        = ESC_NONE_STATE;
+     748             : 
+     749             :   std::string _tracker_error_action_;
+     750             : 
+     751             :   // emergancy landing state machine
+     752             :   LandingStates_t current_state_landing_  = IDLE_STATE;
+     753             :   LandingStates_t previous_state_landing_ = IDLE_STATE;
+     754             :   std::mutex      mutex_landing_state_machine_;
+     755             :   void            changeLandingState(LandingStates_t new_state);
+     756             :   double          _uav_mass_ = 0;
+     757             :   double          _elanding_cutoff_mass_factor_;
+     758             :   double          _elanding_cutoff_timeout_;
+     759             :   double          landing_uav_mass_ = 0;
+     760             : 
+     761             :   // initial body disturbance loaded from params
+     762             :   double _initial_body_disturbance_x_ = 0;
+     763             :   double _initial_body_disturbance_y_ = 0;
+     764             : 
+     765             :   // profiling
+     766             :   mrs_lib::Profiler profiler_;
+     767             :   bool              _profiler_enabled_ = false;
+     768             : 
+     769             :   // diagnostics publishing
+     770             :   void       publishDiagnostics(void);
+     771             :   std::mutex mutex_diagnostics_;
+     772             : 
+     773             :   void                                             ungripSrv(void);
+     774             :   mrs_lib::ServiceClientHandler<std_srvs::Trigger> sch_ungrip_;
+     775             : 
+     776             :   bool isFlyingNormally(void);
+     777             : 
+     778             :   // | ------------------------ pirouette ----------------------- |
+     779             : 
+     780             :   bool       _pirouette_enabled_ = false;
+     781             :   double     _pirouette_speed_;
+     782             :   double     _pirouette_timer_rate_;
+     783             :   std::mutex mutex_pirouette_;
+     784             :   double     pirouette_initial_heading_;
+     785             :   double     pirouette_iterator_;
+     786             :   bool       callbackPirouette(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     787             : 
+     788             :   // | -------------------- joystick control -------------------- |
+     789             : 
+     790             :   mrs_lib::SubscribeHandler<sensor_msgs::Joy> sh_joystick_;
+     791             : 
+     792             :   void callbackJoystick(const sensor_msgs::Joy::ConstPtr msg);
+     793             :   bool callbackUseJoystick([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     794             : 
+     795             :   // joystick buttons mappings
+     796             :   int _channel_A_, _channel_B_, _channel_X_, _channel_Y_, _channel_start_, _channel_back_, _channel_LT_, _channel_RT_, _channel_L_joy_, _channel_R_joy_;
+     797             : 
+     798             :   // channel numbers and channel multipliers
+     799             :   int    _channel_pitch_, _channel_roll_, _channel_heading_, _channel_throttle_;
+     800             :   double _channel_mult_pitch_, _channel_mult_roll_, _channel_mult_heading_, _channel_mult_throttle_;
+     801             : 
+     802             :   ros::Timer timer_joystick_;
+     803             :   void       timerJoystick(const ros::TimerEvent& event);
+     804             :   double     _joystick_timer_rate_ = 0;
+     805             : 
+     806             :   double _joystick_carrot_distance_ = 0;
+     807             : 
+     808             :   ros::Time joystick_start_press_time_;
+     809             :   bool      joystick_start_pressed_ = false;
+     810             : 
+     811             :   ros::Time joystick_back_press_time_;
+     812             :   bool      joystick_back_pressed_ = false;
+     813             :   bool      joystick_goto_enabled_ = false;
+     814             : 
+     815             :   bool      joystick_failsafe_pressed_ = false;
+     816             :   ros::Time joystick_failsafe_press_time_;
+     817             : 
+     818             :   bool      joystick_eland_pressed_ = false;
+     819             :   ros::Time joystick_eland_press_time_;
+     820             : 
+     821             :   // | ------------------- RC joystick control ------------------ |
+     822             : 
+     823             :   // listening to the RC channels as told by pixhawk
+     824             :   mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels> sh_hw_api_rc_;
+     825             : 
+     826             :   // the RC channel mapping of the main 4 control signals
+     827             :   double _rc_channel_pitch_, _rc_channel_roll_, _rc_channel_heading_, _rc_channel_throttle_;
+     828             : 
+     829             :   bool              _rc_goto_enabled_               = false;
+     830             :   std::atomic<bool> rc_goto_active_                 = false;
+     831             :   double            rc_joystick_channel_last_value_ = 0.5;
+     832             :   bool              rc_joystick_channel_was_low_    = false;
+     833             :   int               _rc_joystick_channel_           = 0;
+     834             : 
+     835             :   double _rc_horizontal_speed_ = 0;
+     836             :   double _rc_vertical_speed_   = 0;
+     837             :   double _rc_heading_rate_     = 0;
+     838             : 
+     839             :   // | ------------------- trajectory loading ------------------- |
+     840             : 
+     841             :   mrs_lib::PublisherHandler<geometry_msgs::PoseArray>        pub_debug_original_trajectory_poses_;
+     842             :   mrs_lib::PublisherHandler<visualization_msgs::MarkerArray> pub_debug_original_trajectory_markers_;
+     843             : 
+     844             :   // | --------------------- other routines --------------------- |
+     845             : 
+     846             :   // this is called to update the trackers and to receive position control command from the active one
+     847             :   void updateTrackers(void);
+     848             : 
+     849             :   // this is called to update the controllers and to receive attitude control command from the active one
+     850             :   void updateControllers(const mrs_msgs::UavState& uav_state);
+     851             : 
+     852             :   // sets the reference to the active tracker
+     853             :   std::tuple<bool, std::string> setReference(const mrs_msgs::ReferenceStamped reference_in);
+     854             : 
+     855             :   // sets the velocity reference to the active tracker
+     856             :   std::tuple<bool, std::string> setVelocityReference(const mrs_msgs::VelocityReferenceStamped& reference_in);
+     857             : 
+     858             :   // sets the reference trajectory to the active tracker
+     859             :   std::tuple<bool, std::string, bool, std::vector<std::string>, std::vector<bool>, std::vector<std::string>> setTrajectoryReference(
+     860             :       const mrs_msgs::TrajectoryReference trajectory_in);
+     861             : 
+     862             :   // publishes
+     863             :   void publish(void);
+     864             : 
+     865             :   bool loadConfigFile(const std::string& file_path, const std::string ns);
+     866             : 
+     867             :   double getMass(void);
+     868             : 
+     869             :   // publishes rviz-visualizable control reference
+     870             :   void publishControlReferenceOdom(const std::optional<mrs_msgs::TrackerCommand>& tracker_command, const Controller::ControlOutput& control_output);
+     871             : 
+     872             :   void initializeControlOutput(void);
+     873             : 
+     874             :   // tell the mrs_odometry to disable its callbacks
+     875             :   void odometryCallbacksSrv(const bool input);
+     876             : 
+     877             :   mrs_msgs::ReferenceStamped velocityReferenceToReference(const mrs_msgs::VelocityReferenceStamped& vel_reference);
+     878             : 
+     879             :   void                          setCallbacks(bool in);
+     880             :   bool                          isOffboard(void);
+     881             :   bool                          elandSrv(void);
+     882             :   std::tuple<bool, std::string> arming(const bool input);
+     883             : 
+     884             :   // safety functions impl
+     885             :   std::tuple<bool, std::string> ehover(void);
+     886             :   std::tuple<bool, std::string> hover(void);
+     887             :   std::tuple<bool, std::string> startTrajectoryTracking(void);
+     888             :   std::tuple<bool, std::string> stopTrajectoryTracking(void);
+     889             :   std::tuple<bool, std::string> resumeTrajectoryTracking(void);
+     890             :   std::tuple<bool, std::string> gotoTrajectoryStart(void);
+     891             :   std::tuple<bool, std::string> eland(void);
+     892             :   std::tuple<bool, std::string> failsafe(void);
+     893             :   std::tuple<bool, std::string> escalatingFailsafe(void);
+     894             : 
+     895             :   EscalatingFailsafeStates_t getNextEscFailsafeState(void);
+     896             : };
+     897             : 
+     898             : //}
+     899             : 
+     900             : /* //{ onInit() */
+     901             : 
+     902          91 : void ControlManager::onInit() {
+     903          91 :   preinitialize();
+     904          91 : }
+     905             : 
+     906             : //}
+     907             : 
+     908             : /* preinitialize() //{ */
+     909             : 
+     910          91 : void ControlManager::preinitialize(void) {
+     911             : 
+     912          91 :   nh_ = nodelet::Nodelet::getMTPrivateNodeHandle();
+     913             : 
+     914          91 :   ros::Time::waitForValid();
+     915             : 
+     916          91 :   mrs_lib::SubscribeHandlerOptions shopts;
+     917          91 :   shopts.nh                 = nh_;
+     918          91 :   shopts.node_name          = "ControlManager";
+     919          91 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     920          91 :   shopts.threadsafe         = true;
+     921          91 :   shopts.autostart          = true;
+     922          91 :   shopts.queue_size         = 10;
+     923          91 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     924             : 
+     925          91 :   sh_hw_api_capabilities_ = mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities>(shopts, "hw_api_capabilities_in");
+     926             : 
+     927          91 :   timer_hw_api_capabilities_ = nh_.createTimer(ros::Rate(1.0), &ControlManager::timerHwApiCapabilities, this);
+     928          91 : }
+     929             : 
+     930             : //}
+     931             : 
+     932             : /* initialize() //{ */
+     933             : 
+     934          91 : void ControlManager::initialize(void) {
+     935             : 
+     936          91 :   joystick_start_press_time_      = ros::Time(0);
+     937          91 :   joystick_failsafe_press_time_   = ros::Time(0);
+     938          91 :   joystick_eland_press_time_      = ros::Time(0);
+     939          91 :   escalating_failsafe_time_       = ros::Time(0);
+     940          91 :   controller_tracker_switch_time_ = ros::Time(0);
+     941             : 
+     942          91 :   ROS_INFO("[ControlManager]: initializing");
+     943             : 
+     944             :   // --------------------------------------------------------------
+     945             :   // |         common handler for trackers and controllers        |
+     946             :   // --------------------------------------------------------------
+     947             : 
+     948          91 :   common_handlers_ = std::make_shared<mrs_uav_managers::control_manager::CommonHandlers_t>();
+     949             : 
+     950             :   // --------------------------------------------------------------
+     951             :   // |                           params                           |
+     952             :   // --------------------------------------------------------------
+     953             : 
+     954         182 :   mrs_lib::ParamLoader param_loader(nh_, "ControlManager");
+     955             : 
+     956          91 :   param_loader.loadParam("custom_config", _custom_config_);
+     957          91 :   param_loader.loadParam("platform_config", _platform_config_);
+     958          91 :   param_loader.loadParam("world_config", _world_config_);
+     959          91 :   param_loader.loadParam("network_config", _network_config_);
+     960             : 
+     961          91 :   if (_custom_config_ != "") {
+     962          91 :     param_loader.addYamlFile(_custom_config_);
+     963             :   }
+     964             : 
+     965          91 :   if (_platform_config_ != "") {
+     966          91 :     param_loader.addYamlFile(_platform_config_);
+     967             :   }
+     968             : 
+     969          91 :   if (_world_config_ != "") {
+     970          91 :     param_loader.addYamlFile(_world_config_);
+     971             :   }
+     972             : 
+     973          91 :   if (_network_config_ != "") {
+     974          91 :     param_loader.addYamlFile(_network_config_);
+     975             :   }
+     976             : 
+     977          91 :   param_loader.addYamlFileFromParam("private_config");
+     978          91 :   param_loader.addYamlFileFromParam("public_config");
+     979          91 :   param_loader.addYamlFileFromParam("private_trackers");
+     980          91 :   param_loader.addYamlFileFromParam("private_controllers");
+     981          91 :   param_loader.addYamlFileFromParam("public_controllers");
+     982             : 
+     983             :   // params passed from the launch file are not prefixed
+     984          91 :   param_loader.loadParam("uav_name", _uav_name_);
+     985          91 :   param_loader.loadParam("body_frame", _body_frame_);
+     986          91 :   param_loader.loadParam("enable_profiler", _profiler_enabled_);
+     987          91 :   param_loader.loadParam("uav_mass", _uav_mass_);
+     988          91 :   param_loader.loadParam("body_disturbance_x", _initial_body_disturbance_x_);
+     989          91 :   param_loader.loadParam("body_disturbance_y", _initial_body_disturbance_y_);
+     990          91 :   param_loader.loadParam("g", common_handlers_->g);
+     991             : 
+     992             :   // motor params are also not prefixed, since they are common to more nodes
+     993          91 :   param_loader.loadParam("motor_params/a", common_handlers_->throttle_model.A);
+     994          91 :   param_loader.loadParam("motor_params/b", common_handlers_->throttle_model.B);
+     995          91 :   param_loader.loadParam("motor_params/n_motors", common_handlers_->throttle_model.n_motors);
+     996             : 
+     997             :   // | ----------------------- safety area ---------------------- |
+     998             : 
+     999             :   bool use_safety_area;
+    1000          91 :   param_loader.loadParam("safety_area/enabled", use_safety_area);
+    1001          91 :   use_safety_area_ = use_safety_area;
+    1002             : 
+    1003          91 :   param_loader.loadParam("safety_area/horizontal/frame_name", _safety_area_horizontal_frame_);
+    1004             : 
+    1005          91 :   param_loader.loadParam("safety_area/vertical/frame_name", _safety_area_vertical_frame_);
+    1006          91 :   param_loader.loadParam("safety_area/vertical/max_z", _safety_area_max_z_);
+    1007             : 
+    1008             :   {
+    1009             :     double temp;
+    1010          91 :     param_loader.loadParam("safety_area/vertical/min_z", temp);
+    1011             : 
+    1012          91 :     _safety_area_min_z_ = temp;
+    1013             :   }
+    1014             : 
+    1015          91 :   if (use_safety_area_) {
+    1016             : 
+    1017         213 :     Eigen::MatrixXd border_points = param_loader.loadMatrixDynamic2("safety_area/horizontal/points", -1, 2);
+    1018             : 
+    1019             :     try {
+    1020             : 
+    1021         142 :       std::vector<Eigen::MatrixXd> polygon_obstacle_points;
+    1022          71 :       std::vector<Eigen::MatrixXd> point_obstacle_points;
+    1023             : 
+    1024          71 :       safety_zone_ = std::make_unique<mrs_lib::SafetyZone>(border_points);
+    1025             :     }
+    1026             : 
+    1027           0 :     catch (mrs_lib::SafetyZone::BorderError& e) {
+    1028           0 :       ROS_ERROR("[ControlManager]: SafetyArea: wrong configruation for the safety zone border polygon");
+    1029           0 :       ros::shutdown();
+    1030             :     }
+    1031           0 :     catch (...) {
+    1032           0 :       ROS_ERROR("[ControlManager]: SafetyArea: unhandled exception!");
+    1033           0 :       ros::shutdown();
+    1034             :     }
+    1035             : 
+    1036          71 :     ROS_INFO("[ControlManager]: safety area initialized");
+    1037             :   }
+    1038             : 
+    1039          91 :   param_loader.setPrefix("mrs_uav_managers/control_manager/");
+    1040             : 
+    1041          91 :   param_loader.loadParam("state_input", _state_input_);
+    1042             : 
+    1043          91 :   if (!(_state_input_ == INPUT_UAV_STATE || _state_input_ == INPUT_ODOMETRY)) {
+    1044           0 :     ROS_ERROR("[ControlManager]: the state_input parameter has to be in {0, 1}");
+    1045           0 :     ros::shutdown();
+    1046             :   }
+    1047             : 
+    1048          91 :   param_loader.loadParam("safety/min_throttle_null_tracker", _min_throttle_null_tracker_);
+    1049          91 :   param_loader.loadParam("safety/ehover_tracker", _ehover_tracker_name_);
+    1050          91 :   param_loader.loadParam("safety/failsafe_controller", _failsafe_controller_name_);
+    1051             : 
+    1052          91 :   param_loader.loadParam("safety/eland/controller", _eland_controller_name_);
+    1053          91 :   param_loader.loadParam("safety/eland/cutoff_mass_factor", _elanding_cutoff_mass_factor_);
+    1054          91 :   param_loader.loadParam("safety/eland/cutoff_timeout", _elanding_cutoff_timeout_);
+    1055          91 :   param_loader.loadParam("safety/eland/timer_rate", _elanding_timer_rate_);
+    1056          91 :   param_loader.loadParam("safety/eland/disarm", _eland_disarm_enabled_);
+    1057             : 
+    1058          91 :   param_loader.loadParam("safety/escalating_failsafe/service/enabled", _service_escalating_failsafe_enabled_);
+    1059          91 :   param_loader.loadParam("safety/escalating_failsafe/rc/enabled", _rc_escalating_failsafe_enabled_);
+    1060          91 :   param_loader.loadParam("safety/escalating_failsafe/rc/channel_number", _rc_escalating_failsafe_channel_);
+    1061          91 :   param_loader.loadParam("safety/escalating_failsafe/rc/threshold", _rc_escalating_failsafe_threshold_);
+    1062          91 :   param_loader.loadParam("safety/escalating_failsafe/timeout", _escalating_failsafe_timeout_);
+    1063          91 :   param_loader.loadParam("safety/escalating_failsafe/ehover", _escalating_failsafe_ehover_);
+    1064          91 :   param_loader.loadParam("safety/escalating_failsafe/eland", _escalating_failsafe_eland_);
+    1065          91 :   param_loader.loadParam("safety/escalating_failsafe/failsafe", _escalating_failsafe_failsafe_);
+    1066             : 
+    1067          91 :   param_loader.loadParam("safety/tilt_limit/eland/enabled", _tilt_limit_eland_enabled_);
+    1068          91 :   param_loader.loadParam("safety/tilt_limit/eland/limit", _tilt_limit_eland_);
+    1069             : 
+    1070          91 :   _tilt_limit_eland_ = M_PI * (_tilt_limit_eland_ / 180.0);
+    1071             : 
+    1072          91 :   if (_tilt_limit_eland_enabled_ && fabs(_tilt_limit_eland_) < 1e-3) {
+    1073           0 :     ROS_ERROR("[ControlManager]: safety/tilt_limit/eland/enabled = 'TRUE' but the limit is too low");
+    1074           0 :     ros::shutdown();
+    1075             :   }
+    1076             : 
+    1077          91 :   param_loader.loadParam("safety/tilt_limit/disarm/enabled", _tilt_limit_disarm_enabled_);
+    1078          91 :   param_loader.loadParam("safety/tilt_limit/disarm/limit", _tilt_limit_disarm_);
+    1079             : 
+    1080          91 :   _tilt_limit_disarm_ = M_PI * (_tilt_limit_disarm_ / 180.0);
+    1081             : 
+    1082          91 :   if (_tilt_limit_disarm_enabled_ && fabs(_tilt_limit_disarm_) < 1e-3) {
+    1083           0 :     ROS_ERROR("[ControlManager]: safety/tilt_limit/disarm/enabled = 'TRUE' but the limit is too low");
+    1084           0 :     ros::shutdown();
+    1085             :   }
+    1086             : 
+    1087          91 :   param_loader.loadParam("safety/yaw_error_eland/enabled", _yaw_error_eland_enabled_);
+    1088          91 :   param_loader.loadParam("safety/yaw_error_eland/limit", _yaw_error_eland_);
+    1089             : 
+    1090          91 :   _yaw_error_eland_ = M_PI * (_yaw_error_eland_ / 180.0);
+    1091             : 
+    1092          91 :   if (_yaw_error_eland_enabled_ && fabs(_yaw_error_eland_) < 1e-3) {
+    1093           0 :     ROS_ERROR("[ControlManager]: safety/yaw_error_eland/enabled = 'TRUE' but the limit is too low");
+    1094           0 :     ros::shutdown();
+    1095             :   }
+    1096             : 
+    1097          91 :   param_loader.loadParam("status_timer_rate", _status_timer_rate_);
+    1098          91 :   param_loader.loadParam("safety/safety_timer_rate", _safety_timer_rate_);
+    1099          91 :   param_loader.loadParam("safety/failsafe_timer_rate", _failsafe_timer_rate_);
+    1100          91 :   param_loader.loadParam("safety/rc_emergency_handoff/enabled", _rc_emergency_handoff_);
+    1101             : 
+    1102          91 :   param_loader.loadParam("safety/odometry_max_missing_time", _uav_state_max_missing_time_);
+    1103          91 :   param_loader.loadParam("safety/odometry_innovation_eland/enabled", _odometry_innovation_check_enabled_);
+    1104             : 
+    1105          91 :   param_loader.loadParam("safety/tilt_error_disarm/enabled", _tilt_error_disarm_enabled_);
+    1106          91 :   param_loader.loadParam("safety/tilt_error_disarm/timeout", _tilt_error_disarm_timeout_);
+    1107          91 :   param_loader.loadParam("safety/tilt_error_disarm/error_threshold", _tilt_error_disarm_threshold_);
+    1108             : 
+    1109          91 :   _tilt_error_disarm_threshold_ = M_PI * (_tilt_error_disarm_threshold_ / 180.0);
+    1110             : 
+    1111          91 :   if (_tilt_error_disarm_enabled_ && fabs(_tilt_error_disarm_threshold_) < 1e-3) {
+    1112           0 :     ROS_ERROR("[ControlManager]: safety/tilt_error_disarm/enabled = 'TRUE' but the limit is too low");
+    1113           0 :     ros::shutdown();
+    1114             :   }
+    1115             : 
+    1116             :   // default constraints
+    1117             : 
+    1118          91 :   param_loader.loadParam("default_constraints/horizontal/speed", current_constraints_.constraints.horizontal_speed);
+    1119          91 :   param_loader.loadParam("default_constraints/horizontal/acceleration", current_constraints_.constraints.horizontal_acceleration);
+    1120          91 :   param_loader.loadParam("default_constraints/horizontal/jerk", current_constraints_.constraints.horizontal_jerk);
+    1121          91 :   param_loader.loadParam("default_constraints/horizontal/snap", current_constraints_.constraints.horizontal_snap);
+    1122             : 
+    1123          91 :   param_loader.loadParam("default_constraints/vertical/ascending/speed", current_constraints_.constraints.vertical_ascending_speed);
+    1124          91 :   param_loader.loadParam("default_constraints/vertical/ascending/acceleration", current_constraints_.constraints.vertical_ascending_acceleration);
+    1125          91 :   param_loader.loadParam("default_constraints/vertical/ascending/jerk", current_constraints_.constraints.vertical_ascending_jerk);
+    1126          91 :   param_loader.loadParam("default_constraints/vertical/ascending/snap", current_constraints_.constraints.vertical_ascending_snap);
+    1127             : 
+    1128          91 :   param_loader.loadParam("default_constraints/vertical/descending/speed", current_constraints_.constraints.vertical_descending_speed);
+    1129          91 :   param_loader.loadParam("default_constraints/vertical/descending/acceleration", current_constraints_.constraints.vertical_descending_acceleration);
+    1130          91 :   param_loader.loadParam("default_constraints/vertical/descending/jerk", current_constraints_.constraints.vertical_descending_jerk);
+    1131          91 :   param_loader.loadParam("default_constraints/vertical/descending/snap", current_constraints_.constraints.vertical_descending_snap);
+    1132             : 
+    1133          91 :   param_loader.loadParam("default_constraints/heading/speed", current_constraints_.constraints.heading_speed);
+    1134          91 :   param_loader.loadParam("default_constraints/heading/acceleration", current_constraints_.constraints.heading_acceleration);
+    1135          91 :   param_loader.loadParam("default_constraints/heading/jerk", current_constraints_.constraints.heading_jerk);
+    1136          91 :   param_loader.loadParam("default_constraints/heading/snap", current_constraints_.constraints.heading_snap);
+    1137             : 
+    1138          91 :   param_loader.loadParam("default_constraints/angular_speed/roll", current_constraints_.constraints.roll_rate);
+    1139          91 :   param_loader.loadParam("default_constraints/angular_speed/pitch", current_constraints_.constraints.pitch_rate);
+    1140          91 :   param_loader.loadParam("default_constraints/angular_speed/yaw", current_constraints_.constraints.yaw_rate);
+    1141             : 
+    1142          91 :   param_loader.loadParam("default_constraints/tilt", current_constraints_.constraints.tilt);
+    1143             : 
+    1144          91 :   current_constraints_.constraints.tilt = M_PI * (current_constraints_.constraints.tilt / 180.0);
+    1145             : 
+    1146             :   // joystick
+    1147             : 
+    1148          91 :   param_loader.loadParam("joystick/enabled", _joystick_enabled_);
+    1149          91 :   param_loader.loadParam("joystick/mode", _joystick_mode_);
+    1150          91 :   param_loader.loadParam("joystick/carrot_distance", _joystick_carrot_distance_);
+    1151          91 :   param_loader.loadParam("joystick/joystick_timer_rate", _joystick_timer_rate_);
+    1152          91 :   param_loader.loadParam("joystick/attitude_control/tracker", _joystick_tracker_name_);
+    1153          91 :   param_loader.loadParam("joystick/attitude_control/controller", _joystick_controller_name_);
+    1154          91 :   param_loader.loadParam("joystick/attitude_control/fallback/tracker", _joystick_fallback_tracker_name_);
+    1155          91 :   param_loader.loadParam("joystick/attitude_control/fallback/controller", _joystick_fallback_controller_name_);
+    1156             : 
+    1157          91 :   param_loader.loadParam("joystick/channels/A", _channel_A_);
+    1158          91 :   param_loader.loadParam("joystick/channels/B", _channel_B_);
+    1159          91 :   param_loader.loadParam("joystick/channels/X", _channel_X_);
+    1160          91 :   param_loader.loadParam("joystick/channels/Y", _channel_Y_);
+    1161          91 :   param_loader.loadParam("joystick/channels/start", _channel_start_);
+    1162          91 :   param_loader.loadParam("joystick/channels/back", _channel_back_);
+    1163          91 :   param_loader.loadParam("joystick/channels/LT", _channel_LT_);
+    1164          91 :   param_loader.loadParam("joystick/channels/RT", _channel_RT_);
+    1165          91 :   param_loader.loadParam("joystick/channels/L_joy", _channel_L_joy_);
+    1166          91 :   param_loader.loadParam("joystick/channels/R_joy", _channel_R_joy_);
+    1167             : 
+    1168             :   // load channels
+    1169          91 :   param_loader.loadParam("joystick/channels/pitch", _channel_pitch_);
+    1170          91 :   param_loader.loadParam("joystick/channels/roll", _channel_roll_);
+    1171          91 :   param_loader.loadParam("joystick/channels/heading", _channel_heading_);
+    1172          91 :   param_loader.loadParam("joystick/channels/throttle", _channel_throttle_);
+    1173             : 
+    1174             :   // load channel multipliers
+    1175          91 :   param_loader.loadParam("joystick/channel_multipliers/pitch", _channel_mult_pitch_);
+    1176          91 :   param_loader.loadParam("joystick/channel_multipliers/roll", _channel_mult_roll_);
+    1177          91 :   param_loader.loadParam("joystick/channel_multipliers/heading", _channel_mult_heading_);
+    1178          91 :   param_loader.loadParam("joystick/channel_multipliers/throttle", _channel_mult_throttle_);
+    1179             : 
+    1180             :   bool bumper_enabled;
+    1181          91 :   param_loader.loadParam("obstacle_bumper/enabled", bumper_enabled);
+    1182          91 :   bumper_enabled_ = bumper_enabled;
+    1183             : 
+    1184          91 :   param_loader.loadParam("obstacle_bumper/switch_tracker", _bumper_switch_tracker_);
+    1185          91 :   param_loader.loadParam("obstacle_bumper/switch_controller", _bumper_switch_controller_);
+    1186          91 :   param_loader.loadParam("obstacle_bumper/tracker", _bumper_tracker_name_);
+    1187          91 :   param_loader.loadParam("obstacle_bumper/controller", _bumper_controller_name_);
+    1188          91 :   param_loader.loadParam("obstacle_bumper/timer_rate", _bumper_timer_rate_);
+    1189             : 
+    1190          91 :   param_loader.loadParam("obstacle_bumper/horizontal/min_distance_to_obstacle", _bumper_horizontal_distance_);
+    1191          91 :   param_loader.loadParam("obstacle_bumper/horizontal/derived_from_dynamics", _bumper_horizontal_derive_from_dynamics_);
+    1192             : 
+    1193          91 :   param_loader.loadParam("obstacle_bumper/vertical/min_distance_to_obstacle", _bumper_vertical_distance_);
+    1194          91 :   param_loader.loadParam("obstacle_bumper/vertical/derived_from_dynamics", _bumper_vertical_derive_from_dynamics_);
+    1195             : 
+    1196          91 :   param_loader.loadParam("obstacle_bumper/horizontal/overshoot", _bumper_horizontal_overshoot_);
+    1197          91 :   param_loader.loadParam("obstacle_bumper/vertical/overshoot", _bumper_vertical_overshoot_);
+    1198             : 
+    1199          91 :   param_loader.loadParam("safety/tracker_error_action", _tracker_error_action_);
+    1200             : 
+    1201          91 :   param_loader.loadParam("trajectory_tracking/snap_to_safety_area", _snap_trajectory_to_safety_area_);
+    1202             : 
+    1203             :   // check the values of tracker error action
+    1204          91 :   if (_tracker_error_action_ != ELAND_STR && _tracker_error_action_ != EHOVER_STR) {
+    1205           0 :     ROS_ERROR("[ControlManager]: the tracker_error_action parameter (%s) is not correct, requires {%s, %s}", _tracker_error_action_.c_str(), ELAND_STR,
+    1206             :               EHOVER_STR);
+    1207           0 :     ros::shutdown();
+    1208             :   }
+    1209             : 
+    1210          91 :   param_loader.loadParam("rc_joystick/enabled", _rc_goto_enabled_);
+    1211          91 :   param_loader.loadParam("rc_joystick/channel_number", _rc_joystick_channel_);
+    1212          91 :   param_loader.loadParam("rc_joystick/horizontal_speed", _rc_horizontal_speed_);
+    1213          91 :   param_loader.loadParam("rc_joystick/vertical_speed", _rc_vertical_speed_);
+    1214          91 :   param_loader.loadParam("rc_joystick/heading_rate", _rc_heading_rate_);
+    1215             : 
+    1216          91 :   param_loader.loadParam("rc_joystick/channels/pitch", _rc_channel_pitch_);
+    1217          91 :   param_loader.loadParam("rc_joystick/channels/roll", _rc_channel_roll_);
+    1218          91 :   param_loader.loadParam("rc_joystick/channels/heading", _rc_channel_heading_);
+    1219          91 :   param_loader.loadParam("rc_joystick/channels/throttle", _rc_channel_throttle_);
+    1220             : 
+    1221          91 :   param_loader.loadParam("pirouette/speed", _pirouette_speed_);
+    1222          91 :   param_loader.loadParam("pirouette/timer_rate", _pirouette_timer_rate_);
+    1223             : 
+    1224          91 :   param_loader.loadParam("safety/parachute/enabled", _parachute_enabled_);
+    1225             : 
+    1226             :   // --------------------------------------------------------------
+    1227             :   // |             initialize the last control output             |
+    1228             :   // --------------------------------------------------------------
+    1229             : 
+    1230          91 :   initializeControlOutput();
+    1231             : 
+    1232             :   // | --------------------- tf transformer --------------------- |
+    1233             : 
+    1234          91 :   transformer_ = std::make_shared<mrs_lib::Transformer>(nh_, "ControlManager");
+    1235          91 :   transformer_->setDefaultPrefix(_uav_name_);
+    1236          91 :   transformer_->retryLookupNewest(true);
+    1237             : 
+    1238             :   // | ------------------- scope timer logger ------------------- |
+    1239             : 
+    1240          91 :   param_loader.loadParam("scope_timer/enabled", scope_timer_enabled_);
+    1241         273 :   const std::string scope_timer_log_filename = param_loader.loadParam2("scope_timer/log_filename", std::string(""));
+    1242          91 :   scope_timer_logger_                        = std::make_shared<mrs_lib::ScopeTimerLogger>(scope_timer_log_filename, scope_timer_enabled_);
+    1243             : 
+    1244             :   // bind transformer to trackers and controllers for use
+    1245          91 :   common_handlers_->transformer = transformer_;
+    1246             : 
+    1247             :   // bind scope timer to trackers and controllers for use
+    1248          91 :   common_handlers_->scope_timer.enabled = scope_timer_enabled_;
+    1249          91 :   common_handlers_->scope_timer.logger  = scope_timer_logger_;
+    1250             : 
+    1251          91 :   common_handlers_->safety_area.use_safety_area       = use_safety_area_;
+    1252          91 :   common_handlers_->safety_area.isPointInSafetyArea2d = boost::bind(&ControlManager::isPointInSafetyArea2d, this, _1);
+    1253          91 :   common_handlers_->safety_area.isPointInSafetyArea3d = boost::bind(&ControlManager::isPointInSafetyArea3d, this, _1);
+    1254          91 :   common_handlers_->safety_area.getMinZ               = boost::bind(&ControlManager::getMinZ, this, _1);
+    1255          91 :   common_handlers_->safety_area.getMaxZ               = boost::bind(&ControlManager::getMaxZ, this, _1);
+    1256             : 
+    1257          91 :   common_handlers_->getMass = boost::bind(&ControlManager::getMass, this);
+    1258             : 
+    1259          91 :   common_handlers_->detailed_model_params = loadDetailedUavModelParams(nh_, "ControlManager", _platform_config_, _custom_config_);
+    1260             : 
+    1261          91 :   common_handlers_->control_output_modalities = _hw_api_inputs_;
+    1262             : 
+    1263          91 :   common_handlers_->uav_name = _uav_name_;
+    1264             : 
+    1265          91 :   common_handlers_->parent_nh = nh_;
+    1266             : 
+    1267             :   // --------------------------------------------------------------
+    1268             :   // |                        load trackers                       |
+    1269             :   // --------------------------------------------------------------
+    1270             : 
+    1271         182 :   std::vector<std::string> custom_trackers;
+    1272             : 
+    1273          91 :   param_loader.loadParam("mrs_trackers", _tracker_names_);
+    1274          91 :   param_loader.loadParam("trackers", custom_trackers);
+    1275             : 
+    1276          91 :   if (!custom_trackers.empty()) {
+    1277           1 :     _tracker_names_.insert(_tracker_names_.end(), custom_trackers.begin(), custom_trackers.end());
+    1278             :   }
+    1279             : 
+    1280          91 :   param_loader.loadParam("null_tracker", _null_tracker_name_);
+    1281          91 :   param_loader.loadParam("landing_takeoff_tracker", _landoff_tracker_name_);
+    1282             : 
+    1283          91 :   tracker_loader_ = std::make_unique<pluginlib::ClassLoader<mrs_uav_managers::Tracker>>("mrs_uav_managers", "mrs_uav_managers::Tracker");
+    1284             : 
+    1285         638 :   for (int i = 0; i < int(_tracker_names_.size()); i++) {
+    1286             : 
+    1287        1094 :     std::string tracker_name = _tracker_names_[i];
+    1288             : 
+    1289             :     // load the controller parameters
+    1290        1094 :     std::string address;
+    1291        1094 :     std::string name_space;
+    1292             :     bool        human_switchable;
+    1293             : 
+    1294         547 :     param_loader.loadParam(tracker_name + "/address", address);
+    1295         547 :     param_loader.loadParam(tracker_name + "/namespace", name_space);
+    1296         547 :     param_loader.loadParam(tracker_name + "/human_switchable", human_switchable, false);
+    1297             : 
+    1298        1641 :     TrackerParams new_tracker(address, name_space, human_switchable);
+    1299         547 :     trackers_.insert(std::pair<std::string, TrackerParams>(tracker_name, new_tracker));
+    1300             : 
+    1301             :     try {
+    1302         547 :       ROS_INFO("[ControlManager]: loading the tracker '%s'", new_tracker.address.c_str());
+    1303         547 :       tracker_list_.push_back(tracker_loader_->createInstance(new_tracker.address.c_str()));
+    1304             :     }
+    1305           0 :     catch (pluginlib::CreateClassException& ex1) {
+    1306           0 :       ROS_ERROR("[ControlManager]: CreateClassException for the tracker '%s'", new_tracker.address.c_str());
+    1307           0 :       ROS_ERROR("[ControlManager]: Error: %s", ex1.what());
+    1308           0 :       ros::shutdown();
+    1309             :     }
+    1310           0 :     catch (pluginlib::PluginlibException& ex) {
+    1311           0 :       ROS_ERROR("[ControlManager]: PluginlibException for the tracker '%s'", new_tracker.address.c_str());
+    1312           0 :       ROS_ERROR("[ControlManager]: Error: %s", ex.what());
+    1313           0 :       ros::shutdown();
+    1314             :     }
+    1315             :   }
+    1316             : 
+    1317          91 :   ROS_INFO("[ControlManager]: trackers were loaded");
+    1318             : 
+    1319         638 :   for (int i = 0; i < int(tracker_list_.size()); i++) {
+    1320             : 
+    1321         547 :     std::map<std::string, TrackerParams>::iterator it;
+    1322         547 :     it = trackers_.find(_tracker_names_[i]);
+    1323             : 
+    1324             :     // create private handlers
+    1325             :     std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers =
+    1326        1094 :         std::make_shared<mrs_uav_managers::control_manager::PrivateHandlers_t>();
+    1327             : 
+    1328         547 :     private_handlers->loadConfigFile = boost::bind(&ControlManager::loadConfigFile, this, _1, it->second.name_space);
+    1329         547 :     private_handlers->name_space     = it->second.name_space;
+    1330         547 :     private_handlers->runtime_name   = _tracker_names_[i];
+    1331         547 :     private_handlers->param_loader   = std::make_unique<mrs_lib::ParamLoader>(ros::NodeHandle(nh_, it->second.name_space), _tracker_names_[i]);
+    1332             : 
+    1333         547 :     if (_custom_config_ != "") {
+    1334         547 :       private_handlers->param_loader->addYamlFile(_custom_config_);
+    1335             :     }
+    1336             : 
+    1337         547 :     if (_platform_config_ != "") {
+    1338         547 :       private_handlers->param_loader->addYamlFile(_platform_config_);
+    1339             :     }
+    1340             : 
+    1341         547 :     if (_world_config_ != "") {
+    1342         547 :       private_handlers->param_loader->addYamlFile(_world_config_);
+    1343             :     }
+    1344             : 
+    1345         547 :     if (_network_config_ != "") {
+    1346         547 :       private_handlers->param_loader->addYamlFile(_network_config_);
+    1347             :     }
+    1348             : 
+    1349         547 :     bool success = false;
+    1350             : 
+    1351             :     try {
+    1352         547 :       ROS_INFO("[ControlManager]: initializing the tracker '%s'", it->second.address.c_str());
+    1353         547 :       success = tracker_list_[i]->initialize(ros::NodeHandle(nh_, it->second.name_space), common_handlers_, private_handlers);
+    1354             :     }
+    1355           0 :     catch (std::runtime_error& ex) {
+    1356           0 :       ROS_ERROR("[ControlManager]: exception caught during tracker initialization: '%s'", ex.what());
+    1357             :     }
+    1358             : 
+    1359         547 :     if (!success) {
+    1360           0 :       ROS_ERROR("[ControlManager]: failed to initialize the tracker '%s'", it->second.address.c_str());
+    1361           0 :       ros::shutdown();
+    1362             :     }
+    1363             :   }
+    1364             : 
+    1365          91 :   ROS_INFO("[ControlManager]: trackers were initialized");
+    1366             : 
+    1367             :   // --------------------------------------------------------------
+    1368             :   // |           check the existance of selected trackers         |
+    1369             :   // --------------------------------------------------------------
+    1370             : 
+    1371             :   // | ------ check for the existance of the hover tracker ------ |
+    1372             : 
+    1373             :   // check if the hover_tracker is within the loaded trackers
+    1374             :   {
+    1375          91 :     auto idx = idxInVector(_ehover_tracker_name_, _tracker_names_);
+    1376             : 
+    1377          91 :     if (idx) {
+    1378          91 :       _ehover_tracker_idx_ = idx.value();
+    1379             :     } else {
+    1380           0 :       ROS_ERROR("[ControlManager]: the safety/hover_tracker (%s) is not within the loaded trackers", _ehover_tracker_name_.c_str());
+    1381           0 :       ros::shutdown();
+    1382             :     }
+    1383             :   }
+    1384             : 
+    1385             :   // | ----- check for the existence of the landoff tracker ----- |
+    1386             : 
+    1387             :   {
+    1388          91 :     auto idx = idxInVector(_landoff_tracker_name_, _tracker_names_);
+    1389             : 
+    1390          91 :     if (idx) {
+    1391          91 :       _landoff_tracker_idx_ = idx.value();
+    1392             :     } else {
+    1393           0 :       ROS_ERROR("[ControlManager]: the landoff tracker (%s) is not within the loaded trackers", _landoff_tracker_name_.c_str());
+    1394           0 :       ros::shutdown();
+    1395             :     }
+    1396             :   }
+    1397             : 
+    1398             :   // | ------- check for the existence of the null tracker ------ |
+    1399             : 
+    1400             :   {
+    1401          91 :     auto idx = idxInVector(_null_tracker_name_, _tracker_names_);
+    1402             : 
+    1403          91 :     if (idx) {
+    1404          91 :       _null_tracker_idx_ = idx.value();
+    1405             :     } else {
+    1406           0 :       ROS_ERROR("[ControlManager]: the null tracker (%s) is not within the loaded trackers", _null_tracker_name_.c_str());
+    1407           0 :       ros::shutdown();
+    1408             :     }
+    1409             :   }
+    1410             : 
+    1411             :   // --------------------------------------------------------------
+    1412             :   // |         check existance of trackers for joystick           |
+    1413             :   // --------------------------------------------------------------
+    1414             : 
+    1415          91 :   if (_joystick_enabled_) {
+    1416             : 
+    1417          91 :     auto idx = idxInVector(_joystick_tracker_name_, _tracker_names_);
+    1418             : 
+    1419          91 :     if (idx) {
+    1420          91 :       _joystick_tracker_idx_ = idx.value();
+    1421             :     } else {
+    1422           0 :       ROS_ERROR("[ControlManager]: the joystick tracker (%s) is not within the loaded trackers", _joystick_tracker_name_.c_str());
+    1423           0 :       ros::shutdown();
+    1424             :     }
+    1425             :   }
+    1426             : 
+    1427          91 :   if (_bumper_switch_tracker_) {
+    1428             : 
+    1429          91 :     auto idx = idxInVector(_bumper_tracker_name_, _tracker_names_);
+    1430             : 
+    1431          91 :     if (!idx) {
+    1432           0 :       ROS_ERROR("[ControlManager]: the bumper tracker (%s) is not within the loaded trackers", _bumper_tracker_name_.c_str());
+    1433           0 :       ros::shutdown();
+    1434             :     }
+    1435             :   }
+    1436             : 
+    1437             :   {
+    1438          91 :     auto idx = idxInVector(_joystick_fallback_tracker_name_, _tracker_names_);
+    1439             : 
+    1440          91 :     if (idx) {
+    1441          91 :       _joystick_fallback_tracker_idx_ = idx.value();
+    1442             :     } else {
+    1443           0 :       ROS_ERROR("[ControlManager]: the joystick fallback tracker (%s) is not within the loaded trackers", _joystick_fallback_tracker_name_.c_str());
+    1444           0 :       ros::shutdown();
+    1445             :     }
+    1446             :   }
+    1447             : 
+    1448             :   // --------------------------------------------------------------
+    1449             :   // |                    load the controllers                    |
+    1450             :   // --------------------------------------------------------------
+    1451             : 
+    1452         182 :   std::vector<std::string> custom_controllers;
+    1453             : 
+    1454          91 :   param_loader.loadParam("mrs_controllers", _controller_names_);
+    1455          91 :   param_loader.loadParam("controllers", custom_controllers);
+    1456             : 
+    1457          91 :   if (!custom_controllers.empty()) {
+    1458           0 :     _controller_names_.insert(_controller_names_.end(), custom_controllers.begin(), custom_controllers.end());
+    1459             :   }
+    1460             : 
+    1461          91 :   controller_loader_ = std::make_unique<pluginlib::ClassLoader<mrs_uav_managers::Controller>>("mrs_uav_managers", "mrs_uav_managers::Controller");
+    1462             : 
+    1463             :   // for each controller in the list
+    1464         546 :   for (int i = 0; i < int(_controller_names_.size()); i++) {
+    1465             : 
+    1466         910 :     std::string controller_name = _controller_names_[i];
+    1467             : 
+    1468             :     // load the controller parameters
+    1469         910 :     std::string address;
+    1470         910 :     std::string name_space;
+    1471             :     double      eland_threshold, failsafe_threshold, odometry_innovation_threshold;
+    1472             :     bool        human_switchable;
+    1473         455 :     param_loader.loadParam(controller_name + "/address", address);
+    1474         455 :     param_loader.loadParam(controller_name + "/namespace", name_space);
+    1475         455 :     param_loader.loadParam(controller_name + "/eland_threshold", eland_threshold);
+    1476         455 :     param_loader.loadParam(controller_name + "/failsafe_threshold", failsafe_threshold);
+    1477         455 :     param_loader.loadParam(controller_name + "/odometry_innovation_threshold", odometry_innovation_threshold);
+    1478         455 :     param_loader.loadParam(controller_name + "/human_switchable", human_switchable, false);
+    1479             : 
+    1480             :     // check if the controller can output some of the required outputs
+    1481             :     {
+    1482             : 
+    1483         455 :       ControlOutputModalities_t outputs;
+    1484         455 :       param_loader.loadParam(controller_name + "/outputs/actuators", outputs.actuators, false);
+    1485         455 :       param_loader.loadParam(controller_name + "/outputs/control_group", outputs.control_group, false);
+    1486         455 :       param_loader.loadParam(controller_name + "/outputs/attitude_rate", outputs.attitude_rate, false);
+    1487         455 :       param_loader.loadParam(controller_name + "/outputs/attitude", outputs.attitude, false);
+    1488         455 :       param_loader.loadParam(controller_name + "/outputs/acceleration_hdg_rate", outputs.acceleration_hdg_rate, false);
+    1489         455 :       param_loader.loadParam(controller_name + "/outputs/acceleration_hdg", outputs.acceleration_hdg, false);
+    1490         455 :       param_loader.loadParam(controller_name + "/outputs/velocity_hdg_rate", outputs.velocity_hdg_rate, false);
+    1491         455 :       param_loader.loadParam(controller_name + "/outputs/velocity_hdg", outputs.velocity_hdg, false);
+    1492         455 :       param_loader.loadParam(controller_name + "/outputs/position", outputs.position, false);
+    1493             : 
+    1494         455 :       bool meets_actuators             = (_hw_api_inputs_.actuators && outputs.actuators);
+    1495         455 :       bool meets_control_group         = (_hw_api_inputs_.control_group && outputs.control_group);
+    1496         455 :       bool meets_attitude_rate         = (_hw_api_inputs_.attitude_rate && outputs.attitude_rate);
+    1497         455 :       bool meets_attitude              = (_hw_api_inputs_.attitude && outputs.attitude);
+    1498         455 :       bool meets_acceleration_hdg_rate = (_hw_api_inputs_.acceleration_hdg_rate && outputs.acceleration_hdg_rate);
+    1499         455 :       bool meets_acceleration_hdg      = (_hw_api_inputs_.acceleration_hdg && outputs.acceleration_hdg);
+    1500         455 :       bool meets_velocity_hdg_rate     = (_hw_api_inputs_.velocity_hdg_rate && outputs.velocity_hdg_rate);
+    1501         455 :       bool meets_velocity_hdg          = (_hw_api_inputs_.velocity_hdg && outputs.velocity_hdg);
+    1502         455 :       bool meets_position              = (_hw_api_inputs_.position && outputs.position);
+    1503             : 
+    1504         440 :       bool meets_requirements = meets_actuators || meets_control_group || meets_attitude_rate || meets_attitude || meets_acceleration_hdg_rate ||
+    1505         895 :                                 meets_acceleration_hdg || meets_velocity_hdg_rate || meets_velocity_hdg || meets_position;
+    1506             : 
+    1507         455 :       if (!meets_requirements) {
+    1508             : 
+    1509           0 :         ROS_ERROR("[ControlManager]: the controller '%s' does not meet the control output requirements, which are some of the following",
+    1510             :                   controller_name.c_str());
+    1511             : 
+    1512           0 :         if (_hw_api_inputs_.actuators) {
+    1513           0 :           ROS_ERROR("[ControlManager]: - actuators");
+    1514             :         }
+    1515             : 
+    1516           0 :         if (_hw_api_inputs_.control_group) {
+    1517           0 :           ROS_ERROR("[ControlManager]: - control group");
+    1518             :         }
+    1519             : 
+    1520           0 :         if (_hw_api_inputs_.attitude_rate) {
+    1521           0 :           ROS_ERROR("[ControlManager]: - attitude rate");
+    1522             :         }
+    1523             : 
+    1524           0 :         if (_hw_api_inputs_.attitude) {
+    1525           0 :           ROS_ERROR("[ControlManager]: - attitude");
+    1526             :         }
+    1527             : 
+    1528           0 :         if (_hw_api_inputs_.acceleration_hdg_rate) {
+    1529           0 :           ROS_ERROR("[ControlManager]: - acceleration+hdg rate");
+    1530             :         }
+    1531             : 
+    1532           0 :         if (_hw_api_inputs_.acceleration_hdg) {
+    1533           0 :           ROS_ERROR("[ControlManager]: - acceleration+hdg");
+    1534             :         }
+    1535             : 
+    1536           0 :         if (_hw_api_inputs_.velocity_hdg_rate) {
+    1537           0 :           ROS_ERROR("[ControlManager]: - velocity+hdg rate");
+    1538             :         }
+    1539             : 
+    1540           0 :         if (_hw_api_inputs_.velocity_hdg) {
+    1541           0 :           ROS_ERROR("[ControlManager]: - velocity+hdg");
+    1542             :         }
+    1543             : 
+    1544           0 :         if (_hw_api_inputs_.position) {
+    1545           0 :           ROS_ERROR("[ControlManager]: - position");
+    1546             :         }
+    1547             : 
+    1548           0 :         ros::shutdown();
+    1549             :       }
+    1550             : 
+    1551         455 :       if ((_hw_api_inputs_.actuators || _hw_api_inputs_.control_group) && !common_handlers_->detailed_model_params) {
+    1552           0 :         ROS_ERROR(
+    1553             :             "[ControlManager]: the HW API supports 'actuators' or 'control_group' input, but the 'detailed uav model params' were not loaded sucessfully");
+    1554           0 :         ros::shutdown();
+    1555             :       }
+    1556             :     }
+    1557             : 
+    1558             :     // | --- alter the timer rates based on the hw capabilities --- |
+    1559             : 
+    1560         455 :     CONTROL_OUTPUT lowest_output = getLowestOuput(_hw_api_inputs_);
+    1561             : 
+    1562         455 :     if (lowest_output == ACTUATORS_CMD || lowest_output == CONTROL_GROUP) {
+    1563          30 :       _safety_timer_rate_     = 200.0;
+    1564          30 :       desired_uav_state_rate_ = 250.0;
+    1565         425 :     } else if (lowest_output == ATTITUDE_RATE || lowest_output == ATTITUDE) {
+    1566         335 :       _safety_timer_rate_     = 100.0;
+    1567         335 :       desired_uav_state_rate_ = 100.0;
+    1568          90 :     } else if (lowest_output == ACCELERATION_HDG_RATE || lowest_output == ACCELERATION_HDG) {
+    1569          20 :       _safety_timer_rate_     = 30.0;
+    1570          20 :       _status_timer_rate_     = 1.0;
+    1571          20 :       desired_uav_state_rate_ = 40.0;
+    1572             : 
+    1573          20 :       if (_uav_state_max_missing_time_ < 0.2) {
+    1574           4 :         _uav_state_max_missing_time_ = 0.2;
+    1575             :       }
+    1576          70 :     } else if (lowest_output >= VELOCITY_HDG_RATE) {
+    1577          70 :       _safety_timer_rate_     = 20.0;
+    1578          70 :       _status_timer_rate_     = 1.0;
+    1579          70 :       desired_uav_state_rate_ = 20.0;
+    1580             : 
+    1581          70 :       if (_uav_state_max_missing_time_ < 1.0) {
+    1582          14 :         _uav_state_max_missing_time_ = 1.0;
+    1583             :       }
+    1584             :     }
+    1585             : 
+    1586         455 :     if (eland_threshold == 0) {
+    1587          92 :       eland_threshold = 1e6;
+    1588             :     }
+    1589             : 
+    1590         455 :     if (failsafe_threshold == 0) {
+    1591          92 :       failsafe_threshold = 1e6;
+    1592             :     }
+    1593             : 
+    1594         455 :     if (odometry_innovation_threshold == 0) {
+    1595          93 :       odometry_innovation_threshold = 1e6;
+    1596             :     }
+    1597             : 
+    1598        1365 :     ControllerParams new_controller(address, name_space, eland_threshold, failsafe_threshold, odometry_innovation_threshold, human_switchable);
+    1599         455 :     controllers_.insert(std::pair<std::string, ControllerParams>(controller_name, new_controller));
+    1600             : 
+    1601             :     try {
+    1602         455 :       ROS_INFO("[ControlManager]: loading the controller '%s'", new_controller.address.c_str());
+    1603         455 :       controller_list_.push_back(controller_loader_->createInstance(new_controller.address.c_str()));
+    1604             :     }
+    1605           0 :     catch (pluginlib::CreateClassException& ex1) {
+    1606           0 :       ROS_ERROR("[ControlManager]: CreateClassException for the controller '%s'", new_controller.address.c_str());
+    1607           0 :       ROS_ERROR("[ControlManager]: Error: %s", ex1.what());
+    1608           0 :       ros::shutdown();
+    1609             :     }
+    1610           0 :     catch (pluginlib::PluginlibException& ex) {
+    1611           0 :       ROS_ERROR("[ControlManager]: PluginlibException for the controller '%s'", new_controller.address.c_str());
+    1612           0 :       ROS_ERROR("[ControlManager]: Error: %s", ex.what());
+    1613           0 :       ros::shutdown();
+    1614             :     }
+    1615             :   }
+    1616             : 
+    1617          91 :   ROS_INFO("[ControlManager]: controllers were loaded");
+    1618             : 
+    1619         546 :   for (int i = 0; i < int(controller_list_.size()); i++) {
+    1620             : 
+    1621         455 :     std::map<std::string, ControllerParams>::iterator it;
+    1622         455 :     it = controllers_.find(_controller_names_[i]);
+    1623             : 
+    1624             :     // create private handlers
+    1625             :     std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers =
+    1626         910 :         std::make_shared<mrs_uav_managers::control_manager::PrivateHandlers_t>();
+    1627             : 
+    1628         455 :     private_handlers->loadConfigFile = boost::bind(&ControlManager::loadConfigFile, this, _1, it->second.name_space);
+    1629         455 :     private_handlers->name_space     = it->second.name_space;
+    1630         455 :     private_handlers->runtime_name   = _controller_names_[i];
+    1631         455 :     private_handlers->param_loader   = std::make_unique<mrs_lib::ParamLoader>(ros::NodeHandle(nh_, it->second.name_space), _controller_names_[i]);
+    1632             : 
+    1633         455 :     if (_custom_config_ != "") {
+    1634         455 :       private_handlers->param_loader->addYamlFile(_custom_config_);
+    1635             :     }
+    1636             : 
+    1637         455 :     if (_platform_config_ != "") {
+    1638         455 :       private_handlers->param_loader->addYamlFile(_platform_config_);
+    1639             :     }
+    1640             : 
+    1641         455 :     if (_world_config_ != "") {
+    1642         455 :       private_handlers->param_loader->addYamlFile(_world_config_);
+    1643             :     }
+    1644             : 
+    1645         455 :     if (_network_config_ != "") {
+    1646         455 :       private_handlers->param_loader->addYamlFile(_network_config_);
+    1647             :     }
+    1648             : 
+    1649         455 :     bool success = false;
+    1650             : 
+    1651             :     try {
+    1652             : 
+    1653         455 :       ROS_INFO("[ControlManager]: initializing the controller '%s'", it->second.address.c_str());
+    1654         455 :       success = controller_list_[i]->initialize(ros::NodeHandle(nh_, it->second.name_space), common_handlers_, private_handlers);
+    1655             :     }
+    1656           0 :     catch (std::runtime_error& ex) {
+    1657           0 :       ROS_ERROR("[ControlManager]: exception caught during controller initialization: '%s'", ex.what());
+    1658             :     }
+    1659             : 
+    1660         455 :     if (!success) {
+    1661           0 :       ROS_ERROR("[ControlManager]: failed to initialize the controller '%s'", it->second.address.c_str());
+    1662           0 :       ros::shutdown();
+    1663             :     }
+    1664             :   }
+    1665             : 
+    1666          91 :   ROS_INFO("[ControlManager]: controllers were initialized");
+    1667             : 
+    1668             :   {
+    1669          91 :     auto idx = idxInVector(_failsafe_controller_name_, _controller_names_);
+    1670             : 
+    1671          91 :     if (idx) {
+    1672          91 :       _failsafe_controller_idx_ = idx.value();
+    1673             :     } else {
+    1674           0 :       ROS_ERROR("[ControlManager]: the failsafe controller (%s) is not within the loaded controllers", _failsafe_controller_name_.c_str());
+    1675           0 :       ros::shutdown();
+    1676             :     }
+    1677             :   }
+    1678             : 
+    1679             :   {
+    1680          91 :     auto idx = idxInVector(_eland_controller_name_, _controller_names_);
+    1681             : 
+    1682          91 :     if (idx) {
+    1683          91 :       _eland_controller_idx_ = idx.value();
+    1684             :     } else {
+    1685           0 :       ROS_ERROR("[ControlManager]: the eland controller (%s) is not within the loaded controllers", _eland_controller_name_.c_str());
+    1686           0 :       ros::shutdown();
+    1687             :     }
+    1688             :   }
+    1689             : 
+    1690             :   {
+    1691          91 :     auto idx = idxInVector(_joystick_controller_name_, _controller_names_);
+    1692             : 
+    1693          91 :     if (idx) {
+    1694          91 :       _joystick_controller_idx_ = idx.value();
+    1695             :     } else {
+    1696           0 :       ROS_ERROR("[ControlManager]: the joystick controller (%s) is not within the loaded controllers", _joystick_controller_name_.c_str());
+    1697           0 :       ros::shutdown();
+    1698             :     }
+    1699             :   }
+    1700             : 
+    1701          91 :   if (_bumper_switch_controller_) {
+    1702             : 
+    1703          91 :     auto idx = idxInVector(_bumper_controller_name_, _controller_names_);
+    1704             : 
+    1705          91 :     if (!idx) {
+    1706           0 :       ROS_ERROR("[ControlManager]: the bumper controller (%s) is not within the loaded controllers", _bumper_controller_name_.c_str());
+    1707           0 :       ros::shutdown();
+    1708             :     }
+    1709             :   }
+    1710             : 
+    1711             :   {
+    1712          91 :     auto idx = idxInVector(_joystick_fallback_controller_name_, _controller_names_);
+    1713             : 
+    1714          91 :     if (idx) {
+    1715          91 :       _joystick_fallback_controller_idx_ = idx.value();
+    1716             :     } else {
+    1717           0 :       ROS_ERROR("[ControlManager]: the joystick fallback controller (%s) is not within the loaded controllers", _joystick_fallback_controller_name_.c_str());
+    1718           0 :       ros::shutdown();
+    1719             :     }
+    1720             :   }
+    1721             : 
+    1722             :   // --------------------------------------------------------------
+    1723             :   // |                  activate the NullTracker                  |
+    1724             :   // --------------------------------------------------------------
+    1725             : 
+    1726          91 :   ROS_INFO("[ControlManager]: activating the null tracker");
+    1727             : 
+    1728          91 :   tracker_list_[_null_tracker_idx_]->activate(last_tracker_cmd_);
+    1729          91 :   active_tracker_idx_ = _null_tracker_idx_;
+    1730             : 
+    1731             :   // --------------------------------------------------------------
+    1732             :   // |    activate the eland controller as the first controller   |
+    1733             :   // --------------------------------------------------------------
+    1734             : 
+    1735          91 :   ROS_INFO("[ControlManager]: activating the the eland controller (%s) as the first controller", _controller_names_[_eland_controller_idx_].c_str());
+    1736             : 
+    1737          91 :   controller_list_[_eland_controller_idx_]->activate(last_control_output_);
+    1738          91 :   active_controller_idx_ = _eland_controller_idx_;
+    1739             : 
+    1740             :   // update the time
+    1741             :   {
+    1742         182 :     std::scoped_lock lock(mutex_controller_tracker_switch_time_);
+    1743             : 
+    1744          91 :     controller_tracker_switch_time_ = ros::Time::now();
+    1745             :   }
+    1746             : 
+    1747          91 :   output_enabled_ = false;
+    1748             : 
+    1749             :   // | --------------- set the default constraints -------------- |
+    1750             : 
+    1751          91 :   sanitized_constraints_ = current_constraints_;
+    1752          91 :   setConstraints(current_constraints_);
+    1753             : 
+    1754             :   // | ------------------------ profiler ------------------------ |
+    1755             : 
+    1756          91 :   profiler_ = mrs_lib::Profiler(nh_, "ControlManager", _profiler_enabled_);
+    1757             : 
+    1758             :   // | ----------------------- publishers ----------------------- |
+    1759             : 
+    1760          91 :   control_output_publisher_ = OutputPublisher(nh_);
+    1761             : 
+    1762          91 :   ph_controller_diagnostics_             = mrs_lib::PublisherHandler<mrs_msgs::ControllerDiagnostics>(nh_, "controller_diagnostics_out", 1);
+    1763          91 :   ph_tracker_cmd_                        = mrs_lib::PublisherHandler<mrs_msgs::TrackerCommand>(nh_, "tracker_cmd_out", 1);
+    1764          91 :   ph_mrs_odom_input_                     = mrs_lib::PublisherHandler<mrs_msgs::EstimatorInput>(nh_, "estimator_input_out", 1);
+    1765          91 :   ph_control_reference_odom_             = mrs_lib::PublisherHandler<nav_msgs::Odometry>(nh_, "control_reference_out", 1);
+    1766          91 :   ph_diagnostics_                        = mrs_lib::PublisherHandler<mrs_msgs::ControlManagerDiagnostics>(nh_, "diagnostics_out", 1);
+    1767          91 :   ph_offboard_on_                        = mrs_lib::PublisherHandler<std_msgs::Empty>(nh_, "offboard_on_out", 1);
+    1768          91 :   ph_tilt_error_                         = mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>(nh_, "tilt_error_out", 1);
+    1769          91 :   ph_mass_estimate_                      = mrs_lib::PublisherHandler<std_msgs::Float64>(nh_, "mass_estimate_out", 1, false, 10.0);
+    1770          91 :   ph_mass_nominal_                       = mrs_lib::PublisherHandler<std_msgs::Float64>(nh_, "mass_nominal_out", 1, true);
+    1771          91 :   ph_throttle_                           = mrs_lib::PublisherHandler<std_msgs::Float64>(nh_, "throttle_out", 1, false, 10.0);
+    1772          91 :   ph_thrust_                             = mrs_lib::PublisherHandler<std_msgs::Float64>(nh_, "thrust_out", 1, false, 100.0);
+    1773          91 :   ph_control_error_                      = mrs_lib::PublisherHandler<mrs_msgs::ControlError>(nh_, "control_error_out", 1);
+    1774          91 :   ph_safety_area_markers_                = mrs_lib::PublisherHandler<visualization_msgs::MarkerArray>(nh_, "safety_area_markers_out", 1, true, 1.0);
+    1775          91 :   ph_safety_area_coordinates_markers_    = mrs_lib::PublisherHandler<visualization_msgs::MarkerArray>(nh_, "safety_area_coordinates_markers_out", 1, true, 1.0);
+    1776          91 :   ph_disturbances_markers_               = mrs_lib::PublisherHandler<visualization_msgs::MarkerArray>(nh_, "disturbances_markers_out", 1, false, 10.0);
+    1777          91 :   ph_current_constraints_                = mrs_lib::PublisherHandler<mrs_msgs::DynamicsConstraints>(nh_, "current_constraints_out", 1);
+    1778          91 :   ph_heading_                            = mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>(nh_, "heading_out", 1);
+    1779          91 :   ph_speed_                              = mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>(nh_, "speed_out", 1, false, 10.0);
+    1780          91 :   pub_debug_original_trajectory_poses_   = mrs_lib::PublisherHandler<geometry_msgs::PoseArray>(nh_, "trajectory_original/poses_out", 1, true);
+    1781          91 :   pub_debug_original_trajectory_markers_ = mrs_lib::PublisherHandler<visualization_msgs::MarkerArray>(nh_, "trajectory_original/markers_out", 1, true);
+    1782             : 
+    1783             :   // | ------------------ publish nominal mass ------------------ |
+    1784             : 
+    1785             :   {
+    1786          91 :     std_msgs::Float64 nominal_mass;
+    1787             : 
+    1788          91 :     nominal_mass.data = _uav_mass_;
+    1789             : 
+    1790          91 :     ph_mass_nominal_.publish(nominal_mass);
+    1791             :   }
+    1792             : 
+    1793             :   // | ----------------------- subscribers ---------------------- |
+    1794             : 
+    1795         182 :   mrs_lib::SubscribeHandlerOptions shopts;
+    1796          91 :   shopts.nh                 = nh_;
+    1797          91 :   shopts.node_name          = "ControlManager";
+    1798          91 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+    1799          91 :   shopts.threadsafe         = true;
+    1800          91 :   shopts.autostart          = true;
+    1801          91 :   shopts.queue_size         = 10;
+    1802          91 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+    1803             : 
+    1804          91 :   if (_state_input_ == INPUT_UAV_STATE) {
+    1805          91 :     sh_uav_state_ = mrs_lib::SubscribeHandler<mrs_msgs::UavState>(shopts, "uav_state_in", &ControlManager::callbackUavState, this);
+    1806           0 :   } else if (_state_input_ == INPUT_ODOMETRY) {
+    1807           0 :     sh_odometry_ = mrs_lib::SubscribeHandler<nav_msgs::Odometry>(shopts, "odometry_in", &ControlManager::callbackOdometry, this);
+    1808             :   }
+    1809             : 
+    1810          91 :   if (_odometry_innovation_check_enabled_) {
+    1811          91 :     sh_odometry_innovation_ = mrs_lib::SubscribeHandler<nav_msgs::Odometry>(shopts, "odometry_innovation_in");
+    1812             :   }
+    1813             : 
+    1814          91 :   sh_bumper_    = mrs_lib::SubscribeHandler<mrs_msgs::ObstacleSectors>(shopts, "bumper_sectors_in");
+    1815          91 :   sh_max_z_     = mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped>(shopts, "max_z_in");
+    1816          91 :   sh_joystick_  = mrs_lib::SubscribeHandler<sensor_msgs::Joy>(shopts, "joystick_in", &ControlManager::callbackJoystick, this);
+    1817          91 :   sh_gnss_      = mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix>(shopts, "gnss_in", &ControlManager::callbackGNSS, this);
+    1818          91 :   sh_hw_api_rc_ = mrs_lib::SubscribeHandler<mrs_msgs::HwApiRcChannels>(shopts, "hw_api_rc_in", &ControlManager::callbackRC, this);
+    1819             : 
+    1820          91 :   sh_hw_api_status_ = mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus>(shopts, "hw_api_status_in", &ControlManager::callbackHwApiStatus, this);
+    1821             : 
+    1822             :   // | -------------------- general services -------------------- |
+    1823             : 
+    1824          91 :   service_server_switch_tracker_             = nh_.advertiseService("switch_tracker_in", &ControlManager::callbackSwitchTracker, this);
+    1825          91 :   service_server_switch_controller_          = nh_.advertiseService("switch_controller_in", &ControlManager::callbackSwitchController, this);
+    1826          91 :   service_server_reset_tracker_              = nh_.advertiseService("tracker_reset_static_in", &ControlManager::callbackTrackerResetStatic, this);
+    1827          91 :   service_server_hover_                      = nh_.advertiseService("hover_in", &ControlManager::callbackHover, this);
+    1828          91 :   service_server_ehover_                     = nh_.advertiseService("ehover_in", &ControlManager::callbackEHover, this);
+    1829          91 :   service_server_failsafe_                   = nh_.advertiseService("failsafe_in", &ControlManager::callbackFailsafe, this);
+    1830          91 :   service_server_failsafe_escalating_        = nh_.advertiseService("failsafe_escalating_in", &ControlManager::callbackFailsafeEscalating, this);
+    1831          91 :   service_server_toggle_output_              = nh_.advertiseService("toggle_output_in", &ControlManager::callbackToggleOutput, this);
+    1832          91 :   service_server_arm_                        = nh_.advertiseService("arm_in", &ControlManager::callbackArm, this);
+    1833          91 :   service_server_enable_callbacks_           = nh_.advertiseService("enable_callbacks_in", &ControlManager::callbackEnableCallbacks, this);
+    1834          91 :   service_server_set_constraints_            = nh_.advertiseService("set_constraints_in", &ControlManager::callbackSetConstraints, this);
+    1835          91 :   service_server_use_joystick_               = nh_.advertiseService("use_joystick_in", &ControlManager::callbackUseJoystick, this);
+    1836          91 :   service_server_use_safety_area_            = nh_.advertiseService("use_safety_area_in", &ControlManager::callbackUseSafetyArea, this);
+    1837          91 :   service_server_eland_                      = nh_.advertiseService("eland_in", &ControlManager::callbackEland, this);
+    1838          91 :   service_server_parachute_                  = nh_.advertiseService("parachute_in", &ControlManager::callbackParachute, this);
+    1839          91 :   service_server_set_min_z_                  = nh_.advertiseService("set_min_z_in", &ControlManager::callbackSetMinZ, this);
+    1840          91 :   service_server_transform_reference_        = nh_.advertiseService("transform_reference_in", &ControlManager::callbackTransformReference, this);
+    1841          91 :   service_server_transform_pose_             = nh_.advertiseService("transform_pose_in", &ControlManager::callbackTransformPose, this);
+    1842          91 :   service_server_transform_vector3_          = nh_.advertiseService("transform_vector3_in", &ControlManager::callbackTransformVector3, this);
+    1843          91 :   service_server_bumper_enabler_             = nh_.advertiseService("bumper_in", &ControlManager::callbackEnableBumper, this);
+    1844          91 :   service_server_get_min_z_                  = nh_.advertiseService("get_min_z_in", &ControlManager::callbackGetMinZ, this);
+    1845          91 :   service_server_validate_reference_         = nh_.advertiseService("validate_reference_in", &ControlManager::callbackValidateReference, this);
+    1846          91 :   service_server_validate_reference_2d_      = nh_.advertiseService("validate_reference_2d_in", &ControlManager::callbackValidateReference2d, this);
+    1847          91 :   service_server_validate_reference_list_    = nh_.advertiseService("validate_reference_list_in", &ControlManager::callbackValidateReferenceList, this);
+    1848          91 :   service_server_start_trajectory_tracking_  = nh_.advertiseService("start_trajectory_tracking_in", &ControlManager::callbackStartTrajectoryTracking, this);
+    1849          91 :   service_server_stop_trajectory_tracking_   = nh_.advertiseService("stop_trajectory_tracking_in", &ControlManager::callbackStopTrajectoryTracking, this);
+    1850          91 :   service_server_resume_trajectory_tracking_ = nh_.advertiseService("resume_trajectory_tracking_in", &ControlManager::callbackResumeTrajectoryTracking, this);
+    1851          91 :   service_server_goto_trajectory_start_      = nh_.advertiseService("goto_trajectory_start_in", &ControlManager::callbackGotoTrajectoryStart, this);
+    1852             : 
+    1853          91 :   sch_arming_                 = mrs_lib::ServiceClientHandler<std_srvs::SetBool>(nh_, "hw_api_arming_out");
+    1854          91 :   sch_eland_                  = mrs_lib::ServiceClientHandler<std_srvs::Trigger>(nh_, "eland_out");
+    1855          91 :   sch_shutdown_               = mrs_lib::ServiceClientHandler<std_srvs::Trigger>(nh_, "shutdown_out");
+    1856          91 :   sch_set_odometry_callbacks_ = mrs_lib::ServiceClientHandler<std_srvs::SetBool>(nh_, "set_odometry_callbacks_out");
+    1857          91 :   sch_ungrip_                 = mrs_lib::ServiceClientHandler<std_srvs::Trigger>(nh_, "ungrip_out");
+    1858          91 :   sch_parachute_              = mrs_lib::ServiceClientHandler<std_srvs::Trigger>(nh_, "parachute_out");
+    1859             : 
+    1860             :   // | ---------------- setpoint command services --------------- |
+    1861             : 
+    1862             :   // human callable
+    1863          91 :   service_server_goto_                 = nh_.advertiseService("goto_in", &ControlManager::callbackGoto, this);
+    1864          91 :   service_server_goto_fcu_             = nh_.advertiseService("goto_fcu_in", &ControlManager::callbackGotoFcu, this);
+    1865          91 :   service_server_goto_relative_        = nh_.advertiseService("goto_relative_in", &ControlManager::callbackGotoRelative, this);
+    1866          91 :   service_server_goto_altitude_        = nh_.advertiseService("goto_altitude_in", &ControlManager::callbackGotoAltitude, this);
+    1867          91 :   service_server_set_heading_          = nh_.advertiseService("set_heading_in", &ControlManager::callbackSetHeading, this);
+    1868          91 :   service_server_set_heading_relative_ = nh_.advertiseService("set_heading_relative_in", &ControlManager::callbackSetHeadingRelative, this);
+    1869             : 
+    1870          91 :   service_server_reference_ = nh_.advertiseService("reference_in", &ControlManager::callbackReferenceService, this);
+    1871          91 :   sh_reference_             = mrs_lib::SubscribeHandler<mrs_msgs::ReferenceStamped>(shopts, "reference_in", &ControlManager::callbackReferenceTopic, this);
+    1872             : 
+    1873          91 :   service_server_velocity_reference_ = nh_.advertiseService("velocity_reference_in", &ControlManager::callbackVelocityReferenceService, this);
+    1874             :   sh_velocity_reference_ =
+    1875          91 :       mrs_lib::SubscribeHandler<mrs_msgs::VelocityReferenceStamped>(shopts, "velocity_reference_in", &ControlManager::callbackVelocityReferenceTopic, this);
+    1876             : 
+    1877          91 :   service_server_trajectory_reference_ = nh_.advertiseService("trajectory_reference_in", &ControlManager::callbackTrajectoryReferenceService, this);
+    1878             :   sh_trajectory_reference_ =
+    1879          91 :       mrs_lib::SubscribeHandler<mrs_msgs::TrajectoryReference>(shopts, "trajectory_reference_in", &ControlManager::callbackTrajectoryReferenceTopic, this);
+    1880             : 
+    1881             :   // | --------------------- other services --------------------- |
+    1882             : 
+    1883          91 :   service_server_emergency_reference_ = nh_.advertiseService("emergency_reference_in", &ControlManager::callbackEmergencyReference, this);
+    1884          91 :   service_server_pirouette_           = nh_.advertiseService("pirouette_in", &ControlManager::callbackPirouette, this);
+    1885             : 
+    1886             :   // | ------------------------- timers ------------------------- |
+    1887             : 
+    1888          91 :   timer_status_    = nh_.createTimer(ros::Rate(_status_timer_rate_), &ControlManager::timerStatus, this);
+    1889          91 :   timer_safety_    = nh_.createTimer(ros::Rate(_safety_timer_rate_), &ControlManager::timerSafety, this);
+    1890          91 :   timer_bumper_    = nh_.createTimer(ros::Rate(1.0), &ControlManager::timerBumper, this);
+    1891          91 :   timer_eland_     = nh_.createTimer(ros::Rate(_elanding_timer_rate_), &ControlManager::timerEland, this, false, false);
+    1892          91 :   timer_failsafe_  = nh_.createTimer(ros::Rate(_failsafe_timer_rate_), &ControlManager::timerFailsafe, this, false, false);
+    1893          91 :   timer_pirouette_ = nh_.createTimer(ros::Rate(_pirouette_timer_rate_), &ControlManager::timerPirouette, this, false, false);
+    1894          91 :   timer_joystick_  = nh_.createTimer(ros::Rate(_joystick_timer_rate_), &ControlManager::timerJoystick, this);
+    1895             : 
+    1896             :   // | ----------------------- finish init ---------------------- |
+    1897             : 
+    1898          91 :   if (!param_loader.loadedSuccessfully()) {
+    1899           0 :     ROS_ERROR("[ControlManager]: could not load all parameters!");
+    1900           0 :     ros::shutdown();
+    1901             :   }
+    1902             : 
+    1903          91 :   is_initialized_ = true;
+    1904             : 
+    1905          91 :   ROS_INFO("[ControlManager]: initialized");
+    1906          91 : }
+    1907             : 
+    1908             : //}
+    1909             : 
+    1910             : // --------------------------------------------------------------
+    1911             : // |                           timers                           |
+    1912             : // --------------------------------------------------------------
+    1913             : 
+    1914             : /* timerHwApiCapabilities() //{ */
+    1915             : 
+    1916         158 : void ControlManager::timerHwApiCapabilities(const ros::TimerEvent& event) {
+    1917             : 
+    1918         316 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerHwApiCapabilities", _status_timer_rate_, 1.0, event);
+    1919         316 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::timerHwApiCapabilities", scope_timer_logger_, scope_timer_enabled_);
+    1920             : 
+    1921         158 :   if (!sh_hw_api_capabilities_.hasMsg()) {
+    1922          67 :     ROS_INFO_THROTTLE(1.0, "[ControlManager]: waiting for HW API capabilities");
+    1923          67 :     return;
+    1924             :   }
+    1925             : 
+    1926         182 :   auto hw_ap_capabilities = sh_hw_api_capabilities_.getMsg();
+    1927             : 
+    1928          91 :   ROS_INFO("[ControlManager]: got HW API capabilities, the possible control modes are:");
+    1929             : 
+    1930          91 :   if (hw_ap_capabilities->accepts_actuator_cmd) {
+    1931           3 :     ROS_INFO("[ControlManager]: - actuator command");
+    1932           3 :     _hw_api_inputs_.actuators = true;
+    1933             :   }
+    1934             : 
+    1935          91 :   if (hw_ap_capabilities->accepts_control_group_cmd) {
+    1936           3 :     ROS_INFO("[ControlManager]: - control group command");
+    1937           3 :     _hw_api_inputs_.control_group = true;
+    1938             :   }
+    1939             : 
+    1940          91 :   if (hw_ap_capabilities->accepts_attitude_rate_cmd) {
+    1941          64 :     ROS_INFO("[ControlManager]: - attitude rate command");
+    1942          64 :     _hw_api_inputs_.attitude_rate = true;
+    1943             :   }
+    1944             : 
+    1945          91 :   if (hw_ap_capabilities->accepts_attitude_cmd) {
+    1946          62 :     ROS_INFO("[ControlManager]: - attitude command");
+    1947          62 :     _hw_api_inputs_.attitude = true;
+    1948             :   }
+    1949             : 
+    1950          91 :   if (hw_ap_capabilities->accepts_acceleration_hdg_rate_cmd) {
+    1951           2 :     ROS_INFO("[ControlManager]: - acceleration+hdg rate command");
+    1952           2 :     _hw_api_inputs_.acceleration_hdg_rate = true;
+    1953             :   }
+    1954             : 
+    1955          91 :   if (hw_ap_capabilities->accepts_acceleration_hdg_cmd) {
+    1956           2 :     ROS_INFO("[ControlManager]: - acceleration+hdg command");
+    1957           2 :     _hw_api_inputs_.acceleration_hdg = true;
+    1958             :   }
+    1959             : 
+    1960          91 :   if (hw_ap_capabilities->accepts_velocity_hdg_rate_cmd) {
+    1961           8 :     ROS_INFO("[ControlManager]: - velocityhdg rate command");
+    1962           8 :     _hw_api_inputs_.velocity_hdg_rate = true;
+    1963             :   }
+    1964             : 
+    1965          91 :   if (hw_ap_capabilities->accepts_velocity_hdg_cmd) {
+    1966           4 :     ROS_INFO("[ControlManager]: - velocityhdg command");
+    1967           4 :     _hw_api_inputs_.velocity_hdg = true;
+    1968             :   }
+    1969             : 
+    1970          91 :   if (hw_ap_capabilities->accepts_position_cmd) {
+    1971           2 :     ROS_INFO("[ControlManager]: - position command");
+    1972           2 :     _hw_api_inputs_.position = true;
+    1973             :   }
+    1974             : 
+    1975          91 :   initialize();
+    1976             : 
+    1977          91 :   timer_hw_api_capabilities_.stop();
+    1978             : }
+    1979             : 
+    1980             : //}
+    1981             : 
+    1982             : /* //{ timerStatus() */
+    1983             : 
+    1984       16239 : void ControlManager::timerStatus(const ros::TimerEvent& event) {
+    1985             : 
+    1986       16239 :   if (!is_initialized_)
+    1987           0 :     return;
+    1988             : 
+    1989       48717 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerStatus", _status_timer_rate_, 0.1, event);
+    1990       48717 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::timerStatus", scope_timer_logger_, scope_timer_enabled_);
+    1991             : 
+    1992             :   // copy member variables
+    1993       32478 :   auto uav_state             = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    1994       32478 :   auto last_control_output   = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    1995       16239 :   auto yaw_error             = mrs_lib::get_mutexed(mutex_attitude_error_, yaw_error_);
+    1996       16239 :   auto position_error        = mrs_lib::get_mutexed(mutex_position_error_, position_error_);
+    1997       16239 :   auto active_controller_idx = mrs_lib::get_mutexed(mutex_controller_list_, active_controller_idx_);
+    1998       16239 :   auto active_tracker_idx    = mrs_lib::get_mutexed(mutex_tracker_list_, active_tracker_idx_);
+    1999             : 
+    2000             :   double uav_x, uav_y, uav_z;
+    2001       16239 :   uav_x = uav_state.pose.position.x;
+    2002       16239 :   uav_y = uav_state.pose.position.y;
+    2003       16239 :   uav_z = uav_state.pose.position.z;
+    2004             : 
+    2005             :   // --------------------------------------------------------------
+    2006             :   // |                      print the status                      |
+    2007             :   // --------------------------------------------------------------
+    2008             : 
+    2009             :   {
+    2010       32478 :     std::string controller = _controller_names_[active_controller_idx];
+    2011       32478 :     std::string tracker    = _tracker_names_[active_tracker_idx];
+    2012       16239 :     double      mass       = last_control_output.diagnostics.total_mass;
+    2013       16239 :     double      bx_b       = last_control_output.diagnostics.disturbance_bx_b;
+    2014       16239 :     double      by_b       = last_control_output.diagnostics.disturbance_by_b;
+    2015       16239 :     double      wx_w       = last_control_output.diagnostics.disturbance_wx_w;
+    2016       16239 :     double      wy_w       = last_control_output.diagnostics.disturbance_wy_w;
+    2017             : 
+    2018       16239 :     ROS_INFO_THROTTLE(5.0, "[ControlManager]: tracker: '%s', controller: '%s', mass: '%.2f kg', disturbances: body [%.2f, %.2f] N, world [%.2f, %.2f] N",
+    2019             :                       tracker.c_str(), controller.c_str(), mass, bx_b, by_b, wx_w, wy_w);
+    2020             :   }
+    2021             : 
+    2022             :   // --------------------------------------------------------------
+    2023             :   // |                   publish the diagnostics                  |
+    2024             :   // --------------------------------------------------------------
+    2025             : 
+    2026       16239 :   publishDiagnostics();
+    2027             : 
+    2028             :   // --------------------------------------------------------------
+    2029             :   // |                publish if the offboard is on               |
+    2030             :   // --------------------------------------------------------------
+    2031             : 
+    2032       16239 :   if (offboard_mode_) {
+    2033             : 
+    2034       11054 :     std_msgs::Empty offboard_on_out;
+    2035             : 
+    2036       11054 :     ph_offboard_on_.publish(offboard_on_out);
+    2037             :   }
+    2038             : 
+    2039             :   // --------------------------------------------------------------
+    2040             :   // |                   publish the tilt error                   |
+    2041             :   // --------------------------------------------------------------
+    2042             :   {
+    2043       32478 :     std::scoped_lock lock(mutex_attitude_error_);
+    2044             : 
+    2045       16239 :     if (tilt_error_) {
+    2046             : 
+    2047       32478 :       mrs_msgs::Float64Stamped tilt_error_out;
+    2048       16239 :       tilt_error_out.header.stamp    = ros::Time::now();
+    2049       16239 :       tilt_error_out.header.frame_id = uav_state.header.frame_id;
+    2050       16239 :       tilt_error_out.value           = (180.0 / M_PI) * tilt_error_.value();
+    2051             : 
+    2052       16239 :       ph_tilt_error_.publish(tilt_error_out);
+    2053             :     }
+    2054             :   }
+    2055             : 
+    2056             :   // --------------------------------------------------------------
+    2057             :   // |                  publish the control error                 |
+    2058             :   // --------------------------------------------------------------
+    2059             : 
+    2060       16239 :   if (position_error) {
+    2061             : 
+    2062        9952 :     Eigen::Vector3d pos_error_value = position_error.value();
+    2063             : 
+    2064       19904 :     mrs_msgs::ControlError msg_out;
+    2065             : 
+    2066        9952 :     msg_out.header.stamp    = ros::Time::now();
+    2067        9952 :     msg_out.header.frame_id = uav_state.header.frame_id;
+    2068             : 
+    2069        9952 :     msg_out.position_errors.x    = pos_error_value[0];
+    2070        9952 :     msg_out.position_errors.y    = pos_error_value[1];
+    2071        9952 :     msg_out.position_errors.z    = pos_error_value[2];
+    2072        9952 :     msg_out.total_position_error = pos_error_value.norm();
+    2073             : 
+    2074        9952 :     if (yaw_error_) {
+    2075        9952 :       msg_out.yaw_error = yaw_error.value();
+    2076             :     }
+    2077             : 
+    2078        9952 :     std::map<std::string, ControllerParams>::iterator it;
+    2079             : 
+    2080        9952 :     it = controllers_.find(_controller_names_[active_controller_idx]);
+    2081             : 
+    2082        9952 :     msg_out.position_eland_threshold    = it->second.eland_threshold;
+    2083        9952 :     msg_out.position_failsafe_threshold = it->second.failsafe_threshold;
+    2084             : 
+    2085        9952 :     ph_control_error_.publish(msg_out);
+    2086             :   }
+    2087             : 
+    2088             :   // --------------------------------------------------------------
+    2089             :   // |                  publish the mass estimate                 |
+    2090             :   // --------------------------------------------------------------
+    2091             : 
+    2092       16239 :   if (last_control_output.diagnostics.mass_estimator) {
+    2093             : 
+    2094        8666 :     std_msgs::Float64 mass_estimate_out;
+    2095        8666 :     mass_estimate_out.data = _uav_mass_ + last_control_output.diagnostics.mass_difference;
+    2096             : 
+    2097        8666 :     ph_mass_estimate_.publish(mass_estimate_out);
+    2098             :   }
+    2099             : 
+    2100             :   // --------------------------------------------------------------
+    2101             :   // |                 publish the current heading                |
+    2102             :   // --------------------------------------------------------------
+    2103             : 
+    2104       16239 :   if (_state_input_ == INPUT_UAV_STATE && sh_uav_state_.hasMsg()) {
+    2105             : 
+    2106             :     try {
+    2107             : 
+    2108             :       double heading;
+    2109             : 
+    2110       13848 :       heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+    2111             : 
+    2112       27696 :       mrs_msgs::Float64Stamped heading_out;
+    2113       13848 :       heading_out.header = uav_state.header;
+    2114       13848 :       heading_out.value  = heading;
+    2115             : 
+    2116       13848 :       ph_heading_.publish(heading_out);
+    2117             :     }
+    2118           0 :     catch (...) {
+    2119           0 :       ROS_ERROR_THROTTLE(1.0, "exception caught, could not transform heading");
+    2120             :     }
+    2121             :   }
+    2122             : 
+    2123             :   // --------------------------------------------------------------
+    2124             :   // |                  publish the current speed                 |
+    2125             :   // --------------------------------------------------------------
+    2126             : 
+    2127       16239 :   if (_state_input_ == INPUT_UAV_STATE && sh_uav_state_.hasMsg()) {
+    2128             : 
+    2129       13848 :     double speed = sqrt(pow(uav_state.velocity.linear.x, 2) + pow(uav_state.velocity.linear.y, 2) + pow(uav_state.velocity.linear.z, 2));
+    2130             : 
+    2131       27696 :     mrs_msgs::Float64Stamped speed_out;
+    2132       13848 :     speed_out.header = uav_state.header;
+    2133       13848 :     speed_out.value  = speed;
+    2134             : 
+    2135       13848 :     ph_speed_.publish(speed_out);
+    2136             :   }
+    2137             : 
+    2138             :   // --------------------------------------------------------------
+    2139             :   // |               publish the safety area markers              |
+    2140             :   // --------------------------------------------------------------
+    2141             : 
+    2142       16239 :   if (use_safety_area_) {
+    2143             : 
+    2144       26234 :     mrs_msgs::ReferenceStamped temp_ref;
+    2145       13117 :     temp_ref.header.frame_id = _safety_area_horizontal_frame_;
+    2146             : 
+    2147       26234 :     geometry_msgs::TransformStamped tf;
+    2148             : 
+    2149       39351 :     auto ret = transformer_->getTransform(_safety_area_horizontal_frame_, "local_origin", ros::Time(0));
+    2150             : 
+    2151       13117 :     if (ret) {
+    2152             : 
+    2153       10981 :       ROS_INFO_ONCE("[ControlManager]: got TFs, publishing safety area markers");
+    2154             : 
+    2155       21962 :       visualization_msgs::MarkerArray safety_area_marker_array;
+    2156       21962 :       visualization_msgs::MarkerArray safety_area_coordinates_marker_array;
+    2157             : 
+    2158       21962 :       mrs_lib::Polygon border = safety_zone_->getBorder();
+    2159             : 
+    2160       21962 :       std::vector<geometry_msgs::Point> border_points_bot_original = border.getPointMessageVector(getMinZ(_safety_area_horizontal_frame_));
+    2161       21962 :       std::vector<geometry_msgs::Point> border_points_top_original = border.getPointMessageVector(getMaxZ(_safety_area_horizontal_frame_));
+    2162             : 
+    2163       21962 :       std::vector<geometry_msgs::Point> border_points_bot_transformed = border_points_bot_original;
+    2164       21962 :       std::vector<geometry_msgs::Point> border_points_top_transformed = border_points_bot_original;
+    2165             : 
+    2166             :       // if we fail in transforming the area at some point
+    2167             :       // do not publish it at all
+    2168       10981 :       bool tf_success = true;
+    2169             : 
+    2170       21962 :       geometry_msgs::TransformStamped tf = ret.value();
+    2171             : 
+    2172             :       /* transform area points to local origin //{ */
+    2173             : 
+    2174             :       // transform border bottom points to local origin
+    2175       54905 :       for (size_t i = 0; i < border_points_bot_original.size(); i++) {
+    2176             : 
+    2177       43924 :         temp_ref.header.frame_id      = _safety_area_horizontal_frame_;
+    2178       43924 :         temp_ref.header.stamp         = ros::Time(0);
+    2179       43924 :         temp_ref.reference.position.x = border_points_bot_original[i].x;
+    2180       43924 :         temp_ref.reference.position.y = border_points_bot_original[i].y;
+    2181       43924 :         temp_ref.reference.position.z = border_points_bot_original[i].z;
+    2182             : 
+    2183       87848 :         if (auto ret = transformer_->transform(temp_ref, tf)) {
+    2184             : 
+    2185       43924 :           temp_ref = ret.value();
+    2186             : 
+    2187       43924 :           border_points_bot_transformed[i].x = temp_ref.reference.position.x;
+    2188       43924 :           border_points_bot_transformed[i].y = temp_ref.reference.position.y;
+    2189       43924 :           border_points_bot_transformed[i].z = temp_ref.reference.position.z;
+    2190             : 
+    2191             :         } else {
+    2192           0 :           tf_success = false;
+    2193             :         }
+    2194             :       }
+    2195             : 
+    2196             :       // transform border top points to local origin
+    2197       54905 :       for (size_t i = 0; i < border_points_top_original.size(); i++) {
+    2198             : 
+    2199       43924 :         temp_ref.header.frame_id      = _safety_area_horizontal_frame_;
+    2200       43924 :         temp_ref.header.stamp         = ros::Time(0);
+    2201       43924 :         temp_ref.reference.position.x = border_points_top_original[i].x;
+    2202       43924 :         temp_ref.reference.position.y = border_points_top_original[i].y;
+    2203       43924 :         temp_ref.reference.position.z = border_points_top_original[i].z;
+    2204             : 
+    2205       87848 :         if (auto ret = transformer_->transform(temp_ref, tf)) {
+    2206             : 
+    2207       43924 :           temp_ref = ret.value();
+    2208             : 
+    2209       43924 :           border_points_top_transformed[i].x = temp_ref.reference.position.x;
+    2210       43924 :           border_points_top_transformed[i].y = temp_ref.reference.position.y;
+    2211       43924 :           border_points_top_transformed[i].z = temp_ref.reference.position.z;
+    2212             : 
+    2213             :         } else {
+    2214           0 :           tf_success = false;
+    2215             :         }
+    2216             :       }
+    2217             : 
+    2218             :       //}
+    2219             : 
+    2220       21962 :       visualization_msgs::Marker safety_area_marker;
+    2221             : 
+    2222       10981 :       safety_area_marker.header.frame_id = _uav_name_ + "/local_origin";
+    2223       10981 :       safety_area_marker.type            = visualization_msgs::Marker::LINE_LIST;
+    2224       10981 :       safety_area_marker.color.a         = 0.15;
+    2225       10981 :       safety_area_marker.scale.x         = 0.2;
+    2226       10981 :       safety_area_marker.color.r         = 1;
+    2227       10981 :       safety_area_marker.color.g         = 0;
+    2228       10981 :       safety_area_marker.color.b         = 0;
+    2229             : 
+    2230       10981 :       safety_area_marker.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+    2231             : 
+    2232       21962 :       visualization_msgs::Marker safety_area_coordinates_marker;
+    2233             : 
+    2234       10981 :       safety_area_coordinates_marker.header.frame_id = _uav_name_ + "/local_origin";
+    2235       10981 :       safety_area_coordinates_marker.type            = visualization_msgs::Marker::TEXT_VIEW_FACING;
+    2236       10981 :       safety_area_coordinates_marker.color.a         = 1;
+    2237       10981 :       safety_area_coordinates_marker.scale.z         = 1.0;
+    2238       10981 :       safety_area_coordinates_marker.color.r         = 0;
+    2239       10981 :       safety_area_coordinates_marker.color.g         = 0;
+    2240       10981 :       safety_area_coordinates_marker.color.b         = 0;
+    2241             : 
+    2242       10981 :       safety_area_coordinates_marker.id = 0;
+    2243             : 
+    2244       10981 :       safety_area_coordinates_marker.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+    2245             : 
+    2246             :       /* adding safety area points //{ */
+    2247             : 
+    2248             :       // bottom border
+    2249       54905 :       for (size_t i = 0; i < border_points_bot_transformed.size(); i++) {
+    2250             : 
+    2251       43924 :         safety_area_marker.points.push_back(border_points_bot_transformed[i]);
+    2252       43924 :         safety_area_marker.points.push_back(border_points_bot_transformed[(i + 1) % border_points_bot_transformed.size()]);
+    2253             : 
+    2254       87848 :         std::stringstream ss;
+    2255             : 
+    2256       43924 :         if (_safety_area_horizontal_frame_ == "latlon_origin") {
+    2257           0 :           ss << "idx: " << i << std::endl
+    2258           0 :              << std::setprecision(6) << std::fixed << "lat: " << border_points_bot_original[i].x << std::endl
+    2259           0 :              << "lon: " << border_points_bot_original[i].y;
+    2260             :         } else {
+    2261       43924 :           ss << "idx: " << i << std::endl
+    2262       43924 :              << std::setprecision(1) << std::fixed << "x: " << border_points_bot_original[i].x << std::endl
+    2263       43924 :              << "y: " << border_points_bot_original[i].y;
+    2264             :         }
+    2265             : 
+    2266       43924 :         safety_area_coordinates_marker.color.r = 0;
+    2267       43924 :         safety_area_coordinates_marker.color.g = 0;
+    2268       43924 :         safety_area_coordinates_marker.color.b = 0;
+    2269             : 
+    2270       43924 :         safety_area_coordinates_marker.pose.position = border_points_bot_transformed[i];
+    2271       43924 :         safety_area_coordinates_marker.text          = ss.str();
+    2272       43924 :         safety_area_coordinates_marker.id++;
+    2273             : 
+    2274       43924 :         safety_area_coordinates_marker_array.markers.push_back(safety_area_coordinates_marker);
+    2275             :       }
+    2276             : 
+    2277             :       // top border + top/bot edges
+    2278       54905 :       for (size_t i = 0; i < border_points_top_transformed.size(); i++) {
+    2279             : 
+    2280       43924 :         safety_area_marker.points.push_back(border_points_top_transformed[i]);
+    2281       43924 :         safety_area_marker.points.push_back(border_points_top_transformed[(i + 1) % border_points_top_transformed.size()]);
+    2282             : 
+    2283       43924 :         safety_area_marker.points.push_back(border_points_bot_transformed[i]);
+    2284       43924 :         safety_area_marker.points.push_back(border_points_top_transformed[i]);
+    2285             : 
+    2286       87848 :         std::stringstream ss;
+    2287             : 
+    2288       43924 :         if (_safety_area_horizontal_frame_ == "latlon_origin") {
+    2289           0 :           ss << "idx: " << i << std::endl
+    2290           0 :              << std::setprecision(6) << std::fixed << "lat: " << border_points_bot_original[i].x << std::endl
+    2291           0 :              << "lon: " << border_points_bot_original[i].y;
+    2292             :         } else {
+    2293       43924 :           ss << "idx: " << i << std::endl
+    2294       43924 :              << std::setprecision(1) << std::fixed << "x: " << border_points_bot_original[i].x << std::endl
+    2295       43924 :              << "y: " << border_points_bot_original[i].y;
+    2296             :         }
+    2297             : 
+    2298       43924 :         safety_area_coordinates_marker.color.r = 1;
+    2299       43924 :         safety_area_coordinates_marker.color.g = 1;
+    2300       43924 :         safety_area_coordinates_marker.color.b = 1;
+    2301             : 
+    2302       43924 :         safety_area_coordinates_marker.pose.position = border_points_top_transformed[i];
+    2303       43924 :         safety_area_coordinates_marker.text          = ss.str();
+    2304       43924 :         safety_area_coordinates_marker.id++;
+    2305             : 
+    2306       43924 :         safety_area_coordinates_marker_array.markers.push_back(safety_area_coordinates_marker);
+    2307             :       }
+    2308             : 
+    2309             :       //}
+    2310             : 
+    2311       10981 :       if (tf_success) {
+    2312             : 
+    2313       10981 :         safety_area_marker_array.markers.push_back(safety_area_marker);
+    2314             : 
+    2315       10981 :         ph_safety_area_markers_.publish(safety_area_marker_array);
+    2316             : 
+    2317       10981 :         ph_safety_area_coordinates_markers_.publish(safety_area_coordinates_marker_array);
+    2318             :       }
+    2319             : 
+    2320             :     } else {
+    2321        2136 :       ROS_WARN_ONCE("[ControlManager]: missing TFs, can not publish safety area markers");
+    2322             :     }
+    2323             :   }
+    2324             : 
+    2325             :   // --------------------------------------------------------------
+    2326             :   // |              publish the disturbances markers              |
+    2327             :   // --------------------------------------------------------------
+    2328             : 
+    2329       16239 :   if (last_control_output.diagnostics.disturbance_estimator && got_uav_state_) {
+    2330             : 
+    2331       17438 :     visualization_msgs::MarkerArray msg_out;
+    2332             : 
+    2333        8719 :     double id = 0;
+    2334             : 
+    2335        8719 :     double multiplier = 1.0;
+    2336             : 
+    2337        8719 :     Eigen::Quaterniond quat_eigen = mrs_lib::AttitudeConverter(uav_state.pose.orientation);
+    2338             : 
+    2339        8719 :     Eigen::Vector3d      vec3d;
+    2340        8719 :     geometry_msgs::Point point;
+    2341             : 
+    2342             :     /* world disturbance //{ */
+    2343             :     {
+    2344             : 
+    2345       17438 :       visualization_msgs::Marker marker;
+    2346             : 
+    2347        8719 :       marker.header.frame_id = uav_state.header.frame_id;
+    2348        8719 :       marker.header.stamp    = ros::Time::now();
+    2349        8719 :       marker.ns              = "control_manager";
+    2350        8719 :       marker.id              = id++;
+    2351        8719 :       marker.type            = visualization_msgs::Marker::ARROW;
+    2352        8719 :       marker.action          = visualization_msgs::Marker::ADD;
+    2353             : 
+    2354             :       /* position //{ */
+    2355             : 
+    2356        8719 :       marker.pose.position.x = 0.0;
+    2357        8719 :       marker.pose.position.y = 0.0;
+    2358        8719 :       marker.pose.position.z = 0.0;
+    2359             : 
+    2360             :       //}
+    2361             : 
+    2362             :       /* orientation //{ */
+    2363             : 
+    2364        8719 :       marker.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+    2365             : 
+    2366             :       //}
+    2367             : 
+    2368             :       /* origin //{ */
+    2369        8719 :       point.x = uav_x;
+    2370        8719 :       point.y = uav_y;
+    2371        8719 :       point.z = uav_z;
+    2372             : 
+    2373        8719 :       marker.points.push_back(point);
+    2374             : 
+    2375             :       //}
+    2376             : 
+    2377             :       /* tip //{ */
+    2378             : 
+    2379        8719 :       point.x = uav_x + multiplier * last_control_output.diagnostics.disturbance_wx_w;
+    2380        8719 :       point.y = uav_y + multiplier * last_control_output.diagnostics.disturbance_wy_w;
+    2381        8719 :       point.z = uav_z;
+    2382             : 
+    2383        8719 :       marker.points.push_back(point);
+    2384             : 
+    2385             :       //}
+    2386             : 
+    2387        8719 :       marker.scale.x = 0.05;
+    2388        8719 :       marker.scale.y = 0.05;
+    2389        8719 :       marker.scale.z = 0.05;
+    2390             : 
+    2391        8719 :       marker.color.a = 0.5;
+    2392        8719 :       marker.color.r = 1.0;
+    2393        8719 :       marker.color.g = 0.0;
+    2394        8719 :       marker.color.b = 0.0;
+    2395             : 
+    2396        8719 :       marker.mesh_resource = "package://pr2_description/meshes/base_v0/base.dae";
+    2397             : 
+    2398        8719 :       msg_out.markers.push_back(marker);
+    2399             :     }
+    2400             : 
+    2401             :     //}
+    2402             : 
+    2403             :     /* body disturbance //{ */
+    2404             :     {
+    2405             : 
+    2406       17438 :       visualization_msgs::Marker marker;
+    2407             : 
+    2408        8719 :       marker.header.frame_id = uav_state.header.frame_id;
+    2409        8719 :       marker.header.stamp    = ros::Time::now();
+    2410        8719 :       marker.ns              = "control_manager";
+    2411        8719 :       marker.id              = id++;
+    2412        8719 :       marker.type            = visualization_msgs::Marker::ARROW;
+    2413        8719 :       marker.action          = visualization_msgs::Marker::ADD;
+    2414             : 
+    2415             :       /* position //{ */
+    2416             : 
+    2417        8719 :       marker.pose.position.x = 0.0;
+    2418        8719 :       marker.pose.position.y = 0.0;
+    2419        8719 :       marker.pose.position.z = 0.0;
+    2420             : 
+    2421             :       //}
+    2422             : 
+    2423             :       /* orientation //{ */
+    2424             : 
+    2425        8719 :       marker.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+    2426             : 
+    2427             :       //}
+    2428             : 
+    2429             :       /* origin //{ */
+    2430             : 
+    2431        8719 :       point.x = uav_x;
+    2432        8719 :       point.y = uav_y;
+    2433        8719 :       point.z = uav_z;
+    2434             : 
+    2435        8719 :       marker.points.push_back(point);
+    2436             : 
+    2437             :       //}
+    2438             : 
+    2439             :       /* tip //{ */
+    2440             : 
+    2441        8719 :       vec3d << multiplier * last_control_output.diagnostics.disturbance_bx_b, multiplier * last_control_output.diagnostics.disturbance_by_b, 0;
+    2442        8719 :       vec3d = quat_eigen * vec3d;
+    2443             : 
+    2444        8719 :       point.x = uav_x + vec3d[0];
+    2445        8719 :       point.y = uav_y + vec3d[1];
+    2446        8719 :       point.z = uav_z + vec3d[2];
+    2447             : 
+    2448        8719 :       marker.points.push_back(point);
+    2449             : 
+    2450             :       //}
+    2451             : 
+    2452        8719 :       marker.scale.x = 0.05;
+    2453        8719 :       marker.scale.y = 0.05;
+    2454        8719 :       marker.scale.z = 0.05;
+    2455             : 
+    2456        8719 :       marker.color.a = 0.5;
+    2457        8719 :       marker.color.r = 0.0;
+    2458        8719 :       marker.color.g = 1.0;
+    2459        8719 :       marker.color.b = 0.0;
+    2460             : 
+    2461        8719 :       marker.mesh_resource = "package://pr2_description/meshes/base_v0/base.dae";
+    2462             : 
+    2463        8719 :       msg_out.markers.push_back(marker);
+    2464             :     }
+    2465             : 
+    2466             :     //}
+    2467             : 
+    2468        8719 :     ph_disturbances_markers_.publish(msg_out);
+    2469             :   }
+    2470             : 
+    2471             :   // --------------------------------------------------------------
+    2472             :   // |               publish the current constraints              |
+    2473             :   // --------------------------------------------------------------
+    2474             : 
+    2475       16239 :   if (got_constraints_) {
+    2476             : 
+    2477       13790 :     auto sanitized_constraints = mrs_lib::get_mutexed(mutex_constraints_, sanitized_constraints_);
+    2478             : 
+    2479       13790 :     mrs_msgs::DynamicsConstraints constraints = sanitized_constraints.constraints;
+    2480             : 
+    2481       13790 :     ph_current_constraints_.publish(constraints);
+    2482             :   }
+    2483             : }
+    2484             : 
+    2485             : //}
+    2486             : 
+    2487             : /* //{ timerSafety() */
+    2488             : 
+    2489      297352 : void ControlManager::timerSafety(const ros::TimerEvent& event) {
+    2490             : 
+    2491      297352 :   mrs_lib::AtomicScopeFlag unset_running(running_safety_timer_);
+    2492             : 
+    2493      297352 :   if (!is_initialized_)
+    2494           0 :     return;
+    2495             : 
+    2496      594704 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerSafety", _safety_timer_rate_, 0.05, event);
+    2497      594703 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::timerSafety", scope_timer_logger_, scope_timer_enabled_);
+    2498             : 
+    2499             :   // copy member variables
+    2500      297352 :   auto last_control_output   = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    2501      297352 :   auto last_tracker_cmd      = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    2502      297352 :   auto [uav_state, uav_yaw]  = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_, uav_yaw_);
+    2503      297352 :   auto active_controller_idx = mrs_lib::get_mutexed(mutex_controller_list_, active_controller_idx_);
+    2504      297352 :   auto active_tracker_idx    = mrs_lib::get_mutexed(mutex_tracker_list_, active_tracker_idx_);
+    2505             : 
+    2506      567769 :   if (!got_uav_state_ || (_state_input_ == INPUT_UAV_STATE && _odometry_innovation_check_enabled_ && !sh_odometry_innovation_.hasMsg()) ||
+    2507      270417 :       active_tracker_idx == _null_tracker_idx_) {
+    2508      103642 :     return;
+    2509             :   }
+    2510             : 
+    2511      193710 :   if (odometry_switch_in_progress_) {
+    2512           5 :     ROS_WARN("[ControlManager]: timerSafety tried to run while odometry switch in progress");
+    2513           5 :     return;
+    2514             :   }
+    2515             : 
+    2516             :   // | ------------------------ timeouts ------------------------ |
+    2517             : 
+    2518      193705 :   if (_state_input_ == INPUT_UAV_STATE && sh_uav_state_.hasMsg()) {
+    2519      193705 :     double missing_for = (ros::Time::now() - sh_uav_state_.lastMsgTime()).toSec();
+    2520             : 
+    2521      193705 :     if (missing_for > _uav_state_max_missing_time_) {
+    2522           0 :       timeoutUavState(missing_for);
+    2523             :     }
+    2524             :   }
+    2525             : 
+    2526      193705 :   if (_state_input_ == INPUT_ODOMETRY && sh_odometry_.hasMsg()) {
+    2527           0 :     double missing_for = (ros::Time::now() - sh_odometry_.lastMsgTime()).toSec();
+    2528             : 
+    2529           0 :     if (missing_for > _uav_state_max_missing_time_) {
+    2530           0 :       timeoutUavState(missing_for);
+    2531             :     }
+    2532             :   }
+    2533             : 
+    2534             :   // | -------------- eland and failsafe thresholds ------------- |
+    2535             : 
+    2536      193705 :   std::map<std::string, ControllerParams>::iterator it;
+    2537      193705 :   it = controllers_.find(_controller_names_[active_controller_idx]);
+    2538             : 
+    2539      193705 :   _eland_threshold_               = it->second.eland_threshold;
+    2540      193705 :   _failsafe_threshold_            = it->second.failsafe_threshold;
+    2541      193705 :   _odometry_innovation_threshold_ = it->second.odometry_innovation_threshold;
+    2542             : 
+    2543             :   // | --------- calculate control errors and tilt angle -------- |
+    2544             : 
+    2545             :   // This means that the timerFailsafe only does its work when Controllers and Trackers produce valid output.
+    2546             :   // Cases when the commands are not valid should be handle in updateControllers() and updateTrackers() methods.
+    2547      193705 :   if (!last_tracker_cmd || !last_control_output.control_output) {
+    2548         173 :     return;
+    2549             :   }
+    2550             : 
+    2551             :   {
+    2552      193532 :     std::scoped_lock lock(mutex_attitude_error_);
+    2553             : 
+    2554      193532 :     tilt_error_ = 0;
+    2555      193532 :     yaw_error_  = 0;
+    2556             :   }
+    2557             : 
+    2558             :   {
+    2559      193532 :     Eigen::Vector3d position_error = Eigen::Vector3d::Zero();
+    2560             : 
+    2561      193532 :     bool position_error_set = false;
+    2562             : 
+    2563      193532 :     if (last_tracker_cmd->use_position_horizontal && !std::holds_alternative<mrs_msgs::HwApiPositionCmd>(last_control_output.control_output.value())) {
+    2564             : 
+    2565      192524 :       position_error[0] = last_tracker_cmd->position.x - uav_state.pose.position.x;
+    2566      192524 :       position_error[1] = last_tracker_cmd->position.y - uav_state.pose.position.y;
+    2567             : 
+    2568      192525 :       position_error_set = true;
+    2569             :     }
+    2570             : 
+    2571      193532 :     if (last_tracker_cmd->use_position_vertical && !std::holds_alternative<mrs_msgs::HwApiPositionCmd>(last_control_output.control_output.value())) {
+    2572             : 
+    2573      192525 :       position_error[2] = last_tracker_cmd->position.z - uav_state.pose.position.z;
+    2574             : 
+    2575      192525 :       position_error_set = true;
+    2576             :     }
+    2577             : 
+    2578      193532 :     if (position_error_set) {
+    2579             : 
+    2580      192525 :       mrs_lib::set_mutexed(mutex_position_error_, {position_error}, position_error_);
+    2581             :     }
+    2582             :   }
+    2583             : 
+    2584             :   // rotate the drone's z axis
+    2585      193532 :   tf2::Transform uav_state_transform = mrs_lib::AttitudeConverter(uav_state.pose.orientation);
+    2586      193532 :   tf2::Vector3   uav_z_in_world      = uav_state_transform * tf2::Vector3(0, 0, 1);
+    2587             : 
+    2588             :   // calculate the angle between the drone's z axis and the world's z axis
+    2589      193532 :   double tilt_angle = acos(uav_z_in_world.dot(tf2::Vector3(0, 0, 1)));
+    2590             : 
+    2591             :   // | ------------ calculate the tilt and yaw error ------------ |
+    2592             : 
+    2593             :   // | --------------------- the tilt error --------------------- |
+    2594             : 
+    2595      193532 :   if (last_control_output.desired_orientation) {
+    2596             : 
+    2597             :     // calculate the desired drone's z axis in the world frame
+    2598      169247 :     tf2::Transform attitude_cmd_transform = mrs_lib::AttitudeConverter(last_control_output.desired_orientation.value());
+    2599      169248 :     tf2::Vector3   uav_z_in_world_desired = attitude_cmd_transform * tf2::Vector3(0, 0, 1);
+    2600             : 
+    2601             :     {
+    2602      169248 :       std::scoped_lock lock(mutex_attitude_error_);
+    2603             : 
+    2604             :       // calculate the angle between the drone's z axis and the world's z axis
+    2605      169248 :       tilt_error_ = acos(uav_z_in_world.dot(uav_z_in_world_desired));
+    2606             : 
+    2607             :       // calculate the yaw error
+    2608      169248 :       double cmd_yaw = mrs_lib::AttitudeConverter(last_control_output.desired_orientation.value()).getYaw();
+    2609      169248 :       yaw_error_     = fabs(radians::diff(cmd_yaw, uav_yaw));
+    2610             :     }
+    2611             :   }
+    2612             : 
+    2613      193532 :   auto position_error          = mrs_lib::get_mutexed(mutex_position_error_, position_error_);
+    2614      193532 :   auto [tilt_error, yaw_error] = mrs_lib::get_mutexed(mutex_attitude_error_, tilt_error_, yaw_error_);
+    2615             : 
+    2616             :   // --------------------------------------------------------------
+    2617             :   // |   activate the failsafe controller in case of large error  |
+    2618             :   // --------------------------------------------------------------
+    2619             : 
+    2620      193532 :   if (position_error) {
+    2621             : 
+    2622      192525 :     if (position_error->norm() > _failsafe_threshold_ && !failsafe_triggered_) {
+    2623             : 
+    2624          15 :       auto controller_tracker_switch_time = mrs_lib::get_mutexed(mutex_controller_tracker_switch_time_, controller_tracker_switch_time_);
+    2625             : 
+    2626          15 :       if ((ros::Time::now() - controller_tracker_switch_time).toSec() > 1.0) {
+    2627             : 
+    2628           2 :         if (!failsafe_triggered_) {
+    2629             : 
+    2630           2 :           ROS_ERROR("[ControlManager]: activating failsafe land: control_error=%.2f/%.2f m (x: %.2f, y: %.2f, z: %.2f)", position_error->norm(),
+    2631             :                     _failsafe_threshold_, position_error.value()[0], position_error.value()[1], position_error.value()[2]);
+    2632             : 
+    2633           2 :           failsafe();
+    2634             :         }
+    2635             :       }
+    2636             :     }
+    2637             :   }
+    2638             : 
+    2639             :   // --------------------------------------------------------------
+    2640             :   // |     activate emergency land in case of large innovation    |
+    2641             :   // --------------------------------------------------------------
+    2642             : 
+    2643      193531 :   if (_odometry_innovation_check_enabled_) {
+    2644             : 
+    2645      193525 :     std::optional<nav_msgs::Odometry::ConstPtr> innovation;
+    2646             : 
+    2647      193532 :     if (sh_odometry_innovation_.hasMsg()) {
+    2648      193532 :       innovation = {sh_odometry_innovation_.getMsg()};
+    2649             :     } else {
+    2650           0 :       ROS_WARN_THROTTLE(1.0, "[ControlManager]: missing estimator innnovation but the innovation check is enabled!");
+    2651             :     }
+    2652             : 
+    2653      193532 :     if (innovation) {
+    2654             : 
+    2655      193532 :       auto [x, y, z] = mrs_lib::getPosition(innovation.value());
+    2656             : 
+    2657      193529 :       double heading = 0;
+    2658             :       try {
+    2659      193529 :         heading = mrs_lib::getHeading(innovation.value());
+    2660             :       }
+    2661           0 :       catch (mrs_lib::AttitudeConverter::GetHeadingException& e) {
+    2662           0 :         ROS_ERROR_THROTTLE(1.0, "[ControlManager]: exception caught: '%s'", e.what());
+    2663             :       }
+    2664             : 
+    2665      193532 :       double last_innovation = mrs_lib::geometry::dist(vec3_t(x, y, z), vec3_t(0, 0, 0));
+    2666             : 
+    2667      193528 :       if (last_innovation > _odometry_innovation_threshold_ || radians::diff(heading, 0) > M_PI_2) {
+    2668             : 
+    2669           2 :         auto controller_tracker_switch_time = mrs_lib::get_mutexed(mutex_controller_tracker_switch_time_, controller_tracker_switch_time_);
+    2670             : 
+    2671           2 :         if ((ros::Time::now() - controller_tracker_switch_time).toSec() > 1.0) {
+    2672             : 
+    2673           1 :           if (!failsafe_triggered_ && !eland_triggered_) {
+    2674             : 
+    2675           1 :             ROS_ERROR("[ControlManager]: activating emergency land: odometry innovation too large: %.2f/%.2f (x: %.2f, y: %.2f, z: %.2f, heading: %.2f)",
+    2676             :                       last_innovation, _odometry_innovation_threshold_, x, y, z, heading);
+    2677             : 
+    2678           1 :             eland();
+    2679             :           }
+    2680             :         }
+    2681             :       }
+    2682             :     }
+    2683             :   }
+    2684             : 
+    2685             :   // --------------------------------------------------------------
+    2686             :   // |   activate emergency land in case of medium control error  |
+    2687             :   // --------------------------------------------------------------
+    2688             : 
+    2689             :   // | ------------------- tilt control error ------------------- |
+    2690             : 
+    2691      193531 :   if (_tilt_limit_eland_enabled_ && tilt_angle > _tilt_limit_eland_) {
+    2692             : 
+    2693           0 :     auto controller_tracker_switch_time = mrs_lib::get_mutexed(mutex_controller_tracker_switch_time_, controller_tracker_switch_time_);
+    2694             : 
+    2695           0 :     if ((ros::Time::now() - controller_tracker_switch_time).toSec() > 1.0) {
+    2696             : 
+    2697           0 :       if (!failsafe_triggered_ && !eland_triggered_) {
+    2698             : 
+    2699           0 :         ROS_ERROR("[ControlManager]: activating emergency land: tilt angle too large (%.2f/%.2f deg)", (180.0 / M_PI) * tilt_angle,
+    2700             :                   (180.0 / M_PI) * _tilt_limit_eland_);
+    2701             : 
+    2702           0 :         eland();
+    2703             :       }
+    2704             :     }
+    2705             :   }
+    2706             : 
+    2707             :   // | ----------------- position control error ----------------- |
+    2708             : 
+    2709      193531 :   if (position_error) {
+    2710             : 
+    2711      192521 :     double error_size = position_error->norm();
+    2712             : 
+    2713      192524 :     if (error_size > _eland_threshold_ / 2.0) {
+    2714             : 
+    2715         659 :       auto controller_tracker_switch_time = mrs_lib::get_mutexed(mutex_controller_tracker_switch_time_, controller_tracker_switch_time_);
+    2716             : 
+    2717         659 :       if ((ros::Time::now() - controller_tracker_switch_time).toSec() > 1.0) {
+    2718             : 
+    2719         436 :         if (!failsafe_triggered_ && !eland_triggered_) {
+    2720             : 
+    2721          60 :           ROS_DEBUG_THROTTLE(1.0, "[ControlManager]: releasing payload due to large position error");
+    2722             : 
+    2723          60 :           ungripSrv();
+    2724             :         }
+    2725             :       }
+    2726             :     }
+    2727             : 
+    2728      192524 :     if (error_size > _eland_threshold_) {
+    2729             : 
+    2730         288 :       auto controller_tracker_switch_time = mrs_lib::get_mutexed(mutex_controller_tracker_switch_time_, controller_tracker_switch_time_);
+    2731             : 
+    2732         288 :       if ((ros::Time::now() - controller_tracker_switch_time).toSec() > 1.0) {
+    2733             : 
+    2734         104 :         if (!failsafe_triggered_ && !eland_triggered_) {
+    2735             : 
+    2736           3 :           ROS_ERROR("[ControlManager]: activating emergency land: position error %.2f/%.2f m (error x: %.2f, y: %.2f, z: %.2f)", error_size, _eland_threshold_,
+    2737             :                     position_error.value()[0], position_error.value()[1], position_error.value()[2]);
+    2738             : 
+    2739           3 :           eland();
+    2740             :         }
+    2741             :       }
+    2742             :     }
+    2743             :   }
+    2744             : 
+    2745             :   // | -------------------- yaw control error ------------------- |
+    2746             :   // do not have to mutex the yaw_error_ here since I am filling it in this function
+    2747             : 
+    2748      193531 :   if (_yaw_error_eland_enabled_ && yaw_error) {
+    2749             : 
+    2750      193528 :     if (yaw_error.value() > (_yaw_error_eland_ / 2.0)) {
+    2751             : 
+    2752           0 :       auto controller_tracker_switch_time = mrs_lib::get_mutexed(mutex_controller_tracker_switch_time_, controller_tracker_switch_time_);
+    2753             : 
+    2754           0 :       if ((ros::Time::now() - controller_tracker_switch_time).toSec() > 1.0) {
+    2755             : 
+    2756           0 :         if (!failsafe_triggered_ && !eland_triggered_) {
+    2757             : 
+    2758           0 :           ROS_DEBUG_THROTTLE(1.0, "[ControlManager]: releasing payload: yaw error %.2f/%.2f deg", (180.0 / M_PI) * yaw_error.value(),
+    2759             :                              (180.0 / M_PI) * _yaw_error_eland_ / 2.0);
+    2760             : 
+    2761           0 :           ungripSrv();
+    2762             :         }
+    2763             :       }
+    2764             :     }
+    2765             : 
+    2766      193531 :     if (yaw_error.value() > _yaw_error_eland_) {
+    2767             : 
+    2768           0 :       auto controller_tracker_switch_time = mrs_lib::get_mutexed(mutex_controller_tracker_switch_time_, controller_tracker_switch_time_);
+    2769             : 
+    2770           0 :       if ((ros::Time::now() - controller_tracker_switch_time).toSec() > 1.0) {
+    2771             : 
+    2772           0 :         if (!failsafe_triggered_ && !eland_triggered_) {
+    2773             : 
+    2774           0 :           ROS_ERROR("[ControlManager]: activating emergency land: yaw error %.2f/%.2f deg", (180.0 / M_PI) * yaw_error.value(),
+    2775             :                     (180.0 / M_PI) * _yaw_error_eland_);
+    2776             : 
+    2777           0 :           eland();
+    2778             :         }
+    2779             :       }
+    2780             :     }
+    2781             :   }
+    2782             : 
+    2783             :   // --------------------------------------------------------------
+    2784             :   // |      disarm the drone when the tilt exceeds the limit      |
+    2785             :   // --------------------------------------------------------------
+    2786      193530 :   if (_tilt_limit_disarm_enabled_ && tilt_angle > _tilt_limit_disarm_) {
+    2787             : 
+    2788           0 :     ROS_ERROR("[ControlManager]: tilt angle too large, disarming: tilt angle=%.2f/%.2f deg", (180.0 / M_PI) * tilt_angle, (180.0 / M_PI) * _tilt_limit_disarm_);
+    2789             : 
+    2790           0 :     arming(false);
+    2791             :   }
+    2792             : 
+    2793             :   // --------------------------------------------------------------
+    2794             :   // |     disarm the drone when tilt error exceeds the limit     |
+    2795             :   // --------------------------------------------------------------
+    2796             : 
+    2797      193530 :   if (_tilt_error_disarm_enabled_ && tilt_error) {
+    2798             : 
+    2799      193527 :     auto controller_tracker_switch_time = mrs_lib::get_mutexed(mutex_controller_tracker_switch_time_, controller_tracker_switch_time_);
+    2800             : 
+    2801             :     // the time from the last controller/tracker switch
+    2802             :     // fyi: we should not
+    2803      193532 :     double time_from_ctrl_tracker_switch = (ros::Time::now() - controller_tracker_switch_time).toSec();
+    2804             : 
+    2805             :     // if the tile error is over the threshold
+    2806             :     // && we are not ramping up during takeoff
+    2807      193531 :     if (fabs(tilt_error.value()) > _tilt_error_disarm_threshold_ && !last_control_output.diagnostics.ramping_up) {
+    2808             : 
+    2809             :       // only account for the error if some time passed from the last tracker/controller switch
+    2810           0 :       if (time_from_ctrl_tracker_switch > 1.0) {
+    2811             : 
+    2812             :         // if the threshold was not exceeded before
+    2813           0 :         if (!tilt_error_disarm_over_thr_) {
+    2814             : 
+    2815           0 :           tilt_error_disarm_over_thr_ = true;
+    2816           0 :           tilt_error_disarm_time_     = ros::Time::now();
+    2817             : 
+    2818           0 :           ROS_WARN("[ControlManager]: tilt error exceeded threshold (%.2f/%.2f deg)", (180.0 / M_PI) * tilt_error.value(),
+    2819             :                    (180.0 / M_PI) * _tilt_error_disarm_threshold_);
+    2820             : 
+    2821             :           // if it was exceeded before, just keep it
+    2822             :         } else {
+    2823             : 
+    2824           0 :           ROS_WARN_THROTTLE(0.1, "[ControlManager]: tilt error (%.2f deg) over threshold for %.2f s", (180.0 / M_PI) * tilt_error.value(),
+    2825             :                             (ros::Time::now() - tilt_error_disarm_time_).toSec());
+    2826             :         }
+    2827             : 
+    2828             :         // if the tile error is bad, but the controller just switched,
+    2829             :         // don't think its bad anymore
+    2830             :       } else {
+    2831             : 
+    2832           0 :         tilt_error_disarm_over_thr_ = false;
+    2833           0 :         tilt_error_disarm_time_     = ros::Time::now();
+    2834             :       }
+    2835             : 
+    2836             :       // if the tilt error is fine
+    2837             :     } else {
+    2838             : 
+    2839             :       // make it fine
+    2840      193532 :       tilt_error_disarm_over_thr_ = false;
+    2841      193532 :       tilt_error_disarm_time_     = ros::Time::now();
+    2842             :     }
+    2843             : 
+    2844             :     // calculate the time over the threshold
+    2845      193531 :     double tot = (ros::Time::now() - tilt_error_disarm_time_).toSec();
+    2846             : 
+    2847             :     // if the tot exceeds the limit (and if we are actually over the threshold)
+    2848      193532 :     if (tilt_error_disarm_over_thr_ && (tot > _tilt_error_disarm_timeout_)) {
+    2849             : 
+    2850           0 :       bool is_flying = offboard_mode_ && active_tracker_idx != _null_tracker_idx_;
+    2851             : 
+    2852             :       // only when flying and not in failsafe
+    2853           0 :       if (is_flying) {
+    2854             : 
+    2855           0 :         ROS_ERROR("[ControlManager]: tilt error too large for %.2f s, disarming", tot);
+    2856             : 
+    2857           0 :         toggleOutput(false);
+    2858           0 :         arming(false);
+    2859             :       }
+    2860             :     }
+    2861             :   }
+    2862             : 
+    2863             :   // | --------- dropping out of OFFBOARD in mid flight --------- |
+    2864             : 
+    2865             :   // if we are not in offboard and the drone is in mid air (NullTracker is not active)
+    2866      193535 :   if (offboard_mode_was_true_ && !offboard_mode_ && active_tracker_idx != _null_tracker_idx_) {
+    2867             : 
+    2868           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: we fell out of OFFBOARD in mid air, disabling output");
+    2869             : 
+    2870           0 :     toggleOutput(false);
+    2871             :   }
+    2872             : }  // namespace control_manager
+    2873             : 
+    2874             : //}
+    2875             : 
+    2876             : /* //{ timerEland() */
+    2877             : 
+    2878         443 : void ControlManager::timerEland(const ros::TimerEvent& event) {
+    2879             : 
+    2880         443 :   if (!is_initialized_)
+    2881          77 :     return;
+    2882             : 
+    2883         886 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerEland", _elanding_timer_rate_, 0.01, event);
+    2884         886 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::timerEland", scope_timer_logger_, scope_timer_enabled_);
+    2885             : 
+    2886             :   // copy member variables
+    2887         443 :   auto last_control_output = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    2888             : 
+    2889         443 :   if (!last_control_output.control_output) {
+    2890           0 :     return;
+    2891             :   }
+    2892             : 
+    2893         443 :   auto throttle = extractThrottle(last_control_output);
+    2894             : 
+    2895         443 :   if (!throttle) {
+    2896          77 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: TODO: implement landing detection mechanism for the current control modality");
+    2897          77 :     return;
+    2898             :   }
+    2899             : 
+    2900         366 :   if (current_state_landing_ == IDLE_STATE) {
+    2901             : 
+    2902           0 :     return;
+    2903             : 
+    2904         366 :   } else if (current_state_landing_ == LANDING_STATE) {
+    2905             : 
+    2906             :     // --------------------------------------------------------------
+    2907             :     // |                            TODO                            |
+    2908             :     // This section needs work. The throttle landing detection      |
+    2909             :     // mechanism should be extracted and other mechanisms, such     |
+    2910             :     // as velocity-based detection should be used for high          |
+    2911             :     // modalities                                                   |
+    2912             :     // --------------------------------------------------------------
+    2913             : 
+    2914         366 :     if (!last_control_output.control_output) {
+    2915           0 :       ROS_WARN_THROTTLE(1.0, "[ControlManager]: timerEland: last_control_output has not been initialized, returning");
+    2916           0 :       ROS_WARN_THROTTLE(1.0, "[ControlManager]: tip: the RC eland is probably triggered");
+    2917           0 :       return;
+    2918             :     }
+    2919             : 
+    2920             :     // recalculate the mass based on the throttle
+    2921         366 :     throttle_mass_estimate_ = mrs_lib::quadratic_throttle_model::throttleToForce(common_handlers_->throttle_model, throttle.value()) / common_handlers_->g;
+    2922         366 :     ROS_INFO_THROTTLE(1.0, "[ControlManager]: landing: initial mass: %.2f throttle_mass_estimate: %.2f", landing_uav_mass_, throttle_mass_estimate_);
+    2923             : 
+    2924             :     // condition for automatic motor turn off
+    2925         366 :     if (((throttle_mass_estimate_ < _elanding_cutoff_mass_factor_ * landing_uav_mass_) || throttle < 0.01)) {
+    2926          88 :       if (!throttle_under_threshold_) {
+    2927             : 
+    2928           4 :         throttle_mass_estimate_first_time_ = ros::Time::now();
+    2929           4 :         throttle_under_threshold_          = true;
+    2930             :       }
+    2931             : 
+    2932          88 :       ROS_INFO_THROTTLE(0.1, "[ControlManager]: throttle is under cutoff factor for %.2f s", (ros::Time::now() - throttle_mass_estimate_first_time_).toSec());
+    2933             : 
+    2934             :     } else {
+    2935         278 :       throttle_mass_estimate_first_time_ = ros::Time::now();
+    2936         278 :       throttle_under_threshold_          = false;
+    2937             :     }
+    2938             : 
+    2939         366 :     if (throttle_under_threshold_ && ((ros::Time::now() - throttle_mass_estimate_first_time_).toSec() > _elanding_cutoff_timeout_)) {
+    2940             :       // enable callbacks? ... NO
+    2941             : 
+    2942           4 :       ROS_INFO("[ControlManager]: reached cutoff throttle, disabling output");
+    2943           4 :       toggleOutput(false);
+    2944             : 
+    2945             :       // disarm the drone
+    2946           4 :       if (_eland_disarm_enabled_) {
+    2947             : 
+    2948           4 :         ROS_INFO("[ControlManager]: calling for disarm");
+    2949           4 :         arming(false);
+    2950             :       }
+    2951             : 
+    2952           4 :       changeLandingState(IDLE_STATE);
+    2953             : 
+    2954           4 :       ROS_WARN("[ControlManager]: emergency landing finished");
+    2955             : 
+    2956           4 :       ROS_DEBUG("[ControlManager]: stopping eland timer");
+    2957           4 :       timer_eland_.stop();
+    2958           4 :       ROS_DEBUG("[ControlManager]: eland timer stopped");
+    2959             : 
+    2960             :       // we should NOT set eland_triggered_=true
+    2961             :     }
+    2962             :   }
+    2963             : }
+    2964             : 
+    2965             : //}
+    2966             : 
+    2967             : /* //{ timerFailsafe() */
+    2968             : 
+    2969       10189 : void ControlManager::timerFailsafe(const ros::TimerEvent& event) {
+    2970             : 
+    2971       10189 :   if (!is_initialized_) {
+    2972         478 :     return;
+    2973             :   }
+    2974             : 
+    2975       10189 :   ROS_INFO_ONCE("[ControlManager]: timerFailsafe() spinning");
+    2976             : 
+    2977       20378 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerFailsafe", _failsafe_timer_rate_, 0.01, event);
+    2978       20378 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::timerFailsafe", scope_timer_logger_, scope_timer_enabled_);
+    2979             : 
+    2980             :   // copy member variables
+    2981       10189 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    2982             : 
+    2983       10189 :   updateControllers(uav_state);
+    2984             : 
+    2985       10189 :   publish();
+    2986             : 
+    2987       10189 :   auto last_control_output = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    2988             : 
+    2989       10189 :   if (!last_control_output.control_output) {
+    2990           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: timerFailsafe: the control output produced by the failsafe controller is empty!");
+    2991           0 :     return;
+    2992             :   }
+    2993             : 
+    2994       10189 :   auto throttle = extractThrottle(last_control_output);
+    2995             : 
+    2996       10189 :   if (!throttle) {
+    2997         478 :     ROS_DEBUG_THROTTLE(1.0, "[ControlManager]: FailsafeTimer: could not extract throttle out of the last control output");
+    2998         478 :     return;
+    2999             :   }
+    3000             : 
+    3001             :   // --------------------------------------------------------------
+    3002             :   // |                            TODO                            |
+    3003             :   // This section needs work. The throttle landing detection      |
+    3004             :   // mechanism should be extracted and other mechanisms, such     |
+    3005             :   // as velocity-based detection should be used for high          |
+    3006             :   // modalities                                                   |
+    3007             :   // --------------------------------------------------------------
+    3008             : 
+    3009        9711 :   double throttle_mass_estimate_ = mrs_lib::quadratic_throttle_model::throttleToForce(common_handlers_->throttle_model, throttle.value()) / common_handlers_->g;
+    3010        9711 :   ROS_INFO_THROTTLE(1.0, "[ControlManager]: failsafe: initial mass: %.2f throttle_mass_estimate: %.2f", landing_uav_mass_, throttle_mass_estimate_);
+    3011             : 
+    3012             :   // condition for automatic motor turn off
+    3013        9711 :   if (((throttle_mass_estimate_ < _elanding_cutoff_mass_factor_ * landing_uav_mass_))) {
+    3014             : 
+    3015        1414 :     if (!throttle_under_threshold_) {
+    3016             : 
+    3017           7 :       throttle_mass_estimate_first_time_ = ros::Time::now();
+    3018           7 :       throttle_under_threshold_          = true;
+    3019             :     }
+    3020             : 
+    3021        1414 :     ROS_INFO_THROTTLE(0.1, "[ControlManager]: throttle is under cutoff factor for %.2f s", (ros::Time::now() - throttle_mass_estimate_first_time_).toSec());
+    3022             : 
+    3023             :   } else {
+    3024             : 
+    3025        8297 :     throttle_mass_estimate_first_time_ = ros::Time::now();
+    3026        8297 :     throttle_under_threshold_          = false;
+    3027             :   }
+    3028             : 
+    3029             :   // condition for automatic motor turn off
+    3030        9711 :   if (throttle_under_threshold_ && ((ros::Time::now() - throttle_mass_estimate_first_time_).toSec() > _elanding_cutoff_timeout_)) {
+    3031             : 
+    3032           7 :     ROS_INFO_THROTTLE(1.0, "[ControlManager]: detecting zero throttle, disarming");
+    3033             : 
+    3034           7 :     arming(false);
+    3035             :   }
+    3036             : }
+    3037             : 
+    3038             : //}
+    3039             : 
+    3040             : /* //{ timerJoystick() */
+    3041             : 
+    3042       57636 : void ControlManager::timerJoystick(const ros::TimerEvent& event) {
+    3043             : 
+    3044       57636 :   if (!is_initialized_) {
+    3045           0 :     return;
+    3046             :   }
+    3047             : 
+    3048      172908 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerJoystick", _status_timer_rate_, 0.05, event);
+    3049      172908 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::timerJoystick", scope_timer_logger_, scope_timer_enabled_);
+    3050             : 
+    3051      115272 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    3052             : 
+    3053             :   // if start was pressed and held for > 3.0 s
+    3054       57636 :   if (joystick_start_pressed_ && joystick_start_press_time_ != ros::Time(0) && (ros::Time::now() - joystick_start_press_time_).toSec() > 3.0) {
+    3055             : 
+    3056           0 :     joystick_start_press_time_ = ros::Time(0);
+    3057             : 
+    3058           0 :     ROS_INFO("[ControlManager]: transitioning to joystick control: activating '%s' and '%s'", _joystick_tracker_name_.c_str(),
+    3059             :              _joystick_controller_name_.c_str());
+    3060             : 
+    3061           0 :     joystick_start_pressed_ = false;
+    3062             : 
+    3063           0 :     switchTracker(_joystick_tracker_name_);
+    3064           0 :     switchController(_joystick_controller_name_);
+    3065             :   }
+    3066             : 
+    3067             :   // if RT+LT were pressed and held for > 0.1 s
+    3068       57636 :   if (joystick_failsafe_pressed_ && joystick_failsafe_press_time_ != ros::Time(0) && (ros::Time::now() - joystick_failsafe_press_time_).toSec() > 0.1) {
+    3069             : 
+    3070           0 :     joystick_failsafe_press_time_ = ros::Time(0);
+    3071             : 
+    3072           0 :     ROS_INFO("[ControlManager]: activating failsafe by joystick");
+    3073             : 
+    3074           0 :     joystick_failsafe_pressed_ = false;
+    3075             : 
+    3076           0 :     failsafe();
+    3077             :   }
+    3078             : 
+    3079             :   // if joypads were pressed and held for > 0.1 s
+    3080       57636 :   if (joystick_eland_pressed_ && joystick_eland_press_time_ != ros::Time(0) && (ros::Time::now() - joystick_eland_press_time_).toSec() > 0.1) {
+    3081             : 
+    3082           0 :     joystick_eland_press_time_ = ros::Time(0);
+    3083             : 
+    3084           0 :     ROS_INFO("[ControlManager]: activating eland by joystick");
+    3085             : 
+    3086           0 :     joystick_failsafe_pressed_ = false;
+    3087             : 
+    3088           0 :     eland();
+    3089             :   }
+    3090             : 
+    3091             :   // if back was pressed and held for > 0.1 s
+    3092       57636 :   if (joystick_back_pressed_ && joystick_back_press_time_ != ros::Time(0) && (ros::Time::now() - joystick_back_press_time_).toSec() > 0.1) {
+    3093             : 
+    3094           0 :     joystick_back_press_time_ = ros::Time(0);
+    3095             : 
+    3096             :     // activate/deactivate the joystick goto functionality
+    3097           0 :     joystick_goto_enabled_ = !joystick_goto_enabled_;
+    3098             : 
+    3099           0 :     ROS_INFO("[ControlManager]: joystick control %s", joystick_goto_enabled_ ? "activated" : "deactivated");
+    3100             :   }
+    3101             : 
+    3102             :   // if the GOTO functionality is enabled...
+    3103       57636 :   if (joystick_goto_enabled_ && sh_joystick_.hasMsg()) {
+    3104             : 
+    3105           0 :     auto joystick_data = sh_joystick_.getMsg();
+    3106             : 
+    3107             :     // create the reference
+    3108             : 
+    3109           0 :     mrs_msgs::Vec4::Request request;
+    3110             : 
+    3111           0 :     if (fabs(joystick_data->axes[_channel_pitch_]) >= 0.05 || fabs(joystick_data->axes[_channel_roll_]) >= 0.05 ||
+    3112           0 :         fabs(joystick_data->axes[_channel_heading_]) >= 0.05 || fabs(joystick_data->axes[_channel_throttle_]) >= 0.05) {
+    3113             : 
+    3114           0 :       if (_joystick_mode_ == 0) {
+    3115             : 
+    3116           0 :         request.goal[REF_X]       = _channel_mult_pitch_ * joystick_data->axes[_channel_pitch_] * _joystick_carrot_distance_;
+    3117           0 :         request.goal[REF_Y]       = _channel_mult_roll_ * joystick_data->axes[_channel_roll_] * _joystick_carrot_distance_;
+    3118           0 :         request.goal[REF_Z]       = _channel_mult_throttle_ * joystick_data->axes[_channel_throttle_];
+    3119           0 :         request.goal[REF_HEADING] = _channel_mult_heading_ * joystick_data->axes[_channel_heading_];
+    3120             : 
+    3121           0 :         mrs_msgs::Vec4::Response response;
+    3122             : 
+    3123           0 :         callbackGotoFcu(request, response);
+    3124             : 
+    3125           0 :       } else if (_joystick_mode_ == 1) {
+    3126             : 
+    3127           0 :         mrs_msgs::TrajectoryReference trajectory;
+    3128             : 
+    3129           0 :         double dt = 0.2;
+    3130             : 
+    3131           0 :         trajectory.fly_now         = true;
+    3132           0 :         trajectory.header.frame_id = "fcu_untilted";
+    3133           0 :         trajectory.use_heading     = true;
+    3134           0 :         trajectory.dt              = dt;
+    3135             : 
+    3136           0 :         mrs_msgs::Reference point;
+    3137           0 :         point.position.x = 0;
+    3138           0 :         point.position.y = 0;
+    3139           0 :         point.position.z = 0;
+    3140           0 :         point.heading    = 0;
+    3141             : 
+    3142           0 :         trajectory.points.push_back(point);
+    3143             : 
+    3144           0 :         double speed = 1.0;
+    3145             : 
+    3146           0 :         for (int i = 0; i < 50; i++) {
+    3147             : 
+    3148           0 :           point.position.x += _channel_mult_pitch_ * joystick_data->axes[_channel_pitch_] * (speed * dt);
+    3149           0 :           point.position.y += _channel_mult_roll_ * joystick_data->axes[_channel_roll_] * (speed * dt);
+    3150           0 :           point.position.z += _channel_mult_throttle_ * joystick_data->axes[_channel_throttle_] * (speed * dt);
+    3151           0 :           point.heading = _channel_mult_heading_ * joystick_data->axes[_channel_heading_];
+    3152             : 
+    3153           0 :           trajectory.points.push_back(point);
+    3154             :         }
+    3155             : 
+    3156           0 :         setTrajectoryReference(trajectory);
+    3157             :       }
+    3158             :     }
+    3159             :   }
+    3160             : 
+    3161       57636 :   if (rc_goto_active_ && last_tracker_cmd && sh_hw_api_rc_.hasMsg()) {
+    3162             : 
+    3163             :     // create the reference
+    3164        1110 :     mrs_msgs::VelocityReferenceStampedSrv::Request request;
+    3165             : 
+    3166         555 :     double des_x       = 0;
+    3167         555 :     double des_y       = 0;
+    3168         555 :     double des_z       = 0;
+    3169         555 :     double des_heading = 0;
+    3170             : 
+    3171         555 :     bool nothing_to_do = true;
+    3172             : 
+    3173             :     // copy member variables
+    3174        1110 :     mrs_msgs::HwApiRcChannelsConstPtr rc_channels = sh_hw_api_rc_.getMsg();
+    3175             : 
+    3176         555 :     if (rc_channels->channels.size() < 4) {
+    3177             : 
+    3178           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: RC control channel numbers are out of range (the # of channels in rc/in topic is %d)",
+    3179             :                          int(rc_channels->channels.size()));
+    3180           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: tip: this could be caused by the RC failsafe not being configured!");
+    3181             : 
+    3182             :     } else {
+    3183             : 
+    3184         555 :       double tmp_x       = RCChannelToRange(rc_channels->channels[_rc_channel_pitch_], _rc_horizontal_speed_, 0.1);
+    3185         555 :       double tmp_y       = -RCChannelToRange(rc_channels->channels[_rc_channel_roll_], _rc_horizontal_speed_, 0.1);
+    3186         555 :       double tmp_z       = RCChannelToRange(rc_channels->channels[_rc_channel_throttle_], _rc_vertical_speed_, 0.3);
+    3187         555 :       double tmp_heading = -RCChannelToRange(rc_channels->channels[_rc_channel_heading_], _rc_heading_rate_, 0.1);
+    3188             : 
+    3189         555 :       if (abs(tmp_x) > 1e-3) {
+    3190          93 :         des_x         = tmp_x;
+    3191          93 :         nothing_to_do = false;
+    3192             :       }
+    3193             : 
+    3194         555 :       if (abs(tmp_y) > 1e-3) {
+    3195         114 :         des_y         = tmp_y;
+    3196         114 :         nothing_to_do = false;
+    3197             :       }
+    3198             : 
+    3199         555 :       if (abs(tmp_z) > 1e-3) {
+    3200         222 :         des_z         = tmp_z;
+    3201         222 :         nothing_to_do = false;
+    3202             :       }
+    3203             : 
+    3204         555 :       if (abs(tmp_heading) > 1e-3) {
+    3205          48 :         des_heading   = tmp_heading;
+    3206          48 :         nothing_to_do = false;
+    3207             :       }
+    3208             :     }
+    3209             : 
+    3210         555 :     if (!nothing_to_do) {
+    3211             : 
+    3212         477 :       request.reference.header.frame_id = "fcu_untilted";
+    3213             : 
+    3214         477 :       request.reference.reference.use_heading_rate = true;
+    3215             : 
+    3216         477 :       request.reference.reference.velocity.x   = des_x;
+    3217         477 :       request.reference.reference.velocity.y   = des_y;
+    3218         477 :       request.reference.reference.velocity.z   = des_z;
+    3219         477 :       request.reference.reference.heading_rate = des_heading;
+    3220             : 
+    3221         954 :       mrs_msgs::VelocityReferenceStampedSrv::Response response;
+    3222             : 
+    3223             :       // disable callbacks of all trackers
+    3224         477 :       std_srvs::SetBoolRequest req_enable_callbacks;
+    3225             : 
+    3226             :       // enable the callbacks for the active tracker
+    3227         477 :       req_enable_callbacks.data = true;
+    3228             :       {
+    3229         477 :         std::scoped_lock lock(mutex_tracker_list_);
+    3230             : 
+    3231         954 :         tracker_list_[active_tracker_idx_]->enableCallbacks(
+    3232         954 :             std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    3233             :       }
+    3234             : 
+    3235         477 :       callbacks_enabled_ = true;
+    3236             : 
+    3237         477 :       callbackVelocityReferenceService(request, response);
+    3238             : 
+    3239         477 :       callbacks_enabled_ = false;
+    3240             : 
+    3241         477 :       ROS_INFO_THROTTLE(1.0, "[ControlManager]: goto by RC with speed x=%.2f, y=%.2f, z=%.2f, heading_rate=%.2f", des_x, des_y, des_z, des_heading);
+    3242             : 
+    3243             :       // disable the callbacks back again
+    3244         477 :       req_enable_callbacks.data = false;
+    3245             :       {
+    3246         477 :         std::scoped_lock lock(mutex_tracker_list_);
+    3247             : 
+    3248         954 :         tracker_list_[active_tracker_idx_]->enableCallbacks(
+    3249         954 :             std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    3250             :       }
+    3251             :     }
+    3252             :   }
+    3253             : }
+    3254             : 
+    3255             : //}
+    3256             : 
+    3257             : /* //{ timerBumper() */
+    3258             : 
+    3259        2183 : void ControlManager::timerBumper(const ros::TimerEvent& event) {
+    3260             : 
+    3261        2183 :   if (!is_initialized_)
+    3262        1863 :     return;
+    3263             : 
+    3264        4366 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerBumper", _bumper_timer_rate_, 0.05, event);
+    3265        4366 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::timerBumper", scope_timer_logger_, scope_timer_enabled_);
+    3266             : 
+    3267             :   // | ---------------------- preconditions --------------------- |
+    3268             : 
+    3269        2183 :   if (!sh_bumper_.hasMsg()) {
+    3270        1859 :     return;
+    3271             :   }
+    3272             : 
+    3273         324 :   if (!bumper_enabled_) {
+    3274           0 :     return;
+    3275             :   }
+    3276             : 
+    3277         324 :   if (!isFlyingNormally() && !bumper_repulsing_) {
+    3278           4 :     return;
+    3279             :   }
+    3280             : 
+    3281         320 :   if (!got_uav_state_) {
+    3282           0 :     return;
+    3283             :   }
+    3284             : 
+    3285         320 :   if (sh_bumper_.hasMsg() && (ros::Time::now() - sh_bumper_.lastMsgTime()).toSec() > 1.0) {
+    3286             : 
+    3287           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: obstacle bumper is missing messages although we got them before");
+    3288             : 
+    3289           0 :     return;
+    3290             :   }
+    3291             : 
+    3292         320 :   timer_bumper_.setPeriod(ros::Duration(1.0 / _bumper_timer_rate_));
+    3293             : 
+    3294             :   // | ------------------ call the bumper logic ----------------- |
+    3295             : 
+    3296         320 :   bumperPushFromObstacle();
+    3297             : }
+    3298             : 
+    3299             : //}
+    3300             : 
+    3301             : /* //{ timerPirouette() */
+    3302             : 
+    3303           0 : void ControlManager::timerPirouette(const ros::TimerEvent& event) {
+    3304             : 
+    3305           0 :   if (!is_initialized_)
+    3306           0 :     return;
+    3307             : 
+    3308           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerPirouette", _pirouette_timer_rate_, 0.01, event);
+    3309           0 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::timerPirouette", scope_timer_logger_, scope_timer_enabled_);
+    3310             : 
+    3311           0 :   pirouette_iterator_++;
+    3312             : 
+    3313           0 :   double pirouette_duration  = (2 * M_PI) / _pirouette_speed_;
+    3314           0 :   double pirouette_n_steps   = pirouette_duration * _pirouette_timer_rate_;
+    3315           0 :   double pirouette_step_size = (2 * M_PI) / pirouette_n_steps;
+    3316             : 
+    3317           0 :   if (rc_escalating_failsafe_triggered_ || failsafe_triggered_ || eland_triggered_ || (pirouette_iterator_ > pirouette_duration * _pirouette_timer_rate_)) {
+    3318             : 
+    3319           0 :     _pirouette_enabled_ = false;
+    3320           0 :     timer_pirouette_.stop();
+    3321             : 
+    3322           0 :     setCallbacks(true);
+    3323             : 
+    3324           0 :     return;
+    3325             :   }
+    3326             : 
+    3327             :   // set the reference
+    3328           0 :   mrs_msgs::ReferenceStamped reference_request;
+    3329             : 
+    3330           0 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    3331             : 
+    3332           0 :   reference_request.header.frame_id      = "";
+    3333           0 :   reference_request.header.stamp         = ros::Time(0);
+    3334           0 :   reference_request.reference.position.x = last_tracker_cmd->position.x;
+    3335           0 :   reference_request.reference.position.y = last_tracker_cmd->position.y;
+    3336           0 :   reference_request.reference.position.z = last_tracker_cmd->position.z;
+    3337           0 :   reference_request.reference.heading    = pirouette_initial_heading_ + pirouette_iterator_ * pirouette_step_size;
+    3338             : 
+    3339             :   // enable the callbacks for the active tracker
+    3340             :   {
+    3341           0 :     std::scoped_lock lock(mutex_tracker_list_);
+    3342             : 
+    3343           0 :     std_srvs::SetBoolRequest req_enable_callbacks;
+    3344           0 :     req_enable_callbacks.data = true;
+    3345             : 
+    3346           0 :     tracker_list_[active_tracker_idx_]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    3347             : 
+    3348           0 :     callbacks_enabled_ = true;
+    3349             :   }
+    3350             : 
+    3351           0 :   setReference(reference_request);
+    3352             : 
+    3353             :   {
+    3354           0 :     std::scoped_lock lock(mutex_tracker_list_);
+    3355             : 
+    3356             :     // disable the callbacks for the active tracker
+    3357           0 :     std_srvs::SetBoolRequest req_enable_callbacks;
+    3358           0 :     req_enable_callbacks.data = false;
+    3359             : 
+    3360           0 :     tracker_list_[active_tracker_idx_]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    3361             : 
+    3362           0 :     callbacks_enabled_ = false;
+    3363             :   }
+    3364             : }
+    3365             : 
+    3366             : //}
+    3367             : 
+    3368             : // --------------------------------------------------------------
+    3369             : // |                           asyncs                           |
+    3370             : // --------------------------------------------------------------
+    3371             : 
+    3372             : /* asyncControl() //{ */
+    3373             : 
+    3374      129610 : void ControlManager::asyncControl(void) {
+    3375             : 
+    3376      129610 :   if (!is_initialized_)
+    3377           0 :     return;
+    3378             : 
+    3379      259220 :   mrs_lib::AtomicScopeFlag unset_running(running_async_control_);
+    3380             : 
+    3381      388830 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("asyncControl");
+    3382      388830 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::asyncControl", scope_timer_logger_, scope_timer_enabled_);
+    3383             : 
+    3384             :   // copy member variables
+    3385      259220 :   auto uav_state           = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    3386      129610 :   auto current_constraints = mrs_lib::get_mutexed(mutex_constraints_, current_constraints_);
+    3387             : 
+    3388      129610 :   if (!failsafe_triggered_) {  // when failsafe is triggered, updateControllers() and publish() is called in timerFailsafe()
+    3389             : 
+    3390             :     // run the safety timer
+    3391             :     // in the case of large control errors, the safety mechanisms will be triggered before the controllers and trackers are updated...
+    3392      120240 :     while (running_safety_timer_) {
+    3393             : 
+    3394         941 :       ROS_DEBUG("[ControlManager]: waiting for safety timer to finish");
+    3395         941 :       ros::Duration wait(0.001);
+    3396         941 :       wait.sleep();
+    3397             : 
+    3398         941 :       if (!running_safety_timer_) {
+    3399         930 :         ROS_DEBUG("[ControlManager]: safety timer finished");
+    3400         930 :         break;
+    3401             :       }
+    3402             :     }
+    3403             : 
+    3404      120229 :     ros::TimerEvent safety_timer_event;
+    3405      120229 :     timerSafety(safety_timer_event);
+    3406             : 
+    3407      120229 :     updateTrackers();
+    3408             : 
+    3409      120229 :     updateControllers(uav_state);
+    3410             : 
+    3411      120229 :     if (got_constraints_) {
+    3412             : 
+    3413             :       // update the constraints to trackers, if need to
+    3414      119611 :       auto enforce = enforceControllersConstraints(current_constraints);
+    3415             : 
+    3416      119611 :       if (enforce && !constraints_being_enforced_) {
+    3417             : 
+    3418          60 :         setConstraintsToTrackers(enforce.value());
+    3419          60 :         mrs_lib::set_mutexed(mutex_constraints_, enforce.value(), sanitized_constraints_);
+    3420             : 
+    3421          60 :         constraints_being_enforced_ = true;
+    3422             : 
+    3423          60 :         auto active_controller_idx = mrs_lib::get_mutexed(mutex_controller_list_, active_controller_idx_);
+    3424             : 
+    3425          60 :         ROS_WARN_THROTTLE(1.0, "[ControlManager]: the controller '%s' is enforcing constraints over the ConstraintManager",
+    3426             :                           _controller_names_[active_controller_idx].c_str());
+    3427             : 
+    3428      119551 :       } else if (!enforce && constraints_being_enforced_) {
+    3429             : 
+    3430          54 :         ROS_INFO_THROTTLE(1.0, "[ControlManager]: constraint values returned to original values");
+    3431             : 
+    3432          54 :         constraints_being_enforced_ = false;
+    3433             : 
+    3434          54 :         mrs_lib::set_mutexed(mutex_constraints_, current_constraints, sanitized_constraints_);
+    3435             : 
+    3436          54 :         setConstraintsToTrackers(current_constraints);
+    3437             :       }
+    3438             :     }
+    3439             : 
+    3440      120229 :     publish();
+    3441             :   }
+    3442             : 
+    3443             :   // if odometry switch happened, we finish it here and turn the safety timer back on
+    3444      129610 :   if (odometry_switch_in_progress_) {
+    3445             : 
+    3446           5 :     ROS_DEBUG("[ControlManager]: starting safety timer");
+    3447           5 :     timer_safety_.start();
+    3448           5 :     ROS_DEBUG("[ControlManager]: safety timer started");
+    3449           5 :     odometry_switch_in_progress_ = false;
+    3450             : 
+    3451             :     {
+    3452          10 :       std::scoped_lock lock(mutex_uav_state_);
+    3453             : 
+    3454           5 :       ROS_INFO("[ControlManager]: odometry after switch: x=%.2f, y=%.2f, z=%.2f, heading=%.2f", uav_state.pose.position.x, uav_state.pose.position.y,
+    3455             :                uav_state.pose.position.z, uav_heading_);
+    3456             :     }
+    3457             :   }
+    3458             : }
+    3459             : 
+    3460             : //}
+    3461             : 
+    3462             : // --------------------------------------------------------------
+    3463             : // |                          callbacks                         |
+    3464             : // --------------------------------------------------------------
+    3465             : 
+    3466             : // | --------------------- topic callbacks -------------------- |
+    3467             : 
+    3468             : /* //{ callbackOdometry() */
+    3469             : 
+    3470           0 : void ControlManager::callbackOdometry(const nav_msgs::Odometry::ConstPtr msg) {
+    3471             : 
+    3472           0 :   if (!is_initialized_)
+    3473           0 :     return;
+    3474             : 
+    3475           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackOdometry");
+    3476           0 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackOdometry", scope_timer_logger_, scope_timer_enabled_);
+    3477             : 
+    3478           0 :   nav_msgs::OdometryConstPtr odom = msg;
+    3479             : 
+    3480             :   // | ------------------ check for time stamp ------------------ |
+    3481             : 
+    3482             :   {
+    3483           0 :     std::scoped_lock lock(mutex_uav_state_);
+    3484             : 
+    3485           0 :     if (uav_state_.header.stamp == odom->header.stamp) {
+    3486           0 :       return;
+    3487             :     }
+    3488             :   }
+    3489             : 
+    3490             :   // | --------------------- check for nans --------------------- |
+    3491             : 
+    3492           0 :   if (!validateOdometry(*odom, "ControlManager", "odometry")) {
+    3493           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: incoming 'odometry' contains invalid values, throwing it away");
+    3494           0 :     return;
+    3495             :   }
+    3496             : 
+    3497             :   // | ---------------------- frame switch ---------------------- |
+    3498             : 
+    3499             :   /* Odometry frame switch //{ */
+    3500             : 
+    3501             :   // | -- prepare an OdometryConstPtr for trackers & controllers -- |
+    3502             : 
+    3503           0 :   mrs_msgs::UavState uav_state_odom;
+    3504             : 
+    3505           0 :   uav_state_odom.header   = odom->header;
+    3506           0 :   uav_state_odom.pose     = odom->pose.pose;
+    3507           0 :   uav_state_odom.velocity = odom->twist.twist;
+    3508             : 
+    3509             :   // | ----- check for change in odometry frame of reference ---- |
+    3510             : 
+    3511           0 :   if (got_uav_state_) {
+    3512             : 
+    3513           0 :     if (odom->header.frame_id != uav_state_.header.frame_id) {
+    3514             : 
+    3515           0 :       ROS_INFO("[ControlManager]: detecting switch of odometry frame");
+    3516             :       {
+    3517           0 :         std::scoped_lock lock(mutex_uav_state_);
+    3518             : 
+    3519           0 :         ROS_INFO("[ControlManager]: odometry before switch: x=%.2f, y=%.2f, z=%.2f, heading=%.2f", uav_state_.pose.position.x, uav_state_.pose.position.y,
+    3520             :                  uav_state_.pose.position.z, uav_heading_);
+    3521             :       }
+    3522             : 
+    3523           0 :       odometry_switch_in_progress_ = true;
+    3524             : 
+    3525             :       // we have to stop safety timer, otherwise it will interfere
+    3526           0 :       ROS_DEBUG("[ControlManager]: stopping the safety timer");
+    3527           0 :       timer_safety_.stop();
+    3528           0 :       ROS_DEBUG("[ControlManager]: safety timer stopped");
+    3529             : 
+    3530             :       // wait for the safety timer to stop if its running
+    3531           0 :       while (running_safety_timer_) {
+    3532             : 
+    3533           0 :         ROS_DEBUG("[ControlManager]: waiting for safety timer to finish");
+    3534           0 :         ros::Duration wait(0.001);
+    3535           0 :         wait.sleep();
+    3536             : 
+    3537           0 :         if (!running_safety_timer_) {
+    3538           0 :           ROS_DEBUG("[ControlManager]: safety timer finished");
+    3539           0 :           break;
+    3540             :         }
+    3541             :       }
+    3542             : 
+    3543             :       // we have to also for the oneshot control timer to finish
+    3544           0 :       while (running_async_control_) {
+    3545             : 
+    3546           0 :         ROS_DEBUG("[ControlManager]: waiting for control timer to finish");
+    3547           0 :         ros::Duration wait(0.001);
+    3548           0 :         wait.sleep();
+    3549             : 
+    3550           0 :         if (!running_async_control_) {
+    3551           0 :           ROS_DEBUG("[ControlManager]: control timer finished");
+    3552           0 :           break;
+    3553             :         }
+    3554             :       }
+    3555             : 
+    3556             :       {
+    3557           0 :         std::scoped_lock lock(mutex_controller_list_, mutex_tracker_list_);
+    3558             : 
+    3559           0 :         tracker_list_[active_tracker_idx_]->switchOdometrySource(uav_state_odom);
+    3560           0 :         controller_list_[active_controller_idx_]->switchOdometrySource(uav_state_odom);
+    3561             :       }
+    3562             :     }
+    3563             :   }
+    3564             : 
+    3565             :   //}
+    3566             : 
+    3567             :   // | ----------- copy the odometry to the uav_state ----------- |
+    3568             : 
+    3569             :   {
+    3570           0 :     std::scoped_lock lock(mutex_uav_state_);
+    3571             : 
+    3572           0 :     previous_uav_state_ = uav_state_;
+    3573             : 
+    3574           0 :     uav_state_ = mrs_msgs::UavState();
+    3575             : 
+    3576           0 :     uav_state_.header           = odom->header;
+    3577           0 :     uav_state_.pose             = odom->pose.pose;
+    3578           0 :     uav_state_.velocity.angular = odom->twist.twist.angular;
+    3579             : 
+    3580             :     // transform the twist into the header's frame
+    3581             :     {
+    3582             :       // the velocity from the odometry
+    3583           0 :       geometry_msgs::Vector3Stamped speed_child_frame;
+    3584           0 :       speed_child_frame.header.frame_id = odom->child_frame_id;
+    3585           0 :       speed_child_frame.header.stamp    = odom->header.stamp;
+    3586           0 :       speed_child_frame.vector.x        = odom->twist.twist.linear.x;
+    3587           0 :       speed_child_frame.vector.y        = odom->twist.twist.linear.y;
+    3588           0 :       speed_child_frame.vector.z        = odom->twist.twist.linear.z;
+    3589             : 
+    3590           0 :       auto res = transformer_->transformSingle(speed_child_frame, odom->header.frame_id);
+    3591             : 
+    3592           0 :       if (res) {
+    3593           0 :         uav_state_.velocity.linear.x = res.value().vector.x;
+    3594           0 :         uav_state_.velocity.linear.y = res.value().vector.y;
+    3595           0 :         uav_state_.velocity.linear.z = res.value().vector.z;
+    3596             :       } else {
+    3597           0 :         ROS_ERROR_THROTTLE(1.0, "[ControlManager]: could not transform the odometry speed from '%s' to '%s'", odom->child_frame_id.c_str(),
+    3598             :                            odom->header.frame_id.c_str());
+    3599           0 :         return;
+    3600             :       }
+    3601             :     }
+    3602             : 
+    3603             :     // calculate the euler angles
+    3604           0 :     std::tie(uav_roll_, uav_pitch_, uav_yaw_) = mrs_lib::AttitudeConverter(odom->pose.pose.orientation);
+    3605             : 
+    3606             :     try {
+    3607           0 :       uav_heading_ = mrs_lib::AttitudeConverter(odom->pose.pose.orientation).getHeading();
+    3608             :     }
+    3609           0 :     catch (...) {
+    3610           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: could not calculate UAV heading");
+    3611             :     }
+    3612             : 
+    3613           0 :     transformer_->setDefaultFrame(odom->header.frame_id);
+    3614             : 
+    3615           0 :     got_uav_state_ = true;
+    3616             :   }
+    3617             : 
+    3618             :   // run the control loop asynchronously in an OneShotTimer
+    3619             :   // but only if its not already running
+    3620           0 :   if (!running_async_control_) {
+    3621             : 
+    3622           0 :     running_async_control_ = true;
+    3623             : 
+    3624           0 :     async_control_result_ = std::async(std::launch::async, &ControlManager::asyncControl, this);
+    3625             :   }
+    3626             : }
+    3627             : 
+    3628             : //}
+    3629             : 
+    3630             : /* //{ callbackUavState() */
+    3631             : 
+    3632      155064 : void ControlManager::callbackUavState(const mrs_msgs::UavState::ConstPtr msg) {
+    3633             : 
+    3634      155064 :   if (!is_initialized_)
+    3635       24675 :     return;
+    3636             : 
+    3637      310128 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackUavState");
+    3638      310128 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackUavState", scope_timer_logger_, scope_timer_enabled_);
+    3639             : 
+    3640      155064 :   mrs_msgs::UavStateConstPtr uav_state = msg;
+    3641             : 
+    3642             :   // | ------------------ check for time stamp ------------------ |
+    3643             : 
+    3644             :   {
+    3645      155064 :     std::scoped_lock lock(mutex_uav_state_);
+    3646             : 
+    3647      155064 :     if (uav_state_.header.stamp == uav_state->header.stamp) {
+    3648       24675 :       return;
+    3649             :     }
+    3650             :   }
+    3651             : 
+    3652             :   // | --------------------- check for nans --------------------- |
+    3653             : 
+    3654      130389 :   if (!validateUavState(*uav_state, "ControlManager", "uav_state")) {
+    3655           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: incoming 'uav_state' contains invalid values, throwing it away");
+    3656           0 :     return;
+    3657             :   }
+    3658             : 
+    3659             :   // | -------------------- check for hiccups ------------------- |
+    3660             : 
+    3661             :   /* hickup detection //{ */
+    3662             : 
+    3663      130389 :   double alpha               = 0.99;
+    3664      130389 :   double alpha2              = 0.666;
+    3665      130389 :   double uav_state_count_lim = 1000;
+    3666             : 
+    3667      130389 :   double uav_state_dt = (ros::Time::now() - previous_uav_state_.header.stamp).toSec();
+    3668             : 
+    3669             :   // belive only reasonable numbers
+    3670      130389 :   if (uav_state_dt <= 1.0) {
+    3671             : 
+    3672      130207 :     uav_state_avg_dt_ = alpha * uav_state_avg_dt_ + (1 - alpha) * uav_state_dt;
+    3673             : 
+    3674      130207 :     if (uav_state_count_ < uav_state_count_lim) {
+    3675       69370 :       uav_state_count_++;
+    3676             :     }
+    3677             :   }
+    3678             : 
+    3679      130389 :   if (uav_state_count_ == uav_state_count_lim) {
+    3680             : 
+    3681             :     /* ROS_INFO_STREAM("[ControlManager]: uav_state_dt = " << uav_state_dt); */
+    3682             : 
+    3683       60892 :     if (uav_state_dt < uav_state_avg_dt_ && uav_state_dt > 0.0001) {
+    3684             : 
+    3685       27151 :       uav_state_hiccup_factor_ = alpha2 * uav_state_hiccup_factor_ + (1 - alpha2) * (uav_state_avg_dt_ / uav_state_dt);
+    3686             : 
+    3687       33741 :     } else if (uav_state_avg_dt_ > 0.0001) {
+    3688             : 
+    3689       33741 :       uav_state_hiccup_factor_ = alpha2 * uav_state_hiccup_factor_ + (1 - alpha2) * (uav_state_dt / uav_state_avg_dt_);
+    3690             :     }
+    3691             : 
+    3692       60892 :     if (uav_state_hiccup_factor_ > 3.141592653) {
+    3693             : 
+    3694             :       /* ROS_ERROR_STREAM_THROTTLE(0.1, "[ControlManager]: hiccup factor = " << uav_state_hiccup_factor_); */
+    3695             : 
+    3696           0 :       ROS_WARN_THROTTLE(2.0, "[ControlManager]: ");
+    3697           0 :       ROS_WARN_THROTTLE(2.0, "[ControlManager]: // | ------------------------- WARNING ------------------------ |");
+    3698           0 :       ROS_WARN_THROTTLE(2.0, "[ControlManager]: // |                                                            |");
+    3699           0 :       ROS_WARN_THROTTLE(2.0, "[ControlManager]: // |            UAV_STATE has a large hiccup factor!            |");
+    3700           0 :       ROS_WARN_THROTTLE(2.0, "[ControlManager]: // |           hint, hint: you are probably rosbagging          |");
+    3701           0 :       ROS_WARN_THROTTLE(2.0, "[ControlManager]: // |           lot of data or publishing lot of large           |");
+    3702           0 :       ROS_WARN_THROTTLE(2.0, "[ControlManager]: // |          messages without mutual nodelet managers.         |");
+    3703           0 :       ROS_WARN_THROTTLE(2.0, "[ControlManager]: // |                                                            |");
+    3704           0 :       ROS_WARN_THROTTLE(2.0, "[ControlManager]: // | ------------------------- WARNING ------------------------ |");
+    3705           0 :       ROS_WARN_THROTTLE(2.0, "[ControlManager]: ");
+    3706             :     }
+    3707             :   }
+    3708             : 
+    3709             :   //}
+    3710             : 
+    3711             :   // | ---------------------- frame switch ---------------------- |
+    3712             : 
+    3713             :   /* frame switch //{ */
+    3714             : 
+    3715             :   // | ----- check for change in odometry frame of reference ---- |
+    3716             : 
+    3717      130389 :   if (got_uav_state_) {
+    3718             : 
+    3719      130298 :     if (uav_state->estimator_iteration != uav_state_.estimator_iteration) {
+    3720             : 
+    3721           5 :       ROS_INFO("[ControlManager]: detecting switch of odometry frame");
+    3722             :       {
+    3723          10 :         std::scoped_lock lock(mutex_uav_state_);
+    3724             : 
+    3725           5 :         ROS_INFO("[ControlManager]: odometry before switch: x=%.2f, y=%.2f, z=%.2f, heading=%.2f", uav_state_.pose.position.x, uav_state_.pose.position.y,
+    3726             :                  uav_state_.pose.position.z, uav_heading_);
+    3727             :       }
+    3728             : 
+    3729           5 :       odometry_switch_in_progress_ = true;
+    3730             : 
+    3731             :       // we have to stop safety timer, otherwise it will interfere
+    3732           5 :       ROS_DEBUG("[ControlManager]: stopping the safety timer");
+    3733           5 :       timer_safety_.stop();
+    3734           5 :       ROS_DEBUG("[ControlManager]: safety timer stopped");
+    3735             : 
+    3736             :       // wait for the safety timer to stop if its running
+    3737           5 :       while (running_safety_timer_) {
+    3738             : 
+    3739           0 :         ROS_DEBUG("[ControlManager]: waiting for safety timer to finish");
+    3740           0 :         ros::Duration wait(0.001);
+    3741           0 :         wait.sleep();
+    3742             : 
+    3743           0 :         if (!running_safety_timer_) {
+    3744           0 :           ROS_DEBUG("[ControlManager]: safety timer finished");
+    3745           0 :           break;
+    3746             :         }
+    3747             :       }
+    3748             : 
+    3749             :       // we have to also for the oneshot control timer to finish
+    3750           5 :       while (running_async_control_) {
+    3751             : 
+    3752           0 :         ROS_DEBUG("[ControlManager]: waiting for control timer to finish");
+    3753           0 :         ros::Duration wait(0.001);
+    3754           0 :         wait.sleep();
+    3755             : 
+    3756           0 :         if (!running_async_control_) {
+    3757           0 :           ROS_DEBUG("[ControlManager]: control timer finished");
+    3758           0 :           break;
+    3759             :         }
+    3760             :       }
+    3761             : 
+    3762             :       {
+    3763          10 :         std::scoped_lock lock(mutex_controller_list_, mutex_tracker_list_);
+    3764             : 
+    3765           5 :         tracker_list_[active_tracker_idx_]->switchOdometrySource(*uav_state);
+    3766           5 :         controller_list_[active_controller_idx_]->switchOdometrySource(*uav_state);
+    3767             :       }
+    3768             :     }
+    3769             :   }
+    3770             : 
+    3771             :   //}
+    3772             : 
+    3773             :   // --------------------------------------------------------------
+    3774             :   // |           copy the UavState message for later use          |
+    3775             :   // --------------------------------------------------------------
+    3776             : 
+    3777             :   {
+    3778      130389 :     std::scoped_lock lock(mutex_uav_state_);
+    3779             : 
+    3780      130389 :     previous_uav_state_ = uav_state_;
+    3781             : 
+    3782      130389 :     uav_state_ = *uav_state;
+    3783             : 
+    3784      130389 :     std::tie(uav_roll_, uav_pitch_, uav_yaw_) = mrs_lib::AttitudeConverter(uav_state_.pose.orientation);
+    3785             : 
+    3786             :     try {
+    3787      130389 :       uav_heading_ = mrs_lib::AttitudeConverter(uav_state_.pose.orientation).getHeading();
+    3788             :     }
+    3789           0 :     catch (...) {
+    3790           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: could not calculate UAV heading, not updating it");
+    3791             :     }
+    3792             : 
+    3793      130389 :     transformer_->setDefaultFrame(uav_state->header.frame_id);
+    3794             : 
+    3795      130389 :     got_uav_state_ = true;
+    3796             :   }
+    3797             : 
+    3798             :   // run the control loop asynchronously in an OneShotTimer
+    3799             :   // but only if its not already running
+    3800      130389 :   if (!running_async_control_) {
+    3801             : 
+    3802      129610 :     running_async_control_ = true;
+    3803             : 
+    3804      129610 :     async_control_result_ = std::async(std::launch::async, &ControlManager::asyncControl, this);
+    3805             :   }
+    3806             : }
+    3807             : 
+    3808             : //}
+    3809             : 
+    3810             : /* //{ callbackGNSS() */
+    3811             : 
+    3812       90128 : void ControlManager::callbackGNSS(const sensor_msgs::NavSatFix::ConstPtr msg) {
+    3813             : 
+    3814       90128 :   if (!is_initialized_)
+    3815         115 :     return;
+    3816             : 
+    3817      270039 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackGNSS");
+    3818      270039 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackGNSS", scope_timer_logger_, scope_timer_enabled_);
+    3819             : 
+    3820       90013 :   transformer_->setLatLon(msg->latitude, msg->longitude);
+    3821             : }
+    3822             : 
+    3823             : //}
+    3824             : 
+    3825             : /* callbackJoystick() //{ */
+    3826             : 
+    3827           0 : void ControlManager::callbackJoystick(const sensor_msgs::Joy::ConstPtr msg) {
+    3828             : 
+    3829           0 :   if (!is_initialized_)
+    3830           0 :     return;
+    3831             : 
+    3832           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackJoystick");
+    3833           0 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackJoystick", scope_timer_logger_, scope_timer_enabled_);
+    3834             : 
+    3835             :   // copy member variables
+    3836           0 :   auto active_tracker_idx    = mrs_lib::get_mutexed(mutex_tracker_list_, active_tracker_idx_);
+    3837           0 :   auto active_controller_idx = mrs_lib::get_mutexed(mutex_controller_list_, active_controller_idx_);
+    3838             : 
+    3839           0 :   sensor_msgs::JoyConstPtr joystick_data = msg;
+    3840             : 
+    3841             :   // TODO check if the array is smaller than the largest idx
+    3842           0 :   if (joystick_data->buttons.size() == 0 || joystick_data->axes.size() == 0) {
+    3843           0 :     return;
+    3844             :   }
+    3845             : 
+    3846             :   // | ---- switching back to fallback tracker and controller --- |
+    3847             : 
+    3848             :   // if any of the A, B, X, Y buttons are pressed when flying with joystick, switch back to fallback controller and tracker
+    3849           0 :   if ((joystick_data->buttons[_channel_A_] == 1 || joystick_data->buttons[_channel_B_] == 1 || joystick_data->buttons[_channel_X_] == 1 ||
+    3850           0 :        joystick_data->buttons[_channel_Y_] == 1) &&
+    3851           0 :       active_tracker_idx == _joystick_tracker_idx_ && active_controller_idx == _joystick_controller_idx_) {
+    3852             : 
+    3853           0 :     ROS_INFO("[ControlManager]: switching from joystick to normal control");
+    3854             : 
+    3855           0 :     switchTracker(_joystick_fallback_tracker_name_);
+    3856           0 :     switchController(_joystick_fallback_controller_name_);
+    3857             : 
+    3858           0 :     joystick_goto_enabled_ = false;
+    3859             :   }
+    3860             : 
+    3861             :   // | ------- joystick control activation ------- |
+    3862             : 
+    3863             :   // if start button was pressed
+    3864           0 :   if (joystick_data->buttons[_channel_start_] == 1) {
+    3865             : 
+    3866           0 :     if (!joystick_start_pressed_) {
+    3867             : 
+    3868           0 :       ROS_INFO("[ControlManager]: joystick start button pressed");
+    3869             : 
+    3870           0 :       joystick_start_pressed_    = true;
+    3871           0 :       joystick_start_press_time_ = ros::Time::now();
+    3872             :     }
+    3873             : 
+    3874           0 :   } else if (joystick_start_pressed_) {
+    3875             : 
+    3876           0 :     ROS_INFO("[ControlManager]: joystick start button released");
+    3877             : 
+    3878           0 :     joystick_start_pressed_    = false;
+    3879           0 :     joystick_start_press_time_ = ros::Time(0);
+    3880             :   }
+    3881             : 
+    3882             :   // | ---------------- Joystick goto activation ---------------- |
+    3883             : 
+    3884             :   // if back button was pressed
+    3885           0 :   if (joystick_data->buttons[_channel_back_] == 1) {
+    3886             : 
+    3887           0 :     if (!joystick_back_pressed_) {
+    3888             : 
+    3889           0 :       ROS_INFO("[ControlManager]: joystick back button pressed");
+    3890             : 
+    3891           0 :       joystick_back_pressed_    = true;
+    3892           0 :       joystick_back_press_time_ = ros::Time::now();
+    3893             :     }
+    3894             : 
+    3895           0 :   } else if (joystick_back_pressed_) {
+    3896             : 
+    3897           0 :     ROS_INFO("[ControlManager]: joystick back button released");
+    3898             : 
+    3899           0 :     joystick_back_pressed_    = false;
+    3900           0 :     joystick_back_press_time_ = ros::Time(0);
+    3901             :   }
+    3902             : 
+    3903             :   // | ------------------------ Failsafes ----------------------- |
+    3904             : 
+    3905             :   // if LT and RT buttons are both pressed down
+    3906           0 :   if (joystick_data->axes[_channel_LT_] < -0.99 && joystick_data->axes[_channel_RT_] < -0.99) {
+    3907             : 
+    3908           0 :     if (!joystick_failsafe_pressed_) {
+    3909             : 
+    3910           0 :       ROS_INFO("[ControlManager]: joystick Failsafe pressed");
+    3911             : 
+    3912           0 :       joystick_failsafe_pressed_    = true;
+    3913           0 :       joystick_failsafe_press_time_ = ros::Time::now();
+    3914             :     }
+    3915             : 
+    3916           0 :   } else if (joystick_failsafe_pressed_) {
+    3917             : 
+    3918           0 :     ROS_INFO("[ControlManager]: joystick Failsafe released");
+    3919             : 
+    3920           0 :     joystick_failsafe_pressed_    = false;
+    3921           0 :     joystick_failsafe_press_time_ = ros::Time(0);
+    3922             :   }
+    3923             : 
+    3924             :   // if left and right joypads are both pressed down
+    3925           0 :   if (joystick_data->buttons[_channel_L_joy_] == 1 && joystick_data->buttons[_channel_R_joy_] == 1) {
+    3926             : 
+    3927           0 :     if (!joystick_eland_pressed_) {
+    3928             : 
+    3929           0 :       ROS_INFO("[ControlManager]: joystick eland pressed");
+    3930             : 
+    3931           0 :       joystick_eland_pressed_    = true;
+    3932           0 :       joystick_eland_press_time_ = ros::Time::now();
+    3933             :     }
+    3934             : 
+    3935           0 :   } else if (joystick_eland_pressed_) {
+    3936             : 
+    3937           0 :     ROS_INFO("[ControlManager]: joystick eland released");
+    3938             : 
+    3939           0 :     joystick_eland_pressed_    = false;
+    3940           0 :     joystick_eland_press_time_ = ros::Time(0);
+    3941             :   }
+    3942             : }
+    3943             : 
+    3944             : //}
+    3945             : 
+    3946             : /* //{ callbackHwApiStatus() */
+    3947             : 
+    3948      383079 : void ControlManager::callbackHwApiStatus(const mrs_msgs::HwApiStatus::ConstPtr msg) {
+    3949             : 
+    3950      383079 :   if (!is_initialized_)
+    3951         378 :     return;
+    3952             : 
+    3953     1148103 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackHwApiStatus");
+    3954     1148103 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackHwApiStatus", scope_timer_logger_, scope_timer_enabled_);
+    3955             : 
+    3956      765402 :   mrs_msgs::HwApiStatusConstPtr state = msg;
+    3957             : 
+    3958             :   // | ------ detect and print the changes in offboard mode ----- |
+    3959      382701 :   if (state->offboard) {
+    3960             : 
+    3961      266277 :     if (!offboard_mode_) {
+    3962          85 :       offboard_mode_          = true;
+    3963          85 :       offboard_mode_was_true_ = true;
+    3964          85 :       ROS_INFO("[ControlManager]: detected: OFFBOARD mode ON");
+    3965             :     }
+    3966             : 
+    3967             :   } else {
+    3968             : 
+    3969      116424 :     if (offboard_mode_) {
+    3970           0 :       offboard_mode_ = false;
+    3971           0 :       ROS_INFO("[ControlManager]: detected: OFFBOARD mode OFF");
+    3972             :     }
+    3973             :   }
+    3974             : 
+    3975             :   // | --------- detect and print the changes in arming --------- |
+    3976      382701 :   if (state->armed == true) {
+    3977             : 
+    3978      278815 :     if (!armed_) {
+    3979          90 :       armed_ = true;
+    3980          90 :       ROS_INFO("[ControlManager]: detected: vehicle ARMED");
+    3981             :     }
+    3982             : 
+    3983             :   } else {
+    3984             : 
+    3985      103886 :     if (armed_) {
+    3986          20 :       armed_ = false;
+    3987          20 :       ROS_INFO("[ControlManager]: detected: vehicle DISARMED");
+    3988             :     }
+    3989             :   }
+    3990             : }
+    3991             : 
+    3992             : //}
+    3993             : 
+    3994             : /* //{ callbackRC() */
+    3995             : 
+    3996       21018 : void ControlManager::callbackRC(const mrs_msgs::HwApiRcChannels::ConstPtr msg) {
+    3997             : 
+    3998       21018 :   if (!is_initialized_)
+    3999           0 :     return;
+    4000             : 
+    4001       63054 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackRC");
+    4002       63054 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackRC", scope_timer_logger_, scope_timer_enabled_);
+    4003             : 
+    4004       42036 :   mrs_msgs::HwApiRcChannelsConstPtr rc = msg;
+    4005             : 
+    4006       21018 :   ROS_INFO_ONCE("[ControlManager]: getting RC channels");
+    4007             : 
+    4008             :   // | ------------------- rc joystic control ------------------- |
+    4009             : 
+    4010             :   // when the switch change its position
+    4011       21018 :   if (_rc_goto_enabled_) {
+    4012             : 
+    4013       21018 :     if (_rc_joystick_channel_ >= int(rc->channels.size())) {
+    4014             : 
+    4015           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: RC joystick activation channel number (%d) is out of range [0-%d]", _rc_joystick_channel_,
+    4016             :                          int(rc->channels.size()));
+    4017             : 
+    4018             :     } else {
+    4019             : 
+    4020       21018 :       bool channel_low  = rc->channels[_rc_joystick_channel_] < (0.5 - RC_DEADBAND) ? true : false;
+    4021       21018 :       bool channel_high = rc->channels[_rc_joystick_channel_] > (0.5 + RC_DEADBAND) ? true : false;
+    4022             : 
+    4023       21018 :       if (channel_low) {
+    4024       19209 :         rc_joystick_channel_was_low_ = true;
+    4025             :       }
+    4026             : 
+    4027             :       // rc control activation
+    4028       21018 :       if (!rc_goto_active_) {
+    4029             : 
+    4030       19210 :         if (rc_joystick_channel_last_value_ < (0.5 - RC_DEADBAND) && channel_high) {
+    4031             : 
+    4032           2 :           if (isFlyingNormally()) {
+    4033             : 
+    4034           2 :             ROS_INFO_THROTTLE(1.0, "[ControlManager]: activating RC joystick");
+    4035             : 
+    4036           2 :             callbacks_enabled_ = false;
+    4037             : 
+    4038           2 :             std_srvs::SetBoolRequest req_goto_out;
+    4039           2 :             req_goto_out.data = false;
+    4040             : 
+    4041           2 :             std_srvs::SetBoolRequest req_enable_callbacks;
+    4042           2 :             req_enable_callbacks.data = callbacks_enabled_;
+    4043             : 
+    4044             :             {
+    4045           4 :               std::scoped_lock lock(mutex_tracker_list_);
+    4046             : 
+    4047             :               // disable callbacks of all trackers
+    4048          14 :               for (int i = 0; i < int(tracker_list_.size()); i++) {
+    4049          12 :                 tracker_list_[i]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    4050             :               }
+    4051             :             }
+    4052             : 
+    4053           2 :             rc_goto_active_ = true;
+    4054             : 
+    4055             :           } else {
+    4056             : 
+    4057           0 :             ROS_WARN_THROTTLE(1.0, "[ControlManager]: can not activate RC joystick, not flying normally");
+    4058           2 :           }
+    4059             : 
+    4060       19208 :         } else if (channel_high && !rc_joystick_channel_was_low_) {
+    4061             : 
+    4062           0 :           ROS_WARN_THROTTLE(1.0, "[ControlManager]: can not activate RC joystick, the switch is ON from the beginning");
+    4063             :         }
+    4064             :       }
+    4065             : 
+    4066             :       // rc control deactivation
+    4067       21018 :       if (rc_goto_active_ && channel_low) {
+    4068             : 
+    4069           1 :         ROS_INFO("[ControlManager]: deactivating RC joystick");
+    4070             : 
+    4071           1 :         callbacks_enabled_ = true;
+    4072             : 
+    4073           1 :         std_srvs::SetBoolRequest req_goto_out;
+    4074           1 :         req_goto_out.data = true;
+    4075             : 
+    4076           1 :         std_srvs::SetBoolRequest req_enable_callbacks;
+    4077           1 :         req_enable_callbacks.data = callbacks_enabled_;
+    4078             : 
+    4079             :         {
+    4080           2 :           std::scoped_lock lock(mutex_tracker_list_);
+    4081             : 
+    4082             :           // enable callbacks of all trackers
+    4083           7 :           for (int i = 0; i < int(tracker_list_.size()); i++) {
+    4084           6 :             tracker_list_[i]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    4085             :           }
+    4086             :         }
+    4087             : 
+    4088           1 :         rc_goto_active_ = false;
+    4089             :       }
+    4090             : 
+    4091             :       // do not forget to update the last... variable
+    4092             :       // only do that if its out of the deadband
+    4093       21018 :       if (channel_high || channel_low) {
+    4094       21018 :         rc_joystick_channel_last_value_ = rc->channels[_rc_joystick_channel_];
+    4095             :       }
+    4096             :     }
+    4097             :   }
+    4098             : 
+    4099             :   // | ------------------------ rc eland ------------------------ |
+    4100       21018 :   if (_rc_escalating_failsafe_enabled_) {
+    4101             : 
+    4102       21018 :     if (_rc_escalating_failsafe_channel_ >= int(rc->channels.size())) {
+    4103             : 
+    4104           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: RC eland channel number (%d) is out of range [0-%d]", _rc_escalating_failsafe_channel_,
+    4105             :                          int(rc->channels.size()));
+    4106             : 
+    4107             :     } else {
+    4108             : 
+    4109       21018 :       if (rc->channels[_rc_escalating_failsafe_channel_] >= _rc_escalating_failsafe_threshold_) {
+    4110             : 
+    4111         138 :         ROS_WARN_THROTTLE(1.0, "[ControlManager]: triggering escalating failsafe by RC");
+    4112             : 
+    4113         276 :         auto [success, message] = escalatingFailsafe();
+    4114             : 
+    4115         138 :         if (success) {
+    4116           3 :           rc_escalating_failsafe_triggered_ = true;
+    4117             :         }
+    4118             :       }
+    4119             :     }
+    4120             :   }
+    4121             : }
+    4122             : 
+    4123             : //}
+    4124             : 
+    4125             : // | --------------------- topic timeouts --------------------- |
+    4126             : 
+    4127             : /* timeoutUavState() //{ */
+    4128             : 
+    4129           0 : void ControlManager::timeoutUavState(const double& missing_for) {
+    4130             : 
+    4131           0 :   auto last_control_output = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    4132             : 
+    4133           0 :   if (output_enabled_ && last_control_output.control_output && !failsafe_triggered_) {
+    4134             : 
+    4135             :     // We need to fire up timerFailsafe, which will regularly trigger the controllers
+    4136             :     // in place of the callbackUavState/callbackOdometry().
+    4137             : 
+    4138           0 :     ROS_ERROR_THROTTLE(0.1, "[ControlManager]: not receiving uav_state/odometry for %.3f s, initiating failsafe land", missing_for);
+    4139             : 
+    4140           0 :     failsafe();
+    4141             :   }
+    4142           0 : }
+    4143             : 
+    4144             : //}
+    4145             : 
+    4146             : // | -------------------- service callbacks ------------------- |
+    4147             : 
+    4148             : /* //{ callbackSwitchTracker() */
+    4149             : 
+    4150         178 : bool ControlManager::callbackSwitchTracker(mrs_msgs::String::Request& req, mrs_msgs::String::Response& res) {
+    4151             : 
+    4152         178 :   if (!is_initialized_)
+    4153           0 :     return false;
+    4154             : 
+    4155         178 :   if (failsafe_triggered_ || eland_triggered_) {
+    4156             : 
+    4157           0 :     std::stringstream ss;
+    4158           0 :     ss << "can not switch tracker, eland or failsafe active";
+    4159             : 
+    4160           0 :     res.message = ss.str();
+    4161           0 :     res.success = false;
+    4162             : 
+    4163           0 :     ROS_WARN_STREAM("[ControlManager]: " << ss.str());
+    4164             : 
+    4165           0 :     return true;
+    4166             :   }
+    4167             : 
+    4168         178 :   auto [success, response] = switchTracker(req.value);
+    4169             : 
+    4170         178 :   res.success = success;
+    4171         178 :   res.message = response;
+    4172             : 
+    4173         178 :   return true;
+    4174             : }
+    4175             : 
+    4176             : //}
+    4177             : 
+    4178             : /* callbackSwitchController() //{ */
+    4179             : 
+    4180         177 : bool ControlManager::callbackSwitchController(mrs_msgs::String::Request& req, mrs_msgs::String::Response& res) {
+    4181             : 
+    4182         177 :   if (!is_initialized_)
+    4183           0 :     return false;
+    4184             : 
+    4185         177 :   if (failsafe_triggered_ || eland_triggered_) {
+    4186             : 
+    4187           0 :     std::stringstream ss;
+    4188           0 :     ss << "can not switch controller, eland or failsafe active";
+    4189             : 
+    4190           0 :     res.message = ss.str();
+    4191           0 :     res.success = false;
+    4192             : 
+    4193           0 :     ROS_WARN_STREAM("[ControlManager]: " << ss.str());
+    4194             : 
+    4195           0 :     return true;
+    4196             :   }
+    4197             : 
+    4198         177 :   auto [success, response] = switchController(req.value);
+    4199             : 
+    4200         177 :   res.success = success;
+    4201         177 :   res.message = response;
+    4202             : 
+    4203         177 :   return true;
+    4204             : }
+    4205             : 
+    4206             : //}
+    4207             : 
+    4208             : /* //{ callbackSwitchTracker() */
+    4209             : 
+    4210           0 : bool ControlManager::callbackTrackerResetStatic([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4211             : 
+    4212           0 :   if (!is_initialized_)
+    4213           0 :     return false;
+    4214             : 
+    4215           0 :   std::stringstream message;
+    4216             : 
+    4217           0 :   if (failsafe_triggered_ || eland_triggered_) {
+    4218             : 
+    4219           0 :     message << "can not reset tracker, eland or failsafe active";
+    4220             : 
+    4221           0 :     res.message = message.str();
+    4222           0 :     res.success = false;
+    4223             : 
+    4224           0 :     ROS_WARN_STREAM("[ControlManager]: " << message.str());
+    4225             : 
+    4226           0 :     return true;
+    4227             :   }
+    4228             : 
+    4229             :   // reactivate the current tracker
+    4230             :   {
+    4231           0 :     std::scoped_lock lock(mutex_tracker_list_);
+    4232             : 
+    4233           0 :     std::string tracker_name = _tracker_names_[active_tracker_idx_];
+    4234             : 
+    4235           0 :     bool succ = tracker_list_[active_tracker_idx_]->resetStatic();
+    4236             : 
+    4237           0 :     if (succ) {
+    4238           0 :       message << "the tracker '" << tracker_name << "' was reset";
+    4239           0 :       ROS_INFO_STREAM("[ControlManager]: " << message.str());
+    4240             :     } else {
+    4241           0 :       message << "the tracker '" << tracker_name << "' reset failed!";
+    4242           0 :       ROS_ERROR_STREAM("[ControlManager]: " << message.str());
+    4243             :     }
+    4244             :   }
+    4245             : 
+    4246           0 :   res.message = message.str();
+    4247           0 :   res.success = true;
+    4248             : 
+    4249           0 :   return true;
+    4250             : }
+    4251             : 
+    4252             : //}
+    4253             : 
+    4254             : /* //{ callbackEHover() */
+    4255             : 
+    4256           2 : bool ControlManager::callbackEHover([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4257             : 
+    4258           2 :   if (!is_initialized_)
+    4259           0 :     return false;
+    4260             : 
+    4261           2 :   if (failsafe_triggered_ || eland_triggered_) {
+    4262             : 
+    4263           0 :     std::stringstream ss;
+    4264           0 :     ss << "can not switch controller, eland or failsafe active";
+    4265             : 
+    4266           0 :     res.message = ss.str();
+    4267           0 :     res.success = false;
+    4268             : 
+    4269           0 :     ROS_WARN_STREAM("[ControlManager]: " << ss.str());
+    4270             : 
+    4271           0 :     return true;
+    4272             :   }
+    4273             : 
+    4274           2 :   ROS_WARN_THROTTLE(1.0, "[ControlManager]: ehover trigger by callback");
+    4275             : 
+    4276           2 :   auto [success, message] = ehover();
+    4277             : 
+    4278           2 :   res.success = success;
+    4279           2 :   res.message = message;
+    4280             : 
+    4281           2 :   return true;
+    4282             : }
+    4283             : 
+    4284             : //}
+    4285             : 
+    4286             : /* callbackFailsafe() //{ */
+    4287             : 
+    4288           4 : bool ControlManager::callbackFailsafe([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4289             : 
+    4290           4 :   if (!is_initialized_)
+    4291           0 :     return false;
+    4292             : 
+    4293           4 :   if (failsafe_triggered_) {
+    4294             : 
+    4295           0 :     std::stringstream ss;
+    4296           0 :     ss << "can not activate failsafe, it is already active";
+    4297             : 
+    4298           0 :     res.message = ss.str();
+    4299           0 :     res.success = false;
+    4300             : 
+    4301           0 :     ROS_INFO_STREAM("[ControlManager]: " << ss.str());
+    4302             : 
+    4303           0 :     return true;
+    4304             :   }
+    4305             : 
+    4306           4 :   ROS_WARN_THROTTLE(1.0, "[ControlManager]: failsafe triggered by callback");
+    4307             : 
+    4308           4 :   auto [success, message] = failsafe();
+    4309             : 
+    4310           4 :   res.success = success;
+    4311           4 :   res.message = message;
+    4312             : 
+    4313           4 :   return true;
+    4314             : }
+    4315             : 
+    4316             : //}
+    4317             : 
+    4318             : /* callbackFailsafeEscalating() //{ */
+    4319             : 
+    4320           7 : bool ControlManager::callbackFailsafeEscalating([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4321             : 
+    4322           7 :   if (!is_initialized_)
+    4323           0 :     return false;
+    4324             : 
+    4325           7 :   if (_service_escalating_failsafe_enabled_) {
+    4326             : 
+    4327           7 :     ROS_WARN_THROTTLE(1.0, "[ControlManager]: escalating failsafe triggered by callback");
+    4328             : 
+    4329          14 :     auto [success, message] = escalatingFailsafe();
+    4330             : 
+    4331           7 :     res.success = success;
+    4332           7 :     res.message = message;
+    4333             : 
+    4334             :   } else {
+    4335             : 
+    4336           0 :     std::stringstream ss;
+    4337           0 :     ss << "escalating failsafe is disabled";
+    4338             : 
+    4339           0 :     res.success = false;
+    4340           0 :     res.message = ss.str();
+    4341             : 
+    4342           0 :     ROS_WARN_THROTTLE(1.0, "[ControlManager]: %s", ss.str().c_str());
+    4343             :   }
+    4344             : 
+    4345           7 :   return true;
+    4346             : }
+    4347             : 
+    4348             : //}
+    4349             : 
+    4350             : /* //{ callbackELand() */
+    4351             : 
+    4352           2 : bool ControlManager::callbackEland([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4353             : 
+    4354           2 :   if (!is_initialized_)
+    4355           0 :     return false;
+    4356             : 
+    4357           2 :   ROS_WARN_THROTTLE(1.0, "[ControlManager]: eland triggered by callback");
+    4358             : 
+    4359           2 :   auto [success, message] = eland();
+    4360             : 
+    4361           2 :   res.success = success;
+    4362           2 :   res.message = message;
+    4363             : 
+    4364           2 :   return true;
+    4365             : }
+    4366             : 
+    4367             : //}
+    4368             : 
+    4369             : /* //{ callbackParachute() */
+    4370             : 
+    4371           0 : bool ControlManager::callbackParachute([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4372             : 
+    4373           0 :   if (!is_initialized_)
+    4374           0 :     return false;
+    4375             : 
+    4376           0 :   if (!_parachute_enabled_) {
+    4377             : 
+    4378           0 :     std::stringstream ss;
+    4379           0 :     ss << "parachute disabled";
+    4380           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    4381           0 :     res.message = ss.str();
+    4382           0 :     res.success = false;
+    4383             :   }
+    4384             : 
+    4385           0 :   ROS_WARN_THROTTLE(1.0, "[ControlManager]: parachute triggered by callback");
+    4386             : 
+    4387           0 :   auto [success, message] = deployParachute();
+    4388             : 
+    4389           0 :   res.success = success;
+    4390           0 :   res.message = message;
+    4391             : 
+    4392           0 :   return true;
+    4393             : }
+    4394             : 
+    4395             : //}
+    4396             : 
+    4397             : /* //{ callbackSetMinZ() */
+    4398             : 
+    4399           0 : bool ControlManager::callbackSetMinZ([[maybe_unused]] mrs_msgs::Float64StampedSrv::Request& req, mrs_msgs::Float64StampedSrv::Response& res) {
+    4400             : 
+    4401           0 :   if (!is_initialized_)
+    4402           0 :     return false;
+    4403             : 
+    4404           0 :   if (!use_safety_area_) {
+    4405           0 :     res.success = true;
+    4406           0 :     res.message = "safety area is disabled";
+    4407           0 :     return true;
+    4408             :   }
+    4409             : 
+    4410             :   // | -------- transform min_z to the safety area frame -------- |
+    4411             : 
+    4412           0 :   mrs_msgs::ReferenceStamped point;
+    4413           0 :   point.header               = req.header;
+    4414           0 :   point.reference.position.z = req.value;
+    4415             : 
+    4416           0 :   auto result = transformer_->transformSingle(point, _safety_area_vertical_frame_);
+    4417             : 
+    4418           0 :   if (result) {
+    4419             : 
+    4420           0 :     _safety_area_min_z_ = result.value().reference.position.z;
+    4421             : 
+    4422           0 :     res.success = true;
+    4423           0 :     res.message = "safety area's min z updated";
+    4424             : 
+    4425             :   } else {
+    4426             : 
+    4427           0 :     res.success = false;
+    4428           0 :     res.message = "could not transform the value to safety area's vertical frame";
+    4429             :   }
+    4430             : 
+    4431           0 :   return true;
+    4432             : }
+    4433             : 
+    4434             : //}
+    4435             : 
+    4436             : /* //{ callbackToggleOutput() */
+    4437             : 
+    4438          93 : bool ControlManager::callbackToggleOutput(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res) {
+    4439             : 
+    4440          93 :   if (!is_initialized_)
+    4441           0 :     return false;
+    4442             : 
+    4443          93 :   ROS_INFO("[ControlManager]: toggling output by service");
+    4444             : 
+    4445             :   // copy member variables
+    4446         186 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    4447             : 
+    4448         186 :   std::stringstream ss;
+    4449             : 
+    4450          93 :   bool prereq_check = true;
+    4451             : 
+    4452             :   {
+    4453         186 :     mrs_msgs::ReferenceStamped current_coord;
+    4454          93 :     current_coord.header.frame_id      = uav_state.header.frame_id;
+    4455          93 :     current_coord.reference.position.x = uav_state.pose.position.x;
+    4456          93 :     current_coord.reference.position.y = uav_state.pose.position.y;
+    4457             : 
+    4458          93 :     if (!isPointInSafetyArea2d(current_coord)) {
+    4459           1 :       ss << "cannot toggle output, the UAV is outside of the safety area!";
+    4460           1 :       prereq_check = false;
+    4461             :     }
+    4462             :   }
+    4463             : 
+    4464          93 :   if (req.data && (failsafe_triggered_ || eland_triggered_ || rc_escalating_failsafe_triggered_)) {
+    4465           0 :     ss << "cannot toggle output ON, we landed in emergency";
+    4466           0 :     prereq_check = false;
+    4467             :   }
+    4468             : 
+    4469          93 :   if (!sh_hw_api_status_.hasMsg() || (ros::Time::now() - sh_hw_api_status_.lastMsgTime()).toSec() > 1.0) {
+    4470           0 :     ss << "cannot toggle output ON, missing HW API status!";
+    4471           0 :     prereq_check = false;
+    4472             :   }
+    4473             : 
+    4474          93 :   if (!prereq_check) {
+    4475             : 
+    4476           1 :     res.message = ss.str();
+    4477           1 :     res.success = false;
+    4478             : 
+    4479           1 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    4480             : 
+    4481           1 :     return false;
+    4482             : 
+    4483             :   } else {
+    4484             : 
+    4485          92 :     toggleOutput(req.data);
+    4486             : 
+    4487          92 :     ss << "Output: " << (output_enabled_ ? "ON" : "OFF");
+    4488          92 :     res.message = ss.str();
+    4489          92 :     res.success = true;
+    4490             : 
+    4491          92 :     ROS_INFO_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    4492             : 
+    4493          92 :     publishDiagnostics();
+    4494             : 
+    4495          92 :     return true;
+    4496             :   }
+    4497             : }
+    4498             : 
+    4499             : //}
+    4500             : 
+    4501             : /* callbackArm() //{ */
+    4502             : 
+    4503           7 : bool ControlManager::callbackArm(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res) {
+    4504             : 
+    4505           7 :   if (!is_initialized_)
+    4506           0 :     return false;
+    4507             : 
+    4508           7 :   ROS_INFO("[ControlManager]: arming by service");
+    4509             : 
+    4510          14 :   std::stringstream ss;
+    4511             : 
+    4512           7 :   if (failsafe_triggered_ || eland_triggered_) {
+    4513             : 
+    4514           0 :     ss << "can not " << (req.data ? "arm" : "disarm") << ", eland or failsafe active";
+    4515             : 
+    4516           0 :     res.message = ss.str();
+    4517           0 :     res.success = false;
+    4518             : 
+    4519           0 :     ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    4520             : 
+    4521           0 :     return true;
+    4522             :   }
+    4523             : 
+    4524           7 :   if (req.data) {
+    4525             : 
+    4526           0 :     ss << "this service is not allowed to arm the UAV";
+    4527           0 :     res.success = false;
+    4528           0 :     ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    4529             : 
+    4530             :   } else {
+    4531             : 
+    4532          14 :     auto [success, message] = arming(false);
+    4533             : 
+    4534           7 :     if (success) {
+    4535             : 
+    4536           7 :       ss << "disarmed";
+    4537           7 :       res.success = true;
+    4538           7 :       ROS_INFO_STREAM("[ControlManager]: " << ss.str());
+    4539             : 
+    4540             :     } else {
+    4541             : 
+    4542           0 :       ss << "could not disarm: " << message;
+    4543           0 :       res.success = false;
+    4544           0 :       ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    4545             :     }
+    4546             :   }
+    4547             : 
+    4548           7 :   res.message = ss.str();
+    4549             : 
+    4550           7 :   return true;
+    4551             : }
+    4552             : 
+    4553             : //}
+    4554             : 
+    4555             : /* //{ callbackEnableCallbacks() */
+    4556             : 
+    4557          94 : bool ControlManager::callbackEnableCallbacks(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res) {
+    4558             : 
+    4559          94 :   if (!is_initialized_)
+    4560           0 :     return false;
+    4561             : 
+    4562          94 :   setCallbacks(req.data);
+    4563             : 
+    4564          94 :   std::stringstream ss;
+    4565             : 
+    4566          94 :   ss << "callbacks " << (callbacks_enabled_ ? "enabled" : "disabled");
+    4567             : 
+    4568          94 :   res.message = ss.str();
+    4569          94 :   res.success = true;
+    4570             : 
+    4571          94 :   ROS_INFO_STREAM("[ControlManager]: " << ss.str());
+    4572             : 
+    4573          94 :   return true;
+    4574             : }
+    4575             : 
+    4576             : //}
+    4577             : 
+    4578             : /* callbackSetConstraints() //{ */
+    4579             : 
+    4580          94 : bool ControlManager::callbackSetConstraints(mrs_msgs::DynamicsConstraintsSrv::Request& req, mrs_msgs::DynamicsConstraintsSrv::Response& res) {
+    4581             : 
+    4582          94 :   if (!is_initialized_) {
+    4583           0 :     res.message = "not initialized";
+    4584           0 :     res.success = false;
+    4585           0 :     return true;
+    4586             :   }
+    4587             : 
+    4588             :   {
+    4589         188 :     std::scoped_lock lock(mutex_constraints_);
+    4590             : 
+    4591          94 :     current_constraints_ = req;
+    4592             : 
+    4593          94 :     auto enforced = enforceControllersConstraints(current_constraints_);
+    4594             : 
+    4595          94 :     if (enforced) {
+    4596           0 :       sanitized_constraints_      = enforced.value();
+    4597           0 :       constraints_being_enforced_ = true;
+    4598             :     } else {
+    4599          94 :       sanitized_constraints_      = req;
+    4600          94 :       constraints_being_enforced_ = false;
+    4601             :     }
+    4602             : 
+    4603          94 :     got_constraints_ = true;
+    4604             : 
+    4605          94 :     setConstraintsToControllers(current_constraints_);
+    4606          94 :     setConstraintsToTrackers(sanitized_constraints_);
+    4607             :   }
+    4608             : 
+    4609          94 :   res.message = "setting constraints";
+    4610          94 :   res.success = true;
+    4611             : 
+    4612          94 :   return true;
+    4613             : }
+    4614             : 
+    4615             : //}
+    4616             : 
+    4617             : /* //{ callbackEmergencyReference() */
+    4618             : 
+    4619          93 : bool ControlManager::callbackEmergencyReference(mrs_msgs::ReferenceStampedSrv::Request& req, mrs_msgs::ReferenceStampedSrv::Response& res) {
+    4620             : 
+    4621          93 :   if (!is_initialized_)
+    4622           0 :     return false;
+    4623             : 
+    4624         186 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    4625             : 
+    4626          93 :   callbacks_enabled_ = false;
+    4627             : 
+    4628          93 :   mrs_msgs::ReferenceSrvResponse::ConstPtr tracker_response;
+    4629             : 
+    4630         186 :   std::stringstream ss;
+    4631             : 
+    4632             :   // transform the reference to the current frame
+    4633         186 :   mrs_msgs::ReferenceStamped original_reference;
+    4634          93 :   original_reference.header    = req.header;
+    4635          93 :   original_reference.reference = req.reference;
+    4636             : 
+    4637         186 :   auto ret = transformer_->transformSingle(original_reference, uav_state.header.frame_id);
+    4638             : 
+    4639          93 :   if (!ret) {
+    4640             : 
+    4641           0 :     ss << "the emergency reference could not be transformed";
+    4642             : 
+    4643           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    4644           0 :     res.message = ss.str();
+    4645           0 :     res.success = false;
+    4646           0 :     return true;
+    4647             :   }
+    4648             : 
+    4649          93 :   mrs_msgs::ReferenceStamped transformed_reference = ret.value();
+    4650             : 
+    4651          93 :   std_srvs::SetBoolRequest req_enable_callbacks;
+    4652             : 
+    4653          93 :   mrs_msgs::ReferenceSrvRequest req_goto_out;
+    4654          93 :   req_goto_out.reference = transformed_reference.reference;
+    4655             : 
+    4656             :   {
+    4657         186 :     std::scoped_lock lock(mutex_tracker_list_);
+    4658             : 
+    4659             :     // disable callbacks of all trackers
+    4660          93 :     req_enable_callbacks.data = false;
+    4661         651 :     for (int i = 0; i < int(tracker_list_.size()); i++) {
+    4662         558 :       tracker_list_[i]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    4663             :     }
+    4664             : 
+    4665             :     // enable the callbacks for the active tracker
+    4666          93 :     req_enable_callbacks.data = true;
+    4667          93 :     tracker_list_[active_tracker_idx_]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    4668             : 
+    4669             :     // call the setReference()
+    4670         279 :     tracker_response = tracker_list_[active_tracker_idx_]->setReference(
+    4671         279 :         mrs_msgs::ReferenceSrvRequest::ConstPtr(std::make_unique<mrs_msgs::ReferenceSrvRequest>(req_goto_out)));
+    4672             : 
+    4673             :     // disable the callbacks back again
+    4674          93 :     req_enable_callbacks.data = false;
+    4675          93 :     tracker_list_[active_tracker_idx_]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    4676             : 
+    4677          93 :     if (tracker_response != mrs_msgs::ReferenceSrvResponse::Ptr()) {
+    4678          93 :       res.message = tracker_response->message;
+    4679          93 :       res.success = tracker_response->success;
+    4680             :     } else {
+    4681           0 :       ss << "the tracker '" << _tracker_names_[active_tracker_idx_] << "' does not implement the 'setReference()' function!";
+    4682           0 :       res.message = ss.str();
+    4683           0 :       res.success = false;
+    4684             :     }
+    4685             :   }
+    4686             : 
+    4687          93 :   return true;
+    4688             : }
+    4689             : 
+    4690             : //}
+    4691             : 
+    4692             : /* callbackPirouette() //{ */
+    4693             : 
+    4694           0 : bool ControlManager::callbackPirouette([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4695             : 
+    4696           0 :   if (!is_initialized_)
+    4697           0 :     return false;
+    4698             : 
+    4699             :   // copy member variables
+    4700           0 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    4701             : 
+    4702             :   double uav_heading;
+    4703             :   try {
+    4704           0 :     uav_heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+    4705             :   }
+    4706           0 :   catch (...) {
+    4707           0 :     std::stringstream ss;
+    4708           0 :     ss << "could not calculate the UAV heading to initialize the pirouette";
+    4709             : 
+    4710           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    4711             : 
+    4712           0 :     res.message = ss.str();
+    4713           0 :     res.success = false;
+    4714             : 
+    4715           0 :     return false;
+    4716             :   }
+    4717             : 
+    4718           0 :   if (_pirouette_enabled_) {
+    4719           0 :     res.success = false;
+    4720           0 :     res.message = "already active";
+    4721           0 :     return true;
+    4722             :   }
+    4723             : 
+    4724           0 :   if (failsafe_triggered_ || eland_triggered_ || rc_escalating_failsafe_triggered_) {
+    4725             : 
+    4726           0 :     std::stringstream ss;
+    4727           0 :     ss << "can not activate the pirouette, eland or failsafe active";
+    4728             : 
+    4729           0 :     res.message = ss.str();
+    4730           0 :     res.success = false;
+    4731             : 
+    4732           0 :     ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    4733             : 
+    4734           0 :     return true;
+    4735             :   }
+    4736             : 
+    4737           0 :   _pirouette_enabled_ = true;
+    4738             : 
+    4739           0 :   setCallbacks(false);
+    4740             : 
+    4741           0 :   pirouette_initial_heading_ = uav_heading;
+    4742           0 :   pirouette_iterator_        = 0;
+    4743           0 :   timer_pirouette_.start();
+    4744             : 
+    4745           0 :   res.success = true;
+    4746           0 :   res.message = "activated";
+    4747             : 
+    4748           0 :   return true;
+    4749             : }
+    4750             : 
+    4751             : //}
+    4752             : 
+    4753             : /* callbackUseJoystick() //{ */
+    4754             : 
+    4755           0 : bool ControlManager::callbackUseJoystick([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4756             : 
+    4757           0 :   if (!is_initialized_) {
+    4758           0 :     return false;
+    4759             :   }
+    4760             : 
+    4761           0 :   std::stringstream ss;
+    4762             : 
+    4763             :   {
+    4764           0 :     auto [success, response] = switchTracker(_joystick_tracker_name_);
+    4765             : 
+    4766           0 :     if (!success) {
+    4767             : 
+    4768           0 :       ss << "switching to '" << _joystick_tracker_name_ << "' was unsuccessfull: '" << response << "'";
+    4769           0 :       ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    4770             : 
+    4771           0 :       res.success = false;
+    4772           0 :       res.message = ss.str();
+    4773             : 
+    4774           0 :       return true;
+    4775             :     }
+    4776             :   }
+    4777             : 
+    4778           0 :   auto [success, response] = switchController(_joystick_controller_name_);
+    4779             : 
+    4780           0 :   if (!success) {
+    4781             : 
+    4782           0 :     ss << "switching to '" << _joystick_controller_name_ << "' was unsuccessfull: '" << response << "'";
+    4783           0 :     ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    4784             : 
+    4785           0 :     res.success = false;
+    4786           0 :     res.message = ss.str();
+    4787             : 
+    4788             :     // switch back to hover tracker
+    4789           0 :     switchTracker(_ehover_tracker_name_);
+    4790             : 
+    4791             :     // switch back to safety controller
+    4792           0 :     switchController(_eland_controller_name_);
+    4793             : 
+    4794           0 :     ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    4795             : 
+    4796           0 :     return true;
+    4797             :   }
+    4798             : 
+    4799           0 :   ss << "switched to joystick control";
+    4800             : 
+    4801           0 :   res.success = true;
+    4802           0 :   res.message = ss.str();
+    4803             : 
+    4804           0 :   ROS_INFO_STREAM("[ControlManager]: " << ss.str());
+    4805             : 
+    4806           0 :   return true;
+    4807             : }
+    4808             : 
+    4809             : //}
+    4810             : 
+    4811             : /* //{ callbackHover() */
+    4812             : 
+    4813           0 : bool ControlManager::callbackHover([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4814             : 
+    4815           0 :   if (!is_initialized_)
+    4816           0 :     return false;
+    4817             : 
+    4818           0 :   auto [success, message] = hover();
+    4819             : 
+    4820           0 :   res.success = success;
+    4821           0 :   res.message = message;
+    4822             : 
+    4823           0 :   return true;
+    4824             : }
+    4825             : 
+    4826             : //}
+    4827             : 
+    4828             : /* //{ callbackStartTrajectoryTracking() */
+    4829             : 
+    4830           1 : bool ControlManager::callbackStartTrajectoryTracking([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4831             : 
+    4832           1 :   if (!is_initialized_)
+    4833           0 :     return false;
+    4834             : 
+    4835           1 :   auto [success, message] = startTrajectoryTracking();
+    4836             : 
+    4837           1 :   res.success = success;
+    4838           1 :   res.message = message;
+    4839             : 
+    4840           1 :   return true;
+    4841             : }
+    4842             : 
+    4843             : //}
+    4844             : 
+    4845             : /* //{ callbackStopTrajectoryTracking() */
+    4846             : 
+    4847           0 : bool ControlManager::callbackStopTrajectoryTracking([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4848             : 
+    4849           0 :   if (!is_initialized_)
+    4850           0 :     return false;
+    4851             : 
+    4852           0 :   auto [success, message] = stopTrajectoryTracking();
+    4853             : 
+    4854           0 :   res.success = success;
+    4855           0 :   res.message = message;
+    4856             : 
+    4857           0 :   return true;
+    4858             : }
+    4859             : 
+    4860             : //}
+    4861             : 
+    4862             : /* //{ callbackResumeTrajectoryTracking() */
+    4863             : 
+    4864           0 : bool ControlManager::callbackResumeTrajectoryTracking([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4865             : 
+    4866           0 :   if (!is_initialized_)
+    4867           0 :     return false;
+    4868             : 
+    4869           0 :   auto [success, message] = resumeTrajectoryTracking();
+    4870             : 
+    4871           0 :   res.success = success;
+    4872           0 :   res.message = message;
+    4873             : 
+    4874           0 :   return true;
+    4875             : }
+    4876             : 
+    4877             : //}
+    4878             : 
+    4879             : /* //{ callbackGotoTrajectoryStart() */
+    4880             : 
+    4881           1 : bool ControlManager::callbackGotoTrajectoryStart([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    4882             : 
+    4883           1 :   if (!is_initialized_)
+    4884           0 :     return false;
+    4885             : 
+    4886           1 :   auto [success, message] = gotoTrajectoryStart();
+    4887             : 
+    4888           1 :   res.success = success;
+    4889           1 :   res.message = message;
+    4890             : 
+    4891           1 :   return true;
+    4892             : }
+    4893             : 
+    4894             : //}
+    4895             : 
+    4896             : /* //{ callbackTransformReference() */
+    4897             : 
+    4898           0 : bool ControlManager::callbackTransformReference(mrs_msgs::TransformReferenceSrv::Request& req, mrs_msgs::TransformReferenceSrv::Response& res) {
+    4899             : 
+    4900           0 :   if (!is_initialized_)
+    4901           0 :     return false;
+    4902             : 
+    4903             :   // transform the reference to the current frame
+    4904           0 :   mrs_msgs::ReferenceStamped transformed_reference = req.reference;
+    4905             : 
+    4906           0 :   if (auto ret = transformer_->transformSingle(transformed_reference, req.frame_id)) {
+    4907             : 
+    4908           0 :     res.reference = ret.value();
+    4909           0 :     res.message   = "transformation successful";
+    4910           0 :     res.success   = true;
+    4911           0 :     return true;
+    4912             : 
+    4913             :   } else {
+    4914             : 
+    4915           0 :     res.message = "the reference could not be transformed";
+    4916           0 :     res.success = false;
+    4917           0 :     return true;
+    4918             :   }
+    4919             : 
+    4920             :   return true;
+    4921             : }
+    4922             : 
+    4923             : //}
+    4924             : 
+    4925             : /* //{ callbackTransformPose() */
+    4926             : 
+    4927           0 : bool ControlManager::callbackTransformPose(mrs_msgs::TransformPoseSrv::Request& req, mrs_msgs::TransformPoseSrv::Response& res) {
+    4928             : 
+    4929           0 :   if (!is_initialized_)
+    4930           0 :     return false;
+    4931             : 
+    4932             :   // transform the reference to the current frame
+    4933           0 :   geometry_msgs::PoseStamped transformed_pose = req.pose;
+    4934             : 
+    4935           0 :   if (auto ret = transformer_->transformSingle(transformed_pose, req.frame_id)) {
+    4936             : 
+    4937           0 :     res.pose    = ret.value();
+    4938           0 :     res.message = "transformation successful";
+    4939           0 :     res.success = true;
+    4940           0 :     return true;
+    4941             : 
+    4942             :   } else {
+    4943             : 
+    4944           0 :     res.message = "the pose could not be transformed";
+    4945           0 :     res.success = false;
+    4946           0 :     return true;
+    4947             :   }
+    4948             : 
+    4949             :   return true;
+    4950             : }
+    4951             : 
+    4952             : //}
+    4953             : 
+    4954             : /* //{ callbackTransformVector3() */
+    4955             : 
+    4956           0 : bool ControlManager::callbackTransformVector3(mrs_msgs::TransformVector3Srv::Request& req, mrs_msgs::TransformVector3Srv::Response& res) {
+    4957             : 
+    4958           0 :   if (!is_initialized_)
+    4959           0 :     return false;
+    4960             : 
+    4961             :   // transform the reference to the current frame
+    4962           0 :   geometry_msgs::Vector3Stamped transformed_vector3 = req.vector;
+    4963             : 
+    4964           0 :   if (auto ret = transformer_->transformSingle(transformed_vector3, req.frame_id)) {
+    4965             : 
+    4966           0 :     res.vector  = ret.value();
+    4967           0 :     res.message = "transformation successful";
+    4968           0 :     res.success = true;
+    4969           0 :     return true;
+    4970             : 
+    4971             :   } else {
+    4972             : 
+    4973           0 :     res.message = "the twist could not be transformed";
+    4974           0 :     res.success = false;
+    4975           0 :     return true;
+    4976             :   }
+    4977             : 
+    4978             :   return true;
+    4979             : }
+    4980             : 
+    4981             : //}
+    4982             : 
+    4983             : /* //{ callbackEnableBumper() */
+    4984             : 
+    4985           0 : bool ControlManager::callbackEnableBumper(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res) {
+    4986             : 
+    4987           0 :   if (!is_initialized_)
+    4988           0 :     return false;
+    4989             : 
+    4990           0 :   bumper_enabled_ = req.data;
+    4991             : 
+    4992           0 :   std::stringstream ss;
+    4993             : 
+    4994           0 :   ss << "bumper " << (bumper_enabled_ ? "enalbed" : "disabled");
+    4995             : 
+    4996           0 :   ROS_INFO_STREAM("[ControlManager]: " << ss.str());
+    4997             : 
+    4998           0 :   res.success = true;
+    4999           0 :   res.message = ss.str();
+    5000             : 
+    5001           0 :   return true;
+    5002             : }
+    5003             : 
+    5004             : //}
+    5005             : 
+    5006             : /* //{ callbackUseSafetyArea() */
+    5007             : 
+    5008           0 : bool ControlManager::callbackUseSafetyArea(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res) {
+    5009             : 
+    5010           0 :   if (!is_initialized_)
+    5011           0 :     return false;
+    5012             : 
+    5013           0 :   use_safety_area_ = req.data;
+    5014             : 
+    5015           0 :   std::stringstream ss;
+    5016             : 
+    5017           0 :   ss << "safety area " << (use_safety_area_ ? "enabled" : "disabled");
+    5018             : 
+    5019           0 :   ROS_INFO_STREAM("[ControlManager]: " << ss.str());
+    5020             : 
+    5021           0 :   res.success = true;
+    5022           0 :   res.message = ss.str();
+    5023             : 
+    5024           0 :   return true;
+    5025             : }
+    5026             : 
+    5027             : //}
+    5028             : 
+    5029             : /* //{ callbackGetMinZ() */
+    5030             : 
+    5031           0 : bool ControlManager::callbackGetMinZ([[maybe_unused]] mrs_msgs::GetFloat64::Request& req, mrs_msgs::GetFloat64::Response& res) {
+    5032             : 
+    5033           0 :   if (!is_initialized_) {
+    5034           0 :     return false;
+    5035             :   }
+    5036             : 
+    5037           0 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    5038             : 
+    5039           0 :   res.success = true;
+    5040           0 :   res.value   = getMinZ(uav_state.header.frame_id);
+    5041             : 
+    5042           0 :   return true;
+    5043             : }
+    5044             : 
+    5045             : //}
+    5046             : 
+    5047             : /* //{ callbackValidateReference() */
+    5048             : 
+    5049           0 : bool ControlManager::callbackValidateReference(mrs_msgs::ValidateReference::Request& req, mrs_msgs::ValidateReference::Response& res) {
+    5050             : 
+    5051           0 :   if (!is_initialized_) {
+    5052           0 :     res.message = "not initialized";
+    5053           0 :     res.success = false;
+    5054           0 :     return true;
+    5055             :   }
+    5056             : 
+    5057           0 :   if (!validateReference(req.reference.reference, "ControlManager", "reference_for_validation")) {
+    5058           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: NaN detected in variable 'req.reference'!!!");
+    5059           0 :     res.message = "NaNs/infs in input!";
+    5060           0 :     res.success = false;
+    5061           0 :     return true;
+    5062             :   }
+    5063             : 
+    5064             :   // copy member variables
+    5065           0 :   auto uav_state        = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    5066           0 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    5067             : 
+    5068             :   // transform the reference to the current frame
+    5069           0 :   mrs_msgs::ReferenceStamped original_reference;
+    5070           0 :   original_reference.header    = req.reference.header;
+    5071           0 :   original_reference.reference = req.reference.reference;
+    5072             : 
+    5073           0 :   auto ret = transformer_->transformSingle(original_reference, uav_state.header.frame_id);
+    5074             : 
+    5075           0 :   if (!ret) {
+    5076             : 
+    5077           0 :     ROS_WARN_THROTTLE(1.0, "[ControlManager]: the reference could not be transformed");
+    5078           0 :     res.message = "the reference could not be transformed";
+    5079           0 :     res.success = false;
+    5080           0 :     return true;
+    5081             :   }
+    5082             : 
+    5083           0 :   mrs_msgs::ReferenceStamped transformed_reference = ret.value();
+    5084             : 
+    5085           0 :   if (!isPointInSafetyArea3d(transformed_reference)) {
+    5086           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: reference validation failed, the point is outside of the safety area!");
+    5087           0 :     res.message = "the point is outside of the safety area";
+    5088           0 :     res.success = false;
+    5089           0 :     return true;
+    5090             :   }
+    5091             : 
+    5092           0 :   if (last_tracker_cmd) {
+    5093             : 
+    5094           0 :     mrs_msgs::ReferenceStamped from_point;
+    5095           0 :     from_point.header.frame_id      = uav_state.header.frame_id;
+    5096           0 :     from_point.reference.position.x = last_tracker_cmd->position.x;
+    5097           0 :     from_point.reference.position.y = last_tracker_cmd->position.y;
+    5098           0 :     from_point.reference.position.z = last_tracker_cmd->position.z;
+    5099             : 
+    5100           0 :     if (!isPathToPointInSafetyArea3d(from_point, transformed_reference)) {
+    5101           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: reference validation failed, the path is going outside the safety area!");
+    5102           0 :       res.message = "the path is going outside the safety area";
+    5103           0 :       res.success = false;
+    5104           0 :       return true;
+    5105             :     }
+    5106             :   }
+    5107             : 
+    5108           0 :   res.message = "the reference is ok";
+    5109           0 :   res.success = true;
+    5110           0 :   return true;
+    5111             : }
+    5112             : 
+    5113             : //}
+    5114             : 
+    5115             : /* //{ callbackValidateReference2d() */
+    5116             : 
+    5117        9775 : bool ControlManager::callbackValidateReference2d(mrs_msgs::ValidateReference::Request& req, mrs_msgs::ValidateReference::Response& res) {
+    5118             : 
+    5119        9775 :   if (!is_initialized_) {
+    5120           0 :     res.message = "not initialized";
+    5121           0 :     res.success = false;
+    5122           0 :     return true;
+    5123             :   }
+    5124             : 
+    5125        9775 :   if (!validateReference(req.reference.reference, "ControlManager", "reference_for_validation")) {
+    5126           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: NaN detected in variable 'req.reference'!!!");
+    5127           0 :     res.message = "NaNs/infs in input!";
+    5128           0 :     res.success = false;
+    5129           0 :     return true;
+    5130             :   }
+    5131             : 
+    5132             :   // copy member variables
+    5133       19550 :   auto uav_state        = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    5134       19550 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    5135             : 
+    5136             :   // transform the reference to the current frame
+    5137       19550 :   mrs_msgs::ReferenceStamped original_reference;
+    5138        9775 :   original_reference.header    = req.reference.header;
+    5139        9775 :   original_reference.reference = req.reference.reference;
+    5140             : 
+    5141       19550 :   auto ret = transformer_->transformSingle(original_reference, uav_state.header.frame_id);
+    5142             : 
+    5143        9775 :   if (!ret) {
+    5144             : 
+    5145           0 :     ROS_WARN_THROTTLE(1.0, "[ControlManager]: the reference could not be transformed");
+    5146           0 :     res.message = "the reference could not be transformed";
+    5147           0 :     res.success = false;
+    5148           0 :     return true;
+    5149             :   }
+    5150             : 
+    5151       19550 :   mrs_msgs::ReferenceStamped transformed_reference = ret.value();
+    5152             : 
+    5153        9775 :   if (!isPointInSafetyArea2d(transformed_reference)) {
+    5154          75 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: reference validation failed, the point is outside of the safety area!");
+    5155          75 :     res.message = "the point is outside of the safety area";
+    5156          75 :     res.success = false;
+    5157          75 :     return true;
+    5158             :   }
+    5159             : 
+    5160        9700 :   if (last_tracker_cmd) {
+    5161             : 
+    5162          31 :     mrs_msgs::ReferenceStamped from_point;
+    5163          31 :     from_point.header.frame_id      = uav_state.header.frame_id;
+    5164          31 :     from_point.reference.position.x = last_tracker_cmd->position.x;
+    5165          31 :     from_point.reference.position.y = last_tracker_cmd->position.y;
+    5166          31 :     from_point.reference.position.z = last_tracker_cmd->position.z;
+    5167             : 
+    5168          31 :     if (!isPathToPointInSafetyArea2d(from_point, transformed_reference)) {
+    5169           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: reference validation failed, the path is going outside the safety area!");
+    5170           0 :       res.message = "the path is going outside the safety area";
+    5171           0 :       res.success = false;
+    5172           0 :       return true;
+    5173             :     }
+    5174             :   }
+    5175             : 
+    5176        9700 :   res.message = "the reference is ok";
+    5177        9700 :   res.success = true;
+    5178        9700 :   return true;
+    5179             : }
+    5180             : 
+    5181             : //}
+    5182             : 
+    5183             : /* //{ callbackValidateReferenceList() */
+    5184             : 
+    5185           0 : bool ControlManager::callbackValidateReferenceList(mrs_msgs::ValidateReferenceList::Request& req, mrs_msgs::ValidateReferenceList::Response& res) {
+    5186             : 
+    5187           0 :   if (!is_initialized_) {
+    5188           0 :     res.message = "not initialized";
+    5189           0 :     return false;
+    5190             :   }
+    5191             : 
+    5192             :   // copy member variables
+    5193           0 :   auto uav_state        = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    5194           0 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    5195             : 
+    5196             :   // get the transformer
+    5197           0 :   auto ret = transformer_->getTransform(uav_state.header.frame_id, req.list.header.frame_id, req.list.header.stamp);
+    5198             : 
+    5199           0 :   if (!ret) {
+    5200             : 
+    5201           0 :     ROS_DEBUG("[ControlManager]: could not find transform for the reference");
+    5202           0 :     res.message = "could not find transform";
+    5203           0 :     return false;
+    5204             :   }
+    5205             : 
+    5206           0 :   geometry_msgs::TransformStamped tf = ret.value();
+    5207             : 
+    5208           0 :   for (int i = 0; i < int(req.list.list.size()); i++) {
+    5209             : 
+    5210           0 :     res.success.push_back(true);
+    5211             : 
+    5212           0 :     mrs_msgs::ReferenceStamped original_reference;
+    5213           0 :     original_reference.header    = req.list.header;
+    5214           0 :     original_reference.reference = req.list.list[i];
+    5215             : 
+    5216           0 :     res.success[i] = validateReference(original_reference.reference, "ControlManager", "reference_list");
+    5217             : 
+    5218           0 :     auto ret = transformer_->transformSingle(original_reference, uav_state.header.frame_id);
+    5219             : 
+    5220           0 :     if (!ret) {
+    5221             : 
+    5222           0 :       ROS_DEBUG("[ControlManager]: the reference could not be transformed");
+    5223           0 :       res.success[i] = false;
+    5224             :     }
+    5225             : 
+    5226           0 :     mrs_msgs::ReferenceStamped transformed_reference = ret.value();
+    5227             : 
+    5228           0 :     if (!isPointInSafetyArea3d(transformed_reference)) {
+    5229           0 :       res.success[i] = false;
+    5230             :     }
+    5231             : 
+    5232           0 :     if (last_tracker_cmd) {
+    5233             : 
+    5234           0 :       mrs_msgs::ReferenceStamped from_point;
+    5235           0 :       from_point.header.frame_id      = uav_state.header.frame_id;
+    5236           0 :       from_point.reference.position.x = last_tracker_cmd->position.x;
+    5237           0 :       from_point.reference.position.y = last_tracker_cmd->position.y;
+    5238           0 :       from_point.reference.position.z = last_tracker_cmd->position.z;
+    5239             : 
+    5240           0 :       if (!isPathToPointInSafetyArea3d(from_point, transformed_reference)) {
+    5241           0 :         res.success[i] = false;
+    5242             :       }
+    5243             :     }
+    5244             :   }
+    5245             : 
+    5246           0 :   res.message = "references were checked";
+    5247           0 :   return true;
+    5248             : }
+    5249             : 
+    5250             : //}
+    5251             : 
+    5252             : // | -------------- setpoint topics and services -------------- |
+    5253             : 
+    5254             : /* //{ callbackReferenceService() */
+    5255             : 
+    5256           0 : bool ControlManager::callbackReferenceService(mrs_msgs::ReferenceStampedSrv::Request& req, mrs_msgs::ReferenceStampedSrv::Response& res) {
+    5257             : 
+    5258           0 :   if (!is_initialized_) {
+    5259           0 :     res.message = "not initialized";
+    5260           0 :     res.success = false;
+    5261           0 :     return true;
+    5262             :   }
+    5263             : 
+    5264           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackReferenceService");
+    5265           0 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackReferenceService", scope_timer_logger_, scope_timer_enabled_);
+    5266             : 
+    5267           0 :   mrs_msgs::ReferenceStamped des_reference;
+    5268           0 :   des_reference.header    = req.header;
+    5269           0 :   des_reference.reference = req.reference;
+    5270             : 
+    5271           0 :   auto [success, message] = setReference(des_reference);
+    5272             : 
+    5273           0 :   res.success = success;
+    5274           0 :   res.message = message;
+    5275             : 
+    5276           0 :   return true;
+    5277             : }
+    5278             : 
+    5279             : //}
+    5280             : 
+    5281             : /* //{ callbackReferenceTopic() */
+    5282             : 
+    5283           0 : void ControlManager::callbackReferenceTopic(const mrs_msgs::ReferenceStamped::ConstPtr msg) {
+    5284             : 
+    5285           0 :   if (!is_initialized_)
+    5286           0 :     return;
+    5287             : 
+    5288           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackReferenceTopic");
+    5289           0 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackReferenceTopic", scope_timer_logger_, scope_timer_enabled_);
+    5290             : 
+    5291           0 :   setReference(*msg);
+    5292             : }
+    5293             : 
+    5294             : //}
+    5295             : 
+    5296             : /* //{ callbackVelocityReferenceService() */
+    5297             : 
+    5298         477 : bool ControlManager::callbackVelocityReferenceService(mrs_msgs::VelocityReferenceStampedSrv::Request&  req,
+    5299             :                                                       mrs_msgs::VelocityReferenceStampedSrv::Response& res) {
+    5300             : 
+    5301         477 :   if (!is_initialized_) {
+    5302           0 :     res.message = "not initialized";
+    5303           0 :     res.success = false;
+    5304           0 :     return true;
+    5305             :   }
+    5306             : 
+    5307        1431 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackVelocityReferenceService");
+    5308        1431 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackVelocityReferenceService", scope_timer_logger_, scope_timer_enabled_);
+    5309             : 
+    5310         954 :   mrs_msgs::VelocityReferenceStamped des_reference;
+    5311         477 :   des_reference = req.reference;
+    5312             : 
+    5313         477 :   auto [success, message] = setVelocityReference(des_reference);
+    5314             : 
+    5315         477 :   res.success = success;
+    5316         477 :   res.message = message;
+    5317             : 
+    5318         477 :   return true;
+    5319             : }
+    5320             : 
+    5321             : //}
+    5322             : 
+    5323             : /* //{ callbackVelocityReferenceTopic() */
+    5324             : 
+    5325           0 : void ControlManager::callbackVelocityReferenceTopic(const mrs_msgs::VelocityReferenceStamped::ConstPtr msg) {
+    5326             : 
+    5327           0 :   if (!is_initialized_)
+    5328           0 :     return;
+    5329             : 
+    5330           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackVelocityReferenceTopic");
+    5331           0 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackVelocityReferenceTopic", scope_timer_logger_, scope_timer_enabled_);
+    5332             : 
+    5333           0 :   setVelocityReference(*msg);
+    5334             : }
+    5335             : 
+    5336             : //}
+    5337             : 
+    5338             : /* //{ callbackTrajectoryReferenceService() */
+    5339             : 
+    5340           4 : bool ControlManager::callbackTrajectoryReferenceService(mrs_msgs::TrajectoryReferenceSrv::Request& req, mrs_msgs::TrajectoryReferenceSrv::Response& res) {
+    5341             : 
+    5342           4 :   if (!is_initialized_) {
+    5343           0 :     res.message = "not initialized";
+    5344           0 :     res.success = false;
+    5345           0 :     return true;
+    5346             :   }
+    5347             : 
+    5348          12 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackTrajectoryReferenceService");
+    5349          12 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackTrajectoryReferenceService", scope_timer_logger_, scope_timer_enabled_);
+    5350             : 
+    5351           8 :   auto [success, message, modified, tracker_names, tracker_successes, tracker_messages] = setTrajectoryReference(req.trajectory);
+    5352             : 
+    5353           4 :   res.success          = success;
+    5354           4 :   res.message          = message;
+    5355           4 :   res.modified         = modified;
+    5356           4 :   res.tracker_names    = tracker_names;
+    5357           4 :   res.tracker_messages = tracker_messages;
+    5358             : 
+    5359          28 :   for (size_t i = 0; i < tracker_successes.size(); i++) {
+    5360          24 :     res.tracker_successes.push_back(tracker_successes[i]);
+    5361             :   }
+    5362             : 
+    5363           4 :   return true;
+    5364             : }
+    5365             : 
+    5366             : //}
+    5367             : 
+    5368             : /* //{ callbackTrajectoryReferenceTopic() */
+    5369             : 
+    5370           0 : void ControlManager::callbackTrajectoryReferenceTopic(const mrs_msgs::TrajectoryReference::ConstPtr msg) {
+    5371             : 
+    5372           0 :   if (!is_initialized_)
+    5373           0 :     return;
+    5374             : 
+    5375           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackTrajectoryReferenceTopic");
+    5376           0 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackTrajectoryReferenceTopic", scope_timer_logger_, scope_timer_enabled_);
+    5377             : 
+    5378           0 :   setTrajectoryReference(*msg);
+    5379             : }
+    5380             : 
+    5381             : //}
+    5382             : 
+    5383             : // | ------------- human-callable "goto" services ------------- |
+    5384             : 
+    5385             : /* //{ callbackGoto() */
+    5386             : 
+    5387          26 : bool ControlManager::callbackGoto(mrs_msgs::Vec4::Request& req, mrs_msgs::Vec4::Response& res) {
+    5388             : 
+    5389          26 :   if (!is_initialized_) {
+    5390           0 :     res.message = "not initialized";
+    5391           0 :     res.success = false;
+    5392           0 :     return true;
+    5393             :   }
+    5394             : 
+    5395          78 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackGoto");
+    5396          78 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackGoto", scope_timer_logger_, scope_timer_enabled_);
+    5397             : 
+    5398          52 :   mrs_msgs::ReferenceStamped des_reference;
+    5399          26 :   des_reference.header.frame_id      = "";
+    5400          26 :   des_reference.header.stamp         = ros::Time(0);
+    5401          26 :   des_reference.reference.position.x = req.goal[REF_X];
+    5402          26 :   des_reference.reference.position.y = req.goal[REF_Y];
+    5403          26 :   des_reference.reference.position.z = req.goal[REF_Z];
+    5404          26 :   des_reference.reference.heading    = req.goal[REF_HEADING];
+    5405             : 
+    5406          52 :   auto [success, message] = setReference(des_reference);
+    5407             : 
+    5408          26 :   res.success = success;
+    5409          26 :   res.message = message;
+    5410             : 
+    5411          26 :   return true;
+    5412             : }
+    5413             : 
+    5414             : //}
+    5415             : 
+    5416             : /* //{ callbackGotoFcu() */
+    5417             : 
+    5418           0 : bool ControlManager::callbackGotoFcu(mrs_msgs::Vec4::Request& req, mrs_msgs::Vec4::Response& res) {
+    5419             : 
+    5420           0 :   if (!is_initialized_) {
+    5421           0 :     res.message = "not initialized";
+    5422           0 :     res.success = false;
+    5423           0 :     return true;
+    5424             :   }
+    5425             : 
+    5426           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackGotoFcu");
+    5427           0 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackGotoFcu", scope_timer_logger_, scope_timer_enabled_);
+    5428             : 
+    5429           0 :   mrs_msgs::ReferenceStamped des_reference;
+    5430           0 :   des_reference.header.frame_id      = "fcu_untilted";
+    5431           0 :   des_reference.header.stamp         = ros::Time(0);
+    5432           0 :   des_reference.reference.position.x = req.goal[REF_X];
+    5433           0 :   des_reference.reference.position.y = req.goal[REF_Y];
+    5434           0 :   des_reference.reference.position.z = req.goal[REF_Z];
+    5435           0 :   des_reference.reference.heading    = req.goal[REF_HEADING];
+    5436             : 
+    5437           0 :   auto [success, message] = setReference(des_reference);
+    5438             : 
+    5439           0 :   res.success = success;
+    5440           0 :   res.message = message;
+    5441             : 
+    5442           0 :   return true;
+    5443             : }
+    5444             : 
+    5445             : //}
+    5446             : 
+    5447             : /* //{ callbackGotoRelative() */
+    5448             : 
+    5449          23 : bool ControlManager::callbackGotoRelative(mrs_msgs::Vec4::Request& req, mrs_msgs::Vec4::Response& res) {
+    5450             : 
+    5451          23 :   if (!is_initialized_) {
+    5452           0 :     res.message = "not initialized";
+    5453           0 :     res.success = false;
+    5454           0 :     return true;
+    5455             :   }
+    5456             : 
+    5457          69 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackGotoRelative");
+    5458          69 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackGotoRelative", scope_timer_logger_, scope_timer_enabled_);
+    5459             : 
+    5460          46 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    5461             : 
+    5462          23 :   if (!last_tracker_cmd) {
+    5463           0 :     res.message = "not flying";
+    5464           0 :     res.success = false;
+    5465           0 :     return true;
+    5466             :   }
+    5467             : 
+    5468          46 :   mrs_msgs::ReferenceStamped des_reference;
+    5469          23 :   des_reference.header.frame_id      = "";
+    5470          23 :   des_reference.header.stamp         = ros::Time(0);
+    5471          23 :   des_reference.reference.position.x = last_tracker_cmd->position.x + req.goal[REF_X];
+    5472          23 :   des_reference.reference.position.y = last_tracker_cmd->position.y + req.goal[REF_Y];
+    5473          23 :   des_reference.reference.position.z = last_tracker_cmd->position.z + req.goal[REF_Z];
+    5474          23 :   des_reference.reference.heading    = last_tracker_cmd->heading + req.goal[REF_HEADING];
+    5475             : 
+    5476          46 :   auto [success, message] = setReference(des_reference);
+    5477             : 
+    5478          23 :   res.success = success;
+    5479          23 :   res.message = message;
+    5480             : 
+    5481          23 :   return true;
+    5482             : }
+    5483             : 
+    5484             : //}
+    5485             : 
+    5486             : /* //{ callbackGotoAltitude() */
+    5487             : 
+    5488           0 : bool ControlManager::callbackGotoAltitude(mrs_msgs::Vec1::Request& req, mrs_msgs::Vec1::Response& res) {
+    5489             : 
+    5490           0 :   if (!is_initialized_) {
+    5491           0 :     res.message = "not initialized";
+    5492           0 :     res.success = false;
+    5493           0 :     return true;
+    5494             :   }
+    5495             : 
+    5496           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackGotoAltitude");
+    5497           0 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackGotoAltitude", scope_timer_logger_, scope_timer_enabled_);
+    5498             : 
+    5499           0 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    5500             : 
+    5501           0 :   if (!last_tracker_cmd) {
+    5502           0 :     res.message = "not flying";
+    5503           0 :     res.success = false;
+    5504           0 :     return true;
+    5505             :   }
+    5506             : 
+    5507           0 :   mrs_msgs::ReferenceStamped des_reference;
+    5508           0 :   des_reference.header.frame_id      = "";
+    5509           0 :   des_reference.header.stamp         = ros::Time(0);
+    5510           0 :   des_reference.reference.position.x = last_tracker_cmd->position.x;
+    5511           0 :   des_reference.reference.position.y = last_tracker_cmd->position.y;
+    5512           0 :   des_reference.reference.position.z = req.goal;
+    5513           0 :   des_reference.reference.heading    = last_tracker_cmd->heading;
+    5514             : 
+    5515           0 :   auto [success, message] = setReference(des_reference);
+    5516             : 
+    5517           0 :   res.success = success;
+    5518           0 :   res.message = message;
+    5519             : 
+    5520           0 :   return true;
+    5521             : }
+    5522             : 
+    5523             : //}
+    5524             : 
+    5525             : /* //{ callbackSetHeading() */
+    5526             : 
+    5527           0 : bool ControlManager::callbackSetHeading(mrs_msgs::Vec1::Request& req, mrs_msgs::Vec1::Response& res) {
+    5528             : 
+    5529           0 :   if (!is_initialized_) {
+    5530           0 :     res.message = "not initialized";
+    5531           0 :     res.success = false;
+    5532           0 :     return true;
+    5533             :   }
+    5534             : 
+    5535           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackSetHeading");
+    5536           0 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackSetHeading", scope_timer_logger_, scope_timer_enabled_);
+    5537             : 
+    5538           0 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    5539             : 
+    5540           0 :   if (!last_tracker_cmd) {
+    5541           0 :     res.message = "not flying";
+    5542           0 :     res.success = false;
+    5543           0 :     return true;
+    5544             :   }
+    5545             : 
+    5546           0 :   mrs_msgs::ReferenceStamped des_reference;
+    5547           0 :   des_reference.header.frame_id      = "";
+    5548           0 :   des_reference.header.stamp         = ros::Time(0);
+    5549           0 :   des_reference.reference.position.x = last_tracker_cmd->position.x;
+    5550           0 :   des_reference.reference.position.y = last_tracker_cmd->position.y;
+    5551           0 :   des_reference.reference.position.z = last_tracker_cmd->position.z;
+    5552           0 :   des_reference.reference.heading    = req.goal;
+    5553             : 
+    5554           0 :   auto [success, message] = setReference(des_reference);
+    5555             : 
+    5556           0 :   res.success = success;
+    5557           0 :   res.message = message;
+    5558             : 
+    5559           0 :   return true;
+    5560             : }
+    5561             : 
+    5562             : //}
+    5563             : 
+    5564             : /* //{ callbackSetHeadingRelative() */
+    5565             : 
+    5566           0 : bool ControlManager::callbackSetHeadingRelative(mrs_msgs::Vec1::Request& req, mrs_msgs::Vec1::Response& res) {
+    5567             : 
+    5568           0 :   if (!is_initialized_) {
+    5569           0 :     res.message = "not initialized";
+    5570           0 :     res.success = false;
+    5571           0 :     return true;
+    5572             :   }
+    5573             : 
+    5574           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackSetHeadingRelative");
+    5575           0 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::callbackSetHeadingRelative", scope_timer_logger_, scope_timer_enabled_);
+    5576             : 
+    5577           0 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    5578             : 
+    5579           0 :   if (!last_tracker_cmd) {
+    5580           0 :     res.message = "not flying";
+    5581           0 :     res.success = false;
+    5582           0 :     return true;
+    5583             :   }
+    5584             : 
+    5585           0 :   mrs_msgs::ReferenceStamped des_reference;
+    5586           0 :   des_reference.header.frame_id      = "";
+    5587           0 :   des_reference.header.stamp         = ros::Time(0);
+    5588           0 :   des_reference.reference.position.x = last_tracker_cmd->position.x;
+    5589           0 :   des_reference.reference.position.y = last_tracker_cmd->position.y;
+    5590           0 :   des_reference.reference.position.z = last_tracker_cmd->position.z;
+    5591           0 :   des_reference.reference.heading    = last_tracker_cmd->heading + req.goal;
+    5592             : 
+    5593           0 :   auto [success, message] = setReference(des_reference);
+    5594             : 
+    5595           0 :   res.success = success;
+    5596           0 :   res.message = message;
+    5597             : 
+    5598           0 :   return true;
+    5599             : }
+    5600             : 
+    5601             : //}
+    5602             : 
+    5603             : // --------------------------------------------------------------
+    5604             : // |                          routines                          |
+    5605             : // --------------------------------------------------------------
+    5606             : 
+    5607             : /* setReference() //{ */
+    5608             : 
+    5609          49 : std::tuple<bool, std::string> ControlManager::setReference(const mrs_msgs::ReferenceStamped reference_in) {
+    5610             : 
+    5611          98 :   std::stringstream ss;
+    5612             : 
+    5613          49 :   if (!callbacks_enabled_) {
+    5614           0 :     ss << "can not set the reference, the callbacks are disabled";
+    5615           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5616           0 :     return std::tuple(false, ss.str());
+    5617             :   }
+    5618             : 
+    5619          49 :   if (!validateReference(reference_in.reference, "ControlManager", "reference")) {
+    5620           0 :     ss << "incoming reference is not finite!!!";
+    5621           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5622           0 :     return std::tuple(false, ss.str());
+    5623             :   }
+    5624             : 
+    5625             :   // copy member variables
+    5626          98 :   auto uav_state        = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    5627          98 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    5628             : 
+    5629             :   // transform the reference to the current frame
+    5630          98 :   auto ret = transformer_->transformSingle(reference_in, uav_state.header.frame_id);
+    5631             : 
+    5632          49 :   if (!ret) {
+    5633             : 
+    5634           0 :     ss << "the reference could not be transformed";
+    5635           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5636           0 :     return std::tuple(false, ss.str());
+    5637             :   }
+    5638             : 
+    5639          98 :   mrs_msgs::ReferenceStamped transformed_reference = ret.value();
+    5640             : 
+    5641             :   // safety area check
+    5642          49 :   if (!isPointInSafetyArea3d(transformed_reference)) {
+    5643           0 :     ss << "failed to set the reference, the point is outside of the safety area!";
+    5644           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5645           0 :     return std::tuple(false, ss.str());
+    5646             :   }
+    5647             : 
+    5648          49 :   if (last_tracker_cmd) {
+    5649             : 
+    5650          49 :     mrs_msgs::ReferenceStamped from_point;
+    5651          49 :     from_point.header.frame_id      = uav_state.header.frame_id;
+    5652          49 :     from_point.reference.position.x = last_tracker_cmd->position.x;
+    5653          49 :     from_point.reference.position.y = last_tracker_cmd->position.y;
+    5654          49 :     from_point.reference.position.z = last_tracker_cmd->position.z;
+    5655             : 
+    5656          49 :     if (!isPathToPointInSafetyArea3d(from_point, transformed_reference)) {
+    5657           0 :       ss << "failed to set the reference, the path is going outside the safety area!";
+    5658           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5659           0 :       return std::tuple(false, ss.str());
+    5660             :     }
+    5661             :   }
+    5662             : 
+    5663          49 :   mrs_msgs::ReferenceSrvResponse::ConstPtr tracker_response;
+    5664             : 
+    5665             :   // prepare the message for current tracker
+    5666          49 :   mrs_msgs::ReferenceSrvRequest reference_request;
+    5667          49 :   reference_request.reference = transformed_reference.reference;
+    5668             : 
+    5669             :   {
+    5670          98 :     std::scoped_lock lock(mutex_tracker_list_);
+    5671             : 
+    5672         147 :     tracker_response = tracker_list_[active_tracker_idx_]->setReference(
+    5673         147 :         mrs_msgs::ReferenceSrvRequest::ConstPtr(std::make_unique<mrs_msgs::ReferenceSrvRequest>(reference_request)));
+    5674             : 
+    5675          49 :     if (tracker_response != mrs_msgs::ReferenceSrvResponse::Ptr()) {
+    5676             : 
+    5677          98 :       return std::tuple(tracker_response->success, tracker_response->message);
+    5678             : 
+    5679             :     } else {
+    5680             : 
+    5681           0 :       ss << "the tracker '" << _tracker_names_[active_tracker_idx_] << "' does not implement the 'setReference()' function!";
+    5682           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: failed to set the reference: " << ss.str());
+    5683           0 :       return std::tuple(false, ss.str());
+    5684             :     }
+    5685             :   }
+    5686             : }
+    5687             : 
+    5688             : //}
+    5689             : 
+    5690             : /* setVelocityReference() //{ */
+    5691             : 
+    5692         477 : std::tuple<bool, std::string> ControlManager::setVelocityReference(const mrs_msgs::VelocityReferenceStamped& reference_in) {
+    5693             : 
+    5694         954 :   std::stringstream ss;
+    5695             : 
+    5696         477 :   if (!callbacks_enabled_) {
+    5697           0 :     ss << "can not set the reference, the callbacks are disabled";
+    5698           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5699           0 :     return std::tuple(false, ss.str());
+    5700             :   }
+    5701             : 
+    5702         477 :   if (!validateVelocityReference(reference_in.reference, "ControlManager", "velocity_reference")) {
+    5703           0 :     ss << "velocity command is not valid!";
+    5704           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5705           0 :     return std::tuple(false, ss.str());
+    5706             :   }
+    5707             : 
+    5708             :   {
+    5709         477 :     std::scoped_lock lock(mutex_last_tracker_cmd_);
+    5710             : 
+    5711         477 :     if (!last_tracker_cmd_) {
+    5712           0 :       ss << "could not set velocity command, not flying!";
+    5713           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5714           0 :       return std::tuple(false, ss.str());
+    5715             :     }
+    5716             :   }
+    5717             : 
+    5718             :   // copy member variables
+    5719         954 :   auto uav_state        = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    5720         954 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    5721             : 
+    5722             :   // | -- transform the velocity reference to the current frame - |
+    5723             : 
+    5724         954 :   mrs_msgs::VelocityReferenceStamped transformed_reference = reference_in;
+    5725             : 
+    5726         954 :   auto ret = transformer_->getTransform(reference_in.header.frame_id, uav_state.header.frame_id, reference_in.header.stamp);
+    5727             : 
+    5728         954 :   geometry_msgs::TransformStamped tf;
+    5729             : 
+    5730         477 :   if (!ret) {
+    5731           0 :     ss << "could not find tf from " << reference_in.header.frame_id << " to " << uav_state.header.frame_id;
+    5732           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5733           0 :     return std::tuple(false, ss.str());
+    5734             :   } else {
+    5735         477 :     tf = ret.value();
+    5736             :   }
+    5737             : 
+    5738             :   // transform the velocity
+    5739             :   {
+    5740         477 :     geometry_msgs::Vector3Stamped velocity;
+    5741         477 :     velocity.header   = reference_in.header;
+    5742         477 :     velocity.vector.x = reference_in.reference.velocity.x;
+    5743         477 :     velocity.vector.y = reference_in.reference.velocity.y;
+    5744         477 :     velocity.vector.z = reference_in.reference.velocity.z;
+    5745             : 
+    5746         477 :     auto ret = transformer_->transform(velocity, tf);
+    5747             : 
+    5748         477 :     if (!ret) {
+    5749             : 
+    5750           0 :       ss << "the velocity reference could not be transformed";
+    5751           0 :       ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5752           0 :       return std::tuple(false, ss.str());
+    5753             : 
+    5754             :     } else {
+    5755         477 :       transformed_reference.reference.velocity.x = ret->vector.x;
+    5756         477 :       transformed_reference.reference.velocity.y = ret->vector.y;
+    5757         477 :       transformed_reference.reference.velocity.z = ret->vector.z;
+    5758             :     }
+    5759             :   }
+    5760             : 
+    5761             :   // transform the z and the heading
+    5762             :   {
+    5763         477 :     geometry_msgs::PoseStamped pose;
+    5764         477 :     pose.header           = reference_in.header;
+    5765         477 :     pose.pose.position.x  = 0;
+    5766         477 :     pose.pose.position.y  = 0;
+    5767         477 :     pose.pose.position.z  = reference_in.reference.altitude;
+    5768         477 :     pose.pose.orientation = mrs_lib::AttitudeConverter(0, 0, reference_in.reference.heading);
+    5769             : 
+    5770         477 :     auto ret = transformer_->transform(pose, tf);
+    5771             : 
+    5772         477 :     if (!ret) {
+    5773             : 
+    5774           0 :       ss << "the velocity reference could not be transformed";
+    5775           0 :       ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5776           0 :       return std::tuple(false, ss.str());
+    5777             : 
+    5778             :     } else {
+    5779         477 :       transformed_reference.reference.altitude = ret->pose.position.z;
+    5780         477 :       transformed_reference.reference.heading  = mrs_lib::AttitudeConverter(ret->pose.orientation).getHeading();
+    5781             :     }
+    5782             :   }
+    5783             : 
+    5784             :   // the heading rate doees not need to be transformed
+    5785         477 :   transformed_reference.reference.heading_rate = reference_in.reference.heading_rate;
+    5786             : 
+    5787         477 :   transformed_reference.header.stamp    = tf.header.stamp;
+    5788         477 :   transformed_reference.header.frame_id = transformer_->frame_to(tf);
+    5789             : 
+    5790         954 :   mrs_msgs::ReferenceStamped eqivalent_reference = velocityReferenceToReference(transformed_reference);
+    5791             : 
+    5792         477 :   ROS_DEBUG("[ControlManager]: equivalent reference: %.2f, %.2f, %.2f, %.2f", eqivalent_reference.reference.position.x,
+    5793             :             eqivalent_reference.reference.position.y, eqivalent_reference.reference.position.z, eqivalent_reference.reference.heading);
+    5794             : 
+    5795             :   // safety area check
+    5796         477 :   if (!isPointInSafetyArea3d(eqivalent_reference)) {
+    5797           0 :     ss << "failed to set the reference, the point is outside of the safety area!";
+    5798           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5799           0 :     return std::tuple(false, ss.str());
+    5800             :   }
+    5801             : 
+    5802         477 :   if (last_tracker_cmd) {
+    5803             : 
+    5804         477 :     mrs_msgs::ReferenceStamped from_point;
+    5805         477 :     from_point.header.frame_id      = uav_state.header.frame_id;
+    5806         477 :     from_point.reference.position.x = last_tracker_cmd->position.x;
+    5807         477 :     from_point.reference.position.y = last_tracker_cmd->position.y;
+    5808         477 :     from_point.reference.position.z = last_tracker_cmd->position.z;
+    5809             : 
+    5810         477 :     if (!isPathToPointInSafetyArea3d(from_point, eqivalent_reference)) {
+    5811           0 :       ss << "failed to set the reference, the path is going outside the safety area!";
+    5812           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5813           0 :       return std::tuple(false, ss.str());
+    5814             :     }
+    5815             :   }
+    5816             : 
+    5817         477 :   mrs_msgs::VelocityReferenceSrvResponse::ConstPtr tracker_response;
+    5818             : 
+    5819             :   // prepare the message for current tracker
+    5820         477 :   mrs_msgs::VelocityReferenceSrvRequest reference_request;
+    5821         477 :   reference_request.reference = transformed_reference.reference;
+    5822             : 
+    5823             :   {
+    5824         954 :     std::scoped_lock lock(mutex_tracker_list_);
+    5825             : 
+    5826        1431 :     tracker_response = tracker_list_[active_tracker_idx_]->setVelocityReference(
+    5827        1431 :         mrs_msgs::VelocityReferenceSrvRequest::ConstPtr(std::make_unique<mrs_msgs::VelocityReferenceSrvRequest>(reference_request)));
+    5828             : 
+    5829         477 :     if (tracker_response != mrs_msgs::VelocityReferenceSrvResponse::Ptr()) {
+    5830             : 
+    5831         954 :       return std::tuple(tracker_response->success, tracker_response->message);
+    5832             : 
+    5833             :     } else {
+    5834             : 
+    5835           0 :       ss << "the tracker '" << _tracker_names_[active_tracker_idx_] << "' does not implement the 'setVelocityReference()' function!";
+    5836           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: failed to set the velocity reference: " << ss.str());
+    5837           0 :       return std::tuple(false, ss.str());
+    5838             :     }
+    5839             :   }
+    5840             : }
+    5841             : 
+    5842             : //}
+    5843             : 
+    5844             : /* setTrajectoryReference() //{ */
+    5845             : 
+    5846           4 : std::tuple<bool, std::string, bool, std::vector<std::string>, std::vector<bool>, std::vector<std::string>> ControlManager::setTrajectoryReference(
+    5847             :     const mrs_msgs::TrajectoryReference trajectory_in) {
+    5848             : 
+    5849           8 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    5850             : 
+    5851           8 :   std::stringstream ss;
+    5852             : 
+    5853           4 :   if (!callbacks_enabled_) {
+    5854           0 :     ss << "can not set the reference, the callbacks are disabled";
+    5855           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5856           0 :     return std::tuple(false, ss.str(), false, std::vector<std::string>(), std::vector<bool>(), std::vector<std::string>());
+    5857             :   }
+    5858             : 
+    5859             :   /* validate the size and check for NaNs //{ */
+    5860             : 
+    5861             :   // check for the size 0, which is invalid
+    5862           4 :   if (trajectory_in.points.size() == 0) {
+    5863             : 
+    5864           0 :     ss << "can not load trajectory with size 0";
+    5865           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5866           0 :     return std::tuple(false, ss.str(), false, std::vector<std::string>(), std::vector<bool>(), std::vector<std::string>());
+    5867             :   }
+    5868             : 
+    5869         584 :   for (int i = 0; i < int(trajectory_in.points.size()); i++) {
+    5870             : 
+    5871             :     // check the point for NaN/inf
+    5872         580 :     bool valid = validateReference(trajectory_in.points[i], "ControlManager", "trajectory_in.points[]");
+    5873             : 
+    5874         580 :     if (!valid) {
+    5875             : 
+    5876           0 :       ss << "trajectory contains NaNs/infs.";
+    5877           0 :       ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    5878           0 :       return std::tuple(false, ss.str(), false, std::vector<std::string>(), std::vector<bool>(), std::vector<std::string>());
+    5879             :     }
+    5880             :   }
+    5881             : 
+    5882             :   //}
+    5883             : 
+    5884             :   /* publish the debugging topics of the original trajectory //{ */
+    5885             : 
+    5886             :   {
+    5887             : 
+    5888           8 :     geometry_msgs::PoseArray debug_trajectory_out;
+    5889           4 :     debug_trajectory_out.header = trajectory_in.header;
+    5890             : 
+    5891           4 :     debug_trajectory_out.header.frame_id = transformer_->resolveFrame(debug_trajectory_out.header.frame_id);
+    5892             : 
+    5893           4 :     if (debug_trajectory_out.header.stamp == ros::Time(0)) {
+    5894           2 :       debug_trajectory_out.header.stamp = ros::Time::now();
+    5895             :     }
+    5896             : 
+    5897         580 :     for (int i = 0; i < int(trajectory_in.points.size()) - 1; i++) {
+    5898             : 
+    5899         576 :       geometry_msgs::Pose new_pose;
+    5900             : 
+    5901         576 :       new_pose.position.x = trajectory_in.points[i].position.x;
+    5902         576 :       new_pose.position.y = trajectory_in.points[i].position.y;
+    5903         576 :       new_pose.position.z = trajectory_in.points[i].position.z;
+    5904             : 
+    5905         576 :       new_pose.orientation = mrs_lib::AttitudeConverter(0, 0, trajectory_in.points[i].heading);
+    5906             : 
+    5907         576 :       debug_trajectory_out.poses.push_back(new_pose);
+    5908             :     }
+    5909             : 
+    5910           4 :     pub_debug_original_trajectory_poses_.publish(debug_trajectory_out);
+    5911             : 
+    5912           8 :     visualization_msgs::MarkerArray msg_out;
+    5913             : 
+    5914           8 :     visualization_msgs::Marker marker;
+    5915             : 
+    5916           4 :     marker.header = trajectory_in.header;
+    5917             : 
+    5918           4 :     marker.header.frame_id = transformer_->resolveFrame(marker.header.frame_id);
+    5919             : 
+    5920           4 :     if (marker.header.frame_id == "") {
+    5921           0 :       marker.header.frame_id = uav_state.header.frame_id;
+    5922             :     }
+    5923             : 
+    5924           4 :     if (marker.header.stamp == ros::Time(0)) {
+    5925           2 :       marker.header.stamp = ros::Time::now();
+    5926             :     }
+    5927             : 
+    5928           4 :     marker.type             = visualization_msgs::Marker::LINE_LIST;
+    5929           4 :     marker.color.a          = 1;
+    5930           4 :     marker.scale.x          = 0.05;
+    5931           4 :     marker.color.r          = 0;
+    5932           4 :     marker.color.g          = 1;
+    5933           4 :     marker.color.b          = 0;
+    5934           4 :     marker.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+    5935             : 
+    5936         580 :     for (int i = 0; i < int(trajectory_in.points.size()) - 1; i++) {
+    5937             : 
+    5938         576 :       geometry_msgs::Point point1;
+    5939             : 
+    5940         576 :       point1.x = trajectory_in.points[i].position.x;
+    5941         576 :       point1.y = trajectory_in.points[i].position.y;
+    5942         576 :       point1.z = trajectory_in.points[i].position.z;
+    5943             : 
+    5944         576 :       marker.points.push_back(point1);
+    5945             : 
+    5946         576 :       geometry_msgs::Point point2;
+    5947             : 
+    5948         576 :       point2.x = trajectory_in.points[i + 1].position.x;
+    5949         576 :       point2.y = trajectory_in.points[i + 1].position.y;
+    5950         576 :       point2.z = trajectory_in.points[i + 1].position.z;
+    5951             : 
+    5952         576 :       marker.points.push_back(point2);
+    5953             :     }
+    5954             : 
+    5955           4 :     msg_out.markers.push_back(marker);
+    5956             : 
+    5957           4 :     pub_debug_original_trajectory_markers_.publish(msg_out);
+    5958             :   }
+    5959             : 
+    5960             :   //}
+    5961             : 
+    5962           8 :   mrs_msgs::TrajectoryReference processed_trajectory = trajectory_in;
+    5963             : 
+    5964           4 :   int trajectory_size = int(processed_trajectory.points.size());
+    5965             : 
+    5966           4 :   bool trajectory_modified = false;
+    5967             : 
+    5968             :   /* safety area check //{ */
+    5969             : 
+    5970           4 :   if (use_safety_area_) {
+    5971             : 
+    5972           4 :     int last_valid_idx    = 0;
+    5973           4 :     int first_invalid_idx = -1;
+    5974             : 
+    5975           4 :     double min_z = getMinZ(processed_trajectory.header.frame_id);
+    5976           4 :     double max_z = getMaxZ(processed_trajectory.header.frame_id);
+    5977             : 
+    5978         584 :     for (int i = 0; i < trajectory_size; i++) {
+    5979             : 
+    5980         580 :       if (_snap_trajectory_to_safety_area_) {
+    5981             : 
+    5982             :         // saturate the trajectory to min and max Z
+    5983           0 :         if (processed_trajectory.points[i].position.z < min_z) {
+    5984             : 
+    5985           0 :           processed_trajectory.points[i].position.z = min_z;
+    5986           0 :           ROS_WARN_THROTTLE(1.0, "[ControlManager]: the trajectory violates the minimum Z!");
+    5987           0 :           trajectory_modified = true;
+    5988             :         }
+    5989             : 
+    5990           0 :         if (processed_trajectory.points[i].position.z > max_z) {
+    5991             : 
+    5992           0 :           processed_trajectory.points[i].position.z = max_z;
+    5993           0 :           ROS_WARN_THROTTLE(1.0, "[ControlManager]: the trajectory violates the maximum Z!");
+    5994           0 :           trajectory_modified = true;
+    5995             :         }
+    5996             :       }
+    5997             : 
+    5998             :       // check the point against the safety area
+    5999         580 :       mrs_msgs::ReferenceStamped des_reference;
+    6000         580 :       des_reference.header    = processed_trajectory.header;
+    6001         580 :       des_reference.reference = processed_trajectory.points[i];
+    6002             : 
+    6003         580 :       if (!isPointInSafetyArea3d(des_reference)) {
+    6004             : 
+    6005           0 :         ROS_WARN_THROTTLE(1.0, "[ControlManager]: the trajectory contains points outside of the safety area!");
+    6006           0 :         trajectory_modified = true;
+    6007             : 
+    6008             :         // the first invalid point
+    6009           0 :         if (first_invalid_idx == -1) {
+    6010             : 
+    6011           0 :           first_invalid_idx = i;
+    6012             : 
+    6013           0 :           last_valid_idx = i - 1;
+    6014             :         }
+    6015             : 
+    6016             :         // the point is ok
+    6017             :       } else {
+    6018             : 
+    6019             :         // we found a point, which is ok, after finding a point which was not ok
+    6020         580 :         if (first_invalid_idx != -1) {
+    6021             : 
+    6022             :           // special case, we had no valid point so far
+    6023           0 :           if (last_valid_idx == -1) {
+    6024             : 
+    6025           0 :             ss << "the trajectory starts outside of the safety area!";
+    6026           0 :             ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    6027           0 :             return std::tuple(false, ss.str(), false, std::vector<std::string>(), std::vector<bool>(), std::vector<std::string>());
+    6028             : 
+    6029             :             // we have a valid point in the past
+    6030             :           } else {
+    6031             : 
+    6032           0 :             if (!_snap_trajectory_to_safety_area_) {
+    6033           0 :               break;
+    6034             :             }
+    6035             : 
+    6036           0 :             bool interpolation_success = true;
+    6037             : 
+    6038             :             // iterpolate between the last valid point and this new valid point
+    6039           0 :             double angle = atan2((processed_trajectory.points[i].position.y - processed_trajectory.points[last_valid_idx].position.y),
+    6040           0 :                                  (processed_trajectory.points[i].position.x - processed_trajectory.points[last_valid_idx].position.x));
+    6041             : 
+    6042             :             double dist_two_points =
+    6043           0 :                 mrs_lib::geometry::dist(vec2_t(processed_trajectory.points[i].position.x, processed_trajectory.points[i].position.y),
+    6044           0 :                                         vec2_t(processed_trajectory.points[last_valid_idx].position.x, processed_trajectory.points[last_valid_idx].position.y));
+    6045           0 :             double step = dist_two_points / (i - last_valid_idx);
+    6046             : 
+    6047           0 :             for (int j = last_valid_idx; j < i; j++) {
+    6048             : 
+    6049           0 :               mrs_msgs::ReferenceStamped temp_point;
+    6050           0 :               temp_point.header.frame_id      = processed_trajectory.header.frame_id;
+    6051           0 :               temp_point.reference.position.x = processed_trajectory.points[last_valid_idx].position.x + (j - last_valid_idx) * cos(angle) * step;
+    6052           0 :               temp_point.reference.position.y = processed_trajectory.points[last_valid_idx].position.y + (j - last_valid_idx) * sin(angle) * step;
+    6053             : 
+    6054           0 :               if (!isPointInSafetyArea2d(temp_point)) {
+    6055             : 
+    6056           0 :                 interpolation_success = false;
+    6057           0 :                 break;
+    6058             : 
+    6059             :               } else {
+    6060             : 
+    6061           0 :                 processed_trajectory.points[j].position.x = temp_point.reference.position.x;
+    6062           0 :                 processed_trajectory.points[j].position.y = temp_point.reference.position.y;
+    6063             :               }
+    6064             :             }
+    6065             : 
+    6066           0 :             if (!interpolation_success) {
+    6067           0 :               break;
+    6068             :             }
+    6069             :           }
+    6070             : 
+    6071           0 :           first_invalid_idx = -1;
+    6072             :         }
+    6073             :       }
+    6074             :     }
+    6075             : 
+    6076             :     // special case, the trajectory does not end with a valid point
+    6077           4 :     if (first_invalid_idx != -1) {
+    6078             : 
+    6079             :       // super special case, the whole trajectory is invalid
+    6080           0 :       if (first_invalid_idx == 0) {
+    6081             : 
+    6082           0 :         ss << "the whole trajectory is outside of the safety area!";
+    6083           0 :         ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    6084           0 :         return std::tuple(false, ss.str(), false, std::vector<std::string>(), std::vector<bool>(), std::vector<std::string>());
+    6085             : 
+    6086             :         // there is a good portion of the trajectory in the beginning
+    6087             :       } else {
+    6088             : 
+    6089           0 :         trajectory_size = last_valid_idx + 1;
+    6090           0 :         processed_trajectory.points.resize(trajectory_size);
+    6091           0 :         trajectory_modified = true;
+    6092             :       }
+    6093             :     }
+    6094             :   }
+    6095             : 
+    6096           4 :   if (trajectory_size == 0) {
+    6097             : 
+    6098           0 :     ss << "the trajectory happened to be empty after all the checks! This message should not appear!";
+    6099           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    6100           0 :     return std::tuple(false, ss.str(), false, std::vector<std::string>(), std::vector<bool>(), std::vector<std::string>());
+    6101             :   }
+    6102             : 
+    6103             :   //}
+    6104             : 
+    6105             :   /* transform the trajectory to the current control frame //{ */
+    6106             : 
+    6107           4 :   std::optional<geometry_msgs::TransformStamped> tf_traj_state;
+    6108             : 
+    6109           4 :   if (processed_trajectory.header.stamp > ros::Time::now()) {
+    6110           0 :     tf_traj_state = transformer_->getTransform(processed_trajectory.header.frame_id, "", processed_trajectory.header.stamp);
+    6111             :   } else {
+    6112           4 :     tf_traj_state = transformer_->getTransform(processed_trajectory.header.frame_id, "", uav_state_.header.stamp);
+    6113             :   }
+    6114             : 
+    6115           4 :   if (!tf_traj_state) {
+    6116           0 :     ss << "could not create TF transformer for the trajectory";
+    6117           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    6118           0 :     return std::tuple(false, ss.str(), false, std::vector<std::string>(), std::vector<bool>(), std::vector<std::string>());
+    6119             :   }
+    6120             : 
+    6121           4 :   processed_trajectory.header.frame_id = transformer_->frame_to(*tf_traj_state);
+    6122             : 
+    6123         584 :   for (int i = 0; i < trajectory_size; i++) {
+    6124             : 
+    6125         580 :     mrs_msgs::ReferenceStamped trajectory_point;
+    6126         580 :     trajectory_point.header    = processed_trajectory.header;
+    6127         580 :     trajectory_point.reference = processed_trajectory.points[i];
+    6128             : 
+    6129         580 :     auto ret = transformer_->transform(trajectory_point, *tf_traj_state);
+    6130             : 
+    6131         580 :     if (!ret) {
+    6132             : 
+    6133           0 :       ss << "trajectory cannnot be transformed";
+    6134           0 :       ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    6135           0 :       return std::tuple(false, ss.str(), false, std::vector<std::string>(), std::vector<bool>(), std::vector<std::string>());
+    6136             : 
+    6137             :     } else {
+    6138             : 
+    6139             :       // transform the points in the trajectory to the current frame
+    6140         580 :       processed_trajectory.points[i] = ret.value().reference;
+    6141             :     }
+    6142             :   }
+    6143             : 
+    6144             :   //}
+    6145             : 
+    6146           4 :   mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr response;
+    6147           8 :   mrs_msgs::TrajectoryReferenceSrvRequest            request;
+    6148             : 
+    6149             :   // check for empty trajectory
+    6150           4 :   if (processed_trajectory.points.size() == 0) {
+    6151           0 :     ss << "reference trajectory was processing and it is now empty, this should not happen!";
+    6152           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    6153           0 :     return std::tuple(false, ss.str(), false, std::vector<std::string>(), std::vector<bool>(), std::vector<std::string>());
+    6154             :   }
+    6155             : 
+    6156             :   // prepare the message for current tracker
+    6157           4 :   request.trajectory = processed_trajectory;
+    6158             : 
+    6159             :   bool                     success;
+    6160           8 :   std::string              message;
+    6161             :   bool                     modified;
+    6162           8 :   std::vector<std::string> tracker_names;
+    6163           8 :   std::vector<bool>        tracker_successes;
+    6164           8 :   std::vector<std::string> tracker_messages;
+    6165             : 
+    6166             :   {
+    6167           8 :     std::scoped_lock lock(mutex_tracker_list_);
+    6168             : 
+    6169             :     // set the trajectory to the currently active tracker
+    6170          12 :     response = tracker_list_[active_tracker_idx_]->setTrajectoryReference(
+    6171          12 :         mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr(std::make_unique<mrs_msgs::TrajectoryReferenceSrvRequest>(request)));
+    6172             : 
+    6173           4 :     tracker_names.push_back(_tracker_names_[active_tracker_idx_]);
+    6174             : 
+    6175           4 :     if (response != mrs_msgs::TrajectoryReferenceSrvResponse::Ptr()) {
+    6176             : 
+    6177           3 :       success  = response->success;
+    6178           3 :       message  = response->message;
+    6179           3 :       modified = response->modified || trajectory_modified;
+    6180           3 :       tracker_successes.push_back(response->success);
+    6181           3 :       tracker_messages.push_back(response->message);
+    6182             : 
+    6183             :     } else {
+    6184             : 
+    6185           1 :       ss << "the active tracker '" << _tracker_names_[active_tracker_idx_] << "' does not implement the 'setTrajectoryReference()' function!";
+    6186           1 :       ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    6187             : 
+    6188           1 :       success  = true;
+    6189           1 :       message  = ss.str();
+    6190           1 :       modified = false;
+    6191           1 :       tracker_successes.push_back(false);
+    6192           1 :       tracker_messages.push_back(ss.str());
+    6193             :     }
+    6194             : 
+    6195             :     // set the trajectory to the non-active trackers
+    6196          28 :     for (size_t i = 0; i < tracker_list_.size(); i++) {
+    6197             : 
+    6198          24 :       if (i != active_tracker_idx_) {
+    6199             : 
+    6200          20 :         tracker_names.push_back(_tracker_names_[i]);
+    6201             : 
+    6202          60 :         response = tracker_list_[i]->setTrajectoryReference(
+    6203          60 :             mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr(std::make_unique<mrs_msgs::TrajectoryReferenceSrvRequest>(request)));
+    6204             : 
+    6205          20 :         if (response != mrs_msgs::TrajectoryReferenceSrvResponse::Ptr()) {
+    6206             : 
+    6207           1 :           tracker_successes.push_back(response->success);
+    6208           1 :           tracker_messages.push_back(response->message);
+    6209             : 
+    6210           1 :           if (response->success) {
+    6211           2 :             std::stringstream ss;
+    6212           1 :             ss << "trajectory loaded to non-active tracker '" << _tracker_names_[i];
+    6213           1 :             ROS_INFO_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    6214             :           }
+    6215             : 
+    6216             :         } else {
+    6217             : 
+    6218          19 :           std::stringstream ss;
+    6219          19 :           ss << "the tracker \"" << _tracker_names_[i] << "\" does not implement setTrajectoryReference()";
+    6220          19 :           tracker_successes.push_back(false);
+    6221          19 :           tracker_messages.push_back(ss.str());
+    6222             :         }
+    6223             :       }
+    6224             :     }
+    6225             :   }
+    6226             : 
+    6227           4 :   return std::tuple(success, message, modified, tracker_names, tracker_successes, tracker_messages);
+    6228             : }
+    6229             : 
+    6230             : //}
+    6231             : 
+    6232             : /* isOffboard() //{ */
+    6233             : 
+    6234          18 : bool ControlManager::isOffboard(void) {
+    6235             : 
+    6236          18 :   if (!sh_hw_api_status_.hasMsg()) {
+    6237           0 :     return false;
+    6238             :   }
+    6239             : 
+    6240          18 :   mrs_msgs::HwApiStatusConstPtr hw_api_status = sh_hw_api_status_.getMsg();
+    6241             : 
+    6242          18 :   return hw_api_status->connected && hw_api_status->offboard;
+    6243             : }
+    6244             : 
+    6245             : //}
+    6246             : 
+    6247             : /* setCallbacks() //{ */
+    6248             : 
+    6249          94 : void ControlManager::setCallbacks(bool in) {
+    6250             : 
+    6251          94 :   callbacks_enabled_ = in;
+    6252             : 
+    6253          94 :   std_srvs::SetBoolRequest req_enable_callbacks;
+    6254          94 :   req_enable_callbacks.data = callbacks_enabled_;
+    6255             : 
+    6256             :   {
+    6257         188 :     std::scoped_lock lock(mutex_tracker_list_);
+    6258             : 
+    6259             :     // set callbacks to all trackers
+    6260         658 :     for (int i = 0; i < int(tracker_list_.size()); i++) {
+    6261         564 :       tracker_list_[i]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    6262             :     }
+    6263             :   }
+    6264          94 : }
+    6265             : 
+    6266             : //}
+    6267             : 
+    6268             : /* publishDiagnostics() //{ */
+    6269             : 
+    6270       16331 : void ControlManager::publishDiagnostics(void) {
+    6271             : 
+    6272       16331 :   if (!is_initialized_) {
+    6273           0 :     return;
+    6274             :   }
+    6275             : 
+    6276       48993 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("publishDiagnostics");
+    6277       48993 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::publishDiagnostics", scope_timer_logger_, scope_timer_enabled_);
+    6278             : 
+    6279       32662 :   std::scoped_lock lock(mutex_diagnostics_);
+    6280             : 
+    6281       32662 :   mrs_msgs::ControlManagerDiagnostics diagnostics_msg;
+    6282             : 
+    6283       16331 :   diagnostics_msg.stamp    = ros::Time::now();
+    6284       16331 :   diagnostics_msg.uav_name = _uav_name_;
+    6285             : 
+    6286       16331 :   diagnostics_msg.desired_uav_state_rate = desired_uav_state_rate_;
+    6287             : 
+    6288       16331 :   diagnostics_msg.output_enabled = output_enabled_;
+    6289             : 
+    6290       16331 :   diagnostics_msg.joystick_active = rc_goto_active_;
+    6291             : 
+    6292             :   {
+    6293       16331 :     std::scoped_lock lock(mutex_tracker_list_, mutex_controller_list_);
+    6294             : 
+    6295       16331 :     diagnostics_msg.flying_normally = isFlyingNormally();
+    6296             :   }
+    6297             : 
+    6298       16331 :   diagnostics_msg.bumper_active = bumper_repulsing_;
+    6299             : 
+    6300             :   // | ----------------- fill the tracker status ---------------- |
+    6301             : 
+    6302             :   {
+    6303       32662 :     std::scoped_lock lock(mutex_tracker_list_);
+    6304             : 
+    6305       16331 :     mrs_msgs::TrackerStatus tracker_status;
+    6306             : 
+    6307       16331 :     diagnostics_msg.active_tracker = _tracker_names_[active_tracker_idx_];
+    6308       16331 :     diagnostics_msg.tracker_status = tracker_list_[active_tracker_idx_]->getStatus();
+    6309             :   }
+    6310             : 
+    6311             :   // | --------------- fill the controller status --------------- |
+    6312             : 
+    6313             :   {
+    6314       32662 :     std::scoped_lock lock(mutex_controller_list_);
+    6315             : 
+    6316       16331 :     mrs_msgs::ControllerStatus controller_status;
+    6317             : 
+    6318       16331 :     diagnostics_msg.active_controller = _controller_names_[active_controller_idx_];
+    6319       16331 :     diagnostics_msg.controller_status = controller_list_[active_controller_idx_]->getStatus();
+    6320             :   }
+    6321             : 
+    6322             :   // | ------------ fill in the available controllers ----------- |
+    6323             : 
+    6324       97986 :   for (int i = 0; i < int(_controller_names_.size()); i++) {
+    6325       81655 :     if ((_controller_names_[i] != _failsafe_controller_name_) && (_controller_names_[i] != _eland_controller_name_)) {
+    6326       48993 :       diagnostics_msg.available_controllers.push_back(_controller_names_[i]);
+    6327       48993 :       diagnostics_msg.human_switchable_controllers.push_back(controllers_.at(_controller_names_[i]).human_switchable);
+    6328             :     }
+    6329             :   }
+    6330             : 
+    6331             :   // | ------------- fill in the available trackers ------------- |
+    6332             : 
+    6333      114539 :   for (int i = 0; i < int(_tracker_names_.size()); i++) {
+    6334       98208 :     if (_tracker_names_[i] != _null_tracker_name_) {
+    6335       81877 :       diagnostics_msg.available_trackers.push_back(_tracker_names_[i]);
+    6336       81877 :       diagnostics_msg.human_switchable_trackers.push_back(trackers_.at(_tracker_names_[i]).human_switchable);
+    6337             :     }
+    6338             :   }
+    6339             : 
+    6340             :   // | ------------------------- publish ------------------------ |
+    6341             : 
+    6342       16331 :   ph_diagnostics_.publish(diagnostics_msg);
+    6343             : }
+    6344             : 
+    6345             : //}
+    6346             : 
+    6347             : /* setConstraintsToTrackers() //{ */
+    6348             : 
+    6349         299 : void ControlManager::setConstraintsToTrackers(const mrs_msgs::DynamicsConstraintsSrvRequest& constraints) {
+    6350             : 
+    6351         897 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("setConstraintsToTrackers");
+    6352         897 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::setConstraintsToTrackers", scope_timer_logger_, scope_timer_enabled_);
+    6353             : 
+    6354         299 :   mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr response;
+    6355             : 
+    6356             :   {
+    6357         598 :     std::scoped_lock lock(mutex_tracker_list_);
+    6358             : 
+    6359             :     // for each tracker
+    6360        2096 :     for (int i = 0; i < int(tracker_list_.size()); i++) {
+    6361             : 
+    6362             :       // if it is the active one, update and retrieve the command
+    6363        5391 :       response = tracker_list_[i]->setConstraints(
+    6364        5391 :           mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr(std::make_unique<mrs_msgs::DynamicsConstraintsSrvRequest>(constraints)));
+    6365             :     }
+    6366             :   }
+    6367         299 : }
+    6368             : 
+    6369             : //}
+    6370             : 
+    6371             : /* setConstraintsToControllers() //{ */
+    6372             : 
+    6373         360 : void ControlManager::setConstraintsToControllers(const mrs_msgs::DynamicsConstraintsSrvRequest& constraints) {
+    6374             : 
+    6375        1080 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("setConstraintsToControllers");
+    6376        1080 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::setConstraintsToControllers", scope_timer_logger_, scope_timer_enabled_);
+    6377             : 
+    6378         360 :   mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr response;
+    6379             : 
+    6380             :   {
+    6381         720 :     std::scoped_lock lock(mutex_controller_list_);
+    6382             : 
+    6383             :     // for each controller
+    6384        2160 :     for (int i = 0; i < int(controller_list_.size()); i++) {
+    6385             : 
+    6386             :       // if it is the active one, update and retrieve the command
+    6387        5400 :       response = controller_list_[i]->setConstraints(
+    6388        5400 :           mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr(std::make_unique<mrs_msgs::DynamicsConstraintsSrvRequest>(constraints)));
+    6389             :     }
+    6390             :   }
+    6391         360 : }
+    6392             : 
+    6393             : //}
+    6394             : 
+    6395             : /* setConstraints() //{ */
+    6396             : 
+    6397          91 : void ControlManager::setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest& constraints) {
+    6398             : 
+    6399         273 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("setConstraints");
+    6400         273 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::setConstraints", scope_timer_logger_, scope_timer_enabled_);
+    6401             : 
+    6402          91 :   mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr response;
+    6403             : 
+    6404          91 :   setConstraintsToTrackers(constraints);
+    6405             : 
+    6406          91 :   setConstraintsToControllers(constraints);
+    6407          91 : }
+    6408             : 
+    6409             : //}
+    6410             : 
+    6411             : 
+    6412             : /* enforceControllerConstraints() //{ */
+    6413             : 
+    6414      119705 : std::optional<mrs_msgs::DynamicsConstraintsSrvRequest> ControlManager::enforceControllersConstraints(
+    6415             :     const mrs_msgs::DynamicsConstraintsSrvRequest& constraints) {
+    6416             : 
+    6417             :   // copy member variables
+    6418      239410 :   auto last_control_output = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    6419             : 
+    6420      119705 :   if (!last_control_output.control_output || !last_control_output.diagnostics.controller_enforcing_constraints) {
+    6421      100599 :     return {};
+    6422             :   }
+    6423             : 
+    6424       19106 :   bool enforcing = false;
+    6425             : 
+    6426       19106 :   auto constraints_out = constraints;
+    6427             : 
+    6428       38212 :   std::scoped_lock lock(mutex_tracker_list_);
+    6429             : 
+    6430             :   // enforce horizontal speed
+    6431       19106 :   if (last_control_output.diagnostics.horizontal_speed_constraint < constraints.constraints.horizontal_speed) {
+    6432       13874 :     constraints_out.constraints.horizontal_speed = last_control_output.diagnostics.horizontal_speed_constraint;
+    6433             : 
+    6434       13874 :     enforcing = true;
+    6435             :   }
+    6436             : 
+    6437             :   // enforce horizontal acceleration
+    6438       19106 :   if (last_control_output.diagnostics.horizontal_acc_constraint < constraints.constraints.horizontal_acceleration) {
+    6439       17452 :     constraints_out.constraints.horizontal_acceleration = last_control_output.diagnostics.horizontal_acc_constraint;
+    6440             : 
+    6441       17452 :     enforcing = true;
+    6442             :   }
+    6443             : 
+    6444             :   // enforce vertical ascending speed
+    6445       19106 :   if (last_control_output.diagnostics.vertical_asc_speed_constraint < constraints.constraints.vertical_ascending_speed) {
+    6446       13874 :     constraints_out.constraints.vertical_ascending_speed = last_control_output.diagnostics.vertical_asc_speed_constraint;
+    6447             : 
+    6448       13874 :     enforcing = true;
+    6449             :   }
+    6450             : 
+    6451             :   // enforce vertical ascending acceleration
+    6452       19106 :   if (last_control_output.diagnostics.vertical_asc_acc_constraint < constraints.constraints.vertical_ascending_acceleration) {
+    6453           0 :     constraints_out.constraints.vertical_ascending_acceleration = last_control_output.diagnostics.vertical_asc_acc_constraint;
+    6454             : 
+    6455           0 :     enforcing = true;
+    6456             :   }
+    6457             : 
+    6458             :   // enforce vertical descending speed
+    6459       19106 :   if (last_control_output.diagnostics.vertical_desc_speed_constraint < constraints.constraints.vertical_descending_speed) {
+    6460       13874 :     constraints_out.constraints.vertical_descending_speed = last_control_output.diagnostics.vertical_desc_speed_constraint;
+    6461             : 
+    6462       13874 :     enforcing = true;
+    6463             :   }
+    6464             : 
+    6465             :   // enforce vertical descending acceleration
+    6466       19106 :   if (last_control_output.diagnostics.vertical_desc_acc_constraint < constraints.constraints.vertical_descending_acceleration) {
+    6467           0 :     constraints_out.constraints.vertical_descending_acceleration = last_control_output.diagnostics.vertical_desc_acc_constraint;
+    6468             : 
+    6469           0 :     enforcing = true;
+    6470             :   }
+    6471             : 
+    6472       19106 :   if (enforcing) {
+    6473       17452 :     return {constraints_out};
+    6474             :   } else {
+    6475        1654 :     return {};
+    6476             :   }
+    6477             : }
+    6478             : 
+    6479             : //}
+    6480             : 
+    6481             : /* isFlyingNormally() //{ */
+    6482             : 
+    6483       16657 : bool ControlManager::isFlyingNormally(void) {
+    6484             : 
+    6485       14028 :   return callbacks_enabled_ && (output_enabled_) && (offboard_mode_) && (armed_) &&
+    6486        8719 :          (((active_tracker_idx_ != _ehover_tracker_idx_) && (active_controller_idx_ != _eland_controller_idx_) &&
+    6487        8719 :            (active_controller_idx_ != _failsafe_controller_idx_)) ||
+    6488       32880 :           _controller_names_.size() == 1) &&
+    6489       23181 :          (((active_tracker_idx_ != _null_tracker_idx_) && (active_tracker_idx_ != _landoff_tracker_idx_)) || _tracker_names_.size() == 1);
+    6490             : }
+    6491             : 
+    6492             : //}
+    6493             : 
+    6494             : /* //{ getMass() */
+    6495             : 
+    6496         471 : double ControlManager::getMass(void) {
+    6497             : 
+    6498         942 :   auto last_control_output = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    6499             : 
+    6500         471 :   if (last_control_output.diagnostics.mass_estimator) {
+    6501          13 :     return _uav_mass_ + last_control_output.diagnostics.mass_difference;
+    6502             :   } else {
+    6503         458 :     return _uav_mass_;
+    6504             :   }
+    6505             : }
+    6506             : 
+    6507             : //}
+    6508             : 
+    6509             : /* loadConfigFile() //{ */
+    6510             : 
+    6511           0 : bool ControlManager::loadConfigFile(const std::string& file_path, const std::string ns) {
+    6512             : 
+    6513           0 :   const std::string name_space = nh_.getNamespace() + "/" + ns;
+    6514             : 
+    6515           0 :   ROS_INFO("[ControlManager]: loading '%s' under the namespace '%s'", file_path.c_str(), name_space.c_str());
+    6516             : 
+    6517             :   // load the user-requested file
+    6518             :   {
+    6519           0 :     std::string command = "rosparam load " + file_path + " " + name_space;
+    6520           0 :     int         result  = std::system(command.c_str());
+    6521             : 
+    6522           0 :     if (result != 0) {
+    6523           0 :       ROS_ERROR("[ControlManager]: failed to load '%s'", file_path.c_str());
+    6524           0 :       return false;
+    6525             :     }
+    6526             :   }
+    6527             : 
+    6528             :   // load the platform config
+    6529           0 :   if (_platform_config_ != "") {
+    6530           0 :     std::string command = "rosparam load " + _platform_config_ + " " + name_space;
+    6531           0 :     int         result  = std::system(command.c_str());
+    6532             : 
+    6533           0 :     if (result != 0) {
+    6534           0 :       ROS_ERROR("[ControlManager]: failed to load the platform config file '%s'", _platform_config_.c_str());
+    6535           0 :       return false;
+    6536             :     }
+    6537             :   }
+    6538             : 
+    6539             :   // load the custom config
+    6540           0 :   if (_custom_config_ != "") {
+    6541           0 :     std::string command = "rosparam load " + _custom_config_ + " " + name_space;
+    6542           0 :     int         result  = std::system(command.c_str());
+    6543             : 
+    6544           0 :     if (result != 0) {
+    6545           0 :       ROS_ERROR("[ControlManager]: failed to load the custom config file '%s'", _custom_config_.c_str());
+    6546           0 :       return false;
+    6547             :     }
+    6548             :   }
+    6549             : 
+    6550           0 :   return true;
+    6551             : }
+    6552             : 
+    6553             : //}
+    6554             : 
+    6555             : // | ----------------------- safety area ---------------------- |
+    6556             : 
+    6557             : /* //{ isPointInSafetyArea3d() */
+    6558             : 
+    6559        1170 : bool ControlManager::isPointInSafetyArea3d(const mrs_msgs::ReferenceStamped& point) {
+    6560             : 
+    6561        1170 :   if (!use_safety_area_) {
+    6562         494 :     return true;
+    6563             :   }
+    6564             : 
+    6565        1352 :   auto tfed_horizontal = transformer_->transformSingle(point, _safety_area_horizontal_frame_);
+    6566             : 
+    6567         676 :   if (!tfed_horizontal) {
+    6568           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: SafetyArea: Could not transform the point to the safety area horizontal frame");
+    6569           0 :     return false;
+    6570             :   }
+    6571             : 
+    6572         676 :   if (!safety_zone_->isPointValid(tfed_horizontal->reference.position.x, tfed_horizontal->reference.position.y)) {
+    6573           0 :     return false;
+    6574             :   }
+    6575             : 
+    6576         676 :   if (point.reference.position.z < getMinZ(point.header.frame_id) || point.reference.position.z > getMaxZ(point.header.frame_id)) {
+    6577           0 :     return false;
+    6578             :   }
+    6579             : 
+    6580         676 :   return true;
+    6581             : }
+    6582             : 
+    6583             : //}
+    6584             : 
+    6585             : /* //{ isPointInSafetyArea2d() */
+    6586             : 
+    6587        9930 : bool ControlManager::isPointInSafetyArea2d(const mrs_msgs::ReferenceStamped& point) {
+    6588             : 
+    6589        9930 :   if (!use_safety_area_) {
+    6590         589 :     return true;
+    6591             :   }
+    6592             : 
+    6593       18682 :   auto tfed_horizontal = transformer_->transformSingle(point, _safety_area_horizontal_frame_);
+    6594             : 
+    6595        9341 :   if (!tfed_horizontal) {
+    6596           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: SafetyArea: Could not transform the point to the safety area horizontal frame");
+    6597           0 :     return false;
+    6598             :   }
+    6599             : 
+    6600        9341 :   if (!safety_zone_->isPointValid(tfed_horizontal->reference.position.x, tfed_horizontal->reference.position.y)) {
+    6601          76 :     return false;
+    6602             :   }
+    6603             : 
+    6604        9265 :   return true;
+    6605             : }
+    6606             : 
+    6607             : //}
+    6608             : 
+    6609             : /* //{ isPathToPointInSafetyArea3d() */
+    6610             : 
+    6611         526 : bool ControlManager::isPathToPointInSafetyArea3d(const mrs_msgs::ReferenceStamped& start, const mrs_msgs::ReferenceStamped& end) {
+    6612             : 
+    6613         526 :   if (!use_safety_area_) {
+    6614         494 :     return true;
+    6615             :   }
+    6616             : 
+    6617          32 :   if (!isPointInSafetyArea3d(start) || !isPointInSafetyArea3d(end)) {
+    6618           0 :     return false;
+    6619             :   }
+    6620             : 
+    6621          64 :   mrs_msgs::ReferenceStamped start_transformed, end_transformed;
+    6622             : 
+    6623             :   {
+    6624          32 :     auto ret = transformer_->transformSingle(start, _safety_area_horizontal_frame_);
+    6625             : 
+    6626          32 :     if (!ret) {
+    6627             : 
+    6628           0 :       ROS_ERROR("[ControlManager]: SafetyArea: Could not transform the first point in the path");
+    6629             : 
+    6630           0 :       return false;
+    6631             :     }
+    6632             : 
+    6633          32 :     start_transformed = ret.value();
+    6634             :   }
+    6635             : 
+    6636             :   {
+    6637          32 :     auto ret = transformer_->transformSingle(end, _safety_area_horizontal_frame_);
+    6638             : 
+    6639          32 :     if (!ret) {
+    6640             : 
+    6641           0 :       ROS_ERROR("[ControlManager]: SafetyArea: Could not transform the first point in the path");
+    6642             : 
+    6643           0 :       return false;
+    6644             :     }
+    6645             : 
+    6646          32 :     end_transformed = ret.value();
+    6647             :   }
+    6648             : 
+    6649          32 :   return safety_zone_->isPathValid(start_transformed.reference.position.x, start_transformed.reference.position.y, end_transformed.reference.position.x,
+    6650          32 :                                    end_transformed.reference.position.y);
+    6651             : }
+    6652             : 
+    6653             : //}
+    6654             : 
+    6655             : /* //{ isPathToPointInSafetyArea2d() */
+    6656             : 
+    6657          31 : bool ControlManager::isPathToPointInSafetyArea2d(const mrs_msgs::ReferenceStamped& start, const mrs_msgs::ReferenceStamped& end) {
+    6658             : 
+    6659          31 :   if (!use_safety_area_) {
+    6660           0 :     return true;
+    6661             :   }
+    6662             : 
+    6663          62 :   mrs_msgs::ReferenceStamped start_transformed, end_transformed;
+    6664             : 
+    6665          31 :   if (!isPointInSafetyArea2d(start) || !isPointInSafetyArea2d(end)) {
+    6666           0 :     return false;
+    6667             :   }
+    6668             : 
+    6669             :   {
+    6670          31 :     auto ret = transformer_->transformSingle(start, _safety_area_horizontal_frame_);
+    6671             : 
+    6672          31 :     if (!ret) {
+    6673             : 
+    6674           0 :       ROS_ERROR("[ControlManager]: SafetyArea: Could not transform the first point in the path");
+    6675             : 
+    6676           0 :       return false;
+    6677             :     }
+    6678             : 
+    6679          31 :     start_transformed = ret.value();
+    6680             :   }
+    6681             : 
+    6682             :   {
+    6683          31 :     auto ret = transformer_->transformSingle(end, _safety_area_horizontal_frame_);
+    6684             : 
+    6685          31 :     if (!ret) {
+    6686             : 
+    6687           0 :       ROS_ERROR("[ControlManager]: SafetyArea: Could not transform the first point in the path");
+    6688             : 
+    6689           0 :       return false;
+    6690             :     }
+    6691             : 
+    6692          31 :     end_transformed = ret.value();
+    6693             :   }
+    6694             : 
+    6695          31 :   return safety_zone_->isPathValid(start_transformed.reference.position.x, start_transformed.reference.position.y, end_transformed.reference.position.x,
+    6696          31 :                                    end_transformed.reference.position.y);
+    6697             : }
+    6698             : 
+    6699             : //}
+    6700             : 
+    6701             : /* //{ getMaxZ() */
+    6702             : 
+    6703       11661 : double ControlManager::getMaxZ(const std::string& frame_id) {
+    6704             : 
+    6705             :   // | ------- first, calculate max_z from the safety area ------ |
+    6706             : 
+    6707       11661 :   double safety_area_max_z = std::numeric_limits<float>::max();
+    6708             : 
+    6709             :   {
+    6710             : 
+    6711       23322 :     geometry_msgs::PointStamped point;
+    6712             : 
+    6713       11661 :     point.header.frame_id = _safety_area_vertical_frame_;
+    6714       11661 :     point.point.x         = 0;
+    6715       11661 :     point.point.y         = 0;
+    6716       11661 :     point.point.z         = _safety_area_max_z_;
+    6717             : 
+    6718       11661 :     auto ret = transformer_->transformSingle(point, frame_id);
+    6719             : 
+    6720       11661 :     if (!ret) {
+    6721           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: SafetyArea: Could not transform safety area's max_z to '%s'", frame_id.c_str());
+    6722             :     }
+    6723             : 
+    6724       11661 :     safety_area_max_z = ret->point.z;
+    6725             :   }
+    6726             : 
+    6727             :   // | ------------ overwrite from estimation manager ----------- |
+    6728             : 
+    6729       11661 :   double estimation_manager_max_z = std::numeric_limits<float>::max();
+    6730             : 
+    6731             :   {
+    6732             :     // if possible, override it with max z from the estimation manager
+    6733       11661 :     if (sh_max_z_.hasMsg()) {
+    6734             : 
+    6735       23302 :       auto msg = sh_max_z_.getMsg();
+    6736             : 
+    6737             :       // transform it into the safety area frame
+    6738       23302 :       geometry_msgs::PointStamped point;
+    6739       11651 :       point.header  = msg->header;
+    6740       11651 :       point.point.x = 0;
+    6741       11651 :       point.point.y = 0;
+    6742       11651 :       point.point.z = msg->value;
+    6743             : 
+    6744       11651 :       auto ret = transformer_->transformSingle(point, frame_id);
+    6745             : 
+    6746       11651 :       if (!ret) {
+    6747           0 :         ROS_ERROR_THROTTLE(1.0, "[ControlManager]: SafetyArea: Could not transform estimation manager's max_z to the current control frame");
+    6748             :       }
+    6749             : 
+    6750       11651 :       estimation_manager_max_z = ret->point.z;
+    6751             :     }
+    6752             :   }
+    6753             : 
+    6754       11661 :   if (estimation_manager_max_z < safety_area_max_z) {
+    6755       10872 :     return estimation_manager_max_z;
+    6756             :   } else {
+    6757         789 :     return safety_area_max_z;
+    6758             :   }
+    6759             : }
+    6760             : 
+    6761             : //}
+    6762             : 
+    6763             : /* //{ getMinZ() */
+    6764             : 
+    6765       11661 : double ControlManager::getMinZ(const std::string& frame_id) {
+    6766             : 
+    6767       11661 :   if (!use_safety_area_) {
+    6768           0 :     return std::numeric_limits<double>::lowest();
+    6769             :   }
+    6770             : 
+    6771       23322 :   geometry_msgs::PointStamped point;
+    6772             : 
+    6773       11661 :   point.header.frame_id = _safety_area_vertical_frame_;
+    6774       11661 :   point.point.x         = 0;
+    6775       11661 :   point.point.y         = 0;
+    6776       11661 :   point.point.z         = _safety_area_min_z_;
+    6777             : 
+    6778       23322 :   auto ret = transformer_->transformSingle(point, frame_id);
+    6779             : 
+    6780       11661 :   if (!ret) {
+    6781           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: SafetyArea: Could not transform safety area's min_z to '%s'", frame_id.c_str());
+    6782           0 :     return std::numeric_limits<double>::lowest();
+    6783             :   }
+    6784             : 
+    6785       11661 :   return ret->point.z;
+    6786             : }
+    6787             : 
+    6788             : //}
+    6789             : 
+    6790             : // | --------------------- obstacle bumper -------------------- |
+    6791             : 
+    6792             : /* bumperPushFromObstacle() //{ */
+    6793             : 
+    6794         320 : void ControlManager::bumperPushFromObstacle(void) {
+    6795             : 
+    6796             :   // | --------------- fabricate the min distances -------------- |
+    6797             : 
+    6798         320 :   double min_distance_horizontal = _bumper_horizontal_distance_;
+    6799         320 :   double min_distance_vertical   = _bumper_vertical_distance_;
+    6800             : 
+    6801         320 :   if (_bumper_horizontal_derive_from_dynamics_ || _bumper_vertical_derive_from_dynamics_) {
+    6802             : 
+    6803         320 :     auto constraints = mrs_lib::get_mutexed(mutex_constraints_, current_constraints_);
+    6804             : 
+    6805         320 :     if (_bumper_horizontal_derive_from_dynamics_) {
+    6806             : 
+    6807         320 :       const double horizontal_t_stop    = constraints.constraints.horizontal_speed / constraints.constraints.horizontal_acceleration;
+    6808         320 :       const double horizontal_stop_dist = (horizontal_t_stop * constraints.constraints.horizontal_speed) / 2.0;
+    6809             : 
+    6810         320 :       min_distance_horizontal += 1.5 * horizontal_stop_dist;
+    6811             :     }
+    6812             : 
+    6813         320 :     if (_bumper_vertical_derive_from_dynamics_) {
+    6814             : 
+    6815             : 
+    6816             :       // larger from the two accelerations
+    6817         640 :       const double vert_acc = constraints.constraints.vertical_ascending_acceleration > constraints.constraints.vertical_descending_acceleration
+    6818         320 :                                   ? constraints.constraints.vertical_ascending_acceleration
+    6819             :                                   : constraints.constraints.vertical_descending_acceleration;
+    6820             : 
+    6821             :       // larger from the two speeds
+    6822         640 :       const double vert_speed = constraints.constraints.vertical_ascending_speed > constraints.constraints.vertical_descending_speed
+    6823         320 :                                     ? constraints.constraints.vertical_ascending_speed
+    6824             :                                     : constraints.constraints.vertical_descending_speed;
+    6825             : 
+    6826         320 :       const double vertical_t_stop    = vert_speed / vert_acc;
+    6827         320 :       const double vertical_stop_dist = (vertical_t_stop * vert_speed) / 2.0;
+    6828             : 
+    6829         320 :       min_distance_vertical += 1.5 * vertical_stop_dist;
+    6830             :     }
+    6831             :   }
+    6832             : 
+    6833             :   // | ----------------------------  ---------------------------- |
+    6834             : 
+    6835             :   // copy member variables
+    6836         320 :   mrs_msgs::ObstacleSectorsConstPtr bumper_data = sh_bumper_.getMsg();
+    6837         320 :   auto                              uav_state   = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    6838             : 
+    6839         320 :   double sector_size = TAU / double(bumper_data->n_horizontal_sectors);
+    6840             : 
+    6841         320 :   double direction          = 0;
+    6842         320 :   double repulsion_distance = std::numeric_limits<double>::max();
+    6843             : 
+    6844         320 :   bool horizontal_collision_detected = false;
+    6845         320 :   bool vertical_collision_detected   = false;
+    6846             : 
+    6847         320 :   double min_horizontal_sector_distance = std::numeric_limits<double>::max();
+    6848         320 :   size_t min_sector_id                  = 0;
+    6849             : 
+    6850        2880 :   for (unsigned long i = 0; i < bumper_data->n_horizontal_sectors; i++) {
+    6851             : 
+    6852        2560 :     if (bumper_data->sectors[i] < 0) {
+    6853           0 :       continue;
+    6854             :     }
+    6855             : 
+    6856        2560 :     if (bumper_data->sectors[i] < min_horizontal_sector_distance) {
+    6857         320 :       min_horizontal_sector_distance = bumper_data->sectors[i];
+    6858         320 :       min_sector_id                  = i;
+    6859             :     }
+    6860             :   }
+    6861             : 
+    6862             :   // if the sector is under the threshold distance
+    6863         320 :   if (min_horizontal_sector_distance < min_distance_horizontal) {
+    6864             : 
+    6865             :     // get the desired direction of motion
+    6866         120 :     double oposite_direction  = double(min_sector_id) * sector_size + M_PI;
+    6867         120 :     int    oposite_sector_idx = bumperGetSectorId(cos(oposite_direction), sin(oposite_direction), 0);
+    6868             : 
+    6869             :     // get the id of the oposite sector
+    6870         120 :     direction = oposite_direction;
+    6871             : 
+    6872         120 :     ROS_WARN_THROTTLE(1.0, "[ControlManager]: Bumper: found potential collision (sector %lu vs. %d), obstacle distance: %.2f, repulsing", min_sector_id,
+    6873             :                       oposite_sector_idx, bumper_data->sectors[min_sector_id]);
+    6874             : 
+    6875         120 :     repulsion_distance = min_distance_horizontal + _bumper_horizontal_overshoot_ - bumper_data->sectors[min_sector_id];
+    6876             : 
+    6877         120 :     horizontal_collision_detected = true;
+    6878             :   }
+    6879             : 
+    6880         320 :   double vertical_repulsion_distance = 0;
+    6881             : 
+    6882             :   // check for vertical collision down
+    6883         320 :   if (bumper_data->sectors[bumper_data->n_horizontal_sectors] > 0 && bumper_data->sectors[bumper_data->n_horizontal_sectors] <= min_distance_vertical) {
+    6884             : 
+    6885           0 :     ROS_INFO_THROTTLE(1.0, "[ControlManager]: Bumper: potential collision below");
+    6886           0 :     vertical_collision_detected = true;
+    6887           0 :     vertical_repulsion_distance = min_distance_vertical - bumper_data->sectors[bumper_data->n_horizontal_sectors];
+    6888             :   }
+    6889             : 
+    6890             :   // check for vertical collision up
+    6891         320 :   if (bumper_data->sectors[bumper_data->n_horizontal_sectors + 1] > 0 && bumper_data->sectors[bumper_data->n_horizontal_sectors + 1] <= min_distance_vertical) {
+    6892             : 
+    6893           0 :     ROS_INFO_THROTTLE(1.0, "[ControlManager]: Bumper: potential collision above");
+    6894           0 :     vertical_collision_detected = true;
+    6895           0 :     vertical_repulsion_distance = -(min_distance_vertical - bumper_data->sectors[bumper_data->n_horizontal_sectors + 1]);
+    6896             :   }
+    6897             : 
+    6898             :   // if potential collision was detected and we should start the repulsing_
+    6899         320 :   if (horizontal_collision_detected || vertical_collision_detected) {
+    6900             : 
+    6901         120 :     if (!bumper_repulsing_) {
+    6902             : 
+    6903           1 :       if (_bumper_switch_tracker_) {
+    6904             : 
+    6905           1 :         auto        active_tracker_idx  = mrs_lib::get_mutexed(mutex_tracker_list_, active_tracker_idx_);
+    6906           2 :         std::string active_tracker_name = _tracker_names_[active_tracker_idx];
+    6907             : 
+    6908             :         // remember the previously active tracker
+    6909           1 :         bumper_previous_tracker_ = active_tracker_name;
+    6910             : 
+    6911           1 :         if (active_tracker_name != _bumper_tracker_name_) {
+    6912             : 
+    6913           0 :           switchTracker(_bumper_tracker_name_);
+    6914             :         }
+    6915             :       }
+    6916             : 
+    6917           1 :       if (_bumper_switch_controller_) {
+    6918             : 
+    6919           1 :         auto        active_controller_idx  = mrs_lib::get_mutexed(mutex_controller_list_, active_controller_idx_);
+    6920           2 :         std::string active_controller_name = _controller_names_[active_controller_idx];
+    6921             : 
+    6922             :         // remember the previously active controller
+    6923           1 :         bumper_previous_controller_ = active_controller_name;
+    6924             : 
+    6925           1 :         if (active_controller_name != _bumper_controller_name_) {
+    6926             : 
+    6927           1 :           switchController(_bumper_controller_name_);
+    6928             :         }
+    6929             :       }
+    6930             :     }
+    6931             : 
+    6932         120 :     bumper_repulsing_ = true;
+    6933             : 
+    6934         120 :     callbacks_enabled_ = false;
+    6935             : 
+    6936           0 :     mrs_msgs::ReferenceSrvResponse::ConstPtr tracker_response;
+    6937             : 
+    6938         120 :     std_srvs::SetBoolRequest req_enable_callbacks;
+    6939             : 
+    6940             :     // create the reference in the fcu_untilted frame
+    6941         120 :     mrs_msgs::ReferenceStamped reference_fcu_untilted;
+    6942             : 
+    6943         120 :     reference_fcu_untilted.header.frame_id = "fcu_untilted";
+    6944             : 
+    6945         120 :     if (horizontal_collision_detected) {
+    6946         120 :       reference_fcu_untilted.reference.position.x = cos(direction) * repulsion_distance;
+    6947         120 :       reference_fcu_untilted.reference.position.y = sin(direction) * repulsion_distance;
+    6948             :     } else {
+    6949           0 :       reference_fcu_untilted.reference.position.x = 0;
+    6950           0 :       reference_fcu_untilted.reference.position.y = 0;
+    6951             :     }
+    6952             : 
+    6953         120 :     reference_fcu_untilted.reference.heading = 0;
+    6954             : 
+    6955         120 :     if (vertical_collision_detected) {
+    6956           0 :       reference_fcu_untilted.reference.position.z = vertical_repulsion_distance;
+    6957             :     } else {
+    6958         120 :       reference_fcu_untilted.reference.position.z = 0;
+    6959             :     }
+    6960             : 
+    6961             :     {
+    6962         120 :       std::scoped_lock lock(mutex_tracker_list_);
+    6963             : 
+    6964             :       // transform the reference into the currently used frame
+    6965             :       // this is under the mutex_tracker_list since we don't won't the odometry switch to happen
+    6966             :       // to the tracker before we actually call the goto service
+    6967             : 
+    6968         120 :       auto ret = transformer_->transformSingle(reference_fcu_untilted, uav_state.header.frame_id);
+    6969             : 
+    6970         120 :       if (!ret) {
+    6971           0 :         ROS_WARN_THROTTLE(1.0, "[ControlManager]: Bumper: bumper reference could not be transformed");
+    6972           0 :         return;
+    6973             :       }
+    6974             : 
+    6975         120 :       reference_fcu_untilted = ret.value();
+    6976             : 
+    6977             :       // copy the reference into the service type message
+    6978         120 :       mrs_msgs::ReferenceSrvRequest req_goto_out;
+    6979         120 :       req_goto_out.reference = reference_fcu_untilted.reference;
+    6980             : 
+    6981             :       // disable callbacks of all trackers
+    6982         120 :       req_enable_callbacks.data = false;
+    6983         840 :       for (size_t i = 0; i < tracker_list_.size(); i++) {
+    6984         720 :         tracker_list_[i]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    6985             :       }
+    6986             : 
+    6987             :       // enable the callbacks for the active tracker
+    6988         120 :       req_enable_callbacks.data = true;
+    6989         120 :       tracker_list_[active_tracker_idx_]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    6990             : 
+    6991             :       // call the goto
+    6992         360 :       tracker_response = tracker_list_[active_tracker_idx_]->setReference(
+    6993         360 :           mrs_msgs::ReferenceSrvRequest::ConstPtr(std::make_unique<mrs_msgs::ReferenceSrvRequest>(req_goto_out)));
+    6994             : 
+    6995             :       // disable the callbacks back again
+    6996         120 :       req_enable_callbacks.data = false;
+    6997         120 :       tracker_list_[active_tracker_idx_]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    6998             :     }
+    6999             :   }
+    7000             : 
+    7001             :   // if repulsing_ and the distance is safe once again
+    7002         320 :   if (bumper_repulsing_ && !horizontal_collision_detected && !vertical_collision_detected) {
+    7003             : 
+    7004           1 :     ROS_INFO_THROTTLE(1.0, "[ControlManager]: Bumper: no more collision, stopping repulsion");
+    7005             : 
+    7006           1 :     if (_bumper_switch_tracker_) {
+    7007             : 
+    7008           1 :       auto        active_tracker_idx  = mrs_lib::get_mutexed(mutex_tracker_list_, active_tracker_idx_);
+    7009           2 :       std::string active_tracker_name = _tracker_names_[active_tracker_idx];
+    7010             : 
+    7011           1 :       if (active_tracker_name != bumper_previous_tracker_) {
+    7012             : 
+    7013           0 :         switchTracker(bumper_previous_tracker_);
+    7014             :       }
+    7015             :     }
+    7016             : 
+    7017           1 :     if (_bumper_switch_controller_) {
+    7018             : 
+    7019           1 :       auto        active_controller_idx  = mrs_lib::get_mutexed(mutex_controller_list_, active_controller_idx_);
+    7020           2 :       std::string active_controller_name = _controller_names_[active_controller_idx];
+    7021             : 
+    7022           1 :       if (active_controller_name != bumper_previous_controller_) {
+    7023             : 
+    7024           1 :         switchController(bumper_previous_controller_);
+    7025             :       }
+    7026             :     }
+    7027             : 
+    7028           1 :     std_srvs::SetBoolRequest req_enable_callbacks;
+    7029             : 
+    7030             :     {
+    7031           2 :       std::scoped_lock lock(mutex_tracker_list_);
+    7032             : 
+    7033             :       // enable callbacks of all trackers
+    7034           1 :       req_enable_callbacks.data = true;
+    7035           7 :       for (size_t i = 0; i < tracker_list_.size(); i++) {
+    7036           6 :         tracker_list_[i]->enableCallbacks(std_srvs::SetBoolRequest::ConstPtr(std::make_unique<std_srvs::SetBoolRequest>(req_enable_callbacks)));
+    7037             :       }
+    7038             :     }
+    7039             : 
+    7040           1 :     callbacks_enabled_ = true;
+    7041             : 
+    7042           1 :     bumper_repulsing_ = false;
+    7043             :   }
+    7044             : }
+    7045             : 
+    7046             : //}
+    7047             : 
+    7048             : /* bumperGetSectorId() //{ */
+    7049             : 
+    7050         120 : int ControlManager::bumperGetSectorId(const double& x, const double& y, [[maybe_unused]] const double& z) {
+    7051             : 
+    7052             :   // copy member variables
+    7053         120 :   mrs_msgs::ObstacleSectorsConstPtr bumper_data = sh_bumper_.getMsg();
+    7054             : 
+    7055             :   // heading of the point in drone frame
+    7056         120 :   double point_heading_horizontal = atan2(y, x);
+    7057             : 
+    7058         120 :   point_heading_horizontal += TAU;
+    7059             : 
+    7060             :   // if point_heading_horizontal is greater then 2*M_PI mod it
+    7061         120 :   if (fabs(point_heading_horizontal) >= TAU) {
+    7062         120 :     point_heading_horizontal = fmod(point_heading_horizontal, TAU);
+    7063             :   }
+    7064             : 
+    7065             :   // heading of the right edge of the first sector
+    7066         120 :   double sector_size = TAU / double(bumper_data->n_horizontal_sectors);
+    7067             : 
+    7068             :   // calculate the idx
+    7069         120 :   int idx = floor((point_heading_horizontal + (sector_size / 2.0)) / sector_size);
+    7070             : 
+    7071         120 :   if (idx > int(bumper_data->n_horizontal_sectors) - 1) {
+    7072           0 :     idx -= bumper_data->n_horizontal_sectors;
+    7073             :   }
+    7074             : 
+    7075         240 :   return idx;
+    7076             : }
+    7077             : 
+    7078             : //}
+    7079             : 
+    7080             : // | ------------------------- safety ------------------------- |
+    7081             : 
+    7082             : /* //{ changeLandingState() */
+    7083             : 
+    7084          12 : void ControlManager::changeLandingState(LandingStates_t new_state) {
+    7085             : 
+    7086             :   // copy member variables
+    7087          24 :   auto last_control_output = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    7088             : 
+    7089             :   {
+    7090          12 :     std::scoped_lock lock(mutex_landing_state_machine_);
+    7091             : 
+    7092          12 :     previous_state_landing_ = current_state_landing_;
+    7093          12 :     current_state_landing_  = new_state;
+    7094             :   }
+    7095             : 
+    7096          12 :   switch (current_state_landing_) {
+    7097             : 
+    7098           4 :     case IDLE_STATE:
+    7099           4 :       break;
+    7100           8 :     case LANDING_STATE: {
+    7101             : 
+    7102           8 :       ROS_DEBUG("[ControlManager]: starting eland timer");
+    7103           8 :       timer_eland_.start();
+    7104           8 :       ROS_DEBUG("[ControlManager]: eland timer started");
+    7105           8 :       eland_triggered_ = true;
+    7106           8 :       bumper_enabled_  = false;
+    7107             : 
+    7108           8 :       landing_uav_mass_ = getMass();
+    7109             :     }
+    7110             : 
+    7111           8 :     break;
+    7112             :   }
+    7113             : 
+    7114          12 :   ROS_INFO("[ControlManager]: switching emergency landing state %s -> %s", state_names[previous_state_landing_], state_names[current_state_landing_]);
+    7115          12 : }
+    7116             : 
+    7117             : //}
+    7118             : 
+    7119             : /* hover() //{ */
+    7120             : 
+    7121           0 : std::tuple<bool, std::string> ControlManager::hover(void) {
+    7122           0 :   if (!is_initialized_)
+    7123           0 :     return std::tuple(false, "the ControlManager is not initialized");
+    7124             : 
+    7125           0 :   if (eland_triggered_)
+    7126           0 :     return std::tuple(false, "cannot hover, eland already triggered");
+    7127             : 
+    7128           0 :   if (failsafe_triggered_)
+    7129           0 :     return std::tuple(false, "cannot hover, failsafe already triggered");
+    7130             : 
+    7131             :   {
+    7132           0 :     std::scoped_lock lock(mutex_tracker_list_);
+    7133             : 
+    7134           0 :     std_srvs::TriggerResponse::ConstPtr response;
+    7135           0 :     std_srvs::TriggerRequest            request;
+    7136             : 
+    7137           0 :     response = tracker_list_[active_tracker_idx_]->hover(std_srvs::TriggerRequest::ConstPtr(std::make_unique<std_srvs::TriggerRequest>(request)));
+    7138             : 
+    7139           0 :     if (response != std_srvs::TriggerResponse::Ptr()) {
+    7140             : 
+    7141           0 :       return std::tuple(response->success, response->message);
+    7142             : 
+    7143             :     } else {
+    7144             : 
+    7145           0 :       std::stringstream ss;
+    7146           0 :       ss << "the tracker '" << _tracker_names_[active_tracker_idx_] << "' does not implement the 'hover()' function!";
+    7147             : 
+    7148           0 :       return std::tuple(false, ss.str());
+    7149             :     }
+    7150             :   }
+    7151             : }
+    7152             : 
+    7153             : //}
+    7154             : 
+    7155             : /* //{ ehover() */
+    7156             : 
+    7157           4 : std::tuple<bool, std::string> ControlManager::ehover(void) {
+    7158             : 
+    7159           4 :   if (!is_initialized_)
+    7160           0 :     return std::tuple(false, "the ControlManager is not initialized");
+    7161             : 
+    7162           4 :   if (eland_triggered_)
+    7163           0 :     return std::tuple(false, "cannot ehover, eland already triggered");
+    7164             : 
+    7165           4 :   if (failsafe_triggered_)
+    7166           0 :     return std::tuple(false, "cannot ehover, failsafe already triggered");
+    7167             : 
+    7168             :   // copy the member variables
+    7169           8 :   auto last_control_output = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    7170           4 :   auto active_tracker_idx  = mrs_lib::get_mutexed(mutex_tracker_list_, active_tracker_idx_);
+    7171             : 
+    7172           4 :   if (active_tracker_idx == _null_tracker_idx_) {
+    7173             : 
+    7174           0 :     std::stringstream ss;
+    7175           0 :     ss << "can not trigger ehover while not flying";
+    7176           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7177             : 
+    7178           0 :     return std::tuple(false, ss.str());
+    7179             :   }
+    7180             : 
+    7181           4 :   ungripSrv();
+    7182             : 
+    7183             :   {
+    7184             : 
+    7185           4 :     auto [success, message] = switchTracker(_ehover_tracker_name_);
+    7186             : 
+    7187             :     // check if the tracker was successfully switched
+    7188             :     // this is vital, that is the core of the hover
+    7189           4 :     if (!success) {
+    7190             : 
+    7191           0 :       std::stringstream ss;
+    7192           0 :       ss << "error during switching to ehover tracker: '" << message << "'";
+    7193           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7194             : 
+    7195           0 :       return std::tuple(success, ss.str());
+    7196             :     }
+    7197             :   }
+    7198             : 
+    7199             :   {
+    7200           8 :     auto [success, message] = switchController(_eland_controller_name_);
+    7201             : 
+    7202             :     // check if the controller was successfully switched
+    7203             :     // this is not vital, we can continue without that
+    7204           4 :     if (!success) {
+    7205             : 
+    7206           0 :       std::stringstream ss;
+    7207           0 :       ss << "error during switching to ehover controller: '" << message << "'";
+    7208           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7209             :     }
+    7210             :   }
+    7211             : 
+    7212           4 :   std::stringstream ss;
+    7213           4 :   ss << "ehover activated";
+    7214           4 :   ROS_INFO_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7215             : 
+    7216           4 :   callbacks_enabled_ = false;
+    7217             : 
+    7218           4 :   return std::tuple(true, ss.str());
+    7219             : }
+    7220             : 
+    7221             : //}
+    7222             : 
+    7223             : /* eland() //{ */
+    7224             : 
+    7225           8 : std::tuple<bool, std::string> ControlManager::eland(void) {
+    7226             : 
+    7227           8 :   if (!is_initialized_)
+    7228           0 :     return std::tuple(false, "the ControlManager is not initialized");
+    7229             : 
+    7230           8 :   if (eland_triggered_)
+    7231           0 :     return std::tuple(false, "cannot eland, eland already triggered");
+    7232             : 
+    7233           8 :   if (failsafe_triggered_)
+    7234           0 :     return std::tuple(false, "cannot eland, failsafe already triggered");
+    7235             : 
+    7236             :   // copy member variables
+    7237          16 :   auto last_control_output = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    7238           8 :   auto active_tracker_idx  = mrs_lib::get_mutexed(mutex_tracker_list_, active_tracker_idx_);
+    7239             : 
+    7240           8 :   if (active_tracker_idx == _null_tracker_idx_) {
+    7241             : 
+    7242           0 :     std::stringstream ss;
+    7243           0 :     ss << "can not trigger eland while not flying";
+    7244           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7245             : 
+    7246           0 :     return std::tuple(false, ss.str());
+    7247             :   }
+    7248             : 
+    7249           8 :   if (_rc_emergency_handoff_) {
+    7250             : 
+    7251           0 :     toggleOutput(false);
+    7252             : 
+    7253           0 :     return std::tuple(true, "RC emergency handoff is ON, disabling output");
+    7254             :   }
+    7255             : 
+    7256             :   {
+    7257           8 :     auto [success, message] = switchTracker(_ehover_tracker_name_);
+    7258             : 
+    7259             :     // check if the tracker was successfully switched
+    7260             :     // this is vital
+    7261           8 :     if (!success) {
+    7262             : 
+    7263           0 :       std::stringstream ss;
+    7264           0 :       ss << "error during switching to eland tracker: '" << message << "'";
+    7265           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7266             : 
+    7267           0 :       return std::tuple(success, ss.str());
+    7268             :     }
+    7269             :   }
+    7270             : 
+    7271             :   {
+    7272          16 :     auto [success, message] = switchController(_eland_controller_name_);
+    7273             : 
+    7274             :     // check if the controller was successfully switched
+    7275             :     // this is not vital, we can continue without it
+    7276           8 :     if (!success) {
+    7277             : 
+    7278           0 :       std::stringstream ss;
+    7279           0 :       ss << "error during switching to eland controller: '" << message << "'";
+    7280           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7281             :     }
+    7282             :   }
+    7283             : 
+    7284             :   // | ----------------- call the eland service ----------------- |
+    7285             : 
+    7286           8 :   std::stringstream ss;
+    7287             :   bool              success;
+    7288             : 
+    7289           8 :   if (elandSrv()) {
+    7290             : 
+    7291           8 :     changeLandingState(LANDING_STATE);
+    7292             : 
+    7293           8 :     odometryCallbacksSrv(false);
+    7294             : 
+    7295           8 :     ss << "eland activated";
+    7296           8 :     ROS_INFO_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7297             : 
+    7298           8 :     success = true;
+    7299             : 
+    7300           8 :     callbacks_enabled_ = false;
+    7301             : 
+    7302             :   } else {
+    7303             : 
+    7304           0 :     ss << "error during activation of eland";
+    7305           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7306             : 
+    7307           0 :     success = false;
+    7308             :   }
+    7309             : 
+    7310          16 :   return std::tuple(success, ss.str());
+    7311             : }
+    7312             : 
+    7313             : //}
+    7314             : 
+    7315             : /* failsafe() //{ */
+    7316             : 
+    7317           8 : std::tuple<bool, std::string> ControlManager::failsafe(void) {
+    7318             : 
+    7319             :   // copy member variables
+    7320          16 :   auto last_control_output   = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    7321           8 :   auto active_controller_idx = mrs_lib::get_mutexed(mutex_controller_list_, active_controller_idx_);
+    7322           8 :   auto active_tracker_idx    = mrs_lib::get_mutexed(mutex_tracker_list_, active_tracker_idx_);
+    7323             : 
+    7324           8 :   if (!is_initialized_) {
+    7325           0 :     return std::tuple(false, "the ControlManager is not initialized");
+    7326             :   }
+    7327             : 
+    7328           8 :   if (failsafe_triggered_) {
+    7329           0 :     return std::tuple(false, "cannot, failsafe already triggered");
+    7330             :   }
+    7331             : 
+    7332           8 :   if (active_tracker_idx == _null_tracker_idx_) {
+    7333             : 
+    7334           0 :     std::stringstream ss;
+    7335           0 :     ss << "can not trigger failsafe while not flying";
+    7336           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7337           0 :     return std::tuple(false, ss.str());
+    7338             :   }
+    7339             : 
+    7340           8 :   if (_rc_emergency_handoff_) {
+    7341             : 
+    7342           0 :     toggleOutput(false);
+    7343             : 
+    7344           0 :     return std::tuple(true, "RC emergency handoff is ON, disabling output");
+    7345             :   }
+    7346             : 
+    7347           8 :   if (getLowestOuput(_hw_api_inputs_) == POSITION) {
+    7348           0 :     return eland();
+    7349             :   }
+    7350             : 
+    7351           8 :   if (_parachute_enabled_) {
+    7352             : 
+    7353           0 :     auto [success, message] = deployParachute();
+    7354             : 
+    7355           0 :     if (success) {
+    7356             : 
+    7357           0 :       std::stringstream ss;
+    7358           0 :       ss << "failsafe activated (parachute): '" << message << "'";
+    7359           0 :       ROS_INFO_STREAM("[ControlManager]: " << ss.str());
+    7360             : 
+    7361           0 :       return std::tuple(true, ss.str());
+    7362             : 
+    7363             :     } else {
+    7364             : 
+    7365           0 :       std::stringstream ss;
+    7366           0 :       ss << "could not deploy parachute: '" << message << "', continuing with normal failsafe";
+    7367           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7368             :     }
+    7369             :   }
+    7370             : 
+    7371           8 :   if (_failsafe_controller_idx_ != active_controller_idx) {
+    7372             : 
+    7373             :     try {
+    7374             : 
+    7375          16 :       std::scoped_lock lock(mutex_controller_list_);
+    7376             : 
+    7377           8 :       ROS_INFO("[ControlManager]: activating the controller '%s'", _failsafe_controller_name_.c_str());
+    7378           8 :       controller_list_[_failsafe_controller_idx_]->activate(last_control_output);
+    7379             : 
+    7380             :       {
+    7381          16 :         std::scoped_lock lock(mutex_controller_tracker_switch_time_);
+    7382             : 
+    7383             :         // update the time (used in failsafe)
+    7384           8 :         controller_tracker_switch_time_ = ros::Time::now();
+    7385             :       }
+    7386             : 
+    7387           8 :       failsafe_triggered_ = true;
+    7388           8 :       ROS_DEBUG("[ControlManager]: stopping eland timer");
+    7389           8 :       timer_eland_.stop();
+    7390           8 :       ROS_DEBUG("[ControlManager]: eland timer stopped");
+    7391             : 
+    7392           8 :       landing_uav_mass_ = getMass();
+    7393             : 
+    7394           8 :       eland_triggered_ = false;
+    7395           8 :       ROS_DEBUG("[ControlManager]: starting failsafe timer");
+    7396           8 :       timer_failsafe_.start();
+    7397           8 :       ROS_DEBUG("[ControlManager]: failsafe timer started");
+    7398             : 
+    7399           8 :       bumper_enabled_ = false;
+    7400             : 
+    7401           8 :       odometryCallbacksSrv(false);
+    7402             : 
+    7403           8 :       callbacks_enabled_ = false;
+    7404             : 
+    7405           8 :       ROS_INFO_THROTTLE(1.0, "[ControlManager]: the controller '%s' was activated", _failsafe_controller_name_.c_str());
+    7406             : 
+    7407             :       // super important, switch the active controller idx
+    7408             :       try {
+    7409           8 :         controller_list_[active_controller_idx_]->deactivate();
+    7410           8 :         active_controller_idx_ = _failsafe_controller_idx_;
+    7411             :       }
+    7412           0 :       catch (std::runtime_error& exrun) {
+    7413           0 :         ROS_ERROR_THROTTLE(1.0, "[ControlManager]: could not deactivate the controller '%s'", _controller_names_[active_controller_idx_].c_str());
+    7414             :       }
+    7415             :     }
+    7416           0 :     catch (std::runtime_error& exrun) {
+    7417           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: error during activation of the controller '%s'", _failsafe_controller_name_.c_str());
+    7418           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: exception: '%s'", exrun.what());
+    7419             :     }
+    7420             :   }
+    7421             : 
+    7422          16 :   return std::tuple(true, "failsafe activated");
+    7423             : }
+    7424             : 
+    7425             : //}
+    7426             : 
+    7427             : /* escalatingFailsafe() //{ */
+    7428             : 
+    7429         145 : std::tuple<bool, std::string> ControlManager::escalatingFailsafe(void) {
+    7430         290 :   std::stringstream ss;
+    7431             : 
+    7432         145 :   if ((ros::Time::now() - escalating_failsafe_time_).toSec() < _escalating_failsafe_timeout_) {
+    7433             : 
+    7434         137 :     ss << "too soon for escalating failsafe";
+    7435         137 :     ROS_WARN_STREAM_THROTTLE(0.1, "[ControlManager]: " << ss.str());
+    7436             : 
+    7437         137 :     return std::tuple(false, ss.str());
+    7438             :   }
+    7439             : 
+    7440           8 :   if (!output_enabled_) {
+    7441             : 
+    7442           0 :     ss << "not escalating failsafe, output is disabled";
+    7443           0 :     ROS_WARN_STREAM_THROTTLE(0.1, "[ControlManager]: " << ss.str());
+    7444             : 
+    7445           0 :     return std::tuple(false, ss.str());
+    7446             :   }
+    7447             : 
+    7448           8 :   ROS_WARN("[ControlManager]: escalating failsafe triggered");
+    7449             : 
+    7450           8 :   auto active_tracker_idx    = mrs_lib::get_mutexed(mutex_tracker_list_, active_tracker_idx_);
+    7451           8 :   auto active_controller_idx = mrs_lib::get_mutexed(mutex_controller_list_, active_controller_idx_);
+    7452             : 
+    7453          16 :   std::string active_tracker_name    = _tracker_names_[active_tracker_idx];
+    7454          16 :   std::string active_controller_name = _controller_names_[active_controller_idx];
+    7455             : 
+    7456           8 :   EscalatingFailsafeStates_t next_state = getNextEscFailsafeState();
+    7457             : 
+    7458           8 :   escalating_failsafe_time_ = ros::Time::now();
+    7459             : 
+    7460           8 :   switch (next_state) {
+    7461             : 
+    7462           0 :     case ESC_NONE_STATE: {
+    7463             : 
+    7464           0 :       ss << "escalating failsafe has run to impossible situation";
+    7465           0 :       ROS_ERROR_STREAM_THROTTLE(0.1, "[ControlManager]: " << ss.str());
+    7466             : 
+    7467           0 :       return std::tuple(false, "escalating failsafe has run to impossible situation");
+    7468             : 
+    7469             :       break;
+    7470             :     }
+    7471             : 
+    7472           2 :     case ESC_EHOVER_STATE: {
+    7473             : 
+    7474           2 :       ss << "escalating failsafe escalates to ehover";
+    7475           2 :       ROS_WARN_STREAM_THROTTLE(0.1, "[ControlManager]: " << ss.str());
+    7476             : 
+    7477           4 :       auto [success, message] = ehover();
+    7478             : 
+    7479           2 :       if (success) {
+    7480           2 :         state_escalating_failsafe_ = ESC_EHOVER_STATE;
+    7481             :       }
+    7482             : 
+    7483           2 :       return {success, message};
+    7484             : 
+    7485             :       break;
+    7486             :     }
+    7487             : 
+    7488           2 :     case ESC_ELAND_STATE: {
+    7489             : 
+    7490           2 :       ss << "escalating failsafe escalates to eland";
+    7491           2 :       ROS_WARN_STREAM_THROTTLE(0.1, "[ControlManager]: " << ss.str());
+    7492             : 
+    7493           4 :       auto [success, message] = eland();
+    7494             : 
+    7495           2 :       if (success) {
+    7496           2 :         state_escalating_failsafe_ = ESC_ELAND_STATE;
+    7497             :       }
+    7498             : 
+    7499           2 :       return {success, message};
+    7500             : 
+    7501             :       break;
+    7502             :     }
+    7503             : 
+    7504           2 :     case ESC_FAILSAFE_STATE: {
+    7505             : 
+    7506           2 :       escalating_failsafe_time_ = ros::Time::now();
+    7507             : 
+    7508           2 :       ss << "escalating failsafe escalates to failsafe";
+    7509           2 :       ROS_WARN_STREAM_THROTTLE(0.1, "[ControlManager]: " << ss.str());
+    7510             : 
+    7511           4 :       auto [success, message] = failsafe();
+    7512             : 
+    7513           2 :       if (success) {
+    7514           2 :         state_escalating_failsafe_ = ESC_FINISHED_STATE;
+    7515             :       }
+    7516             : 
+    7517           2 :       return {success, message};
+    7518             : 
+    7519             :       break;
+    7520             :     }
+    7521             : 
+    7522           2 :     case ESC_FINISHED_STATE: {
+    7523             : 
+    7524           2 :       escalating_failsafe_time_ = ros::Time::now();
+    7525             : 
+    7526           2 :       ss << "escalating failsafe has nothing more to do";
+    7527           2 :       ROS_WARN_STREAM_THROTTLE(0.1, "[ControlManager]: " << ss.str());
+    7528             : 
+    7529           4 :       return std::tuple(false, "escalating failsafe has nothing more to do");
+    7530             : 
+    7531             :       break;
+    7532             :     }
+    7533             : 
+    7534           0 :     default: {
+    7535             : 
+    7536           0 :       break;
+    7537             :     }
+    7538             :   }
+    7539             : 
+    7540           0 :   ROS_ERROR("[ControlManager]: escalatingFailsafe() reached the final return, this should not happen!");
+    7541             : 
+    7542           0 :   return std::tuple(false, "escalating failsafe exception");
+    7543             : }
+    7544             : 
+    7545             : //}
+    7546             : 
+    7547             : /* getNextEscFailsafeState() //{ */
+    7548             : 
+    7549           8 : EscalatingFailsafeStates_t ControlManager::getNextEscFailsafeState(void) {
+    7550           8 :   EscalatingFailsafeStates_t current_state = state_escalating_failsafe_;
+    7551             : 
+    7552           8 :   switch (current_state) {
+    7553             : 
+    7554           2 :     case ESC_FINISHED_STATE: {
+    7555             : 
+    7556           2 :       return ESC_FINISHED_STATE;
+    7557             : 
+    7558             :       break;
+    7559             :     }
+    7560             : 
+    7561           2 :     case ESC_NONE_STATE: {
+    7562             : 
+    7563           2 :       if (_escalating_failsafe_ehover_) {
+    7564           2 :         return ESC_EHOVER_STATE;
+    7565           0 :       } else if (_escalating_failsafe_eland_) {
+    7566           0 :         return ESC_ELAND_STATE;
+    7567           0 :       } else if (_escalating_failsafe_failsafe_) {
+    7568           0 :         return ESC_FAILSAFE_STATE;
+    7569             :       } else {
+    7570           0 :         return ESC_FINISHED_STATE;
+    7571             :       }
+    7572             : 
+    7573             :       break;
+    7574             :     }
+    7575             : 
+    7576           2 :     case ESC_EHOVER_STATE: {
+    7577             : 
+    7578           2 :       if (_escalating_failsafe_eland_) {
+    7579           2 :         return ESC_ELAND_STATE;
+    7580           0 :       } else if (_escalating_failsafe_failsafe_) {
+    7581           0 :         return ESC_FAILSAFE_STATE;
+    7582             :       } else {
+    7583           0 :         return ESC_FINISHED_STATE;
+    7584             :       }
+    7585             : 
+    7586             :       break;
+    7587             :     }
+    7588             : 
+    7589           2 :     case ESC_ELAND_STATE: {
+    7590             : 
+    7591           2 :       if (_escalating_failsafe_failsafe_) {
+    7592           2 :         return ESC_FAILSAFE_STATE;
+    7593             :       } else {
+    7594           0 :         return ESC_FINISHED_STATE;
+    7595             :       }
+    7596             : 
+    7597             :       break;
+    7598             :     }
+    7599             : 
+    7600           0 :     case ESC_FAILSAFE_STATE: {
+    7601             : 
+    7602           0 :       return ESC_FINISHED_STATE;
+    7603             : 
+    7604             :       break;
+    7605             :     }
+    7606             :   }
+    7607             : 
+    7608           0 :   ROS_ERROR("[ControlManager]: getNextEscFailsafeState() reached the final return, this should not happen!");
+    7609             : 
+    7610           0 :   return ESC_NONE_STATE;
+    7611             : }
+    7612             : 
+    7613             : //}
+    7614             : 
+    7615             : // | ------------------- trajectory tracking ------------------ |
+    7616             : 
+    7617             : /* startTrajectoryTracking() //{ */
+    7618             : 
+    7619           1 : std::tuple<bool, std::string> ControlManager::startTrajectoryTracking(void) {
+    7620           1 :   if (!is_initialized_)
+    7621           0 :     return std::tuple(false, "the ControlManager is not initialized");
+    7622             : 
+    7623             :   {
+    7624           2 :     std::scoped_lock lock(mutex_tracker_list_);
+    7625             : 
+    7626           1 :     std_srvs::TriggerResponse::ConstPtr response;
+    7627           1 :     std_srvs::TriggerRequest            request;
+    7628             : 
+    7629             :     response =
+    7630           1 :         tracker_list_[active_tracker_idx_]->startTrajectoryTracking(std_srvs::TriggerRequest::ConstPtr(std::make_unique<std_srvs::TriggerRequest>(request)));
+    7631             : 
+    7632           1 :     if (response != std_srvs::TriggerResponse::Ptr()) {
+    7633             : 
+    7634           2 :       return std::tuple(response->success, response->message);
+    7635             : 
+    7636             :     } else {
+    7637             : 
+    7638           0 :       std::stringstream ss;
+    7639           0 :       ss << "the tracker '" << _tracker_names_[active_tracker_idx_] << "' does not implement the 'startTrajectoryTracking()' function!";
+    7640             : 
+    7641           0 :       return std::tuple(false, ss.str());
+    7642             :     }
+    7643             :   }
+    7644             : }
+    7645             : 
+    7646             : //}
+    7647             : 
+    7648             : /* stopTrajectoryTracking() //{ */
+    7649             : 
+    7650           0 : std::tuple<bool, std::string> ControlManager::stopTrajectoryTracking(void) {
+    7651           0 :   if (!is_initialized_)
+    7652           0 :     return std::tuple(false, "the ControlManager is not initialized");
+    7653             : 
+    7654             :   {
+    7655           0 :     std::scoped_lock lock(mutex_tracker_list_);
+    7656             : 
+    7657           0 :     std_srvs::TriggerResponse::ConstPtr response;
+    7658           0 :     std_srvs::TriggerRequest            request;
+    7659             : 
+    7660             :     response =
+    7661           0 :         tracker_list_[active_tracker_idx_]->stopTrajectoryTracking(std_srvs::TriggerRequest::ConstPtr(std::make_unique<std_srvs::TriggerRequest>(request)));
+    7662             : 
+    7663           0 :     if (response != std_srvs::TriggerResponse::Ptr()) {
+    7664             : 
+    7665           0 :       return std::tuple(response->success, response->message);
+    7666             : 
+    7667             :     } else {
+    7668             : 
+    7669           0 :       std::stringstream ss;
+    7670           0 :       ss << "the tracker '" << _tracker_names_[active_tracker_idx_] << "' does not implement the 'stopTrajectoryTracking()' function!";
+    7671             : 
+    7672           0 :       return std::tuple(false, ss.str());
+    7673             :     }
+    7674             :   }
+    7675             : }
+    7676             : 
+    7677             : //}
+    7678             : 
+    7679             : /* resumeTrajectoryTracking() //{ */
+    7680             : 
+    7681           0 : std::tuple<bool, std::string> ControlManager::resumeTrajectoryTracking(void) {
+    7682           0 :   if (!is_initialized_)
+    7683           0 :     return std::tuple(false, "the ControlManager is not initialized");
+    7684             : 
+    7685             :   {
+    7686           0 :     std::scoped_lock lock(mutex_tracker_list_);
+    7687             : 
+    7688           0 :     std_srvs::TriggerResponse::ConstPtr response;
+    7689           0 :     std_srvs::TriggerRequest            request;
+    7690             : 
+    7691             :     response =
+    7692           0 :         tracker_list_[active_tracker_idx_]->resumeTrajectoryTracking(std_srvs::TriggerRequest::ConstPtr(std::make_unique<std_srvs::TriggerRequest>(request)));
+    7693             : 
+    7694           0 :     if (response != std_srvs::TriggerResponse::Ptr()) {
+    7695             : 
+    7696           0 :       return std::tuple(response->success, response->message);
+    7697             : 
+    7698             :     } else {
+    7699             : 
+    7700           0 :       std::stringstream ss;
+    7701           0 :       ss << "the tracker '" << _tracker_names_[active_tracker_idx_] << "' does not implement the 'resumeTrajectoryTracking()' function!";
+    7702             : 
+    7703           0 :       return std::tuple(false, ss.str());
+    7704             :     }
+    7705             :   }
+    7706             : }
+    7707             : 
+    7708             : //}
+    7709             : 
+    7710             : /* gotoTrajectoryStart() //{ */
+    7711             : 
+    7712           1 : std::tuple<bool, std::string> ControlManager::gotoTrajectoryStart(void) {
+    7713           1 :   if (!is_initialized_)
+    7714           0 :     return std::tuple(false, "the ControlManager is not initialized");
+    7715             : 
+    7716             :   {
+    7717           2 :     std::scoped_lock lock(mutex_tracker_list_);
+    7718             : 
+    7719           1 :     std_srvs::TriggerResponse::ConstPtr response;
+    7720           1 :     std_srvs::TriggerRequest            request;
+    7721             : 
+    7722           1 :     response = tracker_list_[active_tracker_idx_]->gotoTrajectoryStart(std_srvs::TriggerRequest::ConstPtr(std::make_unique<std_srvs::TriggerRequest>(request)));
+    7723             : 
+    7724           1 :     if (response != std_srvs::TriggerResponse::Ptr()) {
+    7725             : 
+    7726           2 :       return std::tuple(response->success, response->message);
+    7727             : 
+    7728             :     } else {
+    7729             : 
+    7730           0 :       std::stringstream ss;
+    7731           0 :       ss << "the tracker '" << _tracker_names_[active_tracker_idx_] << "' does not implement the 'gotoTrajectoryStart()' function!";
+    7732             : 
+    7733           0 :       return std::tuple(false, ss.str());
+    7734             :     }
+    7735             :   }
+    7736             : }
+    7737             : 
+    7738             : //}
+    7739             : 
+    7740             : // | ----------------- service client wrappers ---------------- |
+    7741             : 
+    7742             : /* arming() //{ */
+    7743             : 
+    7744          18 : std::tuple<bool, std::string> ControlManager::arming(const bool input) {
+    7745          36 :   std::stringstream ss;
+    7746             : 
+    7747          18 :   if (input) {
+    7748             : 
+    7749           0 :     ss << "not allowed to arm using the ControlManager, maybe later when we don't do bugs";
+    7750           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7751           0 :     return std::tuple(false, ss.str());
+    7752             :   }
+    7753             : 
+    7754          18 :   if (!input && !isOffboard()) {
+    7755             : 
+    7756           0 :     ss << "can not disarm, not in OFFBOARD mode";
+    7757           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7758           0 :     return std::tuple(false, ss.str());
+    7759             :   }
+    7760             : 
+    7761          18 :   if (!input && _rc_emergency_handoff_) {
+    7762             : 
+    7763           0 :     toggleOutput(false);
+    7764             : 
+    7765           0 :     return std::tuple(true, "RC emergency handoff is ON, disabling output");
+    7766             :   }
+    7767             : 
+    7768          18 :   std_srvs::SetBool srv_out;
+    7769             : 
+    7770          18 :   srv_out.request.data = input ? 1 : 0;  // arm or disarm?
+    7771             : 
+    7772          18 :   ROS_INFO("[ControlManager]: calling for %s", input ? "arming" : "disarming");
+    7773             : 
+    7774          18 :   if (sch_arming_.call(srv_out)) {
+    7775             : 
+    7776          18 :     if (srv_out.response.success) {
+    7777             : 
+    7778          18 :       ss << "service call for " << (input ? "arming" : "disarming") << " was successful";
+    7779          18 :       ROS_INFO_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7780             : 
+    7781          18 :       if (!input) {
+    7782             : 
+    7783          18 :         toggleOutput(false);
+    7784             : 
+    7785          18 :         ROS_DEBUG("[ControlManager]: stopping failsafe timer");
+    7786          18 :         timer_failsafe_.stop();
+    7787          18 :         ROS_DEBUG("[ControlManager]: failsafe timer stopped");
+    7788             : 
+    7789          18 :         ROS_DEBUG("[ControlManager]: stopping the eland timer");
+    7790          18 :         timer_eland_.stop();
+    7791          18 :         ROS_DEBUG("[ControlManager]: eland timer stopped");
+    7792             :       }
+    7793             : 
+    7794             :     } else {
+    7795           0 :       ss << "service call for " << (input ? "arming" : "disarming") << " failed";
+    7796           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7797             :     }
+    7798             : 
+    7799             :   } else {
+    7800           0 :     ss << "calling for " << (input ? "arming" : "disarming") << " resulted in failure: '" << srv_out.response.message << "'";
+    7801           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[ControlManager]: " << ss.str());
+    7802             :   }
+    7803             : 
+    7804          36 :   return std::tuple(srv_out.response.success, ss.str());
+    7805             : }
+    7806             : 
+    7807             : //}
+    7808             : 
+    7809             : /* odometryCallbacksSrv() //{ */
+    7810             : 
+    7811          16 : void ControlManager::odometryCallbacksSrv(const bool input) {
+    7812          16 :   ROS_INFO("[ControlManager]: switching odometry callbacks to %s", input ? "ON" : "OFF");
+    7813             : 
+    7814          32 :   std_srvs::SetBool srv;
+    7815             : 
+    7816          16 :   srv.request.data = input;
+    7817             : 
+    7818          16 :   bool res = sch_set_odometry_callbacks_.call(srv);
+    7819             : 
+    7820          16 :   if (res) {
+    7821             : 
+    7822          16 :     if (!srv.response.success) {
+    7823           0 :       ROS_WARN("[ControlManager]: service call for toggle odometry callbacks returned: '%s'", srv.response.message.c_str());
+    7824             :     }
+    7825             : 
+    7826             :   } else {
+    7827           0 :     ROS_ERROR("[ControlManager]: service call for toggle odometry callbacks failed!");
+    7828             :   }
+    7829          16 : }
+    7830             : 
+    7831             : //}
+    7832             : 
+    7833             : /* elandSrv() //{ */
+    7834             : 
+    7835           8 : bool ControlManager::elandSrv(void) {
+    7836           8 :   ROS_INFO("[ControlManager]: calling for eland");
+    7837             : 
+    7838          16 :   std_srvs::Trigger srv;
+    7839             : 
+    7840           8 :   bool res = sch_eland_.call(srv);
+    7841             : 
+    7842           8 :   if (res) {
+    7843             : 
+    7844           8 :     if (!srv.response.success) {
+    7845           0 :       ROS_WARN("[ControlManager]: service call for eland returned: '%s'", srv.response.message.c_str());
+    7846             :     }
+    7847             : 
+    7848           8 :     return srv.response.success;
+    7849             : 
+    7850             :   } else {
+    7851             : 
+    7852           0 :     ROS_ERROR("[ControlManager]: service call for eland failed!");
+    7853             : 
+    7854           0 :     return false;
+    7855             :   }
+    7856             : }
+    7857             : 
+    7858             : //}
+    7859             : 
+    7860             : /* parachuteSrv() //{ */
+    7861             : 
+    7862           0 : bool ControlManager::parachuteSrv(void) {
+    7863           0 :   ROS_INFO("[ControlManager]: calling for parachute deployment");
+    7864             : 
+    7865           0 :   std_srvs::Trigger srv;
+    7866             : 
+    7867           0 :   bool res = sch_parachute_.call(srv);
+    7868             : 
+    7869           0 :   if (res) {
+    7870             : 
+    7871           0 :     if (!srv.response.success) {
+    7872           0 :       ROS_WARN("[ControlManager]: service call for parachute deployment returned: '%s'", srv.response.message.c_str());
+    7873             :     }
+    7874             : 
+    7875           0 :     return srv.response.success;
+    7876             : 
+    7877             :   } else {
+    7878             : 
+    7879           0 :     ROS_ERROR("[ControlManager]: service call for parachute deployment failed!");
+    7880             : 
+    7881           0 :     return false;
+    7882             :   }
+    7883             : }
+    7884             : 
+    7885             : //}
+    7886             : 
+    7887             : /* ungripSrv() //{ */
+    7888             : 
+    7889          64 : void ControlManager::ungripSrv(void) {
+    7890         128 :   std_srvs::Trigger srv;
+    7891             : 
+    7892          64 :   bool res = sch_ungrip_.call(srv);
+    7893             : 
+    7894          64 :   if (res) {
+    7895             : 
+    7896           0 :     if (!srv.response.success) {
+    7897           0 :       ROS_DEBUG_THROTTLE(1.0, "[ControlManager]: service call for ungripping payload returned: '%s'", srv.response.message.c_str());
+    7898             :     }
+    7899             : 
+    7900             :   } else {
+    7901          64 :     ROS_DEBUG_THROTTLE(1.0, "[ControlManager]: service call for ungripping payload failed!");
+    7902             :   }
+    7903          64 : }
+    7904             : 
+    7905             : //}
+    7906             : 
+    7907             : // | ------------------------ routines ------------------------ |
+    7908             : 
+    7909             : /* toggleOutput() //{ */
+    7910             : 
+    7911         114 : void ControlManager::toggleOutput(const bool& input) {
+    7912             : 
+    7913         114 :   if (input == output_enabled_) {
+    7914           6 :     ROS_WARN_THROTTLE(0.1, "[ControlManager]: output is already %s", input ? "ON" : "OFF");
+    7915           6 :     return;
+    7916             :   }
+    7917             : 
+    7918         108 :   ROS_INFO("[ControlManager]: switching output %s", input ? "ON" : "OFF");
+    7919             : 
+    7920         108 :   output_enabled_ = input;
+    7921             : 
+    7922             :   // if switching output off, switch to NullTracker
+    7923         108 :   if (!output_enabled_) {
+    7924             : 
+    7925          20 :     ROS_INFO("[ControlManager]: switching to 'NullTracker' after switching output off");
+    7926             : 
+    7927          20 :     switchTracker(_null_tracker_name_);
+    7928             : 
+    7929          20 :     ROS_INFO_STREAM("[ControlManager]: switching to the controller '" << _eland_controller_name_ << "' after switching output off");
+    7930             : 
+    7931          20 :     switchController(_eland_controller_name_);
+    7932             : 
+    7933             :     // | --------- deactivate all trackers and controllers -------- |
+    7934             : 
+    7935         140 :     for (int i = 0; i < int(tracker_list_.size()); i++) {
+    7936             : 
+    7937         120 :       std::map<std::string, TrackerParams>::iterator it;
+    7938         120 :       it = trackers_.find(_tracker_names_[i]);
+    7939             : 
+    7940             :       try {
+    7941         120 :         ROS_INFO("[ControlManager]: deactivating the tracker '%s'", it->second.address.c_str());
+    7942         120 :         tracker_list_[i]->deactivate();
+    7943             :       }
+    7944           0 :       catch (std::runtime_error& ex) {
+    7945           0 :         ROS_ERROR("[ControlManager]: exception caught during tracker deactivation: '%s'", ex.what());
+    7946             :       }
+    7947             :     }
+    7948             : 
+    7949         120 :     for (int i = 0; i < int(controller_list_.size()); i++) {
+    7950             : 
+    7951         100 :       std::map<std::string, ControllerParams>::iterator it;
+    7952         100 :       it = controllers_.find(_controller_names_[i]);
+    7953             : 
+    7954             :       try {
+    7955         100 :         ROS_INFO("[ControlManager]: deactivating the controller '%s'", it->second.address.c_str());
+    7956         100 :         controller_list_[i]->deactivate();
+    7957             :       }
+    7958           0 :       catch (std::runtime_error& ex) {
+    7959           0 :         ROS_ERROR("[ControlManager]: exception caught during controller deactivation: '%s'", ex.what());
+    7960             :       }
+    7961             :     }
+    7962             : 
+    7963          20 :     timer_failsafe_.stop();
+    7964          20 :     timer_eland_.stop();
+    7965          20 :     timer_pirouette_.stop();
+    7966             : 
+    7967          20 :     offboard_mode_was_true_ = false;
+    7968             :   }
+    7969             : }
+    7970             : 
+    7971             : //}
+    7972             : 
+    7973             : /* switchTracker() //{ */
+    7974             : 
+    7975         210 : std::tuple<bool, std::string> ControlManager::switchTracker(const std::string& tracker_name) {
+    7976             : 
+    7977         630 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("switchTracker");
+    7978         630 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::switchTracker", scope_timer_logger_, scope_timer_enabled_);
+    7979             : 
+    7980             :   // copy member variables
+    7981         420 :   auto last_tracker_cmd   = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    7982         210 :   auto active_tracker_idx = mrs_lib::get_mutexed(mutex_tracker_list_, active_tracker_idx_);
+    7983             : 
+    7984         420 :   std::stringstream ss;
+    7985             : 
+    7986         210 :   if (!got_uav_state_) {
+    7987             : 
+    7988           0 :     ss << "can not switch tracker, missing odometry!";
+    7989           0 :     ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    7990           0 :     return std::tuple(false, ss.str());
+    7991             :   }
+    7992             : 
+    7993         210 :   if (_state_input_ == INPUT_UAV_STATE && _odometry_innovation_check_enabled_ && !sh_odometry_innovation_.hasMsg()) {
+    7994             : 
+    7995           0 :     ss << "can not switch tracker, missing odometry innovation!";
+    7996           0 :     ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    7997           0 :     return std::tuple(false, ss.str());
+    7998             :   }
+    7999             : 
+    8000         210 :   auto new_tracker_idx = idxInVector(tracker_name, _tracker_names_);
+    8001             : 
+    8002             :   // check if the tracker exists
+    8003         210 :   if (!new_tracker_idx) {
+    8004           2 :     ss << "the tracker '" << tracker_name << "' does not exist!";
+    8005           2 :     ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    8006           2 :     return std::tuple(false, ss.str());
+    8007             :   }
+    8008             : 
+    8009             :   // check if the tracker is already active
+    8010         208 :   if (new_tracker_idx.value() == active_tracker_idx) {
+    8011          11 :     ss << "not switching, the tracker '" << tracker_name << "' is already active!";
+    8012          11 :     ROS_INFO_STREAM("[ControlManager]: " << ss.str());
+    8013          11 :     return std::tuple(true, ss.str());
+    8014             :   }
+    8015             : 
+    8016             :   {
+    8017         197 :     std::scoped_lock lock(mutex_tracker_list_);
+    8018             : 
+    8019             :     try {
+    8020             : 
+    8021         197 :       ROS_INFO("[ControlManager]: activating the tracker '%s'", _tracker_names_[new_tracker_idx.value()].c_str());
+    8022             : 
+    8023         197 :       auto [success, message] = tracker_list_[new_tracker_idx.value()]->activate(last_tracker_cmd);
+    8024             : 
+    8025         197 :       if (!success) {
+    8026             : 
+    8027           0 :         ss << "the tracker '" << tracker_name << "' could not be activated: '" << message << "'";
+    8028           0 :         ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    8029           0 :         return std::tuple(false, ss.str());
+    8030             : 
+    8031             :       } else {
+    8032             : 
+    8033         197 :         ss << "the tracker '" << tracker_name << "' was activated";
+    8034         197 :         ROS_INFO_STREAM("[ControlManager]: " << ss.str());
+    8035             : 
+    8036             :         {
+    8037         394 :           std::scoped_lock lock(mutex_controller_tracker_switch_time_);
+    8038             : 
+    8039             :           // update the time (used in failsafe)
+    8040         197 :           controller_tracker_switch_time_ = ros::Time::now();
+    8041             :         }
+    8042             : 
+    8043             :         // super important, switch the active tracker idx
+    8044             :         try {
+    8045             : 
+    8046         197 :           ROS_INFO("[ControlManager]: deactivating '%s'", _tracker_names_[active_tracker_idx_].c_str());
+    8047         197 :           tracker_list_[active_tracker_idx_]->deactivate();
+    8048             : 
+    8049             :           // if switching from null tracker, re-activate the already active the controller
+    8050         197 :           if (active_tracker_idx_ == _null_tracker_idx_) {
+    8051             : 
+    8052          84 :             ROS_INFO("[ControlManager]: reactivating '%s' due to switching from 'NullTracker'", _controller_names_[active_controller_idx_].c_str());
+    8053             :             {
+    8054         168 :               std::scoped_lock lock(mutex_controller_list_);
+    8055             : 
+    8056          84 :               initializeControlOutput();
+    8057             : 
+    8058         168 :               auto last_control_output = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    8059             : 
+    8060          84 :               controller_list_[active_controller_idx_]->activate(last_control_output);
+    8061             : 
+    8062             :               {
+    8063         168 :                 std::scoped_lock lock(mutex_controller_tracker_switch_time_);
+    8064             : 
+    8065             :                 // update the time (used in failsafe)
+    8066          84 :                 controller_tracker_switch_time_ = ros::Time::now();
+    8067             :               }
+    8068             :             }
+    8069             : 
+    8070             :             // if switching to null tracker, deactivate the active controller
+    8071         113 :           } else if (new_tracker_idx == _null_tracker_idx_) {
+    8072             : 
+    8073          17 :             ROS_INFO("[ControlManager]: deactivating '%s' due to switching to 'NullTracker'", _controller_names_[active_controller_idx_].c_str());
+    8074             :             {
+    8075          34 :               std::scoped_lock lock(mutex_controller_list_);
+    8076             : 
+    8077          17 :               controller_list_[active_controller_idx_]->deactivate();
+    8078             :             }
+    8079             : 
+    8080             :             {
+    8081          17 :               std::scoped_lock lock(mutex_last_tracker_cmd_);
+    8082             : 
+    8083          17 :               last_tracker_cmd_ = {};
+    8084             :             }
+    8085             : 
+    8086          17 :             initializeControlOutput();
+    8087             :           }
+    8088             : 
+    8089         197 :           active_tracker_idx_ = new_tracker_idx.value();
+    8090             :         }
+    8091           0 :         catch (std::runtime_error& exrun) {
+    8092           0 :           ROS_ERROR("[ControlManager]: could not deactivate the tracker '%s'", _tracker_names_[active_tracker_idx_].c_str());
+    8093             :         }
+    8094             :       }
+    8095             :     }
+    8096           0 :     catch (std::runtime_error& exrun) {
+    8097           0 :       ROS_ERROR("[ControlManager]: error during activation of the tracker '%s'", tracker_name.c_str());
+    8098           0 :       ROS_ERROR("[ControlManager]: exception: '%s'", exrun.what());
+    8099             :     }
+    8100             :   }
+    8101             : 
+    8102         197 :   return std::tuple(true, ss.str());
+    8103             : }
+    8104             : 
+    8105             : //}
+    8106             : 
+    8107             : /* switchController() //{ */
+    8108             : 
+    8109         211 : std::tuple<bool, std::string> ControlManager::switchController(const std::string& controller_name) {
+    8110             : 
+    8111         633 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("switchController");
+    8112         633 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::switchController", scope_timer_logger_, scope_timer_enabled_);
+    8113             : 
+    8114             :   // copy member variables
+    8115         422 :   auto last_control_output   = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    8116         211 :   auto active_controller_idx = mrs_lib::get_mutexed(mutex_controller_list_, active_controller_idx_);
+    8117             : 
+    8118         422 :   std::stringstream ss;
+    8119             : 
+    8120         211 :   if (!got_uav_state_) {
+    8121             : 
+    8122           0 :     ss << "can not switch controller, missing odometry!";
+    8123           0 :     ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    8124           0 :     return std::tuple(false, ss.str());
+    8125             :   }
+    8126             : 
+    8127         211 :   if (_state_input_ == INPUT_UAV_STATE && _odometry_innovation_check_enabled_ && !sh_odometry_innovation_.hasMsg()) {
+    8128             : 
+    8129           0 :     ss << "can not switch controller, missing odometry innovation!";
+    8130           0 :     ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    8131           0 :     return std::tuple(false, ss.str());
+    8132             :   }
+    8133             : 
+    8134         211 :   auto new_controller_idx = idxInVector(controller_name, _controller_names_);
+    8135             : 
+    8136             :   // check if the controller exists
+    8137         211 :   if (!new_controller_idx) {
+    8138           2 :     ss << "the controller '" << controller_name << "' does not exist!";
+    8139           2 :     ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    8140           2 :     return std::tuple(false, ss.str());
+    8141             :   }
+    8142             : 
+    8143             :   // check if the controller is not active
+    8144         209 :   if (new_controller_idx.value() == active_controller_idx) {
+    8145             : 
+    8146          34 :     ss << "not switching, the controller '" << controller_name << "' is already active!";
+    8147          34 :     ROS_INFO_STREAM("[ControlManager]: " << ss.str());
+    8148          34 :     return std::tuple(true, ss.str());
+    8149             :   }
+    8150             : 
+    8151             :   {
+    8152         175 :     std::scoped_lock lock(mutex_controller_list_);
+    8153             : 
+    8154             :     try {
+    8155             : 
+    8156         175 :       ROS_INFO("[ControlManager]: activating the controller '%s'", _controller_names_[new_controller_idx.value()].c_str());
+    8157         175 :       if (!controller_list_[new_controller_idx.value()]->activate(last_control_output)) {
+    8158             : 
+    8159           0 :         ss << "the controller '" << controller_name << "' was not activated";
+    8160           0 :         ROS_ERROR_STREAM("[ControlManager]: " << ss.str());
+    8161           0 :         return std::tuple(false, ss.str());
+    8162             : 
+    8163             :       } else {
+    8164             : 
+    8165         175 :         ss << "the controller '" << controller_name << "' was activated";
+    8166         175 :         ROS_INFO_STREAM("[ControlManager]: " << ss.str());
+    8167             : 
+    8168         175 :         ROS_INFO("[ControlManager]: triggering hover after switching to '%s', re-activating '%s'", _controller_names_[new_controller_idx.value()].c_str(),
+    8169             :                  _tracker_names_[active_tracker_idx_].c_str());
+    8170             : 
+    8171             :         // reactivate the current tracker
+    8172             :         // TODO this is not the most elegant way to restart the tracker after a controller switch
+    8173             :         // but it serves the purpose
+    8174             :         {
+    8175         175 :           std::scoped_lock lock(mutex_tracker_list_);
+    8176             : 
+    8177         175 :           tracker_list_[active_tracker_idx_]->deactivate();
+    8178         175 :           tracker_list_[active_tracker_idx_]->activate({});
+    8179             :         }
+    8180             : 
+    8181             :         {
+    8182         350 :           std::scoped_lock lock(mutex_controller_tracker_switch_time_);
+    8183             : 
+    8184             :           // update the time (used in failsafe)
+    8185         175 :           controller_tracker_switch_time_ = ros::Time::now();
+    8186             :         }
+    8187             : 
+    8188             :         // super important, switch the active controller idx
+    8189             :         try {
+    8190             : 
+    8191         175 :           controller_list_[active_controller_idx_]->deactivate();
+    8192         175 :           active_controller_idx_ = new_controller_idx.value();
+    8193             :         }
+    8194           0 :         catch (std::runtime_error& exrun) {
+    8195           0 :           ROS_ERROR("[ControlManager]: could not deactivate controller '%s'", _controller_names_[active_controller_idx_].c_str());
+    8196             :         }
+    8197             :       }
+    8198             :     }
+    8199           0 :     catch (std::runtime_error& exrun) {
+    8200           0 :       ROS_ERROR("[ControlManager]: error during activation of controller '%s'", controller_name.c_str());
+    8201           0 :       ROS_ERROR("[ControlManager]: exception: '%s'", exrun.what());
+    8202             :     }
+    8203             :   }
+    8204             : 
+    8205         175 :   mrs_msgs::DynamicsConstraintsSrvRequest sanitized_constraints;
+    8206             : 
+    8207             :   {
+    8208         175 :     std::scoped_lock lock(mutex_constraints_);
+    8209             : 
+    8210         175 :     sanitized_constraints_ = current_constraints_;
+    8211         175 :     sanitized_constraints  = sanitized_constraints_;
+    8212             :   }
+    8213             : 
+    8214         175 :   setConstraintsToControllers(sanitized_constraints);
+    8215             : 
+    8216         175 :   return std::tuple(true, ss.str());
+    8217             : }
+    8218             : 
+    8219             : //}
+    8220             : 
+    8221             : /* updateTrackers() //{ */
+    8222             : 
+    8223      120229 : void ControlManager::updateTrackers(void) {
+    8224             : 
+    8225      240458 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("updateTrackers");
+    8226      240458 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::updateTrackers", scope_timer_logger_, scope_timer_enabled_);
+    8227             : 
+    8228             :   // copy member variables
+    8229      120229 :   auto uav_state           = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    8230      120229 :   auto last_control_output = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    8231             : 
+    8232             :   // --------------------------------------------------------------
+    8233             :   // |                     Update the trackers                    |
+    8234             :   // --------------------------------------------------------------
+    8235             : 
+    8236           0 :   std::optional<mrs_msgs::TrackerCommand> tracker_command;
+    8237             : 
+    8238             :   unsigned int active_tracker_idx;
+    8239             : 
+    8240             :   {
+    8241      120229 :     std::scoped_lock lock(mutex_tracker_list_);
+    8242             : 
+    8243      120229 :     active_tracker_idx = active_tracker_idx_;
+    8244             : 
+    8245             :     // for each tracker
+    8246      843313 :     for (size_t i = 0; i < tracker_list_.size(); i++) {
+    8247             : 
+    8248      723084 :       if (i == active_tracker_idx) {
+    8249             : 
+    8250             :         try {
+    8251             :           // active tracker => update and retrieve the command
+    8252      120229 :           tracker_command = tracker_list_[i]->update(uav_state, last_control_output);
+    8253             :         }
+    8254           0 :         catch (std::runtime_error& exrun) {
+    8255           0 :           ROS_ERROR_THROTTLE(1.0, "[ControlManager]: caught an exception while updating the active tracker (%s)", _tracker_names_[active_tracker_idx].c_str());
+    8256           0 :           ROS_ERROR_THROTTLE(1.0, "[ControlManager]: the exception: '%s'", exrun.what());
+    8257           0 :           tracker_command = {};
+    8258             :         }
+    8259             : 
+    8260             :       } else {
+    8261             : 
+    8262             :         try {
+    8263             :           // nonactive tracker => just update without retrieving the command
+    8264      602855 :           tracker_list_[i]->update(uav_state, last_control_output);
+    8265             :         }
+    8266           0 :         catch (std::runtime_error& exrun) {
+    8267           0 :           ROS_ERROR_THROTTLE(1.0, "[ControlManager]: caught an exception while updating the tracker '%s'", _tracker_names_[i].c_str());
+    8268           0 :           ROS_ERROR_THROTTLE(1.0, "[ControlManager]: the exception: '%s'", exrun.what());
+    8269             :         }
+    8270             :       }
+    8271             :     }
+    8272             : 
+    8273      120229 :     if (active_tracker_idx == _null_tracker_idx_) {
+    8274       36518 :       return;
+    8275             :     }
+    8276             :   }
+    8277             : 
+    8278       83711 :   if (validateTrackerCommand(tracker_command, "ControlManager", "tracker_command")) {
+    8279             : 
+    8280      167422 :     std::scoped_lock lock(mutex_last_tracker_cmd_);
+    8281             : 
+    8282       83711 :     last_tracker_cmd_ = tracker_command;
+    8283             : 
+    8284             :     // | --------- fill in the potentially missing header --------- |
+    8285             : 
+    8286       83711 :     if (last_tracker_cmd_->header.frame_id == "") {
+    8287           0 :       last_tracker_cmd_->header.frame_id = uav_state.header.frame_id;
+    8288             :     }
+    8289             : 
+    8290       83711 :     if (last_tracker_cmd_->header.stamp == ros::Time(0)) {
+    8291           0 :       last_tracker_cmd_->header.stamp = ros::Time::now();
+    8292             :     }
+    8293             : 
+    8294             :   } else {
+    8295             : 
+    8296           0 :     if (active_tracker_idx == _ehover_tracker_idx_) {
+    8297             : 
+    8298           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: the emergency tracker '%s' returned empty or invalid command!", _tracker_names_[active_tracker_idx].c_str());
+    8299           0 :       failsafe();
+    8300             : 
+    8301             :     } else {
+    8302             : 
+    8303           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: the tracker '%s' returned empty or invalid command!", _tracker_names_[active_tracker_idx].c_str());
+    8304             : 
+    8305           0 :       if (_tracker_error_action_ == ELAND_STR) {
+    8306           0 :         eland();
+    8307           0 :       } else if (_tracker_error_action_ == EHOVER_STR) {
+    8308           0 :         ehover();
+    8309             :       } else {
+    8310           0 :         failsafe();
+    8311             :       }
+    8312             :     }
+    8313             :   }
+    8314             : }
+    8315             : 
+    8316             : //}
+    8317             : 
+    8318             : /* updateControllers() //{ */
+    8319             : 
+    8320      130418 : void ControlManager::updateControllers(const mrs_msgs::UavState& uav_state) {
+    8321             : 
+    8322      260836 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("updateControllers");
+    8323      260836 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::updateControllers", scope_timer_logger_, scope_timer_enabled_);
+    8324             : 
+    8325             :   // copy member variables
+    8326      130418 :   auto last_tracker_cmd = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    8327             : 
+    8328             :   // | ----------------- update the controllers ----------------- |
+    8329             : 
+    8330             :   // the trackers are not running
+    8331      130418 :   if (!last_tracker_cmd) {
+    8332             : 
+    8333             :     {
+    8334       73036 :       std::scoped_lock lock(mutex_controller_list_);
+    8335             : 
+    8336             :       // nonactive controller => just update without retrieving the command
+    8337      219108 :       for (int i = 0; i < int(controller_list_.size()); i++) {
+    8338      182590 :         controller_list_[i]->updateInactive(uav_state, last_tracker_cmd);
+    8339             :       }
+    8340             :     }
+    8341             : 
+    8342       36518 :     return;
+    8343             :   }
+    8344             : 
+    8345      187800 :   Controller::ControlOutput control_output;
+    8346             : 
+    8347             :   unsigned int active_controller_idx;
+    8348             : 
+    8349             :   {
+    8350      187800 :     std::scoped_lock lock(mutex_controller_list_);
+    8351             : 
+    8352       93900 :     active_controller_idx = active_controller_idx_;
+    8353             : 
+    8354             :     // for each controller
+    8355      563400 :     for (size_t i = 0; i < controller_list_.size(); i++) {
+    8356             : 
+    8357      469500 :       if (i == active_controller_idx) {
+    8358             : 
+    8359             :         try {
+    8360             :           // active controller => update and retrieve the command
+    8361       93900 :           control_output = controller_list_[active_controller_idx]->updateActive(uav_state, last_tracker_cmd.value());
+    8362             :         }
+    8363           0 :         catch (std::runtime_error& exrun) {
+    8364             : 
+    8365           0 :           ROS_ERROR_THROTTLE(1.0, "[ControlManager]: an exception while updating the active controller (%s)",
+    8366             :                              _controller_names_[active_controller_idx].c_str());
+    8367           0 :           ROS_ERROR_THROTTLE(1.0, "[ControlManager]: the exception: '%s'", exrun.what());
+    8368             :         }
+    8369             : 
+    8370             :       } else {
+    8371             : 
+    8372             :         try {
+    8373             :           // nonactive controller => just update without retrieving the command
+    8374      375600 :           controller_list_[i]->updateInactive(uav_state, last_tracker_cmd);
+    8375             :         }
+    8376           0 :         catch (std::runtime_error& exrun) {
+    8377             : 
+    8378           0 :           ROS_ERROR_THROTTLE(1.0, "[ControlManager]: exception while updating the controller '%s'", _controller_names_[i].c_str());
+    8379           0 :           ROS_ERROR_THROTTLE(1.0, "[ControlManager]: exception: '%s'", exrun.what());
+    8380             :         }
+    8381             :       }
+    8382             :     }
+    8383             :   }
+    8384             : 
+    8385             :   // normally, the active controller returns a valid command
+    8386       93900 :   if (validateControlOutput(control_output, _hw_api_inputs_, "ControlManager", "control_output")) {
+    8387             : 
+    8388       93900 :     mrs_lib::set_mutexed(mutex_last_control_output_, control_output, last_control_output_);
+    8389             : 
+    8390             :     // but it can return an empty command, due to some critical internal error
+    8391             :     // which means we should trigger the failsafe landing
+    8392             :   } else {
+    8393             : 
+    8394             :     // only if the controller is still active, trigger escalating failsafe
+    8395             :     // if not active, we don't care, we should not ask the controller for
+    8396             :     // the result anyway -> this could mean a race condition occured
+    8397             :     // like it once happend during landing
+    8398           0 :     bool controller_status = false;
+    8399             : 
+    8400             :     {
+    8401           0 :       std::scoped_lock lock(mutex_controller_list_);
+    8402             : 
+    8403           0 :       controller_status = controller_list_[active_controller_idx]->getStatus().active;
+    8404             :     }
+    8405             : 
+    8406           0 :     if (controller_status) {
+    8407             : 
+    8408           0 :       if (failsafe_triggered_) {
+    8409             : 
+    8410           0 :         ROS_ERROR("[ControlManager]: disabling control, the active controller returned an empty command when failsafe was active");
+    8411             : 
+    8412           0 :         toggleOutput(false);
+    8413             : 
+    8414           0 :       } else if (eland_triggered_) {
+    8415             : 
+    8416           0 :         ROS_ERROR("[ControlManager]: triggering failsafe, the active controller returned an empty command when eland was active");
+    8417             : 
+    8418           0 :         failsafe();
+    8419             : 
+    8420             :       } else {
+    8421             : 
+    8422           0 :         ROS_ERROR("[ControlManager]: triggering eland, the active controller returned an empty command");
+    8423             : 
+    8424           0 :         eland();
+    8425             :       }
+    8426             :     }
+    8427             :   }
+    8428             : }
+    8429             : 
+    8430             : //}
+    8431             : 
+    8432             : /* publish() //{ */
+    8433             : 
+    8434      130418 : void ControlManager::publish(void) {
+    8435             : 
+    8436      260836 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("publish");
+    8437      260836 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("ControlManager::publish", scope_timer_logger_, scope_timer_enabled_);
+    8438             : 
+    8439             :   // copy member variables
+    8440      130418 :   auto last_control_output   = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    8441      130418 :   auto last_tracker_cmd      = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    8442      130418 :   auto active_tracker_idx    = mrs_lib::get_mutexed(mutex_tracker_list_, active_tracker_idx_);
+    8443      130418 :   auto active_controller_idx = mrs_lib::get_mutexed(mutex_controller_list_, active_controller_idx_);
+    8444      130418 :   auto uav_state             = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    8445             : 
+    8446      130418 :   publishControlReferenceOdom(last_tracker_cmd, last_control_output);
+    8447             : 
+    8448             :   // --------------------------------------------------------------
+    8449             :   // |                 Publish the control command                |
+    8450             :   // --------------------------------------------------------------
+    8451             : 
+    8452      130418 :   mrs_msgs::HwApiAttitudeCmd attitude_target;
+    8453      130418 :   attitude_target.stamp = ros::Time::now();
+    8454             : 
+    8455      130418 :   mrs_msgs::HwApiAttitudeRateCmd attitude_rate_target;
+    8456      130418 :   attitude_rate_target.stamp = ros::Time::now();
+    8457             : 
+    8458      130418 :   if (!output_enabled_) {
+    8459             : 
+    8460       22057 :     ROS_WARN_THROTTLE(1.0, "[ControlManager]: output is disabled");
+    8461             : 
+    8462      108361 :   } else if (active_tracker_idx == _null_tracker_idx_) {
+    8463             : 
+    8464       14463 :     ROS_WARN_THROTTLE(5.0, "[ControlManager]: 'NullTracker' is active, not controlling");
+    8465             : 
+    8466             :     Controller::HwApiOutputVariant output =
+    8467       28926 :         initializeDefaultOutput(_hw_api_inputs_, uav_state, _min_throttle_null_tracker_, common_handlers_->throttle_model.n_motors);
+    8468             : 
+    8469             :     {
+    8470       28926 :       std::scoped_lock lock(mutex_last_control_output_);
+    8471             : 
+    8472       14463 :       last_control_output_.control_output = output;
+    8473             :     }
+    8474             : 
+    8475       14463 :     control_output_publisher_.publish(output);
+    8476             : 
+    8477       93898 :   } else if (active_tracker_idx != _null_tracker_idx_ && !last_control_output.control_output) {
+    8478             : 
+    8479           0 :     ROS_WARN_THROTTLE(1.0, "[ControlManager]: the controller '%s' returned nil command, not publishing anything",
+    8480             :                       _controller_names_[active_controller_idx].c_str());
+    8481             : 
+    8482             :     Controller::HwApiOutputVariant output =
+    8483           0 :         initializeDefaultOutput(_hw_api_inputs_, uav_state, _min_throttle_null_tracker_, common_handlers_->throttle_model.n_motors);
+    8484             : 
+    8485           0 :     control_output_publisher_.publish(output);
+    8486             : 
+    8487       93898 :   } else if (last_control_output.control_output) {
+    8488             : 
+    8489       93898 :     if (validateHwApiAttitudeCmd(attitude_target, "ControlManager", "last_control_output.control_output")) {
+    8490       93898 :       control_output_publisher_.publish(last_control_output.control_output.value());
+    8491             :     } else {
+    8492           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: the attitude cmd is not valid just before publishing!");
+    8493           0 :       return;
+    8494             :     }
+    8495             : 
+    8496             :   } else {
+    8497           0 :     ROS_ERROR_THROTTLE(1.0, "[ControlManager]: not publishing a control command");
+    8498             :   }
+    8499             : 
+    8500             :   // | ----------- publish the controller diagnostics ----------- |
+    8501             : 
+    8502      130418 :   ph_controller_diagnostics_.publish(last_control_output.diagnostics);
+    8503             : 
+    8504             :   // | --------- publish the applied throttle and thrust -------- |
+    8505             : 
+    8506      130418 :   auto throttle = extractThrottle(last_control_output);
+    8507             : 
+    8508      130418 :   if (throttle) {
+    8509             : 
+    8510             :     {
+    8511      103102 :       std_msgs::Float64 msg;
+    8512      103102 :       msg.data = throttle.value();
+    8513      103102 :       ph_throttle_.publish(msg);
+    8514             :     }
+    8515             : 
+    8516      103102 :     double thrust = mrs_lib::quadratic_throttle_model::throttleToForce(common_handlers_->throttle_model, throttle.value());
+    8517             : 
+    8518             :     {
+    8519      103102 :       std_msgs::Float64 msg;
+    8520      103102 :       msg.data = thrust;
+    8521      103102 :       ph_thrust_.publish(msg);
+    8522             :     }
+    8523             :   }
+    8524             : 
+    8525             :   // | ----------------- publish tracker command ---------------- |
+    8526             : 
+    8527      130418 :   if (last_tracker_cmd) {
+    8528       93898 :     ph_tracker_cmd_.publish(last_tracker_cmd.value());
+    8529             :   }
+    8530             : 
+    8531             :   // | --------------- publish the odometry input --------------- |
+    8532             : 
+    8533      130418 :   if (last_control_output.control_output) {
+    8534             : 
+    8535      218536 :     mrs_msgs::EstimatorInput msg;
+    8536             : 
+    8537      109268 :     msg.header.frame_id = _uav_name_ + "/fcu";
+    8538      109268 :     msg.header.stamp    = ros::Time::now();
+    8539             : 
+    8540      109268 :     if (last_control_output.desired_unbiased_acceleration) {
+    8541       79666 :       msg.control_acceleration.x = last_control_output.desired_unbiased_acceleration.value()[0];
+    8542       79666 :       msg.control_acceleration.y = last_control_output.desired_unbiased_acceleration.value()[1];
+    8543       79666 :       msg.control_acceleration.z = last_control_output.desired_unbiased_acceleration.value()[2];
+    8544             :     }
+    8545             : 
+    8546      109268 :     if (last_control_output.desired_heading_rate) {
+    8547       76474 :       msg.control_hdg_rate = last_control_output.desired_heading_rate.value();
+    8548             :     }
+    8549             : 
+    8550      109268 :     if (last_control_output.desired_unbiased_acceleration) {
+    8551       79666 :       ph_mrs_odom_input_.publish(msg);
+    8552             :     }
+    8553             :   }
+    8554             : }
+    8555             : 
+    8556             : //}
+    8557             : 
+    8558             : /* deployParachute() //{ */
+    8559             : 
+    8560           0 : std::tuple<bool, std::string> ControlManager::deployParachute(void) {
+    8561             :   // if not enabled, return false
+    8562           0 :   if (!_parachute_enabled_) {
+    8563             : 
+    8564           0 :     std::stringstream ss;
+    8565           0 :     ss << "can not deploy parachute, it is disabled";
+    8566           0 :     return std::tuple(false, ss.str());
+    8567             :   }
+    8568             : 
+    8569             :   // we can not disarm if the drone is not in offboard mode
+    8570             :   // this is super important!
+    8571           0 :   if (!isOffboard()) {
+    8572             : 
+    8573           0 :     std::stringstream ss;
+    8574           0 :     ss << "can not deploy parachute, not in offboard mode";
+    8575           0 :     return std::tuple(false, ss.str());
+    8576             :   }
+    8577             : 
+    8578             :   // call the parachute service
+    8579           0 :   bool succ = parachuteSrv();
+    8580             : 
+    8581             :   // if the deployment was successful,
+    8582           0 :   if (succ) {
+    8583             : 
+    8584           0 :     arming(false);
+    8585             : 
+    8586           0 :     std::stringstream ss;
+    8587           0 :     ss << "parachute deployed";
+    8588             : 
+    8589           0 :     return std::tuple(true, ss.str());
+    8590             : 
+    8591             :   } else {
+    8592             : 
+    8593           0 :     std::stringstream ss;
+    8594           0 :     ss << "error during deployment of parachute";
+    8595             : 
+    8596           0 :     return std::tuple(false, ss.str());
+    8597             :   }
+    8598             : }
+    8599             : 
+    8600             : //}
+    8601             : 
+    8602             : /* velocityReferenceToReference() //{ */
+    8603             : 
+    8604         477 : mrs_msgs::ReferenceStamped ControlManager::velocityReferenceToReference(const mrs_msgs::VelocityReferenceStamped& vel_reference) {
+    8605             : 
+    8606         954 :   auto last_tracker_cmd    = mrs_lib::get_mutexed(mutex_last_tracker_cmd_, last_tracker_cmd_);
+    8607         954 :   auto uav_state           = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    8608         477 :   auto current_constraints = mrs_lib::get_mutexed(mutex_constraints_, current_constraints_);
+    8609             : 
+    8610         477 :   mrs_msgs::ReferenceStamped reference_out;
+    8611             : 
+    8612         477 :   reference_out.header = vel_reference.header;
+    8613             : 
+    8614         477 :   if (vel_reference.reference.use_heading) {
+    8615           0 :     reference_out.reference.heading = vel_reference.reference.heading;
+    8616         477 :   } else if (vel_reference.reference.use_heading_rate) {
+    8617         477 :     reference_out.reference.heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading() + vel_reference.reference.use_heading_rate;
+    8618             :   } else {
+    8619           0 :     reference_out.reference.heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+    8620             :   }
+    8621             : 
+    8622         477 :   if (vel_reference.reference.use_altitude) {
+    8623           0 :     reference_out.reference.position.z = vel_reference.reference.altitude;
+    8624             :   } else {
+    8625             : 
+    8626         477 :     double stopping_time_z = 0;
+    8627             : 
+    8628         477 :     if (vel_reference.reference.velocity.x >= 0) {
+    8629         252 :       stopping_time_z = 1.5 * (fabs(vel_reference.reference.velocity.z) / current_constraints.constraints.vertical_ascending_acceleration) + 1.0;
+    8630             :     } else {
+    8631         225 :       stopping_time_z = 1.5 * (fabs(vel_reference.reference.velocity.z) / current_constraints.constraints.vertical_descending_acceleration) + 1.0;
+    8632             :     }
+    8633             : 
+    8634         477 :     reference_out.reference.position.z = last_tracker_cmd->position.z + vel_reference.reference.velocity.z * stopping_time_z;
+    8635             :   }
+    8636             : 
+    8637             :   {
+    8638         477 :     double stopping_time_x = 1.5 * (fabs(vel_reference.reference.velocity.x) / current_constraints.constraints.horizontal_acceleration) + 1.0;
+    8639         477 :     double stopping_time_y = 1.5 * (fabs(vel_reference.reference.velocity.y) / current_constraints.constraints.horizontal_acceleration) + 1.0;
+    8640             : 
+    8641         477 :     reference_out.reference.position.x = last_tracker_cmd->position.x + vel_reference.reference.velocity.x * stopping_time_x;
+    8642         477 :     reference_out.reference.position.y = last_tracker_cmd->position.y + vel_reference.reference.velocity.y * stopping_time_y;
+    8643             :   }
+    8644             : 
+    8645         954 :   return reference_out;
+    8646             : }
+    8647             : 
+    8648             : //}
+    8649             : 
+    8650             : /* publishControlReferenceOdom() //{ */
+    8651             : 
+    8652      130418 : void ControlManager::publishControlReferenceOdom([[maybe_unused]] const std::optional<mrs_msgs::TrackerCommand>& tracker_command,
+    8653             :                                                  [[maybe_unused]] const Controller::ControlOutput&               control_output) {
+    8654      130418 :   if (!tracker_command || !control_output.control_output) {
+    8655       36520 :     return;
+    8656             :   }
+    8657             : 
+    8658      187796 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    8659             : 
+    8660      187796 :   nav_msgs::Odometry msg;
+    8661             : 
+    8662       93898 :   msg.header = tracker_command->header;
+    8663             : 
+    8664       93898 :   if (tracker_command->use_position_horizontal) {
+    8665       93898 :     msg.pose.pose.position.x = tracker_command->position.x;
+    8666       93898 :     msg.pose.pose.position.y = tracker_command->position.y;
+    8667             :   } else {
+    8668           0 :     msg.pose.pose.position.x = uav_state.pose.position.x;
+    8669           0 :     msg.pose.pose.position.y = uav_state.pose.position.y;
+    8670             :   }
+    8671             : 
+    8672       93898 :   if (tracker_command->use_position_vertical) {
+    8673       93898 :     msg.pose.pose.position.z = tracker_command->position.z;
+    8674             :   } else {
+    8675           0 :     msg.pose.pose.position.z = uav_state.pose.position.z;
+    8676             :   }
+    8677             : 
+    8678             :   // transform the velocity in the reference to the child_frame
+    8679       93898 :   if (tracker_command->use_velocity_horizontal || tracker_command->use_velocity_vertical) {
+    8680             : 
+    8681       93898 :     msg.child_frame_id = _uav_name_ + "/" + _body_frame_;
+    8682             : 
+    8683      187796 :     geometry_msgs::Vector3Stamped velocity;
+    8684       93898 :     velocity.header = tracker_command->header;
+    8685             : 
+    8686       93898 :     if (tracker_command->use_velocity_horizontal) {
+    8687       93898 :       velocity.vector.x = tracker_command->velocity.x;
+    8688       93898 :       velocity.vector.y = tracker_command->velocity.y;
+    8689             :     }
+    8690             : 
+    8691       93898 :     if (tracker_command->use_velocity_vertical) {
+    8692       93898 :       velocity.vector.z = tracker_command->velocity.z;
+    8693             :     }
+    8694             : 
+    8695      187796 :     auto res = transformer_->transformSingle(velocity, msg.child_frame_id);
+    8696             : 
+    8697       93898 :     if (res) {
+    8698       93898 :       msg.twist.twist.linear.x = res.value().vector.x;
+    8699       93898 :       msg.twist.twist.linear.y = res.value().vector.y;
+    8700       93898 :       msg.twist.twist.linear.z = res.value().vector.z;
+    8701             :     } else {
+    8702           0 :       ROS_ERROR_THROTTLE(1.0, "[ControlManager]: could not transform the reference speed from '%s' to '%s'", velocity.header.frame_id.c_str(),
+    8703             :                          msg.child_frame_id.c_str());
+    8704             :     }
+    8705             :   }
+    8706             : 
+    8707             :   // fill in the orientation or heading
+    8708       93898 :   if (control_output.desired_orientation) {
+    8709       77761 :     msg.pose.pose.orientation = mrs_lib::AttitudeConverter(control_output.desired_orientation.value());
+    8710       16137 :   } else if (tracker_command->use_heading) {
+    8711       16137 :     msg.pose.pose.orientation = mrs_lib::AttitudeConverter(0, 0, tracker_command->heading);
+    8712             :   }
+    8713             : 
+    8714             :   // fill in the attitude rate
+    8715       93898 :   if (std::holds_alternative<mrs_msgs::HwApiAttitudeRateCmd>(control_output.control_output.value())) {
+    8716             : 
+    8717       72141 :     auto attitude_cmd = std::get<mrs_msgs::HwApiAttitudeRateCmd>(control_output.control_output.value());
+    8718             : 
+    8719       72141 :     msg.twist.twist.angular.x = attitude_cmd.body_rate.x;
+    8720       72141 :     msg.twist.twist.angular.y = attitude_cmd.body_rate.y;
+    8721       72141 :     msg.twist.twist.angular.z = attitude_cmd.body_rate.z;
+    8722             :   }
+    8723             : 
+    8724       93898 :   ph_control_reference_odom_.publish(msg);
+    8725             : }
+    8726             : 
+    8727             : //}
+    8728             : 
+    8729             : /* initializeControlOutput() //{ */
+    8730             : 
+    8731         192 : void ControlManager::initializeControlOutput(void) {
+    8732             : 
+    8733         192 :   Controller::ControlOutput controller_output;
+    8734             : 
+    8735         192 :   controller_output.diagnostics.total_mass      = _uav_mass_;
+    8736         192 :   controller_output.diagnostics.mass_difference = 0.0;
+    8737             : 
+    8738         192 :   controller_output.diagnostics.disturbance_bx_b = _initial_body_disturbance_x_;
+    8739         192 :   controller_output.diagnostics.disturbance_by_b = _initial_body_disturbance_y_;
+    8740             : 
+    8741         192 :   if (std::abs(_initial_body_disturbance_x_) > 0.001 || std::abs(_initial_body_disturbance_y_) > 0.001) {
+    8742           0 :     controller_output.diagnostics.disturbance_estimator = true;
+    8743             :   }
+    8744             : 
+    8745         192 :   controller_output.diagnostics.disturbance_wx_w = 0.0;
+    8746         192 :   controller_output.diagnostics.disturbance_wy_w = 0.0;
+    8747             : 
+    8748         192 :   controller_output.diagnostics.disturbance_bx_w = 0.0;
+    8749         192 :   controller_output.diagnostics.disturbance_by_w = 0.0;
+    8750             : 
+    8751         192 :   controller_output.diagnostics.controller = "none";
+    8752             : 
+    8753         192 :   mrs_lib::set_mutexed(mutex_last_control_output_, controller_output, last_control_output_);
+    8754         192 : }
+    8755             : 
+    8756             : //}
+    8757             : 
+    8758             : }  // namespace control_manager
+    8759             : 
+    8760             : }  // namespace mrs_uav_managers
+    8761             : 
+    8762             : #include <pluginlib/class_list_macros.h>
+    8763          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_managers::control_manager::ControlManager, nodelet::Nodelet)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/control_manager/control_manager.cpp.gcov.overview.html b/mrs_uav_managers/src/control_manager/control_manager.cpp.gcov.overview.html new file mode 100644 index 0000000000..f41fccc5d2 --- /dev/null +++ b/mrs_uav_managers/src/control_manager/control_manager.cpp.gcov.overview.html @@ -0,0 +1,2211 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/control_manager.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + 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+ Overview +
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Test:MRS UAV System - Test coverage reportLines:2372369664.2 %
Date:2024-04-17 23:52:03Functions:8912372.4 %
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control_manager.cpp +
63.8%63.8%
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63.8 %2329 / 365369.4 %77 / 111
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Test:MRS UAV System - Test coverage reportLines:2372369664.2 %
Date:2024-04-17 23:52:03Functions:8912372.4 %
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control_manager.cpp +
63.8%63.8%
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Test:MRS UAV System - Test coverage reportLines:2372369664.2 %
Date:2024-04-17 23:52:03Functions:8912372.4 %
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control_manager.cpp +
63.8%63.8%
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Test:MRS UAV System - Test coverage reportLines:2372369664.2 %
Date:2024-04-17 23:52:03Functions:8912372.4 %
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Test:MRS UAV System - Test coverage reportLines:2372369664.2 %
Date:2024-04-17 23:52:03Functions:8912372.4 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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63.8%63.8%
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output_publisher.cpp +
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Test:MRS UAV System - Test coverage reportLines:2372369664.2 %
Date:2024-04-17 23:52:03Functions:8912372.4 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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63.8%63.8%
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Test:MRS UAV System - Test coverage reportLines:4343100.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::control_manager::OutputPublisher::OutputPublisher(ros::NodeHandle&)91
mrs_uav_managers::control_manager::OutputPublisher::OutputPublisher()91
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&)477
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)951
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&)964
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)1185
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)2589
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&)3809
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&)3824
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)7958
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)86604
mrs_uav_managers::control_manager::OutputPublisher::publish(std::variant<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> >, mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> >, mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> >, mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> >, mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> >, mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> >, mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> >, mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> >, mrs_msgs::HwApiPositionCmd_<std::allocator<void> > > const&)108361
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/control_manager/output_publisher.cpp.func.html b/mrs_uav_managers/src/control_manager/output_publisher.cpp.func.html new file mode 100644 index 0000000000..5b5f75b78d --- /dev/null +++ b/mrs_uav_managers/src/control_manager/output_publisher.cpp.func.html @@ -0,0 +1,128 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/output_publisher.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/src/control_manager - output_publisher.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:4343100.0 %
Date:2024-04-17 23:52:03Functions:1212100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiActuatorCmd_<std::allocator<void> > const&)3809
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> > const&)7958
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiPositionCmd_<std::allocator<void> > const&)477
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> > const&)1185
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> > const&)86604
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> > const&)3824
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> > const&)964
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> > const&)2589
mrs_uav_managers::control_manager::OutputPublisher::publish(mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> > const&)951
mrs_uav_managers::control_manager::OutputPublisher::publish(std::variant<mrs_msgs::HwApiActuatorCmd_<std::allocator<void> >, mrs_msgs::HwApiControlGroupCmd_<std::allocator<void> >, mrs_msgs::HwApiAttitudeRateCmd_<std::allocator<void> >, mrs_msgs::HwApiAttitudeCmd_<std::allocator<void> >, mrs_msgs::HwApiAccelerationHdgRateCmd_<std::allocator<void> >, mrs_msgs::HwApiAccelerationHdgCmd_<std::allocator<void> >, mrs_msgs::HwApiVelocityHdgRateCmd_<std::allocator<void> >, mrs_msgs::HwApiVelocityHdgCmd_<std::allocator<void> >, mrs_msgs::HwApiPositionCmd_<std::allocator<void> > > const&)108361
mrs_uav_managers::control_manager::OutputPublisher::OutputPublisher(ros::NodeHandle&)91
mrs_uav_managers::control_manager::OutputPublisher::OutputPublisher()91
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/control_manager/output_publisher.cpp.gcov.frameset.html b/mrs_uav_managers/src/control_manager/output_publisher.cpp.gcov.frameset.html new file mode 100644 index 0000000000..43585be242 --- /dev/null +++ b/mrs_uav_managers/src/control_manager/output_publisher.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/output_publisher.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_managers/src/control_manager/output_publisher.cpp.gcov.html b/mrs_uav_managers/src/control_manager/output_publisher.cpp.gcov.html new file mode 100644 index 0000000000..6d946557ea --- /dev/null +++ b/mrs_uav_managers/src/control_manager/output_publisher.cpp.gcov.html @@ -0,0 +1,154 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/output_publisher.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/src/control_manager - output_publisher.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:4343100.0 %
Date:2024-04-17 23:52:03Functions:1212100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #include <control_manager/output_publisher.h>
+       2             : 
+       3             : namespace mrs_uav_managers
+       4             : {
+       5             : 
+       6             : namespace control_manager
+       7             : {
+       8             : 
+       9          91 : OutputPublisher::OutputPublisher() {
+      10          91 : }
+      11             : 
+      12          91 : OutputPublisher::OutputPublisher(ros::NodeHandle& nh) {
+      13             : 
+      14          91 :   ph_hw_api_actuator_cmd_              = mrs_lib::PublisherHandler<mrs_msgs::HwApiActuatorCmd>(nh, "hw_api_actuator_cmd_out", 1);
+      15          91 :   ph_hw_api_control_group_cmd_         = mrs_lib::PublisherHandler<mrs_msgs::HwApiControlGroupCmd>(nh, "hw_api_control_group_cmd_out", 1);
+      16          91 :   ph_hw_api_attitude_rate_cmd_         = mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeRateCmd>(nh, "hw_api_attitude_rate_cmd_out", 1);
+      17          91 :   ph_hw_api_attitude_cmd_              = mrs_lib::PublisherHandler<mrs_msgs::HwApiAttitudeCmd>(nh, "hw_api_attitude_cmd_out", 1);
+      18          91 :   ph_hw_api_acceleration_hdg_rate_cmd_ = mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgRateCmd>(nh, "hw_api_acceleration_hdg_rate_cmd_out", 1);
+      19          91 :   ph_hw_api_acceleration_hdg_cmd_      = mrs_lib::PublisherHandler<mrs_msgs::HwApiAccelerationHdgCmd>(nh, "hw_api_acceleration_hdg_cmd_out", 1);
+      20          91 :   ph_hw_api_velocity_hdg_rate_cmd_     = mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgRateCmd>(nh, "hw_api_velocity_hdg_rate_cmd_out", 1);
+      21          91 :   ph_hw_api_velocity_hdg_cmd_          = mrs_lib::PublisherHandler<mrs_msgs::HwApiVelocityHdgCmd>(nh, "hw_api_velocity_hdg_cmd_out", 1);
+      22          91 :   ph_hw_api_position_cmd_              = mrs_lib::PublisherHandler<mrs_msgs::HwApiPositionCmd>(nh, "hw_api_position_cmd_out", 1);
+      23          91 : }
+      24             : 
+      25      108361 : void OutputPublisher::publish(const Controller::HwApiOutputVariant& control_output) {
+      26             : 
+      27      108361 :   std::visit(OutputPublisher::PublisherVisitor(this), control_output);
+      28      108361 : }
+      29             : 
+      30             : // | ------------------------- private ------------------------ |
+      31             : 
+      32        3809 : void OutputPublisher::publish(const mrs_msgs::HwApiActuatorCmd& msg) {
+      33        3809 :   ph_hw_api_actuator_cmd_.publish(msg);
+      34        3809 : }
+      35             : 
+      36        3824 : void OutputPublisher::publish(const mrs_msgs::HwApiControlGroupCmd& msg) {
+      37        3824 :   ph_hw_api_control_group_cmd_.publish(msg);
+      38        3824 : }
+      39             : 
+      40       86604 : void OutputPublisher::publish(const mrs_msgs::HwApiAttitudeRateCmd& msg) {
+      41       86604 :   ph_hw_api_attitude_rate_cmd_.publish(msg);
+      42       86604 : }
+      43             : 
+      44        7958 : void OutputPublisher::publish(const mrs_msgs::HwApiAttitudeCmd& msg) {
+      45        7958 :   ph_hw_api_attitude_cmd_.publish(msg);
+      46        7958 : }
+      47             : 
+      48         951 : void OutputPublisher::publish(const mrs_msgs::HwApiAccelerationHdgRateCmd& msg) {
+      49         951 :   ph_hw_api_acceleration_hdg_rate_cmd_.publish(msg);
+      50         951 : }
+      51             : 
+      52         964 : void OutputPublisher::publish(const mrs_msgs::HwApiAccelerationHdgCmd& msg) {
+      53         964 :   ph_hw_api_acceleration_hdg_cmd_.publish(msg);
+      54         964 : }
+      55             : 
+      56        2589 : void OutputPublisher::publish(const mrs_msgs::HwApiVelocityHdgRateCmd& msg) {
+      57        2589 :   ph_hw_api_velocity_hdg_rate_cmd_.publish(msg);
+      58        2589 : }
+      59             : 
+      60        1185 : void OutputPublisher::publish(const mrs_msgs::HwApiVelocityHdgCmd& msg) {
+      61        1185 :   ph_hw_api_velocity_hdg_cmd_.publish(msg);
+      62        1185 : }
+      63             : 
+      64         477 : void OutputPublisher::publish(const mrs_msgs::HwApiPositionCmd& msg) {
+      65         477 :   ph_hw_api_position_cmd_.publish(msg);
+      66         477 : }
+      67             : 
+      68             : }  // namespace control_manager
+      69             : 
+      70             : }  // namespace mrs_uav_managers
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/control_manager/output_publisher.cpp.gcov.overview.html b/mrs_uav_managers/src/control_manager/output_publisher.cpp.gcov.overview.html new file mode 100644 index 0000000000..8bbe8c2bfd --- /dev/null +++ b/mrs_uav_managers/src/control_manager/output_publisher.cpp.gcov.overview.html @@ -0,0 +1,38 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/control_manager/output_publisher.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_managers/src/control_manager/output_publisher.cpp.gcov.png b/mrs_uav_managers/src/control_manager/output_publisher.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..c385c662de6cc4327e3a61ce14e679273fb7fbb9 GIT binary patch literal 307 zcmeAS@N?(olHy`uVBq!ia0vp^0YL1=!VDx=Zs3yuQW60^A+G=b|6c_J%iqVwzWUF= zunH&+rp|e9UJ7J$7I;J!GcfQS0b$0e+I-SL!GoSIjv*eMZ^In<8Web%cPzx|uYg9wc$$GsO#c<%LD z^o61EWbIvRy=0gZWQ-p596VxsjnPP{OElF*Cg6-{dy|A>Y}=H;oU<(ImnK^5lUTi3 z+iSA*={Nb$&wWaG6~8WP+rHV`1hgbCr~Q%KEqQ|=`dh-AP literal 0 HcmV?d00001 diff --git a/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.func-sort-c.html b/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.func-sort-c.html new file mode 100644 index 0000000000..813bba517c --- /dev/null +++ b/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.func-sort-c.html @@ -0,0 +1,176 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/estimation_manager/estimation_manager.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/src/estimation_manager - estimation_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:37153469.5 %
Date:2024-04-17 23:52:03Functions:212487.5 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::estimation_manager::EstimationManager::loadConfigFile(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_uav_managers::estimation_manager::EstimationManager::callFailsafeService()0
mrs_uav_managers::estimation_manager::EstimationManager::switchToHealthyEstimator()0
mrs_uav_managers::estimation_manager::StateMachine::changeToPreSwitchState()5
mrs_uav_managers::estimation_manager::EstimationManager::switchToEstimator(boost::shared_ptr<mrs_uav_managers::StateEstimator> const&)5
mrs_uav_managers::estimation_manager::EstimationManager::callbackChangeEstimator(mrs_msgs::StringRequest_<std::allocator<void> >&, mrs_msgs::StringResponse_<std::allocator<void> >&)5
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::estimation_manager::StateMachine::StateMachine(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_uav_managers::estimation_manager::EstimationManager::timerInitialization(ros::TimerEvent const&)91
mrs_uav_managers::estimation_manager::EstimationManager::onInit()91
mrs_uav_managers::estimation_manager::EstimationManager::EstimationManager()91
mrs_uav_managers::estimation_manager::EstimationManager::callbackToggleServiceCallbacks(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)126
mrs_uav_managers::estimation_manager::StateMachine::changeState(mrs_uav_managers::estimation_manager::StateMachine::SMState_t const&)295
mrs_uav_managers::estimation_manager::StateMachine::getPrintName[abi:cxx11]() const295
mrs_uav_managers::estimation_manager::StateMachine::getStateAsString[abi:cxx11](mrs_uav_managers::estimation_manager::StateMachine::SMState_t const&) const590
mrs_uav_managers::estimation_manager::EstimationManager::getName[abi:cxx11]() const3040
mrs_uav_managers::estimation_manager::StateMachine::getCurrentStateString[abi:cxx11]() const17077
mrs_uav_managers::estimation_manager::EstimationManager::timerPublishDiagnostics(ros::TimerEvent const&)18033
mrs_uav_managers::estimation_manager::StateMachine::isInTheAir() const172787
mrs_uav_managers::estimation_manager::EstimationManager::timerPublish(ros::TimerEvent const&)172788
mrs_uav_managers::estimation_manager::EstimationManager::timerCheckHealth(ros::TimerEvent const&)172789
mrs_uav_managers::estimation_manager::StateMachine::isInPublishableState() const190814
mrs_uav_managers::estimation_manager::StateMachine::isInitialized() const363634
mrs_uav_managers::estimation_manager::StateMachine::isInState(mrs_uav_managers::estimation_manager::StateMachine::SMState_t const&) const1657075
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.func.html b/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.func.html new file mode 100644 index 0000000000..ebd15e3074 --- /dev/null +++ b/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.func.html @@ -0,0 +1,176 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/estimation_manager/estimation_manager.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/src/estimation_manager - estimation_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:37153469.5 %
Date:2024-04-17 23:52:03Functions:212487.5 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::estimation_manager::StateMachine::changeState(mrs_uav_managers::estimation_manager::StateMachine::SMState_t const&)295
mrs_uav_managers::estimation_manager::StateMachine::changeToPreSwitchState()5
mrs_uav_managers::estimation_manager::StateMachine::StateMachine(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)91
mrs_uav_managers::estimation_manager::EstimationManager::timerPublish(ros::TimerEvent const&)172788
mrs_uav_managers::estimation_manager::EstimationManager::loadConfigFile(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
mrs_uav_managers::estimation_manager::EstimationManager::timerCheckHealth(ros::TimerEvent const&)172789
mrs_uav_managers::estimation_manager::EstimationManager::switchToEstimator(boost::shared_ptr<mrs_uav_managers::StateEstimator> const&)5
mrs_uav_managers::estimation_manager::EstimationManager::callFailsafeService()0
mrs_uav_managers::estimation_manager::EstimationManager::timerInitialization(ros::TimerEvent const&)91
mrs_uav_managers::estimation_manager::EstimationManager::callbackChangeEstimator(mrs_msgs::StringRequest_<std::allocator<void> >&, mrs_msgs::StringResponse_<std::allocator<void> >&)5
mrs_uav_managers::estimation_manager::EstimationManager::timerPublishDiagnostics(ros::TimerEvent const&)18033
mrs_uav_managers::estimation_manager::EstimationManager::switchToHealthyEstimator()0
mrs_uav_managers::estimation_manager::EstimationManager::callbackToggleServiceCallbacks(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)126
mrs_uav_managers::estimation_manager::EstimationManager::onInit()91
mrs_uav_managers::estimation_manager::EstimationManager::EstimationManager()91
mrs_uav_managers::estimation_manager::StateMachine::isInTheAir() const172787
mrs_uav_managers::estimation_manager::StateMachine::getPrintName[abi:cxx11]() const295
mrs_uav_managers::estimation_manager::StateMachine::isInitialized() const363634
mrs_uav_managers::estimation_manager::StateMachine::getStateAsString[abi:cxx11](mrs_uav_managers::estimation_manager::StateMachine::SMState_t const&) const590
mrs_uav_managers::estimation_manager::StateMachine::isInPublishableState() const190814
mrs_uav_managers::estimation_manager::StateMachine::getCurrentStateString[abi:cxx11]() const17077
mrs_uav_managers::estimation_manager::StateMachine::isInState(mrs_uav_managers::estimation_manager::StateMachine::SMState_t const&) const1657075
mrs_uav_managers::estimation_manager::EstimationManager::getName[abi:cxx11]() const3040
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.gcov.frameset.html b/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.gcov.frameset.html new file mode 100644 index 0000000000..0e76ed7e74 --- /dev/null +++ b/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/estimation_manager/estimation_manager.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.gcov.html b/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.gcov.html new file mode 100644 index 0000000000..838725f096 --- /dev/null +++ b/mrs_uav_managers/src/estimation_manager/estimation_manager.cpp.gcov.html @@ -0,0 +1,1330 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/estimation_manager/estimation_manager.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/src/estimation_manager - estimation_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:37153469.5 %
Date:2024-04-17 23:52:03Functions:212487.5 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /*//{ includes */
+       2             : #include <ros/ros.h>
+       3             : #include <nodelet/nodelet.h>
+       4             : 
+       5             : #include <pluginlib/class_loader.h>
+       6             : #include <nodelet/loader.h>
+       7             : 
+       8             : #include <geometry_msgs/QuaternionStamped.h>
+       9             : #include <geometry_msgs/Vector3Stamped.h>
+      10             : 
+      11             : #include <nav_msgs/Odometry.h>
+      12             : 
+      13             : #include <std_srvs/Trigger.h>
+      14             : #include <std_srvs/SetBool.h>
+      15             : 
+      16             : #include <mrs_msgs/UavState.h>
+      17             : #include <mrs_msgs/Float64Stamped.h>
+      18             : #include <mrs_msgs/String.h>
+      19             : #include <mrs_msgs/EstimationDiagnostics.h>
+      20             : #include <mrs_msgs/HwApiCapabilities.h>
+      21             : #include <mrs_msgs/ControlManagerDiagnostics.h>
+      22             : 
+      23             : #include <mrs_lib/param_loader.h>
+      24             : #include <mrs_lib/publisher_handler.h>
+      25             : #include <mrs_lib/service_client_handler.h>
+      26             : #include <mrs_lib/transformer.h>
+      27             : #include <mrs_lib/subscribe_handler.h>
+      28             : #include <mrs_lib/gps_conversions.h>
+      29             : #include <mrs_lib/scope_timer.h>
+      30             : 
+      31             : 
+      32             : #include <mrs_uav_managers/state_estimator.h>
+      33             : #include <mrs_uav_managers/agl_estimator.h>
+      34             : #include <mrs_uav_managers/estimation_manager/support.h>
+      35             : #include <mrs_uav_managers/estimation_manager/common_handlers.h>
+      36             : #include <mrs_uav_managers/estimation_manager/private_handlers.h>
+      37             : /*//}*/
+      38             : 
+      39             : namespace mrs_uav_managers
+      40             : {
+      41             : 
+      42             : namespace estimation_manager
+      43             : {
+      44             : 
+      45             : // --------------------------------------------------------------
+      46             : // |                           classes                          |
+      47             : // --------------------------------------------------------------
+      48             : 
+      49             : /*//{ class StateMachine */
+      50             : class StateMachine {
+      51             : 
+      52             :   /*//{ states */
+      53             : public:
+      54             :   typedef enum
+      55             :   {
+      56             : 
+      57             :     UNINITIALIZED_STATE,
+      58             :     INITIALIZED_STATE,
+      59             :     READY_FOR_FLIGHT_STATE,
+      60             :     TAKING_OFF_STATE,
+      61             :     FLYING_STATE,
+      62             :     HOVER_STATE,
+      63             :     LANDING_STATE,
+      64             :     LANDED_STATE,
+      65             :     ESTIMATOR_SWITCHING_STATE,
+      66             :     DUMMY_STATE,
+      67             :     EMERGENCY_STATE,
+      68             :     FAILSAFE_STATE,
+      69             :     ERROR_STATE
+      70             : 
+      71             :   } SMState_t;
+      72             : 
+      73             :   /*//}*/
+      74             : 
+      75             : public:
+      76        1274 :   StateMachine(const std::string& nodelet_name) : nodelet_name_(nodelet_name) {
+      77          91 :   }
+      78             : 
+      79     1657075 :   bool isInState(const SMState_t& state) const {
+      80     1657075 :     return mrs_lib::get_mutexed(mtx_state_, current_state_) == state;
+      81             :   }
+      82             : 
+      83      363634 :   bool isInitialized() const {
+      84      363634 :     return mrs_lib::get_mutexed(mtx_state_, current_state_) != UNINITIALIZED_STATE;
+      85             :   }
+      86             : 
+      87      190814 :   bool isInPublishableState() const {
+      88      190814 :     const SMState_t current_state = mrs_lib::get_mutexed(mtx_state_, current_state_);
+      89      145755 :     return current_state == READY_FOR_FLIGHT_STATE || current_state == TAKING_OFF_STATE || current_state == HOVER_STATE || current_state == FLYING_STATE ||
+      90      336573 :            current_state == LANDING_STATE || current_state == DUMMY_STATE || current_state == FAILSAFE_STATE;
+      91             :   }
+      92             : 
+      93      172787 :   bool isInTheAir() const {
+      94      172787 :     const SMState_t current_state = mrs_lib::get_mutexed(mtx_state_, current_state_);
+      95      172787 :     return current_state == TAKING_OFF_STATE || current_state == HOVER_STATE || current_state == FLYING_STATE || current_state == LANDING_STATE;
+      96             :   }
+      97             : 
+      98             :   SMState_t getCurrentState() const {
+      99             :     return mrs_lib::get_mutexed(mtx_state_, current_state_);
+     100             :   }
+     101             : 
+     102       17077 :   std::string getCurrentStateString() const {
+     103       17077 :     return mrs_lib::get_mutexed(mtx_state_, sm_state_names_[current_state_]);
+     104             :   }
+     105             : 
+     106         590 :   std::string getStateAsString(const SMState_t& state) const {
+     107         590 :     return sm_state_names_[state];
+     108             :   }
+     109             : 
+     110             :   /*//{ changeState() */
+     111         295 :   bool changeState(const SMState_t& target_state) {
+     112             : 
+     113         295 :     if (target_state == current_state_) {
+     114             : 
+     115           0 :       ROS_WARN("[%s]: requested change to same state %s -> %s", getPrintName().c_str(), getStateAsString(current_state_).c_str(),
+     116             :                getStateAsString(target_state).c_str());
+     117           0 :       return true;
+     118             :     }
+     119             : 
+     120         295 :     switch (target_state) {
+     121             : 
+     122           0 :       case UNINITIALIZED_STATE: {
+     123           0 :         ROS_ERROR_THROTTLE(1.0, "[%s]: transition to %s is not possible from any state", getPrintName().c_str(), getStateAsString(UNINITIALIZED_STATE).c_str());
+     124           0 :         return false;
+     125             :         break;
+     126             :       }
+     127             : 
+     128          91 :       case INITIALIZED_STATE: {
+     129          91 :         if (current_state_ != UNINITIALIZED_STATE) {
+     130           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: transition to %s is possible only from %s", getPrintName().c_str(), getStateAsString(INITIALIZED_STATE).c_str(),
+     131             :                              getStateAsString(UNINITIALIZED_STATE).c_str());
+     132           0 :           return false;
+     133             :         }
+     134          91 :         break;
+     135             :       }
+     136             : 
+     137          91 :       case READY_FOR_FLIGHT_STATE: {
+     138          91 :         if (current_state_ != INITIALIZED_STATE && current_state_ != LANDED_STATE) {
+     139           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: transition to %s is possible only from %s or %s", getPrintName().c_str(),
+     140             :                              getStateAsString(READY_FOR_FLIGHT_STATE).c_str(), getStateAsString(INITIALIZED_STATE).c_str(),
+     141             :                              getStateAsString(LANDED_STATE).c_str());
+     142           0 :           return false;
+     143             :         }
+     144          91 :         break;
+     145             :       }
+     146             : 
+     147          22 :       case TAKING_OFF_STATE: {
+     148          22 :         if (current_state_ != READY_FOR_FLIGHT_STATE) {
+     149           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: transition to %s is possible only from %s", getPrintName().c_str(), getStateAsString(TAKING_OFF_STATE).c_str(),
+     150             :                              getStateAsString(READY_FOR_FLIGHT_STATE).c_str());
+     151           0 :           return false;
+     152             :         }
+     153          22 :         break;
+     154             :       }
+     155             : 
+     156          86 :       case FLYING_STATE: {
+     157          86 :         if (current_state_ != TAKING_OFF_STATE && current_state_ != READY_FOR_FLIGHT_STATE && current_state_ != HOVER_STATE && current_state_ != ESTIMATOR_SWITCHING_STATE) {
+     158           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: transition to %s is possible only from %s or %s or %s", getPrintName().c_str(), getStateAsString(FLYING_STATE).c_str(),
+     159             :                              getStateAsString(TAKING_OFF_STATE).c_str(), getStateAsString(HOVER_STATE).c_str(),
+     160             :                              getStateAsString(ESTIMATOR_SWITCHING_STATE).c_str());
+     161           0 :           return false;
+     162             :         }
+     163          86 :         break;
+     164             :       }
+     165             : 
+     166           0 :       case HOVER_STATE: {
+     167           0 :         if (current_state_ != FLYING_STATE) {
+     168           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: transition to %s is possible only from %s", getPrintName().c_str(), getStateAsString(HOVER_STATE).c_str(),
+     169             :                              getStateAsString(FLYING_STATE).c_str());
+     170           0 :           return false;
+     171             :         }
+     172           0 :         break;
+     173             :       }
+     174             : 
+     175           5 :       case ESTIMATOR_SWITCHING_STATE: {
+     176           5 :         if (current_state_ != FLYING_STATE && current_state_ != HOVER_STATE) {
+     177           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: transition to %s is possible only from %s or %s", getPrintName().c_str(),
+     178             :                              getStateAsString(ESTIMATOR_SWITCHING_STATE).c_str(), getStateAsString(FLYING_STATE).c_str(),
+     179             :                              getStateAsString(HOVER_STATE).c_str());
+     180           0 :           return false;
+     181             :         }
+     182           5 :         pre_switch_state_ = current_state_;
+     183           5 :         break;
+     184             :       }
+     185             : 
+     186           0 :       case LANDING_STATE: {
+     187           0 :         if (current_state_ != FLYING_STATE && current_state_ != HOVER_STATE) {
+     188           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: transition to %s is possible only from %s or %s", getPrintName().c_str(), getStateAsString(LANDING_STATE).c_str(),
+     189             :                              getStateAsString(FLYING_STATE).c_str(), getStateAsString(HOVER_STATE).c_str());
+     190           0 :           return false;
+     191             :         }
+     192           0 :         break;
+     193             :       }
+     194             : 
+     195           0 :       case LANDED_STATE: {
+     196           0 :         if (current_state_ != LANDING_STATE) {
+     197           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: transition to %s is possible only from %s", getPrintName().c_str(), getStateAsString(LANDED_STATE).c_str(),
+     198             :                              getStateAsString(LANDING_STATE).c_str());
+     199           0 :           return false;
+     200             :         }
+     201           0 :         break;
+     202             :       }
+     203             : 
+     204           0 :       case DUMMY_STATE: {
+     205           0 :         if (current_state_ != INITIALIZED_STATE) {
+     206           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: transition to %s is possible only from %s", getPrintName().c_str(), getStateAsString(DUMMY_STATE).c_str(),
+     207             :                              getStateAsString(INITIALIZED_STATE).c_str());
+     208           0 :           return false;
+     209             :         }
+     210           0 :         break;
+     211             :       }
+     212           0 :       case EMERGENCY_STATE: {
+     213           0 :         ROS_WARN("[%s]: transition to %s", getPrintName().c_str(), getStateAsString(EMERGENCY_STATE).c_str());
+     214           0 :         break;
+     215             :       }
+     216             : 
+     217           0 :       case ERROR_STATE: {
+     218           0 :         ROS_WARN("[%s]: transition to %s", getPrintName().c_str(), getStateAsString(ERROR_STATE).c_str());
+     219           0 :         break;
+     220             :       }
+     221             : 
+     222           0 :       case FAILSAFE_STATE: {
+     223           0 :         ROS_WARN("[%s]: transition to %s", getPrintName().c_str(), getStateAsString(FAILSAFE_STATE).c_str());
+     224           0 :         break;
+     225             :       }
+     226             : 
+     227           0 :       default: {
+     228           0 :         ROS_ERROR_THROTTLE(1.0, "[%s]: rejected transition to unknown state id %d", getPrintName().c_str(), target_state);
+     229           0 :         return false;
+     230             :         break;
+     231             :       }
+     232             :     }
+     233             : 
+     234         295 :     std::scoped_lock lock(mtx_state_);
+     235             :     {
+     236         295 :       previous_state_ = current_state_;
+     237         295 :       current_state_  = target_state;
+     238             :     }
+     239             : 
+     240         295 :     ROS_INFO("[%s]: successfully changed states %s -> %s", getPrintName().c_str(), getStateAsString(previous_state_).c_str(),
+     241             :              getStateAsString(current_state_).c_str());
+     242             : 
+     243         295 :     return true;
+     244             :   }
+     245             :   /*//}*/
+     246             : 
+     247             :   /*//{ changeToPreSwitchState() */
+     248           5 :   void changeToPreSwitchState() {
+     249           5 :     changeState(pre_switch_state_);
+     250           5 :   }
+     251             :   /*//}*/
+     252             : 
+     253             : private:
+     254             :   const std::string name_ = "StateMachine";
+     255             :   const std::string nodelet_name_;
+     256             : 
+     257             :   SMState_t current_state_    = UNINITIALIZED_STATE;
+     258             :   SMState_t previous_state_   = UNINITIALIZED_STATE;
+     259             :   SMState_t pre_switch_state_ = UNINITIALIZED_STATE;
+     260             : 
+     261             :   mutable std::mutex mtx_state_;
+     262             : 
+     263             :   std::string getName() const {
+     264             :     return name_;
+     265             :   }
+     266             : 
+     267         295 :   std::string getPrintName() const {
+     268         590 :     return nodelet_name_ + "/" + name_;
+     269             :   }
+     270             : 
+     271             :   // clang-format off
+     272             :   const std::vector<std::string> sm_state_names_ = {
+     273             :   "UNINITIALIZED_STATE",
+     274             :   "INITIALIZED_STATE",
+     275             :   "READY_FOR_FLIGHT_STATE",
+     276             :   "TAKING_OFF_STATE",
+     277             :   "FLYING_STATE",
+     278             :   "HOVER_STATE",
+     279             :   "LANDING_STATE",
+     280             :   "LANDED_STATE",
+     281             :   "ESTIMATOR_SWITCHING_STATE",
+     282             :   "DUMMY_STATE",
+     283             :   "EMERGENCY_STATE",
+     284             :   "FAILSAFE_STATE",
+     285             :   "ERROR_STATE"
+     286             :   };
+     287             :   // clang-format on
+     288             : };
+     289             : /*//}*/
+     290             : 
+     291             : /*//{ class EstimationManager */
+     292             : class EstimationManager : public nodelet::Nodelet {
+     293             : 
+     294             : private:
+     295             :   const std::string nodelet_name_ = "EstimationManager";
+     296             :   const std::string package_name_ = "mrs_uav_managers";
+     297             : 
+     298             :   ros::NodeHandle nh_;
+     299             : 
+     300             :   std::string _custom_config_;
+     301             :   std::string _platform_config_;
+     302             :   std::string _world_config_;
+     303             : 
+     304             :   std::shared_ptr<CommonHandlers_t> ch_;
+     305             : 
+     306             :   std::shared_ptr<StateMachine> sm_;
+     307             : 
+     308             :   std::string after_midair_activation_tracker_name_;
+     309             :   std::string takeoff_tracker_name_;
+     310             : 
+     311             :   mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics> sh_control_manager_diag_;
+     312             :   mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput>            sh_control_input_;
+     313             : 
+     314             :   mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics> ph_diagnostics_;
+     315             :   mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>        ph_max_flight_z_;
+     316             :   mrs_lib::PublisherHandler<mrs_msgs::UavState>              ph_uav_state_;
+     317             :   mrs_lib::PublisherHandler<nav_msgs::Odometry>              ph_odom_main_;
+     318             :   mrs_lib::PublisherHandler<nav_msgs::Odometry>              ph_odom_slow_;  // use topic throttler instead?
+     319             :   mrs_lib::PublisherHandler<nav_msgs::Odometry>              ph_innovation_;
+     320             : 
+     321             :   mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped> ph_altitude_amsl_;
+     322             :   mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped> ph_altitude_agl_;
+     323             : 
+     324             :   mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped> ph_orientation_;
+     325             : 
+     326             :   ros::Timer timer_publish_;
+     327             :   void       timerPublish(const ros::TimerEvent& event);
+     328             : 
+     329             :   ros::Timer timer_publish_diagnostics_;
+     330             :   void       timerPublishDiagnostics(const ros::TimerEvent& event);
+     331             : 
+     332             :   ros::Timer timer_check_health_;
+     333             :   void       timerCheckHealth(const ros::TimerEvent& event);
+     334             : 
+     335             :   ros::Timer timer_initialization_;
+     336             :   void       timerInitialization(const ros::TimerEvent& event);
+     337             : 
+     338             :   ros::ServiceServer srvs_change_estimator_;
+     339             :   bool               callbackChangeEstimator(mrs_msgs::String::Request& req, mrs_msgs::String::Response& res);
+     340             :   int                estimator_switch_count_ = 0;
+     341             : 
+     342             : 
+     343             :   ros::ServiceServer srvs_toggle_callbacks_;
+     344             :   bool               callbackToggleServiceCallbacks(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res);
+     345             :   bool               callbacks_enabled_             = false;
+     346             :   bool               callbacks_disabled_by_service_ = false;
+     347             : 
+     348             :   bool                                             callFailsafeService();
+     349             :   mrs_lib::ServiceClientHandler<std_srvs::Trigger> srvch_failsafe_;
+     350             :   bool                                             failsafe_call_succeeded_ = false;
+     351             : 
+     352             :   // TODO service clients
+     353             :   /* mrs_lib::ServiceClientHandler<std_srvs::Trigger> srvc_hover_; */
+     354             :   /* mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv> srvc_reference_; */
+     355             :   /* mrs_lib::ServiceClientHandler<std_srvs::Trigger> srvc_ehover_; */
+     356             :   /* mrs_lib::ServiceClientHandler<std_srvs::SetBool> srvc_enable_callbacks_; */
+     357             : 
+     358             :   // | ------------- dynamic loading of estimators ------------- |
+     359             :   std::unique_ptr<pluginlib::ClassLoader<mrs_uav_managers::StateEstimator>> state_estimator_loader_;  // pluginlib loader of dynamically loaded estimators
+     360             :   std::vector<std::string>                                                  estimator_names_;         // list of estimator names
+     361             :   std::vector<boost::shared_ptr<mrs_uav_managers::StateEstimator>>          estimator_list_;          // list of estimators
+     362             :   std::mutex                                                                mutex_estimator_list_;
+     363             :   std::vector<std::string>                                                  switchable_estimator_names_;
+     364             :   std::mutex                                                                mutex_switchable_estimator_names_;
+     365             :   std::string                                                               initial_estimator_name_ = "UNDEFINED_INITIAL_ESTIMATOR";
+     366             :   boost::shared_ptr<mrs_uav_managers::StateEstimator>                       initial_estimator_;
+     367             :   boost::shared_ptr<mrs_uav_managers::StateEstimator>                       active_estimator_;
+     368             :   std::mutex                                                                mutex_active_estimator_;
+     369             : 
+     370             :   std::unique_ptr<pluginlib::ClassLoader<mrs_uav_managers::AglEstimator>> agl_estimator_loader_;  // pluginlib loader of dynamically loaded estimators
+     371             :   std::string                                                             est_alt_agl_name_ = "UNDEFINED_AGL_ESTIMATOR";
+     372             :   boost::shared_ptr<mrs_uav_managers::AglEstimator>                       est_alt_agl_;
+     373             :   bool                                                                    is_using_agl_estimator_;
+     374             : 
+     375             :   double max_flight_z_;
+     376             : 
+     377             :   bool switchToHealthyEstimator();
+     378             :   void switchToEstimator(const boost::shared_ptr<mrs_uav_managers::StateEstimator>& target_estimator);
+     379             : 
+     380             :   bool loadConfigFile(const std::string& file_path);
+     381             : 
+     382             : public:
+     383          91 :   EstimationManager() {
+     384          91 :   }
+     385             : 
+     386             :   void onInit();
+     387             : 
+     388             :   std::string getName() const;
+     389             : };
+     390             : /*//}*/
+     391             : 
+     392             : /*//{ onInit() */
+     393          91 : void EstimationManager::onInit() {
+     394             : 
+     395          91 :   nh_ = nodelet::Nodelet::getMTPrivateNodeHandle();
+     396             : 
+     397          91 :   ros::Time::waitForValid();
+     398             : 
+     399          91 :   ROS_INFO("[%s]: initializing", getName().c_str());
+     400             : 
+     401          91 :   sm_ = std::make_shared<StateMachine>(nodelet_name_);
+     402             : 
+     403          91 :   ch_ = std::make_shared<CommonHandlers_t>();
+     404             : 
+     405          91 :   ch_->nodelet_name = nodelet_name_;
+     406          91 :   ch_->package_name = package_name_;
+     407             : 
+     408             :   // finish initialization in a oneshot timer, so that we don't block loading of other nodelets by the nodelet manager
+     409          91 :   timer_initialization_ = nh_.createTimer(ros::Rate(1.0), &EstimationManager::timerInitialization, this, true, true);
+     410          91 : }
+     411             : /*//}*/
+     412             : 
+     413             : // --------------------------------------------------------------
+     414             : // |                          callbacks                         |
+     415             : // --------------------------------------------------------------
+     416             : 
+     417             : // | --------------------- timer callbacks -------------------- |
+     418             : 
+     419             : /*//{ timerPublish() */
+     420      172788 : void EstimationManager::timerPublish([[maybe_unused]] const ros::TimerEvent& event) {
+     421             : 
+     422      172788 :   if (!sm_->isInitialized()) {
+     423       17687 :     return;
+     424             :   }
+     425             : 
+     426      345572 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("EstimationManager::timerPublish", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     427             : 
+     428      172786 :   if (sm_->isInState(StateMachine::ESTIMATOR_SWITCHING_STATE)) {
+     429           0 :     ROS_WARN("[%s]: Not publishing during estimator switching.", getName().c_str());
+     430           0 :     return;
+     431             :   }
+     432             : 
+     433      172786 :   if (!sm_->isInPublishableState()) {
+     434       17685 :     ROS_WARN_THROTTLE(1.0, "[%s]: not publishing uav state in %s", getName().c_str(), sm_->getCurrentStateString().c_str());
+     435       17685 :     return;
+     436             :   }
+     437             : 
+     438      155101 :   mrs_msgs::UavState uav_state;
+     439      155101 :   auto               ret = active_estimator_->getUavState();
+     440      155101 :   if (ret) {
+     441      155101 :     uav_state = ret.value();
+     442             :   } else {
+     443           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: Active estimator did not provide uav_state.", getName().c_str());
+     444           0 :     return;
+     445             :   }
+     446             : 
+     447      155101 :   if (!Support::noNans(uav_state.pose.orientation)) {
+     448           0 :     ROS_ERROR("[%s]: nan in uav state orientation", getName().c_str());
+     449           0 :     return;
+     450             :   }
+     451             : 
+     452             : 
+     453      155101 :   if (active_estimator_->isMitigatingJump()) {
+     454           0 :     estimator_switch_count_++;
+     455             :   }
+     456      155101 :   uav_state.estimator_iteration = estimator_switch_count_;
+     457             : 
+     458      155101 :   scope_timer.checkpoint("get uav state");
+     459             :   // TODO state health checks
+     460             : 
+     461      155101 :   ph_uav_state_.publish(uav_state);
+     462             : 
+     463      155101 :   scope_timer.checkpoint("pub uav state");
+     464      310202 :   nav_msgs::Odometry odom_main = Support::uavStateToOdom(uav_state);
+     465             : 
+     466      155101 :   scope_timer.checkpoint("uav state to odom");
+     467      310202 :   const std::vector<double> pose_covariance = active_estimator_->getPoseCovariance();
+     468     5738746 :   for (size_t i = 0; i < pose_covariance.size(); i++) {
+     469     5583638 :     odom_main.pose.covariance[i] = pose_covariance[i];
+     470             :   }
+     471             : 
+     472      310202 :   const std::vector<double> twist_covariance = active_estimator_->getTwistCovariance();
+     473     5738746 :   for (size_t i = 0; i < twist_covariance.size(); i++) {
+     474     5583638 :     odom_main.twist.covariance[i] = twist_covariance[i];
+     475             :   }
+     476             : 
+     477      155101 :   scope_timer.checkpoint("get covariance");
+     478      155101 :   ph_odom_main_.publish(odom_main);
+     479             : 
+     480      310202 :   nav_msgs::Odometry innovation = active_estimator_->getInnovation();
+     481      155101 :   ph_innovation_.publish(innovation);
+     482             : 
+     483             : 
+     484      310202 :   mrs_msgs::Float64Stamped agl_height;
+     485             : 
+     486      155101 :   if (is_using_agl_estimator_) {
+     487      126271 :     agl_height = est_alt_agl_->getUavAglHeight();
+     488      126271 :     ph_altitude_agl_.publish(agl_height);
+     489             :   }
+     490             : }
+     491             : /*//}*/
+     492             : 
+     493             : /*//{ timerPublishDiagnostics() */
+     494       18033 : void EstimationManager::timerPublishDiagnostics([[maybe_unused]] const ros::TimerEvent& event) {
+     495             : 
+     496       18033 :   if (!sm_->isInitialized()) {
+     497        1710 :     return;
+     498             :   }
+     499             : 
+     500       36066 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("EstimationManager::timerPublishDiagnostics", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     501             : 
+     502       18033 :   if (sm_->isInState(StateMachine::ESTIMATOR_SWITCHING_STATE)) {
+     503           0 :     ROS_WARN("[%s]: Not publishing diagnostics during estimator switching.", getName().c_str());
+     504           0 :     return;
+     505             :   }
+     506             : 
+     507       18033 :   if (!sm_->isInPublishableState()) {
+     508        1710 :     ROS_WARN_THROTTLE(1.0, "[%s]: not publishing uav state in %s", getName().c_str(), sm_->getCurrentStateString().c_str());
+     509        1710 :     return;
+     510             :   }
+     511             : 
+     512       16323 :   mrs_msgs::UavState uav_state;
+     513       16323 :   auto               ret = active_estimator_->getUavState();
+     514       16323 :   if (ret) {
+     515       16323 :     uav_state = ret.value();
+     516             :   } else {
+     517           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: Active estimator did not provide uav_state.", getName().c_str());
+     518           0 :     return;
+     519             :   }
+     520             : 
+     521       16323 :   if (!Support::noNans(uav_state.pose.orientation)) {
+     522           0 :     ROS_ERROR("[%s]: nan in uav state orientation", getName().c_str());
+     523           0 :     return;
+     524             :   }
+     525             : 
+     526       32646 :   mrs_msgs::Float64Stamped agl_height;
+     527             : 
+     528       16323 :   if (is_using_agl_estimator_) {
+     529       12373 :     agl_height = est_alt_agl_->getUavAglHeight();
+     530       12373 :     ph_altitude_agl_.publish(agl_height);
+     531             :   }
+     532             : 
+     533       32646 :   mrs_msgs::Float64Stamped max_flight_z_msg;
+     534       16323 :   max_flight_z_msg.header.stamp = ros::Time::now();
+     535       16323 :   if (active_estimator_ && active_estimator_->isInitialized()) {
+     536       16323 :     max_flight_z_msg.header.frame_id = active_estimator_->getFrameId();
+     537       16323 :     max_flight_z_msg.value           = active_estimator_->getMaxFlightZ();
+     538             :   }
+     539       16323 :   max_flight_z_ = max_flight_z_msg.value;
+     540       16323 :   ph_max_flight_z_.publish(max_flight_z_msg);
+     541             : 
+     542             :   // publish diagnostics
+     543       32646 :   mrs_msgs::EstimationDiagnostics diagnostics;
+     544             : 
+     545       16323 :   diagnostics.header.stamp   = uav_state.header.stamp;
+     546       16323 :   diagnostics.child_frame_id = uav_state.child_frame_id;
+     547             : 
+     548       16323 :   diagnostics.pose         = uav_state.pose;
+     549       16323 :   diagnostics.velocity     = uav_state.velocity;
+     550       16323 :   diagnostics.acceleration = uav_state.acceleration;
+     551             : 
+     552       16323 :   diagnostics.sm_state                 = sm_->getCurrentStateString();
+     553       16323 :   diagnostics.max_flight_z             = max_flight_z_msg.value;
+     554       16323 :   diagnostics.estimator_iteration      = estimator_switch_count_;
+     555       16323 :   diagnostics.estimation_rate          = ch_->desired_uav_state_rate;
+     556       16323 :   diagnostics.running_state_estimators = estimator_names_;
+     557             : 
+     558             :   {
+     559       32646 :     std::scoped_lock lock(mutex_switchable_estimator_names_);
+     560       16323 :     diagnostics.switchable_state_estimators = switchable_estimator_names_;
+     561             :   }
+     562             : 
+     563             : 
+     564       16323 :   if (active_estimator_ && active_estimator_->isInitialized()) {
+     565       16323 :     diagnostics.header.frame_id         = active_estimator_->getFrameId();
+     566       16323 :     diagnostics.current_state_estimator = active_estimator_->getName();
+     567             :   } else {
+     568           0 :     diagnostics.header.frame_id         = "";
+     569           0 :     diagnostics.current_state_estimator = "";
+     570             :   }
+     571             : 
+     572       16323 :   diagnostics.estimator_horizontal = uav_state.estimator_horizontal;
+     573       16323 :   diagnostics.estimator_vertical   = uav_state.estimator_vertical;
+     574       16323 :   diagnostics.estimator_heading    = uav_state.estimator_heading;
+     575             : 
+     576       16323 :   if (is_using_agl_estimator_) {
+     577       12373 :     diagnostics.estimator_agl_height = est_alt_agl_name_;
+     578       12373 :     diagnostics.agl_height           = agl_height.value;
+     579             :   } else {
+     580        3950 :     diagnostics.estimator_agl_height = "NOT_USED";
+     581        3950 :     diagnostics.agl_height           = std::nanf("");
+     582             :   }
+     583             : 
+     584       16323 :   diagnostics.platform_config = _platform_config_;
+     585       16323 :   diagnostics.custom_config   = _custom_config_;
+     586             : 
+     587       16323 :   ph_diagnostics_.publish(diagnostics);
+     588             : 
+     589       16323 :   ROS_INFO_THROTTLE(5.0, "[%s]: %s. pos: [%.2f, %.2f, %.2f] m. Estimator: %s. Max. z.: %.2f m. Estimator switches: %d.", getName().c_str(),
+     590             :                     sm_->getCurrentStateString().c_str(), uav_state.pose.position.x, uav_state.pose.position.y, uav_state.pose.position.z,
+     591             :                     active_estimator_->getName().c_str(), max_flight_z_, estimator_switch_count_);
+     592             : }
+     593             : /*//}*/
+     594             : 
+     595             : /*//{ timerCheckHealth() */
+     596      172789 : void EstimationManager::timerCheckHealth([[maybe_unused]] const ros::TimerEvent& event) {
+     597             : 
+     598      172789 :   if (!sm_->isInitialized()) {
+     599           2 :     return;
+     600             :   }
+     601             : 
+     602      518361 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("EstimationManager::timerCheckHealth", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     603             : 
+     604             :   /*//{ start ready estimators, check switchable estimators */
+     605      345574 :   std::vector<std::string> switchable_estimator_names;
+     606      365857 :   for (auto estimator : estimator_list_) {
+     607             : 
+     608      193070 :     if (estimator->isReady()) {
+     609             :       try {
+     610        7329 :         ROS_INFO_THROTTLE(1.0, "[%s]: starting the estimator '%s'", getName().c_str(), estimator->getName().c_str());
+     611        7329 :         estimator->start();
+     612             :       }
+     613           0 :       catch (std::runtime_error& ex) {
+     614           0 :         ROS_ERROR("[%s]: exception caught during estimator starting: '%s'", getName().c_str(), ex.what());
+     615           0 :         ros::shutdown();
+     616             :       }
+     617             :     }
+     618             : 
+     619      193070 :     if (estimator->isRunning() && estimator->getName() != "dummy" && estimator->getName() != "ground_truth") {
+     620      183699 :       switchable_estimator_names.push_back(estimator->getName());
+     621             :     }
+     622             :   }
+     623             : 
+     624             :   {
+     625      345574 :     std::scoped_lock lock(mutex_switchable_estimator_names_);
+     626      172787 :     switchable_estimator_names_ = switchable_estimator_names;
+     627             :   }
+     628             : 
+     629      172787 :   if (is_using_agl_estimator_ && est_alt_agl_->isReady()) {
+     630          70 :     est_alt_agl_->start();
+     631             :   }
+     632             : 
+     633             :   /*//}*/
+     634             : 
+     635      312258 :   if (!callbacks_disabled_by_service_ &&
+     636      312258 :       (sm_->isInState(StateMachine::FLYING_STATE) || sm_->isInState(StateMachine::HOVER_STATE) || sm_->isInState(StateMachine::READY_FOR_FLIGHT_STATE))) {
+     637      121349 :     callbacks_enabled_ = true;
+     638             :   } else {
+     639       51438 :     callbacks_enabled_ = false;
+     640             :   }
+     641             : 
+     642             :   // TODO fuj if, zmenit na switch
+     643             :   // activate initial estimator
+     644      172787 :   if (sm_->isInState(StateMachine::INITIALIZED_STATE) && initial_estimator_->isRunning()) {
+     645       16984 :     std::scoped_lock lock(mutex_active_estimator_);
+     646        8492 :     ROS_INFO_THROTTLE(1.0, "[%s]: activating the initial estimator %s", getName().c_str(), initial_estimator_->getName().c_str());
+     647        8492 :     active_estimator_ = initial_estimator_;
+     648        8492 :     if (active_estimator_->getName() == "dummy") {
+     649           0 :       sm_->changeState(StateMachine::DUMMY_STATE);
+     650             :     } else {
+     651        8492 :       if (!is_using_agl_estimator_ || est_alt_agl_->isRunning()) {
+     652          91 :         sm_->changeState(StateMachine::READY_FOR_FLIGHT_STATE);
+     653             :       } else {
+     654        8401 :         ROS_INFO_THROTTLE(1.0, "[%s]: %s agl estimator: %s to be running", getName().c_str(), Support::waiting_for_string.c_str(),
+     655             :                           est_alt_agl_->getName().c_str());
+     656             :       }
+     657             :     }
+     658             :   }
+     659             : 
+     660             :   // active estimator is in faulty state, we need to switch to healthy estimator
+     661      172787 :   if (sm_->isInTheAir() && active_estimator_->isError()) {
+     662           0 :     sm_->changeState(StateMachine::ESTIMATOR_SWITCHING_STATE);
+     663             :   }
+     664             : 
+     665      172787 :   if (sm_->isInState(StateMachine::ESTIMATOR_SWITCHING_STATE)) {
+     666           0 :     if (switchToHealthyEstimator()) {
+     667           0 :       sm_->changeToPreSwitchState();
+     668             :     } else {  // cannot switch to healthy estimator - failsafe necessary
+     669           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Cannot switch to any healthy estimator. Triggering failsafe.", getName().c_str());
+     670           0 :       sm_->changeState(StateMachine::FAILSAFE_STATE);
+     671             :     }
+     672             :   }
+     673             : 
+     674      172787 :   if (sm_->isInState(StateMachine::FAILSAFE_STATE)) {
+     675           0 :     if (!failsafe_call_succeeded_ && callFailsafeService()) {
+     676           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: failsafe called successfully", getName().c_str());
+     677           0 :       failsafe_call_succeeded_ = true;
+     678             :     }
+     679           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: we are in failsafe state", getName().c_str());
+     680             :   }
+     681             : 
+     682             :   // standard takeoff
+     683      172787 :   if (sm_->isInState(StateMachine::READY_FOR_FLIGHT_STATE)) {
+     684       40965 :     if (sh_control_manager_diag_.hasMsg() && sh_control_manager_diag_.getMsg()->active_tracker == takeoff_tracker_name_) {
+     685          22 :       sm_->changeState(StateMachine::TAKING_OFF_STATE);
+     686             :     }
+     687             :   }
+     688             : 
+     689             :   // midair activation
+     690      172787 :   if (sm_->isInState(StateMachine::READY_FOR_FLIGHT_STATE)) {
+     691       40943 :     if (sh_control_manager_diag_.hasMsg() && sh_control_manager_diag_.getMsg()->active_tracker == after_midair_activation_tracker_name_) {
+     692          61 :       sm_->changeState(StateMachine::FLYING_STATE);
+     693             :     }
+     694             :   }
+     695             : 
+     696      172787 :   if (sm_->isInState(StateMachine::TAKING_OFF_STATE)) {
+     697       10575 :     if (sh_control_manager_diag_.hasMsg() && sh_control_manager_diag_.getMsg()->active_tracker != takeoff_tracker_name_) {
+     698          20 :       sm_->changeState(StateMachine::FLYING_STATE);
+     699             :     }
+     700             :   }
+     701             : 
+     702      172787 :   if (sm_->isInState(StateMachine::FLYING_STATE)) {
+     703      103742 :     if ((ros::Time::now() - sh_control_input_.lastMsgTime()).toSec() > 0.1) {
+     704       18414 :       ROS_WARN_THROTTLE(1.0, "[%s]: not received control input for %.4fs, estimation suboptimal, potentially unstable", getName().c_str(),
+     705             :                         (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec());
+     706             :     }
+     707             :   }
+     708             : }
+     709             : /*//}*/
+     710             : 
+     711             : /*//{ timerInitialization() */
+     712          91 : void EstimationManager::timerInitialization([[maybe_unused]] const ros::TimerEvent& event) {
+     713             : 
+     714         182 :   mrs_lib::ParamLoader param_loader(nh_, getName());
+     715             : 
+     716          91 :   param_loader.loadParam("custom_config", _custom_config_);
+     717          91 :   param_loader.loadParam("platform_config", _platform_config_);
+     718          91 :   param_loader.loadParam("world_config", _world_config_);
+     719             : 
+     720          91 :   if (_custom_config_ != "") {
+     721          91 :     param_loader.addYamlFile(_custom_config_);
+     722             :   }
+     723             : 
+     724          91 :   if (_platform_config_ != "") {
+     725          91 :     param_loader.addYamlFile(_platform_config_);
+     726             :   }
+     727             : 
+     728          91 :   if (_world_config_ != "") {
+     729          91 :     param_loader.addYamlFile(_world_config_);
+     730             :   }
+     731             : 
+     732          91 :   param_loader.addYamlFileFromParam("private_config");
+     733          91 :   param_loader.addYamlFileFromParam("public_config");
+     734          91 :   param_loader.addYamlFileFromParam("uav_manager_config");
+     735          91 :   param_loader.addYamlFileFromParam("estimators_config");
+     736          91 :   param_loader.addYamlFileFromParam("active_estimators_config");
+     737             : 
+     738          91 :   param_loader.loadParam("uav_name", ch_->uav_name);
+     739             : 
+     740             :   /*//{ load world_origin parameters */
+     741             : 
+     742         182 :   std::string world_origin_units;
+     743          91 :   bool        is_origin_param_ok = true;
+     744          91 :   double      world_origin_x     = 0;
+     745          91 :   double      world_origin_y     = 0;
+     746             : 
+     747          91 :   param_loader.loadParam("world_origin/units", world_origin_units);
+     748             : 
+     749          91 :   if (Support::toLowercase(world_origin_units) == "utm") {
+     750           0 :     ROS_INFO("[%s]: Loading world origin in UTM units.", getName().c_str());
+     751           0 :     is_origin_param_ok &= param_loader.loadParam("world_origin/origin_x", world_origin_x);
+     752           0 :     is_origin_param_ok &= param_loader.loadParam("world_origin/origin_y", world_origin_y);
+     753             : 
+     754          91 :   } else if (Support::toLowercase(world_origin_units) == "latlon") {
+     755             :     double lat, lon;
+     756          91 :     ROS_INFO("[%s]: Loading world origin in LatLon units.", getName().c_str());
+     757          91 :     is_origin_param_ok &= param_loader.loadParam("world_origin/origin_x", lat);
+     758          91 :     is_origin_param_ok &= param_loader.loadParam("world_origin/origin_y", lon);
+     759          91 :     mrs_lib::UTM(lat, lon, &world_origin_x, &world_origin_y);
+     760          91 :     ROS_INFO("[%s]: Converted to UTM x: %f, y: %f.", getName().c_str(), world_origin_x, world_origin_y);
+     761             : 
+     762             :   } else {
+     763           0 :     ROS_ERROR("[%s]: world_origin_units must be (\"UTM\"|\"LATLON\"). Got '%s'", getName().c_str(), world_origin_units.c_str());
+     764           0 :     ros::shutdown();
+     765             :   }
+     766             : 
+     767          91 :   ch_->world_origin.x = world_origin_x;
+     768          91 :   ch_->world_origin.y = world_origin_y;
+     769             : 
+     770          91 :   if (!is_origin_param_ok) {
+     771           0 :     ROS_ERROR("[%s]: Could not load all mandatory parameters from world file. Please check your world file.", getName().c_str());
+     772           0 :     ros::shutdown();
+     773             :   }
+     774             :   /*//}*/
+     775             : 
+     776             :   /*//{ load tracker names */
+     777          91 :   param_loader.loadParam("mrs_uav_managers/uav_manager/takeoff/during_takeoff/tracker", takeoff_tracker_name_);
+     778          91 :   param_loader.loadParam("mrs_uav_managers/uav_manager/midair_activation/after_activation/tracker", after_midair_activation_tracker_name_);
+     779             :   /*//}*/
+     780             : 
+     781          91 :   param_loader.setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/");
+     782             : 
+     783             :   /*//{ load parameters into common handlers */
+     784          91 :   param_loader.loadParam("frame_id/fcu", ch_->frames.fcu);
+     785          91 :   ch_->frames.ns_fcu = ch_->uav_name + "/" + ch_->frames.fcu;
+     786             : 
+     787          91 :   param_loader.loadParam("frame_id/fcu_untilted", ch_->frames.fcu_untilted);
+     788          91 :   ch_->frames.ns_fcu_untilted = ch_->uav_name + "/" + ch_->frames.fcu_untilted;
+     789             : 
+     790          91 :   param_loader.loadParam("frame_id/rtk_antenna", ch_->frames.rtk_antenna);
+     791          91 :   ch_->frames.ns_rtk_antenna = ch_->uav_name + "/" + ch_->frames.rtk_antenna;
+     792             : 
+     793          91 :   ch_->transformer = std::make_shared<mrs_lib::Transformer>(nh_, getName());
+     794          91 :   ch_->transformer->retryLookupNewest(true);
+     795             : 
+     796          91 :   param_loader.loadParam("rate/diagnostics", ch_->desired_diagnostics_rate);
+     797             : 
+     798             :   /*//}*/
+     799             : 
+     800             :   /*//{ load parameters */
+     801             : 
+     802             :   /*//{ publish debug topics parameters */
+     803          91 :   param_loader.loadParam("debug_topics/input", ch_->debug_topics.input);
+     804          91 :   param_loader.loadParam("debug_topics/output", ch_->debug_topics.output);
+     805          91 :   param_loader.loadParam("debug_topics/state", ch_->debug_topics.state);
+     806          91 :   param_loader.loadParam("debug_topics/covariance", ch_->debug_topics.covariance);
+     807          91 :   param_loader.loadParam("debug_topics/innovation", ch_->debug_topics.innovation);
+     808          91 :   param_loader.loadParam("debug_topics/diagnostics", ch_->debug_topics.diag);
+     809          91 :   param_loader.loadParam("debug_topics/correction", ch_->debug_topics.correction);
+     810          91 :   param_loader.loadParam("debug_topics/correction_delay", ch_->debug_topics.corr_delay);
+     811             :   /*//}*/
+     812             : 
+     813             :   /*//}*/
+     814             : 
+     815         182 :   mrs_lib::SubscribeHandlerOptions shopts;
+     816          91 :   shopts.nh                 = nh_;
+     817          91 :   shopts.node_name          = getName();
+     818          91 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     819          91 :   shopts.threadsafe         = true;
+     820          91 :   shopts.autostart          = true;
+     821          91 :   shopts.queue_size         = 10;
+     822          91 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     823             : 
+     824             :   /*//{ wait for hw api message */
+     825             : 
+     826             :   mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities> sh_hw_api_capabilities_ =
+     827         273 :       mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities>(shopts, "hw_api_capabilities_in");
+     828         182 :   while (!sh_hw_api_capabilities_.hasMsg()) {
+     829          91 :     ROS_INFO("[%s]: %s hw_api_capabilities message at topic: %s", getName().c_str(), Support::waiting_for_string.c_str(),
+     830             :              sh_hw_api_capabilities_.topicName().c_str());
+     831          91 :     ros::Duration(1.0).sleep();
+     832             :   }
+     833             : 
+     834         182 :   mrs_msgs::HwApiCapabilitiesConstPtr hw_api_capabilities = sh_hw_api_capabilities_.getMsg();
+     835             :   /*//}*/
+     836             : 
+     837             :   /*//{ wait for desired uav_state rate */
+     838          91 :   sh_control_manager_diag_ = mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics>(shopts, "control_manager_diagnostics_in");
+     839         193 :   while (!sh_control_manager_diag_.hasMsg()) {
+     840         102 :     ROS_INFO("[%s]: %s control_manager_diagnostics message at topic: %s", getName().c_str(), Support::waiting_for_string.c_str(),
+     841             :              sh_control_manager_diag_.topicName().c_str());
+     842         102 :     ros::Duration(1.0).sleep();
+     843             :   }
+     844             : 
+     845         182 :   mrs_msgs::ControlManagerDiagnosticsConstPtr control_manager_diag_msg = sh_control_manager_diag_.getMsg();
+     846          91 :   ch_->desired_uav_state_rate                                          = control_manager_diag_msg->desired_uav_state_rate;
+     847          91 :   ROS_INFO("[%s]: The estimation is running at: %.2f Hz", getName().c_str(), ch_->desired_uav_state_rate);
+     848             :   /*//}*/
+     849             : 
+     850             :   /*//{ initialize subscribers */
+     851             : 
+     852          91 :   sh_control_input_ = mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput>(shopts, "control_input_in");
+     853             : 
+     854             :   /*//}*/
+     855             : 
+     856             :   /*//{ load state estimator plugins */
+     857          91 :   param_loader.loadParam("state_estimators", estimator_names_);
+     858             : 
+     859          91 :   state_estimator_loader_ = std::make_unique<pluginlib::ClassLoader<mrs_uav_managers::StateEstimator>>("mrs_uav_managers", "mrs_uav_managers::StateEstimator");
+     860             : 
+     861         189 :   for (size_t i = 0; i < estimator_names_.size(); i++) {
+     862             : 
+     863         196 :     const std::string estimator_name = estimator_names_[i];
+     864             : 
+     865             :     // load the estimator parameters
+     866         196 :     std::string address;
+     867          98 :     param_loader.loadParam(estimator_name + "/address", address);
+     868             : 
+     869             :     try {
+     870          98 :       ROS_INFO("[%s]: loading the estimator '%s'", getName().c_str(), address.c_str());
+     871          98 :       estimator_list_.push_back(state_estimator_loader_->createInstance(address.c_str()));
+     872             :     }
+     873           0 :     catch (pluginlib::CreateClassException& ex1) {
+     874           0 :       ROS_ERROR("[%s]: CreateClassException for the estimator '%s'", getName().c_str(), address.c_str());
+     875           0 :       ROS_ERROR("[%s]: Error: %s", getName().c_str(), ex1.what());
+     876           0 :       ros::shutdown();
+     877             :     }
+     878           0 :     catch (pluginlib::PluginlibException& ex) {
+     879           0 :       ROS_ERROR("[%s]: PluginlibException for the estimator '%s'", getName().c_str(), address.c_str());
+     880           0 :       ROS_ERROR("[%s]: Error: %s", getName().c_str(), ex.what());
+     881           0 :       ros::shutdown();
+     882             :     }
+     883             :   }
+     884             : 
+     885             :   /*//{ load agl estimator plugins */
+     886          91 :   param_loader.loadParam("agl_height_estimator", est_alt_agl_name_);
+     887          91 :   is_using_agl_estimator_ = est_alt_agl_name_ != "";
+     888          91 :   ROS_WARN_COND(!is_using_agl_estimator_, "[%s]: not using AGL estimator for min height safe checking", getName().c_str());
+     889             : 
+     890             : 
+     891          91 :   if (is_using_agl_estimator_) {
+     892             : 
+     893          70 :     agl_estimator_loader_ = std::make_unique<pluginlib::ClassLoader<mrs_uav_managers::AglEstimator>>("mrs_uav_managers", "mrs_uav_managers::AglEstimator");
+     894             : 
+     895             :     // load the estimator parameters
+     896         140 :     std::string address;
+     897          70 :     param_loader.loadParam(est_alt_agl_name_ + "/address", address);
+     898             : 
+     899             :     try {
+     900          70 :       ROS_INFO("[%s]: loading the estimator '%s'", getName().c_str(), address.c_str());
+     901          70 :       est_alt_agl_ = agl_estimator_loader_->createInstance(address.c_str());
+     902             :     }
+     903           0 :     catch (pluginlib::CreateClassException& ex1) {
+     904           0 :       ROS_ERROR("[%s]: CreateClassException for the estimator '%s'", getName().c_str(), address.c_str());
+     905           0 :       ROS_ERROR("[%s]: Error: %s", getName().c_str(), ex1.what());
+     906           0 :       ros::shutdown();
+     907             :     }
+     908           0 :     catch (pluginlib::PluginlibException& ex) {
+     909           0 :       ROS_ERROR("[%s]: PluginlibException for the estimator '%s'", getName().c_str(), address.c_str());
+     910           0 :       ROS_ERROR("[%s]: Error: %s", getName().c_str(), ex.what());
+     911           0 :       ros::shutdown();
+     912             :     }
+     913             :   }
+     914             :   /*//}*/
+     915             : 
+     916          91 :   ROS_INFO("[%s]: estimators were loaded", getName().c_str());
+     917             :   /*//}*/
+     918             : 
+     919             :   /*//{ check whether initial estimator was loaded */
+     920          91 :   param_loader.loadParam("initial_state_estimator", initial_estimator_name_);
+     921          91 :   bool initial_estimator_found = false;
+     922          91 :   for (auto estimator : estimator_list_) {
+     923          91 :     if (estimator->getName() == initial_estimator_name_) {
+     924          91 :       initial_estimator_      = estimator;
+     925          91 :       initial_estimator_found = true;
+     926          91 :       break;
+     927             :     }
+     928             :   }
+     929             : 
+     930          91 :   if (!initial_estimator_found) {
+     931           0 :     ROS_ERROR("[%s]: initial estimator %s could not be found among loaded estimators. shutting down", getName().c_str(), initial_estimator_name_.c_str());
+     932           0 :     ros::shutdown();
+     933             :   }
+     934             :   /*//}*/
+     935             : 
+     936             :   /*//{ initialize estimators */
+     937         189 :   for (auto estimator : estimator_list_) {
+     938             : 
+     939             :     // create private handlers
+     940         196 :     std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> ph = std::make_shared<mrs_uav_managers::estimation_manager::PrivateHandlers_t>();
+     941             : 
+     942          98 :     ph->loadConfigFile = boost::bind(&EstimationManager::loadConfigFile, this, _1);
+     943          98 :     ph->param_loader   = std::make_shared<mrs_lib::ParamLoader>(ros::NodeHandle(nh_, estimator->getName()), "EstimationManager/" + estimator->getName());
+     944             : 
+     945          98 :     if (_custom_config_ != "") {
+     946          98 :       ph->param_loader->addYamlFile(_custom_config_);
+     947             :     }
+     948             : 
+     949          98 :     if (_platform_config_ != "") {
+     950          98 :       ph->param_loader->addYamlFile(_platform_config_);
+     951             :     }
+     952             : 
+     953          98 :     if (_world_config_ != "") {
+     954          98 :       ph->param_loader->addYamlFile(_world_config_);
+     955             :     }
+     956             : 
+     957             :     try {
+     958          98 :       ROS_INFO("[%s]: initializing the estimator '%s'", getName().c_str(), estimator->getName().c_str());
+     959          98 :       estimator->initialize(nh_, ch_, ph);
+     960             :     }
+     961           0 :     catch (std::runtime_error& ex) {
+     962           0 :       ROS_ERROR("[%s]: exception caught during estimator initialization: '%s'", getName().c_str(), ex.what());
+     963           0 :       ros::shutdown();
+     964             :     }
+     965             : 
+     966          98 :     if (!estimator->isCompatibleWithHwApi(hw_api_capabilities)) {
+     967           0 :       ROS_ERROR("[%s]: estimator %s is not compatible with the hw api. Shutting down.", getName().c_str(), estimator->getName().c_str());
+     968           0 :       ros::shutdown();
+     969             :     }
+     970             :   }
+     971             : 
+     972             :   // | ----------- agl height estimator initialization ---------- |
+     973          91 :   if (is_using_agl_estimator_) {
+     974             : 
+     975         140 :     std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> ph = std::make_shared<mrs_uav_managers::estimation_manager::PrivateHandlers_t>();
+     976             : 
+     977          70 :     ph->loadConfigFile = boost::bind(&EstimationManager::loadConfigFile, this, _1);
+     978          70 :     ph->param_loader   = std::make_shared<mrs_lib::ParamLoader>(ros::NodeHandle(nh_, est_alt_agl_->getName()), "EstimationManager/" + est_alt_agl_->getName());
+     979             : 
+     980          70 :     if (_custom_config_ != "") {
+     981          70 :       ph->param_loader->addYamlFile(_custom_config_);
+     982             :     }
+     983             : 
+     984          70 :     if (_platform_config_ != "") {
+     985          70 :       ph->param_loader->addYamlFile(_platform_config_);
+     986             :     }
+     987             : 
+     988          70 :     if (_world_config_ != "") {
+     989          70 :       ph->param_loader->addYamlFile(_world_config_);
+     990             :     }
+     991             : 
+     992             :     try {
+     993          70 :       ROS_INFO("[%s]: initializing the estimator '%s'", getName().c_str(), est_alt_agl_->getName().c_str());
+     994          70 :       est_alt_agl_->initialize(nh_, ch_, ph);
+     995             :     }
+     996           0 :     catch (std::runtime_error& ex) {
+     997           0 :       ROS_ERROR("[%s]: exception caught during estimator initialization: '%s'", getName().c_str(), ex.what());
+     998           0 :       ros::shutdown();
+     999             :     }
+    1000             : 
+    1001          70 :     if (!est_alt_agl_->isCompatibleWithHwApi(hw_api_capabilities)) {
+    1002           0 :       ROS_ERROR("[%s]: estimator %s is not compatible with the hw api. Shutting down.", getName().c_str(), est_alt_agl_->getName().c_str());
+    1003           0 :       ros::shutdown();
+    1004             :     }
+    1005             :   }
+    1006             : 
+    1007          91 :   ROS_INFO("[%s]: estimators were initialized", getName().c_str());
+    1008             : 
+    1009             :   /*//}*/
+    1010             : 
+    1011             :   /*//{ initialize publishers */
+    1012          91 :   ph_uav_state_    = mrs_lib::PublisherHandler<mrs_msgs::UavState>(nh_, "uav_state_out", 10);
+    1013          91 :   ph_odom_main_    = mrs_lib::PublisherHandler<nav_msgs::Odometry>(nh_, "odom_main_out", 10);
+    1014          91 :   ph_innovation_   = mrs_lib::PublisherHandler<nav_msgs::Odometry>(nh_, "innovation_out", 10);
+    1015          91 :   ph_diagnostics_  = mrs_lib::PublisherHandler<mrs_msgs::EstimationDiagnostics>(nh_, "diagnostics_out", 10);
+    1016          91 :   ph_max_flight_z_ = mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>(nh_, "max_flight_z_agl_out", 10);
+    1017          91 :   ph_altitude_agl_ = mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>(nh_, "height_agl_out", 10);
+    1018             : 
+    1019             :   /*//}*/
+    1020             : 
+    1021             :   /*//{ initialize timers */
+    1022          91 :   timer_publish_ = nh_.createTimer(ros::Rate(ch_->desired_uav_state_rate), &EstimationManager::timerPublish, this);
+    1023             : 
+    1024          91 :   timer_publish_diagnostics_ = nh_.createTimer(ros::Rate(ch_->desired_diagnostics_rate), &EstimationManager::timerPublishDiagnostics, this);
+    1025             : 
+    1026          91 :   timer_check_health_ = nh_.createTimer(ros::Rate(ch_->desired_uav_state_rate), &EstimationManager::timerCheckHealth, this);
+    1027             :   /*//}*/
+    1028             : 
+    1029             :   /*//{ initialize service clients */
+    1030             : 
+    1031          91 :   srvch_failsafe_.initialize(nh_, "failsafe_out");
+    1032             : 
+    1033             :   /*//}*/
+    1034             : 
+    1035             :   /*//{ initialize service servers */
+    1036          91 :   srvs_change_estimator_ = nh_.advertiseService("change_estimator_in", &EstimationManager::callbackChangeEstimator, this);
+    1037          91 :   srvs_toggle_callbacks_ = nh_.advertiseService("toggle_service_callbacks_in", &EstimationManager::callbackToggleServiceCallbacks, this);
+    1038             :   /*//}*/
+    1039             : 
+    1040             :   /*//{ initialize scope timer */
+    1041          91 :   param_loader.loadParam("scope_timer/enabled", ch_->scope_timer.enabled);
+    1042         182 :   std::string       filepath;
+    1043         182 :   const std::string time_logger_filepath = ros::package::getPath(package_name_) + "/scope_timer/scope_timer.txt";
+    1044          91 :   ch_->scope_timer.logger                = std::make_shared<mrs_lib::ScopeTimerLogger>(time_logger_filepath, ch_->scope_timer.enabled);
+    1045             :   /*//}*/
+    1046             : 
+    1047          91 :   if (!param_loader.loadedSuccessfully()) {
+    1048           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getName().c_str());
+    1049           0 :     ros::shutdown();
+    1050             :   }
+    1051             : 
+    1052          91 :   sm_->changeState(StateMachine::INITIALIZED_STATE);
+    1053             : 
+    1054          91 :   ROS_INFO("[%s]: initialized", getName().c_str());
+    1055          91 : }
+    1056             : /*//}*/
+    1057             : 
+    1058             : // | -------------------- service callbacks ------------------- |
+    1059             : 
+    1060             : /*//{ callbackChangeEstimator() */
+    1061           5 : bool EstimationManager::callbackChangeEstimator(mrs_msgs::String::Request& req, mrs_msgs::String::Response& res) {
+    1062             : 
+    1063           5 :   if (!sm_->isInitialized()) {
+    1064           0 :     return false;
+    1065             :   }
+    1066             : 
+    1067           5 :   if (!callbacks_enabled_) {
+    1068           0 :     res.success = false;
+    1069           0 :     res.message = ("Service callbacks are disabled");
+    1070           0 :     ROS_WARN("[%s]: Ignoring service call. Callbacks are disabled.", getName().c_str());
+    1071           0 :     return true;
+    1072             :   }
+    1073             : 
+    1074           5 :   if (req.value == "dummy" || req.value == "ground_truth") {
+    1075           0 :     res.success = false;
+    1076           0 :     std::stringstream ss;
+    1077           0 :     ss << "Switching to " << req.value << " estimator is not allowed.";
+    1078           0 :     res.message = ss.str();
+    1079           0 :     ROS_WARN("[%s]: Switching to %s estimator is not allowed.", getName().c_str(), req.value.c_str());
+    1080           0 :     return true;
+    1081             :   }
+    1082             : 
+    1083             :   // we do not want the switch to be disturbed by a service call
+    1084           5 :   callbacks_enabled_ = false;
+    1085             : 
+    1086           5 :   bool                                                target_estimator_found = false;
+    1087           5 :   boost::shared_ptr<mrs_uav_managers::StateEstimator> target_estimator;
+    1088          12 :   for (auto estimator : estimator_list_) {
+    1089          12 :     if (estimator->getName() == req.value) {
+    1090           5 :       target_estimator       = estimator;
+    1091           5 :       target_estimator_found = true;
+    1092           5 :       break;
+    1093             :     }
+    1094             :   }
+    1095             : 
+    1096           5 :   if (target_estimator_found) {
+    1097             : 
+    1098           5 :     if (target_estimator->isRunning()) {
+    1099           5 :       sm_->changeState(StateMachine::ESTIMATOR_SWITCHING_STATE);
+    1100           5 :       switchToEstimator(target_estimator);
+    1101           5 :       sm_->changeToPreSwitchState();
+    1102             :     } else {
+    1103           0 :       ROS_WARN("[%s]: Switch to not running estimator %s requested", getName().c_str(), req.value.c_str());
+    1104           0 :       res.success = false;
+    1105           0 :       res.message = ("Requested estimator is not running");
+    1106           0 :       return true;
+    1107             :     }
+    1108             : 
+    1109             :   } else {
+    1110           0 :     ROS_WARN("[%s]: Switch to invalid estimator %s requested", getName().c_str(), req.value.c_str());
+    1111           0 :     res.success = false;
+    1112           0 :     res.message = ("Not a valid estimator type");
+    1113           0 :     return true;
+    1114             :   }
+    1115             : 
+    1116           5 :   res.success = true;
+    1117           5 :   res.message = "Estimator switch successful";
+    1118             : 
+    1119             :   // allow service calllbacks after switch again
+    1120           5 :   callbacks_enabled_ = true;
+    1121             : 
+    1122           5 :   return true;
+    1123             : }
+    1124             : /*//}*/
+    1125             : 
+    1126             : /* //{ callbackToggleServiceCallbacks() */
+    1127         126 : bool EstimationManager::callbackToggleServiceCallbacks(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res) {
+    1128             : 
+    1129         126 :   if (!sm_->isInitialized()) {
+    1130           0 :     ROS_ERROR("[%s]: service for toggling callbacks is not available before initialization.", getName().c_str());
+    1131           0 :     return false;
+    1132             :   }
+    1133             : 
+    1134         126 :   callbacks_disabled_by_service_ = !req.data;
+    1135             : 
+    1136         126 :   res.success = true;
+    1137         126 :   res.message = (callbacks_disabled_by_service_ ? "Service callbacks disabled" : "Service callbacks enabled");
+    1138             : 
+    1139         126 :   if (callbacks_disabled_by_service_) {
+    1140             : 
+    1141          43 :     ROS_INFO("[%s]: Service callbacks disabled.", getName().c_str());
+    1142             : 
+    1143             :   } else {
+    1144             : 
+    1145          83 :     ROS_INFO("[%s]: Service callbacks enabled", getName().c_str());
+    1146             :   }
+    1147             : 
+    1148         126 :   return true;
+    1149             : }
+    1150             : 
+    1151             : //}
+    1152             : 
+    1153             : 
+    1154             : // --------------------------------------------------------------
+    1155             : // |                        other methods                       |
+    1156             : // --------------------------------------------------------------
+    1157             : //
+    1158             : /*//{ switchToHealthyEstimator() */
+    1159           0 : bool EstimationManager::switchToHealthyEstimator() {
+    1160             : 
+    1161             :   // available estimators should be specified in decreasing priority order in config file
+    1162           0 :   for (auto estimator : estimator_list_) {
+    1163           0 :     if (estimator->isRunning()) {
+    1164           0 :       switchToEstimator(estimator);
+    1165           0 :       return true;
+    1166             :     }
+    1167             :   }
+    1168           0 :   return false;  // no other estimator is running
+    1169             : }
+    1170             : /*//}*/
+    1171             : 
+    1172             : /*//{ switchToEstimator() */
+    1173           5 : void EstimationManager::switchToEstimator(const boost::shared_ptr<mrs_uav_managers::StateEstimator>& target_estimator) {
+    1174             : 
+    1175           5 :   std::scoped_lock lock(mutex_active_estimator_);
+    1176           5 :   ROS_INFO("[%s]: switching estimator from %s to %s", getName().c_str(), active_estimator_->getName().c_str(), target_estimator->getName().c_str());
+    1177           5 :   active_estimator_ = target_estimator;
+    1178           5 :   estimator_switch_count_++;
+    1179           5 : }
+    1180             : /*//}*/
+    1181             : 
+    1182             : /*//{ callFailsafeService() */
+    1183           0 : bool EstimationManager::callFailsafeService() {
+    1184           0 :   std_srvs::Trigger srv_out;
+    1185           0 :   return srvch_failsafe_.call(srv_out);
+    1186             : }
+    1187             : /*//}*/
+    1188             : 
+    1189             : /*//{ getName() */
+    1190        3040 : std::string EstimationManager::getName() const {
+    1191        3040 :   return nodelet_name_;
+    1192             : }
+    1193             : /*//}*/
+    1194             : 
+    1195             : /* loadConfigFile() //{ */
+    1196             : 
+    1197           0 : bool EstimationManager::loadConfigFile(const std::string& file_path) {
+    1198             : 
+    1199           0 :   const std::string name_space = nh_.getNamespace() + "/";
+    1200             : 
+    1201           0 :   ROS_INFO("[%s]: loading '%s' under the namespace '%s'", getName().c_str(), file_path.c_str(), name_space.c_str());
+    1202             : 
+    1203             :   // load the user-requested file
+    1204             :   {
+    1205           0 :     std::string command = "rosparam load " + file_path + " " + name_space;
+    1206           0 :     int         result  = std::system(command.c_str());
+    1207             : 
+    1208           0 :     if (result != 0) {
+    1209           0 :       ROS_ERROR("[%s]: failed to load '%s'", getName().c_str(), file_path.c_str());
+    1210           0 :       return false;
+    1211             :     }
+    1212             :   }
+    1213             : 
+    1214             :   // load the platform config
+    1215           0 :   if (_platform_config_ != "") {
+    1216           0 :     std::string command = "rosparam load " + _platform_config_ + " " + name_space;
+    1217           0 :     int         result  = std::system(command.c_str());
+    1218             : 
+    1219           0 :     if (result != 0) {
+    1220           0 :       ROS_ERROR("[%s]: failed to load the platform config file '%s'", getName().c_str(), _platform_config_.c_str());
+    1221           0 :       return false;
+    1222             :     }
+    1223             :   }
+    1224             : 
+    1225             :   // load the custom config
+    1226           0 :   if (_custom_config_ != "") {
+    1227           0 :     std::string command = "rosparam load " + _custom_config_ + " " + name_space;
+    1228           0 :     int         result  = std::system(command.c_str());
+    1229             : 
+    1230           0 :     if (result != 0) {
+    1231           0 :       ROS_ERROR("[%s]: failed to load the custom config file '%s'", getName().c_str(), _custom_config_.c_str());
+    1232           0 :       return false;
+    1233             :     }
+    1234             :   }
+    1235             : 
+    1236           0 :   return true;
+    1237             : }
+    1238             : 
+    1239             : //}
+    1240             : 
+    1241             : }  // namespace estimation_manager
+    1242             : 
+    1243             : }  // namespace mrs_uav_managers
+    1244             : 
+    1245             : #include <pluginlib/class_list_macros.h>
+    1246          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_managers::estimation_manager::EstimationManager, nodelet::Nodelet)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
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Current view:top level - mrs_uav_managers/src/estimation_manager - estimator.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:618571.8 %
Date:2024-04-17 23:52:03Functions:192382.6 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::Estimator::getAccGlobal(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const> const&, double)0
mrs_uav_managers::Estimator::getHeadingRate(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)0
mrs_uav_managers::Estimator::getType[abi:cxx11]() const0
mrs_uav_managers::Estimator::isStopped() const0
mrs_uav_managers::Estimator::changeState(mrs_uav_managers::estimation_manager::SMStates_t)2116
mrs_uav_managers::Estimator::setCurrentSmState(mrs_uav_managers::estimation_manager::SMStates_t const&)2116
mrs_uav_managers::Estimator::getCurrentSmStateString[abi:cxx11]() const2116
mrs_uav_managers::Estimator::getPrintName[abi:cxx11]() const3150
mrs_uav_managers::Estimator::getSmStateString[abi:cxx11](mrs_uav_managers::estimation_manager::SMStates_t const&) const4232
mrs_uav_managers::Estimator::getMaxFlightZ() const16684
mrs_uav_managers::Estimator::isStarted() const35691
mrs_uav_managers::Estimator::getAccGlobal(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, double)277608
mrs_uav_managers::Estimator::getAccGlobal(boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const> const&, double)278363
mrs_uav_managers::Estimator::isReady() const336081
mrs_uav_managers::Estimator::getName[abi:cxx11]() const584640
mrs_uav_managers::Estimator::getFrameId[abi:cxx11]() const687681
mrs_uav_managers::Estimator::isMitigatingJump() const702601
mrs_uav_managers::Estimator::publishDiagnostics() const971039
mrs_uav_managers::Estimator::isError() const1227510
mrs_uav_managers::Estimator::isRunning() const1597258
mrs_uav_managers::Estimator::isInitialized() const2484094
mrs_uav_managers::Estimator::isInState(mrs_uav_managers::estimation_manager::SMStates_t const&) const7360927
mrs_uav_managers::Estimator::getCurrentSmState() const8085316
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+ + + diff --git a/mrs_uav_managers/src/estimation_manager/estimator.cpp.func.html b/mrs_uav_managers/src/estimation_manager/estimator.cpp.func.html new file mode 100644 index 0000000000..1fdf675258 --- /dev/null +++ b/mrs_uav_managers/src/estimation_manager/estimator.cpp.func.html @@ -0,0 +1,172 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/estimation_manager/estimator.cpp - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_managers/src/estimation_manager - estimator.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:618571.8 %
Date:2024-04-17 23:52:03Functions:192382.6 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::Estimator::changeState(mrs_uav_managers::estimation_manager::SMStates_t)2116
mrs_uav_managers::Estimator::getAccGlobal(geometry_msgs::Vector3Stamped_<std::allocator<void> > const&, double)277608
mrs_uav_managers::Estimator::getAccGlobal(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const> const&, double)0
mrs_uav_managers::Estimator::getAccGlobal(boost::shared_ptr<mrs_msgs::EstimatorInput_<std::allocator<void> > const> const&, double)278363
mrs_uav_managers::Estimator::getHeadingRate(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const> const&)0
mrs_uav_managers::Estimator::setCurrentSmState(mrs_uav_managers::estimation_manager::SMStates_t const&)2116
mrs_uav_managers::Estimator::getFrameId[abi:cxx11]() const687681
mrs_uav_managers::Estimator::getPrintName[abi:cxx11]() const3150
mrs_uav_managers::Estimator::getMaxFlightZ() const16684
mrs_uav_managers::Estimator::isInitialized() const2484094
mrs_uav_managers::Estimator::getSmStateString[abi:cxx11](mrs_uav_managers::estimation_manager::SMStates_t const&) const4232
mrs_uav_managers::Estimator::isMitigatingJump() const702601
mrs_uav_managers::Estimator::getCurrentSmState() const8085316
mrs_uav_managers::Estimator::publishDiagnostics() const971039
mrs_uav_managers::Estimator::getCurrentSmStateString[abi:cxx11]() const2116
mrs_uav_managers::Estimator::getName[abi:cxx11]() const584640
mrs_uav_managers::Estimator::getType[abi:cxx11]() const0
mrs_uav_managers::Estimator::isError() const1227510
mrs_uav_managers::Estimator::isReady() const336081
mrs_uav_managers::Estimator::isInState(mrs_uav_managers::estimation_manager::SMStates_t const&) const7360927
mrs_uav_managers::Estimator::isRunning() const1597258
mrs_uav_managers::Estimator::isStarted() const35691
mrs_uav_managers::Estimator::isStopped() const0
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Current view:top level - mrs_uav_managers/src/estimation_manager - estimator.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:618571.8 %
Date:2024-04-17 23:52:03Functions:192382.6 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #include <mrs_uav_managers/estimation_manager/estimator.h>
+       2             : 
+       3             : namespace mrs_uav_managers
+       4             : {
+       5             : 
+       6             : /*//{ method implementations */
+       7             : /*//{ changeState() */
+       8        2116 : bool Estimator::changeState(SMStates_t new_state) {
+       9             : 
+      10        2116 :   if (new_state == getCurrentSmState()) {
+      11           0 :     return true;
+      12             :   }
+      13             : 
+      14        2116 :   previous_sm_state_ = getCurrentSmState();
+      15        2116 :   setCurrentSmState(new_state);
+      16             : 
+      17        2116 :   ROS_INFO("[%s]: Switching sm state %s -> %s", getPrintName().c_str(), getSmStateString(previous_sm_state_).c_str(), getCurrentSmStateString().c_str());
+      18        2116 :   return true;
+      19             : }
+      20             : /*//}*/
+      21             : 
+      22             : /*//{ isInState() */
+      23     7360927 : bool Estimator::isInState(const SMStates_t& state_in) const {
+      24     7360927 :   return state_in == getCurrentSmState();
+      25             : }
+      26             : /*//}*/
+      27             : 
+      28             : /*//{ isInitialized() */
+      29     2484094 : bool Estimator::isInitialized() const {
+      30     2484094 :   return !isInState(UNINITIALIZED_STATE);
+      31             : }
+      32             : /*//}*/
+      33             : 
+      34             : /*//{ isReady() */
+      35      336081 : bool Estimator::isReady() const {
+      36      336081 :   return isInState(READY_STATE);
+      37             : }
+      38             : /*//}*/
+      39             : 
+      40             : /*//{ isStarted() */
+      41       35691 : bool Estimator::isStarted() const {
+      42       35691 :   return isInState(STARTED_STATE);
+      43             : }
+      44             : /*//}*/
+      45             : 
+      46             : /*//{ isRunning() */
+      47     1597258 : bool Estimator::isRunning() const {
+      48     1597258 :   return isInState(SMStates_t::RUNNING_STATE);
+      49             : }
+      50             : /*//}*/
+      51             : 
+      52             : /*//{ isStopped() */
+      53           0 : bool Estimator::isStopped() const {
+      54           0 :   return isInState(STOPPED_STATE);
+      55             : }
+      56             : /*//}*/
+      57             : 
+      58             : /*//{ isError() */
+      59     1227510 : bool Estimator::isError() const {
+      60     1227510 :   return isInState(ERROR_STATE);
+      61             : }
+      62             : /*//}*/
+      63             : 
+      64             : /*//{ getCurrentSmState() */
+      65     8085316 : SMStates_t Estimator::getCurrentSmState() const {
+      66     8085316 :   return current_sm_state_;
+      67             : }
+      68             : /*//}*/
+      69             : 
+      70             : /*//{ setCurrentSmState() */
+      71        2116 : void Estimator::setCurrentSmState(const SMStates_t& new_state) {
+      72        2116 :   std::scoped_lock lock(mutex_current_state_);
+      73        2116 :   current_sm_state_ = new_state;
+      74        2116 : }
+      75             : /*//}*/
+      76             : 
+      77             : /*//{ getSmStateString() */
+      78        4232 : std::string Estimator::getSmStateString(const SMStates_t& state) const {
+      79        4232 :   return sm::state_names[state];
+      80             : }
+      81             : /*//}*/
+      82             : 
+      83             : /*//{ getCurrentSmStateName() */
+      84        2116 : std::string Estimator::getCurrentSmStateString(void) const {
+      85        4232 :   return getSmStateString(getCurrentSmState());
+      86             : }
+      87             : /*//}*/
+      88             : 
+      89             : /*//{ isMitigatingJump() */
+      90      702601 : bool Estimator::isMitigatingJump(void) const {
+      91      702601 :   return is_mitigating_jump_;
+      92             : }
+      93             : /*//}*/
+      94             : 
+      95             : /*//{ getName() */
+      96      584640 : std::string Estimator::getName(void) const {
+      97      584640 :   return name_;
+      98             : }
+      99             : /*//}*/
+     100             : 
+     101             : /*//{ getPrintName() */
+     102        3150 : std::string Estimator::getPrintName(void) const {
+     103        6300 :   return ch_->nodelet_name + "/" + name_;
+     104             : }
+     105             : /*//}*/
+     106             : 
+     107             : /*//{ getType() */
+     108           0 : std::string Estimator::getType(void) const {
+     109           0 :   return type_;
+     110             : }
+     111             : /*//}*/
+     112             : 
+     113             : /*//{ getFrameId() */
+     114      687681 : std::string Estimator::getFrameId(void) const {
+     115      687681 :   return ns_frame_id_;
+     116             : }
+     117             : /*//}*/
+     118             : 
+     119             : /*//{ getMaxFlightZ() */
+     120       16684 : double Estimator::getMaxFlightZ(void) const {
+     121       16684 :   return max_flight_z_;
+     122             : }
+     123             : /*//}*/
+     124             : 
+     125             : /*//{ publishDiagnostics() */
+     126      971039 : void Estimator::publishDiagnostics() const {
+     127             : 
+     128      971039 :   if (!ch_->debug_topics.diag) {
+     129      970993 :     return;
+     130             :   }
+     131             : 
+     132           0 :   mrs_msgs::EstimatorDiagnostics msg;
+     133           0 :   msg.header.stamp       = ros::Time::now();
+     134           0 :   msg.header.frame_id    = getFrameId();
+     135           0 :   msg.estimator_name     = getName();
+     136           0 :   msg.estimator_type     = getType();
+     137           0 :   msg.estimator_sm_state = getCurrentSmStateString();
+     138             : 
+     139           0 :   ph_diagnostics_.publish(msg);
+     140             : }
+     141             : /*//}*/
+     142             : 
+     143             : /*//{ getAccGlobal() */
+     144           0 : tf2::Vector3 Estimator::getAccGlobal(const sensor_msgs::Imu::ConstPtr& input_msg, const double hdg) {
+     145             : 
+     146           0 :   geometry_msgs::Vector3Stamped acc_stamped;
+     147           0 :   acc_stamped.vector = input_msg->linear_acceleration;
+     148           0 :   acc_stamped.header = input_msg->header;
+     149           0 :   return getAccGlobal(acc_stamped, hdg);
+     150             : }
+     151             : 
+     152      278363 : tf2::Vector3 Estimator::getAccGlobal(const mrs_msgs::EstimatorInput::ConstPtr& input_msg, const double hdg) {
+     153             : 
+     154      555647 :   geometry_msgs::Vector3Stamped acc_stamped;
+     155      277897 :   acc_stamped.vector = input_msg->control_acceleration;
+     156      277739 :   acc_stamped.header = input_msg->header;
+     157      551126 :   return getAccGlobal(acc_stamped, hdg);
+     158             : }
+     159             : 
+     160      277608 : tf2::Vector3 Estimator::getAccGlobal(const geometry_msgs::Vector3Stamped& acc_stamped, const double hdg) {
+     161             : 
+     162             :   // untilt the desired acceleration vector
+     163      552348 :   geometry_msgs::Vector3Stamped des_acc;
+     164      277562 :   geometry_msgs::Vector3        des_acc_untilted;
+     165      277795 :   des_acc.vector.x        = acc_stamped.vector.x;
+     166      277795 :   des_acc.vector.y        = acc_stamped.vector.y;
+     167      277795 :   des_acc.vector.z        = acc_stamped.vector.z;
+     168      277795 :   des_acc.header.frame_id = ch_->frames.ns_fcu;
+     169      277866 :   des_acc.header.stamp    = acc_stamped.header.stamp;
+     170      555712 :   auto response_acc       = ch_->transformer->transformSingle(des_acc, ch_->frames.ns_fcu_untilted);
+     171      278420 :   if (response_acc) {
+     172      278420 :     des_acc_untilted.x = response_acc.value().vector.x;
+     173      278420 :     des_acc_untilted.y = response_acc.value().vector.y;
+     174      278419 :     des_acc_untilted.z = response_acc.value().vector.z;
+     175             :   } else {
+     176           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: Transform from %s to %s failed", getPrintName().c_str(), des_acc.header.frame_id.c_str(),
+     177             :                       ch_->frames.ns_fcu_untilted.c_str());
+     178             :   }
+     179             : 
+     180             :   // rotate the desired acceleration vector to global frame
+     181      278420 :   const tf2::Vector3 des_acc_global = Support::rotateVecByHdg(des_acc_untilted, hdg);
+     182             : 
+     183      550705 :   return des_acc_global;
+     184             : }
+     185             : /*//}*/
+     186             : 
+     187             : /*//{ getHeadingRate() */
+     188           0 : std::optional<double> Estimator::getHeadingRate(const nav_msgs::OdometryConstPtr& odom_msg) {
+     189             : 
+     190             :   double hdg_rate;
+     191             :   try {
+     192           0 :     hdg_rate = mrs_lib::AttitudeConverter(odom_msg->pose.pose.orientation).getHeadingRate(odom_msg->twist.twist.angular);
+     193             :   }
+     194           0 :   catch (...) {
+     195           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: failed getting heading rate", getPrintName().c_str());
+     196           0 :     return {};
+     197             :   }
+     198           0 :   return hdg_rate;
+     199             : }
+     200             : /*//}*/
+     201             : 
+     202             : 
+     203             : /*//}*/
+     204             : 
+     205             : }  // namespace mrs_uav_managers
+     206             : 
+
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mrs_uav_managers::AglEstimator::isCompatibleWithHwApi(boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const> const&) const70
mrs_uav_managers::AglEstimator::publishAglHeight() const132245
mrs_uav_managers::AglEstimator::publishCovariance() const132245
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mrs_uav_managers::AglEstimator::publishAglHeight() const132245
mrs_uav_managers::AglEstimator::publishCovariance() const132245
mrs_uav_managers::AglEstimator::isCompatibleWithHwApi(boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const> const&) const70
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+
          Line data    Source code
+
+       1             : #include <mrs_uav_managers/agl_estimator.h>
+       2             : 
+       3             : namespace mrs_uav_managers
+       4             : {
+       5             : 
+       6             : /*//{ publishAglHeight() */
+       7      132245 : void AglEstimator::publishAglHeight() const {
+       8      132245 :   ph_agl_height_.publish(mrs_lib::get_mutexed(mtx_agl_height_, agl_height_));
+       9      132245 : }
+      10             : /*//}*/
+      11             : 
+      12             : /*//{ publishCovariance() */
+      13      132245 : void AglEstimator::publishCovariance() const {
+      14             : 
+      15      132245 :   if (!ch_->debug_topics.covariance) {
+      16      132245 :     return;
+      17             :   }
+      18             : 
+      19           0 :   ph_agl_height_cov_.publish(mrs_lib::get_mutexed(mtx_agl_height_, agl_height_cov_));
+      20             : }
+      21             : /*//}*/
+      22             : 
+      23             : /*//{ isCompatibleWithHwApi() */
+      24          70 : bool AglEstimator::isCompatibleWithHwApi(const mrs_msgs::HwApiCapabilitiesConstPtr& hw_api_capabilities) const {
+      25             : 
+      26          70 :   ph_->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/private/" + getName() + "/" + getName() + ".yaml");
+      27          70 :   ph_->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/public/" + getName() + "/" + getName() + ".yaml");
+      28             : 
+      29          70 :   ph_->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getName() + "/");
+      30             : 
+      31             :   bool requires_gnss, requires_imu, requires_distance_sensor, requires_altitude, requires_magnetometer_heading, requires_position, requires_orientation,
+      32             :       requires_velocity, requires_angular_velocity;
+      33             : 
+      34          70 :   ph_->param_loader->loadParam("requires/gnss", requires_gnss);
+      35          70 :   ph_->param_loader->loadParam("requires/imu", requires_imu);
+      36          70 :   ph_->param_loader->loadParam("requires/distance_sensor", requires_distance_sensor);
+      37          70 :   ph_->param_loader->loadParam("requires/altitude", requires_altitude);
+      38          70 :   ph_->param_loader->loadParam("requires/magnetometer_heading", requires_magnetometer_heading);
+      39          70 :   ph_->param_loader->loadParam("requires/position", requires_position);
+      40          70 :   ph_->param_loader->loadParam("requires/orientation", requires_orientation);
+      41          70 :   ph_->param_loader->loadParam("requires/velocity", requires_velocity);
+      42          70 :   ph_->param_loader->loadParam("requires/angular_velocity", requires_angular_velocity);
+      43             : 
+      44          70 :   if (!ph_->param_loader->loadedSuccessfully()) {
+      45           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getPrintName().c_str());
+      46           0 :     ros::shutdown();
+      47             :   }
+      48             : 
+      49          70 :   if (requires_gnss && !hw_api_capabilities->produces_gnss) {
+      50           0 :     ROS_ERROR("[%s]: requires gnss but hw api does not provide it.", getPrintName().c_str());
+      51           0 :     return false;
+      52             :   }
+      53             : 
+      54          70 :   if (requires_imu && !hw_api_capabilities->produces_imu) {
+      55           0 :     ROS_ERROR("[%s]: requires imu but hw api does not provide it.", getPrintName().c_str());
+      56           0 :     return false;
+      57             :   }
+      58             : 
+      59          70 :   if (requires_distance_sensor && !hw_api_capabilities->produces_distance_sensor) {
+      60           0 :     ROS_ERROR("[%s]: requires distance_sensor but hw api does not provide it.", getPrintName().c_str());
+      61           0 :     return false;
+      62             :   }
+      63             : 
+      64          70 :   if (requires_altitude && !hw_api_capabilities->produces_altitude) {
+      65           0 :     ROS_ERROR("[%s]: requires altitude but hw api does not provide it.", getPrintName().c_str());
+      66           0 :     return false;
+      67             :   }
+      68             : 
+      69          70 :   if (requires_magnetometer_heading && !hw_api_capabilities->produces_magnetometer_heading) {
+      70           0 :     ROS_ERROR("[%s]: requires magnetometer_heading but hw api does not provide it.", getPrintName().c_str());
+      71           0 :     return false;
+      72             :   }
+      73             : 
+      74          70 :   if (requires_position && !hw_api_capabilities->produces_position) {
+      75           0 :     ROS_ERROR("[%s]: requires position but hw api does not provide it.", getPrintName().c_str());
+      76           0 :     return false;
+      77             :   }
+      78             : 
+      79          70 :   if (requires_orientation && !hw_api_capabilities->produces_orientation) {
+      80           0 :     ROS_ERROR("[%s]: requires orientation but hw api does not provide it.", getPrintName().c_str());
+      81           0 :     return false;
+      82             :   }
+      83             : 
+      84          70 :   if (requires_velocity && !hw_api_capabilities->produces_velocity) {
+      85           0 :     ROS_ERROR("[%s]: requires velocity but hw api does not provide it.", getPrintName().c_str());
+      86           0 :     return false;
+      87             :   }
+      88             : 
+      89          70 :   if (requires_angular_velocity && !hw_api_capabilities->produces_angular_velocity) {
+      90           0 :     ROS_ERROR("[%s]: requires angular_velocity but hw api does not provide it.", getPrintName().c_str());
+      91           0 :     return false;
+      92             :   }
+      93             : 
+      94          70 :   return true;
+      95             : }
+      96             : /*//}*/
+      97             : 
+      98             : }  // namespace mrs_uav_managers
+
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::StateEstimator::isCompatibleWithHwApi(boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const> const&) const98
mrs_uav_managers::StateEstimator::getInnovation() const155101
mrs_uav_managers::StateEstimator::getPoseCovariance() const155101
mrs_uav_managers::StateEstimator::getTwistCovariance() const155101
mrs_uav_managers::StateEstimator::getUavState()171423
mrs_uav_managers::StateEstimator::publishUavState() const183690
mrs_uav_managers::StateEstimator::publishOdom() const183754
mrs_uav_managers::StateEstimator::publishCovariance() const183754
mrs_uav_managers::StateEstimator::publishInnovation() const183754
mrs_uav_managers::StateEstimator::rotateQuaternionByHeading(geometry_msgs::Quaternion_<std::allocator<void> > const&, double) const372523
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::StateEstimator::getUavState()171423
mrs_uav_managers::StateEstimator::publishOdom() const183754
mrs_uav_managers::StateEstimator::getInnovation() const155101
mrs_uav_managers::StateEstimator::publishUavState() const183690
mrs_uav_managers::StateEstimator::getPoseCovariance() const155101
mrs_uav_managers::StateEstimator::publishCovariance() const183754
mrs_uav_managers::StateEstimator::publishInnovation() const183754
mrs_uav_managers::StateEstimator::getTwistCovariance() const155101
mrs_uav_managers::StateEstimator::isCompatibleWithHwApi(boost::shared_ptr<mrs_msgs::HwApiCapabilities_<std::allocator<void> > const> const&) const98
mrs_uav_managers::StateEstimator::rotateQuaternionByHeading(geometry_msgs::Quaternion_<std::allocator<void> > const&, double) const372523
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+
          Line data    Source code
+
+       1             : #include <mrs_uav_managers/state_estimator.h>
+       2             : 
+       3             : namespace mrs_uav_managers
+       4             : {
+       5             : 
+       6             : 
+       7             : /*//{ getUavState() */
+       8      171423 : std::optional<mrs_msgs::UavState> StateEstimator::getUavState() {
+       9             : 
+      10      171423 :   if (!isRunning()) {
+      11           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: getUavState() was called while estimator is not running", getPrintName().c_str());
+      12           0 :     return {};
+      13             :   }
+      14             : 
+      15      342826 :   return mrs_lib::get_mutexed(mtx_uav_state_, uav_state_);
+      16             : }
+      17             : /*//}*/
+      18             : 
+      19             : /*//{ getInnovation() */
+      20      155101 : nav_msgs::Odometry StateEstimator::getInnovation() const {
+      21      155101 :   return mrs_lib::get_mutexed(mtx_innovation_, innovation_);
+      22             : }
+      23             : /*//}*/
+      24             : 
+      25             : /*//{ getPoseCovariance() */
+      26      155101 : std::vector<double> StateEstimator::getPoseCovariance() const {
+      27      155101 :   return mrs_lib::get_mutexed(mtx_covariance_, pose_covariance_.values);
+      28             : }
+      29             : /*//}*/
+      30             : 
+      31             : /*//{ getTwistCovariance() */
+      32      155101 : std::vector<double> StateEstimator::getTwistCovariance() const {
+      33      155101 :   return mrs_lib::get_mutexed(mtx_covariance_, twist_covariance_.values);
+      34             : }
+      35             : /*//}*/
+      36             : 
+      37             : /*//{ publishUavState() */
+      38      183690 : void StateEstimator::publishUavState() const {
+      39             : 
+      40      183690 :   if (!ch_->debug_topics.state) {
+      41           0 :     return;
+      42             :   }
+      43             : 
+      44      366989 :   auto uav_state = mrs_lib::get_mutexed(mtx_uav_state_, uav_state_);
+      45      183436 :   ph_uav_state_.publish(uav_state);
+      46             : }
+      47             : /*//}*/
+      48             : 
+      49             : /*//{ publishOdom() */
+      50      183754 : void StateEstimator::publishOdom() const {
+      51             : 
+      52      367508 :   auto odom = mrs_lib::get_mutexed(mtx_odom_, odom_);
+      53      183752 :   ph_odom_.publish(odom);
+      54      183754 : }
+      55             : /*//}*/
+      56             : 
+      57             : /*//{ publishCovariance() */
+      58      183754 : void StateEstimator::publishCovariance() const {
+      59             : 
+      60      183754 :   if (!ch_->debug_topics.covariance) {
+      61      183754 :     return;
+      62             :   }
+      63             : 
+      64           0 :   auto pose_cov  = mrs_lib::get_mutexed(mtx_covariance_, pose_covariance_);
+      65           0 :   auto twist_cov = mrs_lib::get_mutexed(mtx_covariance_, twist_covariance_);
+      66           0 :   ph_pose_covariance_.publish(pose_cov);
+      67           0 :   ph_twist_covariance_.publish(twist_cov);
+      68             : }
+      69             : /*//}*/
+      70             : 
+      71             : /*//{ publishInnovation() */
+      72      183754 : void StateEstimator::publishInnovation() const {
+      73             : 
+      74      183754 :   if (!ch_->debug_topics.innovation) {
+      75      183754 :     return;
+      76             :   }
+      77             : 
+      78           0 :   auto innovation = mrs_lib::get_mutexed(mtx_innovation_, innovation_);
+      79           0 :   ph_innovation_.publish(innovation);
+      80             : }
+      81             : /*//}*/
+      82             : 
+      83             : /*//{ rotateQuaternionByHeading() */
+      84      372523 : std::optional<geometry_msgs::Quaternion> StateEstimator::rotateQuaternionByHeading(const geometry_msgs::Quaternion& q, const double hdg) const {
+      85             : 
+      86             :   try {
+      87      372523 :     tf2::Quaternion tf2_q = mrs_lib::AttitudeConverter(q);
+      88             : 
+      89             :     // Obtain heading from quaternion
+      90      372110 :     double q_hdg = 0;
+      91      372110 :     q_hdg        = mrs_lib::AttitudeConverter(q).getHeading();
+      92             : 
+      93             :     // Build rotation matrix from difference between new heading and quaternion heading
+      94      371443 :     tf2::Matrix3x3 rot_mat = mrs_lib::AttitudeConverter(Eigen::AngleAxisd(hdg - q_hdg, Eigen::Vector3d::UnitZ()));
+      95             : 
+      96             :     // Transform the quaternion orientation by the rotation matrix
+      97      371087 :     geometry_msgs::Quaternion q_new = mrs_lib::AttitudeConverter(tf2::Transform(rot_mat) * tf2_q);
+      98      370554 :     return q_new;
+      99             :   }
+     100           0 :   catch (...) {
+     101           0 :     ROS_WARN("[rotateQuaternionByHeading()]: failed to rotate quaternion by heading");
+     102           0 :     return {};
+     103             :   }
+     104             : }
+     105             : /*//}*/
+     106             : 
+     107             : /*//{ isCompatibleWithHwApi() */
+     108          98 : bool StateEstimator::isCompatibleWithHwApi(const mrs_msgs::HwApiCapabilitiesConstPtr& hw_api_capabilities) const {
+     109             : 
+     110          98 :   ph_->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getName() + "/");
+     111             : 
+     112             :   bool requires_gnss, requires_imu, requires_distance_sensor, requires_altitude, requires_magnetometer_heading, requires_position, requires_orientation,
+     113             :       requires_velocity, requires_angular_velocity;
+     114             : 
+     115          98 :   ph_->param_loader->loadParam("requires/gnss", requires_gnss);
+     116          98 :   ph_->param_loader->loadParam("requires/imu", requires_imu);
+     117          98 :   ph_->param_loader->loadParam("requires/distance_sensor", requires_distance_sensor);
+     118          98 :   ph_->param_loader->loadParam("requires/altitude", requires_altitude);
+     119          98 :   ph_->param_loader->loadParam("requires/magnetometer_heading", requires_magnetometer_heading);
+     120          98 :   ph_->param_loader->loadParam("requires/position", requires_position);
+     121          98 :   ph_->param_loader->loadParam("requires/orientation", requires_orientation);
+     122          98 :   ph_->param_loader->loadParam("requires/velocity", requires_velocity);
+     123          98 :   ph_->param_loader->loadParam("requires/angular_velocity", requires_angular_velocity);
+     124             : 
+     125          98 :   if (!ph_->param_loader->loadedSuccessfully()) {
+     126           0 :     ROS_ERROR("[%s]: Could not load all non-optional hw_api compatibility parameters. Shutting down.", getPrintName().c_str());
+     127           0 :     ros::shutdown();
+     128             :   }
+     129             : 
+     130          98 :   if (requires_gnss && !hw_api_capabilities->produces_gnss) {
+     131           0 :     ROS_ERROR("[%s]: requires gnss but hw api does not provide it.", getPrintName().c_str());
+     132           0 :     return false;
+     133             :   }
+     134             : 
+     135          98 :   if (requires_imu && !hw_api_capabilities->produces_imu) {
+     136           0 :     ROS_ERROR("[%s]: requires imu but hw api does not provide it.", getPrintName().c_str());
+     137           0 :     return false;
+     138             :   }
+     139             : 
+     140          98 :   if (requires_distance_sensor && !hw_api_capabilities->produces_distance_sensor) {
+     141           0 :     ROS_ERROR("[%s]: requires distance_sensor but hw api does not provide it.", getPrintName().c_str());
+     142           0 :     return false;
+     143             :   }
+     144             : 
+     145          98 :   if (requires_altitude && !hw_api_capabilities->produces_altitude) {
+     146           0 :     ROS_ERROR("[%s]: requires altitude but hw api does not provide it.", getPrintName().c_str());
+     147           0 :     return false;
+     148             :   }
+     149             : 
+     150          98 :   if (requires_magnetometer_heading && !hw_api_capabilities->produces_magnetometer_heading) {
+     151           0 :     ROS_ERROR("[%s]: requires magnetometer_heading but hw api does not provide it.", getPrintName().c_str());
+     152           0 :     return false;
+     153             :   }
+     154             : 
+     155          98 :   if (requires_position && !hw_api_capabilities->produces_position) {
+     156           0 :     ROS_ERROR("[%s]: requires position but hw api does not provide it.", getPrintName().c_str());
+     157           0 :     return false;
+     158             :   }
+     159             : 
+     160          98 :   if (requires_orientation && !hw_api_capabilities->produces_orientation) {
+     161           0 :     ROS_ERROR("[%s]: requires orientation but hw api does not provide it.", getPrintName().c_str());
+     162           0 :     return false;
+     163             :   }
+     164             : 
+     165          98 :   if (requires_velocity && !hw_api_capabilities->produces_velocity) {
+     166           0 :     ROS_ERROR("[%s]: requires velocity but hw api does not provide it.", getPrintName().c_str());
+     167           0 :     return false;
+     168             :   }
+     169             : 
+     170          98 :   if (requires_angular_velocity && !hw_api_capabilities->produces_angular_velocity) {
+     171           0 :     ROS_ERROR("[%s]: requires angular_velocity but hw api does not provide it.", getPrintName().c_str());
+     172           0 :     return false;
+     173             :   }
+     174             : 
+     175          98 :   return true;
+     176             : }
+     177             : /*//}*/
+     178             : 
+     179             : }  // namespace mrs_uav_managers
+
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::gain_manager::GainManager::callbackSetGains(mrs_msgs::StringRequest_<std::allocator<void> >&, mrs_msgs::StringResponse_<std::allocator<void> >&)2
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::gain_manager::GainManager::onInit()91
mrs_uav_managers::gain_manager::GainManager::setGains(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)92
mrs_uav_managers::gain_manager::GainManager::stringInVector(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&)2010
mrs_uav_managers::gain_manager::GainManager::timerDiagnostics(ros::TimerEvent const&)2050
mrs_uav_managers::gain_manager::GainManager::timerGainManagement(ros::TimerEvent const&)20904
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Current view:top level - mrs_uav_managers/src - gain_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:22325886.4 %
Date:2024-04-17 23:52:03Functions:77100.0 %
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::gain_manager::GainManager::stringInVector(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&)2010
mrs_uav_managers::gain_manager::GainManager::callbackSetGains(mrs_msgs::StringRequest_<std::allocator<void> >&, mrs_msgs::StringResponse_<std::allocator<void> >&)2
mrs_uav_managers::gain_manager::GainManager::timerDiagnostics(ros::TimerEvent const&)2050
mrs_uav_managers::gain_manager::GainManager::timerGainManagement(ros::TimerEvent const&)20904
mrs_uav_managers::gain_manager::GainManager::onInit()91
mrs_uav_managers::gain_manager::GainManager::setGains(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)92
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Current view:top level - mrs_uav_managers/src - gain_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:22325886.4 %
Date:2024-04-17 23:52:03Functions:77100.0 %
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+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <nodelet/nodelet.h>
+       5             : 
+       6             : #include <std_msgs/String.h>
+       7             : 
+       8             : #include <mrs_msgs/String.h>
+       9             : #include <mrs_msgs/EstimationDiagnostics.h>
+      10             : #include <mrs_msgs/ControlManagerDiagnostics.h>
+      11             : #include <mrs_msgs/GainManagerDiagnostics.h>
+      12             : 
+      13             : #include <mrs_lib/profiler.h>
+      14             : #include <mrs_lib/scope_timer.h>
+      15             : #include <mrs_lib/param_loader.h>
+      16             : #include <mrs_lib/mutex.h>
+      17             : #include <mrs_lib/publisher_handler.h>
+      18             : #include <mrs_lib/service_client_handler.h>
+      19             : #include <mrs_lib/subscribe_handler.h>
+      20             : 
+      21             : #include <dynamic_reconfigure/ReconfigureRequest.h>
+      22             : #include <dynamic_reconfigure/Reconfigure.h>
+      23             : #include <dynamic_reconfigure/Config.h>
+      24             : 
+      25             : //}
+      26             : 
+      27             : namespace mrs_uav_managers
+      28             : {
+      29             : 
+      30             : namespace gain_manager
+      31             : {
+      32             : 
+      33             : /* //{ class GainManager */
+      34             : 
+      35             : typedef struct
+      36             : {
+      37             : 
+      38             :   double kpxy, kiwxy, kibxy, kvxy, kaxy;
+      39             :   double kpz, kvz, kaz;
+      40             :   double kiwxy_lim, kibxy_lim;
+      41             :   double km, km_lim;
+      42             :   double kqrp, kqy;
+      43             : 
+      44             :   std::string name;
+      45             : 
+      46             : } Gains_t;
+      47             : 
+      48             : class GainManager : public nodelet::Nodelet {
+      49             : 
+      50             : public:
+      51             :   virtual void onInit();
+      52             : 
+      53             : private:
+      54             :   ros::NodeHandle nh_;
+      55             : 
+      56             :   std::atomic<bool> is_initialized_ = false;
+      57             : 
+      58             :   // | ----------------------- parameters ----------------------- |
+      59             : 
+      60             :   std::vector<std::string> _current_state_estimators_;
+      61             : 
+      62             :   std::vector<std::string>       _gain_names_;
+      63             :   std::map<std::string, Gains_t> _gains_;
+      64             : 
+      65             :   std::map<std::string, std::vector<std::string>> _map_type_allowed_gains_;
+      66             :   std::map<std::string, std::string>              _map_type_default_gains_;
+      67             :   ;
+      68             : 
+      69             :   // | --------------------- service clients -------------------- |
+      70             : 
+      71             :   ros::ServiceClient service_client_set_gains_;
+      72             : 
+      73             :   // | ----------------------- subscribers ---------------------- |
+      74             : 
+      75             :   mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics>     sh_estimation_diag_;
+      76             :   mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics> sh_control_manager_diag_;
+      77             : 
+      78             :   // | --------------------- gain management -------------------- |
+      79             : 
+      80             :   bool setGains(std::string gains_name);
+      81             : 
+      82             :   ros::ServiceServer service_server_set_gains_;
+      83             :   bool               callbackSetGains(mrs_msgs::String::Request& req, mrs_msgs::String::Response& res);
+      84             : 
+      85             :   std::string last_estimator_name_;
+      86             :   std::mutex  mutex_last_estimator_name_;
+      87             : 
+      88             :   void       timerGainManagement(const ros::TimerEvent& event);
+      89             :   ros::Timer timer_gain_management_;
+      90             :   double     _gain_management_rate_;
+      91             : 
+      92             :   std::string current_gains_;
+      93             :   std::mutex  mutex_current_gains_;
+      94             : 
+      95             :   // | ------------------ diagnostics publisher ----------------- |
+      96             : 
+      97             :   mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics> ph_diagnostics_;
+      98             : 
+      99             :   void       timerDiagnostics(const ros::TimerEvent& event);
+     100             :   ros::Timer timer_diagnostics_;
+     101             :   double     _diagnostics_rate_;
+     102             : 
+     103             :   // | ------------------------ profiler ------------------------ |
+     104             : 
+     105             :   mrs_lib::Profiler profiler_;
+     106             :   bool              _profiler_enabled_ = false;
+     107             : 
+     108             :   // | ------------------- scope timer logger ------------------- |
+     109             : 
+     110             :   bool                                       scope_timer_enabled_ = false;
+     111             :   std::shared_ptr<mrs_lib::ScopeTimerLogger> scope_timer_logger_;
+     112             : 
+     113             :   // | ------------------------- helpers ------------------------ |
+     114             : 
+     115             :   bool stringInVector(const std::string& value, const std::vector<std::string>& vector);
+     116             : };
+     117             : 
+     118             : //}
+     119             : 
+     120             : /* //{ onInit() */
+     121             : 
+     122          91 : void GainManager::onInit() {
+     123             : 
+     124         182 :   ros::NodeHandle nh_ = nodelet::Nodelet::getMTPrivateNodeHandle();
+     125             : 
+     126          91 :   ros::Time::waitForValid();
+     127             : 
+     128          91 :   ROS_INFO("[GainManager]: initializing");
+     129             : 
+     130             :   // | ------------------------- params ------------------------- |
+     131             : 
+     132         182 :   mrs_lib::ParamLoader param_loader(nh_, "GainManager");
+     133             : 
+     134         182 :   std::string custom_config_path;
+     135         182 :   std::string platform_config_path;
+     136             : 
+     137          91 :   param_loader.loadParam("custom_config", custom_config_path);
+     138          91 :   param_loader.loadParam("platform_config", platform_config_path);
+     139             : 
+     140          91 :   if (custom_config_path != "") {
+     141          91 :     param_loader.addYamlFile(custom_config_path);
+     142             :   }
+     143             : 
+     144          91 :   if (platform_config_path != "") {
+     145          91 :     param_loader.addYamlFile(platform_config_path);
+     146             :   }
+     147             : 
+     148          91 :   param_loader.addYamlFileFromParam("private_config");
+     149          91 :   param_loader.addYamlFileFromParam("public_config");
+     150          91 :   param_loader.addYamlFileFromParam("public_gains");
+     151             : 
+     152         182 :   const std::string yaml_prefix = "mrs_uav_managers/gain_manager/";
+     153             : 
+     154             :   // params passed from the launch file are not prefixed
+     155          91 :   param_loader.loadParam("enable_profiler", _profiler_enabled_);
+     156             : 
+     157          91 :   param_loader.loadParam(yaml_prefix + "gains", _gain_names_);
+     158             : 
+     159          91 :   param_loader.loadParam(yaml_prefix + "estimator_types", _current_state_estimators_);
+     160             : 
+     161          91 :   param_loader.loadParam(yaml_prefix + "rate", _gain_management_rate_);
+     162          91 :   param_loader.loadParam(yaml_prefix + "diagnostics_rate", _diagnostics_rate_);
+     163             : 
+     164             :   // | ------------------- scope timer logger ------------------- |
+     165             : 
+     166          91 :   param_loader.loadParam(yaml_prefix + "scope_timer/enabled", scope_timer_enabled_);
+     167         273 :   const std::string scope_timer_log_filename = param_loader.loadParam2("scope_timer/log_filename", std::string(""));
+     168          91 :   scope_timer_logger_                        = std::make_shared<mrs_lib::ScopeTimerLogger>(scope_timer_log_filename, scope_timer_enabled_);
+     169             : 
+     170          91 :   std::vector<std::string>::iterator it;
+     171             : 
+     172             :   // loading gain_names
+     173         273 :   for (it = _gain_names_.begin(); it != _gain_names_.end(); ++it) {
+     174             : 
+     175         182 :     ROS_INFO_STREAM("[GainManager]: loading gains '" << *it << "'");
+     176             : 
+     177         182 :     Gains_t new_gains;
+     178             : 
+     179         182 :     param_loader.loadParam(yaml_prefix + *it + "/horizontal/kp", new_gains.kpxy);
+     180         182 :     param_loader.loadParam(yaml_prefix + *it + "/horizontal/kv", new_gains.kvxy);
+     181         182 :     param_loader.loadParam(yaml_prefix + *it + "/horizontal/ka", new_gains.kaxy);
+     182         182 :     param_loader.loadParam(yaml_prefix + *it + "/horizontal/kib", new_gains.kibxy);
+     183         182 :     param_loader.loadParam(yaml_prefix + *it + "/horizontal/kiw", new_gains.kiwxy);
+     184         182 :     param_loader.loadParam(yaml_prefix + *it + "/horizontal/kib_lim", new_gains.kibxy_lim);
+     185         182 :     param_loader.loadParam(yaml_prefix + *it + "/horizontal/kiw_lim", new_gains.kiwxy_lim);
+     186             : 
+     187         182 :     param_loader.loadParam(yaml_prefix + *it + "/vertical/kp", new_gains.kpz);
+     188         182 :     param_loader.loadParam(yaml_prefix + *it + "/vertical/kv", new_gains.kvz);
+     189         182 :     param_loader.loadParam(yaml_prefix + *it + "/vertical/ka", new_gains.kaz);
+     190             : 
+     191         182 :     param_loader.loadParam(yaml_prefix + *it + "/attitude/kq_roll_pitch", new_gains.kqrp);
+     192         182 :     param_loader.loadParam(yaml_prefix + *it + "/attitude/kq_yaw", new_gains.kqy);
+     193             : 
+     194         182 :     param_loader.loadParam(yaml_prefix + *it + "/mass_estimator/km", new_gains.km);
+     195         182 :     param_loader.loadParam(yaml_prefix + *it + "/mass_estimator/km_lim", new_gains.km_lim);
+     196             : 
+     197         182 :     _gains_.insert(std::pair<std::string, Gains_t>(*it, new_gains));
+     198             :   }
+     199             : 
+     200             :   // loading the allowed gains lists
+     201         728 :   for (it = _current_state_estimators_.begin(); it != _current_state_estimators_.end(); ++it) {
+     202             : 
+     203         637 :     std::vector<std::string> temp_vector;
+     204         637 :     param_loader.loadParam(yaml_prefix + "allowed_gains/" + *it, temp_vector);
+     205             : 
+     206         637 :     std::vector<std::string>::iterator it2;
+     207        1911 :     for (it2 = temp_vector.begin(); it2 != temp_vector.end(); ++it2) {
+     208        1274 :       if (!stringInVector(*it2, _gain_names_)) {
+     209           0 :         ROS_ERROR("[GainManager]: the element '%s' of %s/allowed_gains is not a valid gain!", it2->c_str(), it->c_str());
+     210           0 :         ros::shutdown();
+     211             :       }
+     212             :     }
+     213             : 
+     214         637 :     _map_type_allowed_gains_.insert(std::pair<std::string, std::vector<std::string>>(*it, temp_vector));
+     215             :   }
+     216             : 
+     217             :   // loading the default gains
+     218         728 :   for (it = _current_state_estimators_.begin(); it != _current_state_estimators_.end(); ++it) {
+     219             : 
+     220         637 :     std::string temp_str;
+     221         637 :     param_loader.loadParam(yaml_prefix + "default_gains/" + *it, temp_str);
+     222             : 
+     223         637 :     if (!stringInVector(temp_str, _map_type_allowed_gains_.at(*it))) {
+     224           0 :       ROS_ERROR("[GainManager]: the element '%s' of %s/allowed_gains is not a valid gain!", temp_str.c_str(), it->c_str());
+     225           0 :       ros::shutdown();
+     226             :     }
+     227             : 
+     228         637 :     _map_type_default_gains_.insert(std::pair<std::string, std::string>(*it, temp_str));
+     229             :   }
+     230             : 
+     231          91 :   ROS_INFO("[GainManager]: done loading dynamical params");
+     232             : 
+     233          91 :   current_gains_       = "";
+     234          91 :   last_estimator_name_ = "";
+     235             : 
+     236             :   // | ------------------------ services ------------------------ |
+     237             : 
+     238          91 :   service_server_set_gains_ = nh_.advertiseService("set_gains_in", &GainManager::callbackSetGains, this);
+     239             : 
+     240          91 :   service_client_set_gains_ = nh_.serviceClient<dynamic_reconfigure::Reconfigure>("set_gains_out");
+     241             : 
+     242             :   // | ----------------------- subscribers ---------------------- |
+     243             : 
+     244         182 :   mrs_lib::SubscribeHandlerOptions shopts;
+     245          91 :   shopts.nh                 = nh_;
+     246          91 :   shopts.node_name          = "GainManager";
+     247          91 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     248          91 :   shopts.threadsafe         = true;
+     249          91 :   shopts.autostart          = true;
+     250          91 :   shopts.queue_size         = 10;
+     251          91 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     252             : 
+     253          91 :   sh_estimation_diag_      = mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics>(shopts, "estimation_diagnostics_in");
+     254          91 :   sh_control_manager_diag_ = mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics>(shopts, "control_manager_diagnostics_in");
+     255             : 
+     256             :   // | ----------------------- publishers ----------------------- |
+     257             : 
+     258          91 :   ph_diagnostics_ = mrs_lib::PublisherHandler<mrs_msgs::GainManagerDiagnostics>(nh_, "diagnostics_out", 10);
+     259             : 
+     260             :   // | ------------------------- timers ------------------------- |
+     261             : 
+     262          91 :   timer_gain_management_ = nh_.createTimer(ros::Rate(_gain_management_rate_), &GainManager::timerGainManagement, this);
+     263          91 :   timer_diagnostics_     = nh_.createTimer(ros::Rate(_diagnostics_rate_), &GainManager::timerDiagnostics, this);
+     264             : 
+     265             :   // | ------------------------ profiler ------------------------ |
+     266             : 
+     267          91 :   profiler_ = mrs_lib::Profiler(nh_, "GainManager", _profiler_enabled_);
+     268             : 
+     269             :   // | ----------------------- finish init ---------------------- |
+     270             : 
+     271          91 :   if (!param_loader.loadedSuccessfully()) {
+     272           0 :     ROS_ERROR("[GainManager]: could not load all parameters!");
+     273           0 :     ros::shutdown();
+     274             :   }
+     275             : 
+     276          91 :   is_initialized_ = true;
+     277             : 
+     278          91 :   ROS_INFO("[GainManager]: initialized");
+     279             : 
+     280          91 :   ROS_DEBUG("[GainManager]: debug output is enabled");
+     281          91 : }
+     282             : 
+     283             : //}
+     284             : 
+     285             : // --------------------------------------------------------------
+     286             : // |                           methods                          |
+     287             : // --------------------------------------------------------------
+     288             : 
+     289             : /* setGains() //{ */
+     290             : 
+     291          92 : bool GainManager::setGains(std::string gains_name) {
+     292             : 
+     293          92 :   std::map<std::string, Gains_t>::iterator it;
+     294          92 :   it = _gains_.find(gains_name);
+     295             : 
+     296          92 :   if (it == _gains_.end()) {
+     297           0 :     ROS_WARN("[GainManager]: can not set gains for '%s', the mode is not on a list!", gains_name.c_str());
+     298           0 :     return false;
+     299             :   }
+     300             : 
+     301         184 :   dynamic_reconfigure::Config          conf;
+     302         184 :   dynamic_reconfigure::DoubleParameter param;
+     303             : 
+     304          92 :   param.name  = "kpxy";
+     305          92 :   param.value = it->second.kpxy;
+     306          92 :   conf.doubles.push_back(param);
+     307             : 
+     308          92 :   param.name  = "kvxy";
+     309          92 :   param.value = it->second.kvxy;
+     310          92 :   conf.doubles.push_back(param);
+     311             : 
+     312          92 :   param.name  = "kaxy";
+     313          92 :   param.value = it->second.kaxy;
+     314          92 :   conf.doubles.push_back(param);
+     315             : 
+     316          92 :   param.name  = "kq_roll_pitch";
+     317          92 :   param.value = it->second.kqrp;
+     318          92 :   conf.doubles.push_back(param);
+     319             : 
+     320          92 :   param.name  = "kibxy";
+     321          92 :   param.value = it->second.kibxy;
+     322          92 :   conf.doubles.push_back(param);
+     323             : 
+     324          92 :   param.name  = "kiwxy";
+     325          92 :   param.value = it->second.kiwxy;
+     326          92 :   conf.doubles.push_back(param);
+     327             : 
+     328          92 :   param.name  = "kibxy_lim";
+     329          92 :   param.value = it->second.kibxy_lim;
+     330          92 :   conf.doubles.push_back(param);
+     331             : 
+     332          92 :   param.name  = "kiwxy_lim";
+     333          92 :   param.value = it->second.kiwxy_lim;
+     334          92 :   conf.doubles.push_back(param);
+     335             : 
+     336          92 :   param.name  = "kpz";
+     337          92 :   param.value = it->second.kpz;
+     338          92 :   conf.doubles.push_back(param);
+     339             : 
+     340          92 :   param.name  = "kvz";
+     341          92 :   param.value = it->second.kvz;
+     342          92 :   conf.doubles.push_back(param);
+     343             : 
+     344          92 :   param.name  = "kaz";
+     345          92 :   param.value = it->second.kaz;
+     346          92 :   conf.doubles.push_back(param);
+     347             : 
+     348          92 :   param.name  = "kq_yaw";
+     349          92 :   param.value = it->second.kqy;
+     350          92 :   conf.doubles.push_back(param);
+     351             : 
+     352          92 :   param.name  = "km";
+     353          92 :   param.value = it->second.km;
+     354          92 :   conf.doubles.push_back(param);
+     355             : 
+     356          92 :   param.name  = "km_lim";
+     357          92 :   param.value = it->second.km_lim;
+     358          92 :   conf.doubles.push_back(param);
+     359             : 
+     360         184 :   dynamic_reconfigure::ReconfigureRequest  srv_req;
+     361         184 :   dynamic_reconfigure::ReconfigureResponse srv_resp;
+     362             : 
+     363          92 :   srv_req.config = conf;
+     364             : 
+     365         184 :   dynamic_reconfigure::Reconfigure reconf;
+     366          92 :   reconf.request = srv_req;
+     367             : 
+     368          92 :   ROS_INFO_THROTTLE(1.0, "[GainManager]: setting up gains for '%s'", gains_name.c_str());
+     369             : 
+     370          92 :   bool res = service_client_set_gains_.call(reconf);
+     371             : 
+     372          92 :   if (!res) {
+     373             : 
+     374           0 :     ROS_WARN_THROTTLE(1.0, "[GainManager]: the service for setting gains has failed!");
+     375           0 :     return false;
+     376             : 
+     377             :   } else {
+     378             : 
+     379          92 :     mrs_lib::set_mutexed(mutex_current_gains_, gains_name, current_gains_);
+     380             : 
+     381          92 :     return true;
+     382             :   }
+     383             : }
+     384             : 
+     385             : //}
+     386             : 
+     387             : // --------------------------------------------------------------
+     388             : // |                          callbacks                         |
+     389             : // --------------------------------------------------------------
+     390             : 
+     391             : // | -------------------- service callbacks ------------------- |
+     392             : 
+     393             : /* //{ callbackSetGains() */
+     394             : 
+     395           2 : bool GainManager::callbackSetGains(mrs_msgs::String::Request& req, mrs_msgs::String::Response& res) {
+     396             : 
+     397           2 :   if (!is_initialized_) {
+     398           0 :     return false;
+     399             :   }
+     400             : 
+     401           4 :   std::stringstream ss;
+     402             : 
+     403           2 :   if (!sh_estimation_diag_.hasMsg()) {
+     404             : 
+     405           0 :     ss << "missing estimation diagnostics";
+     406             : 
+     407           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[GainManager]: " << ss.str());
+     408             : 
+     409           0 :     res.message = ss.str();
+     410           0 :     res.success = false;
+     411           0 :     return true;
+     412             :   }
+     413             : 
+     414           4 :   auto estimation_diagnostics = sh_estimation_diag_.getMsg();
+     415             : 
+     416           2 :   if (!stringInVector(req.value, _gain_names_)) {
+     417             : 
+     418           1 :     ss << "the gains '" << req.value.c_str() << "' do not exist (in the GainManager's config)";
+     419             : 
+     420           1 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[GainManager]: " << ss.str());
+     421             : 
+     422           1 :     res.message = ss.str();
+     423           1 :     res.success = false;
+     424           1 :     return true;
+     425             :   }
+     426             : 
+     427           1 :   if (!stringInVector(req.value, _map_type_allowed_gains_.at(estimation_diagnostics->current_state_estimator))) {
+     428             : 
+     429           0 :     ss << "the gains '" << req.value.c_str() << "' are not allowed given the current state estimator";
+     430             : 
+     431           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[GainManager]: " << ss.str());
+     432             : 
+     433           0 :     res.message = ss.str();
+     434           0 :     res.success = false;
+     435           0 :     return true;
+     436             :   }
+     437             : 
+     438             :   // try to set the gains
+     439           1 :   if (!setGains(req.value)) {
+     440             : 
+     441           0 :     ss << "the Se3Controller could not set the gains";
+     442             : 
+     443           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[GainManager]: " << ss.str());
+     444             : 
+     445           0 :     res.message = ss.str();
+     446           0 :     res.success = false;
+     447           0 :     return true;
+     448             : 
+     449             :   } else {
+     450             : 
+     451           1 :     ss << "the gains '" << req.value.c_str() << "' are set";
+     452             : 
+     453           1 :     ROS_INFO_STREAM_THROTTLE(1.0, "[GainManager]: " << ss.str());
+     454             : 
+     455           1 :     res.message = ss.str();
+     456           1 :     res.success = true;
+     457           1 :     return true;
+     458             :   }
+     459             : }
+     460             : 
+     461             : //}
+     462             : 
+     463             : // --------------------------------------------------------------
+     464             : // |                           timers                           |
+     465             : // --------------------------------------------------------------
+     466             : 
+     467             : /* timerGainManagement() //{ */
+     468             : 
+     469       20904 : void GainManager::timerGainManagement(const ros::TimerEvent& event) {
+     470             : 
+     471       20904 :   if (!is_initialized_) {
+     472        4644 :     return;
+     473             :   }
+     474             : 
+     475       41808 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("gainManagementTimer", _gain_management_rate_, 0.01, event);
+     476       41808 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("GainManager::gainManagementTimer", scope_timer_logger_, scope_timer_enabled_);
+     477             : 
+     478       20904 :   if (!sh_estimation_diag_.hasMsg()) {
+     479        4644 :     return;
+     480             :   }
+     481             : 
+     482       16260 :   if (!sh_control_manager_diag_.hasMsg()) {
+     483           0 :     return;
+     484             :   }
+     485             : 
+     486       32520 :   auto estimation_diagnostics = sh_estimation_diag_.getMsg();
+     487             : 
+     488       32520 :   auto control_manager_diagnostics = sh_estimation_diag_.getMsg();
+     489             : 
+     490       32520 :   auto current_gains       = mrs_lib::get_mutexed(mutex_current_gains_, current_gains_);
+     491       16260 :   auto last_estimator_name = mrs_lib::get_mutexed(mutex_last_estimator_name_, last_estimator_name_);
+     492             : 
+     493             :   // | --- automatically set _gains_ when currrent state estimator changes -- |
+     494       16260 :   if (estimation_diagnostics->current_state_estimator != last_estimator_name) {
+     495             : 
+     496          96 :     ROS_INFO_THROTTLE(1.0, "[GainManager]: the state estimator has changed! %s -> %s", last_estimator_name_.c_str(),
+     497             :                       estimation_diagnostics->current_state_estimator.c_str());
+     498             : 
+     499          96 :     std::map<std::string, std::string>::iterator it;
+     500          96 :     it = _map_type_default_gains_.find(estimation_diagnostics->current_state_estimator);
+     501             : 
+     502          96 :     if (it == _map_type_default_gains_.end()) {
+     503             : 
+     504           0 :       ROS_WARN_THROTTLE(1.0, "[GainManager]: the state estimator '%s' was not specified in the gain_manager's config!",
+     505             :                         estimation_diagnostics->current_state_estimator.c_str());
+     506             : 
+     507             :     } else {
+     508             : 
+     509             :       // if the current gains are within the allowed estimator types, do nothing
+     510          96 :       if (stringInVector(current_gains, _map_type_allowed_gains_.at(estimation_diagnostics->current_state_estimator))) {
+     511             : 
+     512           5 :         last_estimator_name = estimation_diagnostics->current_state_estimator;
+     513             : 
+     514             :         // else, try to set the default gains
+     515             :       } else {
+     516             : 
+     517          91 :         ROS_WARN_THROTTLE(1.0, "[GainManager]: the current gains '%s' are not within the allowed gains for '%s'", current_gains.c_str(),
+     518             :                           estimation_diagnostics->current_state_estimator.c_str());
+     519             : 
+     520          91 :         if (setGains(it->second)) {
+     521             : 
+     522          91 :           last_estimator_name = estimation_diagnostics->current_state_estimator;
+     523             : 
+     524          91 :           ROS_INFO_THROTTLE(1.0, "[GainManager]: gains set to default: '%s'", it->second.c_str());
+     525             : 
+     526             :         } else {
+     527             : 
+     528           0 :           ROS_WARN_THROTTLE(1.0, "[GainManager]: could not set gains!");
+     529             :         }
+     530             :       }
+     531             :     }
+     532             :   }
+     533             : 
+     534       16260 :   mrs_lib::set_mutexed(mutex_last_estimator_name_, last_estimator_name, last_estimator_name_);
+     535             : }
+     536             : 
+     537             : //}
+     538             : 
+     539             : /* timerDiagnostics() //{ */
+     540             : 
+     541        2050 : void GainManager::timerDiagnostics(const ros::TimerEvent& event) {
+     542             : 
+     543        2050 :   if (!is_initialized_) {
+     544         451 :     return;
+     545             :   }
+     546             : 
+     547        4100 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerDiagnostics", _diagnostics_rate_, 0.01, event);
+     548        4100 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("GainManager::timerDiagnostics", scope_timer_logger_, scope_timer_enabled_);
+     549             : 
+     550        2050 :   if (!sh_estimation_diag_.hasMsg()) {
+     551         451 :     ROS_WARN_THROTTLE(10.0, "[GainManager]: can not do gain management, missing estimator diagnostics!");
+     552         451 :     return;
+     553             :   }
+     554             : 
+     555        1599 :   if (!sh_control_manager_diag_.hasMsg()) {
+     556           0 :     ROS_WARN_THROTTLE(10.0, "[GainManager]: can not do gain management, missing control manager diagnostics!");
+     557           0 :     return;
+     558             :   }
+     559             : 
+     560        1599 :   auto current_gains = mrs_lib::get_mutexed(mutex_current_gains_, current_gains_);
+     561             : 
+     562        1599 :   if (current_gains == "") { // this could happend just before timerGainManagement() finishes
+     563           0 :     return;
+     564             :   }
+     565             : 
+     566        1599 :   auto estimation_diagnostics = sh_estimation_diag_.getMsg();
+     567             : 
+     568        1599 :   mrs_msgs::GainManagerDiagnostics diagnostics;
+     569             : 
+     570        1599 :   diagnostics.stamp        = ros::Time::now();
+     571        1599 :   diagnostics.current_name = current_gains;
+     572        1599 :   diagnostics.loaded       = _gain_names_;
+     573             : 
+     574             :   // get the available gains
+     575             :   {
+     576        1599 :     std::map<std::string, std::vector<std::string>>::iterator it;
+     577        1599 :     it = _map_type_allowed_gains_.find(estimation_diagnostics->current_state_estimator);
+     578             : 
+     579        1599 :     if (it == _map_type_allowed_gains_.end()) {
+     580           0 :       ROS_WARN_THROTTLE(1.0, "[GainManager]: the estimator name '%s' was not specified in the gain_manager's config!",
+     581             :                         estimation_diagnostics->current_state_estimator.c_str());
+     582             :     } else {
+     583        1599 :       diagnostics.available = it->second;
+     584             :     }
+     585             :   }
+     586             : 
+     587             :   // get the current gain values
+     588             :   {
+     589        1599 :     std::map<std::string, Gains_t>::iterator it;
+     590        1599 :     it = _gains_.find(current_gains);
+     591             : 
+     592        1599 :     if (it == _gains_.end()) {
+     593           0 :       ROS_ERROR("[GainManager]: current gains '%s' not found in the gain list!", current_gains.c_str());
+     594           0 :       return;
+     595             :     }
+     596             : 
+     597        1599 :     diagnostics.current_values.kpxy = it->second.kpxy;
+     598        1599 :     diagnostics.current_values.kvxy = it->second.kvxy;
+     599        1599 :     diagnostics.current_values.kaxy = it->second.kaxy;
+     600             : 
+     601        1599 :     diagnostics.current_values.kqrp = it->second.kqrp;
+     602             : 
+     603        1599 :     diagnostics.current_values.kibxy     = it->second.kibxy;
+     604        1599 :     diagnostics.current_values.kibxy_lim = it->second.kibxy_lim;
+     605             : 
+     606        1599 :     diagnostics.current_values.kiwxy     = it->second.kiwxy;
+     607        1599 :     diagnostics.current_values.kiwxy_lim = it->second.kiwxy_lim;
+     608             : 
+     609        1599 :     diagnostics.current_values.kpz = it->second.kpz;
+     610        1599 :     diagnostics.current_values.kvz = it->second.kvz;
+     611        1599 :     diagnostics.current_values.kaz = it->second.kaz;
+     612             : 
+     613        1599 :     diagnostics.current_values.kqy = it->second.kqy;
+     614             : 
+     615        1599 :     diagnostics.current_values.km     = it->second.km;
+     616        1599 :     diagnostics.current_values.km_lim = it->second.km_lim;
+     617             :   }
+     618             : 
+     619        1599 :   ph_diagnostics_.publish(diagnostics);
+     620             : }
+     621             : 
+     622             : //}
+     623             : 
+     624             : // --------------------------------------------------------------
+     625             : // |                          routines                          |
+     626             : // --------------------------------------------------------------
+     627             : 
+     628             : /* stringInVector() //{ */
+     629             : 
+     630        2010 : bool GainManager::stringInVector(const std::string& value, const std::vector<std::string>& vector) {
+     631             : 
+     632        2010 :   if (std::find(vector.begin(), vector.end(), value) == vector.end()) {
+     633          92 :     return false;
+     634             :   } else {
+     635        1918 :     return true;
+     636             :   }
+     637             : }
+     638             : 
+     639             : //}
+     640             : 
+     641             : }  // namespace gain_manager
+     642             : 
+     643             : }  // namespace mrs_uav_managers
+     644             : 
+     645             : #include <pluginlib/class_list_macros.h>
+     646          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_managers::gain_manager::GainManager, nodelet::Nodelet)
+
+
+
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Generated by: LCOV version 1.14
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+ + diff --git a/mrs_uav_managers/src/gain_manager.cpp.gcov.png b/mrs_uav_managers/src/gain_manager.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..88a1a34762db3e02f9f1461736e45a54ffc39bce GIT binary patch literal 2160 zcmV-$2#@!PP)t0{{R3FUJ9e0000OP)t-s|NsB0 zs;a7|?_FK${{R500003000620&P%hU00009a7bBm000ie000ie0hKEb8vp3{6OWTxkr*wpmP*g=$ThY zd{9YyPOr8!bW?o4T}f(yZ{PduLX%R&-=IK*cLTh`i32gO;NQFo6a7ui*V4=&@kui) zS}>Bm0gPOX4rX-0l;RwNOD3M$cysa0dk$c@TYL_xlAeXEc)FyxBmxga^5`m4VUOr=J{!k zkV1~C@W|=cfe?8FAiwKq;p#F<5{UL)4t{x1BywPfuHh`CnIw74nY@KZvSnS9IL!qX zqh=1~;cdk|7Y?Y~_bf3TwSoW36idr+hX#{1r2tI;oTQkudQ4LU)@(&y?Ha)KpvM)7 zd#XGF0p(_ffFlq}!8HsxA#ij>?6h!~IBJL|UDEaCsep8J|H7V+MmtKz2VQ0|MA359 z0*>-%6s?LS`3rzr9O$7vKp8oP$mSNHkgol>+d%h9vTNljws};uU3-gh|9PNzOyPac z8eBNj_XIXo`r+uPt@yC<5dwGp>!9jMGsF76fI3-MoL7v>Q688?kX|Omes1}Aw-;#V z`*A(Lo~Qrl{pvgu;76rhz_SJjK>5r$84O2_I-|JTa4S6CWw_?+wQ=zbS9h+3g)huH zut27jy&$k|JxnY6khUImhxKHxM+bFgI_(b&A11nF0If09fZVR-lc|Y#uq0Cd>e`}s z^iq^R5G%}49Yjtlu@X&2x{;y>#y3pykU;Gyl6i`}>n6}qY~-XoQN*JLAhV^LvvN-c zj3UuW4an_U{?tBXU1{T<<54!FSrMa#0;d(DX9gqXq!MYX$XMWh!jZ1A?q!_EQg~Qu zamkl!yJA1z5BmXFhFQz?8^~L(d)DhPfM(po6gYMYKx_dy_4&dn?@#(yt zZNP5+{%TF{8yx_csHz>#1QnK3u2+R7>Zs0Ke{vS|+yKhz`j1Cp9ywiqIgborJC&# zDV`_68wzYwe75q!cNqmNe#lNhqMeKzg-;HbrNC^853|@Sv*yRsWmoBDf&kq)UGoJg z1Quz=xxccY6_O^vHbv1TuEQu$6&9^~UO!Fo!ZS?8(E8aHOfD8F!>1VWC5b)ELDs zN7@Q!q#fyR-YXOrDsMl5v~3mn4Hk5*3PDZWq~8$P+wyr1#rtaF;&epQ8?bE0^GX1j zt!E4Hh2rTc9UQA(_&A z+E=G}BmvT^()e<`A(Xl-a`Oo;f4ebU1~c_%rk3ZC*L`D^-<_HPWZEXZUq+4Qng%6%@w$ZmJ;6{M;Gu{c}-x%eRQFAo2bI6N`Y!>3RcxS6eg zPQYGd0L|m+-kaM~-y^cGgv?{QHi;Xb(K-BesL;#z7`0ViHfAsw{-|>U&q$3^yl6z_ zG`jXc^wQ}8h<0RG}oZWkx|4+Lsq&-EAAUhjiC&UjAZi+ogTR z#aN=m`4%8w;CE9zaDR#x0zq^7*+lW<{7Q>oe6;(yEq7knGLGdk{K~~J0Q@gcAh#9P{>f96 mpy`heU_*hWN68(G{qG+c$&V%Y7ub>j0000 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src + + + + + + + + + + + + + + +
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null_tracker.cpp +
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uav_manager.cpp +
67.5%67.5%
+
67.5 %789 / 1169100.0 %38 / 38
+
+
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gain_manager.cpp +
86.4%86.4%
+
86.4 %223 / 258100.0 %7 / 7
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Test:MRS UAV System - Test coverage reportLines:1247171872.6 %
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Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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constraint_manager.cpp +
83.6%83.6%
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83.6 %194 / 232100.0 %8 / 8
gain_manager.cpp +
86.4%86.4%
+
86.4 %223 / 258100.0 %7 / 7
null_tracker.cpp +
69.5%69.5%
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69.5 %41 / 5955.0 %11 / 20
uav_manager.cpp +
67.5%67.5%
+
67.5 %789 / 1169100.0 %38 / 38
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Current view:top level - mrs_uav_managers/src - null_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:415969.5 %
Date:2024-04-17 23:52:03Functions:112055.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::NullTracker::resetStatic()0
mrs_uav_managers::NullTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::NullTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::NullTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_managers::NullTracker::~NullTracker()91
mrs_uav_managers::NullTracker::~NullTracker().291
mrs_uav_managers::NullTracker::deactivate()205
mrs_uav_managers::NullTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)209
mrs_uav_managers::NullTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
mrs_uav_managers::NullTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)311
mrs_uav_managers::NullTracker::getStatus()6404
mrs_uav_managers::NullTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
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Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_uav_managers/src - null_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:415969.5 %
Date:2024-04-17 23:52:03Functions:112055.0 %
Legend: Lines: + hit + not hit +
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+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::NullTracker::deactivate()205
mrs_uav_managers::NullTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_managers::NullTracker::resetStatic()0
mrs_uav_managers::NullTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
mrs_uav_managers::NullTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)311
mrs_uav_managers::NullTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_managers::NullTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
mrs_uav_managers::NullTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_managers::NullTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
mrs_uav_managers::NullTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)209
mrs_uav_managers::NullTracker::getStatus()6404
mrs_uav_managers::NullTracker::~NullTracker()91
mrs_uav_managers::NullTracker::~NullTracker().291
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Current view:top level - mrs_uav_managers/src - null_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:415969.5 %
Date:2024-04-17 23:52:03Functions:112055.0 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #include <ros/ros.h>
+       2             : 
+       3             : #include <mrs_uav_managers/tracker.h>
+       4             : 
+       5             : namespace mrs_uav_managers
+       6             : {
+       7             : 
+       8             : /* //{ class NullTracker */
+       9             : 
+      10             : class NullTracker : public mrs_uav_managers::Tracker {
+      11             : 
+      12             : public:
+      13         182 :   ~NullTracker(){};
+      14             : 
+      15             :   bool initialize(const ros::NodeHandle &parent_nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      16             :                   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers);
+      17             : 
+      18             :   std::tuple<bool, std::string> activate([[maybe_unused]] const std::optional<mrs_msgs::TrackerCommand> &last_tracker_cmd);
+      19             :   void                          deactivate(void);
+      20             :   bool                          resetStatic(void);
+      21             : 
+      22             :   std::optional<mrs_msgs::TrackerCommand>   update(const mrs_msgs::UavState &uav_state, const Controller::ControlOutput &last_control_output);
+      23             :   const mrs_msgs::TrackerStatus             getStatus();
+      24             :   const std_srvs::SetBoolResponse::ConstPtr enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr &cmd);
+      25             :   const std_srvs::TriggerResponse::ConstPtr switchOdometrySource(const mrs_msgs::UavState &new_uav_state);
+      26             : 
+      27             :   const mrs_msgs::ReferenceSrvResponse::ConstPtr           setReference(const mrs_msgs::ReferenceSrvRequest::ConstPtr &cmd);
+      28             :   const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr   setVelocityReference(const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr &cmd);
+      29             :   const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr setTrajectoryReference(const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr &cmd);
+      30             : 
+      31             :   const std_srvs::TriggerResponse::ConstPtr hover(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      32             :   const std_srvs::TriggerResponse::ConstPtr startTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      33             :   const std_srvs::TriggerResponse::ConstPtr stopTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      34             :   const std_srvs::TriggerResponse::ConstPtr resumeTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      35             :   const std_srvs::TriggerResponse::ConstPtr gotoTrajectoryStart(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      36             : 
+      37             :   const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd);
+      38             : 
+      39             : private:
+      40             :   ros::NodeHandle nh_;
+      41             :   bool            is_active         = false;
+      42             :   bool            is_initialized    = false;
+      43             :   bool            callbacks_enabled = false;
+      44             : 
+      45             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers;
+      46             : };
+      47             : 
+      48             : //}
+      49             : 
+      50             : // | ------------------- trackers interface ------------------- |
+      51             : 
+      52             : /* //{ initialize() */
+      53             : 
+      54          91 : bool NullTracker::initialize(const ros::NodeHandle &                                                                parent_nh,
+      55             :                              [[maybe_unused]] std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>  common_handlers,
+      56             :                              [[maybe_unused]] std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) {
+      57             : 
+      58         182 :   ros::NodeHandle nh_(parent_nh, "null_tracker");
+      59             : 
+      60          91 :   ros::Time::waitForValid();
+      61             : 
+      62          91 :   is_initialized = true;
+      63             : 
+      64          91 :   this->common_handlers = common_handlers;
+      65             : 
+      66          91 :   ROS_INFO("[NullTracker]: initialized");
+      67             : 
+      68         182 :   return true;
+      69             : }
+      70             : 
+      71             : //}
+      72             : 
+      73             : /* //{ activate() */
+      74             : 
+      75         209 : std::tuple<bool, std::string> NullTracker::activate([[maybe_unused]] const std::optional<mrs_msgs::TrackerCommand> &last_tracker_cmd) {
+      76             : 
+      77         209 :   std::stringstream ss;
+      78         209 :   ss << "activated";
+      79             : 
+      80         209 :   ROS_INFO_STREAM("[NullTracker]: " << ss.str());
+      81         209 :   is_active = true;
+      82             : 
+      83         418 :   return std::tuple(true, ss.str());
+      84             : }
+      85             : 
+      86             : //}
+      87             : 
+      88             : /* //{ deactivate() */
+      89             : 
+      90         205 : void NullTracker::deactivate(void) {
+      91             : 
+      92         205 :   ROS_INFO("[NullTracker]: deactivated");
+      93         205 :   is_active = false;
+      94         205 : }
+      95             : 
+      96             : //}
+      97             : 
+      98             : /* //{ resetStatic() */
+      99             : 
+     100           0 : bool NullTracker::resetStatic(void) {
+     101           0 :   return false;
+     102             : }
+     103             : 
+     104             : //}
+     105             : 
+     106             : /* switchOdometrySource() //{ */
+     107             : 
+     108           0 : const std_srvs::TriggerResponse::ConstPtr NullTracker::switchOdometrySource([[maybe_unused]] const mrs_msgs::UavState &new_uav_state) {
+     109           0 :   return std_srvs::TriggerResponse::Ptr();
+     110             : }
+     111             : 
+     112             : //}
+     113             : 
+     114             : /* //{ update() */
+     115             : 
+     116      120229 : std::optional<mrs_msgs::TrackerCommand> NullTracker::update([[maybe_unused]] const mrs_msgs::UavState &       uav_state,
+     117             :                                                             [[maybe_unused]] const Controller::ControlOutput &last_control_output) {
+     118             : 
+     119      120229 :   return {};
+     120             : }
+     121             : 
+     122             : //}
+     123             : 
+     124             : /* //{ getStatus() */
+     125             : 
+     126        6404 : const mrs_msgs::TrackerStatus NullTracker::getStatus() {
+     127             : 
+     128        6404 :   mrs_msgs::TrackerStatus tracker_status;
+     129             : 
+     130        6404 :   tracker_status.active            = is_active;
+     131        6404 :   tracker_status.callbacks_enabled = callbacks_enabled;
+     132             : 
+     133        6404 :   return tracker_status;
+     134             : }
+     135             : 
+     136             : //}
+     137             : 
+     138             : /* //{ enableCallbacks() */
+     139             : 
+     140         311 : const std_srvs::SetBoolResponse::ConstPtr NullTracker::enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr &cmd) {
+     141             : 
+     142         622 :   std_srvs::SetBoolResponse res;
+     143             : 
+     144         311 :   std::stringstream ss;
+     145             : 
+     146         311 :   if (cmd->data != callbacks_enabled) {
+     147             : 
+     148          12 :     callbacks_enabled = cmd->data;
+     149             : 
+     150          12 :     ss << "callbacks " << (callbacks_enabled ? "enabled" : "disabled");
+     151             : 
+     152          12 :     ROS_DEBUG_STREAM("[NullTracker]: " << ss.str());
+     153             : 
+     154             :   } else {
+     155             : 
+     156         299 :     ss << "callbacks were already " << (callbacks_enabled ? "enabled" : "disabled");
+     157             :   }
+     158             : 
+     159         311 :   res.message = ss.str();
+     160         311 :   res.success = true;
+     161             : 
+     162         933 :   return std_srvs::SetBoolResponse::ConstPtr(std::make_unique<std_srvs::SetBoolResponse>(res));
+     163             : }
+     164             : 
+     165             : //}
+     166             : 
+     167             : /* //{ setReference() */
+     168             : 
+     169           0 : const mrs_msgs::ReferenceSrvResponse::ConstPtr NullTracker::setReference([[maybe_unused]] const mrs_msgs::ReferenceSrvRequest::ConstPtr &cmd) {
+     170           0 :   return mrs_msgs::ReferenceSrvResponse::Ptr();
+     171             : }
+     172             : 
+     173             : //}
+     174             : 
+     175             : /* //{ setVelocityReference() */
+     176             : 
+     177           0 : const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr NullTracker::setVelocityReference([
+     178             :     [maybe_unused]] const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr &cmd) {
+     179           0 :   return mrs_msgs::VelocityReferenceSrvResponse::Ptr();
+     180             : }
+     181             : 
+     182             : //}
+     183             : 
+     184             : /* //{ setTrajectoryReference() */
+     185             : 
+     186           4 : const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr NullTracker::setTrajectoryReference([
+     187             :     [maybe_unused]] const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr &cmd) {
+     188           4 :   return mrs_msgs::TrajectoryReferenceSrvResponse::Ptr();
+     189             : }
+     190             : 
+     191             : //}
+     192             : 
+     193             : // | --------------------- other services --------------------- |
+     194             : 
+     195             : /* //{ hover() */
+     196             : 
+     197           0 : const std_srvs::TriggerResponse::ConstPtr NullTracker::hover([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     198           0 :   return std_srvs::TriggerResponse::Ptr();
+     199             : }
+     200             : 
+     201             : //}
+     202             : 
+     203             : /* //{ startTrajectoryTracking() */
+     204             : 
+     205           0 : const std_srvs::TriggerResponse::ConstPtr NullTracker::startTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     206           0 :   return std_srvs::TriggerResponse::Ptr();
+     207             : }
+     208             : 
+     209             : //}
+     210             : 
+     211             : /* //{ stopTrajectoryTracking() */
+     212             : 
+     213           0 : const std_srvs::TriggerResponse::ConstPtr NullTracker::stopTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     214           0 :   return std_srvs::TriggerResponse::Ptr();
+     215             : }
+     216             : 
+     217             : //}
+     218             : 
+     219             : /* //{ resumeTrajectoryTracking() */
+     220             : 
+     221           0 : const std_srvs::TriggerResponse::ConstPtr NullTracker::resumeTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     222           0 :   return std_srvs::TriggerResponse::Ptr();
+     223             : }
+     224             : 
+     225             : //}
+     226             : 
+     227             : /* //{ gotoTrajectoryStart() */
+     228             : 
+     229           0 : const std_srvs::TriggerResponse::ConstPtr NullTracker::gotoTrajectoryStart([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     230           0 :   return std_srvs::TriggerResponse::Ptr();
+     231             : }
+     232             : 
+     233             : //}
+     234             : 
+     235             : /* //{ setConstraints() */
+     236             : 
+     237         299 : const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr NullTracker::setConstraints([
+     238             :     [maybe_unused]] const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd) {
+     239             : 
+     240         299 :   return mrs_msgs::DynamicsConstraintsSrvResponse::Ptr();
+     241             : }
+     242             : 
+     243             : //}
+     244             : 
+     245             : }  // namespace mrs_uav_managers
+     246             : 
+     247             : #include <pluginlib/class_list_macros.h>
+     248          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_managers::NullTracker, mrs_uav_managers::Tracker)
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Current view:top level - mrs_uav_managers/src/transform_managerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:34942981.4 %
Date:2024-04-17 23:52:03Functions:131492.9 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
transform_manager.cpp +
81.4%81.4%
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81.4 %349 / 42992.9 %13 / 14
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/src/transform_manager/transform_manager.cpp.func-sort-c.html b/mrs_uav_managers/src/transform_manager/transform_manager.cpp.func-sort-c.html new file mode 100644 index 0000000000..8feac4dc32 --- /dev/null +++ b/mrs_uav_managers/src/transform_manager/transform_manager.cpp.func-sort-c.html @@ -0,0 +1,136 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/transform_manager/transform_manager.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_managers/src/transform_manager - transform_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:34942981.4 %
Date:2024-04-17 23:52:03Functions:131492.9 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::transform_manager::TransformManager::getName[abi:cxx11]() const0
mrs_uav_managers::transform_manager::TransformManager::transformRtkToFcu(geometry_msgs::PoseStamped_<std::allocator<void> > const&) const10
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::transform_manager::TransformManager::publishLocalTf()91
mrs_uav_managers::transform_manager::TransformManager::onInit()91
mrs_uav_managers::transform_manager::TransformManager::TransformManager()91
mrs_uav_managers::transform_manager::TransformManager::getPrintName[abi:cxx11]() const1470
mrs_uav_managers::transform_manager::TransformManager::callbackRtkGps(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)3834
mrs_uav_managers::transform_manager::TransformManager::callbackGnss(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)93177
mrs_uav_managers::transform_manager::TransformManager::callbackHeightAgl(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>)138609
mrs_uav_managers::transform_manager::TransformManager::callbackUavState(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)155064
mrs_uav_managers::transform_manager::TransformManager::callbackAltitudeAmsl(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>)157816
mrs_uav_managers::transform_manager::TransformManager::publishFcuUntiltedTf(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const> const&)197140
mrs_uav_managers::transform_manager::TransformManager::callbackHwApiOrientation(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)197140
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/src/transform_manager/transform_manager.cpp.func.html b/mrs_uav_managers/src/transform_manager/transform_manager.cpp.func.html new file mode 100644 index 0000000000..2958721692 --- /dev/null +++ b/mrs_uav_managers/src/transform_manager/transform_manager.cpp.func.html @@ -0,0 +1,136 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/transform_manager/transform_manager.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_managers/src/transform_manager - transform_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:34942981.4 %
Date:2024-04-17 23:52:03Functions:131492.9 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::transform_manager::TransformManager::callbackGnss(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)93177
mrs_uav_managers::transform_manager::TransformManager::callbackRtkGps(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)3834
mrs_uav_managers::transform_manager::TransformManager::publishLocalTf()91
mrs_uav_managers::transform_manager::TransformManager::callbackUavState(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)155064
mrs_uav_managers::transform_manager::TransformManager::callbackHeightAgl(boost::shared_ptr<mrs_msgs::Float64Stamped_<std::allocator<void> > const>)138609
mrs_uav_managers::transform_manager::TransformManager::callbackAltitudeAmsl(boost::shared_ptr<mrs_msgs::HwApiAltitude_<std::allocator<void> > const>)157816
mrs_uav_managers::transform_manager::TransformManager::publishFcuUntiltedTf(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const> const&)197140
mrs_uav_managers::transform_manager::TransformManager::callbackHwApiOrientation(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)197140
mrs_uav_managers::transform_manager::TransformManager::onInit()91
mrs_uav_managers::transform_manager::TransformManager::TransformManager()91
mrs_uav_managers::transform_manager::TransformManager::getPrintName[abi:cxx11]() const1470
mrs_uav_managers::transform_manager::TransformManager::transformRtkToFcu(geometry_msgs::PoseStamped_<std::allocator<void> > const&) const10
mrs_uav_managers::transform_manager::TransformManager::getName[abi:cxx11]() const0
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_managers/src/transform_manager/transform_manager.cpp.gcov.frameset.html b/mrs_uav_managers/src/transform_manager/transform_manager.cpp.gcov.frameset.html new file mode 100644 index 0000000000..e54ea334d2 --- /dev/null +++ b/mrs_uav_managers/src/transform_manager/transform_manager.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/transform_manager/transform_manager.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_managers/src/transform_manager/transform_manager.cpp.gcov.html b/mrs_uav_managers/src/transform_manager/transform_manager.cpp.gcov.html new file mode 100644 index 0000000000..8be0bff0f1 --- /dev/null +++ b/mrs_uav_managers/src/transform_manager/transform_manager.cpp.gcov.html @@ -0,0 +1,1037 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/transform_manager/transform_manager.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_managers/src/transform_manager - transform_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:34942981.4 %
Date:2024-04-17 23:52:03Functions:131492.9 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : /* //{ includes */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <nodelet/nodelet.h>
+       5             : 
+       6             : #include <mrs_lib/param_loader.h>
+       7             : #include <mrs_lib/subscribe_handler.h>
+       8             : #include <mrs_lib/publisher_handler.h>
+       9             : #include <mrs_lib/attitude_converter.h>
+      10             : #include <mrs_lib/transformer.h>
+      11             : #include <mrs_lib/transform_broadcaster.h>
+      12             : #include <mrs_lib/gps_conversions.h>
+      13             : 
+      14             : #include <mrs_msgs/UavState.h>
+      15             : #include <mrs_msgs/Float64Stamped.h>
+      16             : #include <mrs_msgs/HwApiAltitude.h>
+      17             : #include <mrs_msgs/RtkGps.h>
+      18             : 
+      19             : #include <tf2_ros/transform_broadcaster.h>
+      20             : #include <tf2_ros/static_transform_broadcaster.h>
+      21             : #include <geometry_msgs/TransformStamped.h>
+      22             : 
+      23             : #include <sensor_msgs/NavSatFix.h>
+      24             : 
+      25             : #include <nav_msgs/Odometry.h>
+      26             : 
+      27             : #include <memory>
+      28             : #include <string>
+      29             : 
+      30             : #include <mrs_uav_managers/estimation_manager/support.h>
+      31             : #include <mrs_uav_managers/estimation_manager/common_handlers.h>
+      32             : #include <transform_manager/tf_source.h>
+      33             : #include <transform_manager/tf_mapping_origin.h>
+      34             : 
+      35             : /*//}*/
+      36             : 
+      37             : namespace mrs_uav_managers
+      38             : {
+      39             : 
+      40             : namespace transform_manager
+      41             : {
+      42             : 
+      43             : /*//{ class TransformManager */
+      44             : class TransformManager : public nodelet::Nodelet {
+      45             : 
+      46             :   using Support = estimation_manager::Support;
+      47             : 
+      48             : public:
+      49          91 :   TransformManager() {
+      50          91 :     ch_ = std::make_shared<estimation_manager::CommonHandlers_t>();
+      51             : 
+      52          91 :     ch_->nodelet_name = nodelet_name_;
+      53          91 :     ch_->package_name = package_name_;
+      54          91 :   }
+      55             : 
+      56             :   void onInit();
+      57             :   bool is_initialized_ = false;
+      58             : 
+      59             :   std::string getName() const;
+      60             : 
+      61             :   std::string getPrintName() const;
+      62             : 
+      63             : private:
+      64             :   std::string _custom_config_;
+      65             :   std::string _platform_config_;
+      66             :   std::string _world_config_;
+      67             : 
+      68             :   const std::string package_name_ = "mrs_uav_managers";
+      69             :   const std::string nodelet_name_ = "TransformManager";
+      70             :   const std::string name_         = "transform_manager";
+      71             : 
+      72             :   bool publish_fcu_untilted_tf_;
+      73             : 
+      74             :   std::string ns_local_origin_parent_frame_id_;
+      75             :   std::string ns_local_origin_child_frame_id_;
+      76             :   bool        publish_local_origin_tf_;
+      77             : 
+      78             :   std::string ns_stable_origin_parent_frame_id_;
+      79             :   std::string ns_stable_origin_child_frame_id_;
+      80             :   bool        publish_stable_origin_tf_;
+      81             : 
+      82             :   std::string         ns_fixed_origin_parent_frame_id_;
+      83             :   std::string         ns_fixed_origin_child_frame_id_;
+      84             :   bool                publish_fixed_origin_tf_;
+      85             :   geometry_msgs::Pose pose_first_;
+      86             :   geometry_msgs::Pose pose_fixed_;
+      87             :   geometry_msgs::Pose pose_fixed_diff_;
+      88             : 
+      89             :   std::string ns_amsl_origin_parent_frame_id_;
+      90             :   std::string ns_amsl_origin_child_frame_id_;
+      91             :   bool        publish_amsl_origin_tf_;
+      92             : 
+      93             :   std::string          world_origin_units_;
+      94             :   geometry_msgs::Point world_origin_;
+      95             : 
+      96             :   std::vector<std::string>               tf_source_names_, estimator_names_;
+      97             :   std::vector<std::unique_ptr<TfSource>> tf_sources_;
+      98             : 
+      99             :   std::vector<std::string> utm_source_priority_list_;
+     100             :   std::string              utm_source_name_;
+     101             : 
+     102             :   std::mutex mtx_broadcast_utm_origin_;
+     103             :   std::mutex mtx_broadcast_world_origin_;
+     104             : 
+     105             :   ros::NodeHandle nh_;
+     106             : 
+     107             :   std::shared_ptr<estimation_manager::CommonHandlers_t> ch_;
+     108             : 
+     109             :   std::shared_ptr<mrs_lib::TransformBroadcaster> broadcaster_;
+     110             :   tf2_ros::StaticTransformBroadcaster            static_broadcaster_;
+     111             : 
+     112             :   std::unique_ptr<TfMappingOrigin> tf_mapping_origin_;
+     113             : 
+     114             :   void timeoutCallback(const std::string& topic, const ros::Time& last_msg);
+     115             : 
+     116             :   mrs_lib::SubscribeHandler<mrs_msgs::UavState> sh_uav_state_;
+     117             :   void                                          callbackUavState(const mrs_msgs::UavState::ConstPtr msg);
+     118             :   std::string                                   first_frame_id_;
+     119             :   std::string                                   last_frame_id_;
+     120             :   bool                                          is_first_frame_id_set_        = false;
+     121             :   bool                                          is_local_static_tf_published_ = false;
+     122             : 
+     123             :   mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped> sh_height_agl_;
+     124             :   void                                                callbackHeightAgl(const mrs_msgs::Float64Stamped::ConstPtr msg);
+     125             : 
+     126             :   mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude> sh_altitude_amsl_;
+     127             :   void                                               callbackAltitudeAmsl(const mrs_msgs::HwApiAltitude::ConstPtr msg);
+     128             : 
+     129             :   mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped> sh_hw_api_orientation_;
+     130             :   void                                                        callbackHwApiOrientation(const geometry_msgs::QuaternionStamped::ConstPtr msg);
+     131             : 
+     132             :   mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix> sh_gnss_;
+     133             :   void                                              callbackGnss(const sensor_msgs::NavSatFix::ConstPtr msg);
+     134             :   std::atomic<bool>                                 got_utm_offset_ = false;
+     135             : 
+     136             :   mrs_lib::SubscribeHandler<mrs_msgs::RtkGps> sh_rtk_gps_;
+     137             :   void                                        callbackRtkGps(const mrs_msgs::RtkGps::ConstPtr msg);
+     138             : 
+     139             :   std::optional<geometry_msgs::Pose> transformRtkToFcu(const geometry_msgs::PoseStamped& pose_in) const;
+     140             : 
+     141             :   void publishFcuUntiltedTf(const geometry_msgs::QuaternionStampedConstPtr& msg);
+     142             : 
+     143             :   void publishLocalTf();
+     144             : };
+     145             : /*//}*/
+     146             : 
+     147             : 
+     148             : /*//{ onInit() */
+     149          91 : void TransformManager::onInit() {
+     150             : 
+     151          91 :   nh_ = nodelet::Nodelet::getMTPrivateNodeHandle();
+     152             : 
+     153          91 :   ros::Time::waitForValid();
+     154             : 
+     155          91 :   ROS_INFO("[%s]: initializing", getPrintName().c_str());
+     156             : 
+     157          91 :   broadcaster_ = std::make_shared<mrs_lib::TransformBroadcaster>();
+     158             : 
+     159          91 :   ch_->transformer = std::make_shared<mrs_lib::Transformer>(nh_, getPrintName());
+     160          91 :   ch_->transformer->retryLookupNewest(true);
+     161             : 
+     162         182 :   mrs_lib::ParamLoader param_loader(nh_, getPrintName());
+     163             : 
+     164          91 :   param_loader.loadParam("custom_config", _custom_config_);
+     165          91 :   param_loader.loadParam("platform_config", _platform_config_);
+     166          91 :   param_loader.loadParam("world_config", _world_config_);
+     167             : 
+     168          91 :   if (_custom_config_ != "") {
+     169          91 :     param_loader.addYamlFile(_custom_config_);
+     170             :   }
+     171             : 
+     172          91 :   if (_platform_config_ != "") {
+     173          91 :     param_loader.addYamlFile(_platform_config_);
+     174             :   }
+     175             : 
+     176          91 :   if (_world_config_ != "") {
+     177          91 :     param_loader.addYamlFile(_world_config_);
+     178             :   }
+     179             : 
+     180          91 :   param_loader.addYamlFileFromParam("private_config");
+     181          91 :   param_loader.addYamlFileFromParam("public_config");
+     182          91 :   param_loader.addYamlFileFromParam("estimators_config");
+     183             : 
+     184         182 :   const std::string yaml_prefix = "mrs_uav_managers/transform_manager/";
+     185             : 
+     186          91 :   param_loader.loadParam("uav_name", ch_->uav_name);
+     187             : 
+     188             :   /*//{ initialize scope timer */
+     189          91 :   param_loader.loadParam(yaml_prefix + "scope_timer/enabled", ch_->scope_timer.enabled);
+     190         182 :   std::string       filepath;
+     191         182 :   const std::string time_logger_filepath = ros::package::getPath(package_name_) + "/scope_timer/transform_manager_scope_timer.txt";
+     192          91 :   ch_->scope_timer.logger                = std::make_shared<mrs_lib::ScopeTimerLogger>(time_logger_filepath, ch_->scope_timer.enabled);
+     193             :   /*//}*/
+     194             : 
+     195             :   /*//{ load world_origin parameters */
+     196             : 
+     197          91 :   bool   is_origin_param_ok = true;
+     198          91 :   double world_origin_x     = 0;
+     199          91 :   double world_origin_y     = 0;
+     200             : 
+     201          91 :   param_loader.loadParam("world_origin/units", world_origin_units_);
+     202             : 
+     203          91 :   if (Support::toLowercase(world_origin_units_) == "utm") {
+     204             : 
+     205           0 :     ROS_INFO("[%s]: Loading world origin in UTM units.", getPrintName().c_str());
+     206             : 
+     207           0 :     is_origin_param_ok &= param_loader.loadParam("world_origin/origin_x", world_origin_x);
+     208           0 :     is_origin_param_ok &= param_loader.loadParam("world_origin/origin_y", world_origin_y);
+     209             : 
+     210          91 :   } else if (Support::toLowercase(world_origin_units_) == "latlon") {
+     211             : 
+     212          91 :     ROS_INFO("[%s]: Loading world origin in LatLon units.", getPrintName().c_str());
+     213             : 
+     214             :     double lat, lon;
+     215          91 :     is_origin_param_ok &= param_loader.loadParam("world_origin/origin_x", lat);
+     216          91 :     is_origin_param_ok &= param_loader.loadParam("world_origin/origin_y", lon);
+     217             : 
+     218          91 :     mrs_lib::UTM(lat, lon, &world_origin_x, &world_origin_y);
+     219             : 
+     220          91 :     ROS_INFO("[%s]: Converted to UTM x: %f, y: %f.", getPrintName().c_str(), world_origin_x, world_origin_y);
+     221             : 
+     222             :   } else {
+     223           0 :     ROS_ERROR("[%s]: world_origin/units must be (\"UTM\"|\"LATLON\"). Got '%s'", getPrintName().c_str(), world_origin_units_.c_str());
+     224           0 :     ros::shutdown();
+     225             :   }
+     226             : 
+     227          91 :   world_origin_.x = world_origin_x;
+     228          91 :   world_origin_.y = world_origin_y;
+     229          91 :   world_origin_.z = 0;
+     230             : 
+     231          91 :   if (!is_origin_param_ok) {
+     232           0 :     ROS_ERROR("[%s]: Could not load all mandatory parameters from world file. Please check your world file.", getPrintName().c_str());
+     233           0 :     ros::shutdown();
+     234             :   }
+     235             : 
+     236             :   /*//}*/
+     237             : 
+     238             :   /*//{ load local_origin parameters */
+     239         182 :   std::string local_origin_parent_frame_id;
+     240          91 :   param_loader.loadParam(yaml_prefix + "local_origin_tf/parent", local_origin_parent_frame_id);
+     241          91 :   ns_local_origin_parent_frame_id_ = ch_->uav_name + "/" + local_origin_parent_frame_id;
+     242             : 
+     243         182 :   std::string local_origin_child_frame_id;
+     244          91 :   param_loader.loadParam(yaml_prefix + "local_origin_tf/child", local_origin_child_frame_id);
+     245          91 :   ns_local_origin_child_frame_id_ = ch_->uav_name + "/" + local_origin_child_frame_id;
+     246             : 
+     247          91 :   param_loader.loadParam(yaml_prefix + "local_origin_tf/enabled", publish_local_origin_tf_);
+     248             :   /*//}*/
+     249             : 
+     250             :   /*//{ load stable_origin parameters */
+     251         182 :   std::string stable_origin_parent_frame_id;
+     252          91 :   param_loader.loadParam(yaml_prefix + "stable_origin_tf/parent", stable_origin_parent_frame_id);
+     253          91 :   ns_stable_origin_parent_frame_id_ = ch_->uav_name + "/" + stable_origin_parent_frame_id;
+     254             : 
+     255         182 :   std::string stable_origin_child_frame_id;
+     256          91 :   param_loader.loadParam(yaml_prefix + "stable_origin_tf/child", stable_origin_child_frame_id);
+     257          91 :   ns_stable_origin_child_frame_id_ = ch_->uav_name + "/" + stable_origin_child_frame_id;
+     258             : 
+     259          91 :   param_loader.loadParam(yaml_prefix + "stable_origin_tf/enabled", publish_stable_origin_tf_);
+     260             :   /*//}*/
+     261             : 
+     262             :   /*//{ load fixed_origin parameters */
+     263         182 :   std::string fixed_origin_parent_frame_id;
+     264          91 :   param_loader.loadParam(yaml_prefix + "fixed_origin_tf/parent", fixed_origin_parent_frame_id);
+     265          91 :   ns_fixed_origin_parent_frame_id_ = ch_->uav_name + "/" + fixed_origin_parent_frame_id;
+     266             : 
+     267         182 :   std::string fixed_origin_child_frame_id;
+     268          91 :   param_loader.loadParam(yaml_prefix + "fixed_origin_tf/child", fixed_origin_child_frame_id);
+     269          91 :   ns_fixed_origin_child_frame_id_ = ch_->uav_name + "/" + fixed_origin_child_frame_id;
+     270             : 
+     271          91 :   param_loader.loadParam(yaml_prefix + "fixed_origin_tf/enabled", publish_fixed_origin_tf_);
+     272             :   /*//}*/
+     273             : 
+     274             :   /*//{ load fcu_untilted parameters */
+     275         182 :   std::string fcu_frame_id;
+     276          91 :   param_loader.loadParam(yaml_prefix + "fcu_untilted_tf/parent", fcu_frame_id);
+     277          91 :   ch_->frames.fcu    = fcu_frame_id;
+     278          91 :   ch_->frames.ns_fcu = ch_->uav_name + "/" + fcu_frame_id;
+     279             : 
+     280         182 :   std::string fcu_untilted_frame_id;
+     281          91 :   param_loader.loadParam(yaml_prefix + "fcu_untilted_tf/child", fcu_untilted_frame_id);
+     282          91 :   ch_->frames.fcu_untilted    = fcu_untilted_frame_id;
+     283          91 :   ch_->frames.ns_fcu_untilted = ch_->uav_name + "/" + fcu_untilted_frame_id;
+     284             : 
+     285          91 :   param_loader.loadParam(yaml_prefix + "fcu_untilted_tf/enabled", publish_fcu_untilted_tf_);
+     286             :   /*//}*/
+     287             : 
+     288             :   /*//{ load amsl_origin parameters*/
+     289         182 :   std::string amsl_parent_frame_id, amsl_child_frame_id;
+     290          91 :   param_loader.loadParam(yaml_prefix + "altitude_amsl_tf/enabled", publish_amsl_origin_tf_);
+     291          91 :   param_loader.loadParam(yaml_prefix + "altitude_amsl_tf/parent", amsl_parent_frame_id);
+     292          91 :   param_loader.loadParam(yaml_prefix + "altitude_amsl_tf/child", amsl_child_frame_id);
+     293          91 :   ch_->frames.amsl                = amsl_child_frame_id;
+     294          91 :   ch_->frames.ns_amsl             = ch_->uav_name + "/" + amsl_child_frame_id;
+     295          91 :   ns_amsl_origin_parent_frame_id_ = ch_->uav_name + "/" + amsl_parent_frame_id;
+     296          91 :   ns_amsl_origin_child_frame_id_  = ch_->uav_name + "/" + amsl_child_frame_id;
+     297             : 
+     298             :   /*//}*/
+     299             : 
+     300          91 :   param_loader.loadParam(yaml_prefix + "rtk_antenna/frame_id", ch_->frames.rtk_antenna);
+     301          91 :   ch_->frames.ns_rtk_antenna = ch_->uav_name + "/" + ch_->frames.rtk_antenna;
+     302             : 
+     303          91 :   param_loader.loadParam("mrs_uav_managers/estimation_manager/state_estimators", estimator_names_);
+     304          91 :   param_loader.loadParam(yaml_prefix + "tf_sources", tf_source_names_);
+     305             : 
+     306          91 :   param_loader.loadParam(yaml_prefix + "utm_source_priority", utm_source_priority_list_);
+     307         284 :   for (auto utm_source : utm_source_priority_list_) {
+     308         283 :     if (Support::isStringInVector(utm_source, estimator_names_)) {
+     309          90 :       ROS_INFO("[%s]: the source for utm_origin and world origin is: %s", getPrintName().c_str(), utm_source.c_str());
+     310          90 :       utm_source_name_ = utm_source;
+     311          90 :       break;
+     312             :     }
+     313             :   }
+     314             : 
+     315             :   /*//{ initialize tf sources */
+     316          91 :   for (size_t i = 0; i < tf_source_names_.size(); i++) {
+     317             : 
+     318           0 :     const std::string tf_source_name = tf_source_names_[i];
+     319           0 :     const bool        is_utm_source  = tf_source_name == utm_source_name_;
+     320             : 
+     321           0 :     ROS_INFO("[%s]: loading tf source: %s", getPrintName().c_str(), tf_source_name.c_str());
+     322             : 
+     323           0 :     auto source_param_loader = std::make_shared<mrs_lib::ParamLoader>(nh_, "TransformManager/" + tf_source_name);
+     324             : 
+     325           0 :     if (_custom_config_ != "") {
+     326           0 :       source_param_loader->addYamlFile(_custom_config_);
+     327             :     }
+     328             : 
+     329           0 :     if (_platform_config_ != "") {
+     330           0 :       source_param_loader->addYamlFile(_platform_config_);
+     331             :     }
+     332             : 
+     333           0 :     if (_world_config_ != "") {
+     334           0 :       source_param_loader->addYamlFile(_world_config_);
+     335             :     }
+     336             : 
+     337           0 :     source_param_loader->addYamlFileFromParam("private_config");
+     338           0 :     source_param_loader->addYamlFileFromParam("public_config");
+     339           0 :     source_param_loader->addYamlFileFromParam("estimators_config");
+     340             : 
+     341           0 :     tf_sources_.push_back(std::make_unique<TfSource>(tf_source_name, nh_, source_param_loader, broadcaster_, ch_, is_utm_source));
+     342             :   }
+     343             : 
+     344             :   // additionally publish tf of all available estimators
+     345         189 :   for (int i = 0; i < int(estimator_names_.size()); i++) {
+     346             : 
+     347         196 :     const std::string estimator_name = estimator_names_[i];
+     348          98 :     const bool        is_utm_source  = estimator_name == utm_source_name_;
+     349          98 :     ROS_INFO("[%s]: loading tf source of estimator: %s", getPrintName().c_str(), estimator_name.c_str());
+     350             : 
+     351          98 :     auto estimator_param_loader = std::make_shared<mrs_lib::ParamLoader>(nh_, "TransformManager/" + estimator_name);
+     352             : 
+     353          98 :     if (_custom_config_ != "") {
+     354          98 :       estimator_param_loader->addYamlFile(_custom_config_);
+     355             :     }
+     356             : 
+     357          98 :     if (_platform_config_ != "") {
+     358          98 :       estimator_param_loader->addYamlFile(_platform_config_);
+     359             :     }
+     360             : 
+     361          98 :     if (_world_config_ != "") {
+     362          98 :       estimator_param_loader->addYamlFile(_world_config_);
+     363             :     }
+     364             : 
+     365          98 :     estimator_param_loader->addYamlFileFromParam("private_config");
+     366          98 :     estimator_param_loader->addYamlFileFromParam("public_config");
+     367          98 :     estimator_param_loader->addYamlFileFromParam("estimators_config");
+     368             : 
+     369          98 :     tf_sources_.push_back(std::make_unique<TfSource>(estimator_name, nh_, estimator_param_loader, broadcaster_, ch_, is_utm_source));
+     370             :   }
+     371             : 
+     372             :   // initialize mapping_origin tf
+     373             :   bool mapping_origin_tf_enabled;
+     374          91 :   param_loader.loadParam(yaml_prefix + "mapping_origin_tf/enabled", mapping_origin_tf_enabled, false);
+     375             : 
+     376          91 :   if (mapping_origin_tf_enabled) {
+     377             : 
+     378           0 :     auto mapping_param_loader = std::make_shared<mrs_lib::ParamLoader>(nh_, "TransformManager/mapping_origin_tf");
+     379             : 
+     380           0 :     if (_custom_config_ != "") {
+     381           0 :       mapping_param_loader->addYamlFile(_custom_config_);
+     382             :     }
+     383             : 
+     384           0 :     if (_platform_config_ != "") {
+     385           0 :       mapping_param_loader->addYamlFile(_platform_config_);
+     386             :     }
+     387             : 
+     388           0 :     if (_world_config_ != "") {
+     389           0 :       mapping_param_loader->addYamlFile(_world_config_);
+     390             :     }
+     391             : 
+     392           0 :     mapping_param_loader->addYamlFileFromParam("private_config");
+     393           0 :     mapping_param_loader->addYamlFileFromParam("public_config");
+     394           0 :     mapping_param_loader->addYamlFileFromParam("estimators_config");
+     395             : 
+     396           0 :     tf_mapping_origin_ = std::make_unique<TfMappingOrigin>(nh_, mapping_param_loader, broadcaster_, ch_);
+     397             :   }
+     398             : 
+     399             :   //}
+     400             : 
+     401             :   /*//{ initialize subscribers */
+     402         182 :   mrs_lib::SubscribeHandlerOptions shopts;
+     403          91 :   shopts.nh                 = nh_;
+     404          91 :   shopts.node_name          = getPrintName();
+     405          91 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     406          91 :   shopts.threadsafe         = true;
+     407          91 :   shopts.autostart          = true;
+     408          91 :   shopts.queue_size         = 10;
+     409          91 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     410             : 
+     411          91 :   sh_uav_state_ = mrs_lib::SubscribeHandler<mrs_msgs::UavState>(shopts, "uav_state_in", &TransformManager::callbackUavState, this);
+     412             : 
+     413          91 :   sh_height_agl_ = mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped>(shopts, "height_agl_in", &TransformManager::callbackHeightAgl, this);
+     414             : 
+     415          91 :   sh_altitude_amsl_ = mrs_lib::SubscribeHandler<mrs_msgs::HwApiAltitude>(shopts, "altitude_amsl_in", &TransformManager::callbackAltitudeAmsl, this);
+     416             : 
+     417             :   sh_hw_api_orientation_ =
+     418          91 :       mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped>(shopts, "orientation_in", &TransformManager::callbackHwApiOrientation, this);
+     419             : 
+     420          91 :   if (utm_source_name_ == "rtk" || utm_source_name_ == "rtk_garmin") {
+     421           3 :     sh_rtk_gps_ = mrs_lib::SubscribeHandler<mrs_msgs::RtkGps>(shopts, "rtk_gps_in", &TransformManager::callbackRtkGps, this);
+     422             :   } else {
+     423          88 :     sh_gnss_ = mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix>(shopts, "gnss_in", &TransformManager::callbackGnss, this);
+     424             :   }
+     425             :   /*//}*/
+     426             : 
+     427          91 :   if (!param_loader.loadedSuccessfully()) {
+     428           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getPrintName().c_str());
+     429           0 :     ros::shutdown();
+     430             :   }
+     431             : 
+     432          91 :   is_initialized_ = true;
+     433          91 :   ROS_INFO("[%s]: initialized", getPrintName().c_str());
+     434          91 : }
+     435             : /*//}*/
+     436             : 
+     437             : /*//{ callbackUavState() */
+     438             : 
+     439      155064 : void TransformManager::callbackUavState(const mrs_msgs::UavState::ConstPtr msg) {
+     440             : 
+     441      155064 :   if (!is_initialized_) {
+     442           0 :     return;
+     443             :   }
+     444             : 
+     445      310128 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("TransformManager::publishFcuUntilted", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     446             : 
+     447             :   // obtain first frame_id
+     448      155064 :   if (!is_first_frame_id_set_) {
+     449          91 :     first_frame_id_                = msg->header.frame_id;
+     450          91 :     last_frame_id_                 = msg->header.frame_id;
+     451          91 :     pose_fixed_                    = msg->pose;
+     452          91 :     pose_first_                    = msg->pose;
+     453          91 :     pose_fixed_diff_.orientation.w = 1;
+     454             : 
+     455          91 :     is_first_frame_id_set_ = true;
+     456             :   }
+     457             : 
+     458             :   // publish static tf from fixed_origin to local_origin based on the first message
+     459      155064 :   if (publish_local_origin_tf_ && !is_local_static_tf_published_) {
+     460          91 :     publishLocalTf();
+     461             :   }
+     462             : 
+     463      155064 :   if (publish_stable_origin_tf_) {
+     464             :     /*//{ publish stable_origin tf*/
+     465      155064 :     geometry_msgs::TransformStamped tf_msg;
+     466      155064 :     tf_msg.header.stamp    = msg->header.stamp;
+     467      155064 :     tf_msg.header.frame_id = ns_stable_origin_parent_frame_id_;
+     468      155064 :     tf_msg.child_frame_id  = ns_stable_origin_child_frame_id_;
+     469             : 
+     470             :     // transform pose to first frame_id
+     471      155064 :     geometry_msgs::PoseStamped pose;
+     472      155064 :     pose.header = msg->header;
+     473      155064 :     pose.pose   = msg->pose;
+     474      155064 :     if (pose.pose.orientation.w == 0 && pose.pose.orientation.z == 0 && pose.pose.orientation.y == 0 && pose.pose.orientation.x == 0) {
+     475           0 :       ROS_WARN_ONCE("[%s]: Uninitialized quaternion detected during publishing stable_origin tf of %s. Setting w=1", getPrintName().c_str(),
+     476             :                     pose.header.frame_id.c_str());
+     477           0 :       pose.pose.orientation.w = 1.0;
+     478             :     }
+     479             : 
+     480      155064 :     auto res = ch_->transformer->transformSingle(pose, first_frame_id_);
+     481             : 
+     482      155064 :     if (res) {
+     483      155064 :       const tf2::Transform      tf       = Support::tf2FromPose(res->pose);
+     484      155064 :       const tf2::Transform      tf_inv   = tf.inverse();
+     485      155064 :       const geometry_msgs::Pose pose_inv = Support::poseFromTf2(tf_inv);
+     486      155064 :       tf_msg.transform.translation       = Support::pointToVector3(pose_inv.position);
+     487      155064 :       tf_msg.transform.rotation          = pose_inv.orientation;
+     488             : 
+     489      155064 :       if (Support::noNans(tf_msg)) {
+     490             :         try {
+     491      155064 :           broadcaster_->sendTransform(tf_msg);
+     492             :         }
+     493           0 :         catch (...) {
+     494           0 :           ROS_ERROR("exception caught ");
+     495             :         }
+     496             :       } else {
+     497           0 :         ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in transform from %s to %s. Not publishing tf.", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     498             :                           tf_msg.child_frame_id.c_str());
+     499             :       }
+     500      155064 :       ROS_INFO_ONCE("[%s]: Broadcasting transform from parent frame: %s to child frame: %s", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     501             :                     tf_msg.child_frame_id.c_str());
+     502             :     } else {
+     503           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: Could not transform pose to %s. Not publishing stable_origin transform.", getPrintName().c_str(), first_frame_id_.c_str());
+     504           0 :       return;
+     505             :     }
+     506             :     /*//}*/
+     507             :   }
+     508             : 
+     509      155064 :   if (publish_fixed_origin_tf_) {
+     510             :     /*//{ publish fixed_origin tf*/
+     511      155064 :     if (msg->header.frame_id != last_frame_id_) {
+     512           5 :       ROS_WARN("[%s]: Detected estimator change from %s to %s. Updating offset for fixed origin.", getPrintName().c_str(), last_frame_id_.c_str(),
+     513             :                msg->header.frame_id.c_str());
+     514             : 
+     515           5 :       pose_fixed_diff_ = Support::getPoseDiff(msg->pose, pose_fixed_);
+     516             :     }
+     517             : 
+     518             : 
+     519      155064 :     pose_fixed_ = Support::applyPoseDiff(msg->pose, pose_fixed_diff_);
+     520             : 
+     521      310128 :     geometry_msgs::TransformStamped tf_msg;
+     522      155064 :     tf_msg.header.stamp    = msg->header.stamp;
+     523      155064 :     tf_msg.header.frame_id = ns_fixed_origin_parent_frame_id_;
+     524      155064 :     tf_msg.child_frame_id  = ns_fixed_origin_child_frame_id_;
+     525             : 
+     526      155064 :     const tf2::Transform      tf       = Support::tf2FromPose(pose_fixed_);
+     527      155064 :     const tf2::Transform      tf_inv   = tf.inverse();
+     528      155064 :     const geometry_msgs::Pose pose_inv = Support::poseFromTf2(tf_inv);
+     529      155064 :     tf_msg.transform.translation       = Support::pointToVector3(pose_inv.position);
+     530      155064 :     tf_msg.transform.rotation          = pose_inv.orientation;
+     531             : 
+     532      155064 :     if (Support::noNans(tf_msg)) {
+     533             :       try {
+     534      155064 :         broadcaster_->sendTransform(tf_msg);
+     535             :       }
+     536           0 :       catch (...) {
+     537           0 :         ROS_ERROR("exception caught ");
+     538             :       }
+     539             :     } else {
+     540           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in transform from %s to %s. Not publishing tf.", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     541             :                         tf_msg.child_frame_id.c_str());
+     542             :     }
+     543      155064 :     ROS_INFO_ONCE("[%s]: Broadcasting transform from parent frame: %s to child frame: %s", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     544             :                   tf_msg.child_frame_id.c_str());
+     545             :     /*//}*/
+     546             :   }
+     547             : 
+     548             :   /*//{ choose another source of utm and world tfs after estimator switch */
+     549      155064 :   if (msg->header.frame_id != last_frame_id_) {
+     550             : 
+     551          10 :     const std::string last_estimator_name    = Support::frameIdToEstimatorName(last_frame_id_);
+     552          10 :     const std::string current_estimator_name = Support::frameIdToEstimatorName(msg->header.frame_id);
+     553             : 
+     554           5 :     ROS_INFO("[%s]: Detected estimator switch: %s -> %s", getPrintName().c_str(), last_estimator_name.c_str(), current_estimator_name.c_str());
+     555             : 
+     556           5 :     bool   valid_utm_source_found = false;
+     557             :     size_t potential_utm_source_index;
+     558             : 
+     559          12 :     for (size_t i = 0; i < tf_sources_.size(); i++) {
+     560             : 
+     561             :       // first check if tf source can publish utm origin and is not the switched-from estimator
+     562          12 :       if (tf_sources_.at(i)->getIsUtmBased() && tf_sources_.at(i)->getName() != last_estimator_name) {
+     563             : 
+     564           8 :         valid_utm_source_found     = true;
+     565           8 :         potential_utm_source_index = i;
+     566             : 
+     567             :         // check if switched-to estimator is utm_based, if so, use it
+     568           8 :         if (tf_sources_.at(i)->getIsUtmBased() && tf_sources_.at(i)->getName() == current_estimator_name) {
+     569           5 :           potential_utm_source_index = i;
+     570           5 :           break;
+     571             :         }
+     572             :       }
+     573             :     }
+     574             : 
+     575             : 
+     576             :     // if we found a valid utm source, use it, otherwise stay with the switched-from estimator
+     577           5 :     if (valid_utm_source_found) {
+     578             : 
+     579             :       // stop all estimators from publishing utm source
+     580          23 :       for (size_t i = 0; i < tf_sources_.size(); i++) {
+     581          18 :         if (tf_sources_.at(i)->getIsUtmSource()) {
+     582           5 :           tf_sources_.at(i)->setIsUtmSource(false);
+     583           5 :           ROS_INFO("[%s]: setting is_utm_source of estimator %s to false", getPrintName().c_str(), last_estimator_name.c_str());
+     584             :         }
+     585             :       }
+     586             : 
+     587           5 :       tf_sources_.at(potential_utm_source_index)->setIsUtmSource(true);
+     588           5 :       ROS_INFO("[%s]: setting is_utm_source of estimator %s to true", getPrintName().c_str(), current_estimator_name.c_str());
+     589             :     }
+     590             :   }
+     591             :   /*//}*/
+     592             : 
+     593      155064 :   last_frame_id_ = msg->header.frame_id;
+     594             : }
+     595             : /*//}*/
+     596             : 
+     597             : /*//{ callbackHeightAgl() */
+     598             : 
+     599      138609 : void TransformManager::callbackHeightAgl(const mrs_msgs::Float64Stamped::ConstPtr msg) {
+     600             : 
+     601      138609 :   if (!is_initialized_) {
+     602           0 :     return;
+     603             :   }
+     604             : 
+     605      415827 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("TransformManager::callbackHeightAgl", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     606             : 
+     607      277218 :   geometry_msgs::TransformStamped tf_msg;
+     608      138609 :   tf_msg.header.stamp    = msg->header.stamp;
+     609      138609 :   tf_msg.header.frame_id = ch_->frames.ns_fcu_untilted;
+     610      138609 :   tf_msg.child_frame_id  = msg->header.frame_id;
+     611             : 
+     612      138609 :   tf_msg.transform.translation.x = 0;
+     613      138609 :   tf_msg.transform.translation.y = 0;
+     614      138609 :   tf_msg.transform.translation.z = -msg->value;
+     615      138609 :   tf_msg.transform.rotation.x    = 0;
+     616      138609 :   tf_msg.transform.rotation.y    = 0;
+     617      138609 :   tf_msg.transform.rotation.z    = 0;
+     618      138609 :   tf_msg.transform.rotation.w    = 1;
+     619             : 
+     620      138609 :   if (Support::noNans(tf_msg)) {
+     621             :     try {
+     622      138609 :       broadcaster_->sendTransform(tf_msg);
+     623             :     }
+     624           0 :     catch (...) {
+     625           0 :       ROS_ERROR("exception caught ");
+     626             :     }
+     627             :   } else {
+     628           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in transform from %s to %s. Not publishing tf.", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     629             :                       tf_msg.child_frame_id.c_str());
+     630             :   }
+     631      138609 :   ROS_INFO_ONCE("[%s]: Broadcasting transform from parent frame: %s to child frame: %s", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     632             :                 tf_msg.child_frame_id.c_str());
+     633             : }
+     634             : /*//}*/
+     635             : 
+     636             : /*//{ callbackAltitudeAmsl() */
+     637             : 
+     638      157816 : void TransformManager::callbackAltitudeAmsl(const mrs_msgs::HwApiAltitude::ConstPtr msg) {
+     639             : 
+     640      157816 :   if (!is_initialized_) {
+     641           0 :     return;
+     642             :   }
+     643             : 
+     644      473448 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("TransformManager::callbackAltitudeAmsl", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     645             : 
+     646      315632 :   geometry_msgs::TransformStamped tf_msg;
+     647      157816 :   tf_msg.header.stamp    = msg->stamp;
+     648      157816 :   tf_msg.header.frame_id = ch_->frames.ns_fcu_untilted;
+     649      157816 :   tf_msg.child_frame_id  = ch_->frames.ns_amsl;
+     650             : 
+     651      157816 :   tf_msg.transform.translation.x = 0;
+     652      157816 :   tf_msg.transform.translation.y = 0;
+     653      157816 :   tf_msg.transform.translation.z = -msg->amsl;
+     654      157816 :   tf_msg.transform.rotation.x    = 0;
+     655      157816 :   tf_msg.transform.rotation.y    = 0;
+     656      157816 :   tf_msg.transform.rotation.z    = 0;
+     657      157816 :   tf_msg.transform.rotation.w    = 1;
+     658             : 
+     659      157816 :   if (Support::noNans(tf_msg)) {
+     660             :     try {
+     661      157774 :       broadcaster_->sendTransform(tf_msg);
+     662             :     }
+     663           0 :     catch (...) {
+     664           0 :       ROS_ERROR("exception caught ");
+     665             :     }
+     666             :   } else {
+     667          42 :     ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in transform from %s to %s. Not publishing tf.", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     668             :                       tf_msg.child_frame_id.c_str());
+     669             :   }
+     670      157816 :   ROS_INFO_ONCE("[%s]: Broadcasting transform from parent frame: %s to child frame: %s", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     671             :                 tf_msg.child_frame_id.c_str());
+     672             : }
+     673             : /*//}*/
+     674             : 
+     675             : /*//{ callbackHwApiOrientation() */
+     676      197140 : void TransformManager::callbackHwApiOrientation(const geometry_msgs::QuaternionStamped::ConstPtr msg) {
+     677             : 
+     678      197140 :   if (!is_initialized_) {
+     679           0 :     return;
+     680             :   }
+     681             : 
+     682      591420 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("TransformManager::publishFcuUntilted", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     683             : 
+     684      197140 :   if (publish_fcu_untilted_tf_) {
+     685      197140 :     publishFcuUntiltedTf(msg);
+     686             :   }
+     687             : }
+     688             : /*//}*/
+     689             : 
+     690             : /*//{ callbackGnss() */
+     691       93177 : void TransformManager::callbackGnss(const sensor_msgs::NavSatFix::ConstPtr msg) {
+     692             : 
+     693       93177 :   if (!is_initialized_) {
+     694       93089 :     return;
+     695             :   }
+     696             : 
+     697       93177 :   if (got_utm_offset_) {
+     698       93089 :     return;
+     699             :   }
+     700             : 
+     701         176 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("TransformManager::callbackGnss", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     702             : 
+     703             :   double out_x;
+     704             :   double out_y;
+     705             : 
+     706          88 :   mrs_lib::UTM(msg->latitude, msg->longitude, &out_x, &out_y);
+     707             : 
+     708          88 :   if (!std::isfinite(out_x)) {
+     709           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in UTM variable \"out_x\"!!!", getPrintName().c_str());
+     710           0 :     return;
+     711             :   }
+     712             : 
+     713          88 :   if (!std::isfinite(out_y)) {
+     714           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in UTM variable \"out_y\"!!!", getPrintName().c_str());
+     715           0 :     return;
+     716             :   }
+     717             : 
+     718          88 :   geometry_msgs::Point utm_origin;
+     719          88 :   utm_origin.x = out_x;
+     720          88 :   utm_origin.y = out_y;
+     721          88 :   utm_origin.z = msg->altitude;
+     722             : 
+     723          88 :   ROS_INFO("[%s]: utm_origin position calculated as: x: %.2f, y: %.2f, z: %.2f from GNSS", getPrintName().c_str(), utm_origin.x, utm_origin.y, utm_origin.z);
+     724             : 
+     725         180 :   for (size_t i = 0; i < tf_sources_.size(); i++) {
+     726          92 :     tf_sources_[i]->setUtmOrigin(utm_origin);
+     727          92 :     tf_sources_[i]->setWorldOrigin(world_origin_);
+     728             :   }
+     729          88 :   got_utm_offset_ = true;
+     730             : }
+     731             : /*//}*/
+     732             : 
+     733             : /*//{ callbackRtkGps() */
+     734        3834 : void TransformManager::callbackRtkGps(const mrs_msgs::RtkGps::ConstPtr msg) {
+     735             : 
+     736        3834 :   if (!is_initialized_) {
+     737        3831 :     return;
+     738             :   }
+     739             : 
+     740        3834 :   if (got_utm_offset_) {
+     741        3824 :     return;
+     742             :   }
+     743             : 
+     744          20 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("TransformManager::callbackRtkGps", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     745             : 
+     746             :   double out_x;
+     747             :   double out_y;
+     748             : 
+     749          10 :   geometry_msgs::PoseStamped rtk_pos;
+     750             : 
+     751          10 :   if (!std::isfinite(msg->gps.latitude)) {
+     752           0 :     ROS_ERROR_THROTTLE(1.0, "[%s] NaN detected in RTK variable \"msg->latitude\"!!!", getPrintName().c_str());
+     753           0 :     return;
+     754             :   }
+     755             : 
+     756          10 :   if (!std::isfinite(msg->gps.longitude)) {
+     757           0 :     ROS_ERROR_THROTTLE(1.0, "[%s] NaN detected in RTK variable \"msg->longitude\"!!!", getPrintName().c_str());
+     758           0 :     return;
+     759             :   }
+     760             : 
+     761          10 :   if (!std::isfinite(msg->gps.altitude)) {
+     762           0 :     ROS_ERROR_THROTTLE(1.0, "[%s] NaN detected in RTK variable \"msg->altitude\"!!!", getPrintName().c_str());
+     763           0 :     return;
+     764             :   }
+     765             : 
+     766          10 :   if (msg->fix_type.fix_type != mrs_msgs::RtkFixType::RTK_FIX) {
+     767           0 :     ROS_INFO_THROTTLE(1.0, "[%s] %s RTK FIX", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     768           0 :     return;
+     769             :   }
+     770             : 
+     771          10 :   rtk_pos.header = msg->header;
+     772          10 :   mrs_lib::UTM(msg->gps.latitude, msg->gps.longitude, &rtk_pos.pose.position.x, &rtk_pos.pose.position.y);
+     773          10 :   rtk_pos.pose.position.z  = msg->gps.altitude;
+     774          10 :   rtk_pos.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+     775             : 
+     776          10 :   rtk_pos.pose.position.x -= ch_->world_origin.x;
+     777          10 :   rtk_pos.pose.position.y -= ch_->world_origin.y;
+     778             : 
+     779             : 
+     780             :   // transform the RTK position from antenna to FCU
+     781          10 :   auto res = transformRtkToFcu(rtk_pos);
+     782          10 :   if (res) {
+     783           3 :     rtk_pos.pose = res.value();
+     784             :   } else {
+     785           7 :     ROS_ERROR_THROTTLE(1.0, "[%s]: transform to fcu failed", getPrintName().c_str());
+     786           7 :     return;
+     787             :   }
+     788             : 
+     789           3 :   mrs_lib::UTM(msg->gps.latitude, msg->gps.longitude, &out_x, &out_y);
+     790             : 
+     791           3 :   if (!std::isfinite(out_x)) {
+     792           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in UTM variable \"out_x\"!!!", getPrintName().c_str());
+     793           0 :     return;
+     794             :   }
+     795             : 
+     796           3 :   if (!std::isfinite(out_y)) {
+     797           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in UTM variable \"out_y\"!!!", getPrintName().c_str());
+     798           0 :     return;
+     799             :   }
+     800             : 
+     801           3 :   geometry_msgs::Point utm_origin;
+     802           3 :   utm_origin.x = out_x;
+     803           3 :   utm_origin.y = out_y;
+     804           3 :   utm_origin.z = msg->gps.altitude;
+     805             : 
+     806           3 :   ROS_INFO("[%s]: utm_origin position calculated as: x: %.2f, y: %.2f, z: %.2f from RTK msg", getPrintName().c_str(), utm_origin.x, utm_origin.y, utm_origin.z);
+     807             : 
+     808           9 :   for (size_t i = 0; i < tf_sources_.size(); i++) {
+     809           6 :     tf_sources_[i]->setUtmOrigin(utm_origin);
+     810           6 :     tf_sources_[i]->setWorldOrigin(world_origin_);
+     811             :   }
+     812           3 :   got_utm_offset_ = true;
+     813             : }
+     814             : /*//}*/
+     815             : 
+     816             : /*//{ publishFcuUntiltedTf() */
+     817      197140 : void TransformManager::publishFcuUntiltedTf(const geometry_msgs::QuaternionStampedConstPtr& msg) {
+     818             : 
+     819      394280 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("TransformManager::publishFcuUntilted", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     820             : 
+     821             :   double heading;
+     822             : 
+     823             :   try {
+     824      197140 :     heading = mrs_lib::AttitudeConverter(msg->quaternion).getHeading();
+     825             :   }
+     826           0 :   catch (...) {
+     827           0 :     ROS_ERROR("[%s]: Exception caught during getting heading", getPrintName().c_str());
+     828           0 :     return;
+     829             :   }
+     830      197140 :   scope_timer.checkpoint("heading");
+     831             : 
+     832      197140 :   const Eigen::Matrix3d odom_pixhawk_R = mrs_lib::AttitudeConverter(msg->quaternion);
+     833      197140 :   const Eigen::Matrix3d undo_heading_R = mrs_lib::AttitudeConverter(Eigen::AngleAxis(-heading, Eigen::Vector3d(0, 0, 1)));
+     834             : 
+     835      197140 :   const tf2::Quaternion q     = mrs_lib::AttitudeConverter(undo_heading_R * odom_pixhawk_R);
+     836      197140 :   const tf2::Quaternion q_inv = q.inverse();
+     837             : 
+     838      197140 :   scope_timer.checkpoint("q inverse");
+     839             : 
+     840      197140 :   geometry_msgs::TransformStamped tf;
+     841      197140 :   tf.header.stamp            = msg->header.stamp;  // TODO(petrlmat) ros::Time::now()?
+     842      197140 :   tf.header.frame_id         = ch_->frames.ns_fcu;
+     843      197140 :   tf.child_frame_id          = ch_->frames.ns_fcu_untilted;
+     844      197140 :   tf.transform.translation.x = 0.0;
+     845      197140 :   tf.transform.translation.y = 0.0;
+     846      197140 :   tf.transform.translation.z = 0.0;
+     847      197140 :   tf.transform.rotation      = mrs_lib::AttitudeConverter(q_inv);
+     848             : 
+     849      197140 :   scope_timer.checkpoint("tf fill");
+     850      197140 :   if (Support::noNans(tf)) {
+     851      197140 :     broadcaster_->sendTransform(tf);
+     852             :   } else {
+     853           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaN encountered in fcu_untilted tf", getPrintName().c_str());
+     854             :   }
+     855      197140 :   scope_timer.checkpoint("tf pub");
+     856             : }
+     857             : /*//}*/
+     858             : 
+     859             : /* publishLocalTf() //{*/
+     860          91 : void TransformManager::publishLocalTf() {
+     861             : 
+     862         273 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer(getPrintName() + "::publishLocalTf", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     863             : 
+     864          91 :   geometry_msgs::TransformStamped tf_msg;
+     865          91 :   tf_msg.header.stamp = ros::Time::now();
+     866             : 
+     867          91 :   tf_msg.header.frame_id       = ns_fixed_origin_child_frame_id_;
+     868          91 :   tf_msg.child_frame_id        = ns_local_origin_child_frame_id_;
+     869          91 :   tf_msg.transform.translation = Support::pointToVector3(pose_first_.position);
+     870          91 :   tf_msg.transform.rotation    = pose_first_.orientation;
+     871             : 
+     872          91 :   if (Support::noNans(tf_msg)) {
+     873             : 
+     874             :     try {
+     875          91 :       static_broadcaster_.sendTransform(tf_msg);
+     876             :     }
+     877           0 :     catch (...) {
+     878           0 :       ROS_ERROR("[%s]: exception caught while publishing tf from %s to %s", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     879             :                 tf_msg.child_frame_id.c_str());
+     880             :     }
+     881             : 
+     882             :   } else {
+     883           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: NaN detected in transform from %s to %s. Not publishing tf.", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     884             :                       tf_msg.child_frame_id.c_str());
+     885             :   }
+     886          91 :   ROS_INFO_ONCE("[%s]: Broadcasting transform from parent frame: %s to child frame: %s", getPrintName().c_str(), tf_msg.header.frame_id.c_str(),
+     887             :                 tf_msg.child_frame_id.c_str());
+     888          91 :   is_local_static_tf_published_ = true;
+     889          91 : }
+     890             : /*//}*/
+     891             : 
+     892             : /*//{ transformRtkToFcu() */
+     893          10 : std::optional<geometry_msgs::Pose> TransformManager::transformRtkToFcu(const geometry_msgs::PoseStamped& pose_in) const {
+     894             : 
+     895          20 :   geometry_msgs::PoseStamped pose_tmp = pose_in;
+     896             : 
+     897             :   // inject current orientation into rtk pose
+     898          20 :   auto res1 = ch_->transformer->getTransform(ch_->frames.ns_fcu_untilted, ch_->frames.ns_fcu, ros::Time::now());
+     899          10 :   if (res1) {
+     900           3 :     pose_tmp.pose.orientation = res1.value().transform.rotation;
+     901             :   } else {
+     902           7 :     ROS_ERROR_THROTTLE(1.0, "[%s]: Could not obtain transform from %s to %s.", getPrintName().c_str(), ch_->frames.ns_fcu_untilted.c_str(),
+     903             :                        ch_->frames.ns_fcu.c_str());
+     904           7 :     return {};
+     905             :   }
+     906             : 
+     907             :   // invert tf
+     908           3 :   tf2::Transform             tf_utm_to_antenna = Support::tf2FromPose(pose_tmp.pose);
+     909           6 :   geometry_msgs::PoseStamped utm_in_antenna;
+     910           3 :   utm_in_antenna.pose            = Support::poseFromTf2(tf_utm_to_antenna.inverse());
+     911           3 :   utm_in_antenna.header.stamp    = pose_in.header.stamp;
+     912           3 :   utm_in_antenna.header.frame_id = ch_->frames.ns_rtk_antenna;
+     913             : 
+     914             :   // transform to fcu
+     915           6 :   geometry_msgs::PoseStamped utm_in_fcu;
+     916           3 :   utm_in_fcu.header.frame_id = ch_->frames.ns_fcu;
+     917           3 :   utm_in_fcu.header.stamp    = pose_in.header.stamp;
+     918           6 :   auto res2                  = ch_->transformer->transformSingle(utm_in_antenna, ch_->frames.ns_fcu);
+     919             : 
+     920           3 :   if (res2) {
+     921           3 :     utm_in_fcu = res2.value();
+     922             :   } else {
+     923           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: Could not transform RTK pose from %s to %s.", getPrintName().c_str(), utm_in_antenna.header.frame_id.c_str(),
+     924             :                        ch_->frames.ns_fcu.c_str());
+     925           0 :     return {};
+     926             :   }
+     927             : 
+     928             :   // invert tf
+     929           3 :   tf2::Transform      tf_fcu_to_utm = Support::tf2FromPose(utm_in_fcu.pose);
+     930           3 :   geometry_msgs::Pose fcu_in_utm    = Support::poseFromTf2(tf_fcu_to_utm.inverse());
+     931             : 
+     932           3 :   return fcu_in_utm;
+     933             : }
+     934             : /*//}*/
+     935             : 
+     936             : /*//{ getName() */
+     937           0 : std::string TransformManager::getName() const {
+     938           0 :   return name_;
+     939             : }
+     940             : /*//}*/
+     941             : 
+     942             : /*//{ getPrintName() */
+     943        1470 : std::string TransformManager::getPrintName() const {
+     944        1470 :   return nodelet_name_;
+     945             : }
+     946             : /*//}*/
+     947             : 
+     948             : }  // namespace transform_manager
+     949             : 
+     950             : }  // namespace mrs_uav_managers
+     951             : 
+     952             : #include <pluginlib/class_list_macros.h>
+     953          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_managers::transform_manager::TransformManager, nodelet::Nodelet)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/transform_manager/transform_manager.cpp.gcov.overview.html b/mrs_uav_managers/src/transform_manager/transform_manager.cpp.gcov.overview.html new file mode 100644 index 0000000000..30f0c970f4 --- /dev/null +++ b/mrs_uav_managers/src/transform_manager/transform_manager.cpp.gcov.overview.html @@ -0,0 +1,259 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/transform_manager/transform_manager.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_managers/src/transform_manager/transform_manager.cpp.gcov.png b/mrs_uav_managers/src/transform_manager/transform_manager.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..857e6572c7450ea1c97cc6612967829ea96c30ff GIT binary patch literal 3375 zcmV+~4bbw5P)^F{K@mj|?d?9i{=47D z`|YgqqUK57TOxTLGo6!N8*p;p=FY zqfk{ADC*j-Ivyd$Q9MkqP;55T4D4pj6*CZlIbav-Lyb94GKu1A0yk9bWWJQOM*a%c zBj7#A3?OQNFAnm)kD1g_ov%tD82Y1dN3TKf(LHr5Imc*=B;$VH-HIF84G{u403ch~V; zyIu)g7AOy7DQ5Ud-NUnHcy~00*72w;3#SHq8OYX=0;Qe-E!XR~2Y6K%T7ew*x(g3h z5%kQUat2I?bELyHV<0>jm4%=0u0l;pXgYio)oFKW^Av$cMV_dfV_5-3rtD=RkQ*w= z*Bt%Z4K40recXpe{Wm1JY)?aa?j$Y>yB1ID`*D#c$f|C-4jkb-E!Nx1(E{8E_w*w# z9w4DH0}Uj)B6=e0tO8?$wJEsM#TvFe^tFl139Luj1~sfzA)|X-d3MxLs3W%; zkYie)hR4J+u+Lo-v6={N+ecBy*$JK(og^*@2AMxz-QhjV`_|vG5J+oPmj;mx$KUWJ(cGhKlwyIeum9q7@{I32<3#gLfnSm_U^8(O9!+95HkJySyq{~#v;gref^R8D6>wy-??=CcjWjT z*QfTiQU_~a7w61nm#j&V(FO$U6FBUweT@;6V)La0(uAU{6cd%LhN}X6u-vHI`vTg$T)XmsI;xda>-d9#7uInLJBsABIz9>Tf;y@N zuvT$TD=J_+PWu0_iZ9GtM#n$mn>&acjG{Eh&oBt0pCRl z&*sV0iEbhvG=he+fE z$nf!wpo@O=v}fxa*gSTo-F#3ugxx-}z~dz^T<{7h6q393pE^QSX;|=~|^+ z5LRRox41ndX^%av3)Y`1$)+{qUYgXPiIip`qb^54W5-Ol#TMJ|SZKn``lGpPp)6eF zlkUyUU1>YOe+l2w%Gn)RAq6m1$1_ z;%4&gf3yfqHfY5>$>hd(3JfURCdeP)Ya`ql-uh* z_Z1JcsP3kcwj5u~IkNUoDerXk@gf|4pdkgy+Bjx_xaXp3VYeV=i_d5|L;8lE1~ex& z<0d?dEASKcde-WqJg{E(>^%X|vT)JFnJgRz zDi*GmBg=a6lT_78)}z_ARq2bm4QQ}%(H2&P2ijr)51WO15IZAUI1e<@uy=dX^ zj*nvDJnOD;9lEcm8ntjBqDlIunn>ShK5qHKmE>*?!3#-OunaNH%4if0~OX3LUpINqd6lFXOB)vc^^CDVoc~=eo^IZlSR;x8Re8NP|~^kjfG?#YZ1P zaA{)G6=@V=?mB6QhD(@l4ZsuPJ-ON79=|bdr~7d+CV|_U&3GStB{Q&D$L$|$lD2iO zc-K`Vw@ut3=8kGA9g!qbPLN&LHefF@b_6bWIoQ>;1|qCbr}3> zK3c7=+J&!GFt=K5Io=K{!2ZTS1MH{&N>u{Iblb-Uagzcg0l!j?jib-k^+9UvL!FT-PS7O#m$p4Huu5RPll@y*# zz4X5(?)U46yWyH zpRo9lHb=nVBD%;tZ7&eesVRdvCg%V!wPQqA&I+^MfC^%ojbS|SdZ={H;{5&m_h zjII7RTq)g~x?-ym(>ToqI8#Q}UlI&fLA`t-CVg48$G9^DuR)2&deS+c{Q9zmW<6x2 zzP5HDIIfWX3da!4z&)%TcXdeYVZvHIQo3`?S2=llWJkQQ?;1V^bAI*)<}C1~v=qo% zWL=#NSK$;tyLb;B#t8pp7Bf+aVA0Tl{ef*N1 zJZIhJxqb8fRTuqOj%Q3rUS-dVY8#_HobF(w8E6U?iOE*1yN^(0D+dK`m1B&$)?rpb zJh0U)#cI{ewS)rYHU}VBd&}49b=vEW!KME|&UA3qT&~bqv!y}Ds#nF#M2~%KT(ZRK45mzzIzBcN_98%YQ=EMdys(l>Pt!002ovPDHLk FV1mqgX+Z!0 literal 0 HcmV?d00001 diff --git a/mrs_uav_managers/src/uav_manager.cpp.func-sort-c.html b/mrs_uav_managers/src/uav_manager.cpp.func-sort-c.html new file mode 100644 index 0000000000..ab09aa3784 --- /dev/null +++ b/mrs_uav_managers/src/uav_manager.cpp.func-sort-c.html @@ -0,0 +1,232 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/uav_manager.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/src - uav_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:789116967.5 %
Date:2024-04-17 23:52:03Functions:3838100.0 %
Legend: Lines: + hit + not hit +
+
+ +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_managers::uav_manager::UavManager::callbackLandThere(mrs_msgs::ReferenceStampedSrvRequest_<std::allocator<void> >&, mrs_msgs::ReferenceStampedSrvResponse_<std::allocator<void> >&)1
mrs_uav_managers::uav_manager::UavManager::elandSrv()1
mrs_uav_managers::uav_manager::UavManager::callbackLand(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)2
mrs_uav_managers::uav_manager::UavManager::callbackLandHome(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)2
mrs_uav_managers::uav_manager::UavManager::callbackMinHeightCheck(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)2
mrs_uav_managers::uav_manager::UavManager::ehoverSrv()2
mrs_uav_managers::uav_manager::UavManager::landSrv()5
mrs_uav_managers::uav_manager::UavManager::landImpl[abi:cxx11]()5
mrs_uav_managers::uav_manager::UavManager::disarmSrv()7
mrs_uav_managers::uav_manager::UavManager::landWithDescendImpl[abi:cxx11]()9
mrs_uav_managers::uav_manager::UavManager::changeLandingState(mrs_uav_managers::uav_manager::LandingStates_t)17
mrs_uav_managers::uav_manager::UavManager::takeoffSrv()20
mrs_uav_managers::uav_manager::UavManager::callbackTakeoff(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)22
mrs_uav_managers::uav_manager::UavManager::ungripSrv()23
mrs_uav_managers::uav_manager::UavManager::offboardSrv(bool)64
mrs_uav_managers::uav_manager::UavManager::midairActivationImpl[abi:cxx11]()65
mrs_uav_managers::uav_manager::UavManager::callbackMidairActivation(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)65
mrs_uav_managers::uav_manager::UavManager::timerMidairActivation(ros::TimerEvent const&)66
mrs_uav_managers::uav_manager::UavManager::toggleControlOutput(bool const&)68
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::uav_manager::UavManager::initialize()91
mrs_uav_managers::uav_manager::UavManager::preinitialize()91
mrs_uav_managers::uav_manager::UavManager::onInit()91
mrs_uav_managers::uav_manager::UavManager::emergencyReferenceSrv(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)93
mrs_uav_managers::uav_manager::UavManager::timerHwApiCapabilities(ros::TimerEvent const&)93
mrs_uav_managers::uav_manager::UavManager::setControlCallbacksSrv(bool const&)94
mrs_uav_managers::uav_manager::UavManager::setOdometryCallbacksSrv(bool const&)110
mrs_uav_managers::uav_manager::UavManager::switchControllerSrv(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)177
mrs_uav_managers::uav_manager::UavManager::switchTrackerSrv(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)178
mrs_uav_managers::uav_manager::UavManager::timerFlightTime(ros::TimerEvent const&)281
mrs_uav_managers::uav_manager::UavManager::timerLanding(ros::TimerEvent const&)786
mrs_uav_managers::uav_manager::UavManager::timerTakeoff(ros::TimerEvent const&)967
mrs_uav_managers::uav_manager::UavManager::timerDiagnostics(ros::TimerEvent const&)1951
mrs_uav_managers::uav_manager::UavManager::timerMinHeight(ros::TimerEvent const&)19566
mrs_uav_managers::uav_manager::UavManager::timerMaxHeight(ros::TimerEvent const&)19636
mrs_uav_managers::uav_manager::UavManager::timerMaxthrottle(ros::TimerEvent const&)49413
mrs_uav_managers::uav_manager::UavManager::callbackHwApiGNSS(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)93150
mrs_uav_managers::uav_manager::UavManager::callbackOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)155029
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/uav_manager.cpp.func.html b/mrs_uav_managers/src/uav_manager.cpp.func.html new file mode 100644 index 0000000000..93c088fc9d --- /dev/null +++ b/mrs_uav_managers/src/uav_manager.cpp.func.html @@ -0,0 +1,232 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/uav_manager.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/src - uav_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:789116967.5 %
Date:2024-04-17 23:52:03Functions:3838100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_managers::uav_manager::UavManager::initialize()91
mrs_uav_managers::uav_manager::UavManager::takeoffSrv()20
mrs_uav_managers::uav_manager::UavManager::offboardSrv(bool)64
mrs_uav_managers::uav_manager::UavManager::callbackLand(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)2
mrs_uav_managers::uav_manager::UavManager::timerLanding(ros::TimerEvent const&)786
mrs_uav_managers::uav_manager::UavManager::timerTakeoff(ros::TimerEvent const&)967
mrs_uav_managers::uav_manager::UavManager::preinitialize()91
mrs_uav_managers::uav_manager::UavManager::timerMaxHeight(ros::TimerEvent const&)19636
mrs_uav_managers::uav_manager::UavManager::timerMinHeight(ros::TimerEvent const&)19566
mrs_uav_managers::uav_manager::UavManager::callbackTakeoff(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)22
mrs_uav_managers::uav_manager::UavManager::timerFlightTime(ros::TimerEvent const&)281
mrs_uav_managers::uav_manager::UavManager::callbackLandHome(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)2
mrs_uav_managers::uav_manager::UavManager::callbackOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)155029
mrs_uav_managers::uav_manager::UavManager::switchTrackerSrv(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)178
mrs_uav_managers::uav_manager::UavManager::timerDiagnostics(ros::TimerEvent const&)1951
mrs_uav_managers::uav_manager::UavManager::timerMaxthrottle(ros::TimerEvent const&)49413
mrs_uav_managers::uav_manager::UavManager::callbackHwApiGNSS(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)93150
mrs_uav_managers::uav_manager::UavManager::callbackLandThere(mrs_msgs::ReferenceStampedSrvRequest_<std::allocator<void> >&, mrs_msgs::ReferenceStampedSrvResponse_<std::allocator<void> >&)1
mrs_uav_managers::uav_manager::UavManager::changeLandingState(mrs_uav_managers::uav_manager::LandingStates_t)17
mrs_uav_managers::uav_manager::UavManager::landWithDescendImpl[abi:cxx11]()9
mrs_uav_managers::uav_manager::UavManager::switchControllerSrv(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)177
mrs_uav_managers::uav_manager::UavManager::toggleControlOutput(bool const&)68
mrs_uav_managers::uav_manager::UavManager::midairActivationImpl[abi:cxx11]()65
mrs_uav_managers::uav_manager::UavManager::emergencyReferenceSrv(mrs_msgs::ReferenceStamped_<std::allocator<void> > const&)93
mrs_uav_managers::uav_manager::UavManager::timerMidairActivation(ros::TimerEvent const&)66
mrs_uav_managers::uav_manager::UavManager::callbackMinHeightCheck(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)2
mrs_uav_managers::uav_manager::UavManager::setControlCallbacksSrv(bool const&)94
mrs_uav_managers::uav_manager::UavManager::timerHwApiCapabilities(ros::TimerEvent const&)93
mrs_uav_managers::uav_manager::UavManager::setOdometryCallbacksSrv(bool const&)110
mrs_uav_managers::uav_manager::UavManager::callbackMidairActivation(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)65
mrs_uav_managers::uav_manager::UavManager::onInit()91
mrs_uav_managers::uav_manager::UavManager::landSrv()5
mrs_uav_managers::uav_manager::UavManager::elandSrv()1
mrs_uav_managers::uav_manager::UavManager::landImpl[abi:cxx11]()5
mrs_uav_managers::uav_manager::UavManager::disarmSrv()7
mrs_uav_managers::uav_manager::UavManager::ehoverSrv()2
mrs_uav_managers::uav_manager::UavManager::ungripSrv()23
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/uav_manager.cpp.gcov.frameset.html b/mrs_uav_managers/src/uav_manager.cpp.gcov.frameset.html new file mode 100644 index 0000000000..f6c3894100 --- /dev/null +++ b/mrs_uav_managers/src/uav_manager.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/uav_manager.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_managers/src/uav_manager.cpp.gcov.html b/mrs_uav_managers/src/uav_manager.cpp.gcov.html new file mode 100644 index 0000000000..7bef3f95c7 --- /dev/null +++ b/mrs_uav_managers/src/uav_manager.cpp.gcov.html @@ -0,0 +1,2765 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/uav_manager.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_managers/src - uav_manager.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:789116967.5 %
Date:2024-04-17 23:52:03Functions:3838100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <nodelet/nodelet.h>
+       5             : 
+       6             : #include <std_srvs/SetBool.h>
+       7             : #include <std_srvs/Trigger.h>
+       8             : #include <std_msgs/String.h>
+       9             : #include <std_msgs/Float64.h>
+      10             : 
+      11             : #include <geometry_msgs/Vector3Stamped.h>
+      12             : 
+      13             : #include <nav_msgs/Odometry.h>
+      14             : #include <mrs_msgs/Vec1.h>
+      15             : #include <mrs_msgs/Vec4.h>
+      16             : #include <mrs_msgs/String.h>
+      17             : #include <mrs_msgs/TrackerCommand.h>
+      18             : #include <mrs_msgs/Float64Stamped.h>
+      19             : #include <mrs_msgs/Float64.h>
+      20             : #include <mrs_msgs/BoolStamped.h>
+      21             : #include <mrs_msgs/ControlManagerDiagnostics.h>
+      22             : #include <mrs_msgs/ReferenceStampedSrv.h>
+      23             : #include <mrs_msgs/ConstraintManagerDiagnostics.h>
+      24             : #include <mrs_msgs/GainManagerDiagnostics.h>
+      25             : #include <mrs_msgs/UavManagerDiagnostics.h>
+      26             : #include <mrs_msgs/EstimationDiagnostics.h>
+      27             : #include <mrs_msgs/HwApiStatus.h>
+      28             : #include <mrs_msgs/ControllerDiagnostics.h>
+      29             : #include <mrs_msgs/HwApiCapabilities.h>
+      30             : 
+      31             : #include <sensor_msgs/NavSatFix.h>
+      32             : 
+      33             : #include <mrs_lib/profiler.h>
+      34             : #include <mrs_lib/scope_timer.h>
+      35             : #include <mrs_lib/param_loader.h>
+      36             : #include <mrs_lib/mutex.h>
+      37             : #include <mrs_lib/transformer.h>
+      38             : #include <mrs_lib/attitude_converter.h>
+      39             : #include <mrs_lib/subscribe_handler.h>
+      40             : #include <mrs_lib/publisher_handler.h>
+      41             : #include <mrs_lib/service_client_handler.h>
+      42             : #include <mrs_lib/msg_extractor.h>
+      43             : #include <mrs_lib/geometry/cyclic.h>
+      44             : #include <mrs_lib/geometry/misc.h>
+      45             : #include <mrs_lib/quadratic_throttle_model.h>
+      46             : 
+      47             : //}
+      48             : 
+      49             : /* using //{ */
+      50             : 
+      51             : using vec2_t = mrs_lib::geometry::vec_t<2>;
+      52             : using vec3_t = mrs_lib::geometry::vec_t<3>;
+      53             : 
+      54             : using radians  = mrs_lib::geometry::radians;
+      55             : using sradians = mrs_lib::geometry::sradians;
+      56             : 
+      57             : //}
+      58             : 
+      59             : namespace mrs_uav_managers
+      60             : {
+      61             : 
+      62             : namespace uav_manager
+      63             : {
+      64             : 
+      65             : /* //{ class UavManager */
+      66             : 
+      67             : // state machine
+      68             : typedef enum
+      69             : {
+      70             : 
+      71             :   IDLE_STATE,
+      72             :   GOTO_STATE,
+      73             :   LANDING_STATE,
+      74             : 
+      75             : } LandingStates_t;
+      76             : 
+      77             : const char* state_names[3] = {
+      78             : 
+      79             :     "IDLING", "GOTO", "LANDING"};
+      80             : 
+      81             : class UavManager : public nodelet::Nodelet {
+      82             : 
+      83             : private:
+      84             :   ros::NodeHandle nh_;
+      85             :   bool            is_initialized_ = false;
+      86             :   std::string     _uav_name_;
+      87             : 
+      88             : public:
+      89             :   std::shared_ptr<mrs_lib::Transformer> transformer_;
+      90             : 
+      91             : public:
+      92             :   bool                                       scope_timer_enabled_ = false;
+      93             :   std::shared_ptr<mrs_lib::ScopeTimerLogger> scope_timer_logger_;
+      94             : 
+      95             : public:
+      96             :   virtual void onInit();
+      97             : 
+      98             :   // | ------------------------- HW API ------------------------- |
+      99             : 
+     100             :   mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities> sh_hw_api_capabilities_;
+     101             : 
+     102             :   // this timer will check till we already got the hardware api diagnostics
+     103             :   // then it will trigger the initialization of the controllers and finish
+     104             :   // the initialization of the ControlManager
+     105             :   ros::Timer timer_hw_api_capabilities_;
+     106             :   void       timerHwApiCapabilities(const ros::TimerEvent& event);
+     107             : 
+     108             :   void preinitialize(void);
+     109             :   void initialize(void);
+     110             : 
+     111             :   mrs_msgs::HwApiCapabilities hw_api_capabilities_;
+     112             : 
+     113             :   // | ----------------------- subscribers ---------------------- |
+     114             : 
+     115             :   mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics>        sh_controller_diagnostics_;
+     116             :   mrs_lib::SubscribeHandler<nav_msgs::Odometry>                     sh_odometry_;
+     117             :   mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics>        sh_estimation_diagnostics_;
+     118             :   mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics>    sh_control_manager_diag_;
+     119             :   mrs_lib::SubscribeHandler<std_msgs::Float64>                      sh_mass_estimate_;
+     120             :   mrs_lib::SubscribeHandler<std_msgs::Float64>                      sh_throttle_;
+     121             :   mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped>               sh_height_;
+     122             :   mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus>                  sh_hw_api_status_;
+     123             :   mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics>       sh_gains_diag_;
+     124             :   mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics> sh_constraints_diag_;
+     125             :   mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix>                 sh_hw_api_gnss_;
+     126             :   mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped>               sh_max_height_;
+     127             :   mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand>               sh_tracker_cmd_;
+     128             : 
+     129             :   void callbackHwApiGNSS(const sensor_msgs::NavSatFix::ConstPtr msg);
+     130             :   void callbackOdometry(const nav_msgs::Odometry::ConstPtr msg);
+     131             : 
+     132             :   // service servers
+     133             :   ros::ServiceServer service_server_takeoff_;
+     134             :   ros::ServiceServer service_server_land_;
+     135             :   ros::ServiceServer service_server_land_home_;
+     136             :   ros::ServiceServer service_server_land_there_;
+     137             :   ros::ServiceServer service_server_midair_activation_;
+     138             :   ros::ServiceServer service_server_min_height_check_;
+     139             : 
+     140             :   // service callbacks
+     141             :   bool callbackTakeoff(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     142             :   bool callbackLand(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     143             :   bool callbackLandHome(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     144             :   bool callbackLandThere(mrs_msgs::ReferenceStampedSrv::Request& req, mrs_msgs::ReferenceStampedSrv::Response& res);
+     145             : 
+     146             :   // service clients
+     147             :   mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>                sch_takeoff_;
+     148             :   mrs_lib::ServiceClientHandler<mrs_msgs::String>              sch_switch_tracker_;
+     149             :   mrs_lib::ServiceClientHandler<mrs_msgs::String>              sch_switch_controller_;
+     150             :   mrs_lib::ServiceClientHandler<std_srvs::Trigger>             sch_land_;
+     151             :   mrs_lib::ServiceClientHandler<std_srvs::Trigger>             sch_eland_;
+     152             :   mrs_lib::ServiceClientHandler<std_srvs::Trigger>             sch_ehover_;
+     153             :   mrs_lib::ServiceClientHandler<std_srvs::SetBool>             sch_control_callbacks_;
+     154             :   mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv> sch_emergency_reference_;
+     155             :   mrs_lib::ServiceClientHandler<std_srvs::SetBool>             sch_arm_;
+     156             :   mrs_lib::ServiceClientHandler<std_srvs::SetBool>             sch_odometry_callbacks_;
+     157             :   mrs_lib::ServiceClientHandler<std_srvs::Trigger>             sch_ungrip_;
+     158             :   mrs_lib::ServiceClientHandler<std_srvs::SetBool>             sch_toggle_control_output_;
+     159             :   mrs_lib::ServiceClientHandler<std_srvs::Trigger>             sch_offboard_;
+     160             : 
+     161             :   // service client wrappers
+     162             :   bool takeoffSrv(void);
+     163             :   bool switchTrackerSrv(const std::string& tracker);
+     164             :   bool switchControllerSrv(const std::string& controller);
+     165             :   bool landSrv(void);
+     166             :   bool elandSrv(void);
+     167             :   bool ehoverSrv(void);
+     168             :   void disarmSrv(void);
+     169             :   bool emergencyReferenceSrv(const mrs_msgs::ReferenceStamped& goal);
+     170             :   void setOdometryCallbacksSrv(const bool& input);
+     171             :   void setControlCallbacksSrv(const bool& input);
+     172             :   void ungripSrv(void);
+     173             :   bool toggleControlOutput(const bool& input);
+     174             :   bool offboardSrv(const bool in);
+     175             : 
+     176             :   ros::Timer timer_takeoff_;
+     177             :   ros::Timer timer_max_height_;
+     178             :   ros::Timer timer_min_height_;
+     179             :   ros::Timer timer_landing_;
+     180             :   ros::Timer timer_maxthrottle_;
+     181             :   ros::Timer timer_flighttime_;
+     182             :   ros::Timer timer_diagnostics_;
+     183             :   ros::Timer timer_midair_activation_;
+     184             : 
+     185             :   // timer callbacks
+     186             :   void timerLanding(const ros::TimerEvent& event);
+     187             :   void timerTakeoff(const ros::TimerEvent& event);
+     188             :   void timerMaxHeight(const ros::TimerEvent& event);
+     189             :   void timerMinHeight(const ros::TimerEvent& event);
+     190             :   void timerFlightTime(const ros::TimerEvent& event);
+     191             :   void timerMaxthrottle(const ros::TimerEvent& event);
+     192             :   void timerDiagnostics(const ros::TimerEvent& event);
+     193             : 
+     194             :   // publishers
+     195             :   mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics> ph_diag_;
+     196             : 
+     197             :   // max height checking
+     198             :   bool              _max_height_enabled_ = false;
+     199             :   double            _max_height_checking_rate_;
+     200             :   double            _max_height_offset_;
+     201             :   std::atomic<bool> fixing_max_height_ = false;
+     202             : 
+     203             :   // min height checking
+     204             :   std::atomic<bool> min_height_check_ = false;
+     205             :   double            _min_height_checking_rate_;
+     206             :   double            _min_height_offset_;
+     207             :   double            _min_height_;
+     208             :   std::atomic<bool> fixing_min_height_ = false;
+     209             : 
+     210             :   // mass estimation during landing
+     211             :   double    throttle_mass_estimate_;
+     212             :   bool      throttle_under_threshold_ = false;
+     213             :   ros::Time throttle_mass_estimate_first_time_;
+     214             : 
+     215             :   // velocity during landing
+     216             :   bool      velocity_under_threshold_ = false;
+     217             :   ros::Time velocity_under_threshold_first_time_;
+     218             : 
+     219             :   bool _gain_manager_required_       = false;
+     220             :   bool _constraint_manager_required_ = false;
+     221             : 
+     222             :   std::tuple<bool, std::string> landImpl(void);
+     223             :   std::tuple<bool, std::string> landWithDescendImpl(void);
+     224             :   std::tuple<bool, std::string> midairActivationImpl(void);
+     225             : 
+     226             :   // saved takeoff coordinates and allows to land there again
+     227             :   mrs_msgs::ReferenceStamped land_there_reference_;
+     228             :   std::mutex                 mutex_land_there_reference_;
+     229             : 
+     230             :   // to which height to takeoff
+     231             :   double _takeoff_height_;
+     232             : 
+     233             :   std::atomic<bool> takeoff_successful_ = false;
+     234             : 
+     235             :   // names of important trackers
+     236             :   std::string _null_tracker_name_;
+     237             : 
+     238             :   // takeoff timer
+     239             :   double     _takeoff_timer_rate_;
+     240             :   bool       takingoff_            = false;
+     241             :   int        number_of_takeoffs_   = 0;
+     242             :   double     last_mass_difference_ = 0;
+     243             :   std::mutex mutex_last_mass_difference_;
+     244             :   bool       waiting_for_takeoff_ = false;
+     245             : 
+     246             :   // after takeoff
+     247             :   std::string _after_takeoff_tracker_name_;
+     248             :   std::string _after_takeoff_controller_name_;
+     249             :   std::string _takeoff_tracker_name_;
+     250             :   std::string _takeoff_controller_name_;
+     251             : 
+     252             :   // Landing timer
+     253             :   std::string _landing_tracker_name_;
+     254             :   std::string _landing_controller_name_;
+     255             :   double      _landing_cutoff_mass_factor_;
+     256             :   double      _landing_cutoff_mass_timeout_;
+     257             :   double      _landing_timer_rate_;
+     258             :   double      _landing_descend_height_;
+     259             :   bool        landing_ = false;
+     260             :   double      _uav_mass_;
+     261             :   double      _g_;
+     262             :   double      landing_uav_mass_;
+     263             :   bool        _landing_disarm_ = false;
+     264             :   double      _landing_tracking_tolerance_translation_;
+     265             :   double      _landing_tracking_tolerance_heading_;
+     266             : 
+     267             :   // diagnostics timer
+     268             :   double _diagnostics_timer_rate_;
+     269             : 
+     270             :   mrs_lib::quadratic_throttle_model::MotorParams_t _throttle_model_;
+     271             : 
+     272             :   // landing state machine states
+     273             :   LandingStates_t current_state_landing_  = IDLE_STATE;
+     274             :   LandingStates_t previous_state_landing_ = IDLE_STATE;
+     275             : 
+     276             :   // timer for checking max flight time
+     277             :   double     _flighttime_timer_rate_;
+     278             :   double     _flighttime_max_time_;
+     279             :   bool       _flighttime_timer_enabled_ = false;
+     280             :   double     flighttime_                = 0;
+     281             :   std::mutex mutex_flighttime_;
+     282             : 
+     283             :   // timer for checking maximum throttle
+     284             :   bool      _maxthrottle_timer_enabled_ = false;
+     285             :   double    _maxthrottle_timer_rate_;
+     286             :   double    _maxthrottle_max_throttle_;
+     287             :   double    _maxthrottle_eland_timeout_;
+     288             :   double    _maxthrottle_ungrip_timeout_;
+     289             :   bool      maxthrottle_above_threshold_ = false;
+     290             :   ros::Time maxthrottle_first_time_;
+     291             : 
+     292             :   // profiler
+     293             :   mrs_lib::Profiler profiler_;
+     294             :   bool              _profiler_enabled_ = false;
+     295             : 
+     296             :   // midair activation
+     297             :   void      timerMidairActivation(const ros::TimerEvent& event);
+     298             :   bool      callbackMidairActivation(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     299             :   ros::Time midair_activation_started_;
+     300             : 
+     301             :   bool callbackMinHeightCheck(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res);
+     302             : 
+     303             :   double      _midair_activation_timer_rate_;
+     304             :   std::string _midair_activation_during_controller_;
+     305             :   std::string _midair_activation_during_tracker_;
+     306             :   std::string _midair_activation_after_controller_;
+     307             :   std::string _midair_activation_after_tracker_;
+     308             : 
+     309             :   void changeLandingState(LandingStates_t new_state);
+     310             : };
+     311             : 
+     312             : //}
+     313             : 
+     314             : /* onInit() //{ */
+     315             : 
+     316          91 : void UavManager::onInit() {
+     317          91 :   preinitialize();
+     318          91 : }
+     319             : 
+     320             : //}
+     321             : 
+     322             : /* preinitialize() //{ */
+     323             : 
+     324          91 : void UavManager::preinitialize(void) {
+     325             : 
+     326          91 :   nh_ = nodelet::Nodelet::getMTPrivateNodeHandle();
+     327             : 
+     328          91 :   ros::Time::waitForValid();
+     329             : 
+     330          91 :   mrs_lib::SubscribeHandlerOptions shopts;
+     331          91 :   shopts.nh                 = nh_;
+     332          91 :   shopts.node_name          = "UavManager";
+     333          91 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     334          91 :   shopts.threadsafe         = true;
+     335          91 :   shopts.autostart          = true;
+     336          91 :   shopts.queue_size         = 10;
+     337          91 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     338             : 
+     339          91 :   sh_hw_api_capabilities_ = mrs_lib::SubscribeHandler<mrs_msgs::HwApiCapabilities>(shopts, "hw_api_capabilities_in");
+     340             : 
+     341          91 :   timer_hw_api_capabilities_ = nh_.createTimer(ros::Rate(1.0), &UavManager::timerHwApiCapabilities, this);
+     342          91 : }
+     343             : 
+     344             : //}
+     345             : 
+     346             : /* initialize() //{ */
+     347             : 
+     348          91 : void UavManager::initialize() {
+     349             : 
+     350          91 :   ROS_INFO("[UavManager]: initializing");
+     351             : 
+     352         182 :   mrs_lib::ParamLoader param_loader(nh_, "UavManager");
+     353             : 
+     354         182 :   std::string custom_config_path;
+     355         182 :   std::string platform_config_path;
+     356         182 :   std::string world_config_path;
+     357             : 
+     358          91 :   param_loader.loadParam("custom_config", custom_config_path);
+     359          91 :   param_loader.loadParam("platform_config", platform_config_path);
+     360          91 :   param_loader.loadParam("world_config", world_config_path);
+     361             : 
+     362          91 :   if (custom_config_path != "") {
+     363          91 :     param_loader.addYamlFile(custom_config_path);
+     364             :   }
+     365             : 
+     366          91 :   if (platform_config_path != "") {
+     367          91 :     param_loader.addYamlFile(platform_config_path);
+     368             :   }
+     369             : 
+     370          91 :   if (world_config_path != "") {
+     371          91 :     param_loader.addYamlFile(world_config_path);
+     372             :   }
+     373             : 
+     374          91 :   param_loader.addYamlFileFromParam("private_config");
+     375          91 :   param_loader.addYamlFileFromParam("public_config");
+     376             : 
+     377         182 :   const std::string yaml_prefix = "mrs_uav_managers/uav_manager/";
+     378             : 
+     379             :   // params passed from the launch file are not prefixed
+     380          91 :   param_loader.loadParam("uav_name", _uav_name_);
+     381          91 :   param_loader.loadParam("enable_profiler", _profiler_enabled_);
+     382          91 :   param_loader.loadParam("uav_mass", _uav_mass_);
+     383          91 :   param_loader.loadParam("g", _g_);
+     384             : 
+     385             :   // motor params are also not prefixed, since they are common to more nodes
+     386          91 :   param_loader.loadParam("motor_params/n_motors", _throttle_model_.n_motors);
+     387          91 :   param_loader.loadParam("motor_params/a", _throttle_model_.A);
+     388          91 :   param_loader.loadParam("motor_params/b", _throttle_model_.B);
+     389             : 
+     390          91 :   param_loader.loadParam(yaml_prefix + "null_tracker", _null_tracker_name_);
+     391             : 
+     392          91 :   param_loader.loadParam(yaml_prefix + "takeoff/rate", _takeoff_timer_rate_);
+     393          91 :   param_loader.loadParam(yaml_prefix + "takeoff/after_takeoff/tracker", _after_takeoff_tracker_name_);
+     394          91 :   param_loader.loadParam(yaml_prefix + "takeoff/after_takeoff/controller", _after_takeoff_controller_name_);
+     395          91 :   param_loader.loadParam(yaml_prefix + "takeoff/during_takeoff/controller", _takeoff_controller_name_);
+     396          91 :   param_loader.loadParam(yaml_prefix + "takeoff/during_takeoff/tracker", _takeoff_tracker_name_);
+     397          91 :   param_loader.loadParam(yaml_prefix + "takeoff/takeoff_height", _takeoff_height_);
+     398             : 
+     399          91 :   if (_takeoff_height_ < 0.5 || _takeoff_height_ > 10.0) {
+     400           0 :     ROS_ERROR("[UavManager]: the takeoff height (%.2f m) has to be between 0.5 and 10 meters", _takeoff_height_);
+     401           0 :     ros::shutdown();
+     402             :   }
+     403             : 
+     404          91 :   param_loader.loadParam(yaml_prefix + "landing/rate", _landing_timer_rate_);
+     405          91 :   param_loader.loadParam(yaml_prefix + "landing/landing_tracker", _landing_tracker_name_);
+     406          91 :   param_loader.loadParam(yaml_prefix + "landing/landing_controller", _landing_controller_name_);
+     407          91 :   param_loader.loadParam(yaml_prefix + "landing/landing_cutoff_mass_factor", _landing_cutoff_mass_factor_);
+     408          91 :   param_loader.loadParam(yaml_prefix + "landing/landing_cutoff_timeout", _landing_cutoff_mass_timeout_);
+     409          91 :   param_loader.loadParam(yaml_prefix + "landing/disarm", _landing_disarm_);
+     410          91 :   param_loader.loadParam(yaml_prefix + "landing/descend_height", _landing_descend_height_);
+     411          91 :   param_loader.loadParam(yaml_prefix + "landing/tracking_tolerance/translation", _landing_tracking_tolerance_translation_);
+     412          91 :   param_loader.loadParam(yaml_prefix + "landing/tracking_tolerance/heading", _landing_tracking_tolerance_heading_);
+     413             : 
+     414          91 :   param_loader.loadParam(yaml_prefix + "midair_activation/rate", _midair_activation_timer_rate_);
+     415          91 :   param_loader.loadParam(yaml_prefix + "midair_activation/during_activation/controller", _midair_activation_during_controller_);
+     416          91 :   param_loader.loadParam(yaml_prefix + "midair_activation/during_activation/tracker", _midair_activation_during_tracker_);
+     417          91 :   param_loader.loadParam(yaml_prefix + "midair_activation/after_activation/controller", _midair_activation_after_controller_);
+     418          91 :   param_loader.loadParam(yaml_prefix + "midair_activation/after_activation/tracker", _midair_activation_after_tracker_);
+     419             : 
+     420          91 :   param_loader.loadParam(yaml_prefix + "max_height_checking/enabled", _max_height_enabled_);
+     421          91 :   param_loader.loadParam(yaml_prefix + "max_height_checking/rate", _max_height_checking_rate_);
+     422          91 :   param_loader.loadParam(yaml_prefix + "max_height_checking/safety_height_offset", _max_height_offset_);
+     423             : 
+     424             :   {
+     425             :     bool tmp;
+     426             : 
+     427          91 :     param_loader.loadParam(yaml_prefix + "min_height_checking/enabled", tmp);
+     428             : 
+     429          91 :     min_height_check_ = tmp;
+     430             :   }
+     431             : 
+     432          91 :   param_loader.loadParam(yaml_prefix + "min_height_checking/rate", _min_height_checking_rate_);
+     433          91 :   param_loader.loadParam(yaml_prefix + "min_height_checking/safety_height_offset", _min_height_offset_);
+     434          91 :   param_loader.loadParam(yaml_prefix + "min_height_checking/min_height", _min_height_);
+     435             : 
+     436          91 :   param_loader.loadParam(yaml_prefix + "require_gain_manager", _gain_manager_required_);
+     437          91 :   param_loader.loadParam(yaml_prefix + "require_constraint_manager", _constraint_manager_required_);
+     438             : 
+     439          91 :   param_loader.loadParam(yaml_prefix + "flight_timer/enabled", _flighttime_timer_enabled_);
+     440          91 :   param_loader.loadParam(yaml_prefix + "flight_timer/rate", _flighttime_timer_rate_);
+     441          91 :   param_loader.loadParam(yaml_prefix + "flight_timer/max_time", _flighttime_max_time_);
+     442             : 
+     443          91 :   param_loader.loadParam(yaml_prefix + "max_throttle/enabled", _maxthrottle_timer_enabled_);
+     444          91 :   param_loader.loadParam(yaml_prefix + "max_throttle/rate", _maxthrottle_timer_rate_);
+     445          91 :   param_loader.loadParam(yaml_prefix + "max_throttle/max_throttle", _maxthrottle_max_throttle_);
+     446          91 :   param_loader.loadParam(yaml_prefix + "max_throttle/eland_timeout", _maxthrottle_eland_timeout_);
+     447          91 :   param_loader.loadParam(yaml_prefix + "max_throttle/ungrip_timeout", _maxthrottle_ungrip_timeout_);
+     448             : 
+     449          91 :   param_loader.loadParam(yaml_prefix + "diagnostics/rate", _diagnostics_timer_rate_);
+     450             : 
+     451             :   // | ------------------- scope timer logger ------------------- |
+     452             : 
+     453          91 :   param_loader.loadParam(yaml_prefix + "scope_timer/enabled", scope_timer_enabled_);
+     454         273 :   const std::string scope_timer_log_filename = param_loader.loadParam2("scope_timer/log_filename", std::string(""));
+     455          91 :   scope_timer_logger_                        = std::make_shared<mrs_lib::ScopeTimerLogger>(scope_timer_log_filename, scope_timer_enabled_);
+     456             : 
+     457          91 :   if (!param_loader.loadedSuccessfully()) {
+     458           0 :     ROS_ERROR("[UavManager]: Could not load all parameters!");
+     459           0 :     ros::shutdown();
+     460             :   }
+     461             : 
+     462             :   // | --------------------- tf transformer --------------------- |
+     463             : 
+     464          91 :   transformer_ = std::make_shared<mrs_lib::Transformer>(nh_, "ControlManager");
+     465          91 :   transformer_->setDefaultPrefix(_uav_name_);
+     466          91 :   transformer_->retryLookupNewest(true);
+     467             : 
+     468             :   // | ----------------------- subscribers ---------------------- |
+     469             : 
+     470         182 :   mrs_lib::SubscribeHandlerOptions shopts;
+     471          91 :   shopts.nh                 = nh_;
+     472          91 :   shopts.node_name          = "UavManager";
+     473          91 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     474          91 :   shopts.threadsafe         = true;
+     475          91 :   shopts.autostart          = true;
+     476          91 :   shopts.queue_size         = 10;
+     477          91 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     478             : 
+     479          91 :   sh_controller_diagnostics_ = mrs_lib::SubscribeHandler<mrs_msgs::ControllerDiagnostics>(shopts, "controller_diagnostics_in");
+     480          91 :   sh_odometry_               = mrs_lib::SubscribeHandler<nav_msgs::Odometry>(shopts, "odometry_in", &UavManager::callbackOdometry, this);
+     481          91 :   sh_estimation_diagnostics_ = mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics>(shopts, "odometry_diagnostics_in");
+     482          91 :   sh_control_manager_diag_   = mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics>(shopts, "control_manager_diagnostics_in");
+     483          91 :   sh_mass_estimate_          = mrs_lib::SubscribeHandler<std_msgs::Float64>(shopts, "mass_estimate_in");
+     484          91 :   sh_throttle_               = mrs_lib::SubscribeHandler<std_msgs::Float64>(shopts, "throttle_in");
+     485          91 :   sh_height_                 = mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped>(shopts, "height_in");
+     486          91 :   sh_hw_api_status_          = mrs_lib::SubscribeHandler<mrs_msgs::HwApiStatus>(shopts, "hw_api_status_in");
+     487          91 :   sh_gains_diag_             = mrs_lib::SubscribeHandler<mrs_msgs::GainManagerDiagnostics>(shopts, "gain_manager_diagnostics_in");
+     488          91 :   sh_constraints_diag_       = mrs_lib::SubscribeHandler<mrs_msgs::ConstraintManagerDiagnostics>(shopts, "constraint_manager_diagnostics_in");
+     489          91 :   sh_hw_api_gnss_            = mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix>(shopts, "hw_api_gnss_in", &UavManager::callbackHwApiGNSS, this);
+     490          91 :   sh_max_height_             = mrs_lib::SubscribeHandler<mrs_msgs::Float64Stamped>(shopts, "max_height_in");
+     491          91 :   sh_tracker_cmd_            = mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand>(shopts, "tracker_cmd_in");
+     492             : 
+     493             :   // | ----------------------- publishers ----------------------- |
+     494             : 
+     495          91 :   ph_diag_ = mrs_lib::PublisherHandler<mrs_msgs::UavManagerDiagnostics>(nh_, "diagnostics_out", 1);
+     496             : 
+     497             :   // | --------------------- service servers -------------------- |
+     498             : 
+     499          91 :   service_server_takeoff_           = nh_.advertiseService("takeoff_in", &UavManager::callbackTakeoff, this);
+     500          91 :   service_server_land_              = nh_.advertiseService("land_in", &UavManager::callbackLand, this);
+     501          91 :   service_server_land_home_         = nh_.advertiseService("land_home_in", &UavManager::callbackLandHome, this);
+     502          91 :   service_server_land_there_        = nh_.advertiseService("land_there_in", &UavManager::callbackLandThere, this);
+     503          91 :   service_server_midair_activation_ = nh_.advertiseService("midair_activation_in", &UavManager::callbackMidairActivation, this);
+     504          91 :   service_server_min_height_check_  = nh_.advertiseService("enable_min_height_check_in", &UavManager::callbackMinHeightCheck, this);
+     505             : 
+     506             :   // | --------------------- service clients -------------------- |
+     507             : 
+     508          91 :   sch_takeoff_               = mrs_lib::ServiceClientHandler<mrs_msgs::Vec1>(nh_, "takeoff_out");
+     509          91 :   sch_land_                  = mrs_lib::ServiceClientHandler<std_srvs::Trigger>(nh_, "land_out");
+     510          91 :   sch_eland_                 = mrs_lib::ServiceClientHandler<std_srvs::Trigger>(nh_, "eland_out");
+     511          91 :   sch_ehover_                = mrs_lib::ServiceClientHandler<std_srvs::Trigger>(nh_, "ehover_out");
+     512          91 :   sch_switch_tracker_        = mrs_lib::ServiceClientHandler<mrs_msgs::String>(nh_, "switch_tracker_out");
+     513          91 :   sch_switch_controller_     = mrs_lib::ServiceClientHandler<mrs_msgs::String>(nh_, "switch_controller_out");
+     514          91 :   sch_emergency_reference_   = mrs_lib::ServiceClientHandler<mrs_msgs::ReferenceStampedSrv>(nh_, "emergency_reference_out");
+     515          91 :   sch_control_callbacks_     = mrs_lib::ServiceClientHandler<std_srvs::SetBool>(nh_, "enable_callbacks_out");
+     516          91 :   sch_arm_                   = mrs_lib::ServiceClientHandler<std_srvs::SetBool>(nh_, "arm_out");
+     517          91 :   sch_odometry_callbacks_    = mrs_lib::ServiceClientHandler<std_srvs::SetBool>(nh_, "set_odometry_callbacks_out");
+     518          91 :   sch_ungrip_                = mrs_lib::ServiceClientHandler<std_srvs::Trigger>(nh_, "ungrip_out");
+     519          91 :   sch_toggle_control_output_ = mrs_lib::ServiceClientHandler<std_srvs::SetBool>(nh_, "toggle_control_output_out");
+     520          91 :   sch_offboard_              = mrs_lib::ServiceClientHandler<std_srvs::Trigger>(nh_, "offboard_out");
+     521             : 
+     522             :   // | ---------------------- state machine --------------------- |
+     523             : 
+     524          91 :   current_state_landing_ = IDLE_STATE;
+     525             : 
+     526             :   // | ------------------------ profiler ------------------------ |
+     527             : 
+     528          91 :   profiler_ = mrs_lib::Profiler(nh_, "UavManager", _profiler_enabled_);
+     529             : 
+     530             :   // | ------------------------- timers ------------------------- |
+     531             : 
+     532          91 :   timer_landing_           = nh_.createTimer(ros::Rate(_landing_timer_rate_), &UavManager::timerLanding, this, false, false);
+     533          91 :   timer_takeoff_           = nh_.createTimer(ros::Rate(_takeoff_timer_rate_), &UavManager::timerTakeoff, this, false, false);
+     534          91 :   timer_flighttime_        = nh_.createTimer(ros::Rate(_flighttime_timer_rate_), &UavManager::timerFlightTime, this, false, false);
+     535          91 :   timer_diagnostics_       = nh_.createTimer(ros::Rate(_diagnostics_timer_rate_), &UavManager::timerDiagnostics, this);
+     536          91 :   timer_midair_activation_ = nh_.createTimer(ros::Rate(_midair_activation_timer_rate_), &UavManager::timerMidairActivation, this, false, false);
+     537         182 :   timer_max_height_        = nh_.createTimer(ros::Rate(_max_height_checking_rate_), &UavManager::timerMaxHeight, this, false,
+     538         182 :                                       _max_height_enabled_ && hw_api_capabilities_.produces_distance_sensor);
+     539         182 :   timer_min_height_        = nh_.createTimer(ros::Rate(_min_height_checking_rate_), &UavManager::timerMinHeight, this, false,
+     540         182 :                                       min_height_check_ && hw_api_capabilities_.produces_distance_sensor);
+     541             : 
+     542          88 :   bool should_check_throttle = hw_api_capabilities_.accepts_actuator_cmd || hw_api_capabilities_.accepts_control_group_cmd ||
+     543         179 :                                hw_api_capabilities_.accepts_attitude_rate_cmd || hw_api_capabilities_.accepts_attitude_cmd;
+     544             : 
+     545             :   timer_maxthrottle_ =
+     546          91 :       nh_.createTimer(ros::Rate(_maxthrottle_timer_rate_), &UavManager::timerMaxthrottle, this, false, _maxthrottle_timer_enabled_ && should_check_throttle);
+     547             : 
+     548             :   // | ----------------------- finish init ---------------------- |
+     549             : 
+     550          91 :   is_initialized_ = true;
+     551             : 
+     552          91 :   ROS_INFO("[UavManager]: initialized");
+     553             : 
+     554          91 :   ROS_DEBUG("[UavManager]: debug output is enabled");
+     555          91 : }
+     556             : 
+     557             : //}
+     558             : 
+     559             : //}
+     560             : 
+     561             : // | ---------------------- state machine --------------------- |
+     562             : 
+     563             : /* //{ changeLandingState() */
+     564             : 
+     565          17 : void UavManager::changeLandingState(LandingStates_t new_state) {
+     566             : 
+     567          17 :   previous_state_landing_ = current_state_landing_;
+     568          17 :   current_state_landing_  = new_state;
+     569             : 
+     570          17 :   switch (current_state_landing_) {
+     571             : 
+     572           5 :     case LANDING_STATE: {
+     573             : 
+     574           5 :       if (sh_mass_estimate_.hasMsg() && (ros::Time::now() - sh_mass_estimate_.lastMsgTime()).toSec() < 1.0) {
+     575             : 
+     576             :         // copy member variables
+     577           5 :         auto mass_esimtate = sh_mass_estimate_.getMsg();
+     578             : 
+     579           5 :         landing_uav_mass_ = mass_esimtate->data;
+     580             :       }
+     581             : 
+     582           5 :       break;
+     583             :     };
+     584             : 
+     585          12 :     default: {
+     586          12 :       break;
+     587             :     }
+     588             :   }
+     589             : 
+     590             :   // just for ROS_INFO
+     591          17 :   ROS_INFO("[UavManager]: Switching landing state %s -> %s", state_names[previous_state_landing_], state_names[current_state_landing_]);
+     592          17 : }
+     593             : 
+     594             : //}
+     595             : 
+     596             : // --------------------------------------------------------------
+     597             : // |                           timers                           |
+     598             : // --------------------------------------------------------------
+     599             : 
+     600             : /* timerHwApiCapabilities() //{ */
+     601             : 
+     602          93 : void UavManager::timerHwApiCapabilities(const ros::TimerEvent& event) {
+     603             : 
+     604         186 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerHwApiCapabilities", 1.0, 1.0, event);
+     605         186 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("UavManager::timerHwApiCapabilities", scope_timer_logger_, scope_timer_enabled_);
+     606             : 
+     607          93 :   if (!sh_hw_api_capabilities_.hasMsg()) {
+     608           2 :     ROS_INFO_THROTTLE(1.0, "[UavManager]: waiting for HW API capabilities");
+     609           2 :     return;
+     610             :   }
+     611             : 
+     612          91 :   hw_api_capabilities_ = *sh_hw_api_capabilities_.getMsg();
+     613             : 
+     614          91 :   ROS_INFO("[UavManager]: got HW API capabilities, initializing");
+     615             : 
+     616          91 :   initialize();
+     617             : 
+     618          91 :   timer_hw_api_capabilities_.stop();
+     619             : }
+     620             : 
+     621             : //}
+     622             : 
+     623             : /* //{ timerLanding() */
+     624             : 
+     625         786 : void UavManager::timerLanding(const ros::TimerEvent& event) {
+     626             : 
+     627         786 :   if (!is_initialized_)
+     628           0 :     return;
+     629             : 
+     630        1572 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerLanding", _landing_timer_rate_, 0.1, event);
+     631        1572 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("UavManager::timerLanding", scope_timer_logger_, scope_timer_enabled_);
+     632             : 
+     633         786 :   auto land_there_reference = mrs_lib::get_mutexed(mutex_land_there_reference_, land_there_reference_);
+     634             : 
+     635             :   // copy member variables
+     636         786 :   auto control_manager_diagnostics = sh_control_manager_diag_.getMsg();
+     637         786 :   auto odometry                    = sh_odometry_.getMsg();
+     638         786 :   auto tracker_cmd                 = sh_tracker_cmd_.getMsg();
+     639             : 
+     640         786 :   std::optional<double> desired_throttle;
+     641             : 
+     642         786 :   if (sh_throttle_.hasMsg() && (ros::Time::now() - sh_throttle_.lastMsgTime()).toSec() < 1.0) {
+     643         786 :     desired_throttle = sh_throttle_.getMsg()->data;
+     644             :   }
+     645             : 
+     646         786 :   auto res = transformer_->transformSingle(land_there_reference, odometry->header.frame_id);
+     647             : 
+     648         786 :   mrs_msgs::ReferenceStamped land_there_current_frame;
+     649             : 
+     650         786 :   if (res) {
+     651         786 :     land_there_current_frame = res.value();
+     652             :   } else {
+     653             : 
+     654           0 :     ROS_ERROR("[UavManager]: could not transform the reference into the current frame! land by yourself pls.");
+     655           0 :     return;
+     656             :   }
+     657             : 
+     658         786 :   if (current_state_landing_ == IDLE_STATE) {
+     659             : 
+     660           0 :     return;
+     661             : 
+     662         786 :   } else if (current_state_landing_ == GOTO_STATE) {
+     663             : 
+     664         360 :     auto [pos_x, pos_y, pos_z] = mrs_lib::getPosition(*tracker_cmd);
+     665         360 :     auto [ref_x, ref_y, ref_z] = mrs_lib::getPosition(land_there_current_frame);
+     666             : 
+     667         360 :     double pos_heading = tracker_cmd->heading;
+     668             : 
+     669         360 :     double ref_heading = 0;
+     670             :     try {
+     671         360 :       ref_heading = mrs_lib::getHeading(land_there_current_frame);
+     672             :     }
+     673           0 :     catch (mrs_lib::AttitudeConverter::GetHeadingException& e) {
+     674           0 :       ROS_ERROR_THROTTLE(1.0, "[UavManager]: exception caught: '%s'", e.what());
+     675           0 :       return;
+     676             :     }
+     677             : 
+     678         367 :     if (mrs_lib::geometry::dist(vec3_t(pos_x, pos_y, pos_z), vec3_t(ref_x, ref_y, ref_z)) < _landing_tracking_tolerance_translation_ &&
+     679           7 :         fabs(radians::diff(pos_heading, ref_heading)) < _landing_tracking_tolerance_heading_) {
+     680             : 
+     681          14 :       auto [success, message] = landWithDescendImpl();
+     682             : 
+     683           7 :       if (!success) {
+     684             : 
+     685           0 :         ROS_ERROR_THROTTLE(1.0, "[UavManager]: call for landing failed: '%s'", message.c_str());
+     686             :       }
+     687             : 
+     688         353 :     } else if (!control_manager_diagnostics->tracker_status.have_goal && control_manager_diagnostics->flying_normally) {
+     689             : 
+     690           0 :       ROS_WARN_THROTTLE(1.0, "[UavManager]: the tracker does not have a goal while flying home, setting the reference again");
+     691             : 
+     692           0 :       mrs_msgs::ReferenceStamped reference_out;
+     693             : 
+     694             :       {
+     695           0 :         std::scoped_lock lock(mutex_land_there_reference_);
+     696             : 
+     697             :         // get the current altitude in land_there_reference_.header.frame_id;
+     698           0 :         geometry_msgs::PoseStamped current_pose;
+     699           0 :         current_pose.header.stamp     = ros::Time::now();
+     700           0 :         current_pose.header.frame_id  = _uav_name_ + "/fcu";
+     701           0 :         current_pose.pose.position.x  = 0;
+     702           0 :         current_pose.pose.position.y  = 0;
+     703           0 :         current_pose.pose.position.z  = 0;
+     704           0 :         current_pose.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+     705             : 
+     706           0 :         auto response = transformer_->transformSingle(current_pose, land_there_reference_.header.frame_id);
+     707             : 
+     708           0 :         if (response) {
+     709             : 
+     710           0 :           land_there_reference_.reference.position.z = response.value().pose.position.z;
+     711           0 :           ROS_DEBUG("[UavManager]: current altitude is %.2f m", land_there_reference_.reference.position.z);
+     712             : 
+     713             :         } else {
+     714             : 
+     715           0 :           std::stringstream ss;
+     716           0 :           ss << "could not transform current height to " << land_there_reference_.header.frame_id;
+     717           0 :           ROS_ERROR_STREAM("[UavManager]: " << ss.str());
+     718             :         }
+     719             : 
+     720           0 :         reference_out.header.frame_id = land_there_reference_.header.frame_id;
+     721           0 :         reference_out.header.stamp    = ros::Time::now();
+     722           0 :         reference_out.reference       = land_there_reference_.reference;
+     723             :       }
+     724             : 
+     725           0 :       emergencyReferenceSrv(reference_out);
+     726             :     }
+     727             : 
+     728         426 :   } else if (current_state_landing_ == LANDING_STATE) {
+     729             : 
+     730             :     // we should not attempt to finish the landing if some other tracked was activated
+     731         426 :     if (_landing_tracker_name_ == sh_control_manager_diag_.getMsg()->active_tracker) {
+     732             : 
+     733         425 :       if (desired_throttle) {
+     734             : 
+     735             :         // recalculate the mass based on the throttle
+     736         425 :         throttle_mass_estimate_ = mrs_lib::quadratic_throttle_model::throttleToForce(_throttle_model_, desired_throttle.value()) / _g_;
+     737         425 :         ROS_INFO_THROTTLE(1.0, "[UavManager]: landing: initial mass: %.2f throttle_mass_estimate: %.2f", landing_uav_mass_, throttle_mass_estimate_);
+     738             : 
+     739             :         // condition for automatic motor turn off
+     740         425 :         if (((throttle_mass_estimate_ < _landing_cutoff_mass_factor_ * landing_uav_mass_) || desired_throttle < 0.01)) {
+     741             : 
+     742         110 :           if (!throttle_under_threshold_) {
+     743             : 
+     744           5 :             throttle_mass_estimate_first_time_ = ros::Time::now();
+     745           5 :             throttle_under_threshold_          = true;
+     746             :           }
+     747             : 
+     748         110 :           ROS_INFO_THROTTLE(0.5, "[UavManager]: throttle is under cutoff factor for %.2f s", (ros::Time::now() - throttle_mass_estimate_first_time_).toSec());
+     749             : 
+     750             :         } else {
+     751             : 
+     752         315 :           throttle_under_threshold_ = false;
+     753             :         }
+     754             : 
+     755         425 :         if (throttle_under_threshold_ && ((ros::Time::now() - throttle_mass_estimate_first_time_).toSec() > _landing_cutoff_mass_timeout_)) {
+     756             : 
+     757           5 :           switchTrackerSrv(_null_tracker_name_);
+     758             : 
+     759           5 :           setControlCallbacksSrv(true);
+     760             : 
+     761           5 :           if (_landing_disarm_) {
+     762             : 
+     763           5 :             ROS_INFO("[UavManager]: disarming after landing");
+     764             : 
+     765           5 :             disarmSrv();
+     766             :           }
+     767             : 
+     768           5 :           changeLandingState(IDLE_STATE);
+     769             : 
+     770           5 :           ROS_INFO("[UavManager]: landing finished");
+     771             : 
+     772           5 :           timer_landing_.stop();
+     773             :         }
+     774             : 
+     775             :       } else {
+     776             : 
+     777           0 :         auto odometry = sh_odometry_.getMsg();
+     778             : 
+     779           0 :         double z_vel = odometry->twist.twist.linear.z;
+     780             : 
+     781           0 :         ROS_INFO_THROTTLE(1.0, "[UavManager]: landing: z-velocity: %.2f", z_vel);
+     782             : 
+     783             :         // condition for automatic motor turn off
+     784           0 :         if (z_vel > -0.1) {
+     785             : 
+     786           0 :           if (!velocity_under_threshold_) {
+     787             : 
+     788           0 :             velocity_under_threshold_first_time_ = ros::Time::now();
+     789           0 :             velocity_under_threshold_            = true;
+     790             :           }
+     791             : 
+     792           0 :           ROS_INFO_THROTTLE(0.5, "[UavManager]: velocity over threshold for %.2f s", (ros::Time::now() - velocity_under_threshold_first_time_).toSec());
+     793             : 
+     794             :         } else {
+     795             : 
+     796           0 :           velocity_under_threshold_ = false;
+     797             :         }
+     798             : 
+     799           0 :         if (velocity_under_threshold_ && ((ros::Time::now() - velocity_under_threshold_first_time_).toSec() > 3.0)) {
+     800             : 
+     801           0 :           switchTrackerSrv(_null_tracker_name_);
+     802             : 
+     803           0 :           setControlCallbacksSrv(true);
+     804             : 
+     805           0 :           if (_landing_disarm_) {
+     806             : 
+     807           0 :             ROS_INFO("[UavManager]: disarming after landing");
+     808             : 
+     809           0 :             disarmSrv();
+     810             :           }
+     811             : 
+     812           0 :           changeLandingState(IDLE_STATE);
+     813             : 
+     814           0 :           ROS_INFO("[UavManager]: landing finished");
+     815             : 
+     816           0 :           timer_landing_.stop();
+     817             :         }
+     818             :       }
+     819             : 
+     820             :     } else {
+     821             : 
+     822           1 :       ROS_WARN_THROTTLE(1.0, "[UavManager]: incorrect tracker detected during landing!");
+     823             :     }
+     824             :   }
+     825             : }
+     826             : 
+     827             : //}
+     828             : 
+     829             : /* //{ timerTakeoff() */
+     830             : 
+     831         967 : void UavManager::timerTakeoff(const ros::TimerEvent& event) {
+     832             : 
+     833         967 :   if (!is_initialized_)
+     834           2 :     return;
+     835             : 
+     836        1934 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerTakeoff", _takeoff_timer_rate_, 0.1, event);
+     837        1934 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("UavManager::timerTakeoff", scope_timer_logger_, scope_timer_enabled_);
+     838             : 
+     839         967 :   auto control_manager_diagnostics = sh_control_manager_diag_.getMsg();
+     840             : 
+     841         967 :   if (waiting_for_takeoff_) {
+     842             : 
+     843          22 :     if (control_manager_diagnostics->active_tracker == _takeoff_tracker_name_ && control_manager_diagnostics->tracker_status.have_goal) {
+     844             : 
+     845          20 :       waiting_for_takeoff_ = false;
+     846             :     } else {
+     847             : 
+     848           2 :       ROS_WARN_THROTTLE(1.0, "[UavManager]: waiting for takeoff confirmation from the ControlManager");
+     849           2 :       return;
+     850             :     }
+     851             :   }
+     852             : 
+     853         965 :   if (takingoff_) {
+     854             : 
+     855         965 :     if (control_manager_diagnostics->active_tracker != _takeoff_tracker_name_ || !control_manager_diagnostics->tracker_status.have_goal) {
+     856             : 
+     857          20 :       ROS_INFO("[UavManager]: take off finished, switching to %s", _after_takeoff_tracker_name_.c_str());
+     858             : 
+     859          20 :       switchTrackerSrv(_after_takeoff_tracker_name_);
+     860             : 
+     861          20 :       switchControllerSrv(_after_takeoff_controller_name_);
+     862             : 
+     863          20 :       setOdometryCallbacksSrv(true);
+     864             : 
+     865          20 :       timer_takeoff_.stop();
+     866             :     }
+     867             :   }
+     868             : }
+     869             : 
+     870             : //}
+     871             : 
+     872             : /* //{ timerMaxHeight() */
+     873             : 
+     874       19636 : void UavManager::timerMaxHeight(const ros::TimerEvent& event) {
+     875             : 
+     876       19636 :   if (!is_initialized_)
+     877       13713 :     return;
+     878             : 
+     879       39272 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerMaxHeight", _max_height_checking_rate_, 0.1, event);
+     880       39272 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("UavManager::timerMaxHeight", scope_timer_logger_, scope_timer_enabled_);
+     881             : 
+     882       19636 :   if (!sh_max_height_.hasMsg() || !sh_height_.hasMsg() || !sh_odometry_.hasMsg()) {
+     883        7313 :     ROS_WARN_THROTTLE(10.0, "[UavManager]: maxHeightTimer() not spinning, missing data");
+     884        7313 :     return;
+     885             :   }
+     886             : 
+     887       12323 :   auto control_manager_diag = sh_control_manager_diag_.getMsg();
+     888             : 
+     889       12323 :   if (!fixing_max_height_ && !control_manager_diag->flying_normally) {
+     890        6400 :     return;
+     891             :   }
+     892             : 
+     893        5923 :   auto   odometry = sh_odometry_.getMsg();
+     894        5923 :   double height   = sh_height_.getMsg()->value;
+     895             : 
+     896             :   // transform max z to the height frame
+     897        5923 :   geometry_msgs::PointStamped point;
+     898        5923 :   point.header  = sh_max_height_.getMsg()->header;
+     899        5923 :   point.point.z = sh_max_height_.getMsg()->value;
+     900             : 
+     901        5923 :   auto res = transformer_->transformSingle(point, sh_height_.getMsg()->header.frame_id);
+     902             : 
+     903             :   double max_z_in_height;
+     904             : 
+     905        5923 :   if (res) {
+     906        5923 :     max_z_in_height = res->point.z;
+     907             :   } else {
+     908           0 :     ROS_WARN_THROTTLE(1.0, "[UavManager]: timerMaxHeight() not working, cannot transform max z to the height frame");
+     909           0 :     return;
+     910             :   }
+     911             : 
+     912        5923 :   auto [odometry_x, odometry_y, odometry_z] = mrs_lib::getPosition(odometry);
+     913             : 
+     914        5923 :   double odometry_heading = 0;
+     915             :   try {
+     916        5923 :     odometry_heading = mrs_lib::getHeading(odometry);
+     917             :   }
+     918           0 :   catch (mrs_lib::AttitudeConverter::GetHeadingException& e) {
+     919           0 :     ROS_ERROR_THROTTLE(1.0, "[UavManager]: exception caught: '%s'", e.what());
+     920           0 :     return;
+     921             :   }
+     922             : 
+     923        5923 :   if (height > max_z_in_height) {
+     924             : 
+     925          52 :     ROS_WARN_THROTTLE(1.0, "[UavManager]: max height exceeded: %.2f >  %.2f, triggering safety goto", height, max_z_in_height);
+     926             : 
+     927         104 :     mrs_msgs::ReferenceStamped reference_out;
+     928          52 :     reference_out.header.frame_id = odometry->header.frame_id;
+     929          52 :     reference_out.header.stamp    = ros::Time::now();
+     930             : 
+     931          52 :     reference_out.reference.position.x = odometry_x;
+     932          52 :     reference_out.reference.position.y = odometry_y;
+     933          52 :     reference_out.reference.position.z = odometry_z + ((max_z_in_height - _max_height_offset_) - height);
+     934             : 
+     935          52 :     reference_out.reference.heading = odometry_heading;
+     936             : 
+     937          52 :     setControlCallbacksSrv(false);
+     938             : 
+     939          52 :     bool success = emergencyReferenceSrv(reference_out);
+     940             : 
+     941          52 :     if (success) {
+     942             : 
+     943          52 :       ROS_INFO("[UavManager]: descending");
+     944             : 
+     945          52 :       fixing_max_height_ = true;
+     946             : 
+     947             :     } else {
+     948             : 
+     949           0 :       ROS_ERROR_THROTTLE(1.0, "[UavManager]: could not descend");
+     950             : 
+     951           0 :       setControlCallbacksSrv(true);
+     952             :     }
+     953             :   }
+     954             : 
+     955        5923 :   if (fixing_max_height_ && height < max_z_in_height) {
+     956             : 
+     957           1 :     setControlCallbacksSrv(true);
+     958             : 
+     959           1 :     ROS_WARN_THROTTLE(1.0, "[UavManager]: safe height reached");
+     960             : 
+     961           1 :     fixing_max_height_ = false;
+     962             :   }
+     963             : }
+     964             : 
+     965             : //}
+     966             : 
+     967             : /* //{ timerMinHeight() */
+     968             : 
+     969       19566 : void UavManager::timerMinHeight(const ros::TimerEvent& event) {
+     970             : 
+     971       19566 :   if (!is_initialized_)
+     972       13731 :     return;
+     973             : 
+     974       19566 :   ROS_INFO_ONCE("[UavManager]: min height timer spinning");
+     975             : 
+     976       39132 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerMinHeight", _min_height_checking_rate_, 0.1, event);
+     977       39132 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("UavManager::timerMinHeight", scope_timer_logger_, scope_timer_enabled_);
+     978             : 
+     979       19566 :   if (!sh_odometry_.hasMsg() || !sh_height_.hasMsg() || !sh_control_manager_diag_.hasMsg()) {
+     980        7302 :     ROS_WARN_THROTTLE(10.0, "[UavManager]: minHeightTimer() not spinning, missing data");
+     981        7302 :     return;
+     982             :   }
+     983             : 
+     984       12264 :   auto control_manager_diag = sh_control_manager_diag_.getMsg();
+     985             : 
+     986       12264 :   if (!fixing_min_height_ && !control_manager_diag->flying_normally) {
+     987        6429 :     return;
+     988             :   }
+     989             : 
+     990        5835 :   auto   odometry = sh_odometry_.getMsg();
+     991        5835 :   double height   = sh_height_.getMsg()->value;
+     992             : 
+     993        5835 :   auto [odometry_x, odometry_y, odometry_z] = mrs_lib::getPosition(odometry);
+     994             : 
+     995        5835 :   double odometry_heading = 0;
+     996             : 
+     997             :   try {
+     998        5835 :     odometry_heading = mrs_lib::getHeading(odometry);
+     999             :   }
+    1000           0 :   catch (mrs_lib::AttitudeConverter::GetHeadingException& e) {
+    1001           0 :     ROS_ERROR_THROTTLE(1.0, "[UavManager]: exception caught: '%s'", e.what());
+    1002           0 :     return;
+    1003             :   }
+    1004             : 
+    1005        5835 :   if (height < _min_height_) {
+    1006             : 
+    1007          34 :     ROS_WARN_THROTTLE(1.0, "[UavManager]: min height breached: %.2f < %.2f, triggering safety goto", height, _min_height_);
+    1008             : 
+    1009          68 :     mrs_msgs::ReferenceStamped reference_out;
+    1010          34 :     reference_out.header.frame_id = odometry->header.frame_id;
+    1011          34 :     reference_out.header.stamp    = ros::Time::now();
+    1012             : 
+    1013          34 :     reference_out.reference.position.x = odometry_x;
+    1014          34 :     reference_out.reference.position.y = odometry_y;
+    1015          34 :     reference_out.reference.position.z = odometry_z + ((_min_height_ + _min_height_offset_) - height);
+    1016             : 
+    1017          34 :     reference_out.reference.heading = odometry_heading;
+    1018             : 
+    1019          34 :     setControlCallbacksSrv(false);
+    1020             : 
+    1021          34 :     bool success = emergencyReferenceSrv(reference_out);
+    1022             : 
+    1023          34 :     if (success) {
+    1024             : 
+    1025          34 :       ROS_INFO("[UavManager]: ascending");
+    1026             : 
+    1027          34 :       fixing_min_height_ = true;
+    1028             : 
+    1029             :     } else {
+    1030             : 
+    1031           0 :       ROS_ERROR_THROTTLE(1.0, "[UavManager]: could not ascend");
+    1032             : 
+    1033           0 :       setControlCallbacksSrv(true);
+    1034             :     }
+    1035             :   }
+    1036             : 
+    1037        5835 :   if (fixing_min_height_ && height > _min_height_) {
+    1038             : 
+    1039           2 :     setControlCallbacksSrv(true);
+    1040             : 
+    1041           2 :     ROS_WARN_THROTTLE(1.0, "[UavManager]: safe height reached");
+    1042             : 
+    1043           2 :     fixing_min_height_ = false;
+    1044             :   }
+    1045             : }
+    1046             : 
+    1047             : //}
+    1048             : 
+    1049             : /* //{ timerFlightTime() */
+    1050             : 
+    1051         281 : void UavManager::timerFlightTime(const ros::TimerEvent& event) {
+    1052             : 
+    1053         281 :   if (!is_initialized_)
+    1054           0 :     return;
+    1055             : 
+    1056         843 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerFlightTime", _flighttime_timer_rate_, 0.1, event);
+    1057         843 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("UavManager::timerFlightTime", scope_timer_logger_, scope_timer_enabled_);
+    1058             : 
+    1059         281 :   auto flighttime = mrs_lib::get_mutexed(mutex_flighttime_, flighttime_);
+    1060             : 
+    1061         281 :   flighttime += 1.0 / _flighttime_timer_rate_;
+    1062             : 
+    1063         281 :   mrs_msgs::Float64 flight_time;
+    1064         281 :   flight_time.value = flighttime;
+    1065             : 
+    1066             :   // if enabled, start the timer for measuring the flight time
+    1067         281 :   if (_flighttime_timer_enabled_) {
+    1068             : 
+    1069           0 :     if (flighttime > _flighttime_max_time_) {
+    1070             : 
+    1071           0 :       flighttime = 0;
+    1072           0 :       timer_flighttime_.stop();
+    1073             : 
+    1074           0 :       ROS_INFO("[UavManager]: max flight time reached, landing");
+    1075             : 
+    1076           0 :       landImpl();
+    1077             :     }
+    1078             :   }
+    1079             : 
+    1080         281 :   mrs_lib::set_mutexed(mutex_flighttime_, flighttime, flighttime_);
+    1081             : }
+    1082             : 
+    1083             : //}
+    1084             : 
+    1085             : /* //{ timerMaxthrottle() */
+    1086             : 
+    1087       49413 : void UavManager::timerMaxthrottle(const ros::TimerEvent& event) {
+    1088             : 
+    1089       49413 :   if (!is_initialized_)
+    1090       15481 :     return;
+    1091             : 
+    1092       49413 :   if (!sh_throttle_.hasMsg() || (ros::Time::now() - sh_throttle_.lastMsgTime()).toSec() > 1.0) {
+    1093       15481 :     return;
+    1094             :   }
+    1095             : 
+    1096       33932 :   ROS_INFO_ONCE("[UavManager]: max throttle timer spinning");
+    1097             : 
+    1098      101796 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerMaxthrottle", _maxthrottle_timer_rate_, 0.03, event);
+    1099      101796 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("UavManager::timerMaxthrottle", scope_timer_logger_, scope_timer_enabled_);
+    1100             : 
+    1101       33932 :   auto desired_throttle = sh_throttle_.getMsg()->data;
+    1102             : 
+    1103       33932 :   if (desired_throttle >= _maxthrottle_max_throttle_) {
+    1104             : 
+    1105          32 :     if (!maxthrottle_above_threshold_) {
+    1106             : 
+    1107           1 :       maxthrottle_first_time_      = ros::Time::now();
+    1108           1 :       maxthrottle_above_threshold_ = true;
+    1109           1 :       ROS_WARN_THROTTLE(1.0, "[UavManager]: max throttle exceeded threshold (%.2f/%.2f)", desired_throttle, _maxthrottle_max_throttle_);
+    1110             : 
+    1111             :     } else {
+    1112             : 
+    1113          31 :       ROS_WARN_THROTTLE(0.1, "[UavManager]: throttle over threshold (%.2f/%.2f) for %.2f s", desired_throttle, _maxthrottle_max_throttle_,
+    1114             :                         (ros::Time::now() - maxthrottle_first_time_).toSec());
+    1115             :     }
+    1116             : 
+    1117             :   } else {
+    1118             : 
+    1119       33900 :     maxthrottle_above_threshold_ = false;
+    1120             :   }
+    1121             : 
+    1122       33932 :   if (maxthrottle_above_threshold_ && (ros::Time::now() - maxthrottle_first_time_).toSec() > _maxthrottle_ungrip_timeout_) {
+    1123             : 
+    1124          16 :     ROS_WARN_THROTTLE(1.0, "[UavManager]: throttle over threshold (%.2f/%.2f) for more than %.2f s, ungripping payload", desired_throttle,
+    1125             :                       _maxthrottle_max_throttle_, _maxthrottle_ungrip_timeout_);
+    1126             : 
+    1127          16 :     ungripSrv();
+    1128             :   }
+    1129             : 
+    1130       33932 :   if (maxthrottle_above_threshold_ && (ros::Time::now() - maxthrottle_first_time_).toSec() > _maxthrottle_eland_timeout_) {
+    1131             : 
+    1132           1 :     timer_maxthrottle_.stop();
+    1133             : 
+    1134           1 :     ROS_ERROR_THROTTLE(1.0, "[UavManager]: throttle over threshold (%.2f/%.2f) for more than %.2f s, calling for emergency landing", desired_throttle,
+    1135             :                        _maxthrottle_max_throttle_, _maxthrottle_eland_timeout_);
+    1136             : 
+    1137           1 :     elandSrv();
+    1138             :   }
+    1139             : }
+    1140             : 
+    1141             : //}
+    1142             : 
+    1143             : /* //{ timerDiagnostics() */
+    1144             : 
+    1145        1951 : void UavManager::timerDiagnostics(const ros::TimerEvent& event) {
+    1146             : 
+    1147        1951 :   if (!is_initialized_)
+    1148           0 :     return;
+    1149             : 
+    1150        5853 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("timerDiagnostics", _maxthrottle_timer_rate_, 0.03, event);
+    1151        5853 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("UavManager::timerDiagnostics", scope_timer_logger_, scope_timer_enabled_);
+    1152             : 
+    1153        1951 :   bool got_gps_est = false;
+    1154        1951 :   bool got_rtk_est = false;
+    1155             : 
+    1156        1951 :   if (sh_estimation_diagnostics_.hasMsg()) {  // get current position in lat-lon
+    1157             : 
+    1158        3238 :     auto                     estimation_diag  = sh_estimation_diagnostics_.getMsg();
+    1159        1619 :     std::vector<std::string> state_estimators = estimation_diag.get()->switchable_state_estimators;
+    1160             : 
+    1161        1928 :     got_gps_est = std::find(state_estimators.begin(), state_estimators.end(), "gps_garmin") != state_estimators.end() ||
+    1162         309 :                   std::find(state_estimators.begin(), state_estimators.end(), "gps_baro") != state_estimators.end();
+    1163        1619 :     got_rtk_est = std::find(state_estimators.begin(), state_estimators.end(), "rtk") != state_estimators.end();
+    1164             :   }
+    1165             : 
+    1166        3902 :   mrs_msgs::UavManagerDiagnostics diag;
+    1167             : 
+    1168        1951 :   diag.stamp    = ros::Time::now();
+    1169        1951 :   diag.uav_name = _uav_name_;
+    1170             : 
+    1171        1951 :   auto flighttime = mrs_lib::get_mutexed(mutex_flighttime_, flighttime_);
+    1172             : 
+    1173             :   // fill in the acumulated flight time
+    1174        1951 :   diag.flight_time = flighttime;
+    1175             : 
+    1176        1951 :   if (sh_odometry_.hasMsg()) {  // get current position in lat-lon
+    1177             : 
+    1178        1620 :     if (got_gps_est || got_rtk_est) {
+    1179             : 
+    1180        3178 :       nav_msgs::Odometry odom = *sh_odometry_.getMsg();
+    1181             : 
+    1182        3178 :       geometry_msgs::PoseStamped uav_pose;
+    1183        1589 :       uav_pose.pose = mrs_lib::getPose(odom);
+    1184             : 
+    1185        4767 :       auto res = transformer_->transformSingle(uav_pose, "latlon_origin");
+    1186             : 
+    1187        1589 :       if (res) {
+    1188        1589 :         diag.cur_latitude  = res.value().pose.position.x;
+    1189        1589 :         diag.cur_longitude = res.value().pose.position.y;
+    1190             :       }
+    1191             :     }
+    1192             :   }
+    1193             : 
+    1194        1951 :   if (takeoff_successful_) {
+    1195             : 
+    1196         322 :     if (got_gps_est || got_rtk_est) {
+    1197             : 
+    1198         644 :       auto land_there_reference = mrs_lib::get_mutexed(mutex_land_there_reference_, land_there_reference_);
+    1199             : 
+    1200         966 :       auto res = transformer_->transformSingle(land_there_reference, "latlon_origin");
+    1201             : 
+    1202         322 :       if (res) {
+    1203         322 :         diag.home_latitude  = res.value().reference.position.x;
+    1204         322 :         diag.home_longitude = res.value().reference.position.y;
+    1205             :       }
+    1206             :     }
+    1207             :   }
+    1208             : 
+    1209        1951 :   ph_diag_.publish(diag);
+    1210             : }
+    1211             : 
+    1212             : //}
+    1213             : 
+    1214             : /* //{ timerMidairActivation() */
+    1215             : 
+    1216          66 : void UavManager::timerMidairActivation([[maybe_unused]] const ros::TimerEvent& event) {
+    1217             : 
+    1218          66 :   if (!is_initialized_)
+    1219           0 :     return;
+    1220             : 
+    1221          66 :   ROS_INFO_THROTTLE(0.1, "[UavManager]: waiting for OFFBOARD");
+    1222             : 
+    1223          66 :   if (sh_hw_api_status_.getMsg()->offboard) {
+    1224             : 
+    1225          63 :     ROS_INFO("[UavManager]: OFFBOARD detected");
+    1226             : 
+    1227          63 :     setOdometryCallbacksSrv(true);
+    1228             : 
+    1229             :     {
+    1230          63 :       bool controller_switched = switchControllerSrv(_midair_activation_after_controller_);
+    1231             : 
+    1232          63 :       if (!controller_switched) {
+    1233             : 
+    1234           1 :         ROS_ERROR("[UavManager]: could not activate '%s'", _midair_activation_after_controller_.c_str());
+    1235             : 
+    1236           1 :         ehoverSrv();
+    1237             : 
+    1238           1 :         timer_midair_activation_.stop();
+    1239             : 
+    1240           1 :         return;
+    1241             :       }
+    1242             :     }
+    1243             : 
+    1244             :     {
+    1245          62 :       bool tracker_switched = switchTrackerSrv(_midair_activation_after_tracker_);
+    1246             : 
+    1247          62 :       if (!tracker_switched) {
+    1248             : 
+    1249           1 :         ROS_ERROR("[UavManager]: could not activate '%s'", _midair_activation_after_tracker_.c_str());
+    1250             : 
+    1251           1 :         ehoverSrv();
+    1252             : 
+    1253           1 :         timer_midair_activation_.stop();
+    1254             : 
+    1255           1 :         return;
+    1256             :       }
+    1257             :     }
+    1258             : 
+    1259          61 :     timer_midair_activation_.stop();
+    1260             : 
+    1261          61 :     return;
+    1262             :   }
+    1263             : 
+    1264           3 :   if ((ros::Time::now() - midair_activation_started_).toSec() > 0.5) {
+    1265             : 
+    1266           0 :     ROS_ERROR("[UavManager]: waiting for OFFBOARD timeouted, reverting");
+    1267             : 
+    1268           0 :     toggleControlOutput(false);
+    1269             : 
+    1270           0 :     timer_midair_activation_.stop();
+    1271             : 
+    1272           0 :     return;
+    1273             :   }
+    1274             : }
+    1275             : 
+    1276             : //}
+    1277             : 
+    1278             : // --------------------------------------------------------------
+    1279             : // |                          callbacks                         |
+    1280             : // --------------------------------------------------------------
+    1281             : 
+    1282             : // | --------------------- topic callbacks -------------------- |
+    1283             : 
+    1284             : /* //{ callbackHwApiGNSS() */
+    1285             : 
+    1286       93150 : void UavManager::callbackHwApiGNSS(const sensor_msgs::NavSatFix::ConstPtr msg) {
+    1287             : 
+    1288       93150 :   if (!is_initialized_)
+    1289          36 :     return;
+    1290             : 
+    1291      279342 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackHwApiGNSS");
+    1292      279342 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("UavManager::callbackHwApiGNSS", scope_timer_logger_, scope_timer_enabled_);
+    1293             : 
+    1294       93114 :   transformer_->setLatLon(msg->latitude, msg->longitude);
+    1295             : }
+    1296             : 
+    1297             : //}
+    1298             : 
+    1299             : /* //{ callbackOdometry() */
+    1300             : 
+    1301      155029 : void UavManager::callbackOdometry(const nav_msgs::Odometry::ConstPtr msg) {
+    1302             : 
+    1303      155029 :   if (!is_initialized_)
+    1304           0 :     return;
+    1305             : 
+    1306      155029 :   transformer_->setDefaultFrame(msg->header.frame_id);
+    1307             : }
+    1308             : 
+    1309             : //}
+    1310             : 
+    1311             : // | -------------------- service callbacks ------------------- |
+    1312             : 
+    1313             : /* //{ callbackTakeoff() */
+    1314             : 
+    1315          22 : bool UavManager::callbackTakeoff([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    1316             : 
+    1317          22 :   if (!is_initialized_)
+    1318           0 :     return false;
+    1319             : 
+    1320          22 :   ROS_INFO("[UavManager]: takeoff called by service");
+    1321             : 
+    1322             :   /* preconditions //{ */
+    1323             : 
+    1324             :   {
+    1325          22 :     std::stringstream ss;
+    1326             : 
+    1327          22 :     if (!sh_odometry_.hasMsg()) {
+    1328           0 :       ss << "can not takeoff, missing odometry!";
+    1329           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1330           0 :       res.message = ss.str();
+    1331           0 :       res.success = false;
+    1332           0 :       return true;
+    1333             :     }
+    1334             : 
+    1335          22 :     if (!sh_hw_api_status_.hasMsg() || (ros::Time::now() - sh_hw_api_status_.lastMsgTime()).toSec() > 5.0) {
+    1336           0 :       ss << "can not takeoff, missing HW API status!";
+    1337           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1338           0 :       res.message = ss.str();
+    1339           0 :       res.success = false;
+    1340           0 :       return true;
+    1341             :     }
+    1342             : 
+    1343          22 :     if (!sh_hw_api_status_.getMsg()->armed) {
+    1344           0 :       ss << "can not takeoff, UAV not armed!";
+    1345           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1346           0 :       res.message = ss.str();
+    1347           0 :       res.success = false;
+    1348           0 :       return true;
+    1349             :     }
+    1350             : 
+    1351          22 :     if (!sh_hw_api_status_.getMsg()->offboard) {
+    1352           0 :       ss << "can not takeoff, UAV not in offboard mode!";
+    1353           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1354           0 :       res.message = ss.str();
+    1355           0 :       res.success = false;
+    1356           0 :       return true;
+    1357             :     }
+    1358             : 
+    1359             :     {
+    1360          22 :       if (!sh_control_manager_diag_.hasMsg() && (ros::Time::now() - sh_control_manager_diag_.lastMsgTime()).toSec() > 5.0) {
+    1361           0 :         ss << "can not takeoff, missing control manager diagnostics!";
+    1362           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1363           0 :         res.message = ss.str();
+    1364           0 :         res.success = false;
+    1365           0 :         return true;
+    1366             :       }
+    1367             : 
+    1368          22 :       if (_null_tracker_name_ != sh_control_manager_diag_.getMsg()->active_tracker) {
+    1369           0 :         ss << "can not takeoff, need '" << _null_tracker_name_ << "' to be active!";
+    1370           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1371           0 :         res.message = ss.str();
+    1372           0 :         res.success = false;
+    1373           0 :         return true;
+    1374             :       }
+    1375             :     }
+    1376             : 
+    1377          22 :     if (!sh_controller_diagnostics_.hasMsg()) {
+    1378           0 :       ss << "can not takeoff, missing controller diagnostics!";
+    1379           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1380           0 :       res.message = ss.str();
+    1381           0 :       res.success = false;
+    1382           0 :       return true;
+    1383             :     }
+    1384             : 
+    1385          22 :     if (_gain_manager_required_ && (ros::Time::now() - sh_gains_diag_.lastMsgTime()).toSec() > 5.0) {
+    1386           0 :       ss << "can not takeoff, GainManager is not running!";
+    1387           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1388           0 :       res.message = ss.str();
+    1389           0 :       res.success = false;
+    1390           0 :       return true;
+    1391             :     }
+    1392             : 
+    1393          22 :     if (_constraint_manager_required_ && (ros::Time::now() - sh_constraints_diag_.lastMsgTime()).toSec() > 5.0) {
+    1394           0 :       ss << "can not takeoff, ConstraintManager is not running!";
+    1395           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1396           0 :       res.message = ss.str();
+    1397           0 :       res.success = false;
+    1398           0 :       return true;
+    1399             :     }
+    1400             : 
+    1401          22 :     if (!sh_control_manager_diag_.getMsg()->output_enabled) {
+    1402             : 
+    1403           0 :       ss << "can not takeoff, Control Manager's output is disabled!";
+    1404           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1405           0 :       res.message = ss.str();
+    1406           0 :       res.success = false;
+    1407           0 :       return true;
+    1408             :     }
+    1409             : 
+    1410          22 :     if (number_of_takeoffs_ > 0) {
+    1411             : 
+    1412           0 :       auto last_mass_difference = mrs_lib::get_mutexed(mutex_last_mass_difference_, last_mass_difference_);
+    1413             : 
+    1414           0 :       if (last_mass_difference > 1.0) {
+    1415             : 
+    1416           0 :         ss << std::setprecision(2);
+    1417           0 :         ss << "can not takeoff, estimated mass difference is too large: " << _null_tracker_name_ << "!";
+    1418           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1419           0 :         res.message = ss.str();
+    1420           0 :         res.success = false;
+    1421           0 :         return true;
+    1422             :       }
+    1423             :     }
+    1424             :   }
+    1425             : 
+    1426             :   //}
+    1427             : 
+    1428          44 :   auto control_manager_diagnostics = sh_control_manager_diag_.getMsg();
+    1429          44 :   auto odometry                    = sh_odometry_.getMsg();
+    1430          22 :   auto [odom_x, odom_y, odom_z]    = mrs_lib::getPosition(sh_odometry_.getMsg());
+    1431             : 
+    1432             :   double odom_heading;
+    1433             :   try {
+    1434          22 :     odom_heading = mrs_lib::getHeading(sh_odometry_.getMsg());
+    1435             :   }
+    1436           0 :   catch (mrs_lib::AttitudeConverter::GetHeadingException& e) {
+    1437           0 :     ROS_ERROR_THROTTLE(1.0, "[UavManager]: exception caught: '%s'", e.what());
+    1438             : 
+    1439           0 :     std::stringstream ss;
+    1440           0 :     ss << "could not calculate current heading";
+    1441           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1442           0 :     res.message = ss.str();
+    1443           0 :     res.success = false;
+    1444           0 :     return true;
+    1445             :   }
+    1446             : 
+    1447          22 :   ROS_INFO("[UavManager]: taking off");
+    1448             : 
+    1449          22 :   setOdometryCallbacksSrv(false);
+    1450             : 
+    1451             :   // activating the takeoff controller
+    1452             :   {
+    1453          22 :     std::string old_controller      = sh_control_manager_diag_.getMsg()->active_controller;
+    1454          22 :     bool        controller_switched = switchControllerSrv(_takeoff_controller_name_);
+    1455             : 
+    1456             :     // if it fails, activate back the old controller
+    1457             :     // this is no big deal since the control outputs are not used
+    1458             :     // until NullTracker is active
+    1459          22 :     if (!controller_switched) {
+    1460             : 
+    1461           1 :       std::stringstream ss;
+    1462           1 :       ss << "could not activate '" << _takeoff_controller_name_ << "' for takeoff";
+    1463           1 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1464           1 :       res.success = false;
+    1465           1 :       res.message = ss.str();
+    1466             : 
+    1467           1 :       toggleControlOutput(false);
+    1468           1 :       disarmSrv();
+    1469             : 
+    1470           1 :       return true;
+    1471             :     }
+    1472             :   }
+    1473             : 
+    1474             :   // activate the takeoff tracker
+    1475             :   {
+    1476          21 :     std::string old_tracker      = sh_control_manager_diag_.getMsg()->active_tracker;
+    1477          21 :     bool        tracker_switched = switchTrackerSrv(_takeoff_tracker_name_);
+    1478             : 
+    1479             :     // if it fails, activate back the old tracker
+    1480          21 :     if (!tracker_switched) {
+    1481             : 
+    1482           1 :       std::stringstream ss;
+    1483           1 :       ss << "could not activate '" << _takeoff_tracker_name_ << "' for takeoff";
+    1484           1 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1485           1 :       res.success = false;
+    1486           1 :       res.message = ss.str();
+    1487             : 
+    1488           1 :       toggleControlOutput(false);
+    1489           1 :       disarmSrv();
+    1490             : 
+    1491           1 :       return true;
+    1492             :     }
+    1493             :   }
+    1494             : 
+    1495             :   // let's sleep before calling take off.. the motors are rumping-up anyway
+    1496             :   // this solves on-time-happening race condition in the landoff tracker
+    1497          20 :   ros::Duration(0.3).sleep();
+    1498             : 
+    1499             :   // now the takeoff tracker and controller are active
+    1500             :   // the UAV is basically hovering on the ground
+    1501             :   // (the controller is probably rumping up the throttle now)
+    1502             : 
+    1503             :   // call the takeoff service at the takeoff tracker
+    1504             :   {
+    1505          20 :     bool takeoff_successful = takeoffSrv();
+    1506             : 
+    1507             :     // if the takeoff was not successful, switch to NullTracker
+    1508          20 :     if (takeoff_successful) {
+    1509             : 
+    1510             :       // save the current spot for later landing
+    1511             :       {
+    1512          20 :         std::scoped_lock lock(mutex_land_there_reference_);
+    1513             : 
+    1514          20 :         land_there_reference_.header               = odometry->header;
+    1515          20 :         land_there_reference_.reference.position.x = odom_x;
+    1516          20 :         land_there_reference_.reference.position.y = odom_y;
+    1517          20 :         land_there_reference_.reference.position.z = odom_z;
+    1518          20 :         land_there_reference_.reference.heading    = odom_heading;
+    1519             :       }
+    1520             : 
+    1521          20 :       timer_flighttime_.start();
+    1522             : 
+    1523          40 :       std::stringstream ss;
+    1524          20 :       ss << "taking off";
+    1525          20 :       res.success = true;
+    1526          20 :       res.message = ss.str();
+    1527          20 :       ROS_INFO_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1528             : 
+    1529          20 :       takingoff_ = true;
+    1530          20 :       number_of_takeoffs_++;
+    1531          20 :       waiting_for_takeoff_ = true;
+    1532             : 
+    1533             :       // start the takeoff timer
+    1534          20 :       timer_takeoff_.start();
+    1535             : 
+    1536          20 :       takeoff_successful_ = takeoff_successful;
+    1537             : 
+    1538             :     } else {
+    1539             : 
+    1540           0 :       std::stringstream ss;
+    1541           0 :       ss << "takeoff was not successful";
+    1542           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1543           0 :       res.success = false;
+    1544           0 :       res.message = ss.str();
+    1545             : 
+    1546             :       // if the call for takeoff fails, call for emergency landing
+    1547           0 :       elandSrv();
+    1548             :     }
+    1549             :   }
+    1550             : 
+    1551          20 :   return true;
+    1552             : }
+    1553             : 
+    1554             : //}
+    1555             : 
+    1556             : /* //{ callbackLand() */
+    1557             : 
+    1558           2 : bool UavManager::callbackLand([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    1559             : 
+    1560           2 :   if (!is_initialized_)
+    1561           0 :     return false;
+    1562             : 
+    1563           2 :   ROS_INFO("[UavManager]: land called by service");
+    1564             : 
+    1565             :   /* preconditions //{ */
+    1566             : 
+    1567             :   {
+    1568           2 :     std::stringstream ss;
+    1569             : 
+    1570           2 :     if (!sh_odometry_.hasMsg()) {
+    1571           0 :       ss << "can not land, missing odometry!";
+    1572           0 :       res.message = ss.str();
+    1573           0 :       res.success = false;
+    1574           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1575           0 :       return true;
+    1576             :     }
+    1577             : 
+    1578             :     {
+    1579           2 :       if (!sh_control_manager_diag_.hasMsg()) {
+    1580           0 :         ss << "can not land, missing control manager diagnostics!";
+    1581           0 :         res.message = ss.str();
+    1582           0 :         res.success = false;
+    1583           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1584           0 :         return true;
+    1585             :       }
+    1586             : 
+    1587           2 :       if (_null_tracker_name_ == sh_control_manager_diag_.getMsg()->active_tracker) {
+    1588           0 :         ss << "can not land, '" << _null_tracker_name_ << "' is active!";
+    1589           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1590           0 :         res.message = ss.str();
+    1591           0 :         res.success = false;
+    1592           0 :         return true;
+    1593             :       }
+    1594             :     }
+    1595             : 
+    1596           2 :     if (!sh_controller_diagnostics_.hasMsg()) {
+    1597           0 :       ss << "can not land, missing controller diagnostics!";
+    1598           0 :       res.message = ss.str();
+    1599           0 :       res.success = false;
+    1600           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1601           0 :       return true;
+    1602             :     }
+    1603             : 
+    1604           2 :     if (!sh_tracker_cmd_.hasMsg()) {
+    1605           0 :       ss << "can not land, missing position cmd!";
+    1606           0 :       res.message = ss.str();
+    1607           0 :       res.success = false;
+    1608           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1609           0 :       return true;
+    1610             :     }
+    1611             :   }
+    1612             : 
+    1613             :   //}
+    1614             : 
+    1615           2 :   auto [success, message] = landWithDescendImpl();
+    1616             : 
+    1617           2 :   res.message = message;
+    1618           2 :   res.success = success;
+    1619             : 
+    1620           2 :   return true;
+    1621             : }
+    1622             : 
+    1623             : //}
+    1624             : 
+    1625             : /* //{ callbackLandHome() */
+    1626             : 
+    1627           2 : bool UavManager::callbackLandHome([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    1628             : 
+    1629           2 :   if (!is_initialized_)
+    1630           0 :     return false;
+    1631             : 
+    1632           2 :   ROS_INFO("[UavManager]: land home called by service");
+    1633             : 
+    1634             :   /* preconditions //{ */
+    1635             : 
+    1636             :   {
+    1637           2 :     std::stringstream ss;
+    1638             : 
+    1639           2 :     if (number_of_takeoffs_ == 0) {
+    1640           0 :       ss << "can not land home, did not takeoff before!";
+    1641           0 :       res.message = ss.str();
+    1642           0 :       res.success = false;
+    1643           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1644           0 :       return true;
+    1645             :     }
+    1646             : 
+    1647           2 :     if (!sh_odometry_.hasMsg()) {
+    1648           0 :       ss << "can not land, missing odometry!";
+    1649           0 :       res.message = ss.str();
+    1650           0 :       res.success = false;
+    1651           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1652           0 :       return true;
+    1653             :     }
+    1654             : 
+    1655             :     {
+    1656           2 :       if (!sh_control_manager_diag_.hasMsg()) {
+    1657           0 :         ss << "can not land, missing tracker status!";
+    1658           0 :         res.message = ss.str();
+    1659           0 :         res.success = false;
+    1660           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1661           0 :         return true;
+    1662             :       }
+    1663             : 
+    1664           2 :       if (_null_tracker_name_ == sh_control_manager_diag_.getMsg()->active_tracker) {
+    1665           0 :         ss << "can not land, '" << _null_tracker_name_ << "' is active!";
+    1666           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1667           0 :         res.message = ss.str();
+    1668           0 :         res.success = false;
+    1669           0 :         return true;
+    1670             :       }
+    1671             :     }
+    1672             : 
+    1673           2 :     if (!sh_controller_diagnostics_.hasMsg()) {
+    1674           0 :       ss << "can not land, missing controller diagnostics command!";
+    1675           0 :       res.message = ss.str();
+    1676           0 :       res.success = false;
+    1677           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1678           0 :       return true;
+    1679             :     }
+    1680             : 
+    1681           2 :     if (!sh_tracker_cmd_.hasMsg()) {
+    1682           0 :       ss << "can not land, missing position cmd!";
+    1683           0 :       res.message = ss.str();
+    1684           0 :       res.success = false;
+    1685           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1686           0 :       return true;
+    1687             :     }
+    1688             : 
+    1689           2 :     if (fixing_max_height_) {
+    1690           0 :       ss << "can not land, descedning to safe height!";
+    1691           0 :       res.message = ss.str();
+    1692           0 :       res.success = false;
+    1693           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1694           0 :       return true;
+    1695             :     }
+    1696             : 
+    1697           2 :     if (current_state_landing_ != IDLE_STATE) {
+    1698           0 :       ss << "can not land, already landing!";
+    1699           0 :       res.message = ss.str();
+    1700           0 :       res.success = false;
+    1701           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1702           0 :       return true;
+    1703             :     }
+    1704             :   }
+    1705             : 
+    1706             :   //}
+    1707             : 
+    1708           2 :   ungripSrv();
+    1709             : 
+    1710           4 :   mrs_msgs::ReferenceStamped reference_out;
+    1711             : 
+    1712             :   {
+    1713           2 :     std::scoped_lock lock(mutex_land_there_reference_);
+    1714             : 
+    1715             :     // get the current altitude in land_there_reference_.header.frame_id;
+    1716           2 :     geometry_msgs::PoseStamped current_pose;
+    1717           2 :     current_pose.header.stamp     = ros::Time::now();
+    1718           2 :     current_pose.header.frame_id  = _uav_name_ + "/fcu";
+    1719           2 :     current_pose.pose.position.x  = 0;
+    1720           2 :     current_pose.pose.position.y  = 0;
+    1721           2 :     current_pose.pose.position.z  = 0;
+    1722           2 :     current_pose.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+    1723             : 
+    1724           2 :     auto response = transformer_->transformSingle(current_pose, land_there_reference_.header.frame_id);
+    1725             : 
+    1726           2 :     if (response) {
+    1727             : 
+    1728           2 :       land_there_reference_.reference.position.z = response.value().pose.position.z;
+    1729           2 :       ROS_DEBUG("[UavManager]: current altitude is %.2f m", land_there_reference_.reference.position.z);
+    1730             : 
+    1731             :     } else {
+    1732             : 
+    1733           0 :       std::stringstream ss;
+    1734           0 :       ss << "could not transform current height to " << land_there_reference_.header.frame_id;
+    1735           0 :       ROS_ERROR_STREAM("[UavManager]: " << ss.str());
+    1736             : 
+    1737           0 :       res.success = false;
+    1738           0 :       res.message = ss.str();
+    1739           0 :       return true;
+    1740             :     }
+    1741             : 
+    1742           2 :     reference_out.header.frame_id = land_there_reference_.header.frame_id;
+    1743           2 :     reference_out.header.stamp    = ros::Time::now();
+    1744           2 :     reference_out.reference       = land_there_reference_.reference;
+    1745             : 
+    1746           2 :     land_there_reference_ = reference_out;
+    1747             :   }
+    1748             : 
+    1749           2 :   bool service_success = emergencyReferenceSrv(reference_out);
+    1750             : 
+    1751           2 :   if (service_success) {
+    1752             : 
+    1753           4 :     std::stringstream ss;
+    1754           2 :     ss << "flying home for landing";
+    1755           2 :     ROS_INFO_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1756             : 
+    1757           2 :     res.success = true;
+    1758           2 :     res.message = ss.str();
+    1759             : 
+    1760             :     // stop the eventual takeoff
+    1761           2 :     waiting_for_takeoff_ = false;
+    1762           2 :     takingoff_           = false;
+    1763           2 :     timer_takeoff_.stop();
+    1764             : 
+    1765           2 :     throttle_under_threshold_          = false;
+    1766           2 :     throttle_mass_estimate_first_time_ = ros::Time(0);
+    1767             : 
+    1768           2 :     changeLandingState(GOTO_STATE);
+    1769             : 
+    1770           2 :     timer_landing_.start();
+    1771             : 
+    1772             :   } else {
+    1773             : 
+    1774           0 :     std::stringstream ss;
+    1775           0 :     ss << "can not fly home for landing";
+    1776           0 :     ROS_ERROR_STREAM("[UavManager]: " << ss.str());
+    1777             : 
+    1778           0 :     res.success = false;
+    1779           0 :     res.message = ss.str();
+    1780             :   }
+    1781             : 
+    1782           2 :   return true;
+    1783             : }
+    1784             : 
+    1785             : //}
+    1786             : 
+    1787             : /* //{ callbackLandThere() */
+    1788             : 
+    1789           1 : bool UavManager::callbackLandThere(mrs_msgs::ReferenceStampedSrv::Request& req, mrs_msgs::ReferenceStampedSrv::Response& res) {
+    1790             : 
+    1791           1 :   if (!is_initialized_)
+    1792           0 :     return false;
+    1793             : 
+    1794           1 :   ROS_INFO("[UavManager]: land there called by service");
+    1795             : 
+    1796             :   /* preconditions //{ */
+    1797             : 
+    1798             :   {
+    1799           1 :     std::stringstream ss;
+    1800             : 
+    1801           1 :     if (!sh_odometry_.hasMsg()) {
+    1802           0 :       ss << "can not land, missing odometry!";
+    1803           0 :       res.message = ss.str();
+    1804           0 :       res.success = false;
+    1805           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1806           0 :       return true;
+    1807             :     }
+    1808             : 
+    1809             :     {
+    1810           1 :       if (!sh_control_manager_diag_.hasMsg()) {
+    1811           0 :         ss << "can not land, missing tracker status!";
+    1812           0 :         res.message = ss.str();
+    1813           0 :         res.success = false;
+    1814           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1815           0 :         return true;
+    1816             :       }
+    1817             : 
+    1818           1 :       if (_null_tracker_name_ == sh_control_manager_diag_.getMsg()->active_tracker) {
+    1819           0 :         ss << "can not land, '" << _null_tracker_name_ << "' is active!";
+    1820           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1821           0 :         res.message = ss.str();
+    1822           0 :         res.success = false;
+    1823           0 :         return true;
+    1824             :       }
+    1825             :     }
+    1826             : 
+    1827           1 :     if (!sh_controller_diagnostics_.hasMsg()) {
+    1828           0 :       ss << "can not land, missing controller diagnostics!";
+    1829           0 :       res.message = ss.str();
+    1830           0 :       res.success = false;
+    1831           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1832           0 :       return true;
+    1833             :     }
+    1834             : 
+    1835           1 :     if (!sh_tracker_cmd_.hasMsg()) {
+    1836           0 :       ss << "can not land, missing position cmd!";
+    1837           0 :       res.message = ss.str();
+    1838           0 :       res.success = false;
+    1839           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1840           0 :       return true;
+    1841             :     }
+    1842             : 
+    1843           1 :     if (fixing_max_height_) {
+    1844           0 :       ss << "can not land, descedning to safe height!";
+    1845           0 :       res.message = ss.str();
+    1846           0 :       res.success = false;
+    1847           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1848           0 :       return true;
+    1849             :     }
+    1850             :   }
+    1851             : 
+    1852             :   //}
+    1853             : 
+    1854           1 :   ungripSrv();
+    1855             : 
+    1856           2 :   auto odometry = sh_odometry_.getMsg();
+    1857             : 
+    1858             :   // | ------ transform the reference to the current frame ------ |
+    1859             : 
+    1860           2 :   mrs_msgs::ReferenceStamped reference_in;
+    1861           1 :   reference_in.header    = req.header;
+    1862           1 :   reference_in.reference = req.reference;
+    1863             : 
+    1864           2 :   auto result = transformer_->transformSingle(reference_in, odometry->header.frame_id);
+    1865             : 
+    1866           1 :   if (!result) {
+    1867           0 :     std::stringstream ss;
+    1868           0 :     ss << "can not transform the reference to the current control frame!";
+    1869           0 :     res.message = ss.str();
+    1870           0 :     res.success = false;
+    1871           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1872           0 :     return true;
+    1873             :   }
+    1874             : 
+    1875             :   {
+    1876           1 :     std::scoped_lock lock(mutex_land_there_reference_);
+    1877             : 
+    1878           1 :     land_there_reference_.header               = odometry->header;
+    1879           1 :     land_there_reference_.reference            = reference_in.reference;
+    1880           1 :     land_there_reference_.reference.position.z = odometry->pose.pose.position.z;
+    1881             :   }
+    1882             : 
+    1883           1 :   bool service_success = emergencyReferenceSrv(land_there_reference_);
+    1884             : 
+    1885           1 :   if (service_success) {
+    1886             : 
+    1887           2 :     std::stringstream ss;
+    1888           1 :     ss << "flying there for landing";
+    1889           1 :     ROS_INFO_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1890             : 
+    1891           1 :     res.success = true;
+    1892           1 :     res.message = ss.str();
+    1893             : 
+    1894             :     // stop the eventual takeoff
+    1895           1 :     waiting_for_takeoff_ = false;
+    1896           1 :     takingoff_           = false;
+    1897           1 :     timer_takeoff_.stop();
+    1898             : 
+    1899           1 :     throttle_under_threshold_          = false;
+    1900           1 :     throttle_mass_estimate_first_time_ = ros::Time(0);
+    1901             : 
+    1902           1 :     changeLandingState(GOTO_STATE);
+    1903             : 
+    1904           1 :     timer_landing_.start();
+    1905             : 
+    1906             :   } else {
+    1907             : 
+    1908           0 :     std::stringstream ss;
+    1909           0 :     ss << "can not fly there for landing";
+    1910           0 :     ROS_ERROR_STREAM("[UavManager]: " << ss.str());
+    1911             : 
+    1912           0 :     res.success = false;
+    1913           0 :     res.message = ss.str();
+    1914             :   }
+    1915             : 
+    1916           1 :   return true;
+    1917             : }
+    1918             : 
+    1919             : //}
+    1920             : 
+    1921             : /* //{ callbackMidairActivation() */
+    1922             : 
+    1923          65 : bool UavManager::callbackMidairActivation([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    1924             : 
+    1925          65 :   if (!is_initialized_)
+    1926           0 :     return false;
+    1927             : 
+    1928          65 :   ROS_INFO("[UavManager]: midair activation called by service");
+    1929             : 
+    1930             :   /* preconditions //{ */
+    1931             : 
+    1932             :   {
+    1933          65 :     std::stringstream ss;
+    1934             : 
+    1935          65 :     if (!sh_odometry_.hasMsg()) {
+    1936           0 :       ss << "can not activate, missing odometry!";
+    1937           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1938           0 :       res.message = ss.str();
+    1939           0 :       res.success = false;
+    1940           0 :       return true;
+    1941             :     }
+    1942             : 
+    1943          65 :     if (!sh_hw_api_status_.hasMsg() || (ros::Time::now() - sh_hw_api_status_.lastMsgTime()).toSec() > 5.0) {
+    1944           0 :       ss << "can not activate, missing HW API status!";
+    1945           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1946           0 :       res.message = ss.str();
+    1947           0 :       res.success = false;
+    1948           0 :       return true;
+    1949             :     }
+    1950             : 
+    1951          65 :     if (!sh_hw_api_status_.getMsg()->armed) {
+    1952           0 :       ss << "can not activate, UAV not armed!";
+    1953           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1954           0 :       res.message = ss.str();
+    1955           0 :       res.success = false;
+    1956           0 :       return true;
+    1957             :     }
+    1958             : 
+    1959          65 :     if (sh_hw_api_status_.getMsg()->offboard) {
+    1960           0 :       ss << "can not activate, UAV already in offboard mode!";
+    1961           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1962           0 :       res.message = ss.str();
+    1963           0 :       res.success = false;
+    1964           0 :       return true;
+    1965             :     }
+    1966             : 
+    1967             :     {
+    1968          65 :       if (!sh_control_manager_diag_.hasMsg()) {
+    1969           0 :         ss << "can not activate, missing control manager diagnostics!";
+    1970           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1971           0 :         res.message = ss.str();
+    1972           0 :         res.success = false;
+    1973           0 :         return true;
+    1974             :       }
+    1975             : 
+    1976          65 :       if (_null_tracker_name_ != sh_control_manager_diag_.getMsg()->active_tracker) {
+    1977           0 :         ss << "can not activate, need '" << _null_tracker_name_ << "' to be active!";
+    1978           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1979           0 :         res.message = ss.str();
+    1980           0 :         res.success = false;
+    1981           0 :         return true;
+    1982             :       }
+    1983             :     }
+    1984             : 
+    1985          65 :     if (!sh_controller_diagnostics_.hasMsg()) {
+    1986           0 :       ss << "can not activate, missing controller diagnostics!";
+    1987           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1988           0 :       res.message = ss.str();
+    1989           0 :       res.success = false;
+    1990           0 :       return true;
+    1991             :     }
+    1992             : 
+    1993          65 :     if (_gain_manager_required_ && (ros::Time::now() - sh_gains_diag_.lastMsgTime()).toSec() > 5.0) {
+    1994           0 :       ss << "can not activate, GainManager is not running!";
+    1995           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    1996           0 :       res.message = ss.str();
+    1997           0 :       res.success = false;
+    1998           0 :       return true;
+    1999             :     }
+    2000             : 
+    2001          65 :     if (_constraint_manager_required_ && (ros::Time::now() - sh_constraints_diag_.lastMsgTime()).toSec() > 5.0) {
+    2002           0 :       ss << "can not activate, ConstraintManager is not running!";
+    2003           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2004           0 :       res.message = ss.str();
+    2005           0 :       res.success = false;
+    2006           0 :       return true;
+    2007             :     }
+    2008             : 
+    2009          65 :     if (number_of_takeoffs_ > 0) {
+    2010           0 :       ss << "can not activate, we flew already!";
+    2011           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2012           0 :       res.message = ss.str();
+    2013           0 :       res.success = false;
+    2014           0 :       return true;
+    2015             :     }
+    2016             :   }
+    2017             : 
+    2018             :   //}
+    2019             : 
+    2020          65 :   auto [success, message] = midairActivationImpl();
+    2021             : 
+    2022          65 :   res.message = message;
+    2023          65 :   res.success = success;
+    2024             : 
+    2025          65 :   return true;
+    2026             : }
+    2027             : 
+    2028             : //}
+    2029             : 
+    2030             : /* //{ callbackMinHeightCheck() */
+    2031             : 
+    2032           2 : bool UavManager::callbackMinHeightCheck([[maybe_unused]] std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res) {
+    2033             : 
+    2034           2 :   if (!is_initialized_)
+    2035           0 :     return false;
+    2036             : 
+    2037           2 :   min_height_check_ = req.data;
+    2038             : 
+    2039           2 :   std::stringstream ss;
+    2040             : 
+    2041           2 :   ss << "min height check " << (min_height_check_ ? "enabled" : "disabled");
+    2042             : 
+    2043           2 :   if (min_height_check_) {
+    2044           1 :     timer_min_height_.start();
+    2045             :   } else {
+    2046           1 :     timer_min_height_.stop();
+    2047             :   }
+    2048             : 
+    2049           2 :   ROS_INFO_STREAM("[UavManager]: " << ss.str());
+    2050             : 
+    2051           2 :   res.message = ss.str();
+    2052           2 :   res.success = true;
+    2053             : 
+    2054           2 :   return true;
+    2055             : }
+    2056             : 
+    2057             : //}
+    2058             : 
+    2059             : // | ------------------------ routines ------------------------ |
+    2060             : 
+    2061             : /* landImpl() //{ */
+    2062             : 
+    2063           5 : std::tuple<bool, std::string> UavManager::landImpl(void) {
+    2064             : 
+    2065             :   // activating the landing controller
+    2066             :   {
+    2067           5 :     std::string old_controller      = sh_control_manager_diag_.getMsg()->active_controller;
+    2068           5 :     bool        controller_switched = switchControllerSrv(_landing_controller_name_);
+    2069             : 
+    2070             :     // if it fails, activate eland
+    2071             :     // Tomas: I pressume that its more important to get the UAV to the ground rather than
+    2072             :     // just throw out error.
+    2073           5 :     if (!controller_switched) {
+    2074             : 
+    2075           0 :       std::stringstream ss;
+    2076           0 :       ss << "could not activate '" << _takeoff_controller_name_ << "' for landing";
+    2077           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2078             : 
+    2079           0 :       elandSrv();
+    2080             : 
+    2081           0 :       return std::tuple(false, ss.str());
+    2082             :     }
+    2083             :   }
+    2084             : 
+    2085             :   // activate the landing tracker
+    2086             :   {
+    2087           5 :     std::string old_tracker      = sh_control_manager_diag_.getMsg()->active_tracker;
+    2088           5 :     bool        tracker_switched = switchTrackerSrv(_landing_tracker_name_);
+    2089             : 
+    2090             :     // if it fails, activate eland
+    2091             :     // Tomas: I pressume that its more important to get the UAV to the ground rather than
+    2092             :     // just throw out error.
+    2093           5 :     if (!tracker_switched) {
+    2094             : 
+    2095           0 :       std::stringstream ss;
+    2096           0 :       ss << "could not activate '" << _takeoff_tracker_name_ << "' for landing";
+    2097           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2098             : 
+    2099           0 :       elandSrv();
+    2100             : 
+    2101           0 :       return std::tuple(false, ss.str());
+    2102             :     }
+    2103             :   }
+    2104             : 
+    2105             :   // call the landing service
+    2106             :   {
+    2107           5 :     bool land_successful = landSrv();
+    2108             : 
+    2109           5 :     if (land_successful) {
+    2110             : 
+    2111             :       // stop the eventual takeoff
+    2112           5 :       waiting_for_takeoff_ = false;
+    2113           5 :       takingoff_           = false;
+    2114           5 :       timer_takeoff_.stop();
+    2115             : 
+    2116             :       // stop counting the flight time
+    2117           5 :       timer_flighttime_.stop();
+    2118             : 
+    2119          10 :       auto controller_diagnostics = sh_controller_diagnostics_.getMsg();
+    2120             : 
+    2121             :       // remember the last valid mass estimated
+    2122             :       // used during subsequent takeoff
+    2123           5 :       if (controller_diagnostics->mass_estimator) {
+    2124           5 :         last_mass_difference_ = controller_diagnostics->mass_difference;
+    2125             :       }
+    2126             : 
+    2127           5 :       setOdometryCallbacksSrv(false);
+    2128             : 
+    2129           5 :       changeLandingState(LANDING_STATE);
+    2130             : 
+    2131           5 :       throttle_under_threshold_          = false;
+    2132           5 :       throttle_mass_estimate_first_time_ = ros::Time(0);
+    2133             : 
+    2134           5 :       timer_landing_.start();
+    2135             : 
+    2136           5 :       std::stringstream ss;
+    2137           5 :       ss << "landing initiated";
+    2138           5 :       ROS_INFO_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2139             : 
+    2140           5 :       return std::tuple(true, ss.str());
+    2141             : 
+    2142             :     } else {
+    2143             : 
+    2144           0 :       std::stringstream ss;
+    2145           0 :       ss << "could not land";
+    2146           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2147             : 
+    2148           0 :       elandSrv();
+    2149             : 
+    2150           0 :       return std::tuple(false, ss.str());
+    2151             :     }
+    2152             :   }
+    2153             : }
+    2154             : 
+    2155             : //}
+    2156             : 
+    2157             : /* landWithDescendImpl() //{ */
+    2158             : 
+    2159           9 : std::tuple<bool, std::string> UavManager::landWithDescendImpl(void) {
+    2160             : 
+    2161             :   // if the height information is available
+    2162           9 :   if (sh_height_.hasMsg()) {
+    2163             : 
+    2164           9 :     double height = sh_height_.getMsg()->value;
+    2165             : 
+    2166           9 :     if (height > 0 && height >= _landing_descend_height_ + 1.0) {
+    2167             : 
+    2168           4 :       auto odometry = sh_odometry_.getMsg();
+    2169             : 
+    2170           4 :       ungripSrv();
+    2171             : 
+    2172             :       {
+    2173           4 :         std::scoped_lock lock(mutex_land_there_reference_);
+    2174             : 
+    2175             :         // FOR FUTURE ME: Do not change this, we need it to be filled for the final check later
+    2176           4 :         land_there_reference_.header.frame_id      = "";
+    2177           4 :         land_there_reference_.header.stamp         = ros::Time::now();
+    2178           4 :         land_there_reference_.reference.position.x = odometry->pose.pose.position.x;
+    2179           4 :         land_there_reference_.reference.position.y = odometry->pose.pose.position.y;
+    2180           4 :         land_there_reference_.reference.position.z = odometry->pose.pose.position.z - (height - _landing_descend_height_);
+    2181           4 :         land_there_reference_.reference.heading    = mrs_lib::AttitudeConverter(odometry->pose.pose.orientation).getHeading();
+    2182             :       }
+    2183             : 
+    2184           4 :       bool service_success = emergencyReferenceSrv(land_there_reference_);
+    2185             : 
+    2186           4 :       if (service_success) {
+    2187             : 
+    2188           4 :         std::stringstream ss;
+    2189           4 :         ss << "flying down for landing";
+    2190           4 :         ROS_INFO_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2191             : 
+    2192             :         // stop the eventual takeoff
+    2193           4 :         waiting_for_takeoff_ = false;
+    2194           4 :         takingoff_           = false;
+    2195           4 :         timer_takeoff_.stop();
+    2196             : 
+    2197           4 :         changeLandingState(GOTO_STATE);
+    2198             : 
+    2199           4 :         throttle_under_threshold_          = false;
+    2200           4 :         throttle_mass_estimate_first_time_ = ros::Time(0);
+    2201             : 
+    2202           4 :         timer_landing_.start();
+    2203             : 
+    2204           4 :         return std::tuple(true, ss.str());
+    2205             : 
+    2206             :       } else {
+    2207             : 
+    2208           0 :         std::stringstream ss;
+    2209           0 :         ss << "can not fly down for landing";
+    2210           0 :         ROS_ERROR_STREAM("[UavManager]: " << ss.str());
+    2211             :       }
+    2212             :     }
+    2213             :   }
+    2214             : 
+    2215          10 :   auto [success, message] = landImpl();
+    2216             : 
+    2217           5 :   return std::tuple(success, message);
+    2218             : }
+    2219             : 
+    2220             : //}
+    2221             : 
+    2222             : /* midairActivationImpl() //{ */
+    2223             : 
+    2224          65 : std::tuple<bool, std::string> UavManager::midairActivationImpl(void) {
+    2225             : 
+    2226             :   // 1. activate the mid-air activation controller
+    2227             :   // the controller will output hover-like control output
+    2228         130 :   std::string old_controller;
+    2229             :   {
+    2230          65 :     old_controller           = sh_control_manager_diag_.getMsg()->active_controller;
+    2231          65 :     bool controller_switched = switchControllerSrv(_midair_activation_during_controller_);
+    2232             : 
+    2233          65 :     if (!controller_switched) {
+    2234             : 
+    2235           0 :       std::stringstream ss;
+    2236           0 :       ss << "could not activate '" << _midair_activation_during_controller_ << "' for midair activation";
+    2237           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2238             : 
+    2239           0 :       return std::tuple(false, ss.str());
+    2240             :     }
+    2241             :   }
+    2242             : 
+    2243             :   // 2. turn Control Manager's output ON
+    2244             :   {
+    2245          65 :     bool output_enabled = toggleControlOutput(true);
+    2246             : 
+    2247          65 :     if (!output_enabled) {
+    2248             : 
+    2249           1 :       switchControllerSrv(old_controller);
+    2250             : 
+    2251           1 :       std::stringstream ss;
+    2252           1 :       ss << "could not enable Control Manager's output";
+    2253           1 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2254             : 
+    2255           1 :       return std::tuple(false, ss.str());
+    2256             :     }
+    2257             :   }
+    2258             : 
+    2259             :   // 3. activate the mid-air activation tracker
+    2260             :   // this will cause the Control Manager to output something else than min-throttle
+    2261         128 :   std::string old_tracker;
+    2262             :   {
+    2263          64 :     old_tracker = sh_control_manager_diag_.getMsg()->active_tracker;
+    2264             : 
+    2265          64 :     bool tracker_switched = switchTrackerSrv(_midair_activation_during_tracker_);
+    2266             : 
+    2267          64 :     if (!tracker_switched) {
+    2268             : 
+    2269           0 :       switchControllerSrv(old_controller);
+    2270           0 :       toggleControlOutput(false);
+    2271             : 
+    2272           0 :       std::stringstream ss;
+    2273           0 :       ss << "could not activate '" << _midair_activation_during_tracker_ << "' for midair activation";
+    2274           0 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2275             : 
+    2276           0 :       return std::tuple(false, ss.str());
+    2277             :     }
+    2278             :   }
+    2279             : 
+    2280             :   // 4. wait for 50 ms, that should be enough for the Pixhawk to start getting data
+    2281          64 :   ros::Duration(0.05).sleep();
+    2282             : 
+    2283             :   // 5. turn on the OFFBOARD MODE
+    2284             :   // since now, the UAV should be under our control
+    2285             :   {
+    2286          64 :     bool offboard_set = offboardSrv(true);
+    2287             : 
+    2288          64 :     if (!offboard_set) {
+    2289             : 
+    2290           1 :       switchTrackerSrv(old_tracker);
+    2291           1 :       switchControllerSrv(old_controller);
+    2292           1 :       toggleControlOutput(false);
+    2293             : 
+    2294           1 :       std::stringstream ss;
+    2295           1 :       ss << "could not activate offboard mode";
+    2296           1 :       ROS_ERROR_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2297             : 
+    2298           1 :       return std::tuple(false, ss.str());
+    2299             :     }
+    2300             :   }
+    2301             : 
+    2302             :   // remember this time, later check for timeout
+    2303          63 :   midair_activation_started_ = ros::Time::now();
+    2304             : 
+    2305             :   // start the timer which should check if the offboard is on, activate proper controller and tracker or timeout
+    2306          63 :   timer_midair_activation_.start();
+    2307             : 
+    2308          63 :   std::stringstream ss;
+    2309          63 :   ss << "midair activation initiated, starting the timer";
+    2310          63 :   ROS_INFO_STREAM_THROTTLE(1.0, "[UavManager]: " << ss.str());
+    2311             : 
+    2312          63 :   return std::tuple(true, ss.str());
+    2313             : }
+    2314             : 
+    2315             : //}
+    2316             : 
+    2317             : // | ----------------- service client wrappers ---------------- |
+    2318             : 
+    2319             : /* setOdometryCallbacksSrv() //{ */
+    2320             : 
+    2321         110 : void UavManager::setOdometryCallbacksSrv(const bool& input) {
+    2322             : 
+    2323         110 :   ROS_INFO("[UavManager]: switching odometry callbacks to %s", input ? "ON" : "OFF");
+    2324             : 
+    2325         220 :   std_srvs::SetBool srv;
+    2326             : 
+    2327         110 :   srv.request.data = input;
+    2328             : 
+    2329         110 :   bool res = sch_odometry_callbacks_.call(srv);
+    2330             : 
+    2331         110 :   if (res) {
+    2332             : 
+    2333         110 :     if (!srv.response.success) {
+    2334           0 :       ROS_WARN("[UavManager]: service call for toggle odometry callbacks returned: %s.", srv.response.message.c_str());
+    2335             :     }
+    2336             : 
+    2337             :   } else {
+    2338           0 :     ROS_ERROR("[UavManager]: service call for toggle odometry callbacks failed!");
+    2339             :   }
+    2340         110 : }
+    2341             : 
+    2342             : //}
+    2343             : 
+    2344             : /* setControlCallbacksSrv() //{ */
+    2345             : 
+    2346          94 : void UavManager::setControlCallbacksSrv(const bool& input) {
+    2347             : 
+    2348          94 :   ROS_INFO("[UavManager]: switching control callbacks to %s", input ? "ON" : "OFF");
+    2349             : 
+    2350         188 :   std_srvs::SetBool srv;
+    2351             : 
+    2352          94 :   srv.request.data = input;
+    2353             : 
+    2354          94 :   bool res = sch_control_callbacks_.call(srv);
+    2355             : 
+    2356          94 :   if (res) {
+    2357             : 
+    2358          94 :     if (!srv.response.success) {
+    2359           0 :       ROS_WARN("[UavManager]: service call for setting control callbacks returned: %s.", srv.response.message.c_str());
+    2360             :     }
+    2361             : 
+    2362             :   } else {
+    2363           0 :     ROS_ERROR("[UavManager]: service call for setting control callbacks failed!");
+    2364             :   }
+    2365          94 : }
+    2366             : 
+    2367             : //}
+    2368             : 
+    2369             : /* ungripSrv() //{ */
+    2370             : 
+    2371          23 : void UavManager::ungripSrv(void) {
+    2372             : 
+    2373          23 :   ROS_DEBUG_THROTTLE(1.0, "[UavManager]: ungripping payload");
+    2374             : 
+    2375          46 :   std_srvs::Trigger srv;
+    2376             : 
+    2377          23 :   bool res = sch_ungrip_.call(srv);
+    2378             : 
+    2379          23 :   if (res) {
+    2380             : 
+    2381           0 :     if (!srv.response.success) {
+    2382           0 :       ROS_DEBUG_THROTTLE(1.0, "[UavManager]: service call for ungripping payload returned: %s.", srv.response.message.c_str());
+    2383             :     }
+    2384             : 
+    2385             :   } else {
+    2386          23 :     ROS_DEBUG_THROTTLE(1.0, "[UavManager]: service call for ungripping payload failed!");
+    2387             :   }
+    2388          23 : }
+    2389             : 
+    2390             : //}
+    2391             : 
+    2392             : /* toggleControlOutput() //{ */
+    2393             : 
+    2394          68 : bool UavManager::toggleControlOutput(const bool& input) {
+    2395             : 
+    2396          68 :   ROS_DEBUG_THROTTLE(1.0, "[UavManager]: toggling control output %s", input ? "ON" : "OFF");
+    2397             : 
+    2398         136 :   std_srvs::SetBool srv;
+    2399             : 
+    2400          68 :   srv.request.data = input;
+    2401             : 
+    2402          68 :   bool res = sch_toggle_control_output_.call(srv);
+    2403             : 
+    2404          68 :   if (res) {
+    2405             : 
+    2406          67 :     if (!srv.response.success) {
+    2407           0 :       ROS_DEBUG_THROTTLE(1.0, "[UavManager]: service call for control output returned: %s.", srv.response.message.c_str());
+    2408           0 :       return false;
+    2409             :     } else {
+    2410          67 :       return true;
+    2411             :     }
+    2412             : 
+    2413             :   } else {
+    2414           1 :     ROS_DEBUG_THROTTLE(1.0, "[UavManager]: service call for control output failed!");
+    2415           1 :     return false;
+    2416             :   }
+    2417             : }
+    2418             : 
+    2419             : //}
+    2420             : 
+    2421             : /* offboardSrv() //{ */
+    2422             : 
+    2423          64 : bool UavManager::offboardSrv(const bool in) {
+    2424             : 
+    2425          64 :   ROS_DEBUG_THROTTLE(1.0, "[UavManager]: setting offboard to %d", in);
+    2426             : 
+    2427         128 :   std_srvs::Trigger srv;
+    2428             : 
+    2429          64 :   bool res = sch_offboard_.call(srv);
+    2430             : 
+    2431          64 :   if (!res) {
+    2432             : 
+    2433           1 :     ROS_DEBUG_THROTTLE(1.0, "[UavManager]: service call for offboard failed!");
+    2434           1 :     return false;
+    2435             : 
+    2436             :   } else {
+    2437             : 
+    2438          63 :     if (!srv.response.success) {
+    2439           0 :       ROS_DEBUG_THROTTLE(1.0, "[UavManager]: service call for offboard failed, returned: %s", srv.response.message.c_str());
+    2440           0 :       return false;
+    2441             :     } else {
+    2442          63 :       return true;
+    2443             :     }
+    2444             :   }
+    2445             : }
+    2446             : 
+    2447             : //}
+    2448             : 
+    2449             : /* disarmSrv() //{ */
+    2450             : 
+    2451           7 : void UavManager::disarmSrv(void) {
+    2452             : 
+    2453          14 :   std_srvs::SetBool srv;
+    2454             : 
+    2455           7 :   srv.request.data = false;
+    2456             : 
+    2457           7 :   bool res = sch_arm_.call(srv);
+    2458             : 
+    2459           7 :   if (res) {
+    2460             : 
+    2461           7 :     if (!srv.response.success) {
+    2462           0 :       ROS_WARN_THROTTLE(1.0, "[UavManager]: service call disarming returned: %s.", srv.response.message.c_str());
+    2463             :     }
+    2464             : 
+    2465             :   } else {
+    2466           0 :     ROS_ERROR_THROTTLE(1.0, "[UavManager]: service call for disarming failed!");
+    2467             :   }
+    2468           7 : }
+    2469             : 
+    2470             : //}
+    2471             : 
+    2472             : /* switchControllerSrv() //{ */
+    2473             : 
+    2474         177 : bool UavManager::switchControllerSrv(const std::string& controller) {
+    2475             : 
+    2476         177 :   ROS_INFO_STREAM("[UavManager]: activating controller '" << controller << "'");
+    2477             : 
+    2478         354 :   mrs_msgs::String srv;
+    2479         177 :   srv.request.value = controller;
+    2480             : 
+    2481         177 :   bool res = sch_switch_controller_.call(srv);
+    2482             : 
+    2483         177 :   if (res) {
+    2484             : 
+    2485         177 :     if (!srv.response.success) {
+    2486           2 :       ROS_WARN("[UavManager]: service call for switching controller returned: '%s'", srv.response.message.c_str());
+    2487             :     }
+    2488             : 
+    2489         177 :     return srv.response.success;
+    2490             : 
+    2491             :   } else {
+    2492             : 
+    2493           0 :     ROS_ERROR("[UavManager]: service call for switching controller failed!");
+    2494             : 
+    2495           0 :     return false;
+    2496             :   }
+    2497             : }
+    2498             : 
+    2499             : //}
+    2500             : 
+    2501             : /* switchTrackerSrv() //{ */
+    2502             : 
+    2503         178 : bool UavManager::switchTrackerSrv(const std::string& tracker) {
+    2504             : 
+    2505         178 :   ROS_INFO_STREAM("[UavManager]: activating tracker '" << tracker << "'");
+    2506             : 
+    2507             : 
+    2508         356 :   mrs_msgs::String srv;
+    2509         178 :   srv.request.value = tracker;
+    2510             : 
+    2511         178 :   bool res = sch_switch_tracker_.call(srv);
+    2512             : 
+    2513         178 :   if (res) {
+    2514             : 
+    2515         178 :     if (!srv.response.success) {
+    2516           2 :       ROS_WARN("[UavManager]: service call for switching tracker returned: '%s'", srv.response.message.c_str());
+    2517             :     }
+    2518             : 
+    2519         178 :     return srv.response.success;
+    2520             : 
+    2521             :   } else {
+    2522             : 
+    2523           0 :     ROS_ERROR("[UavManager]: service call for switching tracker failed!");
+    2524             : 
+    2525           0 :     return false;
+    2526             :   }
+    2527             : }
+    2528             : 
+    2529             : //}
+    2530             : 
+    2531             : /* landSrv() //{ */
+    2532             : 
+    2533           5 : bool UavManager::landSrv(void) {
+    2534             : 
+    2535           5 :   ROS_INFO("[UavManager]: calling for landing");
+    2536             : 
+    2537          10 :   std_srvs::Trigger srv;
+    2538             : 
+    2539           5 :   bool res = sch_land_.call(srv);
+    2540             : 
+    2541           5 :   if (res) {
+    2542             : 
+    2543           5 :     if (!srv.response.success) {
+    2544           0 :       ROS_WARN("[UavManager]: service call for landing returned: '%s'", srv.response.message.c_str());
+    2545             :     }
+    2546             : 
+    2547           5 :     return srv.response.success;
+    2548             : 
+    2549             :   } else {
+    2550             : 
+    2551           0 :     ROS_ERROR("[UavManager]: service call for landing failed!");
+    2552             : 
+    2553           0 :     return false;
+    2554             :   }
+    2555             : }
+    2556             : 
+    2557             : //}
+    2558             : 
+    2559             : /* elandSrv() //{ */
+    2560             : 
+    2561           1 : bool UavManager::elandSrv(void) {
+    2562             : 
+    2563           1 :   ROS_INFO("[UavManager]: calling for eland");
+    2564             : 
+    2565           2 :   std_srvs::Trigger srv;
+    2566             : 
+    2567           1 :   bool res = sch_eland_.call(srv);
+    2568             : 
+    2569           1 :   if (res) {
+    2570             : 
+    2571           1 :     if (!srv.response.success) {
+    2572           0 :       ROS_WARN("[UavManager]: service call for eland returned: '%s'", srv.response.message.c_str());
+    2573             :     }
+    2574             : 
+    2575           1 :     return srv.response.success;
+    2576             : 
+    2577             :   } else {
+    2578             : 
+    2579           0 :     ROS_ERROR("[UavManager]: service call for eland failed!");
+    2580             : 
+    2581           0 :     return false;
+    2582             :   }
+    2583             : }
+    2584             : 
+    2585             : //}
+    2586             : 
+    2587             : /* ehoverSrv() //{ */
+    2588             : 
+    2589           2 : bool UavManager::ehoverSrv(void) {
+    2590             : 
+    2591           2 :   ROS_INFO("[UavManager]: calling for ehover");
+    2592             : 
+    2593           4 :   std_srvs::Trigger srv;
+    2594             : 
+    2595           2 :   bool res = sch_ehover_.call(srv);
+    2596             : 
+    2597           2 :   if (res) {
+    2598             : 
+    2599           2 :     if (!srv.response.success) {
+    2600           0 :       ROS_WARN("[UavManager]: service call for ehover returned: '%s'", srv.response.message.c_str());
+    2601             :     }
+    2602             : 
+    2603           2 :     return srv.response.success;
+    2604             : 
+    2605             :   } else {
+    2606             : 
+    2607           0 :     ROS_ERROR("[UavManager]: service call for ehover failed!");
+    2608             : 
+    2609           0 :     return false;
+    2610             :   }
+    2611             : }
+    2612             : 
+    2613             : //}
+    2614             : 
+    2615             : /* takeoffSrv() //{ */
+    2616             : 
+    2617          20 : bool UavManager::takeoffSrv(void) {
+    2618             : 
+    2619          20 :   ROS_INFO("[UavManager]: calling for takeoff to height '%.2f m'", _takeoff_height_);
+    2620             : 
+    2621          40 :   mrs_msgs::Vec1 srv;
+    2622             : 
+    2623          20 :   srv.request.goal = _takeoff_height_;
+    2624             : 
+    2625          20 :   bool res = sch_takeoff_.call(srv);
+    2626             : 
+    2627          20 :   if (res) {
+    2628             : 
+    2629          20 :     if (!srv.response.success) {
+    2630           0 :       ROS_WARN("[UavManager]: service call for takeoff returned: '%s'", srv.response.message.c_str());
+    2631             :     }
+    2632             : 
+    2633          20 :     return srv.response.success;
+    2634             : 
+    2635             :   } else {
+    2636             : 
+    2637           0 :     ROS_ERROR("[UavManager]: service call for takeoff failed!");
+    2638             : 
+    2639           0 :     return false;
+    2640             :   }
+    2641             : }
+    2642             : 
+    2643             : //}
+    2644             : 
+    2645             : /* emergencyReferenceSrv() //{ */
+    2646             : 
+    2647          93 : bool UavManager::emergencyReferenceSrv(const mrs_msgs::ReferenceStamped& goal) {
+    2648             : 
+    2649          93 :   ROS_INFO_THROTTLE(1.0, "[UavManager]: calling for emergency reference");
+    2650             : 
+    2651         186 :   mrs_msgs::ReferenceStampedSrv srv;
+    2652             : 
+    2653          93 :   srv.request.header    = goal.header;
+    2654          93 :   srv.request.reference = goal.reference;
+    2655             : 
+    2656          93 :   bool res = sch_emergency_reference_.call(srv);
+    2657             : 
+    2658          93 :   if (res) {
+    2659             : 
+    2660          93 :     if (!srv.response.success) {
+    2661           0 :       ROS_WARN_THROTTLE(1.0, "[UavManager]: service call for emergency reference returned: '%s'", srv.response.message.c_str());
+    2662             :     }
+    2663             : 
+    2664          93 :     return srv.response.success;
+    2665             : 
+    2666             :   } else {
+    2667             : 
+    2668           0 :     ROS_ERROR_THROTTLE(1.0, "[UavManager]: service call for emergency reference failed!");
+    2669             : 
+    2670           0 :     return false;
+    2671             :   }
+    2672             : }
+    2673             : 
+    2674             : //}
+    2675             : 
+    2676             : }  // namespace uav_manager
+    2677             : 
+    2678             : }  // namespace mrs_uav_managers
+    2679             : 
+    2680             : #include <pluginlib/class_list_macros.h>
+    2681          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_managers::uav_manager::UavManager, nodelet::Nodelet)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_managers/src/uav_manager.cpp.gcov.overview.html b/mrs_uav_managers/src/uav_manager.cpp.gcov.overview.html new file mode 100644 index 0000000000..ce3c1f472f --- /dev/null +++ b/mrs_uav_managers/src/uav_manager.cpp.gcov.overview.html @@ -0,0 +1,691 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_managers/src/uav_manager.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview 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+ Overview +
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl - garmin_agl.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:33100.0 %
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mrs_uav_state_estimators::garmin_agl::GarminAgl::GarminAgl()70
mrs_uav_state_estimators::garmin_agl::GarminAgl::~GarminAgl()70
mrs_uav_state_estimators::garmin_agl::GarminAgl::~GarminAgl().270
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h.func.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h.func.html new file mode 100644 index 0000000000..8e0e0d8205 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h.func.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h - functions + + + + + + + + + + + + + + +
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mrs_uav_state_estimators::garmin_agl::GarminAgl::GarminAgl()70
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mrs_uav_state_estimators::garmin_agl::GarminAgl::~GarminAgl().270
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h.gcov.frameset.html new file mode 100644 index 0000000000..4e43b37ae4 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h.gcov.html new file mode 100644 index 0000000000..737aec33c6 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h.gcov.html @@ -0,0 +1,159 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl/garmin_agl.h + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/agl - garmin_agl.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:33100.0 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #ifndef ESTIMATORS_STATE_GARMIN_AGL_H
+       2             : #define ESTIMATORS_STATE_GARMIN_AGL_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <mrs_msgs/Float64Stamped.h>
+       9             : 
+      10             : #include <mrs_lib/lkf.h>
+      11             : #include <mrs_lib/profiler.h>
+      12             : #include <mrs_lib/param_loader.h>
+      13             : #include <mrs_lib/subscribe_handler.h>
+      14             : #include <mrs_lib/publisher_handler.h>
+      15             : #include <mrs_lib/attitude_converter.h>
+      16             : #include <mrs_lib/transformer.h>
+      17             : 
+      18             : #include <mrs_uav_managers/agl_estimator.h>
+      19             : 
+      20             : #include <mrs_uav_state_estimators/estimators/altitude/alt_generic.h>
+      21             : 
+      22             : //}
+      23             : 
+      24             : namespace mrs_uav_state_estimators
+      25             : {
+      26             : 
+      27             : namespace garmin_agl
+      28             : {
+      29             : const char name[]         = "garmin_agl";
+      30             : const char frame_id[]     = "garmin_agl_origin";
+      31             : const char package_name[] = "mrs_uav_state_estimators";
+      32             : 
+      33             : const bool is_core_plugin = true;
+      34             : 
+      35             : class GarminAgl : public mrs_uav_managers::AglEstimator {
+      36             : 
+      37             : private:
+      38             :   std::unique_ptr<AltGeneric> est_agl_garmin_;
+      39             :   const std::string           est_agl_name_ = "garmin_agl";
+      40             : 
+      41             :   const bool is_core_plugin_;
+      42             : 
+      43             :   ros::Timer timer_update_;
+      44             :   int        _update_timer_rate_;
+      45             :   void       timerUpdate(const ros::TimerEvent &event);
+      46             : 
+      47             :   ros::Timer timer_check_health_;
+      48             :   int        _check_health_timer_rate_;
+      49             :   void       timerCheckHealth(const ros::TimerEvent &event);
+      50             : 
+      51             :   bool isConverged();
+      52             : 
+      53             :   void waitForEstimationInitialization();
+      54             : 
+      55             : public:
+      56          70 :   GarminAgl() : AglEstimator(garmin_agl::name, garmin_agl::frame_id, garmin_agl::package_name), is_core_plugin_(is_core_plugin) {
+      57          70 :   }
+      58             : 
+      59         140 :   ~GarminAgl(void) {
+      60         140 :   }
+      61             : 
+      62             :   void initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) override;
+      63             :   bool start(void) override;
+      64             :   bool pause(void) override;
+      65             :   bool reset(void) override;
+      66             : 
+      67             :   mrs_msgs::Float64Stamped getUavAglHeight() const override;
+      68             :   std::vector<double>      getHeightCovariance() const override;
+      69             : };
+      70             : 
+      71             : }  // namespace garmin_agl
+      72             : 
+      73             : }  // namespace mrs_uav_state_estimators
+      74             : 
+      75             : #endif  // ESTIMATORS_STATE_GARMIN_AGL_H
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mrs_uav_state_estimators::AltGeneric::AltGeneric(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)167
mrs_uav_state_estimators::AltGeneric::~AltGeneric()167
mrs_uav_state_estimators::AltGeneric::~AltGeneric().2167
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mrs_uav_state_estimators::AltGeneric::AltGeneric(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)167
mrs_uav_state_estimators::AltGeneric::~AltGeneric()167
mrs_uav_state_estimators::AltGeneric::~AltGeneric().2167
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Date:2024-04-17 23:52:03Functions:33100.0 %
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+
          Line data    Source code
+
+       1             : #ifndef ESTIMATORS_ALTITUDE_ALT_GENERIC_H
+       2             : #define ESTIMATORS_ALTITUDE_ALT_GENERIC_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <nav_msgs/Odometry.h>
+       9             : #include <sensor_msgs/Range.h>
+      10             : 
+      11             : #include <mrs_lib/lkf.h>
+      12             : #include <mrs_lib/repredictor.h>
+      13             : #include <mrs_lib/profiler.h>
+      14             : #include <mrs_lib/param_loader.h>
+      15             : #include <mrs_lib/subscribe_handler.h>
+      16             : 
+      17             : #include <functional>
+      18             : 
+      19             : #include <mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h>
+      20             : #include <mrs_uav_state_estimators/estimators/correction.h>
+      21             : 
+      22             : #include <mrs_uav_state_estimators/AltitudeEstimatorConfig.h>
+      23             : 
+      24             : //}
+      25             : 
+      26             : namespace mrs_uav_state_estimators
+      27             : {
+      28             : 
+      29             : namespace alt_generic
+      30             : {
+      31             : 
+      32             : const int n_states       = 3;
+      33             : const int n_inputs       = 1;
+      34             : const int n_measurements = 1;
+      35             : 
+      36             : }  // namespace alt_generic
+      37             : 
+      38             : class AltGeneric : public AltitudeEstimator<alt_generic::n_states> {
+      39             : 
+      40             :   const std::string package_name_ = "mrs_uav_state_estimators";
+      41             : 
+      42             :   typedef mrs_lib::DynamicReconfigureMgr<AltitudeEstimatorConfig> drmgr_t;
+      43             : 
+      44             :   using lkf_t         = mrs_lib::LKF<alt_generic::n_states, alt_generic::n_inputs, alt_generic::n_measurements>;
+      45             :   using varstep_lkf_t = mrs_lib::varstepLKF<alt_generic::n_states, alt_generic::n_inputs, alt_generic::n_measurements>;
+      46             :   using A_t           = lkf_t::A_t;
+      47             :   using B_t           = lkf_t::B_t;
+      48             :   using H_t           = lkf_t::H_t;
+      49             :   using Q_t           = lkf_t::Q_t;
+      50             :   using x_t           = lkf_t::x_t;
+      51             :   using P_t           = lkf_t::P_t;
+      52             :   using u_t           = lkf_t::u_t;
+      53             :   using z_t           = lkf_t::z_t;
+      54             :   using R_t           = lkf_t::R_t;
+      55             :   using statecov_t    = lkf_t::statecov_t;
+      56             : 
+      57             :   typedef mrs_lib::Repredictor<varstep_lkf_t> rep_lkf_t;
+      58             : 
+      59             :   using StateId_t = mrs_uav_managers::estimation_manager::StateId_t;
+      60             : 
+      61             : private:
+      62             :   std::string parent_state_est_name_;
+      63             : 
+      64             :   double                                      dt_;
+      65             :   double                                      input_coeff_, default_input_coeff_;
+      66             :   A_t                                         A_;
+      67             :   B_t                                         B_;
+      68             :   H_t                                         H_;
+      69             :   Q_t                                         Q_;
+      70             :   std::shared_ptr<lkf_t>                      lkf_;
+      71             :   std::unique_ptr<rep_lkf_t>                  lkf_rep_;
+      72             :   std::vector<std::shared_ptr<varstep_lkf_t>> models_;
+      73             :   mutable std::mutex                          mutex_lkf_;
+      74             :   statecov_t                                  sc_;
+      75             :   mutable std::mutex                          mutex_sc_;
+      76             : 
+      77             :   std::unique_ptr<drmgr_t> drmgr_;
+      78             :   void                     callbackReconfigure(AltitudeEstimatorConfig &config, [[maybe_unused]] uint32_t level);
+      79             : 
+      80             :   z_t                innovation_;
+      81             :   mutable std::mutex mtx_innovation_;
+      82             : 
+      83             :   bool          is_error_state_first_time_ = true;
+      84             :   ros::Duration error_state_duration_;
+      85             :   ros::Time     prev_time_in_error_state_;
+      86             : 
+      87             :   bool is_repredictor_enabled_;
+      88             :   int  rep_buffer_size_ = 200;
+      89             : 
+      90             :   const bool is_core_plugin_;
+      91             : 
+      92             :   std::vector<std::string>                                              correction_names_;
+      93             :   std::vector<std::shared_ptr<Correction<alt_generic::n_measurements>>> corrections_;
+      94             : 
+      95             :   mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput> sh_control_input_;
+      96             :   void                                                timeoutCallback(const std::string &topic, const ros::Time &last_msg);
+      97             :   std::atomic<bool>                                   is_input_ready_ = false;
+      98             : 
+      99             :   ros::Timer timer_update_;
+     100             :   void       timerUpdate(const ros::TimerEvent &event);
+     101             : 
+     102             :   ros::Timer timer_check_health_;
+     103             :   void       timerCheckHealth(const ros::TimerEvent &event);
+     104             : 
+     105             :   void doCorrection(const Correction<alt_generic::n_measurements>::MeasurementStamped &meas, const double R, const StateId_t &state_id);
+     106             :   void doCorrection(const z_t &z, const double R, const StateId_t &H_idx, const ros::Time &meas_stamp);
+     107             : 
+     108             :   bool isConverged();
+     109             : 
+     110             :   Q_t                getQ();
+     111             :   mutable std::mutex mtx_Q_;
+     112             : 
+     113             : public:
+     114         167 :   AltGeneric(const std::string &name, const std::string &ns_frame_id, const std::string &parent_state_est_name, const bool is_core_plugin)
+     115         167 :       : AltitudeEstimator<alt_generic::n_states>(name, ns_frame_id), parent_state_est_name_(parent_state_est_name), is_core_plugin_(is_core_plugin) {
+     116         167 :   }
+     117             : 
+     118         334 :   ~AltGeneric(void) {
+     119         334 :   }
+     120             : 
+     121             :   void initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) override;
+     122             :   bool start(void) override;
+     123             :   bool pause(void) override;
+     124             :   bool reset(void) override;
+     125             : 
+     126             :   double getState(const int &state_idx_in) const override;
+     127             :   double getState(const int &state_id_in, const int &axis_in) const override;
+     128             : 
+     129             :   void setState(const double &state_in, const int &state_idx_in) override;
+     130             :   void setState(const double &state_in, const int &state_id_in, const int &axis_in) override;
+     131             : 
+     132             :   states_t getStates(void) const override;
+     133             :   void     setStates(const states_t &states_in) override;
+     134             : 
+     135             :   double getCovariance(const int &state_idx_in) const override;
+     136             :   double getCovariance(const int &state_id_in, const int &axis_in) const override;
+     137             : 
+     138             :   covariance_t getCovarianceMatrix(void) const override;
+     139             :   void         setCovarianceMatrix(const covariance_t &cov_in) override;
+     140             : 
+     141             :   double getInnovation(const int &state_idx) const override;
+     142             :   double getInnovation(const int &state_id_in, const int &axis_in) const override;
+     143             : 
+     144             :   void setDt(const double &dt);
+     145             :   void setInputCoeff(const double &input_coeff);
+     146             : 
+     147             :   void generateRepredictorModels(const double input_coeff);
+     148             : 
+     149             :   void generateA();
+     150             :   void generateB();
+     151             : 
+     152             :   void timeoutOdom(const std::string &topic, const ros::Time &last_msg, const int n_pubs);
+     153             :   void timeoutRange(const std::string &topic, const ros::Time &last_msg, const int n_pubs);
+     154             : 
+     155             :   std::string getNamespacedName() const;
+     156             : 
+     157             :   std::string getPrintName() const;
+     158             : };
+     159             : }  // namespace mrs_uav_state_estimators
+     160             : 
+     161             : #endif  // ESTIMATORS_ALTITUDE_ALT_GENERIC_H
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/alt_generic.h.gcov.overview.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/alt_generic.h.gcov.overview.html new file mode 100644 index 0000000000..85adff98de --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/alt_generic.h.gcov.overview.html @@ -0,0 +1,61 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/alt_generic.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/alt_generic.h.gcov.png b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/alt_generic.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..dcf0f4a027a6ab756dec1329ddcee71c4cae2957 GIT binary patch literal 688 zcmV;h0#E&kP)bm(Ppe}^qLnGb+F$2vKD02Gn zh($1dgra5Z8E?E&cRG}^Kx#yMfS#cr8p4)R${TUN=r@|=k$axQF7Ej(BA)90}BGAm^jcLl0&P&><5?5@?l)W15 z*ceT@60t-DKw?Uo)d&Z34^8KOsIJS88X1*Zxdf%Fo*cRt+v{ zz{VnN=>k`O353Z4;lz0bk%xtVdKj)gkW5@kI5QgK1#1)T1NCV5ExZAu!6Gf-yUk(o zI_q696*4h1pK!os(Q5%Z&B8@AX`^Yse#EiF#jklyiXJZuc49O|P?=mpMt2K+B4&}! zDxRsQYO{&!#ej+FIWojMZCbMd#E!FR5=8x3=)}zT{5YwaS~4UJFz(3@Jo&slhq@gc zRlV#zM0B&hYSzt`XtsK>y-#`N|2_WR`Tsn3+qUg*EH8d=+rF8^*);g*{x-0$lK(o|Y&0b=W0s!=7T&CEV>Oy!9ePcyge|x|(9`l-aMLnFyWzjy1 z9kVSV@LD0}Sxbt6RK_&i8dzK_FLFMex4`W9Oz}Zykn(SMU9|PPztmjnaL`kYvE`jB zAM+>D)!$NuGqnlj6xLY@*6Y0R)+;pj!HIF@(PL*ABk5r>>k*&qo>xvX(Os97EA9_V W6RZS^kluj+0000 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude - altitude_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:2366.7 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::AltitudeEstimator<3>::~AltitudeEstimator()0
mrs_uav_state_estimators::AltitudeEstimator<3>::AltitudeEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)167
mrs_uav_state_estimators::AltitudeEstimator<3>::~AltitudeEstimator().2167
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.func.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.func.html new file mode 100644 index 0000000000..41d0b66be8 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.func.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude - altitude_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:2366.7 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::AltitudeEstimator<3>::AltitudeEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)167
mrs_uav_state_estimators::AltitudeEstimator<3>::~AltitudeEstimator()0
mrs_uav_state_estimators::AltitudeEstimator<3>::~AltitudeEstimator().2167
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.gcov.frameset.html new file mode 100644 index 0000000000..c89e621d6c --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.gcov.html new file mode 100644 index 0000000000..017f5dd032 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.gcov.html @@ -0,0 +1,130 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude - altitude_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:2366.7 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #pragma once
+       2             : #ifndef ESTIMATORS_ALTITUDE_ALTITUDE_ESTIMATOR_H
+       3             : #define ESTIMATORS_ALTITUDE_ALTITUDE_ESTIMATOR_H
+       4             : 
+       5             : /* includes //{ */
+       6             : 
+       7             : #include <mrs_uav_state_estimators/estimators/partial_estimator.h>
+       8             : 
+       9             : //}
+      10             : 
+      11             : namespace mrs_uav_state_estimators
+      12             : {
+      13             : 
+      14             : namespace altitude
+      15             : {
+      16             : const char type[] = "ALTITUDE";
+      17             : 
+      18             : typedef enum
+      19             : {
+      20             :   ODOMETRY,
+      21             :   RANGE
+      22             : } MeasurementType_t;
+      23             : 
+      24             : }  // namespace altitude
+      25             : 
+      26             : template <int n_states>
+      27             : class AltitudeEstimator : public PartialEstimator<n_states, 1> {
+      28             : 
+      29             : protected:
+      30         167 :   AltitudeEstimator(const std::string& name, const std::string& frame_id) : PartialEstimator<n_states, 1>(altitude::type, name, frame_id) {
+      31         167 :   }
+      32             : 
+      33         167 :   virtual ~AltitudeEstimator(void) {
+      34         167 :   }
+      35             : 
+      36             : 
+      37             : private:
+      38             :   static const int _n_axes_   = 1;
+      39             :   static const int _n_states_ = n_states;
+      40             :   static const int _n_inputs_;
+      41             :   static const int _n_measurements_;
+      42             : };
+      43             : 
+      44             : }  // namespace mrs_uav_state_estimators
+      45             : 
+      46             : #endif  // ESTIMATORS_ALTITUDE_ALTITUDE_ESTIMATOR_H
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.gcov.overview.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.gcov.overview.html new file mode 100644 index 0000000000..90f903e2e9 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.gcov.overview.html @@ -0,0 +1,32 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.gcov.png b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/altitude_estimator.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..073c144eb9b7fd83c98f25c4b8ee68b76b771829 GIT binary patch literal 295 zcmeAS@N?(olHy`uVBq!ia0vp^0YI$B!VDyR#hdkklth3}i0l9V|5pLQ^7pZ^ul_SI ztOAOIsdL_&mjc_7hJ zpPIm+6jaE2@rX$-yY!@v4IF1DcGzC)G&r(S?f--q#;aZk+!wv66Ek(YMkDcSrxo*i_1-pY!}fjJhOH86XRDi kH_kk+@!`k+9d9o(CNo-GFMMqo0`vfbr>mdKI;Vst08ROJ-T(jq literal 0 HcmV?d00001 diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-detail-sort-f.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-detail-sort-f.html new file mode 100644 index 0000000000..12b79b469c --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-detail-sort-f.html @@ -0,0 +1,128 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitudeHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:99100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
altitude_estimator.h +
100.0%
+
100.0 %4 / 466.7 %2 / 3
<unnamed>100.0 %4 / 466.7 %2 / 3
alt_generic.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
<unnamed>100.0 %5 / 5100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-detail-sort-l.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-detail-sort-l.html new file mode 100644 index 0000000000..f4df9565d8 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-detail-sort-l.html @@ -0,0 +1,128 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitudeHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:99100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
altitude_estimator.h +
100.0%
+
100.0 %4 / 466.7 %2 / 3
<unnamed>100.0 %4 / 466.7 %2 / 3
alt_generic.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
<unnamed>100.0 %5 / 5100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-detail.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-detail.html new file mode 100644 index 0000000000..a463631305 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-detail.html @@ -0,0 +1,128 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitudeHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:99100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
alt_generic.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
<unnamed>100.0 %5 / 5100.0 %3 / 3
altitude_estimator.h +
100.0%
+
100.0 %4 / 466.7 %2 / 3
<unnamed>100.0 %4 / 466.7 %2 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-sort-f.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-sort-f.html new file mode 100644 index 0000000000..c77724b91e --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-sort-f.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitudeHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:99100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
altitude_estimator.h +
100.0%
+
100.0 %4 / 466.7 %2 / 3
alt_generic.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-sort-l.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-sort-l.html new file mode 100644 index 0000000000..84d90efb49 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index-sort-l.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitudeHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:99100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
altitude_estimator.h +
100.0%
+
100.0 %4 / 466.7 %2 / 3
alt_generic.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index.html new file mode 100644 index 0000000000..6ccc6c3d9e --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude/index.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitude + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/altitudeHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:99100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
alt_generic.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
altitude_estimator.h +
100.0%
+
100.0 %4 / 466.7 %2 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.func-sort-c.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.func-sort-c.html new file mode 100644 index 0000000000..e708b31429 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.func-sort-c.html @@ -0,0 +1,364 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators - correction.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:37472551.6 %
Date:2024-04-17 23:52:03Functions:477166.2 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::Correction<1>::callbackImu(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::callbackPoint(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getVecInFrame(geometry_msgs::Vector3_<std::allocator<void> > const&, std_msgs::Header_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)0
mrs_uav_state_estimators::Correction<1>::callbackOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::callbackPoseStamped(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::callbackToggleRange(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_state_estimators::Correction<1>::getCorrectionFromImu(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getCorrectionFromQuat(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getCorrectionFromPoint(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getCorrectionFromOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getCorrectionFromPoseStamped(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::callbackImu(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::callbackRange(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getAvgRtkInitZ(double)0
mrs_uav_state_estimators::Correction<2>::getZVelUntilted(geometry_msgs::Vector3_<std::allocator<void> > const&, std_msgs::Header_<std::allocator<void> > const&)0
mrs_uav_state_estimators::Correction<2>::resetProcessors()0
mrs_uav_state_estimators::Correction<2>::callbackOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::callbackPoseStamped(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::callbackToggleRange(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_state_estimators::Correction<2>::getCorrectionFromImu(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getCorrectionFromQuat(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getCorrectionFromRange(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getCorrectionFromOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getCorrectionFromPoseStamped(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getAvgRtkInitZ(double)22
mrs_uav_state_estimators::Correction<2>::createProcessorFromName(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::NodeHandle&)97
mrs_uav_state_estimators::Correction<2>::Correction(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_uav_state_estimators::EstimatorType_t const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&, std::function<double (int, int)>, std::function<void (mrs_uav_state_estimators::Correction<2>::MeasurementStamped, double, mrs_uav_managers::estimation_manager::StateId_t)>)101
mrs_uav_state_estimators::Correction<2>::getName[abi:cxx11]() const202
mrs_uav_state_estimators::Correction<2>::getPrintName[abi:cxx11]() const208
mrs_uav_state_estimators::Correction<1>::createProcessorFromName(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::NodeHandle&)230
mrs_uav_state_estimators::Correction<1>::Correction(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_uav_state_estimators::EstimatorType_t const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&, std::function<double (int, int)>, std::function<void (mrs_uav_state_estimators::Correction<1>::MeasurementStamped, double, mrs_uav_managers::estimation_manager::StateId_t)>)245
mrs_uav_state_estimators::Correction<2>::getNamespacedName[abi:cxx11]() const434
mrs_uav_state_estimators::Correction<1>::getName[abi:cxx11]() const490
mrs_uav_state_estimators::Correction<1>::getPrintName[abi:cxx11]() const559
mrs_uav_state_estimators::Correction<1>::getNamespacedName[abi:cxx11]() const969
mrs_uav_state_estimators::Correction<1>::callbackRtk(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)2530
mrs_uav_state_estimators::Correction<1>::getCorrectionFromRtk(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)2555
mrs_uav_state_estimators::Correction<1>::transformRtkToFcu(geometry_msgs::PoseStamped_<std::allocator<void> > const&) const2555
mrs_uav_state_estimators::Correction<2>::callbackRtk(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)5349
mrs_uav_state_estimators::Correction<2>::transformRtkToFcu(geometry_msgs::PoseStamped_<std::allocator<void> > const&) const5422
mrs_uav_state_estimators::Correction<2>::getCorrectionFromRtk(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)5424
mrs_uav_state_estimators::Correction<2>::getRawCorrection()6466
mrs_uav_state_estimators::Correction<2>::getProcessedCorrection()6466
mrs_uav_state_estimators::Correction<1>::getRawCorrection()8315
mrs_uav_state_estimators::Correction<1>::getProcessedCorrection()8315
mrs_uav_state_estimators::Correction<2>::callbackVector(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)10641
mrs_uav_state_estimators::Correction<2>::getCorrectionFromVector(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)10673
mrs_uav_state_estimators::Correction<2>::getVecInFrame(geometry_msgs::Vector3_<std::allocator<void> > const&, std_msgs::Header_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)10676
mrs_uav_state_estimators::Correction<2>::callbackPoint(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)181189
mrs_uav_state_estimators::Correction<2>::getCorrectionFromPoint(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)184893
mrs_uav_state_estimators::Correction<1>::callbackVector(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)188639
mrs_uav_state_estimators::Correction<1>::getZVelUntilted(geometry_msgs::Vector3_<std::allocator<void> > const&, std_msgs::Header_<std::allocator<void> > const&)188717
mrs_uav_state_estimators::Correction<1>::getCorrectionFromVector(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)188728
mrs_uav_state_estimators::Correction<2>::setR(double)193632
mrs_uav_state_estimators::Correction<2>::getStateId() const193902
mrs_uav_state_estimators::Correction<2>::applyCorrection(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, ros::Time const&)197158
mrs_uav_state_estimators::Correction<2>::isHealthy()197267
mrs_uav_state_estimators::Correction<2>::isMsgComing()197269
mrs_uav_state_estimators::Correction<2>::process(Eigen::Matrix<double, 2, 1, 0, 2, 1>&)201001
mrs_uav_state_estimators::Correction<1>::callbackRange(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)259486
mrs_uav_state_estimators::Correction<1>::getCorrectionFromRange(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)263218
mrs_uav_state_estimators::Correction<2>::publishCorrection(mrs_uav_state_estimators::Correction<2>::MeasurementStamped const&, mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >&)394613
mrs_uav_state_estimators::Correction<1>::setR(double)446625
mrs_uav_state_estimators::Correction<1>::getStateId() const446631
mrs_uav_state_estimators::Correction<1>::applyCorrection(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&)450236
mrs_uav_state_estimators::Correction<1>::process(Eigen::Matrix<double, 1, 1, 0, 1, 1>&)454145
mrs_uav_state_estimators::Correction<1>::isHealthy()477401
mrs_uav_state_estimators::Correction<1>::isMsgComing()477411
mrs_uav_state_estimators::Correction<1>::publishCorrection(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >&)900720
mrs_uav_state_estimators::Correction<2>::getR()982376
mrs_uav_state_estimators::Correction<1>::getR()1346937
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.func.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.func.html new file mode 100644 index 0000000000..23a3ce3e0b --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.func.html @@ -0,0 +1,364 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators - correction.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:37472551.6 %
Date:2024-04-17 23:52:03Functions:477166.2 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::Correction<1>::callbackImu(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::callbackRtk(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)2530
mrs_uav_state_estimators::Correction<1>::isMsgComing()477411
mrs_uav_state_estimators::Correction<1>::callbackPoint(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::callbackRange(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)259486
mrs_uav_state_estimators::Correction<1>::getVecInFrame(geometry_msgs::Vector3_<std::allocator<void> > const&, std_msgs::Header_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)0
mrs_uav_state_estimators::Correction<1>::callbackVector(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)188639
mrs_uav_state_estimators::Correction<1>::getAvgRtkInitZ(double)22
mrs_uav_state_estimators::Correction<1>::applyCorrection(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&)450236
mrs_uav_state_estimators::Correction<1>::getZVelUntilted(geometry_msgs::Vector3_<std::allocator<void> > const&, std_msgs::Header_<std::allocator<void> > const&)188717
mrs_uav_state_estimators::Correction<1>::callbackOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getRawCorrection()8315
mrs_uav_state_estimators::Correction<1>::publishCorrection(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >&)900720
mrs_uav_state_estimators::Correction<1>::callbackPoseStamped(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::callbackToggleRange(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_state_estimators::Correction<1>::getCorrectionFromImu(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getCorrectionFromRtk(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)2555
mrs_uav_state_estimators::Correction<1>::getCorrectionFromQuat(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getCorrectionFromPoint(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getCorrectionFromRange(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)263218
mrs_uav_state_estimators::Correction<1>::getProcessedCorrection()8315
mrs_uav_state_estimators::Correction<1>::createProcessorFromName(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::NodeHandle&)230
mrs_uav_state_estimators::Correction<1>::getCorrectionFromVector(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)188728
mrs_uav_state_estimators::Correction<1>::getCorrectionFromOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getCorrectionFromPoseStamped(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<1>::getR()1346937
mrs_uav_state_estimators::Correction<1>::setR(double)446625
mrs_uav_state_estimators::Correction<1>::process(Eigen::Matrix<double, 1, 1, 0, 1, 1>&)454145
mrs_uav_state_estimators::Correction<1>::isHealthy()477401
mrs_uav_state_estimators::Correction<1>::Correction(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_uav_state_estimators::EstimatorType_t const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&, std::function<double (int, int)>, std::function<void (mrs_uav_state_estimators::Correction<1>::MeasurementStamped, double, mrs_uav_managers::estimation_manager::StateId_t)>)245
mrs_uav_state_estimators::Correction<2>::callbackImu(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::callbackRtk(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)5349
mrs_uav_state_estimators::Correction<2>::isMsgComing()197269
mrs_uav_state_estimators::Correction<2>::callbackPoint(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)181189
mrs_uav_state_estimators::Correction<2>::callbackRange(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getVecInFrame(geometry_msgs::Vector3_<std::allocator<void> > const&, std_msgs::Header_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> >)10676
mrs_uav_state_estimators::Correction<2>::callbackVector(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)10641
mrs_uav_state_estimators::Correction<2>::getAvgRtkInitZ(double)0
mrs_uav_state_estimators::Correction<2>::applyCorrection(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, ros::Time const&)197158
mrs_uav_state_estimators::Correction<2>::getZVelUntilted(geometry_msgs::Vector3_<std::allocator<void> > const&, std_msgs::Header_<std::allocator<void> > const&)0
mrs_uav_state_estimators::Correction<2>::resetProcessors()0
mrs_uav_state_estimators::Correction<2>::callbackOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getRawCorrection()6466
mrs_uav_state_estimators::Correction<2>::publishCorrection(mrs_uav_state_estimators::Correction<2>::MeasurementStamped const&, mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection_<std::allocator<void> > >&)394613
mrs_uav_state_estimators::Correction<2>::callbackPoseStamped(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::callbackToggleRange(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_state_estimators::Correction<2>::getCorrectionFromImu(boost::shared_ptr<sensor_msgs::Imu_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getCorrectionFromRtk(boost::shared_ptr<mrs_msgs::RtkGps_<std::allocator<void> > const>)5424
mrs_uav_state_estimators::Correction<2>::getCorrectionFromQuat(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getCorrectionFromPoint(boost::shared_ptr<geometry_msgs::PointStamped_<std::allocator<void> > const>)184893
mrs_uav_state_estimators::Correction<2>::getCorrectionFromRange(boost::shared_ptr<sensor_msgs::Range_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getProcessedCorrection()6466
mrs_uav_state_estimators::Correction<2>::createProcessorFromName(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, ros::NodeHandle&)97
mrs_uav_state_estimators::Correction<2>::getCorrectionFromVector(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)10673
mrs_uav_state_estimators::Correction<2>::getCorrectionFromOdometry(boost::shared_ptr<nav_msgs::Odometry_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getCorrectionFromPoseStamped(boost::shared_ptr<geometry_msgs::PoseStamped_<std::allocator<void> > const>)0
mrs_uav_state_estimators::Correction<2>::getR()982376
mrs_uav_state_estimators::Correction<2>::setR(double)193632
mrs_uav_state_estimators::Correction<2>::process(Eigen::Matrix<double, 2, 1, 0, 2, 1>&)201001
mrs_uav_state_estimators::Correction<2>::isHealthy()197267
mrs_uav_state_estimators::Correction<2>::Correction(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, mrs_uav_state_estimators::EstimatorType_t const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&, std::function<double (int, int)>, std::function<void (mrs_uav_state_estimators::Correction<2>::MeasurementStamped, double, mrs_uav_managers::estimation_manager::StateId_t)>)101
mrs_uav_state_estimators::Correction<1>::getStateId() const446631
mrs_uav_state_estimators::Correction<1>::getPrintName[abi:cxx11]() const559
mrs_uav_state_estimators::Correction<1>::getNamespacedName[abi:cxx11]() const969
mrs_uav_state_estimators::Correction<1>::transformRtkToFcu(geometry_msgs::PoseStamped_<std::allocator<void> > const&) const2555
mrs_uav_state_estimators::Correction<1>::getName[abi:cxx11]() const490
mrs_uav_state_estimators::Correction<2>::getStateId() const193902
mrs_uav_state_estimators::Correction<2>::getPrintName[abi:cxx11]() const208
mrs_uav_state_estimators::Correction<2>::getNamespacedName[abi:cxx11]() const434
mrs_uav_state_estimators::Correction<2>::transformRtkToFcu(geometry_msgs::PoseStamped_<std::allocator<void> > const&) const5422
mrs_uav_state_estimators::Correction<2>::getName[abi:cxx11]() const202
+
+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.gcov.frameset.html new file mode 100644 index 0000000000..3b2b9aa9cc --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.gcov.html new file mode 100644 index 0000000000..4a66a5b6d0 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.gcov.html @@ -0,0 +1,1944 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators - correction.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:37472551.6 %
Date:2024-04-17 23:52:03Functions:477166.2 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #pragma once
+       2             : #ifndef ESTIMATORS_CORRECTION_H
+       3             : #define ESTIMATORS_CORRECTION_H
+       4             : 
+       5             : #include <Eigen/Dense>
+       6             : 
+       7             : #include <mrs_lib/subscribe_handler.h>
+       8             : #include <mrs_lib/publisher_handler.h>
+       9             : #include <mrs_lib/attitude_converter.h>
+      10             : #include <mrs_lib/param_loader.h>
+      11             : #include <mrs_lib/dynamic_reconfigure_mgr.h>
+      12             : #include <mrs_lib/gps_conversions.h>
+      13             : #include <mrs_lib/mutex.h>
+      14             : #include <mrs_lib/geometry/cyclic.h>
+      15             : 
+      16             : #include <mrs_msgs/RtkGps.h>
+      17             : #include <mrs_msgs/EstimatorCorrection.h>
+      18             : #include <mrs_msgs/Float64Stamped.h>
+      19             : 
+      20             : #include <sensor_msgs/Range.h>
+      21             : #include <sensor_msgs/Imu.h>
+      22             : #include <nav_msgs/Odometry.h>
+      23             : 
+      24             : #include <std_srvs/SetBool.h>
+      25             : 
+      26             : #include <functional>
+      27             : 
+      28             : #include <mrs_uav_managers/estimation_manager/types.h>
+      29             : #include <mrs_uav_managers/estimation_manager/support.h>
+      30             : #include <mrs_uav_managers/estimation_manager/common_handlers.h>
+      31             : #include <mrs_uav_managers/estimation_manager/private_handlers.h>
+      32             : 
+      33             : #include <mrs_uav_state_estimators/processors/processor.h>
+      34             : #include <mrs_uav_state_estimators/processors/proc_median_filter.h>
+      35             : #include <mrs_uav_state_estimators/processors/proc_saturate.h>
+      36             : #include <mrs_uav_state_estimators/processors/proc_excessive_tilt.h>
+      37             : #include <mrs_uav_state_estimators/processors/proc_tf_to_world.h>
+      38             : 
+      39             : #include <mrs_uav_state_estimators/CorrectionConfig.h>
+      40             : 
+      41             : 
+      42             : namespace mrs_uav_state_estimators
+      43             : {
+      44             : 
+      45             : typedef enum
+      46             : {
+      47             :   LATERAL,
+      48             :   ALTITUDE,
+      49             :   HEADING
+      50             : } EstimatorType_t;
+      51             : const int n_EstimatorType_t = 3;
+      52             : 
+      53             : typedef enum
+      54             : {
+      55             :   UNKNOWN,
+      56             :   ODOMETRY,
+      57             :   POSE,
+      58             :   POSECOV,
+      59             :   RANGE,
+      60             :   IMU,
+      61             :   RTK_GPS,
+      62             :   POINT,
+      63             :   VECTOR,
+      64             :   QUAT,
+      65             : } MessageType_t;
+      66             : const int n_MessageType_t = 10;
+      67             : 
+      68             : const std::map<std::string, MessageType_t> map_msg_type{{"nav_msgs/Odometry", MessageType_t::ODOMETRY},
+      69             :                                                         {"geometry_msgs/PoseStamped", MessageType_t::POSE},
+      70             :                                                         {"geometry_msgs/PoseWithCovarianceStamped", MessageType_t::POSECOV},
+      71             :                                                         {"sensor_msgs/Range", MessageType_t::RANGE},
+      72             :                                                         {"sensor_msgs/Imu", MessageType_t::IMU},
+      73             :                                                         {"mrs_msgs/RtkGps", MessageType_t::RTK_GPS},
+      74             :                                                         {"geometry_msgs/PointStamped", MessageType_t::POINT},
+      75             :                                                         {"geometry_msgs/Vector3Stamped", MessageType_t::VECTOR},
+      76             :                                                         {"geometry_msgs/QuaternionStamped", MessageType_t::QUAT}};
+      77             : 
+      78             : template <int n_measurements>
+      79             : class Correction {
+      80             : 
+      81             :   using CommonHandlers_t  = mrs_uav_managers::estimation_manager::CommonHandlers_t;
+      82             :   using PrivateHandlers_t = mrs_uav_managers::estimation_manager::PrivateHandlers_t;
+      83             :   using StateId_t         = mrs_uav_managers::estimation_manager::StateId_t;
+      84             : 
+      85             : public:
+      86             :   typedef Eigen::Matrix<double, n_measurements, 1>         measurement_t;
+      87             :   typedef mrs_lib::DynamicReconfigureMgr<CorrectionConfig> drmgr_t;
+      88             : 
+      89             :   struct MeasurementStamped
+      90             :   {
+      91             :     ros::Time     stamp;
+      92             :     measurement_t value;
+      93             :   };
+      94             : 
+      95             : public:
+      96             :   Correction(ros::NodeHandle& nh, const std::string& est_name, const std::string& name, const std::string& frame_id, const EstimatorType_t& est_type,
+      97             :              const std::shared_ptr<CommonHandlers_t>& ch, const std::shared_ptr<PrivateHandlers_t>& ph, std::function<double(int, int)> fun_get_state,
+      98             :              std::function<void(MeasurementStamped, double, StateId_t)> fun_apply_correction);
+      99             : 
+     100             :   std::string getName() const;
+     101             :   std::string getNamespacedName() const;
+     102             :   std::string getPrintName() const;
+     103             : 
+     104             :   double    getR();
+     105             :   void      setR(const double R);
+     106             :   StateId_t getStateId() const;
+     107             : 
+     108             :   bool             isHealthy();
+     109             :   ros::Time        healthy_time_;
+     110             :   std::atomic_bool is_healthy_    = true;
+     111             :   std::atomic_bool is_delay_ok_   = true;
+     112             :   std::atomic_bool is_dt_ok_      = true;
+     113             :   std::atomic_bool is_nan_free_   = true;
+     114             :   std::atomic_bool got_first_msg_ = false;
+     115             : 
+     116             :   int counter_nan_ = 0;
+     117             : 
+     118             :   std::optional<MeasurementStamped> getRawCorrection();
+     119             :   std::optional<MeasurementStamped> getProcessedCorrection();
+     120             : 
+     121             :   void resetProcessors();
+     122             : 
+     123             : private:
+     124             :   std::atomic_bool is_initialized_ = false;
+     125             : 
+     126             :   mrs_lib::SubscribeHandler<nav_msgs::Odometry> sh_odom_;
+     127             :   void                                          callbackOdometry(const nav_msgs::Odometry::ConstPtr msg);
+     128             :   std::optional<measurement_t>                  getCorrectionFromOdometry(const nav_msgs::OdometryConstPtr msg);
+     129             : 
+     130             :   mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped> sh_pose_s_;
+     131             :   void                                                  callbackPoseStamped(const geometry_msgs::PoseStamped::ConstPtr msg);
+     132             :   std::optional<measurement_t>                          getCorrectionFromPoseStamped(const geometry_msgs::PoseStampedConstPtr msg);
+     133             : 
+     134             :   mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped> sh_pose_wcs_;
+     135             : 
+     136             :   mrs_lib::SubscribeHandler<mrs_msgs::RtkGps> sh_rtk_;
+     137             :   void                                        callbackRtk(const mrs_msgs::RtkGps::ConstPtr msg);
+     138             :   std::optional<measurement_t>                getCorrectionFromRtk(const mrs_msgs::RtkGpsConstPtr msg);
+     139             :   void                                        getAvgRtkInitZ(const double rtk_z);
+     140             :   bool                                        got_avg_init_rtk_z_ = false;
+     141             :   double                                      rtk_init_z_avg_     = 0.0;
+     142             :   int                                         got_rtk_counter_    = 0;
+     143             : 
+     144             :   mrs_lib::SubscribeHandler<geometry_msgs::PointStamped> sh_point_;
+     145             :   void                                                   callbackPoint(const geometry_msgs::PointStamped::ConstPtr msg);
+     146             :   std::optional<measurement_t>                           getCorrectionFromPoint(const geometry_msgs::PointStampedConstPtr msg);
+     147             : 
+     148             :   mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped> sh_vector_;
+     149             :   std::optional<measurement_t>                             getCorrectionFromVector(const geometry_msgs::Vector3StampedConstPtr msg);
+     150             :   void                                                     callbackVector(const geometry_msgs::Vector3Stamped::ConstPtr msg);
+     151             : 
+     152             :   mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped> sh_orientation_;  // for obtaining heading rate
+     153             :   std::string                                                 orientation_topic_;
+     154             : 
+     155             :   mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped> sh_quat_;
+     156             :   measurement_t                                               prev_hdg_measurement_;
+     157             :   bool                                                        got_first_hdg_measurement_ = false;
+     158             : 
+     159             :   mrs_lib::SubscribeHandler<sensor_msgs::Imu> sh_imu_;
+     160             :   std::optional<measurement_t>                             getCorrectionFromImu(const sensor_msgs::ImuConstPtr msg);
+     161             :   void                                                     callbackImu(const sensor_msgs::Imu::ConstPtr msg);
+     162             : 
+     163             :   mrs_lib::SubscribeHandler<sensor_msgs::Range> sh_range_;
+     164             :   std::optional<measurement_t>                  getCorrectionFromRange(const sensor_msgs::RangeConstPtr msg);
+     165             :   void                                          callbackRange(const sensor_msgs::Range::ConstPtr msg);
+     166             :   ros::ServiceServer                            ser_toggle_range_;
+     167             :   bool                                          callbackToggleRange(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res);
+     168             :   bool                                          range_enabled_ = true;
+     169             : 
+     170             :   void applyCorrection(const measurement_t& meas, const ros::Time& stamp);
+     171             : 
+     172             :   mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection> ph_correction_raw_;
+     173             :   mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection> ph_correction_proc_;
+     174             :   mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>      ph_delay_;
+     175             : 
+     176             :   const std::string                  est_name_;
+     177             :   const std::string                  name_;
+     178             :   const std::string                  ns_frame_id_;
+     179             :   const EstimatorType_t              est_type_;
+     180             :   std::shared_ptr<CommonHandlers_t>  ch_;
+     181             :   std::shared_ptr<PrivateHandlers_t> ph_;
+     182             : 
+     183             :   MessageType_t msg_type_;
+     184             :   std::string   msg_topic_;
+     185             :   double        msg_timeout_;
+     186             : 
+     187             :   double     R_;
+     188             :   double     default_R_;
+     189             :   double     R_coeff_;
+     190             :   std::mutex mtx_R_;
+     191             :   StateId_t  state_id_;
+     192             :   bool       is_in_body_frame_ = true;
+     193             :   double     gravity_norm_ = 9.8066;
+     194             : 
+     195             :   std::unique_ptr<drmgr_t> drmgr_;
+     196             : 
+     197             :   std::optional<measurement_t> getCorrectionFromQuat(const geometry_msgs::QuaternionStampedConstPtr msg);
+     198             :   std::optional<measurement_t> getZVelUntilted(const geometry_msgs::Vector3& msg, const std_msgs::Header& header);
+     199             :   std::optional<measurement_t> getVecInFrame(const geometry_msgs::Vector3& vec_in, const std_msgs::Header& source_header, const std::string target_frame);
+     200             : 
+     201             :   std::optional<geometry_msgs::Pose> transformRtkToFcu(const geometry_msgs::PoseStamped& pose_in) const;
+     202             : 
+     203             :   void   checkMsgDelay(const ros::Time& msg_time);
+     204             :   double msg_delay_limit_;
+     205             :   double msg_delay_warn_limit_;
+     206             : 
+     207             :   double time_since_last_msg_limit_;
+     208             : 
+     209             :   std::shared_ptr<Processor<n_measurements>> createProcessorFromName(const std::string& name, ros::NodeHandle& nh);
+     210             :   bool                                       process(measurement_t& measurement);
+     211             : 
+     212             :   bool             isTimestampOk();
+     213             :   bool             isMsgComing();
+     214             :   std::atomic_bool first_timestamp_ = true;
+     215             :   ros::Time        msg_time_;
+     216             :   ros::Time        prev_msg_time_;
+     217             :   std::mutex       mtx_msg_time_;
+     218             : 
+     219             :   std::vector<std::string>                                                    processor_names_;
+     220             :   std::unordered_map<std::string, std::shared_ptr<Processor<n_measurements>>> processors_;
+     221             : 
+     222             :   std::function<double(int, int)>                            fun_get_state_;
+     223             :   std::function<void(MeasurementStamped, double, StateId_t)> fun_apply_correction_;
+     224             : 
+     225             :   void publishCorrection(const MeasurementStamped& measurement_stamped, mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection>& ph_corr);
+     226             :   void publishDelay(const double delay);
+     227             : };
+     228             : 
+     229             : /*//{ constructor */
+     230             : template <int n_measurements>
+     231         346 : Correction<n_measurements>::Correction(ros::NodeHandle& nh, const std::string& est_name, const std::string& name, const std::string& ns_frame_id,
+     232             :                                        const EstimatorType_t& est_type, const std::shared_ptr<CommonHandlers_t>& ch,
+     233             :                                        const std::shared_ptr<PrivateHandlers_t>& ph, std::function<double(int, int)> fun_get_state,
+     234             :                                        std::function<void(MeasurementStamped, double, StateId_t)> fun_apply_correction)
+     235             :     : est_name_(est_name),
+     236             :       name_(name),
+     237             :       ns_frame_id_(ns_frame_id),
+     238             :       est_type_(est_type),
+     239             :       ch_(ch),
+     240             :       ph_(ph),
+     241             :       fun_get_state_(fun_get_state),
+     242         346 :       fun_apply_correction_(fun_apply_correction) {
+     243             : 
+     244             :   // | --------------------- load parameters -------------------- |
+     245             : 
+     246         692 :   std::string msg_type_string;
+     247             : 
+     248         346 :   ph->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch->nodelet_name) + "/" + getNamespacedName() + "/");
+     249             : 
+     250         346 :   ph->param_loader->loadParam("message/type", msg_type_string);
+     251         346 :   if (map_msg_type.find(msg_type_string) == map_msg_type.end()) {
+     252           0 :     ROS_ERROR("[%s]: wrong message type: %s of correction %s", getPrintName().c_str(), msg_type_string.c_str(), getName().c_str());
+     253           0 :     ros::shutdown();
+     254             :   }
+     255         346 :   msg_type_ = map_msg_type.at(msg_type_string);
+     256             : 
+     257         346 :   ph->param_loader->loadParam("message/topic", msg_topic_);
+     258         346 :   msg_topic_ = "/" + ch_->uav_name + "/" + msg_topic_;
+     259         346 :   ph->param_loader->loadParam("message/limit/delay", msg_delay_limit_);
+     260         346 :   msg_delay_warn_limit_ = msg_delay_limit_ / 2;  // maybe specify this as a param?
+     261         346 :   ph->param_loader->loadParam("message/limit/time_since_last", time_since_last_msg_limit_);
+     262             : 
+     263             :   int state_id_tmp;
+     264         346 :   ph->param_loader->loadParam("state_id", state_id_tmp);
+     265         346 :   if (state_id_tmp < n_StateId_t) {
+     266         346 :     state_id_ = static_cast<StateId_t>(state_id_tmp);
+     267             :   } else {
+     268           0 :     ROS_ERROR("[%s]: wrong state id: %d of correction %s", getPrintName().c_str(), state_id_tmp, getName().c_str());
+     269           0 :     ros::shutdown();
+     270             :   }
+     271             : 
+     272         346 :   if (state_id_ == StateId_t::VELOCITY) {
+     273         101 :     ph->param_loader->loadParam("body_frame", is_in_body_frame_, true);
+     274             :   }
+     275             :   
+     276         346 :   if (state_id_ == StateId_t::ACCELERATION) {
+     277           0 :     ph->param_loader->loadParam("body_frame", is_in_body_frame_, true);
+     278           0 :     ph->param_loader->loadParam("gravity_norm", gravity_norm_, 9.8066);
+     279             :   }
+     280             : 
+     281         346 :   ph->param_loader->loadParam("noise", R_);
+     282         346 :   ph->param_loader->loadParam("noise_unhealthy_coeff", R_coeff_);
+     283         346 :   default_R_ = R_;
+     284             : 
+     285             :   // | --------------- processors initialization --------------- |
+     286         346 :   ph->param_loader->loadParam("processors", processor_names_);
+     287             : 
+     288         673 :   for (auto proc_name : processor_names_) {
+     289         327 :     processors_[proc_name] = createProcessorFromName(proc_name, nh);
+     290             :   }
+     291             : 
+     292             :   // | ------------- initialize dynamic reconfigure ------------- |
+     293         346 :   drmgr_               = std::make_unique<drmgr_t>(ros::NodeHandle("~/" + getNamespacedName()), getPrintName());
+     294         346 :   drmgr_->config.noise = R_;
+     295         346 :   drmgr_->update_config(drmgr_->config);
+     296             : 
+     297             :   // | -------------- initialize subscribe handlers ------------- |
+     298         692 :   mrs_lib::SubscribeHandlerOptions shopts;
+     299         346 :   shopts.nh                 = nh;
+     300         346 :   shopts.node_name          = getPrintName();
+     301         346 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     302         346 :   shopts.threadsafe         = true;
+     303         346 :   shopts.autostart          = true;
+     304         346 :   shopts.queue_size         = 10;
+     305         346 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     306             : 
+     307         346 :   switch (msg_type_) {
+     308           0 :     case MessageType_t::ODOMETRY: {
+     309           0 :       sh_odom_ = mrs_lib::SubscribeHandler<nav_msgs::Odometry>(shopts, msg_topic_, &Correction::callbackOdometry, this);
+     310           0 :       break;
+     311             :     }
+     312           0 :     case MessageType_t::POSE: {
+     313           0 :       sh_pose_s_ = mrs_lib::SubscribeHandler<geometry_msgs::PoseStamped>(shopts, msg_topic_, &Correction::callbackPoseStamped, this);
+     314           0 :       break;
+     315             :     }
+     316           0 :     case MessageType_t::POSECOV: {
+     317             :       // TODO implement
+     318             :       /* sh_pose_wcs_ = mrs_lib::SubscribeHandler<geometry_msgs::PoseWithCovarianceStamped>(shopts, msg_topic_); */
+     319           0 :       break;
+     320             :     }
+     321         146 :     case MessageType_t::RANGE: {
+     322         146 :       sh_range_                   = mrs_lib::SubscribeHandler<sensor_msgs::Range>(shopts, msg_topic_, &Correction::callbackRange, this);
+     323         146 :       const std::size_t found     = ros::this_node::getName().find_last_of("/");
+     324         292 :       std::string       node_name = ros::this_node::getName().substr(found + 1);
+     325         292 :       ser_toggle_range_ =
+     326         146 :           nh.advertiseService(ros::this_node::getName() + "/" + getNamespacedName() + "/toggle_range_in", &Correction::callbackToggleRange, this);
+     327         146 :       break;
+     328             :     }
+     329           0 :     case MessageType_t::IMU: {
+     330           0 :       sh_imu_ = mrs_lib::SubscribeHandler<sensor_msgs::Imu>(shopts, msg_topic_, &Correction::callbackImu, this);
+     331           0 :       break;
+     332             :     }
+     333           6 :     case MessageType_t::RTK_GPS: {
+     334           6 :       sh_rtk_ = mrs_lib::SubscribeHandler<mrs_msgs::RtkGps>(shopts, msg_topic_, &Correction::callbackRtk, this);
+     335           6 :       break;
+     336             :     }
+     337          93 :     case MessageType_t::POINT: {
+     338          93 :       sh_point_ = mrs_lib::SubscribeHandler<geometry_msgs::PointStamped>(shopts, msg_topic_, &Correction::callbackPoint, this);
+     339          93 :       break;
+     340             :     }
+     341         101 :     case MessageType_t::VECTOR: {
+     342         101 :       sh_vector_ = mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped>(shopts, msg_topic_, &Correction::callbackVector, this);
+     343         101 :       break;
+     344             :     }
+     345           0 :     case MessageType_t::QUAT: {
+     346           0 :       sh_quat_ = mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped>(shopts, msg_topic_);
+     347           0 :       break;
+     348             :     }
+     349           0 :     case MessageType_t::UNKNOWN: {
+     350           0 :       ROS_ERROR("[%s]: UNKNOWN message type of correction", getPrintName().c_str());
+     351           0 :       break;
+     352             :     }
+     353           0 :     default: {
+     354           0 :       ROS_ERROR("[%s]: unhandled message type", getPrintName().c_str());
+     355             :     }
+     356             :   }
+     357             : 
+     358             :   // | ------ subscribe orientation for obtaingin hdg rate ------ |
+     359         346 :   if (est_type_ == EstimatorType_t::HEADING && state_id_ == StateId_t::VELOCITY) {
+     360           0 :     ph->param_loader->loadParam("message/orientation_topic", orientation_topic_);
+     361           0 :     orientation_topic_ = "/" + ch_->uav_name + "/" + orientation_topic_;
+     362           0 :     sh_orientation_    = mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped>(shopts, orientation_topic_);
+     363             :   }
+     364             : 
+     365             : 
+     366             :   // | --------------- initialize publish handlers -------------- |
+     367         346 :   if (ch_->debug_topics.correction) {
+     368         346 :     ph_correction_raw_  = mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection>(nh, est_name_ + "/correction/" + getName() + "/raw", 10);
+     369         346 :     ph_correction_proc_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection>(nh, est_name_ + "/correction/" + getName() + "/proc", 10);
+     370             :   }
+     371         346 :   if (ch_->debug_topics.corr_delay) {
+     372           0 :     ph_delay_ = mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>(nh, est_name_ + "/correction/" + getName() + "/delay", 10);
+     373             :   }
+     374             : 
+     375             :   // | --- check whether all parameters were loaded correctly --- |
+     376         346 :   if (!ph->param_loader->loadedSuccessfully()) {
+     377           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getPrintName().c_str());
+     378           0 :     ros::shutdown();
+     379             :   }
+     380             : 
+     381         346 :   healthy_time_ = ros::Time(0);
+     382             : 
+     383         346 :   is_initialized_ = true;
+     384         346 : }
+     385             : /*//}*/
+     386             : 
+     387             : /*//{ getName() */
+     388             : template <int n_measurements>
+     389         692 : std::string Correction<n_measurements>::getName() const {
+     390         692 :   return name_;
+     391             : }
+     392             : /*//}*/
+     393             : 
+     394             : /*//{ getNamespacedName() */
+     395             : template <int n_measurements>
+     396        1403 : std::string Correction<n_measurements>::getNamespacedName() const {
+     397        1403 :   return est_name_ + "/" + name_;
+     398             : }
+     399             : /*//}*/
+     400             : 
+     401             : /*//{ getPrintName() */
+     402             : template <int n_measurements>
+     403         767 : std::string Correction<n_measurements>::getPrintName() const {
+     404         767 :   return ch_->nodelet_name + "/" + est_name_ + "/" + name_;
+     405             : }
+     406             : /*//}*/
+     407             : 
+     408             : /*//{ getR() */
+     409             : template <int n_measurements>
+     410     2329313 : double Correction<n_measurements>::getR() {
+     411     2329313 :   std::scoped_lock lock(mtx_R_);
+     412     2328778 :   default_R_ = drmgr_->config.noise;
+     413     4657041 :   return R_;
+     414             : }
+     415             : /*//}*/
+     416             : 
+     417             : /*//{ setR() */
+     418             : template <int n_measurements>
+     419      640257 : void Correction<n_measurements>::setR(const double R) {
+     420      640257 :   std::scoped_lock lock(mtx_R_);
+     421      640186 :   R_ = R;
+     422      640227 : }
+     423             : /*//}*/
+     424             : 
+     425             : /*//{ getStateId() */
+     426             : template <int n_measurements>
+     427      640533 : StateId_t Correction<n_measurements>::getStateId() const {
+     428      640533 :   return state_id_;
+     429             : }
+     430             : /*//}*/
+     431             : 
+     432             : /*//{ isHealthy() */
+     433             : template <int n_measurements>
+     434      674668 : bool Correction<n_measurements>::isHealthy() {
+     435             : 
+     436      674668 :   if (!is_initialized_) {
+     437           0 :     return false;
+     438             :   }
+     439             : 
+     440      674282 :   is_dt_ok_ = isMsgComing();
+     441             : 
+     442      674648 :   if (!is_delay_ok_) {
+     443           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: delay not ok", getPrintName().c_str());
+     444             :   }
+     445             : 
+     446      674374 :   if (!is_healthy_) {
+     447           0 :     if (is_dt_ok_ && is_delay_ok_) {
+     448           0 :       if (healthy_time_ > ros::Time(10)) {
+     449           0 :         is_healthy_ = true;
+     450             :       }
+     451             :     } else {
+     452           0 :       healthy_time_ = ros::Time(0);
+     453             :     }
+     454             :   }
+     455             : 
+     456      674368 :   is_healthy_ = is_healthy_ && is_dt_ok_ && is_delay_ok_;
+     457             : 
+     458      674723 :   return is_healthy_;
+     459             : }
+     460             : /*//}*/
+     461             : 
+     462             : /*//{ getRawCorrection() */
+     463             : template <int n_measurements>
+     464       14781 : std::optional<typename Correction<n_measurements>::MeasurementStamped> Correction<n_measurements>::getRawCorrection() {
+     465             : 
+     466       14781 :   if (!is_initialized_) {
+     467           0 :     return {};
+     468             :   }
+     469             : 
+     470       14771 :   MeasurementStamped measurement_stamped;
+     471             : 
+     472       14763 :   switch (msg_type_) {
+     473             : 
+     474           0 :     case MessageType_t::ODOMETRY: {
+     475             : 
+     476           0 :       if (!sh_odom_.hasMsg()) {
+     477           0 :         return {};
+     478             :       }
+     479             : 
+     480           0 :       auto msg                  = sh_odom_.getMsg();
+     481           0 :       measurement_stamped.stamp = msg->header.stamp;
+     482             :       /* if (!isTimestampOk(measurement_stamped.stamp)) { */
+     483             :       /*   return {}; */
+     484             :       /* } */
+     485             :       /* checkMsgDelay(measurement_stamped.stamp); */
+     486             : 
+     487             :       /* if (!is_delay_ok_) { */
+     488             :       /*   return {}; */
+     489             :       /* } */
+     490           0 :       auto res = getCorrectionFromOdometry(msg);
+     491           0 :       if (res) {
+     492           0 :         measurement_stamped.value = res.value();
+     493             :       } else {
+     494           0 :         return {};
+     495             :       }
+     496           0 :       break;
+     497             :     }
+     498             : 
+     499           0 :     case MessageType_t::POSE: {
+     500             : 
+     501           0 :       if (!sh_pose_s_.hasMsg()) {
+     502           0 :         return {};
+     503             :       }
+     504             : 
+     505           0 :       auto msg                  = sh_pose_s_.getMsg();
+     506           0 :       measurement_stamped.stamp = msg->header.stamp;
+     507             :       /* if (!isTimestampOk(measurement_stamped.stamp)) { */
+     508             :       /*   return {}; */
+     509             :       /* } */
+     510             :       /* checkMsgDelay(measurement_stamped.stamp); */
+     511             : 
+     512             :       /* if (!is_delay_ok_) { */
+     513             :       /*   return {}; */
+     514             :       /* } */
+     515           0 :       auto res = getCorrectionFromPoseStamped(msg);
+     516           0 :       if (res) {
+     517           0 :         measurement_stamped.value = res.value();
+     518             :       } else {
+     519           0 :         return {};
+     520             :       }
+     521           0 :       break;
+     522             :     }
+     523             : 
+     524           0 :     case MessageType_t::POSECOV: {
+     525             :       // TODO implement
+     526             :       /* return getCorrectionFromPoseWCS(msg); */
+     527           0 :       is_healthy_ = false;
+     528           0 :       return {};
+     529             :       break;
+     530             :     }
+     531             : 
+     532        7869 :     case MessageType_t::RANGE: {
+     533             : 
+     534        7869 :       if (!range_enabled_) {
+     535           0 :         ROS_INFO_THROTTLE(1.0, "[%s]: fusing range corrections is disabled", getPrintName().c_str());
+     536        4056 :         return {};
+     537             :       }
+     538             : 
+     539        7869 :       if (!sh_range_.hasMsg()) {
+     540        2787 :         return {};
+     541             :       }
+     542             : 
+     543        5080 :       auto msg                  = sh_range_.getMsg();
+     544        5078 :       measurement_stamped.stamp = msg->header.stamp;
+     545             :       /* checkMsgDelay(measurement_stamped.stamp); */
+     546             : 
+     547             :       /* if (!is_delay_ok_) { */
+     548             :       /*   return {}; */
+     549             :       /* } */
+     550             : 
+     551        5079 :       auto res = getCorrectionFromRange(msg);
+     552        5083 :       if (res) {
+     553        3818 :         measurement_stamped.value = res.value();
+     554             :       } else {
+     555        1265 :         return {};
+     556             :       }
+     557        3818 :       break;
+     558             :     }
+     559             : 
+     560           0 :     case MessageType_t::IMU: {
+     561             : 
+     562           0 :       if (!sh_imu_.hasMsg()) {
+     563           0 :         ROS_ERROR_THROTTLE(1.0, " no imu msgs so far");
+     564           0 :         return {};
+     565             :       }
+     566             : 
+     567           0 :       auto msg                  = sh_imu_.getMsg();
+     568           0 :       measurement_stamped.stamp = msg->header.stamp;
+     569             :       /* checkMsgDelay(measurement_stamped.stamp); */
+     570             : 
+     571             :       /* if (!is_delay_ok_) { */
+     572             :       /*   ROS_ERROR("[%s]: rtk msg delay not ok", ros::this_node::getName().c_str()); */
+     573             :       /*   return {}; */
+     574             :       /* } */
+     575             : 
+     576           0 :       auto res = getCorrectionFromImu(msg);
+     577           0 :       if (res) {
+     578           0 :         measurement_stamped.value = res.value();
+     579             :       } else {
+     580           0 :         ROS_ERROR_THROTTLE(1.0, "[%s]: could not get rtk correction", ros::this_node::getName().c_str());
+     581           0 :         return {};
+     582             :       }
+     583             : 
+     584           0 :       break;
+     585             :     }
+     586             : 
+     587          93 :     case MessageType_t::RTK_GPS: {
+     588             : 
+     589          93 :       if (!sh_rtk_.hasMsg()) {
+     590           0 :         ROS_ERROR_THROTTLE(1.0, " no rtk msgs so far");
+     591          14 :         return {};
+     592             :       }
+     593             : 
+     594          93 :       auto msg                  = sh_rtk_.getMsg();
+     595          93 :       measurement_stamped.stamp = msg->header.stamp;
+     596             :       /* checkMsgDelay(measurement_stamped.stamp); */
+     597             : 
+     598             :       /* if (!is_delay_ok_) { */
+     599             :       /*   ROS_ERROR("[%s]: rtk msg delay not ok", ros::this_node::getName().c_str()); */
+     600             :       /*   return {}; */
+     601             :       /* } */
+     602             : 
+     603          93 :       auto res = getCorrectionFromRtk(msg);
+     604          93 :       if (res) {
+     605          79 :         measurement_stamped.value = res.value();
+     606             :       } else {
+     607          14 :         ROS_ERROR_THROTTLE(1.0, "[%s]: could not get rtk correction", ros::this_node::getName().c_str());
+     608          14 :         return {};
+     609             :       }
+     610             : 
+     611          79 :       break;
+     612             :     }
+     613             : 
+     614        6329 :     case MessageType_t::POINT: {
+     615             : 
+     616        6329 :       if (!sh_point_.hasMsg()) {
+     617        2608 :         return {};
+     618             :       }
+     619             : 
+     620        3722 :       auto msg                  = sh_point_.getMsg();
+     621        3722 :       measurement_stamped.stamp = msg->header.stamp;
+     622             :       /* checkMsgDelay(measurement_stamped.stamp); */
+     623             : 
+     624             :       /* if (!is_delay_ok_) { */
+     625             :       /*   return {}; */
+     626             :       /* } */
+     627        3722 :       auto res = getCorrectionFromPoint(msg);
+     628        3722 :       if (res) {
+     629        3722 :         measurement_stamped.value = res.value();
+     630             :       } else {
+     631           0 :         return {};
+     632             :       }
+     633        3722 :       break;
+     634             :     }
+     635             : 
+     636         487 :     case MessageType_t::VECTOR: {
+     637             : 
+     638         487 :       if (!sh_vector_.hasMsg()) {
+     639         386 :         return {};
+     640             :       }
+     641             : 
+     642         129 :       auto msg                  = sh_vector_.getMsg();
+     643         129 :       measurement_stamped.stamp = msg->header.stamp;
+     644             :       /* checkMsgDelay(measurement_stamped.stamp); */
+     645             : 
+     646             :       /* if (!is_delay_ok_) { */
+     647             :       /*   return {}; */
+     648             :       /* } */
+     649         129 :       auto res = getCorrectionFromVector(msg);
+     650         129 :       if (res) {
+     651         101 :         measurement_stamped.value = res.value();
+     652             :       } else {
+     653          28 :         return {};
+     654             :       }
+     655         101 :       break;
+     656             :     }
+     657             : 
+     658           0 :     case MessageType_t::QUAT: {
+     659             : 
+     660           0 :       if (!sh_quat_.newMsg()) {
+     661           0 :         return {};
+     662             :       }
+     663             : 
+     664           0 :       auto msg                  = sh_quat_.getMsg();
+     665           0 :       measurement_stamped.stamp = msg->header.stamp;
+     666             :       /* checkMsgDelay(measurement_stamped.stamp); */
+     667             : 
+     668             :       /* if (!is_delay_ok_) { */
+     669             :       /*   return {}; */
+     670             :       /* } */
+     671           0 :       auto res = getCorrectionFromQuat(msg);
+     672           0 :       if (res) {
+     673           0 :         measurement_stamped.value = res.value();
+     674             :       } else {
+     675           0 :         return {};
+     676             :       }
+     677           0 :       break;
+     678             :     }
+     679             : 
+     680           3 :     default: {
+     681           3 :       ROS_ERROR_THROTTLE(1.0, "[%s]: this type of correction is not implemented in getCorrectionFromMessage()", getPrintName().c_str());
+     682           0 :       is_healthy_ = false;
+     683           0 :       return {};
+     684             :     }
+     685             :   }
+     686             : 
+     687             :   // check for nans
+     688        7719 :   is_nan_free_ = true;
+     689       19233 :   for (int i = 0; i < measurement_stamped.value.rows(); i++) {
+     690       11513 :     if (!std::isfinite(measurement_stamped.value(i))) {
+     691           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: NaN detected in correction. Total NaNs: %d", getPrintName().c_str(), ++counter_nan_);
+     692           0 :       is_nan_free_ = false;
+     693           0 :       return {};
+     694             :     }
+     695             :   }
+     696             : 
+     697        7720 :   got_first_msg_ = true;
+     698        7720 :   publishCorrection(measurement_stamped, ph_correction_raw_);
+     699             : 
+     700        7720 :   return measurement_stamped;
+     701             : }
+     702             : /*//}*/
+     703             : 
+     704             : /*//{ getProcessedCorrection() */
+     705             : template <int n_measurements>
+     706       14781 : std::optional<typename Correction<n_measurements>::MeasurementStamped> Correction<n_measurements>::getProcessedCorrection() {
+     707             : 
+     708       14781 :   MeasurementStamped measurement_stamped;
+     709       14775 :   auto               res = getRawCorrection();
+     710       14771 :   if (res) {
+     711        7720 :     MeasurementStamped measurement_stamped = res.value();
+     712        7720 :     if (process(measurement_stamped.value)) {
+     713         419 :       publishCorrection(measurement_stamped, ph_correction_proc_);
+     714         419 :       return measurement_stamped;
+     715             :     } else {
+     716        7301 :       return {};  // invalid correction
+     717             :     }
+     718             :   } else {
+     719        7060 :     return {};  // invalid correction
+     720             :   }
+     721             : }  // namespace mrs_uav_state_estimation
+     722             : /*//}*/
+     723             : 
+     724             : /*//{ callbackOdometry() */
+     725             : template <int n_measurements>
+     726           0 : void Correction<n_measurements>::callbackOdometry(const nav_msgs::Odometry::ConstPtr msg) {
+     727             : 
+     728           0 :   if (!is_initialized_) {
+     729           0 :     return;
+     730             :   }
+     731             : 
+     732           0 :   auto res = getCorrectionFromOdometry(msg);
+     733           0 :   if (res) {
+     734           0 :     applyCorrection(res.value(), msg->header.stamp);
+     735             :   }
+     736             : }
+     737             : /*//}*/
+     738             : 
+     739             : /*//{ getCorrectionFromOdometry() */
+     740             : template <int n_measurements>
+     741           0 : std::optional<typename Correction<n_measurements>::measurement_t> Correction<n_measurements>::getCorrectionFromOdometry(const nav_msgs::OdometryConstPtr msg) {
+     742             : 
+     743           0 :   switch (est_type_) {
+     744             : 
+     745             :     // handle lateral estimators
+     746           0 :     case EstimatorType_t::LATERAL: {
+     747             : 
+     748           0 :       switch (state_id_) {
+     749             : 
+     750           0 :         case StateId_t::POSITION: {
+     751           0 :           measurement_t measurement;
+     752           0 :           measurement(0) = msg->pose.pose.position.x;
+     753           0 :           measurement(1) = msg->pose.pose.position.y;
+     754           0 :           return measurement;
+     755             :           break;
+     756             :         }
+     757             : 
+     758           0 :         case StateId_t::VELOCITY: {
+     759           0 :           if (is_in_body_frame_) {
+     760           0 :             std_msgs::Header header = msg->header;
+     761           0 :             header.frame_id         = ch_->frames.ns_fcu;  // message in odometry is published in body frame
+     762           0 :             auto res                = getVecInFrame(msg->twist.twist.linear, header, ns_frame_id_ + "_att_only");
+     763           0 :             if (res) {
+     764           0 :               measurement_t measurement;
+     765           0 :               measurement = res.value();
+     766           0 :               return measurement;
+     767             :             } else {
+     768           0 :               ROS_WARN_THROTTLE(1.0, "[%s]: could not transform vel from odom", ros::this_node::getName().c_str());
+     769           0 :               return {};
+     770             :             }
+     771             :           } else {
+     772           0 :             measurement_t measurement;
+     773           0 :             measurement(0) = msg->twist.twist.linear.x;
+     774           0 :             measurement(1) = msg->twist.twist.linear.y;
+     775           0 :             return measurement;
+     776             :           }
+     777             :           break;
+     778             :         }
+     779             : 
+     780           0 :         default: {
+     781           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromOdometry() switch", getPrintName().c_str());
+     782           0 :           return {};
+     783             :         }
+     784             :       }
+     785             :       break;
+     786             :     }
+     787             : 
+     788             :     // handle altitude estimators
+     789           0 :     case EstimatorType_t::ALTITUDE: {
+     790             : 
+     791           0 :       switch (state_id_) {
+     792             : 
+     793           0 :         case StateId_t::POSITION: {
+     794           0 :           measurement_t measurement;
+     795           0 :           measurement(0) = msg->pose.pose.position.z;
+     796           0 :           return measurement;
+     797             :           break;
+     798             :         }
+     799             : 
+     800           0 :         case StateId_t::VELOCITY: {
+     801           0 :           if (is_in_body_frame_) {
+     802           0 :             std_msgs::Header header = msg->header;
+     803           0 :             header.frame_id         = ch_->frames.ns_fcu;
+     804           0 :             auto res                = getZVelUntilted(msg->twist.twist.linear, header);
+     805           0 :             if (res) {
+     806           0 :               measurement_t measurement;
+     807           0 :               measurement = res.value();
+     808           0 :               return measurement;
+     809             :             } else {
+     810           0 :               return {};
+     811             :             }
+     812             :           } else {
+     813           0 :             measurement_t measurement;
+     814           0 :             measurement(0) = msg->twist.twist.linear.z;
+     815           0 :             return measurement;
+     816             :           }
+     817             :           break;
+     818             :         }
+     819             : 
+     820           0 :         default: {
+     821           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromOdometry() switch", getPrintName().c_str());
+     822           0 :           return {};
+     823             :         }
+     824             :       }
+     825             :       break;
+     826             :     }
+     827             : 
+     828             :     // handle heading estimators
+     829           0 :     case EstimatorType_t::HEADING: {
+     830             : 
+     831           0 :       switch (state_id_) {
+     832             : 
+     833           0 :         case StateId_t::POSITION: {
+     834           0 :           measurement_t measurement;
+     835             :           try {
+     836             :             // obtain heading from orientation
+     837           0 :             measurement(StateId_t::POSITION) = mrs_lib::AttitudeConverter(msg->pose.pose.orientation).getHeading();
+     838             :             // unwrap heading wrt previous measurement
+     839           0 :             if (got_first_hdg_measurement_) {
+     840           0 :               measurement(StateId_t::POSITION) = mrs_lib::geometry::radians::unwrap(measurement(POSITION), prev_hdg_measurement_(POSITION));
+     841             :             } else {
+     842           0 :               got_first_hdg_measurement_ = true;
+     843             :             }
+     844           0 :             prev_hdg_measurement_ = measurement;
+     845           0 :             return measurement;
+     846             :           }
+     847           0 :           catch (...) {
+     848           0 :             ROS_ERROR_THROTTLE(1.0, "[%s]: failed to obtain heading", getPrintName().c_str());
+     849           0 :             return {};
+     850             :           }
+     851             :           break;
+     852             :         }
+     853             : 
+     854             :           /* case StateId_t::VELOCITY: { */
+     855             :           /*   try { */
+     856             :           /*     measurement_t measurement; */
+     857             :           /*     measurement(0) = mrs_lib::AttitudeConverter(msg->pose.pose.orientation).getHeadingRate(msg->twist.twist.angular); */
+     858             :           /*     return measurement; */
+     859             :           /*   } */
+     860             :           /*   catch (...) { */
+     861             :           /*     ROS_ERROR_THROTTLE(1.0, "[%s]: Exception caught during getting heading rate (getCorrectionFromOdometry())", getPrintName().c_str()); */
+     862             :           /*     return {}; */
+     863             :           /*   } */
+     864             :           /*   break; */
+     865             :           /* } */
+     866             : 
+     867           0 :         default: {
+     868           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromOdometry() switch", getPrintName().c_str());
+     869           0 :           return {};
+     870             :         }
+     871             :       }
+     872             :       break;
+     873             :     }
+     874             :   }
+     875             : 
+     876           0 :   ROS_ERROR("[%s]: FIXME: should not be possible to get into this part of code", getPrintName().c_str());
+     877           0 :   return {};
+     878             : }
+     879             : /*//}*/
+     880             : 
+     881             : /*//{ callbackPoseStamped() */
+     882             : template <int n_measurements>
+     883           0 : void Correction<n_measurements>::callbackPoseStamped(const geometry_msgs::PoseStamped::ConstPtr msg) {
+     884             : 
+     885           0 :   if (!is_initialized_) {
+     886           0 :     return;
+     887             :   }
+     888             : 
+     889           0 :   auto res = getCorrectionFromPoseStamped(msg);
+     890           0 :   if (res) {
+     891           0 :     applyCorrection(res.value(), msg->header.stamp);
+     892             :   }
+     893             : }
+     894             : /*//}*/
+     895             : 
+     896             : /*//{ getCorrectionFromPoseStamped() */
+     897             : template <int n_measurements>
+     898           0 : std::optional<typename Correction<n_measurements>::measurement_t> Correction<n_measurements>::getCorrectionFromPoseStamped(
+     899             :     const geometry_msgs::PoseStampedConstPtr msg) {
+     900             : 
+     901           0 :   switch (est_type_) {
+     902             : 
+     903             :     // handle lateral estimators
+     904           0 :     case EstimatorType_t::LATERAL: {
+     905             : 
+     906           0 :       switch (state_id_) {
+     907             : 
+     908           0 :         case StateId_t::POSITION: {
+     909           0 :           measurement_t measurement;
+     910           0 :           measurement(0) = msg->pose.position.x;
+     911           0 :           measurement(1) = msg->pose.position.y;
+     912           0 :           return measurement;
+     913             :           break;
+     914             :         }
+     915             : 
+     916           0 :         default: {
+     917           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromPoseStamped() switch", getPrintName().c_str());
+     918           0 :           return {};
+     919             :         }
+     920             :       }
+     921             :       break;
+     922             :     }
+     923             : 
+     924             :     // handle altitude estimators
+     925           0 :     case EstimatorType_t::ALTITUDE: {
+     926             : 
+     927           0 :       switch (state_id_) {
+     928             : 
+     929           0 :         case StateId_t::POSITION: {
+     930           0 :           measurement_t measurement;
+     931           0 :           measurement(0) = msg->pose.position.z;
+     932           0 :           return measurement;
+     933             :           break;
+     934             :         }
+     935             : 
+     936           0 :         default: {
+     937           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromPoseStamped() switch", getPrintName().c_str());
+     938           0 :           return {};
+     939             :         }
+     940             :       }
+     941             :       break;
+     942             :     }
+     943             : 
+     944             :     // handle heading estimators
+     945           0 :     case EstimatorType_t::HEADING: {
+     946             : 
+     947           0 :       switch (state_id_) {
+     948             : 
+     949           0 :         case StateId_t::POSITION: {
+     950           0 :           measurement_t measurement;
+     951             :           try {
+     952             :             // obtain heading from orientation
+     953           0 :             measurement(StateId_t::POSITION) = mrs_lib::AttitudeConverter(msg->pose.orientation).getHeading();
+     954             :             // unwrap heading wrt previous measurement
+     955           0 :             if (got_first_hdg_measurement_) {
+     956           0 :               measurement(StateId_t::POSITION) = mrs_lib::geometry::radians::unwrap(measurement(POSITION), prev_hdg_measurement_(POSITION));
+     957             :             } else {
+     958           0 :               got_first_hdg_measurement_ = true;
+     959             :             }
+     960           0 :             prev_hdg_measurement_ = measurement;
+     961           0 :             return measurement;
+     962             :           }
+     963           0 :           catch (...) {
+     964           0 :             ROS_ERROR_THROTTLE(1.0, "[%s]: failed to obtain heading", getPrintName().c_str());
+     965           0 :             return {};
+     966             :           }
+     967             :           break;
+     968             :         }
+     969             : 
+     970           0 :         default: {
+     971           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromPoseStamped() switch", getPrintName().c_str());
+     972           0 :           return {};
+     973             :         }
+     974             :       }
+     975             :       break;
+     976             :     }
+     977             :   }
+     978             : 
+     979           0 :   ROS_ERROR("[%s]: FIXME: should not be possible to get into this part of code", getPrintName().c_str());
+     980           0 :   return {};
+     981             : }
+     982             : /*//}*/
+     983             : 
+     984             : /*//{ callbackRange() */
+     985             : template <int n_measurements>
+     986      259486 : void Correction<n_measurements>::callbackRange(const sensor_msgs::Range::ConstPtr msg) {
+     987             : 
+     988      259486 :   if (!is_initialized_) {
+     989           0 :     return;
+     990             :   }
+     991             : 
+     992      257970 :   auto res = getCorrectionFromRange(msg);
+     993      260089 :   if (res) {
+     994      259032 :     applyCorrection(res.value(), msg->header.stamp);
+     995             :   }
+     996             : }
+     997             : /*//}*/
+     998             : 
+     999             : /*//{ getCorrectionFromRange() */
+    1000             : template <int n_measurements>
+    1001      263218 : std::optional<typename Correction<n_measurements>::measurement_t> Correction<n_measurements>::getCorrectionFromRange(const sensor_msgs::RangeConstPtr msg) {
+    1002             : 
+    1003      263218 :   if (!range_enabled_) {
+    1004           0 :     ROS_INFO_THROTTLE(1.0, "[%s]: fusing range corrections is disabled", getPrintName().c_str());
+    1005           0 :     return {};
+    1006             :   }
+    1007             : 
+    1008      263218 :   if (!std::isfinite(msg->range)) {
+    1009           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: received value: %f. Not using this correction.", getPrintName().c_str(), msg->range);
+    1010           0 :     return {};
+    1011             :   }
+    1012             : 
+    1013      525006 :   geometry_msgs::PoseStamped range_point;
+    1014             : 
+    1015      261889 :   range_point.header           = msg->header;
+    1016      263263 :   range_point.pose.position.x  = msg->range;
+    1017      260527 :   range_point.pose.position.y  = 0;
+    1018      260527 :   range_point.pose.position.z  = 0;
+    1019      260527 :   range_point.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+    1020             : 
+    1021      527639 :   auto res = ch_->transformer->transformSingle(range_point, ch_->frames.ns_fcu_untilted);
+    1022             : 
+    1023      265189 :   Correction::measurement_t measurement;
+    1024             : 
+    1025      265189 :   if (res) {
+    1026      262863 :     measurement(0) = -res.value().pose.position.z;
+    1027      262854 :     return measurement;
+    1028             :   } else {
+    1029        2327 :     ROS_ERROR_THROTTLE(1.0, "[%s]: Could not transform range measurement to %s. Not using this correction.", getPrintName().c_str(),
+    1030             :                        ch_->frames.ns_fcu_untilted.c_str());
+    1031        2327 :     return {};
+    1032             :   }
+    1033             : }
+    1034             : /*//}*/
+    1035             : 
+    1036             : /*//{ callbackImu() */
+    1037             : template <int n_measurements>
+    1038           0 : void Correction<n_measurements>::callbackImu(const sensor_msgs::Imu::ConstPtr msg) {
+    1039             : 
+    1040           0 :   if (!is_initialized_) {
+    1041           0 :     return;
+    1042             :   }
+    1043             : 
+    1044           0 :   auto res = getCorrectionFromImu(msg);
+    1045           0 :   if (res) {
+    1046           0 :     applyCorrection(res.value(), msg->header.stamp);
+    1047             :   } else {
+    1048           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: Could not obtain correction from Imu msg", getPrintName().c_str());
+    1049             :   }
+    1050             : }
+    1051             : /*//}*/
+    1052             : 
+    1053             : /*//{ getCorrectionFromImu() */
+    1054             : template <int n_measurements>
+    1055           0 : std::optional<typename Correction<n_measurements>::measurement_t> Correction<n_measurements>::getCorrectionFromImu(
+    1056             :     const sensor_msgs::ImuConstPtr msg) {
+    1057             : 
+    1058           0 :   switch (est_type_) {
+    1059             : 
+    1060             :     // handle lateral estimators
+    1061           0 :     case EstimatorType_t::LATERAL: {
+    1062             : 
+    1063           0 :       switch (state_id_) {
+    1064             : 
+    1065           0 :         case StateId_t::ACCELERATION: {
+    1066           0 :           if (is_in_body_frame_) {
+    1067           0 :             auto res = getVecInFrame(msg->linear_acceleration, msg->header, ns_frame_id_ + "_att_only");
+    1068           0 :             if (res) {
+    1069           0 :               measurement_t measurement;
+    1070           0 :               measurement = res.value();
+    1071           0 :               return measurement;
+    1072             :             } else {
+    1073           0 :               ROS_WARN_THROTTLE(1.0, "[%s]: Could not obtain IMU acceleration in frame: %s", getPrintName().c_str(), (ns_frame_id_+"_att_only").c_str());
+    1074           0 :               return {};
+    1075             :             }
+    1076             :           } else {
+    1077           0 :             measurement_t measurement;
+    1078           0 :             measurement(0) = msg->linear_acceleration.x;
+    1079           0 :             measurement(1) = msg->linear_acceleration.y;
+    1080           0 :             return measurement;
+    1081             :           }
+    1082             :           break;
+    1083             :         }
+    1084             : 
+    1085           0 :         default: {
+    1086           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromImu() switch", getPrintName().c_str());
+    1087           0 :           return {};
+    1088             :         }
+    1089             :       }
+    1090             :       break;
+    1091             :     }
+    1092             : 
+    1093             :     // handle altitude estimators
+    1094           0 :     case EstimatorType_t::ALTITUDE: {
+    1095             : 
+    1096           0 :       switch (state_id_) {
+    1097             : 
+    1098           0 :         case StateId_t::ACCELERATION: {
+    1099           0 :           if (is_in_body_frame_) {
+    1100           0 :             auto res = getZVelUntilted(msg->linear_acceleration, msg->header);
+    1101           0 :             if (res) {
+    1102           0 :               measurement_t measurement;
+    1103           0 :               measurement = res.value();
+    1104           0 :               measurement(0) -= gravity_norm_;
+    1105           0 :               return measurement;
+    1106             :             } else {
+    1107           0 :               ROS_WARN_THROTTLE(1.0, "[%s]: Could not obtain IMU Z acceleration", getPrintName().c_str());
+    1108           0 :               return {};
+    1109             :             }
+    1110             :           } else {
+    1111           0 :             measurement_t measurement;
+    1112           0 :             measurement(0) = msg->linear_acceleration.z - gravity_norm_;
+    1113           0 :             return measurement;
+    1114             :           }
+    1115             :           break;
+    1116             :         }
+    1117             : 
+    1118           0 :         default: {
+    1119           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromImu() switch", getPrintName().c_str());
+    1120           0 :           return {};
+    1121             :         }
+    1122             :       }
+    1123             :       break;
+    1124             :     }
+    1125             : 
+    1126             :     // handle heading estimators
+    1127           0 :     case EstimatorType_t::HEADING: {
+    1128             : 
+    1129           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: EstimatorType_t::HEADING in getCorrectionFromImu() not implemented", getPrintName().c_str());
+    1130           0 :       return {};
+    1131             :       break;
+    1132             :     }
+    1133             :   }
+    1134             : 
+    1135           0 :   ROS_ERROR("[%s]: FIXME: should not be possible to get into this part of code", getPrintName().c_str());
+    1136           0 :   return {};
+    1137             : }
+    1138             : /*//}*/
+    1139             : 
+    1140             : /*//{ callbackRtk() */
+    1141             : template <int n_measurements>
+    1142        7879 : void Correction<n_measurements>::callbackRtk(const mrs_msgs::RtkGps::ConstPtr msg) {
+    1143             : 
+    1144        7879 :   if (!is_initialized_) {
+    1145           0 :     return;
+    1146             :   }
+    1147             : 
+    1148        7877 :   auto res = getCorrectionFromRtk(msg);
+    1149        7886 :   if (res) {
+    1150        7878 :     applyCorrection(res.value(), msg->header.stamp);
+    1151             :   }
+    1152             : }
+    1153             : /*//}*/
+    1154             : 
+    1155             : /*//{ getCorrectionFromRtk() */
+    1156             : template <int n_measurements>
+    1157        7979 : std::optional<typename Correction<n_measurements>::measurement_t> Correction<n_measurements>::getCorrectionFromRtk(const mrs_msgs::RtkGpsConstPtr msg) {
+    1158             : 
+    1159       15959 :   geometry_msgs::PoseStamped rtk_pos;
+    1160             : 
+    1161        7967 :   if (!std::isfinite(msg->gps.latitude)) {
+    1162           0 :     ROS_ERROR_THROTTLE(1.0, "[%s] NaN detected in RTK variable \"msg->latitude\"!!!", getPrintName().c_str());
+    1163           0 :     return {};
+    1164             :   }
+    1165             : 
+    1166        7960 :   if (!std::isfinite(msg->gps.longitude)) {
+    1167           0 :     ROS_ERROR_THROTTLE(1.0, "[%s] NaN detected in RTK variable \"msg->longitude\"!!!", getPrintName().c_str());
+    1168           0 :     return {};
+    1169             :   }
+    1170             : 
+    1171        7971 :   if (!std::isfinite(msg->gps.altitude)) {
+    1172           0 :     ROS_ERROR_THROTTLE(1.0, "[%s] NaN detected in RTK variable \"msg->altitude\"!!!", getPrintName().c_str());
+    1173           0 :     return {};
+    1174             :   }
+    1175             : 
+    1176        7965 :   if (msg->fix_type.fix_type != mrs_msgs::RtkFixType::RTK_FIX) {
+    1177           0 :     ROS_INFO_THROTTLE(1.0, "[%s] %s RTK FIX", getPrintName().c_str(), Support::waiting_for_string.c_str());
+    1178           0 :     return {};
+    1179             :   }
+    1180             : 
+    1181        7968 :   rtk_pos.header = msg->header;
+    1182        7971 :   mrs_lib::UTM(msg->gps.latitude, msg->gps.longitude, &rtk_pos.pose.position.x, &rtk_pos.pose.position.y);
+    1183        7942 :   rtk_pos.pose.position.z  = msg->gps.altitude;
+    1184        7944 :   rtk_pos.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+    1185             : 
+    1186        7968 :   rtk_pos.pose.position.x -= ch_->world_origin.x;
+    1187        7962 :   rtk_pos.pose.position.y -= ch_->world_origin.y;
+    1188             : 
+    1189        7965 :   Correction::measurement_t measurement;
+    1190             : 
+    1191             :   // transform the RTK position from antenna to FCU
+    1192        7966 :   auto res = transformRtkToFcu(rtk_pos);
+    1193        7980 :   if (res) {
+    1194        7980 :     rtk_pos.pose = res.value();
+    1195             :   } else {
+    1196           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: transform to fcu failed", getPrintName().c_str());
+    1197           0 :     return {};
+    1198             :   }
+    1199             : 
+    1200        7980 :   switch (est_type_) {
+    1201             : 
+    1202             :     // handle lateral estimators
+    1203        5425 :     case EstimatorType_t::LATERAL: {
+    1204             : 
+    1205        5425 :       switch (state_id_) {
+    1206             : 
+    1207        5425 :         case StateId_t::POSITION: {
+    1208        5425 :           measurement(0) = rtk_pos.pose.position.x;
+    1209        5425 :           measurement(1) = rtk_pos.pose.position.y;
+    1210        5424 :           return measurement;
+    1211             :           break;
+    1212             :         }
+    1213             : 
+    1214           0 :         default: {
+    1215           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromRtk() switch", getPrintName().c_str());
+    1216           0 :           return {};
+    1217             :         }
+    1218             :       }
+    1219             :       break;
+    1220             :     }
+    1221             : 
+    1222             :     // handle altitude estimators
+    1223        2555 :     case EstimatorType_t::ALTITUDE: {
+    1224             : 
+    1225        2555 :       switch (state_id_) {
+    1226             : 
+    1227        2555 :         case StateId_t::POSITION: {
+    1228        2555 :           measurement(0) = rtk_pos.pose.position.z;
+    1229        2555 :           if (!got_avg_init_rtk_z_) {
+    1230          22 :             getAvgRtkInitZ(measurement(0));
+    1231          22 :             return {};
+    1232             :           }
+    1233        2533 :           measurement(0) -= rtk_init_z_avg_;
+    1234        2533 :           return measurement;
+    1235             :           break;
+    1236             :         }
+    1237             : 
+    1238           0 :         default: {
+    1239           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromRtk() switch", getPrintName().c_str());
+    1240           0 :           return {};
+    1241             :         }
+    1242             :       }
+    1243             :       break;
+    1244             :     }
+    1245             : 
+    1246           0 :     case EstimatorType_t::HEADING: {
+    1247           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: should not be possible to get into this branch of getCorrectionFromRtk() switch", getPrintName().c_str());
+    1248           0 :       return {};
+    1249             :       break;
+    1250             :     }
+    1251             :   }
+    1252             : 
+    1253           0 :   ROS_ERROR("[%s]: FIXME: should not be possible to get into this part of code", getPrintName().c_str());
+    1254           0 :   return {};
+    1255             : }
+    1256             : /*//}*/
+    1257             : 
+    1258             : /*//{ callbackPoint() */
+    1259             : template <int n_measurements>
+    1260      181189 : void Correction<n_measurements>::callbackPoint(const geometry_msgs::PointStamped::ConstPtr msg) {
+    1261             : 
+    1262      181189 :   if (!is_initialized_) {
+    1263           0 :     return;
+    1264             :   }
+    1265             : 
+    1266      181033 :   auto res = getCorrectionFromPoint(msg);
+    1267      180882 :   if (res) {
+    1268      180991 :     applyCorrection(res.value(), msg->header.stamp);
+    1269             :   }
+    1270             : }
+    1271             : /*//}*/
+    1272             : 
+    1273             : /*//{ getCorrectionFromPoint() */
+    1274             : template <int n_measurements>
+    1275      184893 : std::optional<typename Correction<n_measurements>::measurement_t> Correction<n_measurements>::getCorrectionFromPoint(
+    1276             :     const geometry_msgs::PointStampedConstPtr msg) {
+    1277             : 
+    1278      184893 :   switch (est_type_) {
+    1279             : 
+    1280             :     // handle lateral estimators
+    1281      184888 :     case EstimatorType_t::LATERAL: {
+    1282             : 
+    1283      184888 :       switch (state_id_) {
+    1284             : 
+    1285      184880 :         case StateId_t::POSITION: {
+    1286      184880 :           measurement_t measurement;
+    1287      184793 :           measurement(0) = msg->point.x;
+    1288      184696 :           measurement(1) = msg->point.y;
+    1289      184731 :           return measurement;
+    1290             :           break;
+    1291             :         }
+    1292             : 
+    1293           8 :         default: {
+    1294           8 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromOdometry() switch", getPrintName().c_str());
+    1295           0 :           return {};
+    1296             :         }
+    1297             :       }
+    1298             :       break;
+    1299             :     }
+    1300             : 
+    1301             :     // handle altitude estimators
+    1302           0 :     case EstimatorType_t::ALTITUDE: {
+    1303             : 
+    1304           0 :       switch (state_id_) {
+    1305             : 
+    1306           0 :         case StateId_t::POSITION: {
+    1307           0 :           measurement_t measurement;
+    1308           0 :           measurement(0) = msg->point.z;
+    1309           0 :           return measurement;
+    1310             :           break;
+    1311             :         }
+    1312             : 
+    1313           0 :         default: {
+    1314           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromOdometry() switch", getPrintName().c_str());
+    1315           0 :           return {};
+    1316             :         }
+    1317             :       }
+    1318             :       break;
+    1319             :     }
+    1320             : 
+    1321           5 :     default: {
+    1322           5 :       ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromOdometry() switch", getPrintName().c_str());
+    1323           0 :       return {};
+    1324             :     }
+    1325             :   }
+    1326             : 
+    1327             : 
+    1328             :   ROS_ERROR("[%s]: FIXME: should not be possible to get into this part of code", getPrintName().c_str());
+    1329             :   return {};
+    1330             : }
+    1331             : /*//}*/
+    1332             : 
+    1333             : /*//{ callbackVector() */
+    1334             : template <int n_measurements>
+    1335      199280 : void Correction<n_measurements>::callbackVector(const geometry_msgs::Vector3Stamped::ConstPtr msg) {
+    1336             : 
+    1337      199280 :   if (!is_initialized_) {
+    1338           0 :     return;
+    1339             :   }
+    1340             : 
+    1341      199066 :   auto res = getCorrectionFromVector(msg);
+    1342      199330 :   if (res) {
+    1343      199298 :     applyCorrection(res.value(), msg->header.stamp);
+    1344             :   } else {
+    1345          32 :     ROS_WARN_THROTTLE(1.0, "[%s]: Could not obtain correction from Vector3Stamped msg", getPrintName().c_str());
+    1346             :   }
+    1347             : }
+    1348             : /*//}*/
+    1349             : 
+    1350             : /*//{ getCorrectionFromVector() */
+    1351             : template <int n_measurements>
+    1352      199401 : std::optional<typename Correction<n_measurements>::measurement_t> Correction<n_measurements>::getCorrectionFromVector(
+    1353             :     const geometry_msgs::Vector3StampedConstPtr msg) {
+    1354             : 
+    1355      199401 :   switch (est_type_) {
+    1356             : 
+    1357             :     // handle lateral estimators
+    1358       10675 :     case EstimatorType_t::LATERAL: {
+    1359             : 
+    1360       10675 :       switch (state_id_) {
+    1361             : 
+    1362       10675 :         case StateId_t::VELOCITY: {
+    1363       10675 :           auto res = getVecInFrame(msg->vector, msg->header, ns_frame_id_ + "_att_only");
+    1364       10676 :           if (res) {
+    1365       10624 :             measurement_t measurement;
+    1366       10624 :             measurement = res.value();
+    1367       10625 :             return measurement;
+    1368             :           } else {
+    1369          51 :             return {};
+    1370             :           }
+    1371             :           break;
+    1372             :         }
+    1373             : 
+    1374           0 :         default: {
+    1375           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromVector() switch", getPrintName().c_str());
+    1376           0 :           return {};
+    1377             :         }
+    1378             :       }
+    1379             :       break;
+    1380             :     }
+    1381             : 
+    1382             :     // handle altitude estimators
+    1383      188661 :     case EstimatorType_t::ALTITUDE: {
+    1384             : 
+    1385      188661 :       switch (state_id_) {
+    1386             : 
+    1387      188553 :         case StateId_t::VELOCITY: {
+    1388      188553 :           auto res = getZVelUntilted(msg->vector, msg->header);
+    1389      188785 :           if (res) {
+    1390      188776 :             measurement_t measurement;
+    1391      188775 :             measurement = res.value();
+    1392      188776 :             return measurement;
+    1393             :           } else {
+    1394           9 :             ROS_WARN_THROTTLE(1.0, "[%s]: Could not obtain untilted Z velocity", getPrintName().c_str());
+    1395           9 :             return {};
+    1396             :           }
+    1397             :           break;
+    1398             :         }
+    1399             : 
+    1400         108 :         default: {
+    1401         108 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromVector() switch", getPrintName().c_str());
+    1402           0 :           return {};
+    1403             :         }
+    1404             :       }
+    1405             :       break;
+    1406             :     }
+    1407             : 
+    1408             :     // handle heading estimators
+    1409           0 :     case EstimatorType_t::HEADING: {
+    1410             : 
+    1411           0 :       switch (state_id_) {
+    1412             : 
+    1413           0 :         case StateId_t::VELOCITY: {
+    1414             :           try {
+    1415           0 :             if (!sh_orientation_.hasMsg()) {
+    1416           0 :               ROS_INFO_THROTTLE(1.0, "[%s]: %s orientation on topic: %s", getPrintName().c_str(), Support::waiting_for_string.c_str(),
+    1417             :                                 orientation_topic_.c_str());
+    1418           0 :               return {};
+    1419             :             }
+    1420           0 :             measurement_t measurement;
+    1421           0 :             measurement(0) = mrs_lib::AttitudeConverter(sh_orientation_.getMsg()->quaternion).getHeadingRate(msg->vector);
+    1422           0 :             return measurement;
+    1423             :           }
+    1424           0 :           catch (...) {
+    1425           0 :             ROS_ERROR_THROTTLE(1.0, "[%s]: Exception caught during getting heading rate (getCorrectionFromVector())", getPrintName().c_str());
+    1426           0 :             return {};
+    1427             :           }
+    1428             :           break;
+    1429             :         }
+    1430             : 
+    1431           0 :         default: {
+    1432           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromVector() switch", getPrintName().c_str());
+    1433           0 :           return {};
+    1434             :         }
+    1435             :       }
+    1436             :       break;
+    1437             :     }
+    1438             :   }
+    1439             : 
+    1440          67 :   ROS_ERROR("[%s]: FIXME: should not be possible to get into this part of code", getPrintName().c_str());
+    1441           0 :   return {};
+    1442             : }
+    1443             : /*//}*/
+    1444             : 
+    1445             : /*//{ getCorrectionFromQuat() */
+    1446             : template <int n_measurements>
+    1447           0 : std::optional<typename Correction<n_measurements>::measurement_t> Correction<n_measurements>::getCorrectionFromQuat([
+    1448             :     [maybe_unused]] const geometry_msgs::QuaternionStampedConstPtr msg) {
+    1449             : 
+    1450           0 :   switch (est_type_) {
+    1451             : 
+    1452             :       // handle lateral estimators
+    1453             :       /* case EstimatorType_t::LATERAL: { */
+    1454             : 
+    1455             :       /*   default: { */
+    1456             :       /*     ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromOdometry() switch", getPrintName().c_str()); */
+    1457             :       /*     return {}; */
+    1458             :       /*   } break; */
+    1459             :       /* } */
+    1460             : 
+    1461             :       /* // handle altitude estimators */
+    1462             :       /* case EstimatorType_t::ALTITUDE: { */
+    1463             : 
+    1464             :       /* default: { */
+    1465             :       /*     ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromOdometry() switch", getPrintName().c_str()); */
+    1466             :       /*     return {}; */
+    1467             :       /*   } break; */
+    1468             :       /* } */
+    1469             : 
+    1470             :       /* // handle heading estimators */
+    1471             :       /* case EstimatorType_t::HEADING: { */
+    1472             : 
+    1473             :       /*   switch (state_id_) { */
+    1474             : 
+    1475             :       /*     /1* default: { *1/ */
+    1476             :       /*       ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromOdometry() switch", getPrintName().c_str()); */
+    1477             :       /*       return {}; */
+    1478             :       /*     } */
+    1479             :       /*   } */
+    1480             :     default: {
+    1481           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: unhandled case in getCorrectionFromOdometry() switch", getPrintName().c_str());
+    1482           0 :       return {};
+    1483             :     }
+    1484             :   }
+    1485             : 
+    1486             :   ROS_ERROR("[%s]: FIXME: should not be possible to get into this part of code", getPrintName().c_str());
+    1487             :   return {};
+    1488             : }
+    1489             : /*//}*/
+    1490             : 
+    1491             : /*//{ applyCorrection() */
+    1492             : template <int n_measurements>
+    1493      647394 : void Correction<n_measurements>::applyCorrection(const measurement_t& meas, const ros::Time& stamp) {
+    1494             : 
+    1495             :   {
+    1496      647394 :     std::scoped_lock lock(mtx_msg_time_);
+    1497      647207 :     if (first_timestamp_) {
+    1498         344 :       prev_msg_time_   = stamp - ros::Duration(0.01);
+    1499         342 :       msg_time_        = stamp;
+    1500         342 :       healthy_time_    = ros::Time(0);
+    1501         343 :       first_timestamp_ = false;
+    1502             :     }
+    1503             : 
+    1504      647047 :     prev_msg_time_ = msg_time_;
+    1505      647047 :     msg_time_      = stamp;
+    1506      647047 :     healthy_time_ += msg_time_ - prev_msg_time_;
+    1507             :   }
+    1508             : 
+    1509      647078 :   MeasurementStamped meas_stamped;
+    1510      647108 :   meas_stamped.value = meas;
+    1511      647275 :   meas_stamped.stamp = stamp;
+    1512      647275 :   publishCorrection(meas_stamped, ph_correction_raw_);
+    1513      647447 :   if (process(meas_stamped.value)) {
+    1514      639814 :     publishCorrection(meas_stamped, ph_correction_proc_);
+    1515      639948 :     fun_apply_correction_(meas_stamped, getR(), getStateId());
+    1516             :   }
+    1517      646379 : }
+    1518             : /*//}*/
+    1519             : 
+    1520             : /* //{ callbackToggleRange() */
+    1521             : template <int n_measurements>
+    1522           0 : bool Correction<n_measurements>::callbackToggleRange(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res) {
+    1523             : 
+    1524           0 :   if (!is_initialized_) {
+    1525           0 :     return false;
+    1526             :   }
+    1527             : 
+    1528           0 :   if (!range_enabled_ && req.data) {
+    1529           0 :     processors_["saturate"]->toggle(true);
+    1530             :   }
+    1531             : 
+    1532           0 :   range_enabled_ = req.data;
+    1533             : 
+    1534             :   // after enabling range we want to start correcting the altitude slowly
+    1535             : 
+    1536           0 :   res.success = true;
+    1537           0 :   res.message = (range_enabled_ ? "Range enabled" : "Range disabled");
+    1538             : 
+    1539           0 :   if (range_enabled_) {
+    1540             : 
+    1541           0 :     ROS_INFO("[%s]: Range enabled.", getPrintName().c_str());
+    1542             : 
+    1543             :   } else {
+    1544             : 
+    1545           0 :     ROS_INFO("[%s]: Range disabled", getPrintName().c_str());
+    1546             :   }
+    1547             : 
+    1548           0 :   return true;
+    1549             : }
+    1550             : 
+    1551             : //}
+    1552             : 
+    1553             : /*//{ getZVelUntilted() */
+    1554             : template <int n_measurements>
+    1555      188717 : std::optional<typename Correction<n_measurements>::measurement_t> Correction<n_measurements>::getZVelUntilted(const geometry_msgs::Vector3& msg,
+    1556             :                                                                                                               const std_msgs::Header&       header) {
+    1557             : 
+    1558             :   // untilt the desired vector
+    1559      377501 :   geometry_msgs::PointStamped vel;
+    1560      188633 :   vel.point.x = msg.x;
+    1561      188633 :   vel.point.y = msg.y;
+    1562      188633 :   vel.point.z = msg.z;
+    1563      188633 :   vel.header  = header;
+    1564             :   /* vel.header.frame_id = ch_->frames.ns_fcu; */
+    1565      188711 :   vel.header.stamp = header.stamp;
+    1566             : 
+    1567      377496 :   auto res = ch_->transformer->transformSingle(vel, ch_->frames.ns_fcu_untilted);
+    1568      188785 :   if (res) {
+    1569      188776 :     measurement_t measurement;
+    1570      188776 :     measurement(0) = res.value().point.z;
+    1571      188776 :     return measurement;
+    1572             :   } else {
+    1573           9 :     ROS_WARN_THROTTLE(1.0, "[%s]: Transform from %s to %s failed", getPrintName().c_str(), vel.header.frame_id.c_str(), ch_->frames.ns_fcu_untilted.c_str());
+    1574           9 :     return {};
+    1575             :   }
+    1576             : }
+    1577             : /*//}*/
+    1578             : 
+    1579             : /*//{ getVecInFrame() */
+    1580             : template <int n_measurements>
+    1581       10676 : std::optional<typename Correction<n_measurements>::measurement_t> Correction<n_measurements>::getVecInFrame(const geometry_msgs::Vector3& vec_in,
+    1582             :                                                                                                             const std_msgs::Header&       source_header,
+    1583             :                                                                                                             const std::string             target_frame) {
+    1584             : 
+    1585       10676 :   measurement_t measurement;
+    1586             : 
+    1587       21343 :   geometry_msgs::Vector3Stamped vec;
+    1588       10671 :   vec.header = source_header;
+    1589       10670 :   vec.vector = vec_in;
+    1590             : 
+    1591       21346 :   geometry_msgs::Vector3Stamped transformed_vel;
+    1592       21347 :   auto                          res = ch_->transformer->transformSingle(vec, target_frame);
+    1593       10676 :   if (res) {
+    1594       10625 :     transformed_vel = res.value();
+    1595       10625 :     measurement(0)  = transformed_vel.vector.x;
+    1596       10624 :     measurement(1)  = transformed_vel.vector.y;
+    1597       10625 :     return measurement;
+    1598             :   } else {
+    1599          51 :     ROS_WARN_THROTTLE(1.0, "[%s]: Transform of velocity from %s to %s failed.", getPrintName().c_str(), vec.header.frame_id.c_str(), target_frame.c_str());
+    1600          51 :     return {};
+    1601             :   }
+    1602             : }
+    1603             : /*//}*/
+    1604             : 
+    1605             : /*//{ transformRtkToFcu() */
+    1606             : template <int n_measurements>
+    1607        7977 : std::optional<geometry_msgs::Pose> Correction<n_measurements>::transformRtkToFcu(const geometry_msgs::PoseStamped& pose_in) const {
+    1608             : 
+    1609       15957 :   geometry_msgs::PoseStamped pose_tmp = pose_in;
+    1610             : 
+    1611             :   // inject current orientation into rtk pose
+    1612       15946 :   auto res1 = ch_->transformer->getTransform(ch_->frames.ns_fcu_untilted, ch_->frames.ns_fcu, ros::Time::now());
+    1613        7980 :   if (res1) {
+    1614        7980 :     pose_tmp.pose.orientation = res1.value().transform.rotation;
+    1615             :   } else {
+    1616           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: Could not obtain transform from %s to %s. Not using this correction.", getPrintName().c_str(),
+    1617             :                        ch_->frames.ns_fcu_untilted.c_str(), ch_->frames.ns_fcu.c_str());
+    1618           0 :     return {};
+    1619             :   }
+    1620             : 
+    1621             :   // invert tf
+    1622        7980 :   tf2::Transform             tf_utm_to_antenna = Support::tf2FromPose(pose_tmp.pose);
+    1623       15960 :   geometry_msgs::PoseStamped utm_in_antenna;
+    1624        7980 :   utm_in_antenna.pose            = Support::poseFromTf2(tf_utm_to_antenna.inverse());
+    1625        7980 :   utm_in_antenna.header.stamp    = pose_in.header.stamp;
+    1626        7980 :   utm_in_antenna.header.frame_id = ch_->frames.ns_rtk_antenna;
+    1627             : 
+    1628             :   // transform to fcu
+    1629       15960 :   geometry_msgs::PoseStamped utm_in_fcu;
+    1630        7980 :   utm_in_fcu.header.frame_id = ch_->frames.ns_fcu;
+    1631        7980 :   utm_in_fcu.header.stamp    = pose_in.header.stamp;
+    1632       15960 :   auto res2                  = ch_->transformer->transformSingle(utm_in_antenna, ch_->frames.ns_fcu);
+    1633             : 
+    1634        7980 :   if (res2) {
+    1635        7980 :     utm_in_fcu = res2.value();
+    1636             :   } else {
+    1637           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: Could not transform pose to %s. Not using this correction.", getPrintName().c_str(), ch_->frames.ns_fcu.c_str());
+    1638           0 :     return {};
+    1639             :   }
+    1640             : 
+    1641             :   // invert tf
+    1642        7980 :   tf2::Transform      tf_fcu_to_utm = Support::tf2FromPose(utm_in_fcu.pose);
+    1643        7980 :   geometry_msgs::Pose fcu_in_utm    = Support::poseFromTf2(tf_fcu_to_utm.inverse());
+    1644             : 
+    1645        7980 :   return fcu_in_utm;
+    1646             : }
+    1647             : /*//}*/
+    1648             : 
+    1649             : /*//{ getAvgRtkInitZ() */
+    1650             : template <int n_measurements>
+    1651          22 : void Correction<n_measurements>::getAvgRtkInitZ(const double rtk_z) {
+    1652             : 
+    1653          22 :   if (!got_avg_init_rtk_z_) {
+    1654             : 
+    1655          22 :     double rtk_avg = rtk_init_z_avg_ / got_rtk_counter_;
+    1656             : 
+    1657          22 :     if (got_rtk_counter_ < 10 || (got_rtk_counter_ < 300 && std::fabs(rtk_z - rtk_avg) > 0.1)) {
+    1658             : 
+    1659          20 :       rtk_init_z_avg_ += rtk_z;
+    1660          20 :       got_rtk_counter_++;
+    1661          20 :       rtk_avg = rtk_init_z_avg_ / got_rtk_counter_;
+    1662          20 :       ROS_INFO("[%s]: RTK ASL altitude sample #%d: %.2f; avg: %.2f", getPrintName().c_str(), got_rtk_counter_, rtk_z, rtk_avg);
+    1663          20 :       return;
+    1664             : 
+    1665             :     } else {
+    1666             : 
+    1667           2 :       rtk_init_z_avg_     = rtk_avg;
+    1668           2 :       got_avg_init_rtk_z_ = true;
+    1669           2 :       ROS_INFO("[%s]: RTK ASL altitude avg: %f", getPrintName().c_str(), rtk_avg);
+    1670             :     }
+    1671             :   }
+    1672             : }
+    1673             : /*//}*/
+    1674             : 
+    1675             : /*//{ checkMsgDelay() */
+    1676             : template <int n_measurements>
+    1677             : void Correction<n_measurements>::checkMsgDelay(const ros::Time& msg_time) {
+    1678             : 
+    1679             :   const double delay = (ros::Time::now() - msg_time).toSec();
+    1680             :   if (delay > msg_delay_warn_limit_) {
+    1681             :     if (delay > msg_delay_limit_) {
+    1682             :       ROS_ERROR_THROTTLE(1.0, "[%s]: message too delayed (%.4f s)", getPrintName().c_str(), delay);
+    1683             :       is_delay_ok_ = false;
+    1684             :     } else {
+    1685             :       ROS_WARN_THROTTLE(5.0, "[%s]: message delayed (%.4f s)", getPrintName().c_str(), delay);
+    1686             :       is_delay_ok_ = true;
+    1687             :     }
+    1688             :   } else {
+    1689             :     is_delay_ok_ = true;
+    1690             :   }
+    1691             :   publishDelay(delay);
+    1692             : }
+    1693             : /*//}*/
+    1694             : 
+    1695             : /*//{ isTimestampOk() */
+    1696             : template <int n_measurements>
+    1697             : bool Correction<n_measurements>::isTimestampOk() {
+    1698             : 
+    1699             :   if (first_timestamp_) {
+    1700             :     return true;
+    1701             :   }
+    1702             : 
+    1703             :   ros::Time msg_time, prev_msg_time;
+    1704             :   {
+    1705             :     std::scoped_lock lock(mtx_msg_time_);
+    1706             :     msg_time      = msg_time_;
+    1707             :     prev_msg_time = prev_msg_time_;
+    1708             :   }
+    1709             :   const double delta = msg_time.toSec() - prev_msg_time.toSec();
+    1710             : 
+    1711             :   if (msg_time.toSec() <= 0.0) {
+    1712             :     ROS_ERROR_THROTTLE(1.0, "[%s]: current timestamp non-positive: %f", getPrintName().c_str(), msg_time.toSec());
+    1713             :     return false;
+    1714             :   }
+    1715             : 
+    1716             :   if (delta <= 0.0) {
+    1717             :     ROS_WARN_THROTTLE(1.0, "[%s]: time delta non-positive: %f", getPrintName().c_str(), delta);
+    1718             :     return true;
+    1719             :   }
+    1720             : 
+    1721             :   if (delta < 0.001) {
+    1722             :     ROS_WARN_THROTTLE(1.0, "[%s]: time delta too small: %f", getPrintName().c_str(), delta);
+    1723             :     return true;
+    1724             :   }
+    1725             : 
+    1726             :   if (delta > time_since_last_msg_limit_) {
+    1727             :     ROS_ERROR_THROTTLE(1.0, "[%s]: time since last msg too long %f > %f", getPrintName().c_str(), delta, time_since_last_msg_limit_);
+    1728             :     return false;
+    1729             :   }
+    1730             : 
+    1731             :   return true;
+    1732             : }  // namespace mrs_uav_state_estimators
+    1733             : /*//}*/
+    1734             : 
+    1735             : /*//{ isMsgComing() */
+    1736             : template <int n_measurements>
+    1737      674680 : bool Correction<n_measurements>::isMsgComing() {
+    1738             : 
+    1739      674680 :   const ros::Time msg_time = mrs_lib::get_mutexed(mtx_msg_time_, msg_time_);
+    1740      674434 :   const double    delta    = ros::Time::now().toSec() - msg_time.toSec();
+    1741             : 
+    1742      674433 :   if (msg_time.toSec() <= 0.0) {
+    1743           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: current timestamp non-positive: %f", getPrintName().c_str(), msg_time.toSec());
+    1744           0 :     return false;
+    1745             :   }
+    1746             : 
+    1747      674398 :   if (delta > time_since_last_msg_limit_) {
+    1748           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: time since last msg too long %f > %f", getPrintName().c_str(), delta, time_since_last_msg_limit_);
+    1749           0 :     return false;
+    1750             :   }
+    1751             : 
+    1752      674398 :   return true;
+    1753             : }  // namespace mrs_uav_state_estimators
+    1754             : /*//}*/
+    1755             : 
+    1756             : /*//{ createProcessorFromName() */
+    1757             : template <int n_measurements>
+    1758         327 : std::shared_ptr<Processor<n_measurements>> Correction<n_measurements>::createProcessorFromName(const std::string& name, ros::NodeHandle& nh) {
+    1759             : 
+    1760         327 :   if (name == "median_filter") {
+    1761          76 :     return std::make_shared<ProcMedianFilter<n_measurements>>(nh, getNamespacedName(), name, ch_, ph_);
+    1762         251 :   } else if (name == "saturate") {
+    1763          82 :     return std::make_shared<ProcSaturate<n_measurements>>(nh, getNamespacedName(), name, ch_, ph_, state_id_, fun_get_state_);
+    1764         169 :   } else if (name == "excessive_tilt") {
+    1765          76 :     return std::make_shared<ProcExcessiveTilt<n_measurements>>(nh, getNamespacedName(), name, ch_, ph_);
+    1766          93 :   } else if (name == "tf_to_world") {
+    1767          93 :     return std::make_shared<ProcTfToWorld<n_measurements>>(nh, getNamespacedName(), name, ch_, ph_);
+    1768             :   } else {
+    1769           0 :     ROS_ERROR("[%s]: requested invalid processor %s", getPrintName().c_str(), name.c_str());
+    1770           0 :     ros::shutdown();
+    1771             :   }
+    1772           0 :   return std::shared_ptr<Processor<n_measurements>>(nullptr);
+    1773             : }
+    1774             : /*//}*/
+    1775             : 
+    1776             : /*//{ process() */
+    1777             : template <int n_measurements>
+    1778      655146 : bool Correction<n_measurements>::process(Correction<n_measurements>::measurement_t& measurement) {
+    1779             : 
+    1780      655146 :   bool ok_flag   = true;
+    1781      655146 :   bool fuse_flag = true;
+    1782             : 
+    1783     1266296 :   for (auto proc_name :
+    1784             :        processor_names_) {  // need to access the processors in the specific order from the config (e.g. median filter should go before saturation etc.)
+    1785             :     /* bool is_ok, should_fuse; */
+    1786      611354 :     auto [is_ok, should_fuse] = processors_[proc_name]->process(measurement);
+    1787      611060 :     ok_flag &= is_ok;
+    1788      611060 :     fuse_flag &= should_fuse;
+    1789             :   }
+    1790      654947 :   if (fuse_flag) {
+    1791      640162 :     if (!ok_flag) {
+    1792         306 :       setR(default_R_ * R_coeff_);
+    1793         306 :       ROS_INFO_THROTTLE(1.0, "[%s]: set R to %.4f", getPrintName().c_str(), default_R_ * R_coeff_);
+    1794         306 :       return true;
+    1795             :     } else {
+    1796      639856 :       setR(default_R_);
+    1797      639884 :       return true;
+    1798             :     }
+    1799             :   }
+    1800       14785 :   return false;
+    1801             : }
+    1802             : /*//}*/
+    1803             : 
+    1804             : /*//{ resetProcessors() */
+    1805             : template <int n_measurements>
+    1806           0 : void Correction<n_measurements>::resetProcessors() {
+    1807             : 
+    1808           0 :   for (auto proc_name :
+    1809             :        processor_names_) {  // need to access the processors in the specific order from the config (e.g. median filter should go before saturation etc.)
+    1810             :     /* bool is_ok, should_fuse; */
+    1811           0 :     processors_[proc_name]->reset();
+    1812             :   }
+    1813           0 : }
+    1814             : /*//}*/
+    1815             : 
+    1816             : /*//{ publishCorrection() */
+    1817             : template <int n_measurements>
+    1818     1295333 : void Correction<n_measurements>::publishCorrection(const MeasurementStamped&                                 measurement_stamped,
+    1819             :                                                    mrs_lib::PublisherHandler<mrs_msgs::EstimatorCorrection>& ph_corr) {
+    1820             : 
+    1821     1295333 :   if (!ch_->debug_topics.correction) {
+    1822           0 :     return;
+    1823             :   }
+    1824             : 
+    1825     2590269 :   mrs_msgs::EstimatorCorrection msg;
+    1826     1294603 :   msg.header.stamp    = measurement_stamped.stamp;
+    1827     1294603 :   msg.header.frame_id = ns_frame_id_;
+    1828     1295183 :   msg.name            = name_;
+    1829     1295191 :   msg.estimator_name  = est_name_;
+    1830     1295166 :   msg.state_id        = state_id_;
+    1831     1295166 :   msg.covariance.resize(n_measurements * n_measurements);
+    1832     2983229 :   for (int i = 0; i < measurement_stamped.value.rows(); i++) {
+    1833     1688495 :     msg.state.push_back(measurement_stamped.value(i));
+    1834     1689274 :     msg.covariance[n_measurements * i + i] = getR();
+    1835             :   }
+    1836             : 
+    1837     1294423 :   ph_corr.publish(msg);
+    1838             : }
+    1839             : /*//}*/
+    1840             : 
+    1841             : /*//{ publishDelay() */
+    1842             : template <int n_measurements>
+    1843             : void Correction<n_measurements>::publishDelay(const double delay) {
+    1844             : 
+    1845             :   if (!ch_->debug_topics.corr_delay) {
+    1846             :     return;
+    1847             :   }
+    1848             : 
+    1849             :   mrs_msgs::Float64Stamped msg;
+    1850             :   msg.header.stamp    = ros::Time::now();
+    1851             :   msg.header.frame_id = ns_frame_id_;
+    1852             :   msg.value           = delay;
+    1853             : 
+    1854             :   ph_delay_.publish(msg);
+    1855             : }
+    1856             : /*//}*/
+    1857             : 
+    1858             : }  // namespace mrs_uav_state_estimators
+    1859             : 
+    1860             : #endif  // ESTIMATORS_CORRECTION_H
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.gcov.png b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/correction.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..918b8eeca7bbabf6a91118d8cc1b19d866ca02b8 GIT binary patch literal 5386 zcmV+l74_Wam0000OP)t-s|NsB0 zs;a7|?_FK${{R500003000620&P%hU00009a7bBm000ie000ie0hKEb8vp|Te0YV4?lHTt3dwaj%^yUC# zYqtZM+l;1h*tR3fF^0B3AkBFW$jXPnNcUa>S}=0mR$(+ZjIpX~Mnp%`D4<)*%vJ&m zj62LNfN>9O7-P}QfOj(>0@eWQSrjqW&=~tx04p%wjexsyU5#r+*R7?)z0?(TZCeZN zU7ICl9w#eYYaOte=?L7mI}Grb$kEt)P1jb8Hn>B&HnMGnYmHil)a7DfTPJAHZ1bvqf@0)ooJv7)?zMFe=M^ zF)MtuAOW^Uz}xN^y^Z8qx3oAc&7ND$e6EnP=K(FcM|W*Aj}-_joH#f#Z+UK|Ar}u2 zQkwy4-}efLF>xK$P)*aA2D43oCLAn{CEyM;B2u?vq!t1iEACg|8ok+gK$)N>tP~1h zvK%z)0cIZa z`3L9co}BfjAYaGGHy@I~9Vk{&4h;p!SZfL+Av>_K)w<4@Z4}oP2ydg0 z<~yVrC;(f<`guTrcpG&9qs0<P0Bq3PJRpYKv??^@>ne=5j4)>Yzz#GT0aZI?Kle={)26v8eq~lJ$le-(BP4?N zg#fK_3g^nRu6c}nNCSfaCHBInDvjo58|GqiF@e>pEl7qAGXq6Ibks!oubhSSL3IJ^)rvDEiN?+w&2%YT^1n#G9G)=Y&~wV^=6Gim#u8P`cHjw4Rs z%oygQc6~BQ#@-(Ru?ec5fUD z%Lh&5vLHRx#mHl{8OV%Aj>1HvNaUZ;_AN+FRr;y zrsKz&9c(Wiay%YkVCVl2kYlwz@Z8erl-zefUo z`%yGX^O>VD5Q^q`UDrpP5NR4vQF#v~?aPk_IdRlh%KZjnDi3al1O*XBCcQgGZ38cp zc>HhEQ`E@=_FR>6BwYJgYl!8j+6uT$;nvGwDF7}J(7K;7)96M8mA2Bksz?+au z2r^H)%nRJLVj0PUF0(nApwf<>n{$IMXq?#rt&bKC{8q*R8kMKJNpvAV`%s5L)d6d= zDOA8N)Ag{GQW>&~#}J~dY`D<yJ|2GBj@?H{LpT*}z_IIU z*GHl{fCBsgYo^-!IwuaThLqW_t4pb~X1ewqnM4L@dy*MD*T!U%8DmXW$|jy?vONO6 zWP8-Hsj)rA_H=B=Zzdy8FoUEc0giNR=KUp1<5Jk%TDI8MqptLAJ6q1lzP}u%wM^&E z%=nQhVvm$kEK9Vi6i;RhDZt4ZYu;ILpSuUn&8;R=Ve9&d3;>VvGYtSH<}v`EVgPdY z@G<~0pt&7ZPm$MBl%xLyn-7V352$-_b~*09S*S^!8@;^_c)5bZmuvV4Hn7X@lYe{Z z`eBIL&44>ckPtJPcuu4db_~kbi>~3`1*8H?8kv+>hOwrdWtz>+%Q36Fph^avc+@)W zpcI9~DL_-<_W^3w?OsJe#nT2BcyshgF>!XbE<7Q!g{`#7QjA$U&*N&YAG`FMEF8@{D_1um4 z(YX(LWUkx?4`^=AMA>W)v}KDK8e%O_Kg1(>&jV5#XC7E`2R@AVe9X&-BF9B)eLoPl zu;6NLW^v8ki_B8ED2_Wl5>JvWe-q#+*EW8|$OLWFBu-vMKvg5HsX@XR3cwGkU=#D; z%co~muu0>A0sTwlpizJp&kP@T0|B|RERmjt)SWIJdGNbDL*M~*{ka*v!i3S0%2$e4 zIB~`b)|;{CirY=v1{@CsQ8!9)KfdboMSEt!PRCZ^<0g!}gZm7}SPj7~2+0t-R-8o zns%=aBN_x9P)r)u1CGRpB%s9c0ywvQ=Ys3mEJr;Z?}re~24=s90hex*MV^*=A?H6w zz~l~7HI8EhR83k?GgU1RAh&PL0OirXMFteBi)oCqe1%i$lfN2pLR}j$>h{@bhQ$Ga zBucXjkF_vqRsbrq>tE+TzU>g zpYk={#S+KZz5jfPyH+krobt*=0m>`aYy8!f>z5X!Yn^ek;#y~xp0BMGH@5rNs^M7D@hUzGykZ{y^|zacFun%S0y_$S2jh% z_(!3p?SP*jle!l6?d^)=?m4-xIm2T7!8vm+NG#wLlaj=9#iag=m{j2Tvbfve%~>E(dtQeZ1Hhld~jpnN`@23e(M;`rde5PLON zc+|*QH^pYU$UW$gToS^em(km^)0rtJ!uD%#!DJ#%DinYV0QG=n22g#nWF25}lC}>I zrL5w*JdvAEn8)gec{As6YiX>tkIE6_8#o^#T1xu^p1C_Y!mBVmkZVHfC5?uzzscBZ zskrSa4IC}{{gejT#~~>V6T&C87EWnrF}=bf@`XtfAw~QLNs=-@;>2TaSCT}-m{CdF zf%<||Dh(NlpI-mf!G?74-M80~zBU401*c9oemT@+Z$F$6JKT^46wl8vqzgr1>6QTh z%;Ju4a(%DGouE)JLmFjy8B*BuxgKdTF7fy9TeP@FjHZ#favyuN{o@pD?gQU3`}?^M z=Dw6G_pwV3 z0oT*ajDd>@b9g#4o@ymqQQW~c5U=K65a5tZbb%RTWK&J+Qf%=-r)1w1fNQ$mCoAP2 zht@2AVjWr27FL={u`x7Ou7$c%SkqU`jv}Adr%#1_pG#`qE9B3q;3%lO&f3CG6-GoQ zo8IpnWI3&gr%KcTY8llCs4_FRYkw`Z^Y_&o-=Eht;jmJQlb2z5iqdPmqFf3ypAhA`DtswGbGs^h6^tiV_-6aw z@NqT>c4n^Khla7*lM=S!jLWqT;3vB?ffvnKAg+TjeYq)&m^}Vdcjl+-DULZ{ECOB! zj9H97GiNqEsHU_$&h}Wh0Ovh_#@wPK6Rxgu&rxXnQ%u{tdt(7?EJOGizL|XQ)ec(# z?1=sT7J%{_4%q^%Ih)ci<1wUJJH#%&aZ|x>VE<}UQSK`2%v_ra4P(`&q9{3mqdGqf zEQM#4iG#wk(mn+Oa!;Sk0M(@3+zfO3fXHx|I40%2oH(g{{Kn@O^D|{M?tv%Uj~akz z!?VSG0FQ$I8A}m(zCt8h+Yg`JQ$i$$Yogqb?2INsEO+<<-2LD#OemN^m|rBuy-sPs z4p$#{gYAIB7armIOPxS+ZutjkG<1C(5Rou`yxBYK@wa|eot=wiIdu#Q~p`VW9CcK@QBhIl~7sLFrfA#V0hPGT%Z^6S~q~9cx5}@%SebWW` zyWWrQG5QApcyY4$bAfLsiFFY^pl8wi&WK(42aSU(Dri2fcjebQo#Vnt$%X(sh73jh3Qi2BL z3zuuvdJb;@oZp>+#1Kh9AeDTeRHcT|`rvkJ%ZgH@uKnjCg&>jRqZd(*C7?BtV`nB; zKbFP>*h>{O8K6{+lj%Q5!Q_DXAter@fN~H49cTatfL4JU;kuioF$mDy{6VE)c6YhT ziVqOv3zBV}sk?)1)U&>a+`$%T^y@Ak4kKjoS2X&q)yVXjXtZ{HZ=$o_F6z-lKQd$+ z>Q>csrHafx08B4N_`-9zM$Js2CJV-5lZ)@rZgLIAsu4vjISr2PTW z(I1Qrt=vC@4B45NZTOMV;W{L*sAGkLLq4%Vd2E6kM(*hZxkris8H^-xP$_IJUj9~0*E=iq3@nZQZ0x*)$|aw$IZE|V+dKjNkG-!*6aI8v4kPX+%L zZ363TIIo2O&>W~dbS?aovnffbSKehOOo^IWS3fjyrlu*o8Y8gB1NrFuOO;r`9K$gvM3RxL=V80ia&e_NEAo{ zY}6>eeJWtt1uwsiSLG31%LvU1SxMr4Jp-QiL-@6GW`oI07`4gfv`fc$OaV(9{}YDX z-Zhvnvez3YRRX)QCEW~RZm{zI4nN<{Zks99LE8khHOLZ<9QHM5GbK^BUiqLOV` zOX440rC-Dks&>O65k-Wo(oQ)5E+@coCgB1;t*dZZ2?q@Z0i=JA*_Z-~0B=M}tARE(dI(%7kFkhQm2HF8Z+Y^V#>i(<#rTR49-g__d%(1@Ga z0F;%|T-VkG$-K_IbRW|Jt{LmyN;wRE!b39l+4t?tlurht&Bn=hu%UHAsSbOTc~llK zE=HUam%c4lrvi+fV(b$|CO|YaVXW{WmL(6=_d~g`qE&!8?LrEu032r2L@nK+=a7^I z=_8E2a{AM30NAXQH?EZ#sRd<@kxw=m1$5jIQ7 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading - hdg_generic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:050.0 %
Date:2024-04-17 23:52:03Functions:030.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::HdgGeneric::HdgGeneric(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)0
mrs_uav_state_estimators::HdgGeneric::~HdgGeneric()0
mrs_uav_state_estimators::HdgGeneric::~HdgGeneric().20
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+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.func.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.func.html new file mode 100644 index 0000000000..0605e2304e --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.func.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading - hdg_generic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:050.0 %
Date:2024-04-17 23:52:03Functions:030.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::HdgGeneric::HdgGeneric(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)0
mrs_uav_state_estimators::HdgGeneric::~HdgGeneric()0
mrs_uav_state_estimators::HdgGeneric::~HdgGeneric().20
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+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.gcov.frameset.html new file mode 100644 index 0000000000..d9b5d32060 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.gcov.html new file mode 100644 index 0000000000..4f27bcc837 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.gcov.html @@ -0,0 +1,243 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading - hdg_generic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:050.0 %
Date:2024-04-17 23:52:03Functions:030.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef ESTIMATORS_HEADING_HDG_GENERIC_H
+       2             : #define ESTIMATORS_HEADING_HDG_GENERIC_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <nav_msgs/Odometry.h>
+       9             : 
+      10             : #include <mrs_lib/lkf.h>
+      11             : #include <mrs_lib/repredictor.h>
+      12             : #include <mrs_lib/profiler.h>
+      13             : #include <mrs_lib/param_loader.h>
+      14             : #include <mrs_lib/subscribe_handler.h>
+      15             : #include <mrs_lib/geometry/cyclic.h>
+      16             : 
+      17             : #include <mrs_uav_state_estimators/estimators/heading/heading_estimator.h>
+      18             : #include <mrs_uav_state_estimators/estimators/correction.h>
+      19             : 
+      20             : #include <mrs_uav_state_estimators/HeadingEstimatorConfig.h>
+      21             : 
+      22             : //}
+      23             : 
+      24             : namespace mrs_uav_state_estimators
+      25             : {
+      26             : 
+      27             : namespace hdg_generic
+      28             : {
+      29             : 
+      30             : const int n_states       = 2;
+      31             : const int n_inputs       = 1;
+      32             : const int n_measurements = 1;
+      33             : 
+      34             : }  // namespace hdg_generic
+      35             : 
+      36             : class HdgGeneric : public HeadingEstimator<hdg_generic::n_states> {
+      37             : 
+      38             :   const std::string package_name_ = "mrs_uav_state_estimators";
+      39             : 
+      40             :   typedef mrs_lib::DynamicReconfigureMgr<HeadingEstimatorConfig> drmgr_t;
+      41             : 
+      42             :   using lkf_t         = mrs_lib::LKF<hdg_generic::n_states, hdg_generic::n_inputs, hdg_generic::n_measurements>;
+      43             :   using varstep_lkf_t = mrs_lib::varstepLKF<hdg_generic::n_states, hdg_generic::n_inputs, hdg_generic::n_measurements>;
+      44             :   using A_t           = lkf_t::A_t;
+      45             :   using B_t           = lkf_t::B_t;
+      46             :   using H_t           = lkf_t::H_t;
+      47             :   using Q_t           = lkf_t::Q_t;
+      48             :   using x_t           = lkf_t::x_t;
+      49             :   using P_t           = lkf_t::P_t;
+      50             :   using u_t           = lkf_t::u_t;
+      51             :   using z_t           = lkf_t::z_t;
+      52             :   using R_t           = lkf_t::R_t;
+      53             :   using statecov_t    = lkf_t::statecov_t;
+      54             : 
+      55             :   typedef mrs_lib::Repredictor<varstep_lkf_t> rep_lkf_t;
+      56             : 
+      57             :   using StateId_t = mrs_uav_managers::estimation_manager::StateId_t;
+      58             : 
+      59             : private:
+      60             :   std::string parent_state_est_name_;
+      61             : 
+      62             :   double                                      dt_;
+      63             :   double                                      input_coeff_;
+      64             :   double                                      default_input_coeff_;
+      65             :   A_t                                         A_;
+      66             :   B_t                                         B_;
+      67             :   H_t                                         H_;
+      68             :   Q_t                                         Q_;
+      69             :   std::shared_ptr<lkf_t>                      lkf_;
+      70             :   std::unique_ptr<rep_lkf_t>                  lkf_rep_;
+      71             :   std::vector<std::shared_ptr<varstep_lkf_t>> models_;
+      72             :   mutable std::mutex                          mutex_lkf_;
+      73             :   statecov_t                                  sc_;
+      74             :   mutable std::mutex                          mutex_sc_;
+      75             : 
+      76             :   std::unique_ptr<drmgr_t> drmgr_;
+      77             :   void                     callbackReconfigure(HeadingEstimatorConfig &config, [[maybe_unused]] uint32_t level);
+      78             : 
+      79             :   z_t                innovation_;
+      80             :   mutable std::mutex mtx_innovation_;
+      81             : 
+      82             :   bool is_repredictor_enabled_;
+      83             :   int  rep_buffer_size_ = 200;
+      84             : 
+      85             :   const bool is_core_plugin_;
+      86             : 
+      87             :   std::vector<std::string>                                              correction_names_;
+      88             :   std::vector<std::shared_ptr<Correction<hdg_generic::n_measurements>>> corrections_;
+      89             : 
+      90             :   mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput> sh_control_input_;
+      91             :   void                                                timeoutCallback(const std::string &topic, const ros::Time &last_msg);
+      92             :   std::atomic<bool>                                   is_input_ready_ = false;
+      93             : 
+      94             :   ros::Timer timer_update_;
+      95             :   void       timerUpdate(const ros::TimerEvent &event);
+      96             : 
+      97             :   ros::Timer timer_check_health_;
+      98             :   void       timerCheckHealth(const ros::TimerEvent &event);
+      99             : 
+     100             :   void doCorrection(const Correction<hdg_generic::n_measurements>::MeasurementStamped &meas, const double R, const StateId_t &state_id);
+     101             :   void doCorrection(const z_t &z, const double R, const StateId_t &H_idx, const ros::Time &meas_stamp);
+     102             : 
+     103             :   bool isConverged();
+     104             : 
+     105             :   Q_t                getQ();
+     106             :   mutable std::mutex mtx_Q_;
+     107             : 
+     108             :   mutable std::mutex mutex_last_valid_hdg_;
+     109             :   double             last_valid_hdg_;
+     110             : 
+     111             : public:
+     112           0 :   HdgGeneric(const std::string &name, const std::string &ns_frame_id, const std::string &parent_state_est_name, const bool is_core_plugin)
+     113           0 :       : HeadingEstimator<hdg_generic::n_states>(name, ns_frame_id), parent_state_est_name_(parent_state_est_name), is_core_plugin_(is_core_plugin) {
+     114           0 :   }
+     115             : 
+     116           0 :   ~HdgGeneric(void) {
+     117           0 :   }
+     118             : 
+     119             :   void initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) override;
+     120             :   bool start(void) override;
+     121             :   bool pause(void) override;
+     122             :   bool reset(void) override;
+     123             : 
+     124             :   double getState(const int &state_idx_in) const override;
+     125             :   double getState(const int &state_id_in, const int &axis_in) const override;
+     126             : 
+     127             :   void setState(const double &state_in, const int &state_idx_in) override;
+     128             :   void setState(const double &state_in, const int &state_id_in, const int &axis_in) override;
+     129             : 
+     130             :   states_t getStates(void) const override;
+     131             :   void     setStates(const states_t &states_in) override;
+     132             : 
+     133             :   double getCovariance(const int &state_idx_in) const override;
+     134             :   double getCovariance(const int &state_id_in, const int &axis_in) const override;
+     135             : 
+     136             :   covariance_t getCovarianceMatrix(void) const override;
+     137             :   void         setCovarianceMatrix(const covariance_t &cov_in) override;
+     138             : 
+     139             :   double getInnovation(const int &state_idx) const override;
+     140             :   double getInnovation(const int &state_id_in, const int &axis_in) const override;
+     141             : 
+     142             :   double getLastValidHdg() const override;
+     143             : 
+     144             :   void setDt(const double &dt);
+     145             :   void setInputCoeff(const double &input_coeff);
+     146             : 
+     147             :   void generateRepredictorModels(const double input_coeff);
+     148             : 
+     149             :   void generateA();
+     150             :   void generateB();
+     151             : 
+     152             : 
+     153             :   std::string getNamespacedName() const;
+     154             : 
+     155             :   std::string getPrintName() const;
+     156             : };
+     157             : }  // namespace mrs_uav_state_estimators
+     158             : 
+     159             : #endif  // ESTIMATORS_HEADING_HDG_GENERIC_H
+
+
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.gcov.overview.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.gcov.overview.html new file mode 100644 index 0000000000..f648f9d8d0 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h.gcov.overview.html @@ -0,0 +1,60 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_generic.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading - hdg_passthrough.h (source / functions)HitTotalCoverage
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Date:2024-04-17 23:52:03Functions:33100.0 %
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mrs_uav_state_estimators::HdgPassthrough::HdgPassthrough(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)97
mrs_uav_state_estimators::HdgPassthrough::~HdgPassthrough()97
mrs_uav_state_estimators::HdgPassthrough::~HdgPassthrough().297
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Date:2024-04-17 23:52:03Functions:33100.0 %
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mrs_uav_state_estimators::HdgPassthrough::HdgPassthrough(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)97
mrs_uav_state_estimators::HdgPassthrough::~HdgPassthrough()97
mrs_uav_state_estimators::HdgPassthrough::~HdgPassthrough().297
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading - hdg_passthrough.h (source / functions)HitTotalCoverage
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Date:2024-04-17 23:52:03Functions:33100.0 %
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+
          Line data    Source code
+
+       1             : #ifndef ESTIMATORS_HEADING_HDG_PASSTHROUGH_H
+       2             : #define ESTIMATORS_HEADING_HDG_PASSTHROUGH_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <nav_msgs/Odometry.h>
+       9             : 
+      10             : #include <mrs_lib/lkf.h>
+      11             : #include <mrs_lib/profiler.h>
+      12             : #include <mrs_lib/param_loader.h>
+      13             : #include <mrs_lib/subscribe_handler.h>
+      14             : #include <mrs_lib/geometry/cyclic.h>
+      15             : 
+      16             : #include <mrs_uav_state_estimators/estimators/heading/heading_estimator.h>
+      17             : 
+      18             : //}
+      19             : 
+      20             : namespace mrs_uav_state_estimators
+      21             : {
+      22             : 
+      23             : namespace hdg_passthrough
+      24             : {
+      25             : const int n_states = 2;
+      26             : }  // namespace hdg_passthrough
+      27             : 
+      28             : using namespace mrs_uav_managers::estimation_manager;
+      29             : 
+      30             : class HdgPassthrough : public HeadingEstimator<hdg_passthrough::n_states> {
+      31             : 
+      32             :   using CommonHandlers_t = mrs_uav_managers::estimation_manager::CommonHandlers_t;
+      33             : 
+      34             : private:
+      35             :   const std::string package_name_ = "mrs_uav_state_estimators";
+      36             : 
+      37             :   std::string parent_state_est_name_;
+      38             : 
+      39             :   states_t           hdg_state_;
+      40             :   mutable std::mutex mtx_hdg_state_;
+      41             :   states_t           prev_hdg_state_;
+      42             :   mutable std::mutex mtx_prev_hdg_state_;
+      43             : 
+      44             :   covariance_t       hdg_covariance_;
+      45             :   mutable std::mutex mtx_hdg_covariance_;
+      46             : 
+      47             :   states_t           innovation_;
+      48             :   mutable std::mutex mtx_innovation_;
+      49             : 
+      50             :   const bool is_core_plugin_;
+      51             : 
+      52             :   std::string                                                 orient_topic_;
+      53             :   mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped> sh_orientation_;
+      54             :   void                                                        callbackOrientation(const geometry_msgs::QuaternionStamped::ConstPtr msg);
+      55             :   std::atomic<bool>                                           is_orient_ready_ = false;
+      56             : 
+      57             :   std::string                                              ang_vel_topic_;
+      58             :   mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped> sh_ang_vel_;
+      59             :   void                                                     callbackAngularVelocity(const geometry_msgs::Vector3Stamped::ConstPtr msg);
+      60             :   std::atomic<bool>                                        is_ang_vel_ready_ = false;
+      61             : 
+      62             :   ros::Timer timer_update_;
+      63             :   void       timerUpdate(const ros::TimerEvent &event);
+      64             : 
+      65             :   ros::Timer timer_check_health_;
+      66             :   void       timerCheckHealth(const ros::TimerEvent &event);
+      67             : 
+      68             : public:
+      69          97 :   HdgPassthrough(const std::string &name, const std::string &ns_frame_id, const std::string &parent_state_est_name, const bool is_core_plugin)
+      70          97 :       : HeadingEstimator<hdg_passthrough::n_states>(name, ns_frame_id), parent_state_est_name_(parent_state_est_name), is_core_plugin_(is_core_plugin) {
+      71          97 :   }
+      72             : 
+      73         194 :   ~HdgPassthrough(void) {
+      74         194 :   }
+      75             : 
+      76             :   void initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) override;
+      77             :   bool start(void) override;
+      78             :   bool pause(void) override;
+      79             :   bool reset(void) override;
+      80             : 
+      81             :   double getState(const int &state_idx_in) const override;
+      82             :   double getState(const int &state_id_in, const int &axis_in) const override;
+      83             : 
+      84             :   void setState(const double &state_in, const int &state_idx_in) override;
+      85             :   void setState(const double &state_in, const int &state_id_in, const int &axis_in) override;
+      86             : 
+      87             :   states_t getStates(void) const override;
+      88             :   void     setStates(const states_t &states_in) override;
+      89             : 
+      90             :   double getCovariance(const int &state_idx_in) const override;
+      91             :   double getCovariance(const int &state_id_in, const int &axis_in) const override;
+      92             : 
+      93             :   covariance_t getCovarianceMatrix(void) const override;
+      94             :   void         setCovarianceMatrix(const covariance_t &cov_in) override;
+      95             : 
+      96             :   double getInnovation(const int &state_idx) const override;
+      97             :   double getInnovation(const int &state_id_in, const int &axis_in) const override;
+      98             : 
+      99             :   double getLastValidHdg() const override;
+     100             : 
+     101             :   std::string getNamespacedName() const;
+     102             : 
+     103             :   std::string getPrintName() const;
+     104             : };
+     105             : }  // namespace mrs_uav_state_estimators
+     106             : 
+     107             : #endif  // ESTIMATORS_HEADING_HDG_PASSTHROUGH_H
+
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+ Top

+ Overview +
+ + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_passthrough.h.gcov.png b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/hdg_passthrough.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..59c70c2f6a8a81135bd8dca6f6b93ea23cdae157 GIT binary patch literal 506 zcmVD=e3=CiAy9U z<2PVAFPU){EoYpNMstpRXbtRU&;m`?%w{?<$Eftk`yA1d&vxZPT4gs&-<5UsI_S?J zpjq86U3cXgc_sr8i7)Osaz+En#GE0tqLVbH#FzVs)9o2Wax+>^NqDrTRgC={8^&cj zl-U1B#|8}88tDx~h#T3S90$A0<5nmnHaAlv0*87xQXh`=FKjYX%w^3>F{+xG;tZjg zAs|ef0mD!iWk9n7Mvob#Rhm+o?Ksra^UAiQ!%6W;*CT$;bdC2egm9dlIM|m9M=*u6 z!7dpF07*qoM6N<$g7Y-qe*gdg literal 0 HcmV?d00001 diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.func-sort-c.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.func-sort-c.html new file mode 100644 index 0000000000..d14cce5a13 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.func-sort-c.html @@ -0,0 +1,84 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading - heading_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:22100.0 %
Date:2024-04-17 23:52:03Functions:11100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::HeadingEstimator<2>::HeadingEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.func.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.func.html new file mode 100644 index 0000000000..d76bb32bea --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.func.html @@ -0,0 +1,84 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading - heading_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:22100.0 %
Date:2024-04-17 23:52:03Functions:11100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::HeadingEstimator<2>::HeadingEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.gcov.frameset.html new file mode 100644 index 0000000000..efa10b4b9b --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.gcov.html new file mode 100644 index 0000000000..16e4843f6e --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.gcov.html @@ -0,0 +1,124 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading - heading_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:22100.0 %
Date:2024-04-17 23:52:03Functions:11100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef ESTIMATORS_HEADING_HEADING_ESTIMATOR_H
+       2             : #define ESTIMATORS_HEADING_HEADING_ESTIMATOR_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <mrs_uav_state_estimators/estimators/partial_estimator.h>
+       7             : 
+       8             : //}
+       9             : 
+      10             : namespace mrs_uav_state_estimators
+      11             : {
+      12             : 
+      13             : namespace heading
+      14             : {
+      15             : const char type[] = "HEADING";
+      16             : }
+      17             : 
+      18             : template <int n_states>
+      19             : class HeadingEstimator : public PartialEstimator<n_states, 1> {
+      20             : 
+      21             : protected:
+      22          97 :   HeadingEstimator(const std::string& name, const std::string& frame_id) : PartialEstimator<n_states, 1>(heading::type, name, frame_id) {
+      23          97 :   }
+      24             : 
+      25             :   mutable std::mutex mutex_last_valid_hdg_;
+      26             :   double             last_valid_hdg_;
+      27             : 
+      28             : private:
+      29             :   static const int _n_axes_   = 1;
+      30             :   static const int _n_states_ = n_states;
+      31             :   static const int _n_inputs_;
+      32             :   static const int _n_measurements_;
+      33             : 
+      34             : public:
+      35             :   virtual double getLastValidHdg() const = 0;
+      36             : };
+      37             : 
+      38             : }  // namespace mrs_uav_state_estimators
+      39             : 
+      40             : #endif  // ESTIMATORS_HEADING_HEADING_ESTIMATOR_H
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.gcov.overview.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.gcov.overview.html new file mode 100644 index 0000000000..4cc90f7128 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.gcov.overview.html @@ -0,0 +1,30 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.gcov.png b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/heading_estimator.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..3fa1a030f3bdb9d4e5e4354fd133a23a3d84dca9 GIT binary patch literal 293 zcmeAS@N?(olHy`uVBq!ia0vp^0YI$5!VDy5`z06wDTx4|5ZC|z|E~gq#sJy z_!d=lu%pyiZdT`(8i5lD0#}Z_-Sjn9u0vVe{n2K}X{;w7Y_kv6QkQ>GW1X*;rZGj% iUS^U*{*!sPE144yXqeA-@c#>RK7*&LpUXO@geCwTJ$YaN literal 0 HcmV?d00001 diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-detail-sort-f.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-detail-sort-f.html new file mode 100644 index 0000000000..2f55f66ce9 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-detail-sort-f.html @@ -0,0 +1,138 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/headingHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:71258.3 %
Date:2024-04-17 23:52:03Functions:4757.1 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
hdg_generic.h +
0.0%
+
0.0 %0 / 50.0 %0 / 3
heading_estimator.h +
100.0%
+
100.0 %2 / 2100.0 %1 / 1
<unnamed>100.0 %2 / 2100.0 %1 / 1
hdg_passthrough.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
<unnamed>100.0 %5 / 5100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-detail-sort-l.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-detail-sort-l.html new file mode 100644 index 0000000000..f36a04f7ee --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-detail-sort-l.html @@ -0,0 +1,138 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/headingHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:71258.3 %
Date:2024-04-17 23:52:03Functions:4757.1 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
hdg_generic.h +
0.0%
+
0.0 %0 / 50.0 %0 / 3
heading_estimator.h +
100.0%
+
100.0 %2 / 2100.0 %1 / 1
<unnamed>100.0 %2 / 2100.0 %1 / 1
hdg_passthrough.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
<unnamed>100.0 %5 / 5100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-detail.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-detail.html new file mode 100644 index 0000000000..138749a593 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-detail.html @@ -0,0 +1,138 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/headingHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:71258.3 %
Date:2024-04-17 23:52:03Functions:4757.1 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
hdg_generic.h +
0.0%
+
0.0 %0 / 50.0 %0 / 3
hdg_passthrough.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
<unnamed>100.0 %5 / 5100.0 %3 / 3
heading_estimator.h +
100.0%
+
100.0 %2 / 2100.0 %1 / 1
<unnamed>100.0 %2 / 2100.0 %1 / 1
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-sort-f.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-sort-f.html new file mode 100644 index 0000000000..222b257fb2 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-sort-f.html @@ -0,0 +1,122 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/headingHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:71258.3 %
Date:2024-04-17 23:52:03Functions:4757.1 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
hdg_generic.h +
0.0%
+
0.0 %0 / 50.0 %0 / 3
heading_estimator.h +
100.0%
+
100.0 %2 / 2100.0 %1 / 1
hdg_passthrough.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-sort-l.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-sort-l.html new file mode 100644 index 0000000000..cb2b00493f --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index-sort-l.html @@ -0,0 +1,122 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/headingHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:71258.3 %
Date:2024-04-17 23:52:03Functions:4757.1 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
hdg_generic.h +
0.0%
+
0.0 %0 / 50.0 %0 / 3
heading_estimator.h +
100.0%
+
100.0 %2 / 2100.0 %1 / 1
hdg_passthrough.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index.html new file mode 100644 index 0000000000..867787e3fd --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading/index.html @@ -0,0 +1,122 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/heading + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/headingHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:71258.3 %
Date:2024-04-17 23:52:03Functions:4757.1 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
hdg_generic.h +
0.0%
+
0.0 %0 / 50.0 %0 / 3
hdg_passthrough.h +
100.0%
+
100.0 %5 / 5100.0 %3 / 3
heading_estimator.h +
100.0%
+
100.0 %2 / 2100.0 %1 / 1
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-detail-sort-f.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-detail-sort-f.html new file mode 100644 index 0000000000..14b061b642 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-detail-sort-f.html @@ -0,0 +1,128 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimatorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:40876153.6 %
Date:2024-04-17 23:52:03Functions:669569.5 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
correction.h +
51.6%51.6%
+
51.6 %374 / 72566.2 %47 / 71
<unnamed>51.6 %374 / 72566.2 %47 / 71
partial_estimator.h +
94.4%94.4%
+
94.4 %34 / 3679.2 %19 / 24
<unnamed>94.4 %34 / 3679.2 %19 / 24
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-detail-sort-l.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-detail-sort-l.html new file mode 100644 index 0000000000..ae21905401 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-detail-sort-l.html @@ -0,0 +1,128 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimatorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:40876153.6 %
Date:2024-04-17 23:52:03Functions:669569.5 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
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correction.h +
51.6%51.6%
+
51.6 %374 / 72566.2 %47 / 71
<unnamed>51.6 %374 / 72566.2 %47 / 71
partial_estimator.h +
94.4%94.4%
+
94.4 %34 / 3679.2 %19 / 24
<unnamed>94.4 %34 / 3679.2 %19 / 24
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-detail.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-detail.html new file mode 100644 index 0000000000..ff5539a5c0 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-detail.html @@ -0,0 +1,128 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimatorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:40876153.6 %
Date:2024-04-17 23:52:03Functions:669569.5 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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correction.h +
51.6%51.6%
+
51.6 %374 / 72566.2 %47 / 71
<unnamed>51.6 %374 / 72566.2 %47 / 71
partial_estimator.h +
94.4%94.4%
+
94.4 %34 / 3679.2 %19 / 24
<unnamed>94.4 %34 / 3679.2 %19 / 24
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-sort-f.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-sort-f.html new file mode 100644 index 0000000000..1e5db559e6 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-sort-f.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimatorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:40876153.6 %
Date:2024-04-17 23:52:03Functions:669569.5 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
correction.h +
51.6%51.6%
+
51.6 %374 / 72566.2 %47 / 71
partial_estimator.h +
94.4%94.4%
+
94.4 %34 / 3679.2 %19 / 24
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-sort-l.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-sort-l.html new file mode 100644 index 0000000000..4e017da65d --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index-sort-l.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimatorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:40876153.6 %
Date:2024-04-17 23:52:03Functions:669569.5 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
correction.h +
51.6%51.6%
+
51.6 %374 / 72566.2 %47 / 71
partial_estimator.h +
94.4%94.4%
+
94.4 %34 / 3679.2 %19 / 24
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index.html new file mode 100644 index 0000000000..a9ca085745 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/index.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimatorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:40876153.6 %
Date:2024-04-17 23:52:03Functions:669569.5 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
correction.h +
51.6%51.6%
+
51.6 %374 / 72566.2 %47 / 71
partial_estimator.h +
94.4%94.4%
+
94.4 %34 / 3679.2 %19 / 24
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-detail-sort-f.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-detail-sort-f.html new file mode 100644 index 0000000000..83b35b8bb8 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-detail-sort-f.html @@ -0,0 +1,128 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateralHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1010100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
lateral_estimator.h +
100.0%
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100.0 %4 / 466.7 %2 / 3
<unnamed>100.0 %4 / 466.7 %2 / 3
lat_generic.h +
100.0%
+
100.0 %6 / 6100.0 %3 / 3
<unnamed>100.0 %6 / 6100.0 %3 / 3
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+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-detail-sort-l.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-detail-sort-l.html new file mode 100644 index 0000000000..e289441d6f --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-detail-sort-l.html @@ -0,0 +1,128 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateralHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1010100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
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Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
lateral_estimator.h +
100.0%
+
100.0 %4 / 466.7 %2 / 3
<unnamed>100.0 %4 / 466.7 %2 / 3
lat_generic.h +
100.0%
+
100.0 %6 / 6100.0 %3 / 3
<unnamed>100.0 %6 / 6100.0 %3 / 3
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+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-detail.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-detail.html new file mode 100644 index 0000000000..08ac165503 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-detail.html @@ -0,0 +1,128 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateralHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1010100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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lat_generic.h +
100.0%
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100.0 %6 / 6100.0 %3 / 3
<unnamed>100.0 %6 / 6100.0 %3 / 3
lateral_estimator.h +
100.0%
+
100.0 %4 / 466.7 %2 / 3
<unnamed>100.0 %4 / 466.7 %2 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-sort-f.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-sort-f.html new file mode 100644 index 0000000000..5e472c37df --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-sort-f.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateralHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1010100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
lateral_estimator.h +
100.0%
+
100.0 %4 / 466.7 %2 / 3
lat_generic.h +
100.0%
+
100.0 %6 / 6100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-sort-l.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-sort-l.html new file mode 100644 index 0000000000..0bd87c10ed --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index-sort-l.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateralHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1010100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
lateral_estimator.h +
100.0%
+
100.0 %4 / 466.7 %2 / 3
lat_generic.h +
100.0%
+
100.0 %6 / 6100.0 %3 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index.html new file mode 100644 index 0000000000..f79136fe02 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/index.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateralHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1010100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
lat_generic.h +
100.0%
+
100.0 %6 / 6100.0 %3 / 3
lateral_estimator.h +
100.0%
+
100.0 %4 / 466.7 %2 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.func-sort-c.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.func-sort-c.html new file mode 100644 index 0000000000..a2e3ba2aec --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.func-sort-c.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral - lat_generic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:66100.0 %
Date:2024-04-17 23:52:03Functions:33100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::LatGeneric::LatGeneric(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool, std::function<std::optional<double> ()>)97
mrs_uav_state_estimators::LatGeneric::~LatGeneric()97
mrs_uav_state_estimators::LatGeneric::~LatGeneric().297
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.func.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.func.html new file mode 100644 index 0000000000..ddd3965e47 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.func.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral - lat_generic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:66100.0 %
Date:2024-04-17 23:52:03Functions:33100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::LatGeneric::LatGeneric(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool, std::function<std::optional<double> ()>)97
mrs_uav_state_estimators::LatGeneric::~LatGeneric()97
mrs_uav_state_estimators::LatGeneric::~LatGeneric().297
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.gcov.frameset.html new file mode 100644 index 0000000000..7be2806e41 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.gcov.html new file mode 100644 index 0000000000..c9e11058ac --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.gcov.html @@ -0,0 +1,250 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral - lat_generic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:66100.0 %
Date:2024-04-17 23:52:03Functions:33100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef ESTIMATORS_LATERAL_LAT_GENERIC_H
+       2             : #define ESTIMATORS_LATERAL_LAT_GENERIC_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <nav_msgs/Odometry.h>
+       9             : 
+      10             : #include <sensor_msgs/Imu.h>
+      11             : 
+      12             : #include <mrs_lib/lkf.h>
+      13             : #include <mrs_lib/repredictor.h>
+      14             : #include <mrs_lib/profiler.h>
+      15             : #include <mrs_lib/param_loader.h>
+      16             : #include <mrs_lib/subscribe_handler.h>
+      17             : 
+      18             : #include <mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h>
+      19             : #include <mrs_uav_state_estimators/estimators/correction.h>
+      20             : 
+      21             : #include <mrs_uav_state_estimators/LateralEstimatorConfig.h>
+      22             : 
+      23             : //}
+      24             : 
+      25             : namespace mrs_uav_state_estimators
+      26             : {
+      27             : 
+      28             : namespace lat_generic
+      29             : {
+      30             : 
+      31             : const int n_states       = 6;
+      32             : const int n_inputs       = 2;
+      33             : const int n_measurements = 2;
+      34             : 
+      35             : }  // namespace lat_generic
+      36             : 
+      37             : class LatGeneric : public LateralEstimator<lat_generic::n_states> {
+      38             : 
+      39             :   typedef mrs_lib::DynamicReconfigureMgr<LateralEstimatorConfig> drmgr_t;
+      40             : 
+      41             :   using lkf_t         = mrs_lib::LKF<lat_generic::n_states, lat_generic::n_inputs, lat_generic::n_measurements>;
+      42             :   using varstep_lkf_t = mrs_lib::varstepLKF<lat_generic::n_states, lat_generic::n_inputs, lat_generic::n_measurements>;
+      43             :   using A_t           = lkf_t::A_t;
+      44             :   using B_t           = lkf_t::B_t;
+      45             :   using H_t           = lkf_t::H_t;
+      46             :   using Q_t           = lkf_t::Q_t;
+      47             :   using x_t           = lkf_t::x_t;
+      48             :   using P_t           = lkf_t::P_t;
+      49             :   using u_t           = lkf_t::u_t;
+      50             :   using z_t           = lkf_t::z_t;
+      51             :   using R_t           = lkf_t::R_t;
+      52             :   using statecov_t    = lkf_t::statecov_t;
+      53             : 
+      54             :   typedef mrs_lib::Repredictor<varstep_lkf_t> rep_lkf_t;
+      55             : 
+      56             : private:
+      57             :   const std::string package_name_ = "mrs_uav_state_estimators";
+      58             : 
+      59             :   std::string parent_state_est_name_;
+      60             : 
+      61             :   double                                      dt_;
+      62             :   double                                      input_coeff_, default_input_coeff_;
+      63             :   A_t                                         A_;
+      64             :   B_t                                         B_;
+      65             :   H_t                                         H_;
+      66             :   Q_t                                         Q_;
+      67             :   std::shared_ptr<lkf_t>                      lkf_;
+      68             :   std::unique_ptr<rep_lkf_t>                  lkf_rep_;
+      69             :   std::vector<std::shared_ptr<varstep_lkf_t>> models_;
+      70             :   mutable std::mutex                          mutex_lkf_;
+      71             :   statecov_t                                  sc_;
+      72             :   mutable std::mutex                          mutex_sc_;
+      73             : 
+      74             :   std::unique_ptr<drmgr_t> drmgr_;
+      75             :   void                     callbackReconfigure(LateralEstimatorConfig &config, [[maybe_unused]] uint32_t level);
+      76             : 
+      77             :   z_t                innovation_;
+      78             :   mutable std::mutex mtx_innovation_;
+      79             : 
+      80             :   bool          is_error_state_first_time_ = true;
+      81             :   ros::Duration error_state_duration_;
+      82             :   ros::Time     prev_time_in_error_state_;
+      83             : 
+      84             :   bool is_repredictor_enabled_;
+      85             :   int  rep_buffer_size_ = 200;
+      86             : 
+      87             :   const bool is_core_plugin_;
+      88             : 
+      89             :   std::vector<std::string>                                              correction_names_;
+      90             :   std::vector<std::shared_ptr<Correction<lat_generic::n_measurements>>> corrections_;
+      91             : 
+      92             :   mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput> sh_control_input_;
+      93             :   void                                                timeoutCallback(const std::string &topic, const ros::Time &last_msg);
+      94             :   std::atomic<bool>                                   is_input_ready_ = false;
+      95             : 
+      96             : 
+      97             :   std::function<std::optional<double>()>               fun_get_hdg_;
+      98             :   std::string                                          hdg_source_topic_;
+      99             :   mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput> sh_hdg_state_;
+     100             :   std::atomic<bool>                                    is_hdg_state_ready_ = false;
+     101             : 
+     102             :   ros::Timer timer_update_;
+     103             :   void       timerUpdate(const ros::TimerEvent &event);
+     104             : 
+     105             :   ros::Timer timer_check_health_;
+     106             :   void       timerCheckHealth(const ros::TimerEvent &event);
+     107             : 
+     108             : 
+     109             :   void doCorrection(const Correction<lat_generic::n_measurements>::MeasurementStamped &meas, const double R, const StateId_t &state_id);
+     110             :   void doCorrection(const z_t &z, const double R, const StateId_t &H_idx, const ros::Time &meas_stamp);
+     111             : 
+     112             :   bool isConverged();
+     113             : 
+     114             :   Q_t                getQ();
+     115             :   mutable std::mutex mtx_Q_;
+     116             : 
+     117             : public:
+     118          97 :   LatGeneric(const std::string &name, const std::string &ns_frame_id, const std::string &parent_state_est_name, const bool is_core_plugin,
+     119             :              std::function<std::optional<double>()> fun_get_hdg)
+     120          97 :       : LateralEstimator<lat_generic::n_states>(name, ns_frame_id),
+     121             :         parent_state_est_name_(parent_state_est_name),
+     122             :         is_core_plugin_(is_core_plugin),
+     123          97 :         fun_get_hdg_(fun_get_hdg) {
+     124          97 :   }
+     125             : 
+     126         194 :   ~LatGeneric(void) {
+     127         194 :   }
+     128             : 
+     129             :   void initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) override;
+     130             :   bool start(void) override;
+     131             :   bool pause(void) override;
+     132             :   bool reset(void) override;
+     133             : 
+     134             :   double getState(const int &state_idx_in) const override;
+     135             :   double getState(const int &state_id_in, const int &axis_in) const override;
+     136             : 
+     137             :   void setState(const double &state_in, const int &state_idx_in) override;
+     138             :   void setState(const double &state_in, const int &state_id_in, const int &axis_in) override;
+     139             : 
+     140             :   states_t getStates(void) const override;
+     141             :   void     setStates(const states_t &states_in) override;
+     142             : 
+     143             :   double getCovariance(const int &state_idx_in) const override;
+     144             :   double getCovariance(const int &state_id_in, const int &axis_in) const override;
+     145             : 
+     146             :   covariance_t getCovarianceMatrix(void) const override;
+     147             :   void         setCovarianceMatrix(const covariance_t &cov_in) override;
+     148             : 
+     149             :   double getInnovation(const int &state_idx) const override;
+     150             :   double getInnovation(const int &state_id_in, const int &axis_in) const override;
+     151             : 
+     152             :   void setDt(const double &dt);
+     153             :   void setInputCoeff(const double &input_coeff);
+     154             : 
+     155             :   void generateRepredictorModels(const double input_coeff);
+     156             : 
+     157             :   void generateA();
+     158             :   void generateB();
+     159             : 
+     160             :   std::string getNamespacedName() const;
+     161             : 
+     162             :   std::string getPrintName() const;
+     163             : };
+     164             : }  // namespace mrs_uav_state_estimators
+     165             : 
+     166             : #endif  // ESTIMATORS_LATERAL_LAT_GENERIC_H
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.gcov.overview.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.gcov.overview.html new file mode 100644 index 0000000000..f10b1f5fd4 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.gcov.overview.html @@ -0,0 +1,62 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ Overview +
+ + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.gcov.png b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lat_generic.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..6fa70431bbed0c82bdfc8693d0379281e7228df2 GIT binary patch literal 708 zcmV;#0z3VQP)00{{R3zw{NF0000OP)t-s|NsB0 zs;a7|?_FK${{R500003000620&P%hU00009a7bBm000ie000ie0hKEb8vpKi;y_O zOB%{}8Z7WkVq8Vb85a;TMu+qO%z?qqs6t!d`_Ki(-X4L2*k+}t7^nPr@-bN4TCPl_ zAGp6E9d7CK7+_eqUf?z7BcRy=1apRLR>%N^9({@URod!l4E(Mq!gNnhOh#%nr`xJF z0&gcCa`_Kj2fR~XXGX)?Of0kTg4lj1u0XNaX4Yj}%I_Dq9E>oi0UM9B2aPcLmq6+; z8SRj4#@J{W09l#!j6(GZlPQ;|JTn?&hqW1v0Y)_RlK8rk90QMZNdi37H%47_7c7NB zOri%l;k@Xz1ZB76BAWEk^e%km5%UsOeFKDr$-Ws)8B`WmUuTojJrVIpXJz-)Q?=Qo z_U~}{q)@~Zrvmbe*OZrB)>9@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral - lateral_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:2366.7 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::LateralEstimator<6>::~LateralEstimator()0
mrs_uav_state_estimators::LateralEstimator<6>::LateralEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
mrs_uav_state_estimators::LateralEstimator<6>::~LateralEstimator().297
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Generated by: LCOV version 1.14
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral - lateral_estimator.h (source / functions)HitTotalCoverage
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Date:2024-04-17 23:52:03Functions:2366.7 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::LateralEstimator<6>::LateralEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
mrs_uav_state_estimators::LateralEstimator<6>::~LateralEstimator()0
mrs_uav_state_estimators::LateralEstimator<6>::~LateralEstimator().297
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h.gcov.frameset.html new file mode 100644 index 0000000000..421acedc4b --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h.gcov.html new file mode 100644 index 0000000000..497d2bb367 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h.gcov.html @@ -0,0 +1,122 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral - lateral_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:2366.7 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #ifndef ESTIMATORS_LATERAL_LATERAL_ESTIMATOR_H
+       2             : #define ESTIMATORS_LATERAL_LATERAL_ESTIMATOR_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <mrs_uav_state_estimators/estimators/partial_estimator.h>
+       7             : 
+       8             : //}
+       9             : 
+      10             : namespace mrs_uav_state_estimators
+      11             : {
+      12             : 
+      13             : namespace lateral
+      14             : {
+      15             : const char type[] = "LATERAL";
+      16             : const int  n_axes = 2;
+      17             : }  // namespace lateral
+      18             : 
+      19             : template <int n_states>
+      20             : class LateralEstimator : public PartialEstimator<n_states, lateral::n_axes> {
+      21             : 
+      22             : protected:
+      23          97 :   LateralEstimator(const std::string& name, const std::string& frame_id) : PartialEstimator<n_states, lateral::n_axes>(lateral::type, name, frame_id) {
+      24          97 :   }
+      25             : 
+      26          97 :   ~LateralEstimator(void) {
+      27          97 :   }
+      28             : 
+      29             : private:
+      30             :   static const int _n_axes_   = lateral::n_axes;
+      31             :   static const int _n_states_ = n_states;
+      32             :   static const int _n_inputs_;
+      33             :   static const int _n_measurements_;
+      34             : };
+      35             : 
+      36             : }  // namespace mrs_uav_state_estimation
+      37             : 
+      38             : #endif  // ESTIMATORS_LATERAL_LATERAL_ESTIMATOR_H
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h.gcov.overview.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h.gcov.overview.html new file mode 100644 index 0000000000..e5433d137d --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h.gcov.overview.html @@ -0,0 +1,30 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

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+ + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h.gcov.png b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/lateral/lateral_estimator.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..463fd4e692090c58e2404f8d94bb0a27bf35e9a1 GIT binary patch literal 284 zcmeAS@N?(olHy`uVBq!ia0vp^0YI$A!VDxAx-dEcDTx4|5ZC|z|E~gqo(Lf);IkB zKih&OP$28bu>u3%=xv5Up%7}X91nEC!(6qssq(S1+&l+1@+JxwXI-pyIterm(k zm#tmhJg2gI`;Ii4a?1#x-QnJ|iaF^W_vhMMmm^Nj4*76q=hq`i%l+g3ZEcx6r(A$z z@!KPZZk1oD-*7BGC5Pd7uj5YR+DC>{-?qhe>=g-rWL$nv%v)pLp`KFjGVv_k6V;t& ZA77ZC+PdV^7oe*dJYD@<);T3K0RRatb^`za literal 0 HcmV?d00001 diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/partial_estimator.h.func-sort-c.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/partial_estimator.h.func-sort-c.html new file mode 100644 index 0000000000..122c4b0936 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/partial_estimator.h.func-sort-c.html @@ -0,0 +1,176 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/partial_estimator.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators - partial_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:343694.4 %
Date:2024-04-17 23:52:03Functions:192479.2 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::PartialEstimator<2, 1>::~PartialEstimator()0
mrs_uav_state_estimators::PartialEstimator<3, 1>::~PartialEstimator()0
mrs_uav_state_estimators::PartialEstimator<6, 2>::~PartialEstimator()0
void mrs_uav_state_estimators::PartialEstimator<2, 1>::publishInput<Eigen::Matrix<double, 1, 1, 0, 1, 1> >(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&) const0
mrs_uav_state_estimators::PartialEstimator<2, 1>::stateIdToIndex(int const&, int const&) const0
mrs_uav_state_estimators::PartialEstimator<2, 1>::PartialEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
mrs_uav_state_estimators::PartialEstimator<2, 1>::~PartialEstimator().297
mrs_uav_state_estimators::PartialEstimator<6, 2>::PartialEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
mrs_uav_state_estimators::PartialEstimator<6, 2>::~PartialEstimator().297
mrs_uav_state_estimators::PartialEstimator<3, 1>::PartialEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)167
mrs_uav_state_estimators::PartialEstimator<3, 1>::~PartialEstimator().2167
mrs_uav_state_estimators::PartialEstimator<3, 1>::stateIdToIndex(int const&, int const&) const142018
void mrs_uav_state_estimators::PartialEstimator<6, 2>::publishInput<Eigen::Matrix<double, 2, 1, 0, 2, 1> >(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, ros::Time const&) const171751
mrs_uav_state_estimators::PartialEstimator<6, 2>::getCovarianceAsVector() const171754
mrs_uav_state_estimators::PartialEstimator<6, 2>::publishOutput() const171770
mrs_uav_state_estimators::PartialEstimator<6, 2>::getStatesAsVector() const171771
mrs_uav_state_estimators::PartialEstimator<2, 1>::getCovarianceAsVector() const189888
mrs_uav_state_estimators::PartialEstimator<2, 1>::getStatesAsVector() const189889
mrs_uav_state_estimators::PartialEstimator<2, 1>::publishOutput() const189891
mrs_uav_state_estimators::PartialEstimator<3, 1>::getCovarianceAsVector() const293122
void mrs_uav_state_estimators::PartialEstimator<3, 1>::publishInput<Eigen::Matrix<double, 1, 1, 0, 1, 1> >(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&) const293132
mrs_uav_state_estimators::PartialEstimator<3, 1>::publishOutput() const293166
mrs_uav_state_estimators::PartialEstimator<3, 1>::getStatesAsVector() const293318
mrs_uav_state_estimators::PartialEstimator<6, 2>::stateIdToIndex(int const&, int const&) const2569087
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Generated by: LCOV version 1.14
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators - partial_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:343694.4 %
Date:2024-04-17 23:52:03Functions:192479.2 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::PartialEstimator<2, 1>::PartialEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
mrs_uav_state_estimators::PartialEstimator<2, 1>::~PartialEstimator()0
mrs_uav_state_estimators::PartialEstimator<2, 1>::~PartialEstimator().297
mrs_uav_state_estimators::PartialEstimator<3, 1>::PartialEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)167
mrs_uav_state_estimators::PartialEstimator<3, 1>::~PartialEstimator()0
mrs_uav_state_estimators::PartialEstimator<3, 1>::~PartialEstimator().2167
mrs_uav_state_estimators::PartialEstimator<6, 2>::PartialEstimator(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)97
mrs_uav_state_estimators::PartialEstimator<6, 2>::~PartialEstimator()0
mrs_uav_state_estimators::PartialEstimator<6, 2>::~PartialEstimator().297
void mrs_uav_state_estimators::PartialEstimator<2, 1>::publishInput<Eigen::Matrix<double, 1, 1, 0, 1, 1> >(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&) const0
mrs_uav_state_estimators::PartialEstimator<2, 1>::publishOutput() const189891
mrs_uav_state_estimators::PartialEstimator<2, 1>::stateIdToIndex(int const&, int const&) const0
mrs_uav_state_estimators::PartialEstimator<2, 1>::getStatesAsVector() const189889
mrs_uav_state_estimators::PartialEstimator<2, 1>::getCovarianceAsVector() const189888
void mrs_uav_state_estimators::PartialEstimator<3, 1>::publishInput<Eigen::Matrix<double, 1, 1, 0, 1, 1> >(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, ros::Time const&) const293132
mrs_uav_state_estimators::PartialEstimator<3, 1>::publishOutput() const293166
mrs_uav_state_estimators::PartialEstimator<3, 1>::stateIdToIndex(int const&, int const&) const142018
mrs_uav_state_estimators::PartialEstimator<3, 1>::getStatesAsVector() const293318
mrs_uav_state_estimators::PartialEstimator<3, 1>::getCovarianceAsVector() const293122
void mrs_uav_state_estimators::PartialEstimator<6, 2>::publishInput<Eigen::Matrix<double, 2, 1, 0, 2, 1> >(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, ros::Time const&) const171751
mrs_uav_state_estimators::PartialEstimator<6, 2>::publishOutput() const171770
mrs_uav_state_estimators::PartialEstimator<6, 2>::stateIdToIndex(int const&, int const&) const2569087
mrs_uav_state_estimators::PartialEstimator<6, 2>::getStatesAsVector() const171771
mrs_uav_state_estimators::PartialEstimator<6, 2>::getCovarianceAsVector() const171754
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Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators - partial_estimator.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:343694.4 %
Date:2024-04-17 23:52:03Functions:192479.2 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef ESTIMATORS_PARTIAL_ESTIMATOR_H
+       2             : #define ESTIMATORS_PARTIAL_ESTIMATOR_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <Eigen/Dense>
+       9             : 
+      10             : #include <mrs_msgs/Float64Stamped.h>
+      11             : #include <mrs_msgs/Float64ArrayStamped.h>
+      12             : 
+      13             : #include <mrs_msgs/EstimatorOutput.h>
+      14             : 
+      15             : #include <mrs_uav_managers/estimation_manager/estimator.h>
+      16             : 
+      17             : //}
+      18             : 
+      19             : namespace mrs_uav_state_estimators
+      20             : {
+      21             : 
+      22             : typedef enum
+      23             : {
+      24             :   ELAND,
+      25             :   SWITCH,
+      26             :   MITIGATE,
+      27             :   NONE
+      28             : } ExcInnoAction_t;
+      29             : const int n_ExcInnoAction = 4;
+      30             : 
+      31             : const std::map<std::string, ExcInnoAction_t> map_exc_inno_action{{"eland", ExcInnoAction_t::ELAND},
+      32             :                                                         {"switch", ExcInnoAction_t::SWITCH},
+      33             :                                                         {"mitigate", ExcInnoAction_t::MITIGATE},
+      34             : {"none", ExcInnoAction_t::NONE}};
+      35             : 
+      36             : template <int n_states, int n_axes>
+      37             : class PartialEstimator : public mrs_uav_managers::Estimator {
+      38             : 
+      39             : public:
+      40             :   typedef Eigen::Matrix<double, n_states, 1>        states_t;
+      41             :   typedef Eigen::Matrix<double, n_states, n_states> covariance_t;
+      42             : 
+      43             : protected:
+      44             :   mutable mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput>     ph_output_;
+      45             :   mutable mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped> ph_input_;
+      46             : 
+      47             :   bool first_iter_ = true;
+      48             : 
+      49             :   double pos_innovation_limit_;
+      50             :   ExcInnoAction_t exc_innovation_action_;
+      51             :   std::string exc_innovation_action_name_;
+      52             :   bool innovation_ok_ = true;
+      53             : 
+      54             : private:
+      55             :   static const int _n_axes_   = n_axes;
+      56             :   static const int _n_states_ = n_states;
+      57             :   static const int _n_inputs_;
+      58             :   static const int _n_measurements_;
+      59             : 
+      60             : public:
+      61         361 :   PartialEstimator(const std::string &type, const std::string &name, const std::string &frame_id) : Estimator(type, name, frame_id) {
+      62         361 :   }
+      63             : 
+      64         361 :   ~PartialEstimator(void) {
+      65         361 :   }
+      66             : 
+      67             :   //  methods
+      68             :   virtual double getState(const int &state_idx_in) const                    = 0;
+      69             :   virtual double getState(const int &state_id_in, const int &axis_in) const = 0;
+      70             : 
+      71             :   virtual void setState(const double &state_in, const int &state_idx_in)                    = 0;
+      72             :   virtual void setState(const double &state_in, const int &state_id_in, const int &axis_in) = 0;
+      73             : 
+      74             :   virtual states_t getStates(void) const                = 0;
+      75             :   virtual void     setStates(const states_t &states_in) = 0;
+      76             : 
+      77             :   virtual double getCovariance(const int &state_idx_in) const                    = 0;
+      78             :   virtual double getCovariance(const int &state_id_in, const int &axis_in) const = 0;
+      79             : 
+      80             :   virtual covariance_t getCovarianceMatrix(void) const                 = 0;
+      81             :   virtual void         setCovarianceMatrix(const covariance_t &cov_in) = 0;
+      82             : 
+      83             :   virtual double getInnovation(const int &state_idx) const                       = 0;
+      84             :   virtual double getInnovation(const int &state_id_in, const int &axis_in) const = 0;
+      85             : 
+      86             :   // implemented methods
+      87             :   // access methods
+      88             :   std::vector<double> getStatesAsVector(void) const;
+      89             :   std::vector<double> getCovarianceAsVector(void) const;
+      90             : 
+      91             :   int stateIdToIndex(const int &state_id_in, const int &axis_in) const;
+      92             : 
+      93             :   template <typename u_t>
+      94             :   void publishInput(const u_t &u, const ros::Time& stamp) const;
+      95             :   void publishOutput() const;
+      96             : };
+      97             : 
+      98             : /*//{ method implementations */
+      99             : 
+     100             : /*//{ getStatesAsvector() */
+     101             : template <int n_states, int n_axes>
+     102      654978 : std::vector<double> PartialEstimator<n_states, n_axes>::getStatesAsVector(void) const {
+     103      654978 :   const states_t      states = getStates();
+     104      654709 :   std::vector<double> states_vec;
+     105             :   /* for (auto st : Eigen::MatrixXd::Map(states, states.size(), 1).rowwise()) { */
+     106             :   /*   states_vec.push_back(*st); */
+     107             :   /* } */
+     108     2943997 :   for (int i = 0; i < states.size(); i++) {
+     109     2288642 :     states_vec.push_back(states(i));
+     110             :   }
+     111     1308946 :   return states_vec;
+     112             : }
+     113             : /*//}*/
+     114             : 
+     115             : /*//{ getCovarianceAsvector() */
+     116             : template <int n_states, int n_axes>
+     117      654764 : std::vector<double> PartialEstimator<n_states, n_axes>::getCovarianceAsVector(void) const {
+     118      654764 :   const covariance_t  covariance = getCovarianceMatrix();
+     119      654644 :   std::vector<double> covariance_vec;
+     120             :   /* for (auto cov : covariance.reshaped<Eigen::RowMajor>(covariance.size())) { */
+     121             :   /*   covariance_vec.push_back(*cov); */
+     122             :   /* } */
+     123     2942086 :   for (int i = 0; i < covariance.rows(); i++) {
+     124    11865904 :     for (int j = 0; j < covariance.cols(); j++) {
+     125     9576511 :       covariance_vec.push_back(covariance(i, j));
+     126             :     }
+     127             :   }
+     128     1308926 :   return covariance_vec;
+     129             : }
+     130             : /*//}*/
+     131             : 
+     132             : /*//{ stateIdToIndex() */
+     133             : template <int n_states, int n_axes>
+     134     2711105 : int PartialEstimator<n_states, n_axes>::stateIdToIndex(const int &state_id_in, const int &axis_in) const {
+     135     2711105 :   return state_id_in * _n_axes_ + axis_in;
+     136             : }
+     137             : /*//}*/
+     138             : 
+     139             : /*//{ publishOutput() */
+     140             : template <int n_states, int n_axes>
+     141      654827 : void PartialEstimator<n_states, n_axes>::publishOutput() const {
+     142             : 
+     143      654827 :   if (!ch_->debug_topics.output) {
+     144           0 :     return;
+     145             :   }
+     146             : 
+     147     1309596 :   mrs_msgs::EstimatorOutput msg;
+     148      654431 :   msg.header.stamp    = ros::Time::now();
+     149      655047 :   msg.header.frame_id = getFrameId();
+     150      654976 :   msg.state           = getStatesAsVector();
+     151      654017 :   msg.covariance      = getCovarianceAsVector();
+     152             : 
+     153      654302 :   ph_output_.publish(msg);
+     154             : }
+     155             : /*//}*/
+     156             : 
+     157             : /*//{ publishInput() */
+     158             : template <int n_states, int n_axes>
+     159             : template <typename u_t>
+     160      464883 : void PartialEstimator<n_states, n_axes>::publishInput(const u_t &u, const ros::Time& stamp) const {
+     161             : 
+     162      464883 :   if (!ch_->debug_topics.input) {
+     163           0 :     return;
+     164             :   }
+     165             : 
+     166      926602 :   mrs_msgs::Float64ArrayStamped msg;
+     167      461671 :   msg.header.stamp = stamp;
+     168     1096680 :   for (int i = 0; i < u.rows(); i++) {
+     169      631249 :     msg.values.push_back(u(i));
+     170             :   }
+     171             : 
+     172      461732 :   ph_input_.publish(msg);
+     173             : }
+     174             : /*//}*/
+     175             : 
+     176             : /*//}*/
+     177             : 
+     178             : }  // namespace mrs_uav_state_estimators
+     179             : 
+     180             : #endif  // ESTIMATORS_PARTIAL_ESTIMATOR_H
+
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passthrough.h +
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state_generic.h +
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/index-sort-f.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/index-sort-f.html new file mode 100644 index 0000000000..5db10d1863 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/index-sort-f.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/stateHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:99100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
state_generic.h +
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passthrough.h +
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/index-sort-l.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/index-sort-l.html new file mode 100644 index 0000000000..ce3ea8d755 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/index-sort-l.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/stateHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:99100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
passthrough.h +
100.0%
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state_generic.h +
100.0%
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+
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+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/index.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/index.html new file mode 100644 index 0000000000..686d97e9eb --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/index.html @@ -0,0 +1,112 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/stateHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:99100.0 %
Date:2024-04-17 23:52:03Functions:5683.3 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
passthrough.h +
100.0%
+
100.0 %4 / 4100.0 %3 / 3
state_generic.h +
100.0%
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100.0 %5 / 566.7 %2 / 3
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.func-sort-c.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.func-sort-c.html new file mode 100644 index 0000000000..279bb40b35 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.func-sort-c.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state - passthrough.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:33100.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::passthrough::Passthrough::Passthrough()1
mrs_uav_state_estimators::passthrough::Passthrough::~Passthrough()1
mrs_uav_state_estimators::passthrough::Passthrough::~Passthrough().21
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.func.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.func.html new file mode 100644 index 0000000000..159c16ed0f --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.func.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state - passthrough.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:33100.0 %
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mrs_uav_state_estimators::passthrough::Passthrough::Passthrough()1
mrs_uav_state_estimators::passthrough::Passthrough::~Passthrough()1
mrs_uav_state_estimators::passthrough::Passthrough::~Passthrough().21
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+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.gcov.frameset.html new file mode 100644 index 0000000000..bf04eeb1cb --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.gcov.html new file mode 100644 index 0000000000..28008ca7f0 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.gcov.html @@ -0,0 +1,173 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state - passthrough.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:44100.0 %
Date:2024-04-17 23:52:03Functions:33100.0 %
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+
          Line data    Source code
+
+       1             : #ifndef ESTIMATORS_STATE_PASSTHROUGH_H
+       2             : #define ESTIMATORS_STATE_PASSTHROUGH_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <nav_msgs/Odometry.h>
+       9             : 
+      10             : #include <mrs_lib/lkf.h>
+      11             : #include <mrs_lib/profiler.h>
+      12             : #include <mrs_lib/param_loader.h>
+      13             : #include <mrs_lib/subscribe_handler.h>
+      14             : #include <mrs_lib/publisher_handler.h>
+      15             : #include <mrs_lib/attitude_converter.h>
+      16             : #include <mrs_lib/transformer.h>
+      17             : 
+      18             : #include <mrs_uav_managers/state_estimator.h>
+      19             : 
+      20             : //}
+      21             : 
+      22             : namespace mrs_uav_state_estimators
+      23             : {
+      24             : 
+      25             : namespace passthrough
+      26             : {
+      27             : const char name[]         = "passthrough";
+      28             : const char frame_id[]     = "passthrough_origin";
+      29             : const char package_name[] = "mrs_uav_state_estimators";
+      30             : 
+      31             : const bool is_core_plugin = true;
+      32             : 
+      33             : using namespace mrs_uav_managers::estimation_manager;
+      34             : 
+      35             : class Passthrough : public mrs_uav_managers::StateEstimator {
+      36             : 
+      37             :   using CommonHandlers_t = mrs_uav_managers::estimation_manager::CommonHandlers_t;
+      38             : 
+      39             : private:
+      40             :   const std::string package_name_ = "mrs_uav_state_estimators";
+      41             : 
+      42             :   const std::string est_lat_name_ = "lat_passthrough";
+      43             : 
+      44             :   const std::string est_alt_name_ = "alt_passthrough";
+      45             : 
+      46             :   const std::string est_hdg_name_ = "hdg_passthrough";
+      47             : 
+      48             :   const bool is_core_plugin_;
+      49             : 
+      50             :   mrs_lib::SubscribeHandler<nav_msgs::Odometry> sh_passthrough_odom_;
+      51             :   double                                        _critical_timeout_passthrough_odom_;
+      52             :   std::string                                   msg_topic_;
+      53             : 
+      54             :   ros::Timer                 timer_update_;
+      55             :   void                       timerUpdate(const ros::TimerEvent &event);
+      56             :   nav_msgs::OdometryConstPtr prev_msg_;
+      57             :   bool                       first_iter_ = true;
+      58             :   ros::Timer                 timer_check_health_;
+      59             :   void                       timerCheckHealth(const ros::TimerEvent &event);
+      60             : 
+      61             :   bool isConverged();
+      62             : 
+      63             :   void waitForEstimationInitialization();
+      64             : 
+      65             : public:
+      66           1 :   Passthrough() : StateEstimator(passthrough::name, passthrough::frame_id, passthrough::package_name), is_core_plugin_(is_core_plugin) {
+      67           1 :   }
+      68             : 
+      69           2 :   ~Passthrough(void) {
+      70           2 :   }
+      71             : 
+      72             :   void initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) override;
+      73             :   bool start(void) override;
+      74             :   bool pause(void) override;
+      75             :   bool reset(void) override;
+      76             : 
+      77             :   /* mrs_msgs::UavState  getUavState() override; */
+      78             :   /* nav_msgs::Odometry  getInnovation() const override; */
+      79             :   /* std::vector<double> getPoseCovariance() const override; */
+      80             :   /* std::vector<double> getTwistCovariance() const override; */
+      81             : 
+      82             :   bool setUavState(const mrs_msgs::UavState &uav_state) override;
+      83             : };
+      84             : 
+      85             : }  // namespace passthrough
+      86             : 
+      87             : }  // namespace mrs_uav_state_estimators
+      88             : 
+      89             : #endif  // ESTIMATORS_STATE_PASSTHROUGH_H
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.gcov.overview.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.gcov.overview.html new file mode 100644 index 0000000000..88d95237e0 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.gcov.overview.html @@ -0,0 +1,43 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.gcov.png b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/passthrough.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..e44c5c845709562b6df9a8255e423f99ae0ac942 GIT binary patch literal 431 zcmV;g0Z{&lP)0000OP)t-s|NsB0 zs;a7|?_FK${{R500003000620&P%hU00009a7bBm000ie000ie0hKEb8vpfO*y3~prpJEFVmUx_krB1ErfufwoNp%&};z`6IVHe zcp7+wCJ?=_l=#9mnq$p<=SVIGyJdG{!>EreX941!LoLd-1=^Nd$^p8)B+kWgO+ibE+Soi~>yX!XLzaeKefFguZm-q|K zRsu&L69)Xr&V>2cwV0%$x?)mMi23O}bC|&P2;J)0x8LW + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state - state_generic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:2366.7 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::StateGeneric::~StateGeneric()0
mrs_uav_state_estimators::StateGeneric::StateGeneric(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)97
mrs_uav_state_estimators::StateGeneric::~StateGeneric().297
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.func.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.func.html new file mode 100644 index 0000000000..face38f333 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.func.html @@ -0,0 +1,92 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state - state_generic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:2366.7 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::StateGeneric::StateGeneric(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)97
mrs_uav_state_estimators::StateGeneric::~StateGeneric()0
mrs_uav_state_estimators::StateGeneric::~StateGeneric().297
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+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.gcov.frameset.html new file mode 100644 index 0000000000..fa3e046124 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.gcov.html new file mode 100644 index 0000000000..9d0bdaf52c --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.gcov.html @@ -0,0 +1,183 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state - state_generic.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:2366.7 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #ifndef ESTIMATORS_STATE_STATE_GENERIC_H
+       2             : #define ESTIMATORS_STATE_STATE_GENERIC_H
+       3             : 
+       4             : /* includes //{ */
+       5             : 
+       6             : #include <ros/ros.h>
+       7             : 
+       8             : #include <nav_msgs/Odometry.h>
+       9             : 
+      10             : #include <mrs_lib/lkf.h>
+      11             : #include <mrs_lib/profiler.h>
+      12             : #include <mrs_lib/param_loader.h>
+      13             : #include <mrs_lib/subscribe_handler.h>
+      14             : #include <mrs_lib/publisher_handler.h>
+      15             : #include <mrs_lib/attitude_converter.h>
+      16             : #include <mrs_lib/transformer.h>
+      17             : 
+      18             : #include <mrs_uav_managers/state_estimator.h>
+      19             : 
+      20             : #include <mrs_uav_state_estimators/estimators/lateral/lat_generic.h>
+      21             : #include <mrs_uav_state_estimators/estimators/altitude/alt_generic.h>
+      22             : #include <mrs_uav_state_estimators/estimators/heading/heading_estimator.h>
+      23             : #include <mrs_uav_state_estimators/estimators/heading/hdg_generic.h>
+      24             : #include <mrs_uav_state_estimators/estimators/heading/hdg_passthrough.h>
+      25             : 
+      26             : //}
+      27             : 
+      28             : namespace mrs_uav_state_estimators
+      29             : {
+      30             : 
+      31             : namespace hdg_estimator
+      32             : {
+      33             : const int n_states = 2;
+      34             : }  // namespace hdg_estimator
+      35             : 
+      36             : namespace state_generic
+      37             : {
+      38             : const char package_name[] = "mrs_uav_state_estimators";
+      39             : }
+      40             : 
+      41             : class StateGeneric : public mrs_uav_managers::StateEstimator {
+      42             : 
+      43             : private:
+      44             :   std::unique_ptr<LatGeneric> est_lat_;
+      45             :   std::string                 est_lat_name_;
+      46             : 
+      47             :   std::unique_ptr<AltGeneric> est_alt_;
+      48             :   std::string                 est_alt_name_;
+      49             : 
+      50             :   bool                                                       is_hdg_passthrough_;
+      51             :   std::unique_ptr<HeadingEstimator<hdg_estimator::n_states>> est_hdg_;
+      52             :   std::string                                                est_hdg_name_;
+      53             : 
+      54             :   bool is_override_frame_id_;
+      55             : 
+      56             :   const bool is_core_plugin_;
+      57             : 
+      58             :   std::string                                                 topic_orientation_;
+      59             :   mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped> sh_hw_api_orient_;
+      60             : 
+      61             :   std::string                                              topic_angular_velocity_;
+      62             :   mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped> sh_hw_api_ang_vel_;
+      63             : 
+      64             :   ros::Timer timer_update_;
+      65             :   void       timerUpdate(const ros::TimerEvent &event);
+      66             : 
+      67             :   ros::Timer timer_check_health_;
+      68             :   void       timerCheckHealth(const ros::TimerEvent &event);
+      69             : 
+      70             :   ros::Timer timer_pub_attitude_;
+      71             :   void       timerPubAttitude(const ros::TimerEvent &event);
+      72             : 
+      73             :   bool isConverged();
+      74             : 
+      75             :   void waitForEstimationInitialization();
+      76             : 
+      77             : public:
+      78          97 :   StateGeneric(const std::string &name, const bool is_core_plugin)
+      79          97 :       : StateEstimator(name, name + "_origin", state_generic::package_name), is_core_plugin_(is_core_plugin) {
+      80          97 :   }
+      81             : 
+      82          97 :   ~StateGeneric(void) {
+      83          97 :   }
+      84             : 
+      85             :   void initialize(ros::NodeHandle &parent_nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) override;
+      86             :   bool start(void) override;
+      87             :   bool pause(void) override;
+      88             :   bool reset(void) override;
+      89             : 
+      90             :   bool setUavState(const mrs_msgs::UavState &uav_state) override;
+      91             : 
+      92             :   std::optional<double> getHeading() const;
+      93             : 
+      94             :   void updateUavState();
+      95             : };
+      96             : 
+      97             : }  // namespace mrs_uav_state_estimators
+      98             : 
+      99             : #endif  // ESTIMATORS_STATE_STATE_GENERIC_H
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.gcov.overview.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.gcov.overview.html new file mode 100644 index 0000000000..e38bed99a7 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.gcov.overview.html @@ -0,0 +1,45 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.gcov.png b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/estimators/state/state_generic.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..ce4b3647eeeb837a14b19ec628cfa1df6eb92a02 GIT binary patch literal 438 zcmV;n0ZIOeP)Vz^Tt*~F@W@P<*6F01U09LCdGFD)a8j6o=J2p{;vfxW zTmvR#CNa*UrHl>IXwIO>SPp5cm|>sc#=+(ZuNG^GMUk{ zQBea#8B8mCE@mK|!s=en1Db;rbN#@)cC_5>SiyMbUa9H0Ar&dg*Fr-I gkFgQlPPSmrA6JucjdQ-?RR91007*qoM6N<$f^ZwfOaK4? literal 0 HcmV?d00001 diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-detail-sort-f.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-detail-sort-f.html new file mode 100644 index 0000000000..af7c76b886 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-detail-sort-f.html @@ -0,0 +1,182 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13218471.7 %
Date:2024-04-17 23:52:03Functions:173450.0 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
proc_excessive_tilt.h +
68.3%68.3%
+
68.3 %28 / 4133.3 %2 / 6
<unnamed>68.3 %28 / 4133.3 %2 / 6
proc_median_filter.h +
63.9%63.9%
+
63.9 %23 / 3633.3 %2 / 6
<unnamed>63.9 %23 / 3633.3 %2 / 6
proc_tf_to_world.h +
78.9%78.9%
+
78.9 %45 / 5737.5 %3 / 8
<unnamed>78.9 %45 / 5737.5 %3 / 8
proc_saturate.h +
72.5%72.5%
+
72.5 %29 / 4066.7 %4 / 6
<unnamed>72.5 %29 / 4066.7 %4 / 6
processor.h +
70.0%70.0%
+
70.0 %7 / 1075.0 %6 / 8
<unnamed>70.0 %7 / 1075.0 %6 / 8
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-detail-sort-l.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-detail-sort-l.html new file mode 100644 index 0000000000..b3db5fd30e --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-detail-sort-l.html @@ -0,0 +1,182 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13218471.7 %
Date:2024-04-17 23:52:03Functions:173450.0 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
proc_median_filter.h +
63.9%63.9%
+
63.9 %23 / 3633.3 %2 / 6
<unnamed>63.9 %23 / 3633.3 %2 / 6
proc_excessive_tilt.h +
68.3%68.3%
+
68.3 %28 / 4133.3 %2 / 6
<unnamed>68.3 %28 / 4133.3 %2 / 6
processor.h +
70.0%70.0%
+
70.0 %7 / 1075.0 %6 / 8
<unnamed>70.0 %7 / 1075.0 %6 / 8
proc_saturate.h +
72.5%72.5%
+
72.5 %29 / 4066.7 %4 / 6
<unnamed>72.5 %29 / 4066.7 %4 / 6
proc_tf_to_world.h +
78.9%78.9%
+
78.9 %45 / 5737.5 %3 / 8
<unnamed>78.9 %45 / 5737.5 %3 / 8
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-detail.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-detail.html new file mode 100644 index 0000000000..7d5923b911 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-detail.html @@ -0,0 +1,182 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13218471.7 %
Date:2024-04-17 23:52:03Functions:173450.0 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
proc_excessive_tilt.h +
68.3%68.3%
+
68.3 %28 / 4133.3 %2 / 6
<unnamed>68.3 %28 / 4133.3 %2 / 6
proc_median_filter.h +
63.9%63.9%
+
63.9 %23 / 3633.3 %2 / 6
<unnamed>63.9 %23 / 3633.3 %2 / 6
proc_saturate.h +
72.5%72.5%
+
72.5 %29 / 4066.7 %4 / 6
<unnamed>72.5 %29 / 4066.7 %4 / 6
proc_tf_to_world.h +
78.9%78.9%
+
78.9 %45 / 5737.5 %3 / 8
<unnamed>78.9 %45 / 5737.5 %3 / 8
processor.h +
70.0%70.0%
+
70.0 %7 / 1075.0 %6 / 8
<unnamed>70.0 %7 / 1075.0 %6 / 8
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-sort-f.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-sort-f.html new file mode 100644 index 0000000000..f46bccd9c9 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-sort-f.html @@ -0,0 +1,142 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13218471.7 %
Date:2024-04-17 23:52:03Functions:173450.0 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
proc_excessive_tilt.h +
68.3%68.3%
+
68.3 %28 / 4133.3 %2 / 6
proc_median_filter.h +
63.9%63.9%
+
63.9 %23 / 3633.3 %2 / 6
proc_tf_to_world.h +
78.9%78.9%
+
78.9 %45 / 5737.5 %3 / 8
proc_saturate.h +
72.5%72.5%
+
72.5 %29 / 4066.7 %4 / 6
processor.h +
70.0%70.0%
+
70.0 %7 / 1075.0 %6 / 8
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-sort-l.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-sort-l.html new file mode 100644 index 0000000000..dc76226c6a --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index-sort-l.html @@ -0,0 +1,142 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13218471.7 %
Date:2024-04-17 23:52:03Functions:173450.0 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
proc_median_filter.h +
63.9%63.9%
+
63.9 %23 / 3633.3 %2 / 6
proc_excessive_tilt.h +
68.3%68.3%
+
68.3 %28 / 4133.3 %2 / 6
processor.h +
70.0%70.0%
+
70.0 %7 / 1075.0 %6 / 8
proc_saturate.h +
72.5%72.5%
+
72.5 %29 / 4066.7 %4 / 6
proc_tf_to_world.h +
78.9%78.9%
+
78.9 %45 / 5737.5 %3 / 8
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index.html new file mode 100644 index 0000000000..f22eb9e900 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/index.html @@ -0,0 +1,142 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processorsHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:13218471.7 %
Date:2024-04-17 23:52:03Functions:173450.0 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
proc_excessive_tilt.h +
68.3%68.3%
+
68.3 %28 / 4133.3 %2 / 6
proc_median_filter.h +
63.9%63.9%
+
63.9 %23 / 3633.3 %2 / 6
proc_saturate.h +
72.5%72.5%
+
72.5 %29 / 4066.7 %4 / 6
proc_tf_to_world.h +
78.9%78.9%
+
78.9 %45 / 5737.5 %3 / 8
processor.h +
70.0%70.0%
+
70.0 %7 / 1075.0 %6 / 8
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.func-sort-c.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.func-sort-c.html new file mode 100644 index 0000000000..0bc8f19764 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.func-sort-c.html @@ -0,0 +1,104 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors - proc_excessive_tilt.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:284168.3 %
Date:2024-04-17 23:52:03Functions:2633.3 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::ProcExcessiveTilt<1>::reset()0
mrs_uav_state_estimators::ProcExcessiveTilt<2>::reset()0
mrs_uav_state_estimators::ProcExcessiveTilt<2>::process(Eigen::Matrix<double, 2, 1, 0, 2, 1>&)0
mrs_uav_state_estimators::ProcExcessiveTilt<2>::ProcExcessiveTilt(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)0
mrs_uav_state_estimators::ProcExcessiveTilt<1>::ProcExcessiveTilt(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)76
mrs_uav_state_estimators::ProcExcessiveTilt<1>::process(Eigen::Matrix<double, 1, 1, 0, 1, 1>&)139489
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.func.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.func.html new file mode 100644 index 0000000000..7d5852ec8c --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.func.html @@ -0,0 +1,104 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors - proc_excessive_tilt.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:284168.3 %
Date:2024-04-17 23:52:03Functions:2633.3 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::ProcExcessiveTilt<1>::reset()0
mrs_uav_state_estimators::ProcExcessiveTilt<1>::process(Eigen::Matrix<double, 1, 1, 0, 1, 1>&)139489
mrs_uav_state_estimators::ProcExcessiveTilt<1>::ProcExcessiveTilt(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)76
mrs_uav_state_estimators::ProcExcessiveTilt<2>::reset()0
mrs_uav_state_estimators::ProcExcessiveTilt<2>::process(Eigen::Matrix<double, 2, 1, 0, 2, 1>&)0
mrs_uav_state_estimators::ProcExcessiveTilt<2>::ProcExcessiveTilt(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)0
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.gcov.frameset.html new file mode 100644 index 0000000000..73cb0ae2b8 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.gcov.html new file mode 100644 index 0000000000..552b64858e --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.gcov.html @@ -0,0 +1,206 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors - proc_excessive_tilt.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:284168.3 %
Date:2024-04-17 23:52:03Functions:2633.3 %
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+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #pragma once
+       2             : #ifndef PROCESSORS_PROC_EXCESSIVE_TILT_H
+       3             : #define PROCESSORS_PROC_EXCESSIVE_TILT_H
+       4             : 
+       5             : #include <mrs_uav_state_estimators/processors/processor.h>
+       6             : 
+       7             : #include <mrs_lib/param_loader.h>
+       8             : #include <mrs_lib/subscribe_handler.h>
+       9             : #include <mrs_lib/attitude_converter.h>
+      10             : 
+      11             : #include <Eigen/Dense>
+      12             : 
+      13             : #include <limits>
+      14             : 
+      15             : namespace mrs_uav_state_estimators
+      16             : {
+      17             : 
+      18             : using namespace mrs_uav_managers::estimation_manager;
+      19             : 
+      20             : template <int n_measurements>
+      21             : class ProcExcessiveTilt : public Processor<n_measurements> {
+      22             : 
+      23             : public:
+      24             :   typedef Eigen::Matrix<double, n_measurements, 1> measurement_t;
+      25             : 
+      26             : public:
+      27             :   ProcExcessiveTilt(ros::NodeHandle& nh, const std::string& correction_name, const std::string& name, const std::shared_ptr<CommonHandlers_t>& ch,
+      28             :                     const std::shared_ptr<PrivateHandlers_t>& ph);
+      29             : 
+      30             :   std::tuple<bool, bool> process(measurement_t& measurement) override;
+      31             :   void                   reset();
+      32             : 
+      33             : private:
+      34             :   double max_tilt_sq_;
+      35             : 
+      36             :   std::string                                                 orientation_topic_;
+      37             :   mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped> sh_orientation_;
+      38             : };
+      39             : 
+      40             : /*//{ constructor */
+      41             : template <int n_measurements>
+      42          76 : ProcExcessiveTilt<n_measurements>::ProcExcessiveTilt(ros::NodeHandle& nh, const std::string& correction_name, const std::string& name,
+      43             :                                                      const std::shared_ptr<CommonHandlers_t>& ch, const std::shared_ptr<PrivateHandlers_t>& ph)
+      44          76 :     : Processor<n_measurements>(nh, correction_name, name, ch, ph) {
+      45             : 
+      46             :   // | --------------------- load parameters -------------------- |
+      47          76 :   ph->param_loader->setPrefix(ch->package_name + "/" + Support::toSnakeCase(ch->nodelet_name) + "/" + Processor<n_measurements>::getNamespacedName() + "/");
+      48             : 
+      49          76 :   ph->param_loader->loadParam("orientation_topic", orientation_topic_);
+      50             :   double max_tilt;
+      51          76 :   ph->param_loader->loadParam("max_tilt", max_tilt);
+      52             : 
+      53          76 :   max_tilt = M_PI * (max_tilt / 180.0);
+      54             : 
+      55          76 :   max_tilt_sq_ = std::pow(max_tilt, 2);
+      56             : 
+      57          76 :   if (!ph->param_loader->loadedSuccessfully()) {
+      58           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", Processor<n_measurements>::getPrintName().c_str());
+      59           0 :     ros::shutdown();
+      60             :   }
+      61             : 
+      62             :   // | -------------- initialize subscribe handlers ------------- |
+      63          76 :   mrs_lib::SubscribeHandlerOptions shopts;
+      64          76 :   shopts.nh                 = nh;
+      65          76 :   shopts.node_name          = Processor<n_measurements>::getPrintName();
+      66          76 :   shopts.no_message_timeout = ros::Duration(1.0);
+      67          76 :   shopts.threadsafe         = true;
+      68          76 :   shopts.autostart          = true;
+      69          76 :   shopts.queue_size         = 10;
+      70          76 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+      71             : 
+      72          76 :   sh_orientation_ = mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped>(shopts, "/" + ch->uav_name + "/" + orientation_topic_);
+      73          76 : }
+      74             : /*//}*/
+      75             : 
+      76             : /*//{ process() */
+      77             : template <int n_measurements>
+      78      139489 : std::tuple<bool, bool> ProcExcessiveTilt<n_measurements>::process([[maybe_unused]] measurement_t& measurement) {
+      79             : 
+      80      139489 :   if (!Processor<n_measurements>::enabled_) {
+      81           0 :     return {true, true};
+      82             :   }
+      83             : 
+      84      139489 :   if (!sh_orientation_.hasMsg()) {
+      85           0 :     return {false, false};
+      86             :   }
+      87             : 
+      88      139490 :   bool ok_flag     = true;
+      89      139490 :   bool should_fuse = true;
+      90             : 
+      91             :   try {
+      92      139490 :     Eigen::Matrix3d orientation_R = mrs_lib::AttitudeConverter(sh_orientation_.getMsg()->quaternion);
+      93             : 
+      94      139488 :     const double tilt = mrs_lib::geometry::angleBetween(Eigen::Vector3d(0, 0, 1), orientation_R.col(2));
+      95             : 
+      96      139473 :     const bool is_excessive_tilt = std::pow(tilt, 2) > max_tilt_sq_;
+      97             : 
+      98      139460 :     if (is_excessive_tilt) {
+      99           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: excessive tilt of %.2f deg. Not fusing correction.", Processor<n_measurements>::getPrintName().c_str(), tilt / M_PI * 180);
+     100           0 :       ok_flag     = false;
+     101           0 :       should_fuse = false;
+     102             :     }
+     103             :   }
+     104           0 :   catch (...) {
+     105           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: failed obtaining tilt value", Processor<n_measurements>::getPrintName().c_str());
+     106           0 :     ok_flag     = false;
+     107           0 :     should_fuse = false;
+     108             :   }
+     109      139490 :   return {ok_flag, should_fuse};
+     110             : }
+     111             : /*//}*/
+     112             : 
+     113             : /*//{ reset() */
+     114             : template <int n_measurements>
+     115           0 : void ProcExcessiveTilt<n_measurements>::reset() {
+     116             :   // no need to do anything
+     117           0 : }
+     118             : /*//}*/
+     119             : 
+     120             : }  // namespace mrs_uav_state_estimators
+     121             : 
+     122             : #endif  // PROCESSORS_PROC_EXCESSIVE_TILT_H
+
+
+
+ + + + +
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.gcov.overview.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.gcov.overview.html new file mode 100644 index 0000000000..8e05401d3b --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h.gcov.overview.html @@ -0,0 +1,51 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_excessive_tilt.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors - proc_median_filter.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:233663.9 %
Date:2024-04-17 23:52:03Functions:2633.3 %
Legend: Lines: + hit + not hit +
+
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::ProcMedianFilter<1>::reset()0
mrs_uav_state_estimators::ProcMedianFilter<2>::reset()0
mrs_uav_state_estimators::ProcMedianFilter<2>::process(Eigen::Matrix<double, 2, 1, 0, 2, 1>&)0
mrs_uav_state_estimators::ProcMedianFilter<2>::ProcMedianFilter(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)0
mrs_uav_state_estimators::ProcMedianFilter<1>::ProcMedianFilter(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)76
mrs_uav_state_estimators::ProcMedianFilter<1>::process(Eigen::Matrix<double, 1, 1, 0, 1, 1>&)139488
+
+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h.func.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h.func.html new file mode 100644 index 0000000000..eba307a30d --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h.func.html @@ -0,0 +1,104 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors - proc_median_filter.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:233663.9 %
Date:2024-04-17 23:52:03Functions:2633.3 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::ProcMedianFilter<1>::reset()0
mrs_uav_state_estimators::ProcMedianFilter<1>::process(Eigen::Matrix<double, 1, 1, 0, 1, 1>&)139488
mrs_uav_state_estimators::ProcMedianFilter<1>::ProcMedianFilter(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)76
mrs_uav_state_estimators::ProcMedianFilter<2>::reset()0
mrs_uav_state_estimators::ProcMedianFilter<2>::process(Eigen::Matrix<double, 2, 1, 0, 2, 1>&)0
mrs_uav_state_estimators::ProcMedianFilter<2>::ProcMedianFilter(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)0
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h.gcov.frameset.html new file mode 100644 index 0000000000..6b6962ed34 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h.gcov.html new file mode 100644 index 0000000000..fe871ed5a6 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h.gcov.html @@ -0,0 +1,192 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_median_filter.h + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors - proc_median_filter.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:233663.9 %
Date:2024-04-17 23:52:03Functions:2633.3 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : #pragma once
+       2             : #ifndef PROCESSORS_PROC_MEDIAN_FILTER_H
+       3             : #define PROCESSORS_PROC_MEDIAN_FILTER_H
+       4             : 
+       5             : #include <mrs_uav_state_estimators/processors/processor.h>
+       6             : 
+       7             : #include <mrs_lib/median_filter.h>
+       8             : #include <mrs_lib/param_loader.h>
+       9             : 
+      10             : #include <limits>
+      11             : 
+      12             : namespace mrs_uav_state_estimators
+      13             : {
+      14             : 
+      15             : using namespace mrs_uav_managers::estimation_manager;
+      16             : 
+      17             : template <int n_measurements>
+      18             : class ProcMedianFilter : public Processor<n_measurements> {
+      19             : 
+      20             : public:
+      21             :   typedef Eigen::Matrix<double, n_measurements, 1> measurement_t;
+      22             : 
+      23             : public:
+      24             :   ProcMedianFilter(ros::NodeHandle& nh, const std::string& correction_name, const std::string& name, const std::shared_ptr<CommonHandlers_t>& ch,
+      25             :                    const std::shared_ptr<PrivateHandlers_t>& ph);
+      26             : 
+      27             :   std::tuple<bool, bool> process(measurement_t& measurement) override;
+      28             :   void                   reset();
+      29             : 
+      30             : private:
+      31             :   std::vector<mrs_lib::MedianFilter> vec_mf_;
+      32             :   int                                buffer_size_;
+      33             :   double                             max_diff_;
+      34             : };
+      35             : 
+      36             : /*//{ constructor */
+      37             : template <int n_measurements>
+      38          76 : ProcMedianFilter<n_measurements>::ProcMedianFilter(ros::NodeHandle& nh, const std::string& correction_name, const std::string& name,
+      39             :                                                    const std::shared_ptr<CommonHandlers_t>& ch, const std::shared_ptr<PrivateHandlers_t>& ph)
+      40          76 :     : Processor<n_measurements>(nh, correction_name, name, ch, ph) {
+      41             : 
+      42             :   // | --------------------- load parameters -------------------- |
+      43          76 :   ph->param_loader->setPrefix(ch->package_name + "/" + Support::toSnakeCase(ch->nodelet_name) + "/" + Processor<n_measurements>::getNamespacedName() + "/");
+      44             : 
+      45          76 :   ph->param_loader->loadParam("buffer_size", buffer_size_);
+      46          76 :   ph->param_loader->loadParam("max_diff", max_diff_);
+      47             : 
+      48          76 :   if (!ph->param_loader->loadedSuccessfully()) {
+      49           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", Processor<n_measurements>::getPrintName().c_str());
+      50           0 :     ros::shutdown();
+      51             :   }
+      52             : 
+      53             :   // min and max values are not checked by median filter, so set them to limits of double
+      54          76 :   const double min_valid = std::numeric_limits<double>::lowest();
+      55          76 :   const double max_valid = std::numeric_limits<double>::max();
+      56             : 
+      57             :   // initialize median filter
+      58         152 :   for (int i = 0; i < n_measurements; i++) {
+      59          76 :     vec_mf_.push_back(mrs_lib::MedianFilter(buffer_size_, min_valid, max_valid, max_diff_));
+      60             :   }
+      61          76 : }
+      62             : /*//}*/
+      63             : 
+      64             : /*//{ process() */
+      65             : template <int n_measurements>
+      66      139488 : std::tuple<bool, bool> ProcMedianFilter<n_measurements>::process(measurement_t& measurement) {
+      67             : 
+      68      139488 :   if (!Processor<n_measurements>::enabled_) {
+      69           0 :     return {true, true};
+      70             :   }
+      71             : 
+      72      139488 :   bool ok_flag     = true;
+      73      139488 :   bool should_fuse = true;
+      74      278970 :   for (int i = 0; i < measurement.rows(); i++) {
+      75      139470 :     vec_mf_[i].add(measurement(i));
+      76      139480 :     if (vec_mf_[i].full()) {
+      77      131958 :       if (!vec_mf_[i].check(measurement(i))) {
+      78           0 :         std::stringstream ss_measurement_string;
+      79           0 :         ss_measurement_string << measurement(i);
+      80           0 :         ss_measurement_string << " ";
+      81           0 :         ROS_WARN_THROTTLE(1.0, "[%s]: measurement[%d]: %s declined by median filter (median: %.2f, max_diff: %.2f).",
+      82             :                           Processor<n_measurements>::getPrintName().c_str(), i, ss_measurement_string.str().c_str(), vec_mf_[i].median(), max_diff_);
+      83           0 :         ok_flag     = false;
+      84           0 :         should_fuse = false;
+      85             :       }
+      86             :     } else {
+      87        7524 :       ROS_WARN_THROTTLE(1.0, "[%s]: median filter not full yet", Processor<n_measurements>::getPrintName().c_str());
+      88        7524 :       ok_flag     = false;
+      89        7524 :       should_fuse = false;
+      90             :     }
+      91             :   }
+      92             : 
+      93      139469 :   return {ok_flag, should_fuse};
+      94             : }
+      95             : /*//}*/
+      96             : 
+      97             : /*//{ reset() */
+      98             : template <int n_measurements>
+      99           0 : void ProcMedianFilter<n_measurements>::reset() {
+     100           0 :   for (auto mf : vec_mf_) {
+     101           0 :     mf.clear();
+     102             :   }
+     103           0 : }
+     104             : /*//}*/
+     105             : 
+     106             : }  // namespace mrs_uav_state_estimators
+     107             : 
+     108             : #endif  // PROCESSORS_PROC_MEDIAN_FILTER_H
+
+
+
+ + + + +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::ProcSaturate<1>::reset()0
mrs_uav_state_estimators::ProcSaturate<2>::reset()0
mrs_uav_state_estimators::ProcSaturate<2>::ProcSaturate(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&, mrs_uav_managers::estimation_manager::StateId_t, std::function<double (int, int)>)4
mrs_uav_state_estimators::ProcSaturate<1>::ProcSaturate(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&, mrs_uav_managers::estimation_manager::StateId_t, std::function<double (int, int)>)78
mrs_uav_state_estimators::ProcSaturate<2>::process(Eigen::Matrix<double, 2, 1, 0, 2, 1>&)5425
mrs_uav_state_estimators::ProcSaturate<1>::process(Eigen::Matrix<double, 1, 1, 0, 1, 1>&)142023
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Date:2024-04-17 23:52:03Functions:4666.7 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::ProcSaturate<1>::reset()0
mrs_uav_state_estimators::ProcSaturate<1>::process(Eigen::Matrix<double, 1, 1, 0, 1, 1>&)142023
mrs_uav_state_estimators::ProcSaturate<1>::ProcSaturate(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&, mrs_uav_managers::estimation_manager::StateId_t, std::function<double (int, int)>)78
mrs_uav_state_estimators::ProcSaturate<2>::reset()0
mrs_uav_state_estimators::ProcSaturate<2>::process(Eigen::Matrix<double, 2, 1, 0, 2, 1>&)5425
mrs_uav_state_estimators::ProcSaturate<2>::ProcSaturate(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&, mrs_uav_managers::estimation_manager::StateId_t, std::function<double (int, int)>)4
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+
          Line data    Source code
+
+       1             : #pragma once
+       2             : #ifndef PROCESSORS_PROC_SATURATE_H
+       3             : #define PROCESSORS_PROC_SATURATE_H
+       4             : 
+       5             : #include <mrs_uav_state_estimators/processors/processor.h>
+       6             : 
+       7             : #include <mrs_lib/param_loader.h>
+       8             : 
+       9             : #include <limits>
+      10             : #include <functional>
+      11             : 
+      12             : namespace mrs_uav_state_estimators
+      13             : {
+      14             : 
+      15             : using namespace mrs_uav_managers::estimation_manager;
+      16             : 
+      17             : template <int n_measurements>
+      18             : class ProcSaturate : public Processor<n_measurements> {
+      19             : 
+      20             : public:
+      21             :   typedef Eigen::Matrix<double, n_measurements, 1> measurement_t;
+      22             : 
+      23             : public:
+      24             :   ProcSaturate(ros::NodeHandle& nh, const std::string& correction_name, const std::string& name, const std::shared_ptr<CommonHandlers_t>& ch,
+      25             :                const std::shared_ptr<PrivateHandlers_t>& ph, StateId_t state_id, std::function<double(int, int)> fun_get_state);
+      26             : 
+      27             :   std::tuple<bool, bool> process(measurement_t& measurement) override;
+      28             :   void                   reset();
+      29             : 
+      30             : private:
+      31             :   const StateId_t                 state_id_;
+      32             :   std::function<double(int, int)> fun_get_state_;
+      33             : 
+      34             :   bool   keep_enabled_;
+      35             :   double saturate_min_;
+      36             :   double saturate_max_;
+      37             :   double innovation_limit_;
+      38             : };
+      39             : 
+      40             : /*//{ constructor */
+      41             : template <int n_measurements>
+      42          82 : ProcSaturate<n_measurements>::ProcSaturate(ros::NodeHandle& nh, const std::string& correction_name, const std::string& name,
+      43             :                                            const std::shared_ptr<CommonHandlers_t>& ch, const std::shared_ptr<PrivateHandlers_t>& ph, const StateId_t state_id,
+      44             :                                            std::function<double(int, int)> fun_get_state)
+      45          82 :     : Processor<n_measurements>(nh, correction_name, name, ch, ph), state_id_(state_id), fun_get_state_(fun_get_state) {
+      46             : 
+      47             :   // | --------------------- load parameters -------------------- |
+      48          82 :   ph->param_loader->setPrefix(ch->package_name + "/" + Support::toSnakeCase(ch->nodelet_name) + "/" + Processor<n_measurements>::getNamespacedName() + "/");
+      49             : 
+      50          82 :   ph->param_loader->loadParam("start_enabled", this->start_enabled_);
+      51          82 :   this->enabled_ = this->start_enabled_;
+      52          82 :   ph->param_loader->loadParam("keep_enabled", keep_enabled_);
+      53          82 :   ph->param_loader->loadParam("min", saturate_min_);
+      54          82 :   ph->param_loader->loadParam("max", saturate_max_);
+      55          82 :   ph->param_loader->loadParam("limit", innovation_limit_);
+      56             : 
+      57          82 :   if (!ph->param_loader->loadedSuccessfully()) {
+      58           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", Processor<n_measurements>::getPrintName().c_str());
+      59           0 :     ros::shutdown();
+      60             :   }
+      61          82 : }
+      62             : /*//}*/
+      63             : 
+      64             : /*//{ process() */
+      65             : template <int n_measurements>
+      66      147448 : std::tuple<bool, bool> ProcSaturate<n_measurements>::process(measurement_t& measurement) {
+      67             : 
+      68             :   // if no saturation is required, processing is successful
+      69      147448 :   if (!this->enabled_) {
+      70           0 :     return {true, true};
+      71             :   }
+      72             : 
+      73      147448 :   bool ok_flag     = true;
+      74      147448 :   bool should_fuse = true;
+      75      295153 :   for (int i = 0; i < measurement.rows(); i++) {
+      76      152863 :     const double state = fun_get_state_(state_id_, i);
+      77      152862 :     ROS_INFO_ONCE("[%s]: first state[%d][%d]: %.2f", Processor<n_measurements>::getNamespacedName().c_str(), state_id_, i, state);
+      78             : 
+      79      152862 :     if (measurement(i) > state + innovation_limit_ || measurement(i) < state - innovation_limit_) {
+      80        5151 :       return {true, true};  // do not even try to saturate, trigger innovation-based switch to other estimator
+      81             :     }
+      82             : 
+      83      147703 :     if (measurement(i) > state + saturate_max_) {
+      84        1046 :       const double saturated = state + saturate_max_;
+      85        1046 :       ROS_WARN_THROTTLE(1.0, "[%s]: state[%d][%d]: %.2f, measurement[%d]: %.2f saturated to: %.2f.", Processor<n_measurements>::getPrintName().c_str(),
+      86             :                         state_id_, i, state, i, measurement(i), saturated);
+      87        1046 :       measurement(i) = saturated;
+      88        1046 :       ok_flag        = false;
+      89        1046 :       should_fuse    = true;
+      90      146656 :     } else if (measurement(i) < state + saturate_min_) {
+      91           0 :       const double saturated = state + saturate_min_;
+      92           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: state[%d][%d]: %.2f, measurement[%d]: %.2f saturated to: %.2f.", Processor<n_measurements>::getPrintName().c_str(),
+      93             :                         state_id_, i, state, i, measurement(i), saturated);
+      94           0 :       measurement(i) = saturated;
+      95           0 :       ok_flag        = false;
+      96           0 :       should_fuse    = true;
+      97             :     }
+      98             :   }
+      99             : 
+     100             :   // measurements are close to the state, no need to saturate until triggered externally again
+     101      142283 :   if (!this->keep_enabled_ && ok_flag) {
+     102           0 :     this->enabled_ = false;
+     103             :   }
+     104             : 
+     105      142283 :   return {ok_flag, should_fuse};  // saturated measurement is valid
+     106             : }
+     107             : /*//}*/
+     108             : 
+     109             : /*//{ reset() */
+     110             : template <int n_measurements>
+     111           0 : void ProcSaturate<n_measurements>::reset() {
+     112             :   // no need to reset anything
+     113           0 : }
+     114             : /*//}*/
+     115             : 
+     116             : }  // namespace mrs_uav_state_estimators
+     117             : 
+     118             : #endif  // PROCESSORS_PROC_MEDIAN_FILTER_H
+
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mrs_uav_state_estimators::ProcTfToWorld<1>::callbackGnss(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)0
mrs_uav_state_estimators::ProcTfToWorld<1>::reset()0
mrs_uav_state_estimators::ProcTfToWorld<1>::process(Eigen::Matrix<double, 1, 1, 0, 1, 1>&)0
mrs_uav_state_estimators::ProcTfToWorld<1>::ProcTfToWorld(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)0
mrs_uav_state_estimators::ProcTfToWorld<2>::reset()0
mrs_uav_state_estimators::ProcTfToWorld<2>::ProcTfToWorld(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)93
mrs_uav_state_estimators::ProcTfToWorld<2>::callbackGnss(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)88831
mrs_uav_state_estimators::ProcTfToWorld<2>::process(Eigen::Matrix<double, 2, 1, 0, 2, 1>&)184918
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mrs_uav_state_estimators::ProcTfToWorld<1>::callbackGnss(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)0
mrs_uav_state_estimators::ProcTfToWorld<1>::reset()0
mrs_uav_state_estimators::ProcTfToWorld<1>::process(Eigen::Matrix<double, 1, 1, 0, 1, 1>&)0
mrs_uav_state_estimators::ProcTfToWorld<1>::ProcTfToWorld(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)0
mrs_uav_state_estimators::ProcTfToWorld<2>::callbackGnss(boost::shared_ptr<sensor_msgs::NavSatFix_<std::allocator<void> > const>)88831
mrs_uav_state_estimators::ProcTfToWorld<2>::reset()0
mrs_uav_state_estimators::ProcTfToWorld<2>::process(Eigen::Matrix<double, 2, 1, 0, 2, 1>&)184918
mrs_uav_state_estimators::ProcTfToWorld<2>::ProcTfToWorld(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)93
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+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h.gcov.frameset.html new file mode 100644 index 0000000000..6aab5842a6 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h.gcov.html new file mode 100644 index 0000000000..d12de637e9 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h.gcov.html @@ -0,0 +1,241 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors - proc_tf_to_world.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:455778.9 %
Date:2024-04-17 23:52:03Functions:3837.5 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #pragma once
+       2             : #ifndef PROCESSORS_PROC_TF_TO_WORLD_H
+       3             : #define PROCESSORS_PROC_TF_TO_WORLD_H
+       4             : 
+       5             : #include <mrs_uav_state_estimators/processors/processor.h>
+       6             : 
+       7             : #include <sensor_msgs/NavSatFix.h>
+       8             : 
+       9             : #include <mrs_lib/gps_conversions.h>
+      10             : #include <mrs_lib/subscribe_handler.h>
+      11             : #include <mrs_lib/param_loader.h>
+      12             : 
+      13             : namespace mrs_uav_state_estimators
+      14             : {
+      15             : 
+      16             : using namespace mrs_uav_managers::estimation_manager;
+      17             : 
+      18             : template <int n_measurements>
+      19             : class ProcTfToWorld : public Processor<n_measurements> {
+      20             : 
+      21             : public:
+      22             :   typedef Eigen::Matrix<double, n_measurements, 1> measurement_t;
+      23             : 
+      24             : public:
+      25             :   ProcTfToWorld(ros::NodeHandle& nh, const std::string& correction_name, const std::string& name, const std::shared_ptr<CommonHandlers_t>& ch,
+      26             :                 const std::shared_ptr<PrivateHandlers_t>& ph);
+      27             : 
+      28             :   std::tuple<bool, bool> process(measurement_t& measurement) override;
+      29             :   void                   reset();
+      30             : 
+      31             : private:
+      32             :   bool is_initialized_ = false;
+      33             : 
+      34             :   std::string gnss_topic_;
+      35             : 
+      36             :   std::mutex       mtx_gnss_;
+      37             :   std::atomic_bool got_gnss_                  = false;
+      38             :   std::atomic_bool is_gnss_offset_calculated_ = false;
+      39             :   double           gnss_x_;
+      40             :   double           gnss_y_;
+      41             : 
+      42             :   mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix> sh_gnss_;
+      43             :   void                                              callbackGnss(const sensor_msgs::NavSatFix::ConstPtr msg);
+      44             : };
+      45             : 
+      46             : /*//{ constructor */
+      47             : template <int n_measurements>
+      48          93 : ProcTfToWorld<n_measurements>::ProcTfToWorld(ros::NodeHandle& nh, const std::string& correction_name, const std::string& name,
+      49             :                                              const std::shared_ptr<CommonHandlers_t>& ch, const std::shared_ptr<PrivateHandlers_t>& ph)
+      50          93 :     : Processor<n_measurements>(nh, correction_name, name, ch, ph) {
+      51             : 
+      52          93 :   ph->param_loader->setPrefix(ch->package_name + "/" + Support::toSnakeCase(ch->nodelet_name) + "/" + Processor<n_measurements>::getNamespacedName() + "/");
+      53             : 
+      54          93 :   ph->param_loader->loadParam("gnss_topic", gnss_topic_);
+      55             : 
+      56          93 :   gnss_topic_ = "/" + ch->uav_name + "/" + gnss_topic_;
+      57             : 
+      58          93 :   if (!ph->param_loader->loadedSuccessfully()) {
+      59           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", Processor<n_measurements>::getPrintName().c_str());
+      60           0 :     ros::shutdown();
+      61             :   }
+      62             : 
+      63             :   // | -------------- initialize subscribe handlers ------------- |
+      64          93 :   mrs_lib::SubscribeHandlerOptions shopts;
+      65          93 :   shopts.nh                 = nh;
+      66          93 :   shopts.node_name          = Processor<n_measurements>::getPrintName();
+      67          93 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+      68          93 :   shopts.threadsafe         = true;
+      69          93 :   shopts.autostart          = true;
+      70          93 :   shopts.queue_size         = 10;
+      71          93 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+      72             : 
+      73          93 :   sh_gnss_ = mrs_lib::SubscribeHandler<sensor_msgs::NavSatFix>(shopts, gnss_topic_, &ProcTfToWorld::callbackGnss, this);
+      74             : 
+      75          93 :   is_initialized_ = true;
+      76          93 : }
+      77             : /*//}*/
+      78             : 
+      79             : /*//{ callbackGnss() */
+      80             : template <int n_measurements>
+      81       88831 : void ProcTfToWorld<n_measurements>::callbackGnss(const sensor_msgs::NavSatFix::ConstPtr msg) {
+      82             : 
+      83       88831 :   if (!is_initialized_) {
+      84       88651 :     return;
+      85             :   }
+      86             : 
+      87       88830 :   if (got_gnss_) {
+      88       88650 :     return;
+      89             :   }
+      90             : 
+      91          91 :   if (!std::isfinite(msg->latitude)) {
+      92           0 :     ROS_ERROR_THROTTLE(1.0, "[%s] NaN detected in GNSS variable \"msg->latitude\"!!!", Processor<n_measurements>::getPrintName().c_str());
+      93           0 :     return;
+      94             :   }
+      95             : 
+      96          93 :   if (!std::isfinite(msg->longitude)) {
+      97           0 :     ROS_ERROR_THROTTLE(1.0, "[%s] NaN detected in GNSS variable \"msg->longitude\"!!!", Processor<n_measurements>::getPrintName().c_str());
+      98           0 :     return;
+      99             :   }
+     100             : 
+     101         186 :   std::scoped_lock lock(mtx_gnss_);
+     102          93 :   mrs_lib::UTM(msg->latitude, msg->longitude, &gnss_x_, &gnss_y_);
+     103          93 :   ROS_INFO("[%s]: First GNSS obtained: %.2f %.2f", Processor<n_measurements>::getPrintName().c_str(), gnss_x_, gnss_y_);
+     104          93 :   got_gnss_ = true;
+     105             : }
+     106             : /*//}*/
+     107             : 
+     108             : /*//{ process() */
+     109             : template <int n_measurements>
+     110      184918 : std::tuple<bool, bool> ProcTfToWorld<n_measurements>::process(measurement_t& measurement) {
+     111             : 
+     112      184918 :   if (!Processor<n_measurements>::enabled_) {
+     113           0 :     return {true, true};
+     114             :   }
+     115             : 
+     116      369769 :   std::scoped_lock lock(mtx_gnss_);
+     117             : 
+     118      184906 :   if (!got_gnss_) {
+     119        7263 :     ROS_WARN_THROTTLE(1.0, "[%s]: Missing GNSS data on topic: %s", Processor<n_measurements>::getPrintName().c_str(), gnss_topic_.c_str());
+     120        7263 :     return {false, false};
+     121             :   }
+     122             : 
+     123      177617 :   if (!is_gnss_offset_calculated_) {
+     124             : 
+     125          93 :     ROS_INFO_THROTTLE(1.0, "[%s]: debug: gnss_x_: %.2f, measurement(0): %.2f, world_origin.x: %.2f", Processor<n_measurements>::getPrintName().c_str(), gnss_x_,
+     126             :                       measurement(0), Processor<n_measurements>::ch_->world_origin.x);
+     127          93 :     ROS_INFO_THROTTLE(1.0, "[%s]: debug: gnss_y_: %.2f, measurement(1): %.2f, world_origin.y: %.2f", Processor<n_measurements>::getPrintName().c_str(), gnss_y_,
+     128             :                       measurement(1), Processor<n_measurements>::ch_->world_origin.y);
+     129          93 :     gnss_x_                    = (gnss_x_ - measurement(0)) - Processor<n_measurements>::ch_->world_origin.x;
+     130          93 :     gnss_y_                    = (gnss_y_ - measurement(1)) - Processor<n_measurements>::ch_->world_origin.y;
+     131          93 :     is_gnss_offset_calculated_ = true;
+     132          93 :     ROS_INFO_THROTTLE(1.0, "[%s]: GNSS world offset calculated as: [%.2f %.2f]", Processor<n_measurements>::getPrintName().c_str(), gnss_x_, gnss_y_);
+     133             :   }
+     134             : 
+     135      177633 :   measurement(0) += gnss_x_;
+     136      177555 :   measurement(1) += gnss_y_;
+     137             : 
+     138      177640 :   if (measurement(0) > 10000 || measurement(0) < -10000 || measurement(1) > 10000 || measurement(1) < -10000) {
+     139           0 :     ROS_WARN_THROTTLE(
+     140             :         1.0,
+     141             :         "[%s]: debug: Not expected to fly further than 10 km. This is most likely a bug. measurement(0): %.2f measurement(1): %.2f gnss_x_: %.2f gnss_y_: %.2f",
+     142             :         Processor<n_measurements>::getPrintName().c_str(), measurement(0), measurement(1), gnss_x_, gnss_y_);
+     143             :   }
+     144      177691 :   return {true, true};
+     145             : }
+     146             : /*//}*/
+     147             : 
+     148             : /*//{ reset() */
+     149             : template <int n_measurements>
+     150           0 : void ProcTfToWorld<n_measurements>::reset() {
+     151           0 :   got_gnss_                  = false;
+     152           0 :   is_gnss_offset_calculated_ = false;
+     153           0 : }
+     154             : /*//}*/
+     155             : }  // namespace mrs_uav_state_estimators
+     156             : 
+     157             : #endif  // PROCESSORS_PROC_TF_TO_WORLD_H
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h.gcov.overview.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h.gcov.overview.html new file mode 100644 index 0000000000..c44e2f6583 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h.gcov.overview.html @@ -0,0 +1,60 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ Overview +
+ + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h.gcov.png b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/proc_tf_to_world.h.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..a324c1257ee9037e3fabf82919209845d495e4b0 GIT binary patch literal 777 zcmV+k1NQuhP)YeKPLfI%d(hdQDZ?M6>}3P z7RRBNhCIV~)54mKVqgP#1>TJ!GMcesrS7XLRhvTlJ-0ACX3Ubb8gmW3ep|KBYVL9} zHd-<7`;=p5I<1j5^pje73r1fJMaKwP|cqki8fe9uJfx;%Wbp_7N?c1i- zs@QF_{E-s~SCSwed~Wz?gRvB~){V2)?OgR8#$YEf;2a}>+b`Au2g(_3%}QGU_x&fx z;r8R_b#C!I{JIMSxOYYEuRb6FCn{HKGMaFJ=!Hy?0as+k1)&-66k6a>E;AEZ;L4wF zan%6)Zj})NV?%eTdI$umGoG|`1`<#x$Y`sjMpN*{;DWZp2<+Wtz^zY|f%0-py;1ik zkBLUwjN#i&Dm@6@IIgQKKx!36Tpq`0W6_nq&_R}6o3E|AfdR&8jjrC4u{Ct0GH1mn@RJ^unROSIn z8T0jue2Ov0(yxHhqK~ZpCV|9C+el>18JoPqcO>uJM{*ssdR4s?ih)8QW#%Gdft*0R z<-$p4uEB(~JE*Wz;QNNbE~)Wo;y-Qt-3Y9U&PVx|$~D((KRkav&y1%T`8*R}J(;}9 z#;$y-)Ai$Mtwhw$s5(I5?6E7^s^ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/processor.h - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors - processor.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:71070.0 %
Date:2024-04-17 23:52:03Functions:6875.0 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::Processor<1>::toggle(bool)0
mrs_uav_state_estimators::Processor<2>::toggle(bool)0
mrs_uav_state_estimators::Processor<2>::Processor(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)97
mrs_uav_state_estimators::Processor<2>::getNamespacedName[abi:cxx11]() const100
mrs_uav_state_estimators::Processor<1>::getPrintName[abi:cxx11]() const163
mrs_uav_state_estimators::Processor<1>::Processor(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)230
mrs_uav_state_estimators::Processor<1>::getNamespacedName[abi:cxx11]() const306
mrs_uav_state_estimators::Processor<2>::getPrintName[abi:cxx11]() const489
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LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors - processor.h (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:71070.0 %
Date:2024-04-17 23:52:03Functions:6875.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::Processor<1>::toggle(bool)0
mrs_uav_state_estimators::Processor<1>::Processor(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)230
mrs_uav_state_estimators::Processor<2>::toggle(bool)0
mrs_uav_state_estimators::Processor<2>::Processor(ros::NodeHandle&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)97
mrs_uav_state_estimators::Processor<1>::getPrintName[abi:cxx11]() const163
mrs_uav_state_estimators::Processor<1>::getNamespacedName[abi:cxx11]() const306
mrs_uav_state_estimators::Processor<2>::getPrintName[abi:cxx11]() const489
mrs_uav_state_estimators::Processor<2>::getNamespacedName[abi:cxx11]() const100
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/processor.h.gcov.frameset.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/processor.h.gcov.frameset.html new file mode 100644 index 0000000000..7ea1b3521d --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/processor.h.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/processor.h + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/processor.h.gcov.html b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/processor.h.gcov.html new file mode 100644 index 0000000000..be05ca6319 --- /dev/null +++ b/mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/processor.h.gcov.html @@ -0,0 +1,156 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/include/mrs_uav_state_estimators/processors/processor.h + + + + + + + + + + + + + + +
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Test:MRS UAV System - Test coverage reportLines:71070.0 %
Date:2024-04-17 23:52:03Functions:6875.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #pragma once
+       2             : #ifndef PROCESSORS_PROCESSOR_H
+       3             : #define PROCESSORS_PROCESSOR_H
+       4             : 
+       5             : namespace mrs_uav_state_estimators
+       6             : {
+       7             : 
+       8             : using namespace mrs_uav_managers::estimation_manager;
+       9             : 
+      10             : template <int n_measurements>
+      11             : class Processor {
+      12             : 
+      13             : public:
+      14             :   typedef Eigen::Matrix<double, n_measurements, 1> measurement_t;
+      15             : 
+      16             : public:
+      17             :   std::string getName() const;
+      18             :   std::string getNamespacedName() const;
+      19             :   std::string getPrintName() const;
+      20             : 
+      21             :   void toggle(bool enable);
+      22             : 
+      23             :   virtual std::tuple<bool, bool> process(measurement_t& measurement) = 0;
+      24             :   virtual void                   reset()                             = 0;
+      25             : 
+      26             : protected:
+      27         327 :   Processor([[maybe_unused]] ros::NodeHandle& nh, const std::string& correction_name, const std::string& name, const std::shared_ptr<CommonHandlers_t>& ch,
+      28             :             const std::shared_ptr<PrivateHandlers_t>& ph)
+      29         327 :       : correction_name_(correction_name), name_(name), ch_(ch), ph_(ph) {
+      30         327 :   }  // protected constructor to prevent instantiation
+      31             : 
+      32             :   const std::string correction_name_;
+      33             :   const std::string name_;
+      34             : 
+      35             :   const std::shared_ptr<CommonHandlers_t>  ch_;
+      36             :   const std::shared_ptr<PrivateHandlers_t> ph_;
+      37             : 
+      38             :   bool enabled_       = true;
+      39             :   bool start_enabled_ = true;
+      40             : };
+      41             : 
+      42             : /*//{ getName() */
+      43             : template <int n_measurements>
+      44             : std::string Processor<n_measurements>::getName() const {
+      45             :   return name_;
+      46             : }
+      47             : /*//}*/
+      48             : 
+      49             : /*//{ getNamespacedName() */
+      50             : template <int n_measurements>
+      51         406 : std::string Processor<n_measurements>::getNamespacedName() const {
+      52         406 :   return correction_name_ + "/" + name_;
+      53             : }
+      54             : /*//}*/
+      55             : 
+      56             : /*//{ getPrintName() */
+      57             : template <int n_measurements>
+      58         652 : std::string Processor<n_measurements>::getPrintName() const {
+      59         652 :   return ch_->nodelet_name + "/" + correction_name_ + "/" + name_;
+      60             : }
+      61             : /*//}*/
+      62             : 
+      63             : /*//{ toggle() */
+      64             : template <int n_measurements>
+      65           0 : void Processor<n_measurements>::toggle(bool enable) {
+      66           0 :   enabled_ = enable;
+      67           0 : }
+      68             : /*//}*/
+      69             : 
+      70             : }  // namespace mrs_uav_state_estimators
+      71             : 
+      72             : #endif  // PROCESSORS_PROCESSOR_H
+
+
+
+ + + + +
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Test:MRS UAV System - Test coverage reportLines:7510472.1 %
Date:2024-04-17 23:52:03Functions:61060.0 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::garmin_agl::GarminAgl::isConverged()0
mrs_uav_state_estimators::garmin_agl::GarminAgl::pause()0
mrs_uav_state_estimators::garmin_agl::GarminAgl::reset()0
mrs_uav_state_estimators::garmin_agl::GarminAgl::getHeightCovariance() const0
(anonymous namespace)::ProxyExec0::ProxyExec0()70
mrs_uav_state_estimators::garmin_agl::GarminAgl::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)70
mrs_uav_state_estimators::garmin_agl::GarminAgl::start()70
mrs_uav_state_estimators::garmin_agl::GarminAgl::timerCheckHealth(ros::TimerEvent const&)1367
mrs_uav_state_estimators::garmin_agl::GarminAgl::timerUpdate(ros::TimerEvent const&)132245
mrs_uav_state_estimators::garmin_agl::GarminAgl::getUavAglHeight() const138644
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()70
mrs_uav_state_estimators::garmin_agl::GarminAgl::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)70
mrs_uav_state_estimators::garmin_agl::GarminAgl::isConverged()0
mrs_uav_state_estimators::garmin_agl::GarminAgl::timerUpdate(ros::TimerEvent const&)132245
mrs_uav_state_estimators::garmin_agl::GarminAgl::timerCheckHealth(ros::TimerEvent const&)1367
mrs_uav_state_estimators::garmin_agl::GarminAgl::pause()0
mrs_uav_state_estimators::garmin_agl::GarminAgl::reset()0
mrs_uav_state_estimators::garmin_agl::GarminAgl::start()70
mrs_uav_state_estimators::garmin_agl::GarminAgl::getUavAglHeight() const138644
mrs_uav_state_estimators::garmin_agl::GarminAgl::getHeightCovariance() const0
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+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <mrs_uav_state_estimators/estimators/agl/garmin_agl.h>
+       4             : 
+       5             : //}
+       6             : 
+       7             : namespace mrs_uav_state_estimators
+       8             : {
+       9             : 
+      10             : namespace garmin_agl
+      11             : {
+      12             : 
+      13             : /* initialize() //{*/
+      14          70 : void GarminAgl::initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) {
+      15             : 
+      16          70 :   ch_ = ch;
+      17          70 :   ph_ = ph;
+      18          70 :   nh_ = nh;
+      19             : 
+      20          70 :   ns_frame_id_ = ch_->uav_name + "/" + frame_id_;
+      21             : 
+      22             :   // | --------------------- load parameters -------------------- |
+      23             : 
+      24          70 :   ph->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getName() + "/");
+      25             : 
+      26          70 :   if (is_core_plugin_) {
+      27             : 
+      28          70 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/private/" + getName() + "/" + getName() + ".yaml");
+      29          70 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/public/" + getName() + "/" + getName() + ".yaml");
+      30             :   }
+      31             : 
+      32          70 :   if (!ph->param_loader->loadedSuccessfully()) {
+      33           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getPrintName().c_str());
+      34           0 :     ros::shutdown();
+      35             :   }
+      36             : 
+      37             :   // | ------------------ timers initialization ----------------- |
+      38          70 :   _update_timer_rate_       = 100;                                                                                          // TODO: parametrize
+      39          70 :   timer_update_             = nh.createTimer(ros::Rate(_update_timer_rate_), &GarminAgl::timerUpdate, this, false, false);  // not running after init
+      40          70 :   _check_health_timer_rate_ = 1;                                                                                            // TODO: parametrize
+      41          70 :   timer_check_health_       = nh.createTimer(ros::Rate(_check_health_timer_rate_), &GarminAgl::timerCheckHealth, this);
+      42             : 
+      43             :   // | --------------- subscribers initialization --------------- |
+      44         140 :   mrs_lib::SubscribeHandlerOptions shopts;
+      45          70 :   shopts.nh                 = nh;
+      46          70 :   shopts.node_name          = getPrintName();
+      47          70 :   shopts.no_message_timeout = ros::Duration(0.5);
+      48          70 :   shopts.threadsafe         = true;
+      49          70 :   shopts.autostart          = true;
+      50          70 :   shopts.queue_size         = 10;
+      51          70 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+      52             : 
+      53             :   // | ---------------- publishers initialization --------------- |
+      54          70 :   ph_agl_height_ = mrs_lib::PublisherHandler<mrs_msgs::Float64Stamped>(nh, Support::toSnakeCase(getName()) + "/agl_height", 10);
+      55          70 :   if (ch_->debug_topics.covariance) {
+      56           0 :     ph_agl_height_cov_ = mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped>(nh, Support::toSnakeCase(getName()) + "/agl_height_cov", 10);
+      57             :   }
+      58          70 :   if (ch_->debug_topics.diag) {
+      59           0 :     ph_diagnostics_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics>(nh, Support::toSnakeCase(getName()) + "/diagnostics", 10);
+      60             :   }
+      61             : 
+      62             :   // | ---------------- estimators initialization --------------- |
+      63             : 
+      64          70 :   est_agl_garmin_ = std::make_unique<AltGeneric>(est_agl_name_, frame_id_, getName(), is_core_plugin_);
+      65          70 :   est_agl_garmin_->initialize(nh, ch_, ph_);
+      66             : 
+      67          70 :   max_flight_z_ = est_agl_garmin_->getMaxFlightZ();
+      68             : 
+      69             :   // | ------------------ initialize published messages ------------------ |
+      70          70 :   agl_height_init_.header.frame_id     = ns_frame_id_;
+      71          70 :   agl_height_cov_init_.header.frame_id = ns_frame_id_;
+      72             : 
+      73             :   // | ------------------ finish initialization ----------------- |
+      74             : 
+      75          70 :   if (changeState(INITIALIZED_STATE)) {
+      76          70 :     ROS_INFO("[%s]: Estimator initialized", getPrintName().c_str());
+      77             :   } else {
+      78           0 :     ROS_INFO("[%s]: Estimator could not be initialized", getPrintName().c_str());
+      79             :   }
+      80          70 : }
+      81             : /*//}*/
+      82             : 
+      83             : /*//{ start() */
+      84          70 : bool GarminAgl::start(void) {
+      85             : 
+      86             : 
+      87          70 :   if (isInState(READY_STATE)) {
+      88             : 
+      89             :     bool est_agl_garmin_start_successful;
+      90             : 
+      91          70 :     if (est_agl_garmin_->isStarted() || est_agl_garmin_->isRunning()) {
+      92           0 :       est_agl_garmin_start_successful = true;
+      93             :     } else {
+      94          70 :       est_agl_garmin_start_successful = est_agl_garmin_->start();
+      95             :     }
+      96             : 
+      97          70 :     if (est_agl_garmin_start_successful) {
+      98          70 :       timer_update_.start();
+      99          70 :       changeState(STARTED_STATE);
+     100          70 :       return true;
+     101             :     }
+     102             : 
+     103             :   } else {
+     104           0 :     ROS_WARN("[%s]: Estimator must be in READY_STATE to start it", getPrintName().c_str());
+     105           0 :     ros::Duration(1.0).sleep();
+     106             :   }
+     107           0 :   return false;
+     108             : 
+     109             :   ROS_ERROR("[%s]: Failed to start", getPrintName().c_str());
+     110             :   return false;
+     111             : }
+     112             : /*//}*/
+     113             : 
+     114             : /*//{ pause() */
+     115           0 : bool GarminAgl::pause(void) {
+     116             : 
+     117           0 :   if (isInState(RUNNING_STATE)) {
+     118           0 :     est_agl_garmin_->pause();
+     119           0 :     changeState(STOPPED_STATE);
+     120           0 :     return true;
+     121             : 
+     122             :   } else {
+     123           0 :     return false;
+     124             :   }
+     125             : }
+     126             : /*//}*/
+     127             : 
+     128             : /*//{ reset() */
+     129           0 : bool GarminAgl::reset(void) {
+     130             : 
+     131           0 :   if (!isInitialized()) {
+     132           0 :     ROS_ERROR("[%s]: Cannot reset uninitialized estimator", getPrintName().c_str());
+     133           0 :     return false;
+     134             :   }
+     135             : 
+     136           0 :   est_agl_garmin_->pause();
+     137           0 :   changeState(STOPPED_STATE);
+     138             : 
+     139           0 :   ROS_INFO("[%s]: Estimator reset", getPrintName().c_str());
+     140             : 
+     141           0 :   return true;
+     142             : }
+     143             : /*//}*/
+     144             : 
+     145             : /* timerUpdate() //{*/
+     146      132245 : void GarminAgl::timerUpdate([[maybe_unused]] const ros::TimerEvent &event) {
+     147             : 
+     148      132245 :   if (!isInitialized()) {
+     149           0 :     return;
+     150             :   }
+     151             : 
+     152      132245 :   const ros::Time time_now = ros::Time::now();
+     153             : 
+     154      264490 :   mrs_msgs::Float64Stamped agl_height = agl_height_init_;
+     155      132245 :   agl_height.header.stamp             = time_now;
+     156      132245 :   agl_height.value                    = est_agl_garmin_->getState(POSITION);
+     157             : 
+     158      264490 :   mrs_msgs::Float64ArrayStamped agl_height_cov;
+     159      132245 :   agl_height_cov.header.stamp = time_now;
+     160             : 
+     161      132245 :   const int n_states = 2;  // TODO this should be defined somewhere else
+     162      132245 :   agl_height_cov.values.resize(n_states * n_states);
+     163      132245 :   agl_height_cov.values.at(n_states * POSITION + POSITION) = est_agl_garmin_->getCovariance(POSITION);
+     164      132245 :   agl_height_cov.values.at(n_states * VELOCITY + VELOCITY) = est_agl_garmin_->getCovariance(VELOCITY);
+     165             : 
+     166      132245 :   mrs_lib::set_mutexed(mtx_agl_height_, agl_height, agl_height_);
+     167      132245 :   mrs_lib::set_mutexed(mtx_agl_height_cov_, agl_height_cov, agl_height_cov_);
+     168             : 
+     169      132245 :   publishAglHeight();
+     170      132245 :   publishCovariance();
+     171      132245 :   publishDiagnostics();
+     172             : }
+     173             : /*//}*/
+     174             : 
+     175             : /*//{ timerCheckHealth() */
+     176        1367 : void GarminAgl::timerCheckHealth([[maybe_unused]] const ros::TimerEvent &event) {
+     177             : 
+     178        1367 :   if (!isInitialized()) {
+     179           0 :     return;
+     180             :   }
+     181             : 
+     182        1367 :   if (isInState(INITIALIZED_STATE)) {
+     183             : 
+     184          78 :     if (est_agl_garmin_->isReady()) {
+     185          70 :       changeState(READY_STATE);
+     186          70 :       ROS_INFO("[%s]: Estimator is ready to start", getPrintName().c_str());
+     187             :     } else {
+     188           8 :       ROS_INFO("[%s]: %s subestimators to be ready", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     189           8 :       return;
+     190             :     }
+     191             :   }
+     192             : 
+     193             : 
+     194        1359 :   if (isInState(STARTED_STATE)) {
+     195          73 :     ROS_INFO("[%s]: %s for convergence of LKF", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     196             : 
+     197          73 :     if (est_agl_garmin_->isRunning()) {
+     198          70 :       ROS_INFO("[%s]: Subestimators converged", getPrintName().c_str());
+     199          70 :       changeState(RUNNING_STATE);
+     200             :     } else {
+     201           3 :       return;
+     202             :     }
+     203             :   }
+     204             : }
+     205             : /*//}*/
+     206             : 
+     207             : /*//{ isConverged() */
+     208           0 : bool GarminAgl::isConverged() {
+     209             : 
+     210             :   // TODO: check convergence by rate of change of determinant
+     211             :   // most likely not used in top-level estimator
+     212             : 
+     213           0 :   return true;
+     214             : }
+     215             : /*//}*/
+     216             : 
+     217             : /*//{ getUavAglHeight() */
+     218      138644 : mrs_msgs::Float64Stamped GarminAgl::getUavAglHeight() const {
+     219      138644 :   return mrs_lib::get_mutexed(mtx_agl_height_, agl_height_);
+     220             : }
+     221             : /*//}*/
+     222             : 
+     223             : /*//{ getHeightCovariance() */
+     224           0 : std::vector<double> GarminAgl::getHeightCovariance() const {
+     225           0 :   return mrs_lib::get_mutexed(mtx_agl_height_cov_, agl_height_cov_.values);
+     226             : }
+     227             : /*//}*/
+     228             : 
+     229             : }  // namespace garmin_agl
+     230             : 
+     231             : }  // namespace mrs_uav_state_estimators
+     232             : 
+     233             : #include <pluginlib/class_list_macros.h>
+     234          70 : PLUGINLIB_EXPORT_CLASS(mrs_uav_state_estimators::garmin_agl::GarminAgl, mrs_uav_managers::AglEstimator)
+
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Test:MRS UAV System - Test coverage reportLines:21339553.9 %
Date:2024-04-17 23:52:03Functions:223366.7 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::AltGeneric::timerCheckHealth(ros::TimerEvent const&)0
mrs_uav_state_estimators::AltGeneric::setCovarianceMatrix(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&)0
mrs_uav_state_estimators::AltGeneric::generateRepredictorModels(double)0
mrs_uav_state_estimators::AltGeneric::pause()0
mrs_uav_state_estimators::AltGeneric::reset()0
mrs_uav_state_estimators::AltGeneric::setState(double const&, int const&, int const&)0
mrs_uav_state_estimators::AltGeneric::setStates(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)0
mrs_uav_state_estimators::AltGeneric::getCovariance(int const&, int const&) const0
mrs_uav_state_estimators::AltGeneric::getInnovation(int const&, int const&) const0
mrs_uav_state_estimators::AltGeneric::generateRepredictorModels(double)::{lambda(double)#2}::operator()(double) const0
mrs_uav_state_estimators::AltGeneric::generateRepredictorModels(double)::{lambda(double)#1}::operator()(double) const0
mrs_uav_state_estimators::AltGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)167
mrs_uav_state_estimators::AltGeneric::isConverged()167
mrs_uav_state_estimators::AltGeneric::callbackReconfigure(mrs_uav_state_estimators::AltitudeEstimatorConfig&, unsigned int)167
mrs_uav_state_estimators::AltGeneric::setState(double const&, int const&)254
mrs_uav_state_estimators::AltGeneric::setInputCoeff(double const&)325
mrs_uav_state_estimators::AltGeneric::getNamespacedName[abi:cxx11]() const1080
mrs_uav_state_estimators::AltGeneric::getPrintName[abi:cxx11]() const1300
mrs_uav_state_estimators::AltGeneric::start()4191
mrs_uav_state_estimators::AltGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(int, int)#1}::operator()(int, int) const142022
mrs_uav_state_estimators::AltGeneric::getState(int const&, int const&) const142024
mrs_uav_state_estimators::AltGeneric::getInnovation(int const&) const182630
mrs_uav_state_estimators::AltGeneric::getCovarianceMatrix() const292961
mrs_uav_state_estimators::AltGeneric::getStates() const293275
mrs_uav_state_estimators::AltGeneric::setDt(double const&)293311
mrs_uav_state_estimators::AltGeneric::generateA()293771
mrs_uav_state_estimators::AltGeneric::generateB()293771
mrs_uav_state_estimators::AltGeneric::timerUpdate(ros::TimerEvent const&)335172
mrs_uav_state_estimators::AltGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t)#2}::operator()(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t) const446273
mrs_uav_state_estimators::AltGeneric::doCorrection(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, double, mrs_uav_managers::estimation_manager::StateId_t const&, ros::Time const&)446327
mrs_uav_state_estimators::AltGeneric::doCorrection(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t const&)446339
mrs_uav_state_estimators::AltGeneric::getCovariance(int const&) const629791
mrs_uav_state_estimators::AltGeneric::getState(int const&) const1079757
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Current view:top level - mrs_uav_state_estimators/src/estimators/altitude - alt_generic.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:21339553.9 %
Date:2024-04-17 23:52:03Functions:223366.7 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::AltGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)167
mrs_uav_state_estimators::AltGeneric::isConverged()167
mrs_uav_state_estimators::AltGeneric::timerUpdate(ros::TimerEvent const&)335172
mrs_uav_state_estimators::AltGeneric::doCorrection(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, double, mrs_uav_managers::estimation_manager::StateId_t const&, ros::Time const&)446327
mrs_uav_state_estimators::AltGeneric::doCorrection(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t const&)446339
mrs_uav_state_estimators::AltGeneric::setInputCoeff(double const&)325
mrs_uav_state_estimators::AltGeneric::timerCheckHealth(ros::TimerEvent const&)0
mrs_uav_state_estimators::AltGeneric::callbackReconfigure(mrs_uav_state_estimators::AltitudeEstimatorConfig&, unsigned int)167
mrs_uav_state_estimators::AltGeneric::setCovarianceMatrix(Eigen::Matrix<double, 3, 3, 0, 3, 3> const&)0
mrs_uav_state_estimators::AltGeneric::generateRepredictorModels(double)0
mrs_uav_state_estimators::AltGeneric::pause()0
mrs_uav_state_estimators::AltGeneric::reset()0
mrs_uav_state_estimators::AltGeneric::setDt(double const&)293311
mrs_uav_state_estimators::AltGeneric::start()4191
mrs_uav_state_estimators::AltGeneric::setState(double const&, int const&)254
mrs_uav_state_estimators::AltGeneric::setState(double const&, int const&, int const&)0
mrs_uav_state_estimators::AltGeneric::generateA()293771
mrs_uav_state_estimators::AltGeneric::generateB()293771
mrs_uav_state_estimators::AltGeneric::setStates(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)0
mrs_uav_state_estimators::AltGeneric::getPrintName[abi:cxx11]() const1300
mrs_uav_state_estimators::AltGeneric::getCovariance(int const&) const629791
mrs_uav_state_estimators::AltGeneric::getCovariance(int const&, int const&) const0
mrs_uav_state_estimators::AltGeneric::getInnovation(int const&) const182630
mrs_uav_state_estimators::AltGeneric::getInnovation(int const&, int const&) const0
mrs_uav_state_estimators::AltGeneric::getNamespacedName[abi:cxx11]() const1080
mrs_uav_state_estimators::AltGeneric::getCovarianceMatrix() const292961
mrs_uav_state_estimators::AltGeneric::getState(int const&) const1079757
mrs_uav_state_estimators::AltGeneric::getState(int const&, int const&) const142024
mrs_uav_state_estimators::AltGeneric::getStates() const293275
mrs_uav_state_estimators::AltGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t)#2}::operator()(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t) const446273
mrs_uav_state_estimators::AltGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(int, int)#1}::operator()(int, int) const142022
mrs_uav_state_estimators::AltGeneric::generateRepredictorModels(double)::{lambda(double)#2}::operator()(double) const0
mrs_uav_state_estimators::AltGeneric::generateRepredictorModels(double)::{lambda(double)#1}::operator()(double) const0
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LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/altitude - alt_generic.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:21339553.9 %
Date:2024-04-17 23:52:03Functions:223366.7 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #define VERSION "0.0.6.0"
+       2             : 
+       3             : /* includes //{ */
+       4             : 
+       5             : #include <mrs_uav_state_estimators/estimators/altitude/alt_generic.h>
+       6             : 
+       7             : //}
+       8             : 
+       9             : namespace mrs_uav_state_estimators
+      10             : 
+      11             : {
+      12             : 
+      13             : /* initialize() //{*/
+      14         167 : void AltGeneric::initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) {
+      15             : 
+      16         167 :   ch_ = ch;
+      17         167 :   ph_ = ph;
+      18             : 
+      19         167 :   ns_frame_id_ = ch_->uav_name + "/" + frame_id_;
+      20             : 
+      21             :   // clang-format off
+      22         167 :   dt_ = 0.01;
+      23         167 :   input_coeff_ = 10;
+      24         167 :   default_input_coeff_ = 10;
+      25             : 
+      26         167 :   generateA();
+      27         167 :   generateB();
+      28             : 
+      29         167 :   H_ <<
+      30         167 :     1, 0, 0;
+      31             : 
+      32         167 :   innovation_ << 
+      33             :     0;
+      34             : 
+      35             :   // clang-format on
+      36             : 
+      37             :   // | --------------- initialize parameter loader -------------- |
+      38             : 
+      39         167 :   if (is_core_plugin_) {
+      40             : 
+      41         167 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/private/" + parent_state_est_name_ + "/" + getName() + ".yaml");
+      42         167 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/public/" + parent_state_est_name_ + "/" + getName() + ".yaml");
+      43             :   }
+      44             : 
+      45         167 :   ph->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getNamespacedName() + "/");
+      46             : 
+      47             :   // | --------------------- load parameters -------------------- |
+      48             : 
+      49         167 :   ph->param_loader->loadParam("max_flight_z", max_flight_z_);
+      50         167 :   ph->param_loader->loadParam("innovation/limit", pos_innovation_limit_);
+      51         167 :   ph->param_loader->loadParam("innovation/action", exc_innovation_action_name_);
+      52         167 :   exc_innovation_action_ = map_exc_inno_action.at(exc_innovation_action_name_);
+      53         167 :   ph->param_loader->loadParam("repredictor/enabled", is_repredictor_enabled_);
+      54         167 :   if (is_repredictor_enabled_) {
+      55           0 :     ph->param_loader->loadParam("repredictor/buffer_size", rep_buffer_size_);
+      56             :   }
+      57             : 
+      58             :   // | --------------- corrections initialization --------------- |
+      59         167 :   ph->param_loader->loadParam("corrections", correction_names_);
+      60             : 
+      61         412 :   for (auto corr_name : correction_names_) {
+      62         245 :     corrections_.push_back(std::make_shared<Correction<alt_generic::n_measurements>>(
+      63      142512 :         nh, getNamespacedName(), corr_name, ns_frame_id_, EstimatorType_t::ALTITUDE, ch_, ph_, [this](int a, int b) { return this->getState(a, b); },
+      64      446273 :         [this](const Correction<alt_generic::n_measurements>::MeasurementStamped &meas, const double R, const StateId_t state) {
+      65      446273 :           return this->doCorrection(meas, R, state);
+      66             :         }));
+      67             :   }
+      68             : 
+      69         167 :   ph->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getNamespacedName() + "/");
+      70             : 
+      71             :   // | ----------- initialize process noise covariance ---------- |
+      72         167 :   Q_ = Q_t::Zero();
+      73             :   double tmp_noise;
+      74         167 :   ph->param_loader->loadParam("process_noise/pos", tmp_noise);
+      75         167 :   Q_(POSITION, POSITION) = tmp_noise;
+      76         167 :   ph->param_loader->loadParam("process_noise/vel", tmp_noise);
+      77         167 :   Q_(VELOCITY, VELOCITY) = tmp_noise;
+      78         167 :   ph->param_loader->loadParam("process_noise/acc", tmp_noise);
+      79         167 :   Q_(ACCELERATION, ACCELERATION) = tmp_noise;
+      80             : 
+      81             :   // | ------- check if all parameters loaded successfully ------ |
+      82         167 :   if (!ph->param_loader->loadedSuccessfully()) {
+      83           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getPrintName().c_str());
+      84           0 :     ros::shutdown();
+      85             :   }
+      86             : 
+      87             :   // | ------------- initialize dynamic reconfigure ------------- |
+      88             :   drmgr_ =
+      89         167 :       std::make_unique<drmgr_t>(ros::NodeHandle("~/" + getNamespacedName()), true, getPrintName(), boost::bind(&AltGeneric::callbackReconfigure, this, _1, _2));
+      90         167 :   drmgr_->config.pos = Q_(POSITION, POSITION);
+      91         167 :   drmgr_->config.vel = Q_(VELOCITY, VELOCITY);
+      92         167 :   drmgr_->config.acc = Q_(ACCELERATION, ACCELERATION);
+      93         167 :   drmgr_->update_config(drmgr_->config);
+      94             : 
+      95             :   // | --------------- Kalman filter intialization -------------- |
+      96         167 :   const x_t        x0 = x_t::Zero();
+      97         167 :   const P_t        P0 = 1e3 * P_t::Identity();
+      98         167 :   const statecov_t sc0({x0, P0});
+      99         167 :   sc_ = sc0;
+     100             : 
+     101         167 :   lkf_ = std::make_shared<lkf_t>(A_, B_, H_);
+     102         167 :   if (is_repredictor_enabled_) {
+     103             : 
+     104           0 :     generateRepredictorModels(input_coeff_);
+     105             : 
+     106           0 :     const u_t       u0 = u_t::Zero();
+     107           0 :     const ros::Time t0 = ros::Time::now();
+     108           0 :     lkf_rep_           = std::make_unique<mrs_lib::Repredictor<varstep_lkf_t>>(x0, P0, u0, Q_, t0, models_.at(0), rep_buffer_size_);
+     109             : 
+     110           0 :     setDt(1.0 / ch_->desired_uav_state_rate);
+     111             :   }
+     112             : 
+     113             :   // | ------------------ timers initialization ----------------- |
+     114         167 :   timer_update_ = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &AltGeneric::timerUpdate, this);  // not running after init
+     115             :   /* timer_check_health_       = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &AltGeneric::timerCheckHealth, this); */
+     116             : 
+     117             :   // | --------------- subscribers initialization --------------- |
+     118             :   // subscriber to odometry
+     119         334 :   mrs_lib::SubscribeHandlerOptions shopts;
+     120         167 :   shopts.nh                 = nh;
+     121         167 :   shopts.node_name          = getPrintName();
+     122         167 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     123         167 :   shopts.threadsafe         = true;
+     124         167 :   shopts.autostart          = true;
+     125         167 :   shopts.queue_size         = 10;
+     126         167 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     127             : 
+     128         167 :   sh_control_input_ = mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput>(shopts, "control_input_in");
+     129             : 
+     130             :   // | ---------------- publishers initialization --------------- |
+     131         167 :   if (ch_->debug_topics.input) {
+     132         167 :     ph_input_ = mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped>(nh, getNamespacedName() + "/input", 10);
+     133             :   }
+     134         167 :   if (ch_->debug_topics.output) {
+     135         167 :     ph_output_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput>(nh, getNamespacedName() + "/output", 10);
+     136             :   }
+     137         167 :   if (ch_->debug_topics.diag) {
+     138           0 :     ph_diagnostics_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics>(nh, getNamespacedName() + "/diagnostics", 10);
+     139             :   }
+     140             : 
+     141             :   // | ------------------ finish initialization ----------------- |
+     142             : 
+     143         167 :   if (changeState(INITIALIZED_STATE)) {
+     144         167 :     ROS_INFO("[%s]: Estimator initialized, version %s", getPrintName().c_str(), VERSION);
+     145             :   } else {
+     146           0 :     ROS_INFO("[%s]: Estimator could not be initialized", getPrintName().c_str());
+     147             :   }
+     148         167 : }
+     149             : /*//}*/
+     150             : 
+     151             : /*//{ start() */
+     152        4191 : bool AltGeneric::start(void) {
+     153             : 
+     154        4191 :   if (isInState(READY_STATE)) {
+     155             :     /* timer_update_.start(); */
+     156         167 :     changeState(STARTED_STATE);
+     157         167 :     return true;
+     158             : 
+     159             :   } else {
+     160        4024 :     ROS_WARN_THROTTLE(1.0, "[%s]: Estimator must be in READY_STATE to start it", getPrintName().c_str());
+     161        4024 :     return false;
+     162             :   }
+     163             : }
+     164             : /*//}*/
+     165             : 
+     166             : /*//{ pause() */
+     167           0 : bool AltGeneric::pause(void) {
+     168             : 
+     169           0 :   if (isInState(RUNNING_STATE)) {
+     170           0 :     changeState(STOPPED_STATE);
+     171           0 :     return true;
+     172             : 
+     173             :   } else {
+     174           0 :     return false;
+     175             :   }
+     176             : }
+     177             : /*//}*/
+     178             : 
+     179             : /*//{ reset() */
+     180           0 : bool AltGeneric::reset(void) {
+     181             : 
+     182           0 :   if (!isInitialized()) {
+     183           0 :     ROS_ERROR("[%s]: Cannot reset uninitialized estimator", getPrintName().c_str());
+     184           0 :     return false;
+     185             :   }
+     186             : 
+     187           0 :   changeState(STOPPED_STATE);
+     188             : 
+     189             :   // Initialize LKF state and covariance
+     190           0 :   const x_t        x0 = x_t::Zero();
+     191           0 :   const P_t        P0 = 1e6 * P_t::Identity();
+     192           0 :   const statecov_t sc0({x0, P0});
+     193           0 :   sc_ = sc0;
+     194             : 
+     195             :   // Instantiate the LKF itself
+     196           0 :   lkf_ = std::make_shared<lkf_t>(A_, B_, H_);
+     197           0 :   if (is_repredictor_enabled_) {
+     198             : 
+     199           0 :     const u_t       u0 = u_t::Zero();
+     200           0 :     const ros::Time t0 = ros::Time(0);
+     201           0 :     lkf_rep_           = std::make_unique<mrs_lib::Repredictor<varstep_lkf_t>>(x0, P0, u0, Q_, t0, models_.at(0), rep_buffer_size_);
+     202             :   }
+     203             : 
+     204           0 :   ROS_INFO("[%s]: Estimator reset", getPrintName().c_str());
+     205             : 
+     206           0 :   return true;
+     207             : }
+     208             : /*//}*/
+     209             : 
+     210             : /* timerUpdate() //{*/
+     211      335172 : void AltGeneric::timerUpdate(const ros::TimerEvent &event) {
+     212             : 
+     213             : 
+     214      335172 :   if (!isInitialized()) {
+     215       41813 :     return;
+     216             :   }
+     217             : 
+     218      335058 :   switch (getCurrentSmState()) {
+     219             : 
+     220           0 :     case UNINITIALIZED_STATE: {
+     221           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s initialization", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     222           0 :       break;
+     223             :     }
+     224             : 
+     225        5921 :     case READY_STATE: {
+     226        5921 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s estimator start", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     227        5921 :       break;
+     228             :     }
+     229             : 
+     230        8225 :     case INITIALIZED_STATE: {
+     231             :       // initialize the estimator with current corrections
+     232        8479 :       for (auto correction : corrections_) {
+     233        8304 :         auto res = correction->getProcessedCorrection();
+     234        8307 :         if (res) {
+     235         254 :           auto measurement_stamped = res.value();
+     236         254 :           setState(measurement_stamped.value(0), correction->getStateId());
+     237         254 :           ROS_INFO("[%s]: Setting initial state to: %.2f", getPrintName().c_str(), measurement_stamped.value(0));
+     238             :         } else {
+     239        8055 :           ROS_INFO_THROTTLE(1.0, "[%s]: %s correction %s", getPrintName().c_str(), Support::waiting_for_string.c_str(),
+     240             :                             correction->getNamespacedName().c_str());
+     241        8056 :           return;
+     242             :         }
+     243             :       }
+     244         166 :       changeState(READY_STATE);
+     245         167 :       ROS_INFO_THROTTLE(1.0, "[%s]: Ready to start", getPrintName().c_str());
+     246         167 :       break;
+     247             :     }
+     248             : 
+     249         167 :     case STARTED_STATE: {
+     250         167 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s for convergence of LKF", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     251             : 
+     252         167 :       if (isConverged()) {
+     253         167 :         ROS_INFO_THROTTLE(1.0, "[%s]: LKF converged", getPrintName().c_str());
+     254         167 :         changeState(RUNNING_STATE);
+     255             :       }
+     256         167 :       break;
+     257             :     }
+     258             : 
+     259      320867 :     case RUNNING_STATE: {
+     260      798203 :       for (auto correction : corrections_) {
+     261      477137 :         if (!correction->isHealthy()) {
+     262           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     263           0 :           changeState(ERROR_STATE);
+     264             :         }
+     265             :       }
+     266      320897 :       break;
+     267             :     }
+     268             : 
+     269           0 :     case STOPPED_STATE: {
+     270           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is stopped", getPrintName().c_str());
+     271           0 :       break;
+     272             :     }
+     273             : 
+     274           0 :     case ERROR_STATE: {
+     275           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is in ERROR state", getPrintName().c_str());
+     276           0 :       ros::Time t_now = ros::Time::now();
+     277           0 :       if (is_error_state_first_time_) {
+     278           0 :         prev_time_in_error_state_  = t_now;
+     279           0 :         is_error_state_first_time_ = false;
+     280           0 :         error_state_duration_      = ros::Duration(0.0);
+     281             :       }
+     282           0 :       error_state_duration_ += t_now - prev_time_in_error_state_;
+     283             : 
+     284             : 
+     285             :       // check if all corrections are healthy now
+     286           0 :       bool all_corrections_healthy = true;
+     287           0 :       for (auto correction : corrections_) {
+     288           0 :         if (!correction->isHealthy()) {
+     289           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     290           0 :           all_corrections_healthy = false;
+     291             :         }
+     292             :       }
+     293             : 
+     294           0 :       if (all_corrections_healthy && innovation_ok_) {
+     295             :         // initialize the estimator again if corrections become healthy
+     296           0 :         if (error_state_duration_.toSec() > 5.0) {
+     297           0 :           ROS_INFO("[%s]: corrections healthy for %.2f s", getPrintName().c_str(), error_state_duration_.toSec());
+     298           0 :           changeState(INITIALIZED_STATE);
+     299           0 :           is_error_state_first_time_ = true;
+     300           0 :         }
+     301             :       } else {
+     302           0 :         is_error_state_first_time_ = true;
+     303             :       }
+     304             : 
+     305           0 :       prev_time_in_error_state_ = t_now;
+     306             : 
+     307           0 :       break;
+     308             :     }
+     309             :   }
+     310             : 
+     311      327176 :   if (sh_control_input_.newMsg()) {
+     312      150914 :     is_input_ready_ = true;
+     313             :   }
+     314             : 
+     315             :   // check age of input
+     316      327052 :   if (is_input_ready_ && (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec() > 0.1) {
+     317          27 :     ROS_WARN_THROTTLE(1.0, "[%s]: input too old (%.4f), using zero input instead", getPrintName().c_str(),
+     318             :                       (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec());
+     319          27 :     is_input_ready_ = false;
+     320             :   }
+     321             : 
+     322      326653 :   if (!isRunning() && !isStarted()) {
+     323        6080 :     return;
+     324             :   }
+     325             : 
+     326      320623 :   if (first_iter_) {
+     327         167 :     first_iter_ = false;
+     328         167 :     return;
+     329             :   }
+     330             : 
+     331      320456 :   double dt = (event.current_real - event.last_real).toSec();
+     332      320621 :   if (dt <= 0.0) {
+     333       27491 :     return;
+     334             :   }
+     335             : 
+     336      293130 :   if (!is_repredictor_enabled_) {  // repredictor calculates dt on its own
+     337      292397 :     setDt(dt);
+     338             :   }
+     339             : 
+     340             :   // prediction step
+     341      293480 :   u_t       u;
+     342      292528 :   ros::Time input_stamp;
+     343      292799 :   if (is_input_ready_) {
+     344      174151 :     mrs_msgs::EstimatorInputConstPtr msg            = sh_control_input_.getMsg();
+     345      174135 :     const tf2::Vector3               des_acc_global = getAccGlobal(msg, 0);  // we don't care about heading
+     346      174555 :     input_stamp                                     = msg->header.stamp;
+     347      173897 :     if (input_coeff_ != default_input_coeff_){
+     348         130 :       setInputCoeff(default_input_coeff_);
+     349             :     }
+     350      173895 :     u(0) = des_acc_global.getZ();
+     351             :   } else {
+     352      117951 :     ROS_DEBUG_THROTTLE(1.0, "[%s]: not receiving control input, estimation suboptimal, potentially unstable", getPrintName().c_str());
+     353      118583 :     input_stamp = ros::Time::now();
+     354      118708 :     if (input_coeff_ != 0){
+     355         194 :       setInputCoeff(0);
+     356             :     }
+     357      118708 :     u = u_t::Zero();
+     358             :   }
+     359             : 
+     360             :   // go through available corrections and apply them
+     361             :   /* for (auto correction : corrections_) { */
+     362             :   /*   auto res = correction->getProcessedCorrection(); */
+     363             :   /*   if (res) { */
+     364             :   /*     auto measurement_stamped = res.value(); */
+     365             :   /*     doCorrection(measurement_stamped.value, correction->getR(), correction->getStateId(), measurement_stamped.stamp); */
+     366             :   /*   } */
+     367             :   /* } */
+     368             : 
+     369      291662 :   statecov_t sc = mrs_lib::get_mutexed(mutex_sc_, sc_);
+     370      292131 :   Q_t        Q  = mrs_lib::get_mutexed(mtx_Q_, Q_);
+     371             : 
+     372             :   try {
+     373             :     // Apply the prediction step
+     374      584433 :     std::scoped_lock lock(mutex_lkf_);
+     375      292073 :     if (is_repredictor_enabled_) {
+     376           0 :       lkf_rep_->addInputChangeWithNoise(u, Q, input_stamp, models_[0]);
+     377           0 :       sc = lkf_rep_->predictTo(ros::Time::now());
+     378             :     } else {
+     379      292073 :       sc = lkf_->predict(sc, u, Q, dt_);
+     380             :     }
+     381             :   }
+     382           0 :   catch (const std::exception &e) {
+     383             :     // In case of error, alert the user
+     384           0 :     ROS_ERROR("[%s]: LKF prediction failed: %s", getPrintName().c_str(), e.what());
+     385             :   }
+     386             : 
+     387      290244 :   mrs_lib::set_mutexed(mutex_sc_, sc, sc_);
+     388             : 
+     389             :   // publishing
+     390      291616 :   publishInput(u, input_stamp);
+     391      293349 :   publishOutput();
+     392      293374 :   publishDiagnostics();
+     393             : }
+     394             : /*//}*/
+     395             : 
+     396             : /*//{ timerCheckHealth() */
+     397           0 : void AltGeneric::timerCheckHealth([[maybe_unused]] const ros::TimerEvent &event) {
+     398             : 
+     399           0 :   if (!isInitialized()) {
+     400           0 :     return;
+     401             :   }
+     402             : 
+     403           0 :   switch (getCurrentSmState()) {
+     404             : 
+     405           0 :     case UNINITIALIZED_STATE: {
+     406           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s initialization", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     407           0 :       break;
+     408             :     }
+     409             : 
+     410           0 :     case READY_STATE: {
+     411           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s estimator start", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     412           0 :       break;
+     413             :     }
+     414             : 
+     415           0 :     case INITIALIZED_STATE: {
+     416             : 
+     417             :       // initialize the estimator with current corrections
+     418           0 :       for (auto correction : corrections_) {
+     419           0 :         auto res = correction->getProcessedCorrection();
+     420           0 :         if (res) {
+     421           0 :           auto measurement_stamped = res.value();
+     422           0 :           setState(measurement_stamped.value(0), correction->getStateId());
+     423           0 :           ROS_INFO_THROTTLE(1.0, "[%s]: Setting initial state to: %.2f", getPrintName().c_str(), measurement_stamped.value(0));
+     424             :         } else {
+     425           0 :           ROS_INFO_THROTTLE(1.0, "[%s]: %s correction %s", getPrintName().c_str(), Support::waiting_for_string.c_str(),
+     426             :                             correction->getNamespacedName().c_str());
+     427           0 :           return;
+     428             :         }
+     429             :       }
+     430           0 :       changeState(READY_STATE);
+     431           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Ready to start", getPrintName().c_str());
+     432           0 :       break;
+     433             :     }
+     434             : 
+     435           0 :     case STARTED_STATE: {
+     436           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s for convergence of LKF", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     437             : 
+     438           0 :       if (isConverged()) {
+     439           0 :         ROS_INFO_THROTTLE(1.0, "[%s]: LKF converged", getPrintName().c_str());
+     440           0 :         changeState(RUNNING_STATE);
+     441             :       }
+     442           0 :       break;
+     443             :     }
+     444             : 
+     445           0 :     case RUNNING_STATE: {
+     446           0 :       for (auto correction : corrections_) {
+     447           0 :         if (!correction->isHealthy()) {
+     448           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     449           0 :           changeState(ERROR_STATE);
+     450             :         }
+     451             :       }
+     452           0 :       break;
+     453             :     }
+     454             : 
+     455           0 :     case STOPPED_STATE: {
+     456           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is stopped", getPrintName().c_str());
+     457           0 :       break;
+     458             :     }
+     459             : 
+     460           0 :     case ERROR_STATE: {
+     461           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is in ERROR state", getPrintName().c_str());
+     462           0 :       bool all_corrections_healthy = true;
+     463           0 :       for (auto correction : corrections_) {
+     464           0 :         if (!correction->isHealthy()) {
+     465           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     466           0 :           all_corrections_healthy = false;
+     467             :         }
+     468             :       }
+     469             :       // initialize the estimator again if corrections become healthy
+     470           0 :       if (all_corrections_healthy) {
+     471           0 :         changeState(INITIALIZED_STATE);
+     472             :       }
+     473           0 :       break;
+     474             :     }
+     475             :   }
+     476             : 
+     477           0 :   if (sh_control_input_.newMsg()) {
+     478           0 :     is_input_ready_ = true;
+     479             :   }
+     480             : 
+     481             :   // check age of input
+     482           0 :   if (is_input_ready_ && (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec() > 0.1) {
+     483           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: input too old (%.4f), using zero input instead", getPrintName().c_str(),
+     484             :                       (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec());
+     485           0 :     is_input_ready_ = false;
+     486             :   }
+     487             : }
+     488             : /*//}*/
+     489             : 
+     490             : /*//{ doCorrection() */
+     491      446339 : void AltGeneric::doCorrection(const Correction<alt_generic::n_measurements>::MeasurementStamped &meas, const double R, const StateId_t &state_id) {
+     492      446339 :   doCorrection(meas.value, R, state_id, meas.stamp);
+     493      445968 : }
+     494             : /*//}*/
+     495             : 
+     496             : /*//{ doCorrection() */
+     497      446327 : void AltGeneric::doCorrection(const z_t &z, const double R, const StateId_t &H_idx, const ros::Time &meas_stamp) {
+     498             : 
+     499      446327 :   if (!isInitialized()) {
+     500        4238 :     return;
+     501             :   }
+     502             : 
+     503             :   // we do not want to perform corrections until the estimator is initialized
+     504      446216 :   if (!(isInState(SMStates_t::READY_STATE) || isInState(SMStates_t::RUNNING_STATE) || isInState(SMStates_t::STARTED_STATE))) {
+     505        4236 :     return;
+     506             :   }
+     507             : 
+     508             :   // for position state check the innovation
+     509      441788 :   if (H_idx == POSITION) {
+     510      257367 :     std::scoped_lock lock(mtx_innovation_);
+     511             : 
+     512      257444 :     is_mitigating_jump_ = false;
+     513      257536 :     innovation_(0)      = z(0) - getState(POSITION);
+     514             : 
+     515      257493 :     if (fabs(innovation_(0)) > pos_innovation_limit_) {
+     516           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: innovation too large - [%.2f] lim: %.2f", getPrintName().c_str(), innovation_(0), pos_innovation_limit_);
+     517           0 :       innovation_ok_ = false;
+     518           0 :       switch (exc_innovation_action_) {
+     519           0 :         case ExcInnoAction_t::ELAND: {
+     520           0 :           ROS_WARN_THROTTLE(1.0, "[%s]: large innovation should trigger eland in control manager", ros::this_node::getName().c_str());
+     521           0 :           changeState(ERROR_STATE);
+     522           0 :           break;
+     523             :         }
+     524           0 :         case ExcInnoAction_t::SWITCH: {
+     525           0 :           ROS_WARN_THROTTLE(1.0, "[%s]: innovation should trigger estimator switch but no eland", ros::this_node::getName().c_str());
+     526           0 :           innovation_(0) = 0.0;  // this is quite hacky but is there other way to switch estimators and not trigger eland by the large innovation?
+     527           0 :           changeState(ERROR_STATE);
+     528           0 :           break;
+     529             :         }
+     530           0 :         case ExcInnoAction_t::MITIGATE: {
+     531           0 :           ROS_WARN_THROTTLE(1.0, "[%s]: large innovation should trigger estimate jump mitigation", ros::this_node::getName().c_str());
+     532           0 :           innovation_(0)      = 0.0;  // this is quite hacky but is there other way to switch estimators and not trigger eland by the large innovation?
+     533           0 :           is_mitigating_jump_ = true;
+     534           0 :           setState(z(0), POSITION);
+     535           0 :           break;
+     536             :         }
+     537           0 :         case ExcInnoAction_t::NONE: {
+     538           0 :           ROS_WARN_THROTTLE(1.0, "[%s]: large innovation ignored", ros::this_node::getName().c_str());
+     539           0 :           break;
+     540             :         }
+     541             :       }
+     542             :     }
+     543      257467 :     innovation_ok_ = true;
+     544             :   }
+     545             : 
+     546      441892 :   statecov_t sc = mrs_lib::get_mutexed(mutex_sc_, sc_);
+     547             :   try {
+     548             :     // Apply the correction step
+     549             :     {
+     550      881538 :       std::scoped_lock lock(mutex_lkf_);
+     551      442064 :       H_        = H_t::Zero();
+     552      442009 :       H_(H_idx) = 1;
+     553      441361 :       lkf_->H   = H_;
+     554      440499 :       if (is_repredictor_enabled_) {
+     555             : 
+     556           0 :         lkf_rep_->addMeasurement(z, R_t::Ones() * R, meas_stamp, models_[H_idx]);
+     557             :       } else {
+     558      440499 :         sc = lkf_->correct(sc, z, R_t::Ones() * R);
+     559             :       }
+     560             :     }
+     561             :   }
+     562           0 :   catch (const std::exception &e) {
+     563             :     // In case of error, alert the user
+     564           0 :     ROS_ERROR("[%s]: LKF correction failed: %s", getPrintName().c_str(), e.what());
+     565             :   }
+     566             : 
+     567      438415 :   mrs_lib::set_mutexed(mutex_sc_, sc, sc_);
+     568             : }  // namespace mrs_uav_state_estimators
+     569             : /*//}*/
+     570             : 
+     571             : /*//{ isConverged() */
+     572         167 : bool AltGeneric::isConverged() {
+     573             : 
+     574             :   // TODO: check convergence by rate of change of determinant
+     575             : 
+     576         167 :   return true;
+     577             : }
+     578             : /*//}*/
+     579             : 
+     580             : /*//{ getState() */
+     581      142024 : double AltGeneric::getState(const int &state_id_in, const int &axis_in) const {
+     582      142024 :   return getState(stateIdToIndex(state_id_in, axis_in));
+     583             : }
+     584             : 
+     585     1079757 : double AltGeneric::getState(const int &state_idx_in) const {
+     586     1079757 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).x(state_idx_in);
+     587             : }
+     588             : /*//}*/
+     589             : 
+     590             : /*//{ setState() */
+     591           0 : void AltGeneric::setState(const double &state_in, const int &state_id_in, const int &axis_in) {
+     592           0 :   setState(state_in, stateIdToIndex(state_id_in, axis_in));
+     593           0 : }
+     594             : 
+     595         254 : void AltGeneric::setState(const double &state_in, const int &state_idx_in) {
+     596         254 :   mrs_lib::set_mutexed(mutex_sc_, state_in, sc_.x(state_idx_in));
+     597         254 : }
+     598             : /*//}*/
+     599             : 
+     600             : /*//{ getStates() */
+     601      293275 : AltGeneric::states_t AltGeneric::getStates(void) const {
+     602      586198 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).x;
+     603             : }
+     604             : /*//}*/
+     605             : 
+     606             : /*//{ setStates() */
+     607           0 : void AltGeneric::setStates(const states_t &states_in) {
+     608           0 :   mrs_lib::set_mutexed(mutex_sc_, states_in, sc_.x);
+     609           0 : }
+     610             : /*//}*/
+     611             : 
+     612             : /*//{ getCovariance() */
+     613           0 : double AltGeneric::getCovariance(const int &state_id_in, const int &axis_in) const {
+     614           0 :   return getCovariance(stateIdToIndex(state_id_in, axis_in));
+     615             : }
+     616             : 
+     617      629791 : double AltGeneric::getCovariance(const int &state_idx_in) const {
+     618      629791 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).P(state_idx_in, state_idx_in);
+     619             : }
+     620             : /*//}*/
+     621             : 
+     622             : /*//{ getCovarianceMatrix() */
+     623      292961 : AltGeneric::covariance_t AltGeneric::getCovarianceMatrix(void) const {
+     624      585788 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).P;
+     625             : }
+     626             : /*//}*/
+     627             : 
+     628             : /*//{ setCovarianceMatrix() */
+     629           0 : void AltGeneric::setCovarianceMatrix(const covariance_t &cov_in) {
+     630           0 :   mrs_lib::set_mutexed(mutex_sc_, cov_in, sc_.P);
+     631           0 : }
+     632             : /*//}*/
+     633             : 
+     634             : /*//{ getInnovation() */
+     635      182630 : double AltGeneric::getInnovation(const int &state_idx) const {
+     636      182630 :   return mrs_lib::get_mutexed(mtx_innovation_, innovation_)(state_idx);
+     637             : }
+     638             : 
+     639           0 : double AltGeneric::getInnovation(const int &state_id_in, const int &axis_in) const {
+     640           0 :   return getInnovation(stateIdToIndex(state_id_in, axis_in));
+     641             : }
+     642             : /*//}*/
+     643             : 
+     644             : /*//{ setDt() */
+     645      293311 : void AltGeneric::setDt(const double &dt) {
+     646      293311 :   dt_ = dt;
+     647      293311 :   generateA();
+     648      292998 :   generateB();
+     649      585764 :   std::scoped_lock lock(mutex_lkf_);
+     650      292659 :   lkf_->A = A_;
+     651      292877 :   lkf_->B = B_;
+     652      292467 : }
+     653             : /*//}*/
+     654             : 
+     655             : /*//{ setInputCoeff() */
+     656         325 : void AltGeneric::setInputCoeff(const double &input_coeff) {
+     657         325 :   input_coeff_ = input_coeff;
+     658         325 :   generateA();
+     659         321 :   generateB();
+     660         640 :   std::scoped_lock lock(mutex_lkf_);
+     661         322 :   lkf_->A = A_;
+     662         323 :   lkf_->B = B_;
+     663             : 
+     664         320 :   if (is_repredictor_enabled_) {
+     665           0 :     models_.clear();
+     666           0 :     generateRepredictorModels(input_coeff_);
+     667             :   }
+     668         322 : }
+     669             : /*//}*/
+     670             : 
+     671             : /*//{ generateRepredictorModels() */
+     672           0 : void AltGeneric::generateRepredictorModels(const double input_coeff) {
+     673             : 
+     674           0 :     for (int i = 0; i < alt_generic::n_states; i++) {
+     675             : 
+     676           0 :       auto lambda_generateA = [input_coeff](const double dt) {
+     677           0 :         A_t A;
+     678             :         // clang-format off
+     679           0 :         A <<
+     680           0 :           1, dt, 0.5 * dt * dt,
+     681           0 :           0, 1, dt,
+     682           0 :           0, 0, 1-(input_coeff * dt);
+     683             :         // clang-format on
+     684           0 :         return A;
+     685           0 :       };
+     686             : 
+     687           0 :       auto lambda_generateB = [input_coeff]([[maybe_unused]] const double dt) {
+     688           0 :         B_t B = B.Zero();
+     689             :         // clang-format off
+     690           0 :         B <<
+     691             :           0,
+     692           0 :           0,
+     693           0 :           (input_coeff * dt);
+     694             :         // clang-format on
+     695           0 :         return B;
+     696           0 :       };
+     697             : 
+     698           0 :       H_t H = H_t::Zero();
+     699           0 :       H(i)  = 1;
+     700           0 :       models_.push_back(std::make_shared<varstep_lkf_t>(lambda_generateA, lambda_generateB, H));
+     701             :     }
+     702           0 : }
+     703             : /*//}*/
+     704             : 
+     705             : /*//{ generateA() */
+     706      293771 : void AltGeneric::generateA() {
+     707             : 
+     708             :   // clang-format off
+     709      293771 :     A_ <<
+     710      292952 :       1, dt_, 0.5 * dt_ * dt_,
+     711      293144 :       0, 1, dt_,
+     712      293311 :       0, 0, 1-(input_coeff_ * dt_);
+     713             :   // clang-format on
+     714      292964 : }
+     715             : /*//}*/
+     716             : 
+     717             : /*//{ generateB() */
+     718      293771 : void AltGeneric::generateB() {
+     719             : 
+     720             :   // clang-format off
+     721      293771 :     B_ <<
+     722             :       0,
+     723      292571 :       0,
+     724      292825 :       (input_coeff_ * dt_);
+     725             :   // clang-format on
+     726      292628 : }
+     727             : /*//}*/
+     728             : 
+     729             : /*//{ callbackReconfigure() */
+     730         167 : void AltGeneric::callbackReconfigure(AltitudeEstimatorConfig &config, [[maybe_unused]] uint32_t level) {
+     731             : 
+     732         167 :   if (!isInitialized()) {
+     733         167 :     return;
+     734             :   }
+     735             : 
+     736           0 :   Q_t Q;
+     737           0 :   Q(POSITION, POSITION)         = config.pos;
+     738           0 :   Q(VELOCITY, VELOCITY)         = config.vel;
+     739           0 :   Q(ACCELERATION, ACCELERATION) = config.acc;
+     740           0 :   mrs_lib::set_mutexed(mtx_Q_, Q, Q_);
+     741             : }
+     742             : /*//}*/
+     743             : 
+     744             : /*//{ getNamespacedName() */
+     745        1080 : std::string AltGeneric::getNamespacedName() const {
+     746        2160 :   return parent_state_est_name_ + "/" + getName();
+     747             : }
+     748             : /*//}*/
+     749             : 
+     750             : /*//{ getPrintName() */
+     751        1300 : std::string AltGeneric::getPrintName() const {
+     752        2600 :   return ch_->nodelet_name + "/" + parent_state_est_name_ + "/" + getName();
+     753             : }
+     754             : /*//}*/
+     755             : };  // namespace mrs_uav_state_estimators
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/src/estimators/altitude/alt_generic.cpp.gcov.overview.html b/mrs_uav_state_estimators/src/estimators/altitude/alt_generic.cpp.gcov.overview.html new file mode 100644 index 0000000000..e22283543d --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/altitude/alt_generic.cpp.gcov.overview.html @@ -0,0 +1,209 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/altitude/alt_generic.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_uav_state_estimators/src/estimators/altitude/alt_generic.cpp.gcov.png b/mrs_uav_state_estimators/src/estimators/altitude/alt_generic.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..a245dc5de33175ed9ba05e949e66467ab8dabd3b GIT binary patch literal 2916 zcmV-q3!C(bP)7#*!!f{)a0oWA3(ZC}!{Y0or(m-fx3MGDN9)Q@A~jiK&zJOLjHfTLb4={3{Cd5{S2m1&H~K|4fTJ5; z#=Oj_fcVsQjAQtDyi6y-F%lyye6+*>)UY*TfK}jT_M8cbPdx%VZ82_;^_iQguH)RN z#xTC2h7EsH!|2W9BiNyyjAq|#N(R#NvBDl~?0l>ZtCkIbknFVVj570XkPLsL$x^U` z>)}oadh4B?5trzHGKMS6Gv8<20@MnEi`o>ZWCa zMgzwaX_D`3$@a|q|MR+R|1ra}f8XC=fEC+wrIF$SNmh!^nH>bu8P%q6(?9Z4!Ap9) z$AVC_0+Ma2ia#Dga_&s)y`6-(n#kgtc_HvzP=N1$It@6%uL37<2?P~%QM%x;QlPo=CGLay06724DskQ@*N&>y9XPR<6nqXCF% zrF#4Rut|Ut!;^T>W{0FTMqsMs{!Wmq17bn$WrFJ+sWoy;-(t@SS>~w&X_>Atdz4u! z17<1sk^N*ISc8{>4(4&`j@jTnDX40HNzsmHBnxWh z2rj5y4eS{_dx|?aBnjWqS8-gBM8g3Bd>p{deutPcJ$8+*wiP_)B4f0Z zOCfs>IM#zmUpXUuN~I{2*wPW_8WKQ5Uk48uv;{=s+-zzR3zK7{AuQIB6)@K0nE{iZ zT`n-woGh#q7v|BK$rQm1H&KO}X%;pxiZR74tY8dhPz5lX+XU$hBLggCG(kpw&CcMq z2gocQ4iZ0koCCcdObc_UGeFJ1wt&cy)T)I5!_VItcCgpNz3gCL!|Bev<4+#!L`;#E z0x?VMZF|6lr-mie7BG$x=r#z3?Lun(6eNIhERutE?P*9qmFnotACDvm0)Mswc!lo?*q^v2Ia=Hz_ zpo1+AJ2c0F)w#-z=NAOxhb`N!StV6M#26w=h^wR`iE%EZ;r9`^>q;ET@Ntax*T2f1 zK=tVREw$#kPv%l|FEn3cm5ZMyX6H4DK`aqbr}Sty1&G)`zcZeekq1)a5z`H{GoM&v zC>PX9IfG>)dgY|pUl#!3`wFQ|@V97Udtm|NnL|t$HsQ7HLQsW#GQ#MmPAq^-m)v?O z69Yy_L(<`=_oblS5782j^b*e&hEB%FQk3S7*;72Zn31on5oS-hiIV`Y&>6aZ`DE3$ zOoxtYl*h|?3lNJ`FJF+?9};R%k076 z;NcptGWQ^Lmzbfgu@j2o>pry((fvU_52tqscbbeLtv?4ad(@02tQ%oOd#LHv42IW;{zjM7cs zeBZUs&8W$)m|-u9s{~jx_HgsuRShhfO=M$DGX+c%=13^O(b&KOh}uQveMa|5-4B1J zK>L$CZpcT+4X1Y?rc6&$GL>~9Syg*5M}kk?lKR}uvY?DP;9Nhvd?t?YDLpx2ZqIKa zNuvNbhXcfS8Z%3QoUbxQe==qH$1sG&IOOk+Z=uC4} z%BPO!g;}(=)Tf*Q&jGW!v*yQ*e|cuOP*`lK&p?15-I<$|U4F5WJAKK{Byzj{BbD6$ z>xG4p`V>9gH0&ut$cR>qWN!8pJ^ZNIJH0A}bph~bcqz1UPnSd=a8-(kp&&u>5j)YP zSjac?(HuX9BO%u@s@2R^_I&(0M>Q4}`kIxCm~ld5mT12?6j|s5ZU}EcD}< zwnwYoze(GsxgYicNEE$Mj`QJC-^x=t##}N!OpJTRVdY}Xz}u*cYs~YwKTO%N`b@D% zOMt`C5}ZG;=#8m)KR%}@&ah9SJ9ES|^XyIOvNAxWEiBkafBmX*B!wIRn_k5z+IzO* z#jg?f!;z!CscmP1sa9A{{^OGPW*f^FpYx_$&PVe5UR29ugIkzTJ=wI%WS{mE$aNe@ zFzP-{%*PM2M{&+->TTeXcYo<@I)6nSif&|Kl*EwMxeXp*D=}^~sv>kJdCz6dx2M z{KCMe)==@nYVoZF+DGuKd*@M;TirasCu7{A?po~-c_kb-p+LE5n=AZAHwZVS>Kg7+nrM^aUImgHW{JX6 zv~G~6s5X6x!j(y5K_0U;-asC!R7>LJy@gnM)_9P=oJbEWkE z!|QoXTRBuU#HogdC}qASm!%de_K_YWdIx!|ZjMYuu8d!$g;lCWA)86hyoWAoVYr*c z#q1ljupr@)(N(;ZzW5cJMI4g8EV67AQ07O=a1Kz-$ z0hCLyj>1K(~+c}p4P7hd|HU@P3Q?g+R zF*S@kCZtgkp!tj~WGA*w4Z1BnAZiU&mu%trfaUEAfZwo%OZl;i1h@h$PrGNuvCoIM z7Tv(T1`--)Ke-tH7&!2Q&Rp%o_)n&(00N%^5dfW|Q@DQVpAuIq + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/altitude + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_state_estimators/src/estimators/altitudeHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:21339553.9 %
Date:2024-04-17 23:52:03Functions:223366.7 %
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Current view:top level - mrs_uav_state_estimators/src/estimators/heading - hdg_generic.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:03570.0 %
Date:2024-04-17 23:52:03Functions:0340.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::HdgGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)0
mrs_uav_state_estimators::HdgGeneric::isConverged()0
mrs_uav_state_estimators::HdgGeneric::timerUpdate(ros::TimerEvent const&)0
mrs_uav_state_estimators::HdgGeneric::doCorrection(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, double, mrs_uav_managers::estimation_manager::StateId_t const&, ros::Time const&)0
mrs_uav_state_estimators::HdgGeneric::doCorrection(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t const&)0
mrs_uav_state_estimators::HdgGeneric::setInputCoeff(double const&)0
mrs_uav_state_estimators::HdgGeneric::timerCheckHealth(ros::TimerEvent const&)0
mrs_uav_state_estimators::HdgGeneric::callbackReconfigure(mrs_uav_state_estimators::HeadingEstimatorConfig&, unsigned int)0
mrs_uav_state_estimators::HdgGeneric::setCovarianceMatrix(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&)0
mrs_uav_state_estimators::HdgGeneric::generateRepredictorModels(double)0
mrs_uav_state_estimators::HdgGeneric::pause()0
mrs_uav_state_estimators::HdgGeneric::reset()0
mrs_uav_state_estimators::HdgGeneric::setDt(double const&)0
mrs_uav_state_estimators::HdgGeneric::start()0
mrs_uav_state_estimators::HdgGeneric::setState(double const&, int const&)0
mrs_uav_state_estimators::HdgGeneric::setState(double const&, int const&, int const&)0
mrs_uav_state_estimators::HdgGeneric::generateA()0
mrs_uav_state_estimators::HdgGeneric::generateB()0
mrs_uav_state_estimators::HdgGeneric::setStates(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)0
mrs_uav_state_estimators::HdgGeneric::getPrintName[abi:cxx11]() const0
mrs_uav_state_estimators::HdgGeneric::getCovariance(int const&) const0
mrs_uav_state_estimators::HdgGeneric::getCovariance(int const&, int const&) const0
mrs_uav_state_estimators::HdgGeneric::getInnovation(int const&) const0
mrs_uav_state_estimators::HdgGeneric::getInnovation(int const&, int const&) const0
mrs_uav_state_estimators::HdgGeneric::getLastValidHdg() const0
mrs_uav_state_estimators::HdgGeneric::getNamespacedName[abi:cxx11]() const0
mrs_uav_state_estimators::HdgGeneric::getCovarianceMatrix() const0
mrs_uav_state_estimators::HdgGeneric::getState(int const&) const0
mrs_uav_state_estimators::HdgGeneric::getState(int const&, int const&) const0
mrs_uav_state_estimators::HdgGeneric::getStates() const0
mrs_uav_state_estimators::HdgGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t)#2}::operator()(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t) const0
mrs_uav_state_estimators::HdgGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(int, int)#1}::operator()(int, int) const0
mrs_uav_state_estimators::HdgGeneric::generateRepredictorModels(double)::{lambda(double)#2}::operator()(double) const0
mrs_uav_state_estimators::HdgGeneric::generateRepredictorModels(double)::{lambda(double)#1}::operator()(double) const0
+
+
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.func.html b/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.func.html new file mode 100644 index 0000000000..09025f6af7 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.func.html @@ -0,0 +1,216 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/heading - hdg_generic.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:03570.0 %
Date:2024-04-17 23:52:03Functions:0340.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::HdgGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)0
mrs_uav_state_estimators::HdgGeneric::isConverged()0
mrs_uav_state_estimators::HdgGeneric::timerUpdate(ros::TimerEvent const&)0
mrs_uav_state_estimators::HdgGeneric::doCorrection(Eigen::Matrix<double, 1, 1, 0, 1, 1> const&, double, mrs_uav_managers::estimation_manager::StateId_t const&, ros::Time const&)0
mrs_uav_state_estimators::HdgGeneric::doCorrection(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t const&)0
mrs_uav_state_estimators::HdgGeneric::setInputCoeff(double const&)0
mrs_uav_state_estimators::HdgGeneric::timerCheckHealth(ros::TimerEvent const&)0
mrs_uav_state_estimators::HdgGeneric::callbackReconfigure(mrs_uav_state_estimators::HeadingEstimatorConfig&, unsigned int)0
mrs_uav_state_estimators::HdgGeneric::setCovarianceMatrix(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&)0
mrs_uav_state_estimators::HdgGeneric::generateRepredictorModels(double)0
mrs_uav_state_estimators::HdgGeneric::pause()0
mrs_uav_state_estimators::HdgGeneric::reset()0
mrs_uav_state_estimators::HdgGeneric::setDt(double const&)0
mrs_uav_state_estimators::HdgGeneric::start()0
mrs_uav_state_estimators::HdgGeneric::setState(double const&, int const&)0
mrs_uav_state_estimators::HdgGeneric::setState(double const&, int const&, int const&)0
mrs_uav_state_estimators::HdgGeneric::generateA()0
mrs_uav_state_estimators::HdgGeneric::generateB()0
mrs_uav_state_estimators::HdgGeneric::setStates(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)0
mrs_uav_state_estimators::HdgGeneric::getPrintName[abi:cxx11]() const0
mrs_uav_state_estimators::HdgGeneric::getCovariance(int const&) const0
mrs_uav_state_estimators::HdgGeneric::getCovariance(int const&, int const&) const0
mrs_uav_state_estimators::HdgGeneric::getInnovation(int const&) const0
mrs_uav_state_estimators::HdgGeneric::getInnovation(int const&, int const&) const0
mrs_uav_state_estimators::HdgGeneric::getLastValidHdg() const0
mrs_uav_state_estimators::HdgGeneric::getNamespacedName[abi:cxx11]() const0
mrs_uav_state_estimators::HdgGeneric::getCovarianceMatrix() const0
mrs_uav_state_estimators::HdgGeneric::getState(int const&) const0
mrs_uav_state_estimators::HdgGeneric::getState(int const&, int const&) const0
mrs_uav_state_estimators::HdgGeneric::getStates() const0
mrs_uav_state_estimators::HdgGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t)#2}::operator()(mrs_uav_state_estimators::Correction<1>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t) const0
mrs_uav_state_estimators::HdgGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(int, int)#1}::operator()(int, int) const0
mrs_uav_state_estimators::HdgGeneric::generateRepredictorModels(double)::{lambda(double)#2}::operator()(double) const0
mrs_uav_state_estimators::HdgGeneric::generateRepredictorModels(double)::{lambda(double)#1}::operator()(double) const0
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.gcov.frameset.html b/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.gcov.frameset.html new file mode 100644 index 0000000000..3cdb79f846 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.gcov.html b/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.gcov.html new file mode 100644 index 0000000000..908723ccbf --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.gcov.html @@ -0,0 +1,795 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/heading - hdg_generic.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:03570.0 %
Date:2024-04-17 23:52:03Functions:0340.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #define VERSION "0.0.6.0"
+       2             : 
+       3             : /* includes //{ */
+       4             : 
+       5             : #include <mrs_uav_state_estimators/estimators/heading/hdg_generic.h>
+       6             : 
+       7             : //}
+       8             : 
+       9             : namespace mrs_uav_state_estimators
+      10             : 
+      11             : {
+      12             : 
+      13             : /* initialize() //{*/
+      14           0 : void HdgGeneric::initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) {
+      15             : 
+      16           0 :   ch_ = ch;
+      17           0 :   ph_ = ph;
+      18             : 
+      19           0 :   ns_frame_id_ = ch_->uav_name + "/" + frame_id_;
+      20             : 
+      21             :   // clang-format off
+      22           0 :   dt_ = 0.01;
+      23           0 :   input_coeff_ = 20;
+      24           0 :   default_input_coeff_ = 20;
+      25             : 
+      26           0 :   generateA();
+      27           0 :   generateB();
+      28             : 
+      29           0 :   H_ <<
+      30           0 :     1, 0;
+      31             : 
+      32           0 :   innovation_ << 
+      33             :     0;
+      34             : 
+      35             : 
+      36             :   // clang-format on
+      37             : 
+      38             :   // | --------------- initialize parameter loader -------------- |
+      39             : 
+      40           0 :   if (is_core_plugin_) {
+      41             : 
+      42           0 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/private/" + parent_state_est_name_ + "/" + getName() + ".yaml");
+      43           0 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/public/" + parent_state_est_name_ + "/" + getName() + ".yaml");
+      44             :   }
+      45             : 
+      46           0 :   ph->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getNamespacedName() + "/");
+      47             : 
+      48             :   // | --------------------- load parameters -------------------- |
+      49           0 :   ph->param_loader->loadParam("max_flight_z", max_flight_z_);
+      50           0 :   ph->param_loader->loadParam("position_innovation_limit", pos_innovation_limit_);
+      51           0 :   ph->param_loader->loadParam("repredictor/enabled", is_repredictor_enabled_);
+      52           0 :   if (is_repredictor_enabled_) {
+      53           0 :     ph->param_loader->loadParam("repredictor/buffer_size", rep_buffer_size_);
+      54             :   }
+      55             : 
+      56             :   // | --------------- corrections initialization --------------- |
+      57           0 :   ph->param_loader->loadParam("corrections", correction_names_);
+      58             : 
+      59           0 :   for (auto corr_name : correction_names_) {
+      60           0 :     corrections_.push_back(std::make_shared<Correction<hdg_generic::n_measurements>>(
+      61           0 :         nh, getNamespacedName(), corr_name, ns_frame_id_, EstimatorType_t::HEADING, ch_, ph_, [this](int a, int b) { return this->getState(a, b); },
+      62           0 :         [this](const Correction<hdg_generic::n_measurements>::MeasurementStamped &meas, const double R, const StateId_t state) {
+      63           0 :           return this->doCorrection(meas, R, state);
+      64             :         }));
+      65             :   }
+      66             : 
+      67           0 :   ph->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getNamespacedName() + "/");
+      68             : 
+      69             :   // | ----------- initialize process noise covariance ---------- |
+      70           0 :   Q_ = Q_t::Zero();
+      71             :   double tmp_noise;
+      72           0 :   ph->param_loader->loadParam("process_noise/pos", tmp_noise);
+      73           0 :   Q_(POSITION, POSITION) = tmp_noise;
+      74           0 :   ph->param_loader->loadParam("process_noise/vel", tmp_noise);
+      75           0 :   Q_(VELOCITY, VELOCITY) = tmp_noise;
+      76             : 
+      77             :   // | ------- check if all parameters loaded successfully ------ |
+      78           0 :   if (!ph->param_loader->loadedSuccessfully()) {
+      79           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getPrintName().c_str());
+      80           0 :     ros::shutdown();
+      81             :   }
+      82             : 
+      83             :   // | ------------- initialize dynamic reconfigure ------------- |
+      84             :   drmgr_ =
+      85           0 :       std::make_unique<drmgr_t>(ros::NodeHandle("~/" + getNamespacedName()), true, getPrintName(), boost::bind(&HdgGeneric::callbackReconfigure, this, _1, _2));
+      86           0 :   drmgr_->config.pos = Q_(POSITION, POSITION);
+      87           0 :   drmgr_->config.vel = Q_(VELOCITY, VELOCITY);
+      88           0 :   drmgr_->update_config(drmgr_->config);
+      89             : 
+      90             :   // | --------------- Kalman filter intialization -------------- |
+      91           0 :   const x_t        x0 = x_t::Zero();
+      92           0 :   const P_t        P0 = 1e3 * P_t::Identity();
+      93           0 :   const statecov_t sc0({x0, P0});
+      94           0 :   sc_ = sc0;
+      95             : 
+      96           0 :   lkf_ = std::make_shared<lkf_t>(A_, B_, H_);
+      97           0 :   if (is_repredictor_enabled_) {
+      98             : 
+      99           0 :     generateRepredictorModels(input_coeff_);
+     100             : 
+     101           0 :     const u_t       u0 = u_t::Zero();
+     102           0 :     const ros::Time t0 = ros::Time::now();
+     103           0 :     lkf_rep_           = std::make_unique<mrs_lib::Repredictor<varstep_lkf_t>>(x0, P0, u0, Q_, t0, models_.at(0), rep_buffer_size_);
+     104             : 
+     105           0 :     setDt(1.0 / ch_->desired_uav_state_rate);
+     106             :   }
+     107             : 
+     108             :   // | ------------------ timers initialization ----------------- |
+     109           0 :   timer_update_ = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &HdgGeneric::timerUpdate, this);  // not running after init
+     110             :   /* timer_check_health_ = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &HdgGeneric::timerCheckHealth, this); */
+     111             : 
+     112             :   // | --------------- subscribers initialization --------------- |
+     113             :   // subscriber to odometry
+     114           0 :   mrs_lib::SubscribeHandlerOptions shopts;
+     115           0 :   shopts.nh                 = nh;
+     116           0 :   shopts.node_name          = getPrintName();
+     117           0 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     118           0 :   shopts.threadsafe         = true;
+     119           0 :   shopts.autostart          = true;
+     120           0 :   shopts.queue_size         = 10;
+     121           0 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     122             : 
+     123           0 :   sh_control_input_ = mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput>(shopts, "control_input_in");
+     124             : 
+     125             :   // | ---------------- publishers initialization --------------- |
+     126           0 :   if (ch_->debug_topics.input) {
+     127           0 :     ph_input_ = mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped>(nh, getNamespacedName() + "/input", 10);
+     128             :   }
+     129           0 :   if (ch_->debug_topics.output) {
+     130           0 :     ph_output_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput>(nh, getNamespacedName() + "/output", 10);
+     131             :   }
+     132           0 :   if (ch_->debug_topics.diag) {
+     133           0 :     ph_diagnostics_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics>(nh, getNamespacedName() + "/diagnostics", 10);
+     134             :   }
+     135             : 
+     136             :   // | ------------------ finish initialization ----------------- |
+     137             : 
+     138           0 :   if (changeState(INITIALIZED_STATE)) {
+     139           0 :     ROS_INFO("[%s]: Estimator initialized, version %s", getPrintName().c_str(), VERSION);
+     140             :   } else {
+     141           0 :     ROS_INFO("[%s]: Estimator could not be initialized", getPrintName().c_str());
+     142             :   }
+     143           0 : }
+     144             : /*//}*/
+     145             : 
+     146             : /*//{ start() */
+     147           0 : bool HdgGeneric::start(void) {
+     148             : 
+     149           0 :   if (isInState(READY_STATE)) {
+     150             :     /* timer_update_.start(); */
+     151           0 :     changeState(STARTED_STATE);
+     152           0 :     return true;
+     153             : 
+     154             :   } else {
+     155           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: Estimator must be in READY_STATE to start it", getPrintName().c_str());
+     156           0 :     return false;
+     157             :   }
+     158             : }
+     159             : /*//}*/
+     160             : 
+     161             : /*//{ pause() */
+     162           0 : bool HdgGeneric::pause(void) {
+     163             : 
+     164           0 :   if (isInState(RUNNING_STATE)) {
+     165           0 :     changeState(STOPPED_STATE);
+     166           0 :     return true;
+     167             : 
+     168             :   } else {
+     169           0 :     return false;
+     170             :   }
+     171             : }
+     172             : /*//}*/
+     173             : 
+     174             : /*//{ reset() */
+     175           0 : bool HdgGeneric::reset(void) {
+     176             : 
+     177           0 :   if (!isInitialized()) {
+     178           0 :     ROS_ERROR("[%s]: Cannot reset uninitialized estimator", getPrintName().c_str());
+     179           0 :     return false;
+     180             :   }
+     181             : 
+     182           0 :   changeState(STOPPED_STATE);
+     183             : 
+     184             :   // Initialize LKF state and covariance
+     185           0 :   const x_t        x0 = x_t::Zero();
+     186           0 :   const P_t        P0 = 1e6 * P_t::Identity();
+     187           0 :   const statecov_t sc0({x0, P0});
+     188           0 :   sc_ = sc0;
+     189             : 
+     190             :   // Instantiate the LKF itself
+     191           0 :   lkf_ = std::make_shared<lkf_t>(A_, B_, H_);
+     192           0 :   if (is_repredictor_enabled_) {
+     193             : 
+     194           0 :     const u_t       u0 = u_t::Zero();
+     195           0 :     const ros::Time t0 = ros::Time(0);
+     196           0 :     lkf_rep_           = std::make_unique<mrs_lib::Repredictor<varstep_lkf_t>>(x0, P0, u0, Q_, t0, models_.at(0), rep_buffer_size_);
+     197             :   }
+     198             : 
+     199           0 :   ROS_INFO("[%s]: Estimator reset", getPrintName().c_str());
+     200             : 
+     201           0 :   return true;
+     202             : }
+     203             : /*//}*/
+     204             : 
+     205             : /* timerUpdate() //{*/
+     206           0 : void HdgGeneric::timerUpdate(const ros::TimerEvent &event) {
+     207             : 
+     208           0 :   if (!isInitialized()) {
+     209           0 :     return;
+     210             :   }
+     211             : 
+     212           0 :   switch (getCurrentSmState()) {
+     213             : 
+     214           0 :     case UNINITIALIZED_STATE: {
+     215           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s initialization", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     216           0 :       break;
+     217             :     }
+     218             : 
+     219           0 :     case READY_STATE: {
+     220           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s estimator start", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     221           0 :       break;
+     222             :     }
+     223             : 
+     224           0 :     case INITIALIZED_STATE: {
+     225             :       // initialize the estimator with current corrections
+     226           0 :       for (auto correction : corrections_) {
+     227           0 :         auto res = correction->getProcessedCorrection();
+     228           0 :         if (res) {
+     229           0 :           auto measurement_stamped = res.value();
+     230           0 :           setState(measurement_stamped.value(AXIS_X), correction->getStateId(), AXIS_X);
+     231           0 :           ROS_INFO_THROTTLE(1.0, "[%s]: Setting initial state to: %.2f", getPrintName().c_str(), measurement_stamped.value(AXIS_X));
+     232             :         } else {
+     233           0 :           ROS_INFO_THROTTLE(1.0, "[%s]: %s correction %s", getPrintName().c_str(), Support::waiting_for_string.c_str(),
+     234             :                             correction->getNamespacedName().c_str());
+     235           0 :           return;
+     236             :         }
+     237             :       }
+     238           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Ready to start", getPrintName().c_str());
+     239           0 :       changeState(READY_STATE);
+     240           0 :       break;
+     241             :     }
+     242             : 
+     243           0 :     case STARTED_STATE: {
+     244           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s convergence of LKF", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     245           0 :       if (isConverged()) {
+     246           0 :         ROS_INFO_THROTTLE(1.0, "[%s]: LKF converged", getPrintName().c_str());
+     247           0 :         changeState(RUNNING_STATE);
+     248             :       }
+     249           0 :       break;
+     250             :     }
+     251             : 
+     252           0 :     case RUNNING_STATE: {
+     253           0 :       for (auto correction : corrections_) {
+     254           0 :         if (!correction->isHealthy()) {
+     255           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     256           0 :           changeState(ERROR_STATE);
+     257             :         }
+     258             :       }
+     259           0 :       break;
+     260             :     }
+     261             : 
+     262           0 :     case STOPPED_STATE: {
+     263           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is stopped", getPrintName().c_str());
+     264           0 :       break;
+     265             :     }
+     266             : 
+     267           0 :     case ERROR_STATE: {
+     268           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is in ERROR state", getPrintName().c_str());
+     269           0 :       bool all_corrections_healthy = true;
+     270           0 :       for (auto correction : corrections_) {
+     271           0 :         if (!correction->isHealthy()) {
+     272           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     273           0 :           all_corrections_healthy = false;
+     274             :         }
+     275             :       }
+     276             :       // initialize the estimator again if corrections become healthy
+     277           0 :       if (all_corrections_healthy && innovation_ok_) {
+     278           0 :         changeState(INITIALIZED_STATE);
+     279             :       }
+     280           0 :       break;
+     281             :     }
+     282             :   }
+     283             : 
+     284           0 :   if (sh_control_input_.newMsg()) {
+     285           0 :     is_input_ready_ = true;
+     286             :   }
+     287             : 
+     288             :   // check age of input
+     289           0 :   if (is_input_ready_ && (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec() > 0.1) {
+     290           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: input too old (%.4f), using zero input instead", getPrintName().c_str(),
+     291             :                       (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec());
+     292           0 :     is_input_ready_ = false;
+     293             :   }
+     294             : 
+     295           0 :   if (!isRunning() && !isStarted()) {
+     296           0 :     return;
+     297             :   }
+     298             : 
+     299           0 :   if (first_iter_) {
+     300           0 :     first_iter_ = false;
+     301           0 :     return;
+     302             :   }
+     303             : 
+     304           0 :   double dt = (event.current_real - event.last_real).toSec();
+     305           0 :   if (dt <= 0.0) {
+     306           0 :     return;
+     307             :   }
+     308             : 
+     309           0 :   if (!is_repredictor_enabled_) {  // repredictor calculates dt on its own
+     310           0 :     setDt(dt);
+     311             :   }
+     312             : 
+     313             :   // go through available corrections and apply them
+     314             :   /* for (auto correction : corrections_) { */
+     315             :   /*   auto res = correction->getProcessedCorrection(); */
+     316             :   /*   if (res) { */
+     317             :   /*     auto measurement_stamped = res.value(); */
+     318             :   /*     doCorrection(measurement_stamped.value, correction->getR(), correction->getStateId(), measurement_stamped.stamp); */
+     319             :   /*   } */
+     320             :   /* } */
+     321             : 
+     322             :   // prediction step
+     323           0 :   u_t       u;
+     324           0 :   ros::Time input_stamp;
+     325           0 :   if (is_input_ready_) {
+     326           0 :     input_stamp = sh_control_input_.getMsg()->header.stamp;
+     327           0 :     if (input_coeff_ != default_input_coeff_){
+     328           0 :       setInputCoeff(default_input_coeff_);
+     329             :     }
+     330           0 :     u(0) = sh_control_input_.getMsg()->control_hdg_rate;
+     331             :   } else {
+     332           0 :     input_stamp = ros::Time::now();
+     333           0 :     if (input_coeff_ != 0){
+     334           0 :       setInputCoeff(0);
+     335             :     }
+     336           0 :     u = u_t::Zero();
+     337             :   }
+     338             : 
+     339           0 :   statecov_t sc = mrs_lib::get_mutexed(mutex_sc_, sc_);
+     340           0 :   Q_t        Q  = mrs_lib::get_mutexed(mtx_Q_, Q_);
+     341             :   try {
+     342             :     // Apply the prediction step
+     343           0 :     std::scoped_lock lock(mutex_lkf_);
+     344           0 :     if (is_repredictor_enabled_) {
+     345           0 :       lkf_rep_->addInputChangeWithNoise(u, Q, input_stamp, models_[0]);
+     346           0 :       sc = lkf_rep_->predictTo(ros::Time::now());
+     347             :     } else {
+     348           0 :       sc = lkf_->predict(sc, u, Q, dt_);
+     349             :     }
+     350             :   }
+     351           0 :   catch (const std::exception &e) {
+     352             :     // In case of error, alert the user
+     353           0 :     ROS_ERROR("[%s]: LKF prediction failed: %s", getPrintName().c_str(), e.what());
+     354             :   }
+     355             : 
+     356           0 :   mrs_lib::set_mutexed(mutex_sc_, sc, sc_);
+     357             : 
+     358           0 :   if (!isError()) {
+     359           0 :     mrs_lib::set_mutexed(mutex_last_valid_hdg_, sc.x(POSITION), last_valid_hdg_);
+     360             :   }
+     361             : 
+     362             :   // publishing
+     363           0 :   publishInput(u, input_stamp);
+     364           0 :   publishOutput();
+     365           0 :   publishDiagnostics();
+     366             : }
+     367             : /*//}*/
+     368             : 
+     369             : /*//{ timerCheckHealth() */
+     370           0 : void HdgGeneric::timerCheckHealth([[maybe_unused]] const ros::TimerEvent &event) {
+     371             : 
+     372           0 :   if (!isInitialized()) {
+     373           0 :     return;
+     374             :   }
+     375             : 
+     376           0 :   switch (getCurrentSmState()) {
+     377             : 
+     378           0 :     case UNINITIALIZED_STATE: {
+     379           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s initialization", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     380           0 :       break;
+     381             :     }
+     382             : 
+     383           0 :     case READY_STATE: {
+     384           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s estimator start", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     385           0 :       break;
+     386             :     }
+     387             : 
+     388           0 :     case INITIALIZED_STATE: {
+     389             :       // initialize the estimator with current corrections
+     390           0 :       for (auto correction : corrections_) {
+     391           0 :         auto res = correction->getProcessedCorrection();
+     392           0 :         if (res) {
+     393           0 :           auto measurement_stamped = res.value();
+     394           0 :           setState(measurement_stamped.value(AXIS_X), correction->getStateId(), AXIS_X);
+     395           0 :           ROS_INFO_THROTTLE(1.0, "[%s]: Setting initial state to: %.2f", getPrintName().c_str(), measurement_stamped.value(AXIS_X));
+     396             :         } else {
+     397           0 :           ROS_INFO_THROTTLE(1.0, "[%s]: %s correction %s", getPrintName().c_str(), Support::waiting_for_string.c_str(),
+     398             :                             correction->getNamespacedName().c_str());
+     399           0 :           return;
+     400             :         }
+     401             :       }
+     402           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Ready to start", getPrintName().c_str());
+     403           0 :       changeState(READY_STATE);
+     404           0 :       break;
+     405             :     }
+     406             : 
+     407           0 :     case STARTED_STATE: {
+     408           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s convergence of LKF", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     409           0 :       if (isConverged()) {
+     410           0 :         ROS_INFO_THROTTLE(1.0, "[%s]: LKF converged", getPrintName().c_str());
+     411           0 :         changeState(RUNNING_STATE);
+     412             :       }
+     413           0 :       break;
+     414             :     }
+     415             : 
+     416           0 :     case RUNNING_STATE: {
+     417           0 :       for (auto correction : corrections_) {
+     418           0 :         if (!correction->isHealthy()) {
+     419           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     420           0 :           changeState(ERROR_STATE);
+     421             :         }
+     422             :       }
+     423           0 :       break;
+     424             :     }
+     425             : 
+     426           0 :     case STOPPED_STATE: {
+     427           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is stopped", getPrintName().c_str());
+     428           0 :       break;
+     429             :     }
+     430             : 
+     431           0 :     case ERROR_STATE: {
+     432           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is in ERROR state", getPrintName().c_str());
+     433           0 :       bool all_corrections_healthy = true;
+     434           0 :       for (auto correction : corrections_) {
+     435           0 :         if (!correction->isHealthy()) {
+     436           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     437           0 :           all_corrections_healthy = false;
+     438             :         }
+     439             :       }
+     440             :       // initialize the estimator again if corrections become healthy
+     441           0 :       if (all_corrections_healthy) {
+     442           0 :         changeState(INITIALIZED_STATE);
+     443             :       }
+     444           0 :       break;
+     445             :     }
+     446             :   }
+     447             : 
+     448           0 :   if (sh_control_input_.newMsg()) {
+     449           0 :     is_input_ready_ = true;
+     450             :   }
+     451             : 
+     452             :   // check age of input
+     453           0 :   if (is_input_ready_ && (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec() > 0.1) {
+     454           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: input too old (%.4f), using zero input instead", getPrintName().c_str(),
+     455             :                       (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec());
+     456           0 :     is_input_ready_ = false;
+     457             :   }
+     458             : }
+     459             : /*//}*/
+     460             : 
+     461             : /*//{ doCorrection() */
+     462           0 : void HdgGeneric::doCorrection(const Correction<hdg_generic::n_measurements>::MeasurementStamped &meas, const double R, const StateId_t &state_id) {
+     463           0 :   doCorrection(meas.value, R, state_id, meas.stamp);
+     464           0 : }
+     465             : /*//}*/
+     466             : 
+     467             : /*//{ doCorrection() */
+     468           0 : void HdgGeneric::doCorrection(const z_t &z, const double R, const StateId_t &H_idx, const ros::Time &meas_stamp) {
+     469             : 
+     470           0 :   if (!isInitialized()) {
+     471           0 :     return;
+     472             :   }
+     473             : 
+     474             :   // copy measurement as we might need to modify it (unwrap)
+     475           0 :   z_t meas = z;
+     476             : 
+     477             :   // we do not want to perform corrections until the estimator is initialized
+     478           0 :   if (!(isInState(SMStates_t::READY_STATE) || isInState(SMStates_t::RUNNING_STATE) || isInState(SMStates_t::STARTED_STATE))) {
+     479           0 :     return;
+     480             :   }
+     481             : 
+     482           0 :   statecov_t sc = mrs_lib::get_mutexed(mutex_sc_, sc_);
+     483             : 
+     484             :   // for position state check the innovation
+     485           0 :   if (H_idx == POSITION) {
+     486             : 
+     487             :     // unwrap the hdg measurement wrt current state
+     488           0 :     meas(POSITION) = mrs_lib::geometry::radians::unwrap(meas(POSITION), sc.x(POSITION));
+     489             : 
+     490           0 :     std::scoped_lock lock(mtx_innovation_);
+     491             : 
+     492           0 :     innovation_(0) = mrs_lib::geometry::radians::dist(mrs_lib::geometry::radians(meas(0)), mrs_lib::geometry::radians(sc.x(POSITION)));
+     493             : 
+     494           0 :     if (fabs(innovation_(0)) > pos_innovation_limit_) {
+     495           0 :       ROS_WARN_THROTTLE(1.0, "[%s]: innovation too large - hdg: %.2f", getPrintName().c_str(), innovation_(0));
+     496           0 :       innovation_ok_ = false;
+     497           0 :       changeState(ERROR_STATE);
+     498             :     }
+     499             :   }
+     500             : 
+     501             :   try {
+     502             :     // Apply the correction step
+     503             :     {
+     504           0 :       std::scoped_lock lock(mutex_lkf_);
+     505           0 :       H_        = H_t::Zero();
+     506           0 :       H_(H_idx) = 1;
+     507           0 :       lkf_->H   = H_;
+     508           0 :       if (is_repredictor_enabled_) {
+     509           0 :         lkf_rep_->addMeasurement(meas, R_t::Ones() * R, meas_stamp, models_[H_idx]);
+     510             :       } else {
+     511           0 :         sc = lkf_->correct(sc, meas, R_t::Ones() * R);
+     512             :       }
+     513             :     }
+     514           0 :     innovation_ok_ = true;
+     515             :   }
+     516           0 :   catch (const std::exception &e) {
+     517             :     // In case of error, alert the user
+     518           0 :     ROS_ERROR("[%s]: LKF correction failed: %s", getPrintName().c_str(), e.what());
+     519             :   }
+     520             : 
+     521           0 :   mrs_lib::set_mutexed(mutex_sc_, sc, sc_);
+     522             : }
+     523             : /*//}*/
+     524             : 
+     525             : /*//{ isConverged() */
+     526           0 : bool HdgGeneric::isConverged() {
+     527             : 
+     528             :   // TODO: check convergence by rate of change of determinant
+     529             : 
+     530           0 :   return true;
+     531             : }
+     532             : /*//}*/
+     533             : 
+     534             : /*//{ getState() */
+     535           0 : double HdgGeneric::getState(const int &state_id_in, const int &axis_in) const {
+     536           0 :   return getState(stateIdToIndex(state_id_in, axis_in));
+     537             : }
+     538             : 
+     539           0 : double HdgGeneric::getState(const int &state_idx_in) const {
+     540           0 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).x(state_idx_in);
+     541             : }
+     542             : /*//}*/
+     543             : 
+     544             : /*//{ setState() */
+     545           0 : void HdgGeneric::setState(const double &state_in, const int &state_id_in, const int &axis_in) {
+     546           0 :   setState(state_in, stateIdToIndex(state_id_in, axis_in));
+     547           0 : }
+     548             : 
+     549           0 : void HdgGeneric::setState(const double &state_in, const int &state_idx_in) {
+     550           0 :   mrs_lib::set_mutexed(mutex_sc_, state_in, sc_.x(state_idx_in));
+     551           0 : }
+     552             : /*//}*/
+     553             : 
+     554             : /*//{ getStates() */
+     555           0 : HdgGeneric::states_t HdgGeneric::getStates(void) const {
+     556           0 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).x;
+     557             : }
+     558             : /*//}*/
+     559             : 
+     560             : /*//{ setStates() */
+     561           0 : void HdgGeneric::setStates(const states_t &states_in) {
+     562           0 :   mrs_lib::set_mutexed(mutex_sc_, states_in, sc_.x);
+     563           0 : }
+     564             : /*//}*/
+     565             : 
+     566             : /*//{ getCovariance() */
+     567           0 : double HdgGeneric::getCovariance(const int &state_id_in, const int &axis_in) const {
+     568           0 :   return getCovariance(stateIdToIndex(state_id_in, axis_in));
+     569             : }
+     570             : 
+     571           0 : double HdgGeneric::getCovariance(const int &state_idx_in) const {
+     572           0 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).P(state_idx_in, state_idx_in);
+     573             : }
+     574             : /*//}*/
+     575             : 
+     576             : /*//{ getCovarianceMatrix() */
+     577           0 : HdgGeneric::covariance_t HdgGeneric::getCovarianceMatrix(void) const {
+     578           0 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).P;
+     579             : }
+     580             : /*//}*/
+     581             : 
+     582             : /*//{ setCovarianceMatrix() */
+     583           0 : void HdgGeneric::setCovarianceMatrix(const covariance_t &cov_in) {
+     584           0 :   mrs_lib::set_mutexed(mutex_sc_, cov_in, sc_.P);
+     585           0 : }
+     586             : /*//}*/
+     587             : 
+     588             : /*//{ getInnovation() */
+     589           0 : double HdgGeneric::getInnovation(const int &state_idx) const {
+     590           0 :   return mrs_lib::get_mutexed(mtx_innovation_, innovation_)(state_idx);
+     591             : }
+     592             : 
+     593           0 : double HdgGeneric::getInnovation(const int &state_id_in, const int &axis_in) const {
+     594           0 :   return getInnovation(stateIdToIndex(state_id_in, axis_in));
+     595             : }
+     596             : /*//}*/
+     597             : 
+     598             : /*//{ setDt() */
+     599           0 : void HdgGeneric::setDt(const double &dt) {
+     600           0 :   dt_ = dt;
+     601           0 :   generateA();
+     602           0 :   generateB();
+     603           0 :   std::scoped_lock lock(mutex_lkf_);
+     604           0 :   lkf_->A = A_;
+     605           0 :   lkf_->B = B_;
+     606           0 : }
+     607             : /*//}*/
+     608             : 
+     609             : /*//{ setInputCoeff() */
+     610           0 : void HdgGeneric::setInputCoeff(const double &input_coeff) {
+     611           0 :   input_coeff_ = input_coeff;
+     612           0 :   generateA();
+     613           0 :   generateB();
+     614           0 :   std::scoped_lock lock(mutex_lkf_);
+     615           0 :   lkf_->A = A_;
+     616           0 :   lkf_->B = B_;
+     617             : 
+     618           0 :   if (is_repredictor_enabled_) {
+     619           0 :     models_.clear();
+     620           0 :     generateRepredictorModels(input_coeff_);
+     621             :   }
+     622           0 : }
+     623             : /*//}*/
+     624             : 
+     625             : /*//{ generateRepredictorModels() */
+     626           0 : void HdgGeneric::generateRepredictorModels(const double input_coeff) {
+     627             : 
+     628           0 :     for (int i = 0; i < hdg_generic::n_states; i++) {
+     629             : 
+     630           0 :       auto lambda_generateA = [input_coeff](const double dt) {
+     631           0 :         A_t A;
+     632             :         // clang-format off
+     633           0 :         A <<
+     634           0 :           1, dt,
+     635           0 :           0, 1-(input_coeff * dt);
+     636             :         // clang-format on
+     637           0 :         return A;
+     638           0 :       };
+     639             : 
+     640           0 :       auto lambda_generateB = [input_coeff]([[maybe_unused]] const double dt) {
+     641           0 :         B_t B = B.Zero();
+     642             :         // clang-format off
+     643           0 :         B <<
+     644             :           0,
+     645           0 :           (input_coeff * dt);
+     646             :         // clang-format on
+     647           0 :         return B;
+     648           0 :       };
+     649             : 
+     650           0 :       H_t H = H_t::Zero();
+     651           0 :       H(i)  = 1;
+     652           0 :       models_.push_back(std::make_shared<varstep_lkf_t>(lambda_generateA, lambda_generateB, H));
+     653             :     }
+     654           0 : }
+     655             : /*//}*/
+     656             : 
+     657             : /*//{ generateA() */
+     658           0 : void HdgGeneric::generateA() {
+     659             : 
+     660             :   // clang-format off
+     661           0 :     A_ <<
+     662           0 :       1, dt_,
+     663           0 :       0, 1-(input_coeff_ * dt_);
+     664             :   // clang-format on
+     665           0 : }
+     666             : /*//}*/
+     667             : 
+     668             : /*//{ generateB() */
+     669           0 : void HdgGeneric::generateB() {
+     670             : 
+     671             :   // clang-format off
+     672           0 :     B_ <<
+     673             :       0,
+     674           0 :       (input_coeff_ * dt_);
+     675             :   // clang-format on
+     676           0 : }
+     677             : /*//}*/
+     678             : 
+     679             : /*//{ getLastValidHdg() */
+     680           0 : double HdgGeneric::getLastValidHdg() const {
+     681           0 :   return mrs_lib::get_mutexed(mutex_last_valid_hdg_, last_valid_hdg_);
+     682             : }
+     683             : /*//}*/
+     684             : 
+     685             : /*//{ callbackReconfigure() */
+     686           0 : void HdgGeneric::callbackReconfigure(HeadingEstimatorConfig &config, [[maybe_unused]] uint32_t level) {
+     687             : 
+     688           0 :   if (!isInitialized()) {
+     689           0 :     return;
+     690             :   }
+     691             : 
+     692           0 :   Q_t Q;
+     693           0 :   Q(POSITION, POSITION) = config.pos;
+     694           0 :   Q(VELOCITY, VELOCITY) = config.vel;
+     695           0 :   mrs_lib::set_mutexed(mtx_Q_, Q, Q_);
+     696             : }
+     697             : /*//}*/
+     698             : 
+     699             : /*//{ getNamespacedName() */
+     700           0 : std::string HdgGeneric::getNamespacedName() const {
+     701           0 :   return parent_state_est_name_ + "/" + getName();
+     702             : }
+     703             : /*//}*/
+     704             : 
+     705             : /*//{ getPrintName() */
+     706           0 : std::string HdgGeneric::getPrintName() const {
+     707           0 :   return ch_->nodelet_name + "/" + parent_state_est_name_ + "/" + getName();
+     708             : }
+     709             : /*//}*/
+     710             : 
+     711             : };  // namespace mrs_uav_state_estimators
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.gcov.overview.html b/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.gcov.overview.html new file mode 100644 index 0000000000..74cfc37a09 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.gcov.overview.html @@ -0,0 +1,198 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.gcov.png b/mrs_uav_state_estimators/src/estimators/heading/hdg_generic.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..609fc109848caebf2d99ac05317361c2b7aea3a5 GIT binary patch literal 2308 zcmV+f3H$bmP)%-Vg0000OP)t-s|NsB0 zs;a7|?_FK${{R500003000620&P%hU00009a7bBm000ie000ie0hKEb8vpRGaN<3|zBMI@TE#PU-5u=>d+Ns*?Q)3)Y7#U^< za!hgbl>^pVqU$;xb4&>cRCc7tofuiptm2xK!Z6lUHdm!sd93MpiVd&RA!d@Fl~ zpE}K2G?iqGhM_VdR6pyU`r7~WGZ$ta&Ya+x7U3D$m>r9PL>W*CSM(xN-$V^S7|4Gb#!04zp`=4&Bg1sW+nIVP3r^J-9 zY3?Kt!o>(+iQOy>%?X#h2|gh#gSR6%nutr1i8iM&yHvY(Y+A{a-N%0RLQcG zo3%nVF!3o@G0Mn3AIUh*dzKW%e3fPtq&Uf0&s2_(5ARDI!uyo9Cv2@L61vDyn7f}^ zC3L7Vo@wuKmkGf^rXJzv!$ZY71jS@#uL$UOE_4+(Q#;wkcFrWR)=5m)uh zb+HE?eQw5UPPEQ{gdkw6!-rdT^bZgJB1abwA6tDQ!R-jrnPo%DaAw9cDHBu)Yu#i+ zP1Vg{;1Wu?+STS1%2Kd;E;SLPRyb>>W-K7G2}3rVzq5>*!*Q6wi%i*5KNz=xnI4+& zkDdnvytAkteH^I_bVGrtGp8^V6KOD#i zPQ5ErI1UrdE;&p8uQ@AtLTGBtJ`?82$_zayD`U6zm~sbY#`<^}W8Wwz%vq0?FmKcO zvINi3PtL`>p3v%N!_<}PYGV8ijegb!WdUZ~aUp&MQ^Y2+fsU^{$JCIk+NsrGWvw~t zd5^*Hv*QAbxSVlZhi}&|g<)oYhozu}W+6yfw>24Q3HKvpkiKhS*(JEXb#4rlYwm>T zm6-1^I37}f!)CV%(>mT=nM|M8H3Hq!78k(rUQ1!C_Bpx~E>~uLzfOp#a^pZ)9f&?8oe(YiuqUj;OT*p?7g*}dNP=(OR~U$UPG7+v z*VVhgMVaDdF7@Nevo3CjE+t6?;bBxDmpMvn;5_qWt!*k>4T=Sq9rxtG)XS(^@oHsu zTNfDAh^VeLTJIF#P;tFyk}j4eg}z_m?`|j0Tp{D)*M7MHoNJa{X(iP3;zhaCb>s># z?`6NYy5`7w;uzb;x2_iM7XDO1B*kJ|)= z@T6L^?Lg7yED^Z2y$sXU_k9Bblrg3$+RCY#O#?eEZMrT2ga>W{J1I|vWSGGtQ@p|e z*>DW)ZGrIU9M_POiO=6gOTk5hq^r9UVfIWamo+7`m=>P?l!gwAJ<@tHwJ?L)UXoTfkBI)7@X8(%$tQ+8eAh!FXr=9>r-!7-`1FvT9umXx=^;Hm zq)x`|`laynkT}Aphcq_$(?fcCNIl1!0QVbuNK%k|dPqa~K0Txgy<%F_Ub76^t~!&5I|yIpB-k9+Y~ zj*s#Ub{9PZPR*3!e_M6cWlZS7Inp8*6}0m;nZV|B&TmAvWMG7F=cd$BsBs5`mn9zy z{#Ys4pMixm417d8?jN+SSmNlkcYQ@dH+blq5Pq7v#$rKrA;6;t>J7!Sf+gG%!>uDk zw_(^b1mHs%(a`+=Y&PAY_o3aq*dTn*?uGdpiO&p3lJb$BU-7_Fdhde9cWW%3UxSn@ z&Hj^X`!kt*AD?Lr4^hUZKF`WX{{3y9X_U@2m)c466->S6^zIC-HArV58FvpcK`Mi1 zqhj9SxToF@W5Ly-ae&88#v9-f(7K0LOeWgfIE=3uz3<>_Rd3dVsivAg$2X?2r-Wu1 z{)6~PWpu|Zzh%c-cglQ+*1WFCe<=X5tI%!zLi+YqSOr~a71oX6 zDXrl#kn!wDaTXru-}4a;J)Dda?_u}jctYi19|;jDal-FdTugLio<3>bXFn=6{UsNw z!WEA2*>$W0Lr4clh*lMDfky?ELUbgkOdC6@jENlx>#8EVZ3{m$97!{tK0V~w+KO;lCgB|;PcuV63@p1AXe#EQQ@Lwx4@#|2eS~*9UAwGCf zBm!^qxbRRHLQ|Wx3e}51U*tm7i(8kbwB^67^&p`k!SMRy-lydU8fxRu|JF?xD1$Tk znBvl65CxtkERd11v%8>YxM+&fHELSNw`-=nfAW@EtGB~Ct=UjfYi(_FJ*1f6Qmx}g eLmztQruYv!>Z}Ez%7c&q0000 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/heading/hdg_passthrough.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/heading - hdg_passthrough.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9113368.4 %
Date:2024-04-17 23:52:03Functions:122352.2 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::HdgPassthrough::setCovarianceMatrix(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&)0
mrs_uav_state_estimators::HdgPassthrough::pause()0
mrs_uav_state_estimators::HdgPassthrough::reset()0
mrs_uav_state_estimators::HdgPassthrough::setState(double const&, int const&, int const&)0
mrs_uav_state_estimators::HdgPassthrough::setStates(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)0
mrs_uav_state_estimators::HdgPassthrough::getCovariance(int const&) const0
mrs_uav_state_estimators::HdgPassthrough::getCovariance(int const&, int const&) const0
mrs_uav_state_estimators::HdgPassthrough::getInnovation(int const&) const0
mrs_uav_state_estimators::HdgPassthrough::getInnovation(int const&, int const&) const0
mrs_uav_state_estimators::HdgPassthrough::getLastValidHdg() const0
mrs_uav_state_estimators::HdgPassthrough::getState(int const&, int const&) const0
mrs_uav_state_estimators::HdgPassthrough::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)97
mrs_uav_state_estimators::HdgPassthrough::start()159
mrs_uav_state_estimators::HdgPassthrough::getNamespacedName[abi:cxx11]() const194
mrs_uav_state_estimators::HdgPassthrough::getPrintName[abi:cxx11]() const570
mrs_uav_state_estimators::HdgPassthrough::callbackAngularVelocity(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)187330
mrs_uav_state_estimators::HdgPassthrough::getCovarianceMatrix() const189871
mrs_uav_state_estimators::HdgPassthrough::getStates() const189890
mrs_uav_state_estimators::HdgPassthrough::timerUpdate(ros::TimerEvent const&)189893
mrs_uav_state_estimators::HdgPassthrough::callbackOrientation(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)191887
mrs_uav_state_estimators::HdgPassthrough::timerCheckHealth(ros::TimerEvent const&)192863
mrs_uav_state_estimators::HdgPassthrough::setState(double const&, int const&)379208
mrs_uav_state_estimators::HdgPassthrough::getState(int const&) const662386
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/src/estimators/heading/hdg_passthrough.cpp.func.html b/mrs_uav_state_estimators/src/estimators/heading/hdg_passthrough.cpp.func.html new file mode 100644 index 0000000000..16a95d0f3b --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/heading/hdg_passthrough.cpp.func.html @@ -0,0 +1,172 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/heading/hdg_passthrough.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/src/estimators/heading - hdg_passthrough.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9113368.4 %
Date:2024-04-17 23:52:03Functions:122352.2 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::HdgPassthrough::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)97
mrs_uav_state_estimators::HdgPassthrough::timerUpdate(ros::TimerEvent const&)189893
mrs_uav_state_estimators::HdgPassthrough::timerCheckHealth(ros::TimerEvent const&)192863
mrs_uav_state_estimators::HdgPassthrough::callbackOrientation(boost::shared_ptr<geometry_msgs::QuaternionStamped_<std::allocator<void> > const>)191887
mrs_uav_state_estimators::HdgPassthrough::setCovarianceMatrix(Eigen::Matrix<double, 2, 2, 0, 2, 2> const&)0
mrs_uav_state_estimators::HdgPassthrough::callbackAngularVelocity(boost::shared_ptr<geometry_msgs::Vector3Stamped_<std::allocator<void> > const>)187330
mrs_uav_state_estimators::HdgPassthrough::pause()0
mrs_uav_state_estimators::HdgPassthrough::reset()0
mrs_uav_state_estimators::HdgPassthrough::start()159
mrs_uav_state_estimators::HdgPassthrough::setState(double const&, int const&)379208
mrs_uav_state_estimators::HdgPassthrough::setState(double const&, int const&, int const&)0
mrs_uav_state_estimators::HdgPassthrough::setStates(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&)0
mrs_uav_state_estimators::HdgPassthrough::getPrintName[abi:cxx11]() const570
mrs_uav_state_estimators::HdgPassthrough::getCovariance(int const&) const0
mrs_uav_state_estimators::HdgPassthrough::getCovariance(int const&, int const&) const0
mrs_uav_state_estimators::HdgPassthrough::getInnovation(int const&) const0
mrs_uav_state_estimators::HdgPassthrough::getInnovation(int const&, int const&) const0
mrs_uav_state_estimators::HdgPassthrough::getLastValidHdg() const0
mrs_uav_state_estimators::HdgPassthrough::getNamespacedName[abi:cxx11]() const194
mrs_uav_state_estimators::HdgPassthrough::getCovarianceMatrix() const189871
mrs_uav_state_estimators::HdgPassthrough::getState(int const&) const662386
mrs_uav_state_estimators::HdgPassthrough::getState(int const&, int const&) const0
mrs_uav_state_estimators::HdgPassthrough::getStates() const189890
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Current view:top level - mrs_uav_state_estimators/src/estimators/heading - hdg_passthrough.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9113368.4 %
Date:2024-04-17 23:52:03Functions:122352.2 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #define VERSION "0.0.6.0"
+       2             : 
+       3             : /* includes //{ */
+       4             : 
+       5             : #include <mrs_uav_state_estimators/estimators/heading/hdg_passthrough.h>
+       6             : 
+       7             : //}
+       8             : 
+       9             : namespace mrs_uav_state_estimators
+      10             : 
+      11             : {
+      12             : 
+      13             : /* initialize() //{*/
+      14          97 : void HdgPassthrough::initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) {
+      15             : 
+      16          97 :   ch_ = ch;
+      17          97 :   ph_ = ph;
+      18             : 
+      19          97 :   ns_frame_id_ = ch_->uav_name + "/" + frame_id_;
+      20             : 
+      21          97 :   hdg_state_      = states_t::Zero();
+      22          97 :   hdg_covariance_ = covariance_t::Zero();
+      23             : 
+      24          97 :   innovation_ << 
+      25          97 :     0, 0;
+      26             : 
+      27             : 
+      28             :   // | --------------- param loader initialization --------------- |
+      29             : 
+      30          97 :   if (is_core_plugin_) {
+      31             : 
+      32          97 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/private/" + parent_state_est_name_ + "/" + getName() + ".yaml");
+      33          97 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/public/" + parent_state_est_name_ + "/" + getName() + ".yaml");
+      34             :   }
+      35             : 
+      36          97 :   ph->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getNamespacedName() + "/");
+      37             : 
+      38             :   // | --------------------- load parameters -------------------- |
+      39          97 :   ph->param_loader->loadParam("max_flight_z", max_flight_z_);
+      40             : 
+      41          97 :   ph->param_loader->loadParam("topics/orientation", orient_topic_);
+      42          97 :   ph->param_loader->loadParam("topics/angular_velocity", ang_vel_topic_);
+      43             : 
+      44          97 :   if (!ph->param_loader->loadedSuccessfully()) {
+      45           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getPrintName().c_str());
+      46           0 :     ros::shutdown();
+      47             :   }
+      48             : 
+      49             :   // | ------------------ timers initialization ----------------- |
+      50          97 :   timer_update_       = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &HdgPassthrough::timerUpdate, this, false, false);  // not running after init
+      51          97 :   timer_check_health_ = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &HdgPassthrough::timerCheckHealth, this);
+      52             : 
+      53             :   // | --------------- subscribers initialization --------------- |
+      54             :   // subscriber to odometry
+      55         194 :   mrs_lib::SubscribeHandlerOptions shopts;
+      56          97 :   shopts.nh                 = nh;
+      57          97 :   shopts.node_name          = getPrintName();
+      58          97 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+      59          97 :   shopts.threadsafe         = true;
+      60          97 :   shopts.autostart          = true;
+      61          97 :   shopts.queue_size         = 10;
+      62          97 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+      63             : 
+      64         194 :   sh_orientation_ = mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped>(shopts, "/" + ch_->uav_name + "/" + orient_topic_,
+      65          97 :                                                                                 &HdgPassthrough::callbackOrientation, this);
+      66         194 :   sh_ang_vel_     = mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped>(shopts, "/" + ch_->uav_name + "/" + ang_vel_topic_,
+      67          97 :                                                                          &HdgPassthrough::callbackAngularVelocity, this);
+      68             : 
+      69             :   // | ---------------- publishers initialization --------------- |
+      70          97 :   if (ch_->debug_topics.output) {
+      71          97 :     ph_output_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput>(nh, getNamespacedName() + "/output", 10);
+      72             :   }
+      73          97 :   if (ch_->debug_topics.diag) {
+      74           0 :     ph_diagnostics_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics>(nh, getNamespacedName() + "/diagnostics", 10);
+      75             :   }
+      76             : 
+      77             :   // | ------------------ finish initialization ----------------- |
+      78             : 
+      79          97 :   if (changeState(INITIALIZED_STATE)) {
+      80          97 :     ROS_INFO("[%s]: Estimator initialized, version %s", getPrintName().c_str(), VERSION);
+      81             :   } else {
+      82           0 :     ROS_INFO("[%s]: Estimator could not be initialized", getPrintName().c_str());
+      83             :   }
+      84          97 : }
+      85             : /*//}*/
+      86             : 
+      87             : /*//{ start() */
+      88         159 : bool HdgPassthrough::start(void) {
+      89             : 
+      90         159 :   if (isInState(READY_STATE)) {
+      91          97 :     timer_update_.start();
+      92          97 :     changeState(STARTED_STATE);
+      93          97 :     return true;
+      94             : 
+      95             :   } else {
+      96          62 :     ROS_WARN_THROTTLE(1.0, "[%s]: Estimator must be in READY_STATE to start it", getPrintName().c_str());
+      97          62 :     return false;
+      98             :   }
+      99             : }
+     100             : /*//}*/
+     101             : 
+     102             : /*//{ pause() */
+     103           0 : bool HdgPassthrough::pause(void) {
+     104             : 
+     105           0 :   if (isInState(RUNNING_STATE)) {
+     106           0 :     changeState(STOPPED_STATE);
+     107           0 :     return true;
+     108             : 
+     109             :   } else {
+     110           0 :     return false;
+     111             :   }
+     112             : }
+     113             : /*//}*/
+     114             : 
+     115             : /*//{ reset() */
+     116           0 : bool HdgPassthrough::reset(void) {
+     117             : 
+     118           0 :   if (!isInitialized()) {
+     119           0 :     ROS_ERROR("[%s]: Cannot reset uninitialized estimator", getPrintName().c_str());
+     120           0 :     return false;
+     121             :   }
+     122             : 
+     123           0 :   changeState(STOPPED_STATE);
+     124             : 
+     125           0 :   ROS_INFO("[%s]: Estimator reset", getPrintName().c_str());
+     126             : 
+     127           0 :   return true;
+     128             : }
+     129             : /*//}*/
+     130             : 
+     131             : /*//{ callbackOrientation() */
+     132      191887 : void HdgPassthrough::callbackOrientation(const geometry_msgs::QuaternionStamped::ConstPtr msg) {
+     133             : 
+     134      191887 :   if (!isInitialized()) {
+     135           8 :     return;
+     136             :   }
+     137             : 
+     138             :   double hdg;
+     139             :   try {
+     140      191875 :     hdg = mrs_lib::AttitudeConverter(msg->quaternion).getHeading();
+     141             :   }
+     142           0 :   catch (...) {
+     143           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: failed getting heading", getPrintName().c_str());
+     144             :   }
+     145             : 
+     146      191880 :   setState(hdg, POSITION);
+     147             : 
+     148      191829 :   if (!isError()) {
+     149      191766 :     mrs_lib::set_mutexed(mutex_last_valid_hdg_, hdg, last_valid_hdg_);
+     150             :   }
+     151             : }
+     152             : /*//}*/
+     153             : 
+     154             : /*//{ callbackAngularVelocity() */
+     155      187330 : void HdgPassthrough::callbackAngularVelocity(const geometry_msgs::Vector3Stamped::ConstPtr msg) {
+     156             : 
+     157      187330 :   if (!isInitialized() || !sh_orientation_.hasMsg()) {
+     158           2 :     return;
+     159             :   }
+     160             : 
+     161             :   double hdg_rate;
+     162             :   try {
+     163      187312 :     hdg_rate = mrs_lib::AttitudeConverter(sh_orientation_.getMsg()->quaternion).getHeadingRate(msg->vector);
+     164             :   }
+     165           0 :   catch (...) {
+     166           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: failed getting heading", getPrintName().c_str());
+     167             :   }
+     168             : 
+     169      187061 :   setState(hdg_rate, VELOCITY);
+     170             : }
+     171             : /*//}*/
+     172             : 
+     173             : /* timerUpdate() //{*/
+     174      189893 : void HdgPassthrough::timerUpdate([[maybe_unused]] const ros::TimerEvent &event) {
+     175             : 
+     176             : 
+     177      189893 :   if (!isInitialized()) {
+     178           0 :     return;
+     179             :   }
+     180             : 
+     181      189874 :   publishOutput();
+     182      189893 :   publishDiagnostics();
+     183             : }
+     184             : /*//}*/
+     185             : 
+     186             : /*//{ timerCheckHealth() */
+     187      192863 : void HdgPassthrough::timerCheckHealth([[maybe_unused]] const ros::TimerEvent &event) {
+     188             : 
+     189      192863 :   if (!isInitialized()) {
+     190          13 :     return;
+     191             :   }
+     192             : 
+     193      192849 :   if (isInState(INITIALIZED_STATE) && is_orient_ready_ && is_ang_vel_ready_) {
+     194             : 
+     195          97 :     changeState(READY_STATE);
+     196          97 :     ROS_INFO_THROTTLE(1.0, "[%s]: Ready to start", getPrintName().c_str());
+     197             :   }
+     198             : 
+     199      192834 :   if (isInState(STARTED_STATE)) {
+     200             : 
+     201          97 :     ROS_INFO_THROTTLE(1.0, "[%s]: Estimator Running", getPrintName().c_str());
+     202          97 :     changeState(RUNNING_STATE);
+     203             :   }
+     204             : 
+     205      192858 :   if (sh_orientation_.hasMsg()) {
+     206      191477 :     is_orient_ready_ = true;
+     207             :   } else {
+     208        1388 :     ROS_WARN_THROTTLE(1.0, "[%s]: has not received orientation yet", getPrintName().c_str());
+     209             :   }
+     210             : 
+     211      192879 :   if (sh_ang_vel_.hasMsg()) {
+     212      190042 :     is_ang_vel_ready_ = true;
+     213             :   } else {
+     214        2735 :     ROS_WARN_THROTTLE(1.0, "[%s]: has not received angular velocity yet", getPrintName().c_str());
+     215             :   }
+     216             : }
+     217             : /*//}*/
+     218             : 
+     219             : /*//{ getState() */
+     220           0 : double HdgPassthrough::getState(const int &state_id_in, const int &axis_in) const {
+     221           0 :   return getState(stateIdToIndex(state_id_in, axis_in));
+     222             : }
+     223             : 
+     224      662386 : double HdgPassthrough::getState(const int &state_idx_in) const {
+     225      662386 :   return mrs_lib::get_mutexed(mtx_hdg_state_, hdg_state_(state_idx_in));
+     226             : }
+     227             : /*//}*/
+     228             : 
+     229             : /*//{ setState() */
+     230           0 : void HdgPassthrough::setState(const double &state_in, const int &state_id_in, const int &axis_in) {
+     231           0 :   setState(state_in, stateIdToIndex(state_id_in, axis_in));
+     232           0 : }
+     233             : 
+     234      379208 : void HdgPassthrough::setState(const double &state_in, const int &state_idx_in) {
+     235             : 
+     236      379208 :   const double prev_hdg_state   = mrs_lib::get_mutexed(mtx_hdg_state_, hdg_state_(state_idx_in));
+     237      379005 :   prev_hdg_state_(state_idx_in) = prev_hdg_state;
+     238      379025 :   mrs_lib::set_mutexed(mtx_hdg_state_, state_in, hdg_state_(state_idx_in));
+     239             : 
+     240      378943 :   const double innovation = mrs_lib::geometry::radians::dist(mrs_lib::geometry::radians(state_in), mrs_lib::geometry::radians(prev_hdg_state));
+     241      378940 :   mrs_lib::set_mutexed(mtx_innovation_, innovation, innovation_(state_idx_in));
+     242      379010 : }
+     243             : /*//}*/
+     244             : 
+     245             : /*//{ getStates() */
+     246      189890 : HdgPassthrough::states_t HdgPassthrough::getStates(void) const {
+     247      189890 :   return mrs_lib::get_mutexed(mtx_hdg_state_, hdg_state_);
+     248             : }
+     249             : /*//}*/
+     250             : 
+     251             : /*//{ setStates() */
+     252           0 : void HdgPassthrough::setStates(const states_t &states_in) {
+     253           0 :   mrs_lib::set_mutexed(mtx_hdg_state_, states_in, hdg_state_);
+     254           0 : }
+     255             : /*//}*/
+     256             : 
+     257             : /*//{ getCovariance() */
+     258           0 : double HdgPassthrough::getCovariance(const int &state_id_in, const int &axis_in) const {
+     259           0 :   return getCovariance(stateIdToIndex(state_id_in, axis_in));
+     260             : }
+     261             : 
+     262           0 : double HdgPassthrough::getCovariance(const int &state_idx_in) const {
+     263           0 :   return mrs_lib::get_mutexed(mtx_hdg_covariance_, hdg_covariance_(state_idx_in, state_idx_in));
+     264             : }
+     265             : /*//}*/
+     266             : 
+     267             : /*//{ getCovarianceMatrix() */
+     268      189871 : HdgPassthrough::covariance_t HdgPassthrough::getCovarianceMatrix(void) const {
+     269      189871 :   return mrs_lib::get_mutexed(mtx_hdg_covariance_, hdg_covariance_);
+     270             : }
+     271             : /*//}*/
+     272             : 
+     273             : /*//{ setCovarianceMatrix() */
+     274           0 : void HdgPassthrough::setCovarianceMatrix(const covariance_t &cov_in) {
+     275           0 :   mrs_lib::set_mutexed(mtx_hdg_covariance_, cov_in, hdg_covariance_);
+     276           0 : }
+     277             : /*//}*/
+     278             : 
+     279             : /*//{ getInnovation() */
+     280           0 : double HdgPassthrough::getInnovation(const int &state_idx) const {
+     281           0 :   return mrs_lib::get_mutexed(mtx_innovation_, innovation_(state_idx));
+     282             : }
+     283             : 
+     284           0 : double HdgPassthrough::getInnovation(const int &state_id_in, const int &axis_in) const {
+     285           0 :   return getInnovation(stateIdToIndex(state_id_in, axis_in));
+     286             : }
+     287             : /*//}*/
+     288             : 
+     289             : /*//{ getLastValidHdg() */
+     290           0 : double HdgPassthrough::getLastValidHdg() const {
+     291           0 :   return mrs_lib::get_mutexed(mutex_last_valid_hdg_, last_valid_hdg_);
+     292             : }
+     293             : /*//}*/
+     294             : 
+     295             : /*//{ getNamespacedName() */
+     296         194 : std::string HdgPassthrough::getNamespacedName() const {
+     297         388 :   return parent_state_est_name_ + "/" + getName();
+     298             : }
+     299             : /*//}*/
+     300             : 
+     301             : /*//{ getPrintName() */
+     302         570 : std::string HdgPassthrough::getPrintName() const {
+     303        1140 :   return ch_->nodelet_name + "/" + parent_state_est_name_ + "/" + getName();
+     304             : }
+     305             : /*//}*/
+     306             : 
+     307             : };  // namespace mrs_uav_state_estimators
+
+
+
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Current view:top level - mrs_uav_state_estimators/src/estimators/headingHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9149018.6 %
Date:2024-04-17 23:52:03Functions:125721.1 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
hdg_generic.cpp +
0.0%
+
0.0 %0 / 3570.0 %0 / 34
hdg_passthrough.cpp +
68.4%68.4%
+
68.4 %91 / 13352.2 %12 / 23
<unnamed>68.4 %91 / 13352.2 %12 / 23
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Current view:top level - mrs_uav_state_estimators/src/estimators/headingHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9149018.6 %
Date:2024-04-17 23:52:03Functions:125721.1 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
hdg_generic.cpp +
0.0%
+
0.0 %0 / 3570.0 %0 / 34
hdg_passthrough.cpp +
68.4%68.4%
+
68.4 %91 / 13352.2 %12 / 23
<unnamed>68.4 %91 / 13352.2 %12 / 23
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Test:MRS UAV System - Test coverage reportLines:9149018.6 %
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Current view:top level - mrs_uav_state_estimators/src/estimators/headingHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9149018.6 %
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Test:MRS UAV System - Test coverage reportLines:9149018.6 %
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Test:MRS UAV System - Test coverage reportLines:24143755.1 %
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Test:MRS UAV System - Test coverage reportLines:24143755.1 %
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Current view:top level - mrs_uav_state_estimators/src/estimators/lateralHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:24143755.1 %
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Test:MRS UAV System - Test coverage reportLines:24143755.1 %
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Test:MRS UAV System - Test coverage reportLines:24143755.1 %
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Test:MRS UAV System - Test coverage reportLines:24143755.1 %
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Current view:top level - mrs_uav_state_estimators/src/estimators/lateral - lat_generic.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:24143755.1 %
Date:2024-04-17 23:52:03Functions:253375.8 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::LatGeneric::timerCheckHealth(ros::TimerEvent const&)0
mrs_uav_state_estimators::LatGeneric::setCovarianceMatrix(Eigen::Matrix<double, 6, 6, 0, 6, 6> const&)0
mrs_uav_state_estimators::LatGeneric::generateRepredictorModels(double)0
mrs_uav_state_estimators::LatGeneric::pause()0
mrs_uav_state_estimators::LatGeneric::reset()0
mrs_uav_state_estimators::LatGeneric::setStates(Eigen::Matrix<double, 6, 1, 0, 6, 1> const&)0
mrs_uav_state_estimators::LatGeneric::generateRepredictorModels(double)::{lambda(double)#2}::operator()(double) const0
mrs_uav_state_estimators::LatGeneric::generateRepredictorModels(double)::{lambda(double)#1}::operator()(double) const0
mrs_uav_state_estimators::LatGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)97
mrs_uav_state_estimators::LatGeneric::isConverged()97
mrs_uav_state_estimators::LatGeneric::callbackReconfigure(mrs_uav_state_estimators::LateralEstimatorConfig&, unsigned int)97
mrs_uav_state_estimators::LatGeneric::setInputCoeff(double const&)188
mrs_uav_state_estimators::LatGeneric::setState(double const&, int const&)330
mrs_uav_state_estimators::LatGeneric::setState(double const&, int const&, int const&)330
mrs_uav_state_estimators::LatGeneric::getNamespacedName[abi:cxx11]() const586
mrs_uav_state_estimators::LatGeneric::getPrintName[abi:cxx11]() const909
mrs_uav_state_estimators::LatGeneric::start()3942
mrs_uav_state_estimators::LatGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(int, int)#1}::operator()(int, int) const10839
mrs_uav_state_estimators::LatGeneric::setDt(double const&)171762
mrs_uav_state_estimators::LatGeneric::getCovarianceMatrix() const171770
mrs_uav_state_estimators::LatGeneric::getStates() const171771
mrs_uav_state_estimators::LatGeneric::generateA()172047
mrs_uav_state_estimators::LatGeneric::generateB()172055
mrs_uav_state_estimators::LatGeneric::timerUpdate(ros::TimerEvent const&)192642
mrs_uav_state_estimators::LatGeneric::doCorrection(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, double, mrs_uav_managers::estimation_manager::StateId_t const&, ros::Time const&)193471
mrs_uav_state_estimators::LatGeneric::doCorrection(mrs_uav_state_estimators::Correction<2>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t const&)193557
mrs_uav_state_estimators::LatGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(mrs_uav_state_estimators::Correction<2>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t)#2}::operator()(mrs_uav_state_estimators::Correction<2>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t) const193560
mrs_uav_state_estimators::LatGeneric::getInnovation(int const&) const364905
mrs_uav_state_estimators::LatGeneric::getInnovation(int const&, int const&) const365079
mrs_uav_state_estimators::LatGeneric::getCovariance(int const&) const730313
mrs_uav_state_estimators::LatGeneric::getCovariance(int const&, int const&) const730430
mrs_uav_state_estimators::LatGeneric::getState(int const&) const1471506
mrs_uav_state_estimators::LatGeneric::getState(int const&, int const&) const1471959
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LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/lateral - lat_generic.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:24143755.1 %
Date:2024-04-17 23:52:03Functions:253375.8 %
Legend: Lines: + hit + not hit +
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+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::LatGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)97
mrs_uav_state_estimators::LatGeneric::isConverged()97
mrs_uav_state_estimators::LatGeneric::timerUpdate(ros::TimerEvent const&)192642
mrs_uav_state_estimators::LatGeneric::doCorrection(Eigen::Matrix<double, 2, 1, 0, 2, 1> const&, double, mrs_uav_managers::estimation_manager::StateId_t const&, ros::Time const&)193471
mrs_uav_state_estimators::LatGeneric::doCorrection(mrs_uav_state_estimators::Correction<2>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t const&)193557
mrs_uav_state_estimators::LatGeneric::setInputCoeff(double const&)188
mrs_uav_state_estimators::LatGeneric::timerCheckHealth(ros::TimerEvent const&)0
mrs_uav_state_estimators::LatGeneric::callbackReconfigure(mrs_uav_state_estimators::LateralEstimatorConfig&, unsigned int)97
mrs_uav_state_estimators::LatGeneric::setCovarianceMatrix(Eigen::Matrix<double, 6, 6, 0, 6, 6> const&)0
mrs_uav_state_estimators::LatGeneric::generateRepredictorModels(double)0
mrs_uav_state_estimators::LatGeneric::pause()0
mrs_uav_state_estimators::LatGeneric::reset()0
mrs_uav_state_estimators::LatGeneric::setDt(double const&)171762
mrs_uav_state_estimators::LatGeneric::start()3942
mrs_uav_state_estimators::LatGeneric::setState(double const&, int const&)330
mrs_uav_state_estimators::LatGeneric::setState(double const&, int const&, int const&)330
mrs_uav_state_estimators::LatGeneric::generateA()172047
mrs_uav_state_estimators::LatGeneric::generateB()172055
mrs_uav_state_estimators::LatGeneric::setStates(Eigen::Matrix<double, 6, 1, 0, 6, 1> const&)0
mrs_uav_state_estimators::LatGeneric::getPrintName[abi:cxx11]() const909
mrs_uav_state_estimators::LatGeneric::getCovariance(int const&) const730313
mrs_uav_state_estimators::LatGeneric::getCovariance(int const&, int const&) const730430
mrs_uav_state_estimators::LatGeneric::getInnovation(int const&) const364905
mrs_uav_state_estimators::LatGeneric::getInnovation(int const&, int const&) const365079
mrs_uav_state_estimators::LatGeneric::getNamespacedName[abi:cxx11]() const586
mrs_uav_state_estimators::LatGeneric::getCovarianceMatrix() const171770
mrs_uav_state_estimators::LatGeneric::getState(int const&) const1471506
mrs_uav_state_estimators::LatGeneric::getState(int const&, int const&) const1471959
mrs_uav_state_estimators::LatGeneric::getStates() const171771
mrs_uav_state_estimators::LatGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(mrs_uav_state_estimators::Correction<2>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t)#2}::operator()(mrs_uav_state_estimators::Correction<2>::MeasurementStamped const&, double, mrs_uav_managers::estimation_manager::StateId_t) const193560
mrs_uav_state_estimators::LatGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda(int, int)#1}::operator()(int, int) const10839
mrs_uav_state_estimators::LatGeneric::generateRepredictorModels(double)::{lambda(double)#2}::operator()(double) const0
mrs_uav_state_estimators::LatGeneric::generateRepredictorModels(double)::{lambda(double)#1}::operator()(double) const0
+
+
+ + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp.gcov.frameset.html b/mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp.gcov.frameset.html new file mode 100644 index 0000000000..20cba12156 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp.gcov.html b/mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp.gcov.html new file mode 100644 index 0000000000..a5a04beb4f --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp.gcov.html @@ -0,0 +1,887 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/src/estimators/lateral - lat_generic.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:24143755.1 %
Date:2024-04-17 23:52:03Functions:253375.8 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #define VERSION "0.0.0.1"
+       2             : 
+       3             : /* includes //{ */
+       4             : 
+       5             : #include <mrs_uav_state_estimators/estimators/lateral/lat_generic.h>
+       6             : 
+       7             : //}
+       8             : 
+       9             : namespace mrs_uav_state_estimators
+      10             : {
+      11             : 
+      12             : /* initialize() //{*/
+      13          97 : void LatGeneric::initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) {
+      14             : 
+      15          97 :   ch_ = ch;
+      16          97 :   ph_ = ph;
+      17             : 
+      18          97 :   ns_frame_id_ = ch_->uav_name + "/" + frame_id_;
+      19             : 
+      20             :   // clang-format off
+      21          97 :   dt_ = 0.01;
+      22          97 :   input_coeff_ = 10;
+      23          97 :   default_input_coeff_ = 10;
+      24             : 
+      25          97 :   generateA();
+      26          97 :   generateB();
+      27             : 
+      28          97 :   H_ <<
+      29          97 :     1, 0, 0, 0, 0, 0,
+      30          97 :     0, 1, 0, 0, 0, 0;
+      31             : 
+      32          97 :   innovation_ << 
+      33          97 :     0, 0;
+      34             : 
+      35             : 
+      36             :   // clang-format on
+      37             : 
+      38             :   // | --------------- initialize parameter loader -------------- |
+      39             : 
+      40          97 :   if (is_core_plugin_) {
+      41             : 
+      42          97 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/private/" + parent_state_est_name_ + "/" + getName() + ".yaml");
+      43          97 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/public/" + parent_state_est_name_ + "/" + getName() + ".yaml");
+      44             :   }
+      45             : 
+      46          97 :   ph->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getNamespacedName() + "/");
+      47             : 
+      48             :   // | --------------------- load parameters -------------------- |
+      49          97 :   ph->param_loader->loadParam("hdg_source_topic", hdg_source_topic_);
+      50          97 :   ph->param_loader->loadParam("max_flight_z", max_flight_z_);
+      51          97 :   ph->param_loader->loadParam("innovation/limit", pos_innovation_limit_);
+      52          97 :   ph->param_loader->loadParam("innovation/action", exc_innovation_action_name_);
+      53          97 :   exc_innovation_action_ = map_exc_inno_action.at(exc_innovation_action_name_);
+      54          97 :   ph->param_loader->loadParam("repredictor/enabled", is_repredictor_enabled_);
+      55          97 :   if (is_repredictor_enabled_) {
+      56           0 :     ph->param_loader->loadParam("repredictor/buffer_size", rep_buffer_size_);
+      57             :   }
+      58             : 
+      59             :   // | --------------- corrections initialization --------------- |
+      60          97 :   ph->param_loader->loadParam("corrections", correction_names_);
+      61             : 
+      62         198 :   for (auto corr_name : correction_names_) {
+      63         101 :     corrections_.push_back(std::make_shared<Correction<lat_generic::n_measurements>>(
+      64       11041 :         nh, getNamespacedName(), corr_name, ns_frame_id_, EstimatorType_t::LATERAL, ch_, ph_, [this](int a, int b) { return this->getState(a, b); },
+      65      193560 :         [this](const Correction<lat_generic::n_measurements>::MeasurementStamped &meas, const double R, const StateId_t state) {
+      66      193560 :           return this->doCorrection(meas, R, state);
+      67             :         }));
+      68             :   }
+      69             : 
+      70             :   // | ------- check if all parameters loaded successfully ------ |
+      71          97 :   if (!ph->param_loader->loadedSuccessfully()) {
+      72           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getPrintName().c_str());
+      73           0 :     ros::shutdown();
+      74             :   }
+      75             : 
+      76          97 :   ph->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getNamespacedName() + "/");
+      77             : 
+      78             :   // | ----------- initialize process noise covariance ---------- |
+      79          97 :   Q_ = Q_t::Zero();
+      80             :   double tmp_noise;
+      81          97 :   ph->param_loader->loadParam("process_noise/pos", tmp_noise);
+      82          97 :   Q_(stateIdToIndex(POSITION, AXIS_X), stateIdToIndex(POSITION, AXIS_X)) = tmp_noise;
+      83          97 :   Q_(stateIdToIndex(POSITION, AXIS_Y), stateIdToIndex(POSITION, AXIS_Y)) = tmp_noise;
+      84          97 :   ph->param_loader->loadParam("process_noise/vel", tmp_noise);
+      85          97 :   Q_(stateIdToIndex(VELOCITY, AXIS_X), stateIdToIndex(VELOCITY, AXIS_X)) = tmp_noise;
+      86          97 :   Q_(stateIdToIndex(VELOCITY, AXIS_Y), stateIdToIndex(VELOCITY, AXIS_Y)) = tmp_noise;
+      87          97 :   ph->param_loader->loadParam("process_noise/acc", tmp_noise);
+      88          97 :   Q_(stateIdToIndex(ACCELERATION, AXIS_X), stateIdToIndex(ACCELERATION, AXIS_X)) = tmp_noise;
+      89          97 :   Q_(stateIdToIndex(ACCELERATION, AXIS_Y), stateIdToIndex(ACCELERATION, AXIS_Y)) = tmp_noise;
+      90             : 
+      91             :   // | ------------- initialize dynamic reconfigure ------------- |
+      92             :   drmgr_ =
+      93          97 :       std::make_unique<drmgr_t>(ros::NodeHandle("~/" + getNamespacedName()), true, getPrintName(), boost::bind(&LatGeneric::callbackReconfigure, this, _1, _2));
+      94          97 :   drmgr_->config.pos = Q_(stateIdToIndex(POSITION, AXIS_X), stateIdToIndex(POSITION, AXIS_X));
+      95          97 :   drmgr_->config.vel = Q_(stateIdToIndex(VELOCITY, AXIS_X), stateIdToIndex(VELOCITY, AXIS_X));
+      96          97 :   drmgr_->config.acc = Q_(stateIdToIndex(ACCELERATION, AXIS_X), stateIdToIndex(ACCELERATION, AXIS_X));
+      97          97 :   drmgr_->update_config(drmgr_->config);
+      98             : 
+      99             :   // | --------------- Kalman filter intialization -------------- |
+     100          97 :   const x_t        x0 = x_t::Zero();
+     101          97 :   const P_t        P0 = 1e3 * P_t::Identity();
+     102          97 :   const statecov_t sc0({x0, P0});
+     103          97 :   sc_ = sc0;
+     104             : 
+     105          97 :   lkf_ = std::make_shared<lkf_t>(A_, B_, H_);
+     106          97 :   if (is_repredictor_enabled_) {
+     107             : 
+     108           0 :     generateRepredictorModels(input_coeff_);
+     109             : 
+     110           0 :     const u_t       u0 = u_t::Zero();
+     111           0 :     const ros::Time t0 = ros::Time::now();
+     112           0 :     lkf_rep_           = std::make_unique<mrs_lib::Repredictor<varstep_lkf_t>>(x0, P0, u0, Q_, t0, models_.at(0), rep_buffer_size_);
+     113             : 
+     114           0 :     setDt(1.0 / ch_->desired_uav_state_rate);
+     115             :   }
+     116             : 
+     117             :   // | ------------------ timers initialization ----------------- |
+     118          97 :   timer_update_ = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &LatGeneric::timerUpdate, this);  // not running after init
+     119             :   /* timer_check_health_       = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &LatGeneric::timerCheckHealth, this); */
+     120             : 
+     121             :   // | --------------- subscribers initialization --------------- |
+     122             :   // subscriber to odometry
+     123         194 :   mrs_lib::SubscribeHandlerOptions shopts;
+     124          97 :   shopts.nh                 = nh;
+     125          97 :   shopts.node_name          = getPrintName();
+     126          97 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     127          97 :   shopts.threadsafe         = true;
+     128          97 :   shopts.autostart          = true;
+     129          97 :   shopts.queue_size         = 10;
+     130          97 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     131             : 
+     132          97 :   sh_control_input_ = mrs_lib::SubscribeHandler<mrs_msgs::EstimatorInput>(shopts, "control_input_in");
+     133             :   sh_hdg_state_ =
+     134          97 :       mrs_lib::SubscribeHandler<mrs_msgs::EstimatorOutput>(shopts, hdg_source_topic_);  // for transformation of desired accelerations from body to global frame
+     135             : 
+     136             :   // | ---------------- publishers initialization --------------- |
+     137          97 :   if (ch_->debug_topics.input) {
+     138          97 :     ph_input_ = mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped>(nh, getNamespacedName() + "/input", 10);
+     139             :   }
+     140          97 :   if (ch_->debug_topics.output) {
+     141          97 :     ph_output_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorOutput>(nh, getNamespacedName() + "/output", 10);
+     142             :   }
+     143          97 :   if (ch_->debug_topics.diag) {
+     144           0 :     ph_diagnostics_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics>(nh, getNamespacedName() + "/diagnostics", 10);
+     145             :   }
+     146             : 
+     147             :   // | ------------------ finish initialization ----------------- |
+     148             : 
+     149          97 :   if (changeState(INITIALIZED_STATE)) {
+     150          97 :     ROS_INFO("[%s]: Estimator initialized, version %s", getPrintName().c_str(), VERSION);
+     151             :   } else {
+     152           0 :     ROS_INFO("[%s]: Estimator could not be initialized", getPrintName().c_str());
+     153             :   }
+     154          97 : }
+     155             : /*//}*/
+     156             : 
+     157             : /*//{ start() */
+     158        3942 : bool LatGeneric::start(void) {
+     159             : 
+     160        3942 :   if (isInState(READY_STATE)) {
+     161             :     /* timer_update_.start(); */
+     162          97 :     changeState(STARTED_STATE);
+     163          97 :     return true;
+     164             : 
+     165             :   } else {
+     166        3845 :     ROS_WARN_THROTTLE(1.0, "[%s]: Estimator must be in READY_STATE to start it", getPrintName().c_str());
+     167        3845 :     return false;
+     168             :   }
+     169             : }
+     170             : /*//}*/
+     171             : 
+     172             : /*//{ pause() */
+     173           0 : bool LatGeneric::pause(void) {
+     174             : 
+     175           0 :   if (isInState(RUNNING_STATE)) {
+     176           0 :     changeState(STOPPED_STATE);
+     177           0 :     return true;
+     178             : 
+     179             :   } else {
+     180           0 :     return false;
+     181             :   }
+     182             : }
+     183             : /*//}*/
+     184             : 
+     185             : /*//{ reset() */
+     186           0 : bool LatGeneric::reset(void) {
+     187             : 
+     188           0 :   if (!isInitialized()) {
+     189           0 :     ROS_ERROR("[%s]: Cannot reset uninitialized estimator", getPrintName().c_str());
+     190           0 :     return false;
+     191             :   }
+     192             : 
+     193           0 :   changeState(STOPPED_STATE);
+     194             : 
+     195             :   // Initialize LKF state and covariance
+     196           0 :   const x_t        x0 = x_t::Zero();
+     197           0 :   const P_t        P0 = 1e6 * P_t::Identity();
+     198           0 :   const statecov_t sc0({x0, P0});
+     199           0 :   sc_ = sc0;
+     200             : 
+     201             :   // Instantiate the LKF itself
+     202           0 :   lkf_ = std::make_shared<lkf_t>(A_, B_, H_);
+     203           0 :   if (is_repredictor_enabled_) {
+     204             : 
+     205           0 :     const u_t       u0 = u_t::Zero();
+     206           0 :     const ros::Time t0 = ros::Time(0);
+     207           0 :     lkf_rep_           = std::make_unique<mrs_lib::Repredictor<varstep_lkf_t>>(x0, P0, u0, Q_, t0, models_[0], rep_buffer_size_);
+     208             :   }
+     209             : 
+     210           0 :   ROS_INFO("[%s]: Estimator reset", getPrintName().c_str());
+     211             : 
+     212           0 :   return true;
+     213             : }
+     214             : /*//}*/
+     215             : 
+     216             : /* timerUpdate() //{*/
+     217      192642 : void LatGeneric::timerUpdate(const ros::TimerEvent &event) {
+     218             : 
+     219      192642 :   if (!isInitialized()) {
+     220       20877 :     return;
+     221             :   }
+     222             : 
+     223      192612 :   switch (getCurrentSmState()) {
+     224             : 
+     225           0 :     case UNINITIALIZED_STATE: {
+     226           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s initialization", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     227           0 :       break;
+     228             :     }
+     229             : 
+     230          58 :     case READY_STATE: {
+     231          58 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s estimator start", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     232          59 :       break;
+     233             :     }
+     234             : 
+     235        6398 :     case INITIALIZED_STATE: {
+     236             :       // initialize the estimator with current corrections
+     237        6563 :       for (auto correction : corrections_) {
+     238        6466 :         auto res = correction->getProcessedCorrection();
+     239        6464 :         if (res) {
+     240         165 :           auto measurement_stamped = res.value(); 
+     241         165 :           setState(measurement_stamped.value(AXIS_X), correction->getStateId(), AXIS_X);
+     242         165 :           setState(measurement_stamped.value(AXIS_Y), correction->getStateId(), AXIS_Y);
+     243         165 :           ROS_INFO_THROTTLE(1.0, "[%s]: Setting initial state to: %.2f %.2f", getPrintName().c_str(), measurement_stamped.value(AXIS_X),
+     244             :                             measurement_stamped.value(AXIS_Y));
+     245             :         } else {
+     246        6300 :           ROS_INFO_THROTTLE(1.0, "[%s]: %s correction %s", getPrintName().c_str(), Support::waiting_for_string.c_str(), correction->getNamespacedName().c_str());
+     247        6301 :           return;
+     248             :         }
+     249             :       }
+     250          97 :       ROS_INFO_THROTTLE(1.0, "[%s]: Ready to start", getPrintName().c_str());
+     251          97 :       changeState(READY_STATE);
+     252          97 :       break;
+     253             :     }
+     254             : 
+     255          97 :     case STARTED_STATE: {
+     256          97 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s convergence of LKF", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     257          97 :       if (isConverged()) {
+     258          97 :         ROS_INFO_THROTTLE(1.0, "[%s]: LKF converged", getPrintName().c_str());
+     259          97 :         changeState(RUNNING_STATE);
+     260             :       }
+     261          97 :       break;
+     262             :     }
+     263             : 
+     264      186060 :     case RUNNING_STATE: {
+     265      383317 :       for (auto correction : corrections_) {
+     266      197259 :         if (!correction->isHealthy()) {
+     267           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     268           0 :           changeState(ERROR_STATE);
+     269             :         }
+     270             :       }
+     271      186057 :       break;
+     272             :     }
+     273             : 
+     274           0 :     case STOPPED_STATE: {
+     275           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is stopped", getPrintName().c_str());
+     276           0 :       break;
+     277             :     }
+     278             : 
+     279           0 :     case ERROR_STATE: {
+     280           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is in ERROR state", getPrintName().c_str());
+     281             : 
+     282           0 :       ros::Time t_now = ros::Time::now();
+     283           0 :       if (is_error_state_first_time_) {
+     284           0 :         prev_time_in_error_state_  = t_now;
+     285           0 :         is_error_state_first_time_ = false;
+     286           0 :         error_state_duration_      = ros::Duration(0.0);
+     287             :       }
+     288           0 :       error_state_duration_ += t_now - prev_time_in_error_state_;
+     289             : 
+     290             : 
+     291             :       // check if all corrections are healthy now
+     292           0 :       bool all_corrections_healthy = true;
+     293           0 :       for (auto correction : corrections_) {
+     294           0 :         if (!correction->isHealthy()) {
+     295           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     296           0 :           all_corrections_healthy = false;
+     297             :         }
+     298             :       }
+     299             : 
+     300           0 :       if (all_corrections_healthy && innovation_ok_) {
+     301             :         // initialize the estimator again if corrections become healthy
+     302           0 :         if (error_state_duration_.toSec() > 5.0) {
+     303           0 :           ROS_INFO("[%s]: corrections healthy for %.2f s", getPrintName().c_str(), error_state_duration_.toSec());
+     304           0 :           changeState(INITIALIZED_STATE);
+     305           0 :           is_error_state_first_time_ = true;
+     306           0 :         }
+     307             :       } else {
+     308           0 :         is_error_state_first_time_ = true;
+     309             :       }
+     310             : 
+     311           0 :       prev_time_in_error_state_ = t_now;
+     312             : 
+     313           0 :       break;
+     314             :     }
+     315             :   }
+     316             : 
+     317      186316 :   if (sh_control_input_.newMsg()) {
+     318       91173 :     is_input_ready_ = true;
+     319             :   }
+     320             : 
+     321             :   // check age of input
+     322      186324 :   if (is_input_ready_ && (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec() > 0.1) {  // TODO: parametrize, if older than say 1 second, eland
+     323          16 :     ROS_WARN_THROTTLE(1.0, "[%s]: input too old (%.4f s), using zero input instead", getPrintName().c_str(),
+     324             :                       (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec());
+     325          16 :     is_input_ready_ = false;
+     326             :   }
+     327             : 
+     328      186303 :   if (fun_get_hdg_()) {
+     329      186087 :     is_hdg_state_ready_ = true;
+     330             :   }
+     331             : 
+     332      186318 :   if (!isRunning() && !isStarted()) {
+     333         145 :     return;
+     334             :   }
+     335             : 
+     336      186145 :   if (first_iter_) {
+     337          97 :     first_iter_ = false;
+     338          97 :     return;
+     339             :   }
+     340             : 
+     341             :   // obtain dt for state prediction
+     342      186048 :   double dt = (event.current_real - event.last_real).toSec();
+     343      186047 :   if (dt <= 0.0) {  // sometimes the timer ticks twice simultaneously in simulation - we ignore the second tick
+     344       14307 :     return;
+     345             :   }
+     346             : 
+     347      171740 :   if (!is_repredictor_enabled_) { // repredictor calculates dt on its own
+     348      171756 :     setDt(dt);
+     349             :   }
+     350             : 
+     351             :   // obtain unbiased desired control acceleration in the estimator frame that will be used as input to the estimator
+     352      171709 :   u_t       u;
+     353      171645 :   ros::Time input_stamp;
+     354      171718 :   if (is_input_ready_ && is_hdg_state_ready_) {
+     355      103712 :     auto res = fun_get_hdg_();
+     356      103736 :     if (!res) {
+     357           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: could not obtain heading", getPrintName().c_str());
+     358           0 :       return;
+     359             :     }
+     360             : 
+     361      103729 :     const tf2::Vector3 des_acc_global = getAccGlobal(sh_control_input_.getMsg(), res.value());
+     362      103522 :     input_stamp                       = sh_control_input_.getMsg()->header.stamp;
+     363      103641 :     if (input_coeff_ != default_input_coeff_){
+     364          75 :       setInputCoeff(default_input_coeff_);
+     365             :     }
+     366      103641 :     u(0) = des_acc_global.getX();
+     367      103537 :     u(1) = des_acc_global.getY();
+     368             : 
+     369             :   } else {  // this is ok before the controller starts controlling but bad during actual flight (causes delayed estimated acceleration and velocity)
+     370       67992 :     ROS_DEBUG_THROTTLE(1.0, "[%s]: not receiving control input, estimation suboptimal, potentially unstable", getPrintName().c_str());
+     371       67997 :     input_stamp = ros::Time::now();
+     372       68003 :     if (input_coeff_ != 0){
+     373         113 :       setInputCoeff(0);
+     374             :     }
+     375       68003 :     u = u_t::Zero();
+     376             :   }
+     377             : 
+     378             :   // go through available corrections and apply them
+     379             :   /* for (auto correction : corrections_) { */
+     380             :   /*   auto res = correction->getProcessedCorrection(); */
+     381             :   /*   if (res) { */
+     382             :   /*     auto measurement_stamped = res.value(); */
+     383             :   /*     doCorrection(measurement_stamped.value, correction->getR(), correction->getStateId(), measurement_stamped.stamp); */
+     384             :   /*   } */
+     385             :   /* } */
+     386             : 
+     387             :   // get current state, covariance, and process noise
+     388      171634 :   statecov_t sc = mrs_lib::get_mutexed(mutex_sc_, sc_);
+     389      171710 :   Q_t        Q  = mrs_lib::get_mutexed(mtx_Q_, Q_);
+     390             : 
+     391             :   // prediction step
+     392             :   try {
+     393             :     // Apply the prediction step
+     394      343430 :     std::scoped_lock lock(mutex_lkf_);
+     395      171663 :     if (is_repredictor_enabled_) {
+     396           0 :       lkf_rep_->addInputChangeWithNoise(u, Q, input_stamp, models_[0]);
+     397           0 :       sc = lkf_rep_->predictTo(ros::Time::now());
+     398             :     } else {
+     399      171663 :       sc = lkf_->predict(sc, u, Q, dt_);
+     400             :     }
+     401             :   }
+     402           0 :   catch (const std::exception &e) {
+     403           0 :     ROS_ERROR("[%s]: LKF prediction failed: %s", getPrintName().c_str(), e.what());
+     404           0 :     changeState(ERROR_STATE);
+     405             :   }
+     406             : 
+     407             :   // update the state and covariance variable that is queried by the estimation manager
+     408      171630 :   mrs_lib::set_mutexed(mutex_sc_, sc, sc_);
+     409             : 
+     410             :   // publishing
+     411      171675 :   publishInput(u, input_stamp);
+     412      171772 :   publishOutput();
+     413      171772 :   publishDiagnostics();
+     414             : }
+     415             : /*//}*/
+     416             : 
+     417             : /*//{ timerCheckHealth() */
+     418           0 : void LatGeneric::timerCheckHealth([[maybe_unused]] const ros::TimerEvent &event) {
+     419             : 
+     420           0 :   if (!isInitialized()) {
+     421           0 :     return;
+     422             :   }
+     423             : 
+     424           0 :   switch (getCurrentSmState()) {
+     425             : 
+     426           0 :     case UNINITIALIZED_STATE: {
+     427           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s initialization", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     428           0 :       break;
+     429             :     }
+     430             : 
+     431           0 :     case READY_STATE: {
+     432           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s estimator start", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     433           0 :       break;
+     434             :     }
+     435             : 
+     436           0 :     case INITIALIZED_STATE: {
+     437             :       // initialize the estimator with current corrections
+     438           0 :       for (auto correction : corrections_) {
+     439           0 :         auto res = correction->getProcessedCorrection();
+     440           0 :         if (res) {
+     441           0 :           auto measurement_stamped = res.value();
+     442           0 :           setState(measurement_stamped.value(AXIS_X), correction->getStateId(), AXIS_X);
+     443           0 :           setState(measurement_stamped.value(AXIS_Y), correction->getStateId(), AXIS_Y);
+     444           0 :           ROS_INFO_THROTTLE(1.0, "[%s]: Setting initial state to: %.2f %.2f", getPrintName().c_str(), measurement_stamped.value(AXIS_X),
+     445             :                             measurement_stamped.value(AXIS_Y));
+     446             :         } else {
+     447           0 :           ROS_INFO_THROTTLE(1.0, "[%s]: %s correction %s", getPrintName().c_str(), Support::waiting_for_string.c_str(), correction->getPrintName().c_str());
+     448           0 :           return;
+     449             :         }
+     450             :       }
+     451           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Ready to start", getPrintName().c_str());
+     452           0 :       changeState(READY_STATE);
+     453           0 :       break;
+     454             :     }
+     455             : 
+     456           0 :     case STARTED_STATE: {
+     457           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s convergence of LKF", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     458           0 :       if (isConverged()) {
+     459           0 :         ROS_INFO_THROTTLE(1.0, "[%s]: LKF converged", getPrintName().c_str());
+     460           0 :         changeState(RUNNING_STATE);
+     461             :       }
+     462           0 :       break;
+     463             :     }
+     464             : 
+     465           0 :     case RUNNING_STATE: {
+     466           0 :       for (auto correction : corrections_) {
+     467           0 :         if (!correction->isHealthy()) {
+     468           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     469           0 :           changeState(ERROR_STATE);
+     470             :         }
+     471             :       }
+     472           0 :       break;
+     473             :     }
+     474             : 
+     475           0 :     case STOPPED_STATE: {
+     476           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is stopped", getPrintName().c_str());
+     477           0 :       break;
+     478             :     }
+     479             : 
+     480           0 :     case ERROR_STATE: {
+     481           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is in ERROR state", getPrintName().c_str());
+     482           0 :       bool all_corrections_healthy = true;
+     483           0 :       for (auto correction : corrections_) {
+     484           0 :         if (!correction->isHealthy()) {
+     485           0 :           ROS_ERROR_THROTTLE(1.0, "[%s]: Correction %s is not healthy!", getPrintName().c_str(), correction->getNamespacedName().c_str());
+     486           0 :           correction->resetProcessors();
+     487           0 :           all_corrections_healthy = false;
+     488             :         }
+     489             :       }
+     490             :       // initialize the estimator again if corrections become healthy
+     491           0 :       if (all_corrections_healthy) {
+     492           0 :         changeState(INITIALIZED_STATE);
+     493             :       }
+     494           0 :       break;
+     495             :     }
+     496             :   }
+     497             : 
+     498           0 :   if (sh_control_input_.newMsg()) {
+     499           0 :     is_input_ready_ = true;
+     500             :   }
+     501             : 
+     502             :   // check age of input
+     503           0 :   if (is_input_ready_ && (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec() > 0.1) {  // TODO: parametrize, if older than say 1 second, eland
+     504           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: input too old (%.4f s), using zero input instead", getPrintName().c_str(),
+     505             :                       (ros::Time::now() - sh_control_input_.lastMsgTime()).toSec());
+     506           0 :     is_input_ready_ = false;
+     507             :   }
+     508             : 
+     509           0 :   if (fun_get_hdg_()) {
+     510           0 :     is_hdg_state_ready_ = true;
+     511             :   }
+     512             : }
+     513             : /*//}*/
+     514             : 
+     515             : /*//{ doCorrection() */
+     516      193557 : void LatGeneric::doCorrection(const Correction<lat_generic::n_measurements>::MeasurementStamped &meas, const double R, const StateId_t &state_id) {
+     517      193557 :   doCorrection(meas.value, R, state_id, meas.stamp);
+     518      193549 : }
+     519             : /*//}*/
+     520             : 
+     521             : /*//{ doCorrection() */
+     522      193471 : void LatGeneric::doCorrection(const z_t &z, const double R, const StateId_t &state_id, const ros::Time &meas_stamp) {
+     523             : 
+     524      193471 :   if (!isInitialized()) {
+     525         165 :     return;
+     526             :   }
+     527             : 
+     528             :   // we do not want to perform corrections until the estimator is initialized
+     529      193440 :   if (!(isInState(SMStates_t::READY_STATE) || isInState(SMStates_t::RUNNING_STATE) || isInState(SMStates_t::STARTED_STATE))) {
+     530         160 :     return;
+     531             :   }
+     532             : 
+     533             :   // for position state check the innovation
+     534      193220 :   if (state_id == POSITION) {
+     535             :     {
+     536      182668 :       std::scoped_lock lock(mtx_innovation_);
+     537             : 
+     538      182695 :       is_mitigating_jump_ = false;
+     539      182766 :       innovation_(0)      = z(0) - getState(POSITION, AXIS_X);
+     540      182642 :       innovation_(1)      = z(1) - getState(POSITION, AXIS_Y);
+     541             : 
+     542      182707 :       if (fabs(innovation_(0)) > pos_innovation_limit_ || fabs(innovation_(1)) > pos_innovation_limit_) {
+     543           0 :         ROS_WARN_THROTTLE(1.0, "[%s]: innovation too large - [%.2f %.2f] lim: %.2f", getPrintName().c_str(), innovation_(0), innovation_(1),
+     544             :                           pos_innovation_limit_);
+     545           0 :         innovation_ok_ = false;
+     546           0 :         switch (exc_innovation_action_) {
+     547           0 :           case ExcInnoAction_t::ELAND: {
+     548           0 :             ROS_WARN_THROTTLE(1.0, "[%s]: large innovation should trigger eland in control manager", ros::this_node::getName().c_str());
+     549           0 :             changeState(ERROR_STATE);
+     550           0 :             break;
+     551             :           }
+     552           0 :           case ExcInnoAction_t::SWITCH: {
+     553           0 :             ROS_WARN_THROTTLE(1.0, "[%s]: innovation should trigger estimator switch but no eland", ros::this_node::getName().c_str());
+     554           0 :             innovation_(0) = 0.0;  // this is quite hacky but is there other way to switch estimators and not trigger eland by the large innovation?
+     555           0 :             innovation_(1) = 0.0;
+     556           0 :             changeState(ERROR_STATE);
+     557           0 :             break;
+     558             :           }
+     559           0 :           case ExcInnoAction_t::MITIGATE: {
+     560           0 :             ROS_WARN_THROTTLE(1.0, "[%s]: large innovation should trigger estimate jump mitigation", ros::this_node::getName().c_str());
+     561           0 :             innovation_(0)      = 0.0;  // this is quite hacky but is there other way to switch estimators and not trigger eland by the large innovation?
+     562           0 :             innovation_(1)      = 0.0;
+     563           0 :             is_mitigating_jump_ = true;
+     564           0 :             setState(z(0), POSITION, AXIS_X);
+     565           0 :             setState(z(1), POSITION, AXIS_Y);
+     566           0 :             break;
+     567             :           }
+     568           0 :           case ExcInnoAction_t::NONE: {
+     569           0 :             ROS_WARN_THROTTLE(1.0, "[%s]: large innovation ignored", ros::this_node::getName().c_str());
+     570           0 :             break;
+     571             :           }
+     572             :         }
+     573             :       }
+     574      182713 :       innovation_ok_ = true;
+     575             :     }
+     576             :   }
+     577             : 
+     578      193235 :   statecov_t sc = mrs_lib::get_mutexed(mutex_sc_, sc_);
+     579             :   try {
+     580             :     // Apply the correction step
+     581      386588 :     std::scoped_lock lock(mutex_lkf_);
+     582      193329 :     H_                           = H_t::Zero();
+     583      193260 :     H_(AXIS_X, state_id * 2)     = 1;
+     584      193321 :     H_(AXIS_Y, state_id * 2 + 1) = 1;
+     585      193309 :     lkf_->H                      = H_;
+     586             : 
+     587      193049 :     if (is_repredictor_enabled_) {
+     588             : 
+     589           0 :       lkf_rep_->addMeasurement(z, R_t::Ones() * R, meas_stamp, models_[state_id]);
+     590             :     } else {
+     591      193049 :       sc = lkf_->correct(sc, z, R_t::Ones() * R);
+     592             :     }
+     593             :   }
+     594           0 :   catch (const std::exception &e) {
+     595             :     // In case of error, alert the user
+     596           0 :     ROS_ERROR("[%s]: LKF correction failed: %s", getPrintName().c_str(), e.what());
+     597             :   }
+     598             : 
+     599      193041 :   mrs_lib::set_mutexed(mutex_sc_, sc, sc_);
+     600             : }  // namespace mrs_uav_state_estimators
+     601             : /*//}*/
+     602             : 
+     603             : /*//{ isConverged() */
+     604          97 : bool LatGeneric::isConverged() {
+     605             : 
+     606             :   // TODO: check convergence by rate of change of determinant
+     607             : 
+     608          97 :   return true;
+     609             : }
+     610             : /*//}*/
+     611             : 
+     612             : /*//{ getState() */
+     613     1471959 : double LatGeneric::getState(const int &state_id_in, const int &axis_in) const {
+     614     1471959 :   return getState(stateIdToIndex(state_id_in, axis_in));
+     615             : }
+     616             : 
+     617     1471506 : double LatGeneric::getState(const int &state_idx_in) const {
+     618     1471506 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).x(state_idx_in);
+     619             : }
+     620             : /*//}*/
+     621             : 
+     622             : /*//{ setState() */
+     623         330 : void LatGeneric::setState(const double &state_in, const int &state_id_in, const int &axis_in) {
+     624         330 :   setState(state_in, stateIdToIndex(state_id_in, axis_in));
+     625         330 : }
+     626             : 
+     627         330 : void LatGeneric::setState(const double &state_in, const int &state_idx_in) {
+     628         330 :   mrs_lib::set_mutexed(mutex_sc_, state_in, sc_.x(state_idx_in));
+     629         330 : }
+     630             : /*//}*/
+     631             : 
+     632             : /*//{ getStates() */
+     633      171771 : LatGeneric::states_t LatGeneric::getStates(void) const {
+     634      343519 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).x;
+     635             : }
+     636             : /*//}*/
+     637             : 
+     638             : /*//{ setStates() */
+     639           0 : void LatGeneric::setStates(const states_t &states_in) {
+     640           0 :   mrs_lib::set_mutexed(mutex_sc_, states_in, sc_.x);
+     641           0 : }
+     642             : /*//}*/
+     643             : 
+     644             : /*//{ getCovariance() */
+     645      730430 : double LatGeneric::getCovariance(const int &state_id_in, const int &axis_in) const {
+     646      730430 :   return getCovariance(stateIdToIndex(state_id_in, axis_in));
+     647             : }
+     648             : 
+     649      730313 : double LatGeneric::getCovariance(const int &state_idx_in) const {
+     650      730313 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).P(state_idx_in, state_idx_in);
+     651             : }
+     652             : /*//}*/
+     653             : 
+     654             : /*//{ getCovarianceMatrix() */
+     655      171770 : LatGeneric::covariance_t LatGeneric::getCovarianceMatrix(void) const {
+     656      343525 :   return mrs_lib::get_mutexed(mutex_sc_, sc_).P;
+     657             : }
+     658             : /*//}*/
+     659             : 
+     660             : /*//{ setCovarianceMatrix() */
+     661           0 : void LatGeneric::setCovarianceMatrix(const covariance_t &cov_in) {
+     662           0 :   mrs_lib::set_mutexed(mutex_sc_, cov_in, sc_.P);
+     663           0 : }
+     664             : /*//}*/
+     665             : 
+     666             : /*//{ getInnovation() */
+     667      364905 : double LatGeneric::getInnovation(const int &state_idx) const {
+     668      364905 :   return mrs_lib::get_mutexed(mtx_innovation_, innovation_)(state_idx);
+     669             : }
+     670             : 
+     671      365079 : double LatGeneric::getInnovation(const int &state_id_in, const int &axis_in) const {
+     672      365079 :   return getInnovation(stateIdToIndex(state_id_in, axis_in));
+     673             : }
+     674             : /*//}*/
+     675             : 
+     676             : /*//{ setDt() */
+     677      171762 : void LatGeneric::setDt(const double &dt) {
+     678      171762 :   dt_ = dt;
+     679      171762 :   generateA();
+     680      171758 :   generateB();
+     681      343488 :   std::scoped_lock lock(mutex_lkf_);
+     682      171739 :   lkf_->A = A_;
+     683      171751 :   lkf_->B = B_;
+     684      171701 : }
+     685             : /*//}*/
+     686             : 
+     687             : /*//{ setInputCoeff() */
+     688         188 : void LatGeneric::setInputCoeff(const double &input_coeff) {
+     689         188 :   input_coeff_ = input_coeff;
+     690         188 :   generateA();
+     691         188 :   generateB();
+     692         376 :   std::scoped_lock lock(mutex_lkf_);
+     693         188 :   lkf_->A = A_;
+     694         188 :   lkf_->B = B_;
+     695             : 
+     696         188 :   if (is_repredictor_enabled_) {
+     697           0 :     models_.clear();
+     698           0 :     generateRepredictorModels(input_coeff_);
+     699             :   }
+     700         188 : }
+     701             : /*//}*/
+     702             : 
+     703             : /*//{ generateRepredictorModels() */
+     704           0 : void LatGeneric::generateRepredictorModels(const double input_coeff) {
+     705           0 :     for (int i = 0; (int)(i < lat_generic::n_states / 2); i++) {
+     706             : 
+     707           0 :       auto lambda_generateA = [input_coeff](const double dt) {
+     708           0 :         A_t A;
+     709             :         // clang-format off
+     710           0 :         A <<
+     711           0 :           1, 0, dt, 0, 0.5 * dt * dt, 0,
+     712           0 :           0, 1, 0, dt, 0, 0.5 * dt * dt,
+     713           0 :           0, 0, 1, 0, dt, 0,
+     714           0 :           0, 0, 0, 1, 0, dt,
+     715           0 :           0, 0, 0, 0, 1-(input_coeff * dt), 0,
+     716           0 :           0, 0, 0, 0, 0, 1-(input_coeff * dt);
+     717             :         // clang-format on
+     718           0 :         return A;
+     719           0 :       };
+     720             : 
+     721           0 :       auto lambda_generateB = [input_coeff]([[maybe_unused]] const double dt) {
+     722           0 :         B_t B = B.Zero();
+     723             :         // clang-format off
+     724           0 :           B <<
+     725           0 :             0, 0,
+     726           0 :             0, 0,
+     727           0 :             0, 0,
+     728           0 :             0, 0,
+     729           0 :             input_coeff * dt, 0,
+     730           0 :             0, input_coeff * dt;
+     731             :         // clang-format on
+     732             : 
+     733           0 :         return B;
+     734           0 :       };
+     735             : 
+     736           0 :       H_t H                = H.Zero();
+     737           0 :       H(AXIS_X, i * 2)     = 1;
+     738           0 :       H(AXIS_Y, i * 2 + 1) = 1;
+     739           0 :       models_.push_back(std::make_shared<varstep_lkf_t>(lambda_generateA, lambda_generateB, H));
+     740             :     }
+     741           0 : }
+     742             : /*//}*/
+     743             : 
+     744             : /*//{ generateA() */
+     745      172047 : void LatGeneric::generateA() {
+     746             : 
+     747             :   // clang-format off
+     748      172047 :     A_ <<
+     749      171993 :       1, 0, dt_, 0, 0.5 * dt_ * dt_, 0,
+     750      172038 :       0, 1, 0, dt_, 0, 0.5 * dt_ * dt_,
+     751      172028 :       0, 0, 1, 0, dt_, 0,
+     752      172043 :       0, 0, 0, 1, 0, dt_,
+     753      172037 :       0, 0, 0, 0, 1-(input_coeff_ * dt_), 0,
+     754      172045 :       0, 0, 0, 0, 0, 1-(input_coeff_ * dt_);
+     755             :   // clang-format on
+     756      172034 : }
+     757             : /*//}*/
+     758             : 
+     759             : /*//{ generateB() */
+     760      172055 : void LatGeneric::generateB() {
+     761             : 
+     762             :   // clang-format off
+     763      172055 :     B_ <<
+     764      172036 :       0, 0,
+     765      171983 :       0, 0,
+     766      172001 :       0, 0,
+     767      172030 :       0, 0,
+     768      172037 :       input_coeff_ * dt_, 0,
+     769      172033 :       0, input_coeff_ * dt_;
+     770             :   // clang-format on
+     771      172025 : }
+     772             : /*//}*/
+     773             : 
+     774             : /*//{ callbackReconfigure() */
+     775          97 : void LatGeneric::callbackReconfigure(LateralEstimatorConfig &config, [[maybe_unused]] uint32_t level) {
+     776             : 
+     777          97 :   if (!isInitialized()) {
+     778          97 :     return;
+     779             :   }
+     780             : 
+     781           0 :   Q_t Q;
+     782           0 :   Q(stateIdToIndex(POSITION, AXIS_X), stateIdToIndex(POSITION, AXIS_X))         = config.pos;
+     783           0 :   Q(stateIdToIndex(POSITION, AXIS_Y), stateIdToIndex(POSITION, AXIS_Y))         = config.pos;
+     784           0 :   Q(stateIdToIndex(VELOCITY, AXIS_X), stateIdToIndex(VELOCITY, AXIS_X))         = config.vel;
+     785           0 :   Q(stateIdToIndex(VELOCITY, AXIS_Y), stateIdToIndex(VELOCITY, AXIS_Y))         = config.vel;
+     786           0 :   Q(stateIdToIndex(ACCELERATION, AXIS_X), stateIdToIndex(ACCELERATION, AXIS_X)) = config.acc;
+     787           0 :   Q(stateIdToIndex(ACCELERATION, AXIS_Y), stateIdToIndex(ACCELERATION, AXIS_Y)) = config.acc;
+     788           0 :   mrs_lib::set_mutexed(mtx_Q_, Q, Q_);
+     789             : }
+     790             : /*//}*/
+     791             : 
+     792             : /*//{ getNamespacedName() */
+     793         586 : std::string LatGeneric::getNamespacedName() const {
+     794        1172 :   return parent_state_est_name_ + "/" + getName();
+     795             : }
+     796             : /*//}*/
+     797             : 
+     798             : /*//{ getPrintName() */
+     799         909 : std::string LatGeneric::getPrintName() const {
+     800        1818 :   return ch_->nodelet_name + "/" + parent_state_est_name_ + "/" + getName();
+     801             : }
+     802             : /*//}*/
+     803             : };  // namespace mrs_uav_state_estimators
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp.gcov.overview.html b/mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp.gcov.overview.html new file mode 100644 index 0000000000..19d9bca23e --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp.gcov.overview.html @@ -0,0 +1,221 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp.gcov.png b/mrs_uav_state_estimators/src/estimators/lateral/lat_generic.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..508d03d81b4e53c31168d589e7b140e4bb5e1fec GIT binary patch literal 3146 zcmV-Q47Kx#P)_F@S;5{wS;5}G*?*N6>jy}HP|j}LK3%VuODPrz5I-ryMTpSeE>6cv(Kgju9By;G-wTKn?T=mzEA279A;Z^cfaW;{*|*Kn zgwguw4-~uOcUl;e9UZg5n!vhF-NtDK%dwopo*C(aFubC70Ggz+XJv#ZA12P>H@a*O z+Tq5ymB3qhWhA2Exi0ci1p}5CFa~fDu-sJ$;KFP<38{>cqMWgq`Jak>T-TR8w)A3O zhjm{~qeB-8<;qHBTS6cZse(~@=3}w^dLj8^m}JozKm4Py1ca?Mu3H6IFBy+% zOb=|*FdqXW8zy?ll4Aj6M|h3|=l}%2u@u&<1MoLIn!y?0>HzE(3L+I?Ai?=KKum%w znlrrXESQ*LJ6fK^oSgtzfU+yY3vNFjlX1dqrTa{Xxt65I0!9J|Ixhes8YN|n5t4xz zGu1P*BnvYEyQ^S+H1AVzrr9_=#`i|>e)-zA=#eOZevjBTWrK)w^sfPs8GUnnKX<3U zU(fSePl`k*k~2)VDMlTMP`sB^bV@&(qwehu$=vz0m}bqmnG33bR8LN;0LBOyxupP> z+!O&_#3($wesmMiS&8vT>lJqy&^XYeHTeM>?pkrAvLVH>B#hQMA~Bm(G3zjU29o`z zX$_l;M~iGq(T5TehW+K!N6QNYHoP=wm3{o4H8YPo`rs*taL?s$K?WBZ-4BO8srj3l zkMY|P&uloN>E)wwspsKoNx9BFX`JMQHUX*UD>JGqM`{z?nLx@3%QCcAF?xF1b2N^3 zAZ~WpF&jZF7Z-_KLLMW}v2Ag!mcp!Lja~YKVHPv0LYu5JHq|-+3C6ealQA~jJOa42 zvJ^dYG)qrgO8pDeS)2B7LITA2Ya(^almH};H^JRjY z9H|#^Oh01J%Ve3?!AQ$`h1r8#l@3_d6BhI@^1wcFxztE5I3K27g-Z&HICZJa(fH^? z!a=fSdw+--(P{AOiDd2(&?1jUrRiYLoY)VXE!{KB2CY%YgMD8433}V2mr`Ul-Zs%A`w; zHqY@GCa08rbSjl1-ey2c2FWC7eu_phtC`~}MQ~N}N(&(GpffES&aX>~F!9R3*3!UO zp>(x8R)9+C)5xD+!*ILpF(eFw--CCa=ocRw(~kV)3Q%&JJ)mVv>QycS!_QwCw6V9M zxN2j6<=q`Qz2Dr}ff$t*g_xZ>(LF)M8l?*&Gj0wZkj4o7T>Ya7*v5y(72wMTxRYR| z1T-xT<)fDc8vpDF&@}98J%lJAci2oZ6H;m1N`2QbMTwZ4o=9{s@n+zoAtUy=?eQ`s zVLaFNm`6!8IQEoBh&?;X@8?FPJ;?>b$3S_>bHW}-8+q(oX?v&Ec zM%mMTa)%anEulfmx^gL}8~fAS@ya@vF*LVgvPZo zsE(3k^yx4p(^R}k5BuU*Z<$k`XL-UGDBUfVFw?Rm75CF~u?a6N;Wy?upHTrrRiY}0sBKRdAZ<=Q5$-S2l zk2AJD8+%N(2w2!Xo}YYI6VGsCkUJOMoNC9A5zsbbV$TclIK_GwY0QZQFuD!9XS69f z^_u%&iN)0>Ng1wsDQH7iiRoat-U1AOSC|wyUap6GJYYS>;+21N{o6cyY;g7wWqN!R0d~2~#%{dIj+E|KH1Pg?xVJh5LCpN+vB1m-ogvImFtqorGWQM!?qzp27Q5OlK`=lnD zKhrSqFLi}nAEABCcOXWm2NJ%J#sxY`Kzri+u-}Z1)qq=j^GbPKz$bKcv6_at2Vy` z_J6r7jT-3V%@6sA>;w@)#T~(#*7i|Q*st2h(~F9XLnte@s7 zS{aWF_#;%Ox;`|gy1q*o?|-ntR{_RQc0r|QZ?E& z)~2VBQ>U-_D;Hl=u^9XsUsA@#T;WCRaP(hgXsNLuVQpnNVa0!ma6KvPDuCPtxJSQ~J}^U46r_rp_< z-g>-jz<Kt#w9+p4WwJxY$eW7UeBAxgWS;YeCRHx}F?ll1BV30fc*$v3ftOWdw z;abe4Fg)S7V2;PI`dqzdd=~X$hYQMp=FwAaw)$ollzhn>(&dEtCY!Kl9)McQU;;c^ zzEnW;GwB-Wu8VYS^=mW6wTQ#_WH2_+ny53M)~}-%!W=A3c!$m{O6Se~qG!QzmwOEGnPcb5 z>#u4S4}{FMQDfes!_MneQTDBZz<6G|?@JI^FCF zE_o?)W3XT!Yc>1<`-tc0Q1Yo^ACo%XLmr!p!xK>}`K+Xi};Ja1MD^C`|h zq=m%jN?J&-yXabL^U$>LVoPzAJoaCY8O|tjbL{xIC_l~zY^4AKpk_-k(5HSBUyH+QZY#7%Ap%{bfU(=)gO zU=NL)h>u40tT=&;FoyikMgWh8n=r0#_ zxEMel7XuiVY~xTD7&F^>z|2Sa$xw^4bk7>teTMX8@eO^Tdz794(Q3!DOOHi-Qc1(a zo-YGtO>SaL5~c#0q{lqs48J92IphwFR5GCF;X(5zPZa@rD`7qN!H-y~G&axOAo?)m zdlt*S-hc4R@NuIZA3+&zL2&8AyZGNrfQvtBA3ix%2NY4&fC4H8V{|T`?5*|$Blw&g zU<7D=nCBh*oQ{-GA#cVeAEHV^jPv^6K85JuBa{xQVi7#y$Kq# k-~y^2L%vD~mXd+{4}ZzB4 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - gps_baro.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:44100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()19
mrs_uav_state_estimators::gps_baro::GpsBaro::GpsBaro()19
mrs_uav_state_estimators::gps_baro::GpsBaro::~GpsBaro()19
mrs_uav_state_estimators::gps_baro::GpsBaro::~GpsBaro().219
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.func.html b/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.func.html new file mode 100644 index 0000000000..56909a9193 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.func.html @@ -0,0 +1,96 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/src/estimators/state - gps_baro.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:44100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()19
mrs_uav_state_estimators::gps_baro::GpsBaro::GpsBaro()19
mrs_uav_state_estimators::gps_baro::GpsBaro::~GpsBaro()19
mrs_uav_state_estimators::gps_baro::GpsBaro::~GpsBaro().219
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.gcov.frameset.html b/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.gcov.frameset.html new file mode 100644 index 0000000000..cdfd029a0c --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.gcov.html b/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.gcov.html new file mode 100644 index 0000000000..b6e6810418 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.gcov.html @@ -0,0 +1,109 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/src/estimators/state - gps_baro.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:44100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #include <mrs_uav_state_estimators/estimators/state/state_generic.h>
+       2             : 
+       3             : namespace mrs_uav_state_estimators
+       4             : {
+       5             : 
+       6             : namespace gps_baro
+       7             : {
+       8             : 
+       9             : const char estimator_name[] = "gps_baro";
+      10             : const bool is_core_plugin = true;
+      11             : 
+      12             : class GpsBaro : public StateGeneric {
+      13             : public:
+      14          19 :   GpsBaro() : StateGeneric(estimator_name, is_core_plugin) {
+      15          19 :   }
+      16             : 
+      17          38 :   ~GpsBaro(void) {
+      18          38 :   }
+      19             : };
+      20             : 
+      21             : }  // namespace gps_baro
+      22             : }  // namespace mrs_uav_state_estimators
+      23             : 
+      24             : #include <pluginlib/class_list_macros.h>
+      25          19 : PLUGINLIB_EXPORT_CLASS(mrs_uav_state_estimators::gps_baro::GpsBaro, mrs_uav_managers::StateEstimator)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.gcov.overview.html b/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.gcov.overview.html new file mode 100644 index 0000000000..2b03dc176f --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.gcov.overview.html @@ -0,0 +1,27 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.gcov.png b/mrs_uav_state_estimators/src/estimators/state/gps_baro.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..32cb0dad19f40488be4eb0ccd03a6cbd7fc1ac32 GIT binary patch literal 231 zcmeAS@N?(olHy`uVBq!ia0vp^0YEIt!VDxsGPYO&DTx4|5ZC|z|E~gq + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - gps_garmin.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:44100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()74
mrs_uav_state_estimators::gps_garmin::GpsGarmin::GpsGarmin()74
mrs_uav_state_estimators::gps_garmin::GpsGarmin::~GpsGarmin()74
mrs_uav_state_estimators::gps_garmin::GpsGarmin::~GpsGarmin().274
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.func.html b/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.func.html new file mode 100644 index 0000000000..722e61c492 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.func.html @@ -0,0 +1,96 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/src/estimators/state - gps_garmin.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:44100.0 %
Legend: Lines: + hit + not hit +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()74
mrs_uav_state_estimators::gps_garmin::GpsGarmin::GpsGarmin()74
mrs_uav_state_estimators::gps_garmin::GpsGarmin::~GpsGarmin()74
mrs_uav_state_estimators::gps_garmin::GpsGarmin::~GpsGarmin().274
+
+
+ + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.gcov.frameset.html b/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.gcov.frameset.html new file mode 100644 index 0000000000..716d11d216 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.gcov.html b/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.gcov.html new file mode 100644 index 0000000000..8c3179d5f6 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.gcov.html @@ -0,0 +1,109 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp + + + + + + + + + + + + + + +
LCOV - code coverage report
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Current view:top level - mrs_uav_state_estimators/src/estimators/state - gps_garmin.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:44100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #include <mrs_uav_state_estimators/estimators/state/state_generic.h>
+       2             : 
+       3             : namespace mrs_uav_state_estimators
+       4             : {
+       5             : 
+       6             : namespace gps_garmin
+       7             : {
+       8             : 
+       9             : const char estimator_name[] = "gps_garmin";
+      10             : const bool is_core_plugin = true;
+      11             : 
+      12             : class GpsGarmin : public StateGeneric {
+      13             : public:
+      14          74 :   GpsGarmin() : StateGeneric(estimator_name, is_core_plugin) {
+      15          74 :   }
+      16             : 
+      17         148 :   ~GpsGarmin(void) {
+      18         148 :   }
+      19             : };
+      20             : 
+      21             : }  // namespace gps_garmin
+      22             : }  // namespace mrs_uav_state_estimators
+      23             : 
+      24             : #include <pluginlib/class_list_macros.h>
+      25          74 : PLUGINLIB_EXPORT_CLASS(mrs_uav_state_estimators::gps_garmin::GpsGarmin, mrs_uav_managers::StateEstimator)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.gcov.overview.html b/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.gcov.overview.html new file mode 100644 index 0000000000..88be0074b4 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.gcov.overview.html @@ -0,0 +1,27 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.gcov.png b/mrs_uav_state_estimators/src/estimators/state/gps_garmin.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..606fb073ca70818dc0b3b5dba84fd6a7044d0512 GIT binary patch literal 231 zcmeAS@N?(olHy`uVBq!ia0vp^0YEIt!VDxsGPYO&DTx4|5ZC|z|E~gq^JNDtZ&EXPgU2N!e?RY*!@G!k?Ta()7BTAKis#>5!bv}um4PI*Z02~7mGQc zuCNw3Xkx0Ko_*uhD$z@81X?onZt12fEV|g{c9?_v+hwVbPc627Ikr{%)|^j!tT$gZ WJ^4%e>pP$W7(8A5T-G@yGywov30pG& literal 0 HcmV?d00001 diff --git a/mrs_uav_state_estimators/src/estimators/state/index-detail-sort-f.html b/mrs_uav_state_estimators/src/estimators/state/index-detail-sort-f.html new file mode 100644 index 0000000000..848542849b --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/index-detail-sort-f.html @@ -0,0 +1,200 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/stateHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:31144070.7 %
Date:2024-04-17 23:52:03Functions:283775.7 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
+
+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Filename Sort by nameLine Coverage ( hide details ) Sort by line coverageFunctions Sort by function coverage
passthrough.cpp +
76.4%76.4%
+
76.4 %97 / 12755.6 %5 / 9
<unnamed>76.4 %97 / 12755.6 %5 / 9
state_generic.cpp +
66.2%66.2%
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Test:MRS UAV System - Test coverage reportLines:31144070.7 %
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Test:MRS UAV System - Test coverage reportLines:31144070.7 %
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Test:MRS UAV System - Test coverage reportLines:31144070.7 %
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Test:MRS UAV System - Test coverage reportLines:31144070.7 %
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Test:MRS UAV System - Test coverage reportLines:31144070.7 %
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - passthrough.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9712776.4 %
Date:2024-04-17 23:52:03Functions:5955.6 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::passthrough::Passthrough::isConverged()0
mrs_uav_state_estimators::passthrough::Passthrough::setUavState(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_state_estimators::passthrough::Passthrough::pause()0
mrs_uav_state_estimators::passthrough::Passthrough::reset()0
(anonymous namespace)::ProxyExec0::ProxyExec0()1
mrs_uav_state_estimators::passthrough::Passthrough::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)1
mrs_uav_state_estimators::passthrough::Passthrough::start()1
mrs_uav_state_estimators::passthrough::Passthrough::timerUpdate(ros::TimerEvent const&)1038
mrs_uav_state_estimators::passthrough::Passthrough::timerCheckHealth(ros::TimerEvent const&)1059
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - passthrough.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9712776.4 %
Date:2024-04-17 23:52:03Functions:5955.6 %
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(anonymous namespace)::ProxyExec0::ProxyExec0()1
mrs_uav_state_estimators::passthrough::Passthrough::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)1
mrs_uav_state_estimators::passthrough::Passthrough::isConverged()0
mrs_uav_state_estimators::passthrough::Passthrough::setUavState(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_state_estimators::passthrough::Passthrough::timerUpdate(ros::TimerEvent const&)1038
mrs_uav_state_estimators::passthrough::Passthrough::timerCheckHealth(ros::TimerEvent const&)1059
mrs_uav_state_estimators::passthrough::Passthrough::pause()0
mrs_uav_state_estimators::passthrough::Passthrough::reset()0
mrs_uav_state_estimators::passthrough::Passthrough::start()1
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - passthrough.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:9712776.4 %
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          Line data    Source code
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+       1             : /* includes //{ */
+       2             : 
+       3             : #include <mrs_uav_state_estimators/estimators/state/passthrough.h>
+       4             : 
+       5             : //}
+       6             : 
+       7             : namespace mrs_uav_state_estimators
+       8             : {
+       9             : 
+      10             : namespace passthrough
+      11             : {
+      12             : 
+      13             : /* initialize() //{*/
+      14           1 : void Passthrough::initialize(ros::NodeHandle &nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) {
+      15             : 
+      16           1 :   ch_ = ch;
+      17           1 :   ph_ = ph;
+      18             : 
+      19           1 :   ns_frame_id_ = ch_->uav_name + "/" + frame_id_;
+      20             : 
+      21             :   // | --------------- param loader initialization -------------- |
+      22             : 
+      23           1 :   if (is_core_plugin_) {
+      24             : 
+      25           1 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/private/" + getName() + "/" + getName() + ".yaml");
+      26           1 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/public/" + getName() + "/" + getName() + ".yaml");
+      27             :   }
+      28             : 
+      29           1 :   ph->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getName() + "/");
+      30             : 
+      31             :   // | --------------------- load parameters -------------------- |
+      32           1 :   ph->param_loader->loadParam("max_flight_z", max_flight_z_);
+      33           1 :   ph->param_loader->loadParam("message/topic", msg_topic_);
+      34           1 :   msg_topic_ = "/" + ch_->uav_name + "/" + msg_topic_;
+      35             : 
+      36             :   // | ------------------ timers initialization ----------------- |
+      37           1 :   timer_update_       = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &Passthrough::timerUpdate, this, false, false);  // not running after init
+      38           1 :   timer_check_health_ = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &Passthrough::timerCheckHealth, this);
+      39             : 
+      40             :   // | --------------- subscribers initialization --------------- |
+      41           2 :   mrs_lib::SubscribeHandlerOptions shopts;
+      42           1 :   shopts.nh                 = nh;
+      43           1 :   shopts.node_name          = getPrintName();
+      44           1 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+      45           1 :   shopts.threadsafe         = true;
+      46           1 :   shopts.autostart          = true;
+      47           1 :   shopts.queue_size         = 10;
+      48           1 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+      49             : 
+      50           1 :   sh_passthrough_odom_ = mrs_lib::SubscribeHandler<nav_msgs::Odometry>(shopts, msg_topic_);
+      51             : 
+      52             :   // | ---------------- publishers initialization --------------- |
+      53           1 :   ph_odom_ = mrs_lib::PublisherHandler<nav_msgs::Odometry>(nh, Support::toSnakeCase(getName()) + "/odom", 10);  // needed for tf
+      54           1 :   if (ch_->debug_topics.state) {
+      55           1 :     ph_uav_state_ = mrs_lib::PublisherHandler<mrs_msgs::UavState>(nh, Support::toSnakeCase(getName()) + "/uav_state", 10);
+      56             :   }
+      57           1 :   if (ch_->debug_topics.covariance) {
+      58           0 :     ph_pose_covariance_  = mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped>(nh, Support::toSnakeCase(getName()) + "/pose_covariance", 10);
+      59           0 :     ph_twist_covariance_ = mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped>(nh, Support::toSnakeCase(getName()) + "/twist_covariance", 10);
+      60             :   }
+      61           1 :   if (ch_->debug_topics.innovation) {
+      62           0 :     ph_innovation_ = mrs_lib::PublisherHandler<nav_msgs::Odometry>(nh, Support::toSnakeCase(getName()) + "/innovation", 10);
+      63             :   }
+      64           1 :   if (ch_->debug_topics.diag) {
+      65           0 :     ph_diagnostics_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics>(nh, Support::toSnakeCase(getName()) + "/diagnostics", 10);
+      66             :   }
+      67             : 
+      68             :   // | ------------------ initialize published messages ------------------ |
+      69           1 :   uav_state_init_.header.frame_id = ns_frame_id_;
+      70           1 :   uav_state_init_.child_frame_id  = ch_->frames.ns_fcu;
+      71             : 
+      72           1 :   uav_state_init_.estimator_horizontal = est_lat_name_;
+      73           1 :   uav_state_init_.estimator_vertical   = est_alt_name_;
+      74           1 :   uav_state_init_.estimator_heading    = est_hdg_name_;
+      75             : 
+      76           1 :   innovation_init_.header.frame_id         = ns_frame_id_;
+      77           1 :   innovation_init_.child_frame_id          = ch_->frames.ns_fcu;
+      78           1 :   innovation_init_.pose.pose.orientation.w = 1.0;
+      79             : 
+      80             :   // | ------------------ finish initialization ----------------- |
+      81             : 
+      82           1 :   if (changeState(INITIALIZED_STATE)) {
+      83           1 :     ROS_INFO("[%s]: Estimator initialized", getPrintName().c_str());
+      84             :   } else {
+      85           0 :     ROS_INFO("[%s]: Estimator could not be initialized", getPrintName().c_str());
+      86             :   }
+      87           1 : }
+      88             : /*//}*/
+      89             : 
+      90             : /*//{ start() */
+      91           1 : bool Passthrough::start(void) {
+      92             : 
+      93             : 
+      94           1 :   if (isInState(READY_STATE)) {
+      95             : 
+      96           1 :     timer_update_.start();
+      97           1 :     changeState(STARTED_STATE);
+      98           1 :     return true;
+      99             : 
+     100             :   } else {
+     101           0 :     ROS_WARN("[%s]: Estimator must be in READY_STATE to start it", getPrintName().c_str());
+     102           0 :     ros::Duration(1.0).sleep();
+     103             :   }
+     104           0 :   return false;
+     105             : 
+     106             :   ROS_ERROR("[%s]: Failed to start", getPrintName().c_str());
+     107             :   return false;
+     108             : }
+     109             : /*//}*/
+     110             : 
+     111             : /*//{ pause() */
+     112           0 : bool Passthrough::pause(void) {
+     113             : 
+     114           0 :   if (isInState(RUNNING_STATE)) {
+     115           0 :     changeState(STOPPED_STATE);
+     116           0 :     return true;
+     117             :   }
+     118           0 :   return false;
+     119             : }
+     120             : /*//}*/
+     121             : 
+     122             : /*//{ reset() */
+     123           0 : bool Passthrough::reset(void) {
+     124             : 
+     125           0 :   if (!isInitialized()) {
+     126           0 :     ROS_ERROR("[%s]: Cannot reset uninitialized estimator", getPrintName().c_str());
+     127           0 :     return false;
+     128             :   }
+     129             : 
+     130           0 :   changeState(STOPPED_STATE);
+     131             : 
+     132           0 :   ROS_INFO("[%s]: Estimator reset", getPrintName().c_str());
+     133             : 
+     134           0 :   return true;
+     135             : }
+     136             : /*//}*/
+     137             : 
+     138             : /* timerUpdate() //{*/
+     139        1038 : void Passthrough::timerUpdate([[maybe_unused]] const ros::TimerEvent &event) {
+     140             : 
+     141             : 
+     142        1038 :   if (!isInitialized()) {
+     143           0 :     return;
+     144             :   }
+     145             : 
+     146        1038 :   const ros::Time time_now = ros::Time::now();
+     147             : 
+     148        2076 :   nav_msgs::OdometryConstPtr msg = sh_passthrough_odom_.getMsg();
+     149             : 
+     150        1038 :   if (first_iter_) {
+     151           1 :     prev_msg_   = msg;
+     152           1 :     first_iter_ = false;
+     153             :   }
+     154             : 
+     155        2076 :   mrs_msgs::UavState uav_state = uav_state_init_;
+     156             : 
+     157        1038 :   uav_state.header.stamp = time_now;
+     158             : 
+     159        1038 :   uav_state.pose.position    = msg->pose.pose.position;
+     160        1038 :   uav_state.pose.orientation = msg->pose.pose.orientation;
+     161             : 
+     162        1038 :   uav_state.velocity.linear  = Support::rotateVector(msg->twist.twist.linear, msg->pose.pose.orientation);
+     163        1038 :   uav_state.velocity.angular = msg->twist.twist.angular;
+     164             : 
+     165        2076 :   const nav_msgs::Odometry odom = Support::uavStateToOdom(uav_state);
+     166             : 
+     167        2076 :   nav_msgs::Odometry innovation = innovation_init_;
+     168        1038 :   innovation.header.stamp       = time_now;
+     169             : 
+     170        1038 :   innovation.pose.pose.position.x = prev_msg_->pose.pose.position.x - msg->pose.pose.position.x;
+     171        1038 :   innovation.pose.pose.position.y = prev_msg_->pose.pose.position.y - msg->pose.pose.position.y;
+     172        1038 :   innovation.pose.pose.position.z = prev_msg_->pose.pose.position.z - msg->pose.pose.position.z;
+     173             : 
+     174        2076 :   mrs_msgs::Float64ArrayStamped pose_covariance, twist_covariance;
+     175        1038 :   pose_covariance.header.stamp  = time_now;
+     176        1038 :   twist_covariance.header.stamp = time_now;
+     177             : 
+     178        1038 :   const int n_states = 6;  // TODO this should be defined somewhere else
+     179        1038 :   pose_covariance.values.resize(n_states * n_states);
+     180        1038 :   pose_covariance.values.at(n_states * AXIS_X + AXIS_X) = 1e-10;
+     181        1038 :   pose_covariance.values.at(n_states * AXIS_Y + AXIS_Y) = 1e-10;
+     182        1038 :   pose_covariance.values.at(n_states * AXIS_Z + AXIS_Z) = 1e-10;
+     183             : 
+     184        1038 :   twist_covariance.values.resize(n_states * n_states);
+     185        1038 :   twist_covariance.values.at(n_states * AXIS_X + AXIS_X) = 1e-10;
+     186        1038 :   twist_covariance.values.at(n_states * AXIS_Y + AXIS_Y) = 1e-10;
+     187        1038 :   twist_covariance.values.at(n_states * AXIS_Z + AXIS_Z) = 1e-10;
+     188             : 
+     189        1038 :   mrs_lib::set_mutexed(mtx_uav_state_, uav_state, uav_state_);
+     190        1038 :   mrs_lib::set_mutexed(mtx_odom_, odom, odom_);
+     191        1038 :   mrs_lib::set_mutexed(mtx_innovation_, innovation, innovation_);
+     192        1038 :   mrs_lib::set_mutexed(mtx_covariance_, pose_covariance, pose_covariance_);
+     193        1038 :   mrs_lib::set_mutexed(mtx_covariance_, twist_covariance, twist_covariance_);
+     194             : 
+     195        1038 :   publishUavState();
+     196        1038 :   publishOdom();
+     197        1038 :   publishCovariance();
+     198        1038 :   publishInnovation();
+     199        1038 :   publishDiagnostics();
+     200             : 
+     201        1038 :   prev_msg_ = msg;
+     202             : }
+     203             : /*//}*/
+     204             : 
+     205             : /*//{ timerCheckHealth() */
+     206        1059 : void Passthrough::timerCheckHealth([[maybe_unused]] const ros::TimerEvent &event) {
+     207             : 
+     208        1059 :   if (!isInitialized()) {
+     209           0 :     return;
+     210             :   }
+     211             : 
+     212        1059 :   if (isInState(INITIALIZED_STATE)) {
+     213             : 
+     214          21 :     if (sh_passthrough_odom_.hasMsg()) {
+     215           1 :       changeState(READY_STATE);
+     216           1 :       ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is ready to start", getPrintName().c_str());
+     217             :     } else {
+     218          20 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s msg on topic %s", getPrintName().c_str(), Support::waiting_for_string.c_str(), sh_passthrough_odom_.topicName().c_str());
+     219          20 :       return;
+     220             :     }
+     221             :   }
+     222             : 
+     223             : 
+     224        1039 :   if (isInState(STARTED_STATE)) {
+     225             : 
+     226           1 :     changeState(RUNNING_STATE);
+     227             :   }
+     228             : }
+     229             : /*//}*/
+     230             : 
+     231             : /*//{ isConverged() */
+     232           0 : bool Passthrough::isConverged() {
+     233             : 
+     234             :   // TODO: check convergence by rate of change of determinant
+     235             :   // most likely not used in top-level estimator
+     236             : 
+     237           0 :   return true;
+     238             : }
+     239             : /*//}*/
+     240             : 
+     241             : /*//{ setUavState() */
+     242           0 : bool Passthrough::setUavState([[maybe_unused]] const mrs_msgs::UavState &uav_state) {
+     243             : 
+     244           0 :   if (!isInState(STOPPED_STATE)) {
+     245           0 :     ROS_WARN("[%s]: Estimator state can be set only in the STOPPED state", getPrintName().c_str());
+     246           0 :     return false;
+     247             :   }
+     248             : 
+     249           0 :   ROS_WARN("[%s]: Setting the state of this estimator is not implemented.", getPrintName().c_str());
+     250           0 :   return false;
+     251             : }
+     252             : /*//}*/
+     253             : 
+     254             : }  // namespace passthrough
+     255             : 
+     256             : }  // namespace mrs_uav_state_estimators
+     257             : 
+     258             : #include <pluginlib/class_list_macros.h>
+     259           1 : PLUGINLIB_EXPORT_CLASS(mrs_uav_state_estimators::passthrough::Passthrough, mrs_uav_managers::StateEstimator)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/passthrough.cpp.gcov.overview.html b/mrs_uav_state_estimators/src/estimators/state/passthrough.cpp.gcov.overview.html new file mode 100644 index 0000000000..5a663b9a3d --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/passthrough.cpp.gcov.overview.html @@ -0,0 +1,85 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/passthrough.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

+ Overview +
+ + diff --git a/mrs_uav_state_estimators/src/estimators/state/passthrough.cpp.gcov.png b/mrs_uav_state_estimators/src/estimators/state/passthrough.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..a57b3d1729bc3cdac5e4ae2ad4e24468373c0602 GIT binary patch literal 1099 zcmV-R1ho5!P)CR&-|8ai1Q<*+6d4na1&0Mk zrYzb^4VF?m$^_?ucXr{IX=DbBSx|OS#%OII(-i59jDZGlK*u>+0!@d@)G^qPw`1vA z5I8zu8oC^q8cqViaU^8tqMJbA8e^E|!GRmdB+OBks`;Z>FYQ>7@56w1Mg`no%WEq{K{?J={g%RO<`JEIPElp`a-e>NZIyFAu`fr1cTx;zevpp>H-w=Hez0H1or28Hphso^eiqdNx~U5^`VZgEm@}w4@WW}Lj9fl` zQh^>fSSI5s)`=AI-C#5(vSv*jj^M8h#8fwzUQBX)Ehq= z&a44HYI+|ysN>BqtwJfV;+~R5PyGnKID!Os`AF$kci}8L-2Nn&UjS;DQ8lVZUjRF- z&d7zg1vD^YxKZLm-~(f9TvTjOp5YdgLT@GLD!yc0P002ovPDHLkV1lbW1y=w7 literal 0 HcmV?d00001 diff --git a/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.func-sort-c.html b/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.func-sort-c.html new file mode 100644 index 0000000000..22cbf7d5b8 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.func-sort-c.html @@ -0,0 +1,96 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/rtk.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - rtk.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:44100.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
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mrs_uav_state_estimators::rtk::Rtk::Rtk()2
mrs_uav_state_estimators::rtk::Rtk::~Rtk()2
mrs_uav_state_estimators::rtk::Rtk::~Rtk().22
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Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - rtk.cpp (source / functions)HitTotalCoverage
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Date:2024-04-17 23:52:03Functions:44100.0 %
Legend: Lines: + hit + not hit +
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mrs_uav_state_estimators::rtk::Rtk::Rtk()2
mrs_uav_state_estimators::rtk::Rtk::~Rtk()2
mrs_uav_state_estimators::rtk::Rtk::~Rtk().22
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.gcov.frameset.html b/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.gcov.frameset.html new file mode 100644 index 0000000000..5de9a9f3df --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/rtk.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.gcov.html b/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.gcov.html new file mode 100644 index 0000000000..082520da0c --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.gcov.html @@ -0,0 +1,109 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/rtk.cpp + + + + + + + + + + + + + + +
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Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:44100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #include <mrs_uav_state_estimators/estimators/state/state_generic.h>
+       2             : 
+       3             : namespace mrs_uav_state_estimators
+       4             : {
+       5             : 
+       6             : namespace rtk
+       7             : {
+       8             : 
+       9             : const char estimator_name[] = "rtk";
+      10             : const bool is_core_plugin = true;
+      11             : 
+      12             : class Rtk : public StateGeneric {
+      13             : public:
+      14           2 :   Rtk() : StateGeneric(estimator_name, is_core_plugin) {
+      15           2 :   }
+      16             : 
+      17           4 :   ~Rtk(void) {
+      18           4 :   }
+      19             : };
+      20             : 
+      21             : }  // namespace rtk
+      22             : }  // namespace mrs_uav_state_estimators
+      23             : 
+      24             : #include <pluginlib/class_list_macros.h>
+      25           2 : PLUGINLIB_EXPORT_CLASS(mrs_uav_state_estimators::rtk::Rtk, mrs_uav_managers::StateEstimator)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
+
+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.gcov.overview.html b/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.gcov.overview.html new file mode 100644 index 0000000000..6e78d250c4 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.gcov.overview.html @@ -0,0 +1,27 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/rtk.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + + +
+ Top

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+ + diff --git a/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.gcov.png b/mrs_uav_state_estimators/src/estimators/state/rtk.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..a73b427303050221946009b0afa810dd7c98d9b4 GIT binary patch literal 229 zcmeAS@N?(olHy`uVBq!ia0vp^0YEIt!VDxsGPYO&DTx4|5ZC|z|E~gqp;PJr literal 0 HcmV?d00001 diff --git a/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.func-sort-c.html b/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.func-sort-c.html new file mode 100644 index 0000000000..767ab462a2 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.func-sort-c.html @@ -0,0 +1,96 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - rtk_garmin.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:44100.0 %
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+ + + + + + + + + + + + + + + + + + + + + + +

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mrs_uav_state_estimators::rtk_garmin::RtkGarmin::RtkGarmin()2
mrs_uav_state_estimators::rtk_garmin::RtkGarmin::~RtkGarmin()2
mrs_uav_state_estimators::rtk_garmin::RtkGarmin::~RtkGarmin().22
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.func.html b/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.func.html new file mode 100644 index 0000000000..0b3f70db16 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.func.html @@ -0,0 +1,96 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp - functions + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - rtk_garmin.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:55100.0 %
Date:2024-04-17 23:52:03Functions:44100.0 %
Legend: Lines: + hit + not hit +
+
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+ + + + + + + + + + + + + + + + + + + + + + +

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(anonymous namespace)::ProxyExec0::ProxyExec0()2
mrs_uav_state_estimators::rtk_garmin::RtkGarmin::RtkGarmin()2
mrs_uav_state_estimators::rtk_garmin::RtkGarmin::~RtkGarmin()2
mrs_uav_state_estimators::rtk_garmin::RtkGarmin::~RtkGarmin().22
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.gcov.frameset.html b/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.gcov.frameset.html new file mode 100644 index 0000000000..5a40bb2c46 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.gcov.html b/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.gcov.html new file mode 100644 index 0000000000..bad4819b6f --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp.gcov.html @@ -0,0 +1,109 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/rtk_garmin.cpp + + + + + + + + + + + + + + +
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Date:2024-04-17 23:52:03Functions:44100.0 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : #include <mrs_uav_state_estimators/estimators/state/state_generic.h>
+       2             : 
+       3             : namespace mrs_uav_state_estimators
+       4             : {
+       5             : 
+       6             : namespace rtk_garmin
+       7             : {
+       8             : 
+       9             : const char estimator_name[] = "rtk_garmin";
+      10             : const bool is_core_plugin = true;
+      11             : 
+      12             : class RtkGarmin : public StateGeneric {
+      13             : public:
+      14           2 :   RtkGarmin() : StateGeneric(estimator_name, is_core_plugin) {
+      15           2 :   }
+      16             : 
+      17           4 :   ~RtkGarmin(void) {
+      18           4 :   }
+      19             : };
+      20             : 
+      21             : }  // namespace rtk_garmin
+      22             : }  // namespace mrs_uav_state_estimators
+      23             : 
+      24             : #include <pluginlib/class_list_macros.h>
+      25           2 : PLUGINLIB_EXPORT_CLASS(mrs_uav_state_estimators::rtk_garmin::RtkGarmin, mrs_uav_managers::StateEstimator)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - state_generic.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:19429366.2 %
Date:2024-04-17 23:52:03Functions:71258.3 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::StateGeneric::isConverged()0
mrs_uav_state_estimators::StateGeneric::setUavState(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_state_estimators::StateGeneric::timerCheckHealth(ros::TimerEvent const&)0
mrs_uav_state_estimators::StateGeneric::pause()0
mrs_uav_state_estimators::StateGeneric::reset()0
mrs_uav_state_estimators::StateGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)97
mrs_uav_state_estimators::StateGeneric::start()7328
mrs_uav_state_estimators::StateGeneric::updateUavState()182690
mrs_uav_state_estimators::StateGeneric::timerPubAttitude(ros::TimerEvent const&)192985
mrs_uav_state_estimators::StateGeneric::timerUpdate(ros::TimerEvent const&)192986
mrs_uav_state_estimators::StateGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda()#1}::operator()() const290035
mrs_uav_state_estimators::StateGeneric::getHeading() const290040
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - state_generic.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:19429366.2 %
Date:2024-04-17 23:52:03Functions:71258.3 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_state_estimators::StateGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)97
mrs_uav_state_estimators::StateGeneric::isConverged()0
mrs_uav_state_estimators::StateGeneric::setUavState(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_state_estimators::StateGeneric::timerUpdate(ros::TimerEvent const&)192986
mrs_uav_state_estimators::StateGeneric::updateUavState()182690
mrs_uav_state_estimators::StateGeneric::timerCheckHealth(ros::TimerEvent const&)0
mrs_uav_state_estimators::StateGeneric::timerPubAttitude(ros::TimerEvent const&)192985
mrs_uav_state_estimators::StateGeneric::pause()0
mrs_uav_state_estimators::StateGeneric::reset()0
mrs_uav_state_estimators::StateGeneric::start()7328
mrs_uav_state_estimators::StateGeneric::getHeading() const290040
mrs_uav_state_estimators::StateGeneric::initialize(ros::NodeHandle&, std::shared_ptr<mrs_uav_managers::estimation_manager::CommonHandlers_t> const&, std::shared_ptr<mrs_uav_managers::estimation_manager::PrivateHandlers_t> const&)::{lambda()#1}::operator()() const290035
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Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_uav_state_estimators/src/estimators/state - state_generic.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:19429366.2 %
Date:2024-04-17 23:52:03Functions:71258.3 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <mrs_uav_state_estimators/estimators/state/state_generic.h>
+       4             : 
+       5             : //}
+       6             : 
+       7             : namespace mrs_uav_state_estimators
+       8             : {
+       9             : 
+      10             : /* initialize() //{*/
+      11          97 : void StateGeneric::initialize(ros::NodeHandle &parent_nh, const std::shared_ptr<CommonHandlers_t> &ch, const std::shared_ptr<PrivateHandlers_t> &ph) {
+      12             : 
+      13          97 :   ch_ = ch;
+      14          97 :   ph_ = ph;
+      15             : 
+      16         194 :   ros::NodeHandle nh(parent_nh);
+      17             : 
+      18          97 :   if (is_core_plugin_) {
+      19             : 
+      20          97 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/private/" + getName() + "/" + getName() + ".yaml");
+      21          97 :     ph->param_loader->addYamlFile(ros::package::getPath(package_name_) + "/config/public/" + getName() + "/" + getName() + ".yaml");
+      22             :   }
+      23             : 
+      24          97 :   ph->param_loader->setPrefix(ch_->package_name + "/" + Support::toSnakeCase(ch_->nodelet_name) + "/" + getName() + "/");
+      25             : 
+      26          97 :   ph->param_loader->loadParam("estimators/lateral/name", est_lat_name_);
+      27          97 :   ph->param_loader->loadParam("estimators/altitude/name", est_alt_name_);
+      28          97 :   ph->param_loader->loadParam("estimators/heading/name", est_hdg_name_);
+      29          97 :   ph->param_loader->loadParam("estimators/heading/passthrough", is_hdg_passthrough_);
+      30             : 
+      31          97 :   ph->param_loader->loadParam("override_frame_id/enabled", is_override_frame_id_);
+      32          97 :   if (is_override_frame_id_) {
+      33           0 :     ph->param_loader->loadParam("override_frame_id/frame_id", frame_id_);
+      34             :   }
+      35             : 
+      36         194 :   std::string topic_orientation;
+      37          97 :   ph->param_loader->loadParam("topics/orientation", topic_orientation);
+      38          97 :   topic_orientation_ = "/" + ch_->uav_name + "/" + topic_orientation;
+      39         194 :   std::string topic_angular_velocity;
+      40          97 :   ph->param_loader->loadParam("topics/angular_velocity", topic_angular_velocity);
+      41          97 :   topic_angular_velocity_ = "/" + ch_->uav_name + "/" + topic_angular_velocity;
+      42             : 
+      43          97 :   if (!ph->param_loader->loadedSuccessfully()) {
+      44           0 :     ROS_ERROR("[%s]: Could not load all non-optional parameters. Shutting down.", getPrintName().c_str());
+      45           0 :     ros::shutdown();
+      46             :   }
+      47             : 
+      48          97 :   ns_frame_id_ = ch_->uav_name + "/" + frame_id_;
+      49             : 
+      50             :   // | ------------------ timers initialization ----------------- |
+      51          97 :   timer_update_ = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &StateGeneric::timerUpdate, this);  // not running after init
+      52             :   /* timer_check_health_ = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &StateGeneric::timerCheckHealth, this); */
+      53          97 :   timer_pub_attitude_ = nh.createTimer(ros::Rate(ch_->desired_uav_state_rate), &StateGeneric::timerPubAttitude, this);
+      54             : 
+      55             :   // | --------------- subscribers initialization --------------- |
+      56         194 :   mrs_lib::SubscribeHandlerOptions shopts;
+      57          97 :   shopts.nh                 = nh;
+      58          97 :   shopts.node_name          = getPrintName();
+      59          97 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+      60          97 :   shopts.threadsafe         = true;
+      61          97 :   shopts.autostart          = true;
+      62          97 :   shopts.queue_size         = 10;
+      63          97 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+      64             : 
+      65          97 :   sh_hw_api_orient_  = mrs_lib::SubscribeHandler<geometry_msgs::QuaternionStamped>(shopts, topic_orientation_);
+      66          97 :   sh_hw_api_ang_vel_ = mrs_lib::SubscribeHandler<geometry_msgs::Vector3Stamped>(shopts, topic_angular_velocity_);
+      67             : 
+      68             :   // | ---------------- publishers initialization --------------- |
+      69          97 :   ph_odom_     = mrs_lib::PublisherHandler<nav_msgs::Odometry>(nh, Support::toSnakeCase(getName()) + "/odom", 10);
+      70          97 :   ph_attitude_ = mrs_lib::PublisherHandler<geometry_msgs::QuaternionStamped>(nh, Support::toSnakeCase(getName()) + "/attitude", 10);
+      71             : 
+      72          97 :   if (ch_->debug_topics.state) {
+      73          97 :     ph_uav_state_ = mrs_lib::PublisherHandler<mrs_msgs::UavState>(nh, Support::toSnakeCase(getName()) + "/uav_state", 10);
+      74             :   }
+      75          97 :   if (ch_->debug_topics.covariance) {
+      76           0 :     ph_pose_covariance_  = mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped>(nh, Support::toSnakeCase(getName()) + "/pose_covariance", 10);
+      77           0 :     ph_twist_covariance_ = mrs_lib::PublisherHandler<mrs_msgs::Float64ArrayStamped>(nh, Support::toSnakeCase(getName()) + "/twist_covariance", 10);
+      78             :   }
+      79          97 :   if (ch_->debug_topics.innovation) {
+      80           0 :     ph_innovation_ = mrs_lib::PublisherHandler<nav_msgs::Odometry>(nh, Support::toSnakeCase(getName()) + "/innovation", 10);
+      81             :   }
+      82          97 :   if (ch_->debug_topics.diag) {
+      83           0 :     ph_diagnostics_ = mrs_lib::PublisherHandler<mrs_msgs::EstimatorDiagnostics>(nh, Support::toSnakeCase(getName()) + "/diagnostics", 10);
+      84             :   }
+      85             : 
+      86             :   // | ---------------- estimators initialization --------------- |
+      87         194 :   std::vector<double> max_altitudes;
+      88             : 
+      89          97 :   if (is_hdg_passthrough_) {
+      90          97 :     est_hdg_ = std::make_unique<HdgPassthrough>(est_hdg_name_, frame_id_, getName(), is_core_plugin_);
+      91             :   } else {
+      92           0 :     est_hdg_ = std::make_unique<HdgGeneric>(est_hdg_name_, frame_id_, getName(), is_core_plugin_);
+      93             :   }
+      94          97 :   est_hdg_->initialize(nh, ch_, ph_);
+      95          97 :   max_altitudes.push_back(est_hdg_->getMaxFlightZ());
+      96             : 
+      97      290132 :   est_lat_ = std::make_unique<LatGeneric>(est_lat_name_, frame_id_, getName(), is_core_plugin_, [this](void) { return this->getHeading(); });
+      98          97 :   est_lat_->initialize(nh, ch_, ph_);
+      99          97 :   max_altitudes.push_back(est_lat_->getMaxFlightZ());
+     100             : 
+     101          97 :   est_alt_ = std::make_unique<AltGeneric>(est_alt_name_, frame_id_, getName(), is_core_plugin_);
+     102          97 :   est_alt_->initialize(nh, ch_, ph_);
+     103          97 :   max_altitudes.push_back(est_alt_->getMaxFlightZ());
+     104             : 
+     105          97 :   max_flight_z_ = *std::min_element(max_altitudes.begin(), max_altitudes.end());
+     106             : 
+     107             :   // | ------------------ initialize published messages ------------------ |
+     108          97 :   uav_state_init_.header.frame_id = ns_frame_id_;
+     109          97 :   uav_state_init_.child_frame_id  = ch_->frames.ns_fcu;
+     110             : 
+     111          97 :   uav_state_init_.estimator_horizontal = est_lat_name_;
+     112          97 :   uav_state_init_.estimator_vertical   = est_alt_name_;
+     113          97 :   uav_state_init_.estimator_heading    = est_hdg_name_;
+     114             : 
+     115          97 :   innovation_init_.header.frame_id         = ns_frame_id_;
+     116          97 :   innovation_init_.child_frame_id          = ch_->frames.ns_fcu;
+     117          97 :   innovation_init_.pose.pose.orientation.w = 1.0;
+     118             : 
+     119             :   // | ------------------ finish initialization ----------------- |
+     120             : 
+     121          97 :   if (changeState(INITIALIZED_STATE)) {
+     122          97 :     ROS_INFO("[%s]: Estimator initialized", getPrintName().c_str());
+     123             :   } else {
+     124           0 :     ROS_INFO("[%s]: Estimator could not be initialized", getPrintName().c_str());
+     125             :   }
+     126          97 : }
+     127             : /*//}*/
+     128             : 
+     129             : /*//{ start() */
+     130        7328 : bool StateGeneric::start(void) {
+     131             : 
+     132        7328 :   if (isInState(READY_STATE)) {
+     133             : 
+     134             :     bool est_lat_start_successful, est_alt_start_successful, est_hdg_start_successful;
+     135             : 
+     136        7328 :     if (est_lat_->isStarted() || est_lat_->isRunning()) {
+     137        3386 :       est_lat_start_successful = true;
+     138             :     } else {
+     139        3942 :       est_lat_start_successful = est_lat_->start();
+     140             :     }
+     141             : 
+     142        7328 :     if (est_alt_->isStarted() || est_alt_->isRunning()) {
+     143        3207 :       est_alt_start_successful = true;
+     144             :     } else {
+     145        4121 :       est_alt_start_successful = est_alt_->start();
+     146             :     }
+     147             : 
+     148        7328 :     if (est_hdg_->isStarted() || est_hdg_->isRunning()) {
+     149        7169 :       timer_pub_attitude_.start();
+     150        7169 :       est_hdg_start_successful = true;
+     151             :     } else {
+     152         159 :       est_hdg_start_successful = est_hdg_->start();
+     153             :     }
+     154             : 
+     155        7328 :     if (est_lat_start_successful && est_alt_start_successful && est_hdg_start_successful) {
+     156             :       /* timer_update_.start(); */
+     157          97 :       changeState(STARTED_STATE);
+     158          97 :       return true;
+     159             :     }
+     160             : 
+     161             :   } else {
+     162           0 :     ROS_WARN("[%s]: Estimator must be in READY_STATE to start it", getPrintName().c_str());
+     163           0 :     ros::Duration(1.0).sleep();
+     164             :   }
+     165        7231 :   return false;
+     166             : 
+     167             :   ROS_ERROR("[%s]: Failed to start", getPrintName().c_str());
+     168             :   return false;
+     169             : }
+     170             : /*//}*/
+     171             : 
+     172             : /*//{ pause() */
+     173           0 : bool StateGeneric::pause(void) {
+     174             : 
+     175           0 :   if (isInState(RUNNING_STATE)) {
+     176           0 :     est_lat_->pause();
+     177           0 :     est_alt_->pause();
+     178           0 :     est_hdg_->pause();
+     179           0 :     changeState(STOPPED_STATE);
+     180           0 :     return true;
+     181             : 
+     182             :   } else {
+     183           0 :     return false;
+     184             :   }
+     185             : }
+     186             : /*//}*/
+     187             : 
+     188             : /*//{ reset() */
+     189           0 : bool StateGeneric::reset(void) {
+     190             : 
+     191           0 :   if (!isInitialized()) {
+     192           0 :     ROS_ERROR("[%s]: Cannot reset uninitialized estimator", getPrintName().c_str());
+     193           0 :     return false;
+     194             :   }
+     195             : 
+     196           0 :   est_lat_->pause();
+     197           0 :   est_alt_->pause();
+     198           0 :   est_hdg_->pause();
+     199           0 :   changeState(STOPPED_STATE);
+     200             : 
+     201           0 :   ROS_INFO("[%s]: Estimator reset", getPrintName().c_str());
+     202             : 
+     203           0 :   return true;
+     204             : }
+     205             : /*//}*/
+     206             : 
+     207             : /* timerUpdate() //{*/
+     208      192986 : void StateGeneric::timerUpdate([[maybe_unused]] const ros::TimerEvent &event) {
+     209             : 
+     210             : 
+     211      192986 :   if (!isInitialized()) {
+     212       10272 :     return;
+     213             :   }
+     214             : 
+     215      384585 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("StateGeneric::timerUpdate", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     216             : 
+     217      192276 :   switch (getCurrentSmState()) {
+     218             : 
+     219           0 :     case UNINITIALIZED_STATE: {
+     220           0 :       break;
+     221             :     }
+     222        2260 :     case INITIALIZED_STATE: {
+     223             : 
+     224        2260 :       if (sh_hw_api_orient_.hasMsg() && sh_hw_api_ang_vel_.hasMsg()) {
+     225          97 :         if (est_lat_->isInitialized() && est_alt_->isInitialized() && est_hdg_->isInitialized()) {
+     226          97 :           changeState(READY_STATE);
+     227          97 :           ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is ready to start", getPrintName().c_str());
+     228             :         } else {
+     229           0 :           ROS_INFO_THROTTLE(1.0, "[%s]: %s subestimators to be initialized", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     230           0 :           return;
+     231             :         }
+     232             :       } else {
+     233        2163 :         ROS_INFO_THROTTLE(1.0, "[%s]: %s msg on topic %s", getPrintName().c_str(), Support::waiting_for_string.c_str(), sh_hw_api_orient_.topicName().c_str());
+     234        2163 :         return;
+     235             :       }
+     236             : 
+     237          97 :       break;
+     238             :     }
+     239             : 
+     240        7299 :     case READY_STATE: {
+     241        7299 :       break;
+     242             :     }
+     243             : 
+     244         120 :     case STARTED_STATE: {
+     245             : 
+     246         120 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s convergence of LKF", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     247             : 
+     248         120 :       if (est_lat_->isRunning() && est_alt_->isRunning() && est_hdg_->isRunning()) {
+     249          97 :         ROS_INFO_THROTTLE(1.0, "[%s]: Subestimators converged", getPrintName().c_str());
+     250          97 :         changeState(RUNNING_STATE);
+     251             :       } else {
+     252          23 :         return;
+     253             :       }
+     254          97 :       break;
+     255             :     }
+     256             : 
+     257      182602 :     case RUNNING_STATE: {
+     258      182602 :       if (est_lat_->isError() || est_alt_->isError() || est_hdg_->isError()) {
+     259           0 :         changeState(ERROR_STATE);
+     260             :       }
+     261      182586 :       break;
+     262             :     }
+     263             : 
+     264           0 :     case STOPPED_STATE: {
+     265           0 :       break;
+     266             :     }
+     267             : 
+     268           0 :     case ERROR_STATE: {
+     269           0 :       if ((est_lat_->isReady() || est_lat_->isRunning()) && (est_alt_->isReady() || est_alt_->isRunning()) && (est_hdg_->isReady() || est_hdg_->isRunning())) {
+     270           0 :         changeState(READY_STATE);
+     271             :       }
+     272           0 :       break;
+     273             :     }
+     274             :   }
+     275             : 
+     276      190084 :   if (!isRunning() && !isStarted()) {
+     277        7396 :     return;
+     278             :   }
+     279             : 
+     280      182697 :   updateUavState();
+     281             : 
+     282      182681 :   publishUavState();
+     283      182715 :   publishOdom();
+     284      182716 :   publishCovariance();
+     285      182716 :   publishInnovation();
+     286      182716 :   publishDiagnostics();
+     287             : }
+     288             : /*//}*/
+     289             : 
+     290             : /*//{ timerCheckHealth() */
+     291           0 : void StateGeneric::timerCheckHealth([[maybe_unused]] const ros::TimerEvent &event) {
+     292             : 
+     293           0 :   if (!isInitialized()) {
+     294           0 :     return;
+     295             :   }
+     296             : 
+     297           0 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("StateGeneric::timerCheckHealth", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     298             : 
+     299           0 :   switch (getCurrentSmState()) {
+     300             : 
+     301           0 :     case UNINITIALIZED_STATE: {
+     302           0 :       break;
+     303             :     }
+     304           0 :     case INITIALIZED_STATE: {
+     305             : 
+     306           0 :       if (sh_hw_api_orient_.hasMsg() && sh_hw_api_ang_vel_.hasMsg()) {
+     307           0 :         if (est_lat_->isInitialized() && est_alt_->isInitialized() && est_hdg_->isInitialized()) {
+     308           0 :           changeState(READY_STATE);
+     309           0 :           ROS_INFO_THROTTLE(1.0, "[%s]: Estimator is ready to start", getPrintName().c_str());
+     310             :         } else {
+     311           0 :           ROS_INFO_THROTTLE(1.0, "[%s]: %s subestimators to be initialized", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     312           0 :           return;
+     313             :         }
+     314             :       } else {
+     315           0 :         ROS_INFO_THROTTLE(1.0, "[%s]: %s msg on topic %s", getPrintName().c_str(), Support::waiting_for_string.c_str(), sh_hw_api_orient_.topicName().c_str());
+     316           0 :         return;
+     317             :       }
+     318             : 
+     319           0 :       break;
+     320             :     }
+     321             : 
+     322           0 :     case READY_STATE: {
+     323           0 :       break;
+     324             :     }
+     325             : 
+     326           0 :     case STARTED_STATE: {
+     327             : 
+     328           0 :       ROS_INFO_THROTTLE(1.0, "[%s]: %s for convergence of LKF", getPrintName().c_str(), Support::waiting_for_string.c_str());
+     329             : 
+     330           0 :       if (est_lat_->isError() || est_alt_->isError() || est_hdg_->isError()) {
+     331           0 :         changeState(ERROR_STATE);
+     332             :       }
+     333             : 
+     334           0 :       if (est_lat_->isRunning() && est_alt_->isRunning() && est_hdg_->isRunning()) {
+     335           0 :         ROS_INFO_THROTTLE(1.0, "[%s]: Subestimators converged", getPrintName().c_str());
+     336           0 :         changeState(RUNNING_STATE);
+     337             :       } else {
+     338           0 :         return;
+     339             :       }
+     340           0 :       break;
+     341             :     }
+     342             : 
+     343           0 :     case RUNNING_STATE: {
+     344           0 :       if (est_lat_->isError() || est_alt_->isError() || est_hdg_->isError()) {
+     345           0 :         changeState(ERROR_STATE);
+     346             :       }
+     347           0 :       break;
+     348             :     }
+     349             : 
+     350           0 :     case STOPPED_STATE: {
+     351           0 :       break;
+     352             :     }
+     353             : 
+     354           0 :     case ERROR_STATE: {
+     355           0 :       if (est_lat_->isReady() && est_alt_->isReady() && est_hdg_->isReady()) {
+     356           0 :         changeState(READY_STATE);
+     357             :       }
+     358           0 :       break;
+     359             :     }
+     360             :   }
+     361             : }
+     362             : /*//}*/
+     363             : 
+     364             : /* timerPubAttitude() //{*/
+     365      192985 : void StateGeneric::timerPubAttitude([[maybe_unused]] const ros::TimerEvent &event) {
+     366             : 
+     367      192985 :   if (!isInitialized()) {
+     368        3142 :     return;
+     369             :   }
+     370             : 
+     371      384575 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("StateGeneric::timerPubAttitude", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     372             : 
+     373      192256 :   if (!sh_hw_api_orient_.hasMsg()) {
+     374        1299 :     ROS_WARN_THROTTLE(1.0, "[%s]: has not received orientation on topic %s yet", getPrintName().c_str(), sh_hw_api_orient_.topicName().c_str());
+     375        1299 :     return;
+     376             :   }
+     377             : 
+     378      190971 :   if (!est_hdg_->isRunning() && !isError()) {
+     379        1153 :     ROS_WARN_THROTTLE(1.0, "[%s]: cannot publish attitude, heading estimator is not running", getPrintName().c_str());
+     380        1153 :     return;
+     381             :   }
+     382             : 
+     383      189823 :   scope_timer.checkpoint("checks");
+     384             : 
+     385      189791 :   const ros::Time time_now = ros::Time::now();
+     386             : 
+     387      189842 :   geometry_msgs::QuaternionStamped att;
+     388      189790 :   att.header.stamp    = time_now;
+     389      189790 :   att.header.frame_id = ns_frame_id_ + "_att_only";
+     390             : 
+     391             :   double hdg;
+     392      189784 :   if (isError()) {
+     393           0 :     hdg = est_hdg_->getLastValidHdg();
+     394             :   } else {
+     395      189789 :     hdg = est_hdg_->getState(POSITION);
+     396             :   }
+     397             : 
+     398      189785 :   auto res = rotateQuaternionByHeading(sh_hw_api_orient_.getMsg()->quaternion, hdg);
+     399      189554 :   if (res) {
+     400      189742 :     att.quaternion = res.value();
+     401             :   } else {
+     402           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: could not rotate orientation by heading", getPrintName().c_str());
+     403           0 :     return;
+     404             :   }
+     405             : 
+     406      189490 :   scope_timer.checkpoint("rotate");
+     407             : 
+     408      189752 :   if (!Support::noNans(att.quaternion)) {
+     409           0 :     ROS_ERROR_THROTTLE(1.0, "[%s]: NaNs in timerPubAttitude quaternion", getPrintName().c_str());
+     410           0 :     return;
+     411             :   }
+     412             : 
+     413      189683 :   scope_timer.checkpoint("nan check");
+     414             : 
+     415      189557 :   ph_attitude_.publish(att);
+     416      189846 :   scope_timer.checkpoint("publish");
+     417             : }
+     418             : /*//}*/
+     419             : 
+     420             : /*//{ isConverged() */
+     421           0 : bool StateGeneric::isConverged() {
+     422             : 
+     423             :   // TODO: check convergence by rate of change of determinant
+     424             :   // most likely not used in top-level estimator
+     425             : 
+     426           0 :   return true;
+     427             : }
+     428             : /*//}*/
+     429             : 
+     430             : /*//{ updateUavState() */
+     431      182690 : void StateGeneric::updateUavState() {
+     432             : 
+     433      182690 :   if (!sh_hw_api_orient_.hasMsg()) {
+     434           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: has not received orientation on topic %s yet", getPrintName().c_str(), sh_hw_api_orient_.topicName().c_str());
+     435           0 :     return;
+     436             :   }
+     437             : 
+     438      182687 :   if (!sh_hw_api_ang_vel_.hasMsg()) {
+     439           0 :     ROS_WARN_THROTTLE(1.0, "[%s]: has not received angular velocity on topic %s yet", getPrintName().c_str(), sh_hw_api_ang_vel_.topicName().c_str());
+     440           0 :     return;
+     441             :   }
+     442      365394 :   mrs_lib::ScopeTimer scope_timer = mrs_lib::ScopeTimer("StateGeneric::updateUavState", ch_->scope_timer.logger, ch_->scope_timer.enabled);
+     443             : 
+     444      182694 :   const ros::Time time_now = ros::Time::now();
+     445             : 
+     446      182712 :   mrs_msgs::UavState uav_state = uav_state_init_;
+     447      182712 :   uav_state.header.stamp       = time_now;
+     448             : 
+     449             :   // do not rotate orientation if passthrough hdg
+     450      182712 :   if (est_hdg_name_ == "hdg_passthrough") {
+     451           0 :     uav_state.pose.orientation = sh_hw_api_orient_.getMsg()->quaternion;
+     452             :   } else {
+     453             :     double hdg;
+     454      182690 :     if (isError()) {
+     455           0 :       hdg = est_hdg_->getLastValidHdg();
+     456             :     } else {
+     457      182671 :       hdg = est_hdg_->getState(POSITION);
+     458             :     }
+     459             : 
+     460      182650 :     auto res = rotateQuaternionByHeading(sh_hw_api_orient_.getMsg()->quaternion, hdg);
+     461      182516 :     if (res) {
+     462      182640 :       uav_state.pose.orientation = res.value();
+     463             :     } else {
+     464           0 :       ROS_ERROR_THROTTLE(1.0, "[%s]: could not rotate orientation by heading", getPrintName().c_str());
+     465           0 :       return;
+     466             :     }
+     467             :   }
+     468             : 
+     469      182455 :   scope_timer.checkpoint("rotate orientation");
+     470             : 
+     471      182674 :   uav_state.velocity.angular = sh_hw_api_ang_vel_.getMsg()->vector;
+     472             : 
+     473      182571 :   uav_state.pose.position.x = est_lat_->getState(POSITION, AXIS_X);
+     474      182627 :   uav_state.pose.position.y = est_lat_->getState(POSITION, AXIS_Y);
+     475      182613 :   uav_state.pose.position.z = est_alt_->getState(POSITION);
+     476             : 
+     477      182563 :   uav_state.velocity.linear.x = est_lat_->getState(VELOCITY, AXIS_X);  // in global frame
+     478      182614 :   uav_state.velocity.linear.y = est_lat_->getState(VELOCITY, AXIS_Y);  // in global frame
+     479      182648 :   uav_state.velocity.linear.z = est_alt_->getState(VELOCITY);          // in global frame
+     480             : 
+     481      182599 :   uav_state.acceleration.linear.x = est_lat_->getState(ACCELERATION, AXIS_X);  // in global frame
+     482      182629 :   uav_state.acceleration.linear.y = est_lat_->getState(ACCELERATION, AXIS_Y);  // in global frame
+     483      182648 :   uav_state.acceleration.linear.z = est_alt_->getState(ACCELERATION);          // in global frame
+     484             : 
+     485      182621 :   scope_timer.checkpoint("fill uav state");
+     486             : 
+     487      365216 :   const nav_msgs::Odometry odom = Support::uavStateToOdom(uav_state);
+     488      182699 :   scope_timer.checkpoint("uav state to odom");
+     489             : 
+     490      365251 :   nav_msgs::Odometry innovation = innovation_init_;
+     491      182654 :   innovation.header.stamp       = time_now;
+     492             : 
+     493      182654 :   innovation.pose.pose.position.x = est_lat_->getInnovation(POSITION, AXIS_X);
+     494      182554 :   innovation.pose.pose.position.y = est_lat_->getInnovation(POSITION, AXIS_Y);
+     495      182587 :   innovation.pose.pose.position.z = est_alt_->getInnovation(POSITION);
+     496             : 
+     497      182529 :   is_mitigating_jump_ = est_alt_->isMitigatingJump() || est_lat_->isMitigatingJump() || est_hdg_->isMitigatingJump();
+     498             : 
+     499      182638 :   scope_timer.checkpoint("innovation");
+     500             : 
+     501      365148 :   mrs_msgs::Float64ArrayStamped pose_covariance, twist_covariance;
+     502      182367 :   pose_covariance.header.stamp  = time_now;
+     503      182367 :   twist_covariance.header.stamp = time_now;
+     504             : 
+     505      182367 :   const int n_states = 6;  // TODO this should be defined somewhere else
+     506      182367 :   pose_covariance.values.resize(n_states * n_states);
+     507      182545 :   pose_covariance.values.at(n_states * AXIS_X + AXIS_X) = est_lat_->getCovariance(POSITION, AXIS_X);
+     508      182313 :   pose_covariance.values.at(n_states * AXIS_Y + AXIS_Y) = est_lat_->getCovariance(POSITION, AXIS_Y);
+     509      182540 :   pose_covariance.values.at(n_states * AXIS_Z + AXIS_Z) = est_alt_->getCovariance(POSITION);
+     510             : 
+     511      182381 :   twist_covariance.values.resize(n_states * n_states);
+     512      182581 :   twist_covariance.values.at(n_states * AXIS_X + AXIS_X) = est_lat_->getCovariance(VELOCITY, AXIS_X);
+     513      182599 :   twist_covariance.values.at(n_states * AXIS_Y + AXIS_Y) = est_lat_->getCovariance(VELOCITY, AXIS_Y);
+     514      182631 :   twist_covariance.values.at(n_states * AXIS_Z + AXIS_Z) = est_alt_->getCovariance(VELOCITY);
+     515             : 
+     516      182610 :   scope_timer.checkpoint("covariance");
+     517             : 
+     518      182518 :   mrs_lib::set_mutexed(mtx_uav_state_, uav_state, uav_state_);
+     519      182553 :   mrs_lib::set_mutexed(mtx_odom_, odom, odom_);
+     520      182436 :   mrs_lib::set_mutexed(mtx_innovation_, innovation, innovation_);
+     521      182602 :   mrs_lib::set_mutexed(mtx_covariance_, pose_covariance, pose_covariance_);
+     522      182536 :   mrs_lib::set_mutexed(mtx_covariance_, twist_covariance, twist_covariance_);
+     523             : }
+     524             : /*//}*/
+     525             : 
+     526             : /*//{ getHeading() */
+     527      290040 : std::optional<double> StateGeneric::getHeading() const {
+     528      290040 :   if (!est_hdg_->isRunning()) {
+     529         173 :     return {};
+     530             :   }
+     531      289854 :   return est_hdg_->getState(POSITION);
+     532             : }
+     533             : /*//}*/
+     534             : 
+     535             : /*//{ setUavState() */
+     536           0 : bool StateGeneric::setUavState([[maybe_unused]] const mrs_msgs::UavState &uav_state) {
+     537             : 
+     538           0 :   if (!isInState(STOPPED_STATE)) {
+     539           0 :     ROS_WARN("[%s]: Estimator state can be set only in the STOPPED state", getPrintName().c_str());
+     540           0 :     return false;
+     541             :   }
+     542             : 
+     543           0 :   ROS_WARN("[%s]: Setting the state of this estimator is not implemented.", getPrintName().c_str());
+     544           0 :   return false;
+     545             : }
+     546             : /*//}*/
+     547             : 
+     548             : }  // namespace mrs_uav_state_estimators
+     549             : 
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_state_estimators/src/estimators/state/state_generic.cpp.gcov.overview.html b/mrs_uav_state_estimators/src/estimators/state/state_generic.cpp.gcov.overview.html new file mode 100644 index 0000000000..200fa9f980 --- /dev/null +++ b/mrs_uav_state_estimators/src/estimators/state/state_generic.cpp.gcov.overview.html @@ -0,0 +1,158 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_state_estimators/src/estimators/state/state_generic.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_uav_state_estimators/src/estimators/state/state_generic.cpp.gcov.png b/mrs_uav_state_estimators/src/estimators/state/state_generic.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..8938884936a7531808d51a4f305de8fd22b967fe GIT binary patch literal 1968 zcmV;h2T%BkP)RelK&I9M6mH^bcPZ98fHBq4&s^YMH>$M?VC zs`18mAeBcm#_=-d2#+Je(&dx~tD86V3hsGUb2_xUYWK-7fn%6vt!I5HAWoXHKhIZS z^y*O;@i@)3p_EZL3JB=%APo#{7vvR{GGYU^OucB#X6bp-hKPo}BiJCb8Oa^}G{}&%$F!$v*3iBPY${N5+&);VP^9#MWh` zr-XTstCuDghI5|x9;#hA+Xajk&XFw@_eP#}%iHa!d_-xG7fZT;YPDk59K| zH)9-$k+e|G=m-$kqpTgTn{F@c*vKrI2D=5hbj;Vc1a3P@n{-tz|h1I2Jd!5+_-dm%w)p76 z;PyJ!Gb;&?%?SxCDW)Oz5?SGJhC7S^v>#`@k^+T+D*zbdE)Hvb3U3DaxCBQI&ewM>X<}JsFs^_279i$dJL;q*>ylLzFyMsrjNKlxSJOU?;q%>Jun7SHKeLoRwO#@DGJbk}b z*)rf57LIX~EJ~fCg0UxH#UB?_;1tmC@B@ahb-fSBtZmO+fzvR5H) zK&VLNDq!T0I$K5?(hRP|BSqj_8_HrM7?EX#2`MzuyhuZXv^G3oJ=iapZFb+qYJi;3 z>JV3_{YP1QT#py`QVeAPW0%F5)j}~wP2a&|HIQN>T0p8Ww-nu=)fDy$O#l^R%uGVE zK`akgoYznjpo51`zu^?b7}PM-F3LnRq&geG7`5D~9+EU`1^d-W^8}AY77dSNMYGZp zcjb$Ut4+9Eub#`drh5N&4lUh`|As=dg89ttD-f^&V;S}oU^%VWQ?IkM~|} z+f5Eg3RmKhBJgdM)nX$Uw}R=)7{6?VlxLCOeDG2OEH-3Ud=~ylm2x|e^=c0zy<~mD zPpgeN1&omdDe{`m?{(==#5K7Y@%T-uI(fX_IeMEW`nsP(h0@Q{H+J#i^#Nu7* zVJGdJju2st9BO7S^mo|WnOq_bjvZsz7#g-yeTFgeo;;WIc#$s1LNPkuwv48mzCa$$ zwjCf&Iq#{prT6p^FR6vl43$Ubrd>Rh1wHm~GgUu@bZp31=)OJoovh`kFs-|gU7>0Z zSNhWR$jj^N&ZbL`>6%z2o0xLy38e}-e)>J?(Iymps2)0CKpFTeI-0euQgKI93NH;C z)ApL{;Salx=GR=J{f`fOpy6RRN}9`gsefYIPUtlkTg_=jD&Nuo-3+eH(uKV}c22t= z>)ipM{fKBP%<97Zx^)ny%hsZ9C6{72izmb;clarb5hXqBK_MJzauFh(ao*Otyrzox z<7UrcS`&hm6kP62V7YfJ#F27u0J~x49y?O*b=!haFZZl^upJugn^Mt-pZi$Aa?b+R zC-=QKy7|bRe{_0;#*kHa#+6QDj2%-^jF$jvO8T7CS=wrkHdg_f1EU7;9FMv5VaQ(z zX!tzMqoQWxfDITm!I#OI>_I>NLzf*sBTe*0NGHvLh#RQ~aiy)z8s|#D`81EoG`Q{o zUeZbAa~M5eaj6so7EG8^p6bC8lQKpyZL6yDlu3I%ys4cWFLHsT|qrREi>{=;J@R==gg z{(i%eJhR8jwpje$tJVMK0J3;%muobOdFVN{(D)CEfGpm?B=2Sb0000 + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trackers/src/joy_tracker + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_trackers/src/joy_tracker - joy_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:6614246.5 %
Date:2024-04-17 23:52:03Functions:71838.9 %
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_trackers::joy_tracker::JoyTracker::resetStatic()0
mrs_uav_trackers::joy_tracker::JoyTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::getStatus()0
mrs_uav_trackers::joy_tracker::JoyTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
mrs_uav_trackers::joy_tracker::JoyTracker::deactivate()20
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_trackers::joy_tracker::JoyTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_trackers::joy_tracker::JoyTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
mrs_uav_trackers::joy_tracker::JoyTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)311
mrs_uav_trackers::joy_tracker::JoyTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
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Current view:top level - mrs_uav_trackers/src/joy_tracker - joy_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:6614246.5 %
Date:2024-04-17 23:52:03Functions:71838.9 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_trackers::joy_tracker::JoyTracker::deactivate()20
mrs_uav_trackers::joy_tracker::JoyTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_trackers::joy_tracker::JoyTracker::resetStatic()0
mrs_uav_trackers::joy_tracker::JoyTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
mrs_uav_trackers::joy_tracker::JoyTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)311
mrs_uav_trackers::joy_tracker::JoyTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
mrs_uav_trackers::joy_tracker::JoyTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
mrs_uav_trackers::joy_tracker::JoyTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)0
mrs_uav_trackers::joy_tracker::JoyTracker::getStatus()0
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Current view:top level - mrs_uav_trackers/src/joy_tracker - joy_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:6614246.5 %
Date:2024-04-17 23:52:03Functions:71838.9 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <ros/package.h>
+       5             : 
+       6             : #include <mrs_uav_managers/tracker.h>
+       7             : 
+       8             : #include <nav_msgs/Odometry.h>
+       9             : #include <sensor_msgs/Joy.h>
+      10             : 
+      11             : #include <mrs_lib/profiler.h>
+      12             : #include <mrs_lib/mutex.h>
+      13             : #include <mrs_lib/attitude_converter.h>
+      14             : #include <mrs_lib/subscribe_handler.h>
+      15             : #include <mrs_lib/geometry/cyclic.h>
+      16             : 
+      17             : #include <mrs_msgs/VelocityReferenceSrv.h>
+      18             : 
+      19             : //}
+      20             : 
+      21             : /* defines //{ */
+      22             : 
+      23             : #define STOP_THR 1e-3
+      24             : 
+      25             : //}
+      26             : 
+      27             : /* using //{ */
+      28             : 
+      29             : using vec2_t = mrs_lib::geometry::vec_t<2>;
+      30             : using vec3_t = mrs_lib::geometry::vec_t<3>;
+      31             : 
+      32             : using radians  = mrs_lib::geometry::radians;
+      33             : using sradians = mrs_lib::geometry::sradians;
+      34             : 
+      35             : //}
+      36             : 
+      37             : namespace mrs_uav_trackers
+      38             : {
+      39             : 
+      40             : namespace joy_tracker
+      41             : {
+      42             : 
+      43             : /* //{ class JoyTracker */
+      44             : 
+      45             : class JoyTracker : public mrs_uav_managers::Tracker {
+      46             : public:
+      47             :   bool initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      48             :                   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers);
+      49             : 
+      50             :   std::tuple<bool, std::string> activate(const std::optional<mrs_msgs::TrackerCommand> &last_tracker_cmd);
+      51             :   void                          deactivate(void);
+      52             :   bool                          resetStatic(void);
+      53             : 
+      54             :   std::optional<mrs_msgs::TrackerCommand>   update(const mrs_msgs::UavState &uav_state, const mrs_uav_managers::Controller::ControlOutput &last_control_output);
+      55             :   const mrs_msgs::TrackerStatus             getStatus();
+      56             :   const std_srvs::SetBoolResponse::ConstPtr enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr &cmd);
+      57             :   const std_srvs::TriggerResponse::ConstPtr switchOdometrySource(const mrs_msgs::UavState &new_uav_state);
+      58             : 
+      59             :   const mrs_msgs::ReferenceSrvResponse::ConstPtr           setReference(const mrs_msgs::ReferenceSrvRequest::ConstPtr &cmd);
+      60             :   const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr   setVelocityReference(const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr &cmd);
+      61             :   const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr setTrajectoryReference(const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr &cmd);
+      62             : 
+      63             :   const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd);
+      64             : 
+      65             :   const std_srvs::TriggerResponse::ConstPtr hover(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      66             :   const std_srvs::TriggerResponse::ConstPtr startTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      67             :   const std_srvs::TriggerResponse::ConstPtr stopTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      68             :   const std_srvs::TriggerResponse::ConstPtr resumeTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      69             :   const std_srvs::TriggerResponse::ConstPtr gotoTrajectoryStart(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      70             : 
+      71             : private:
+      72             :   ros::NodeHandle nh_;
+      73             : 
+      74             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>  common_handlers_;
+      75             :   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers_;
+      76             : 
+      77             :   bool callbacks_enabled_ = true;
+      78             : 
+      79             :   std::string _uav_name_;
+      80             : 
+      81             :   bool is_initialized_ = false;
+      82             :   bool is_active_      = false;
+      83             : 
+      84             :   ros::Time last_update;
+      85             : 
+      86             :   // | ------------------------ uav state ----------------------- |
+      87             : 
+      88             :   mrs_msgs::UavState uav_state_;
+      89             :   bool               got_uav_state_ = false;
+      90             :   std::mutex         mutex_uav_state_;
+      91             : 
+      92             :   // | ------------------ dynamics constraints ------------------ |
+      93             : 
+      94             :   double     _heading_rate_;
+      95             :   std::mutex mutex_constraints_;
+      96             : 
+      97             :   // | ------------------ tracker's inner state ----------------- |
+      98             : 
+      99             :   double     state_z_;
+     100             :   double     state_heading_;
+     101             :   std::mutex mutex_state_;
+     102             : 
+     103             :   // | ------------------- joystick subscriber ------------------ |
+     104             : 
+     105             :   mrs_lib::SubscribeHandler<sensor_msgs::Joy> sh_joystick_;
+     106             : 
+     107             :   double _max_tilt_;
+     108             :   double _vertical_speed_;
+     109             : 
+     110             :   // channel numbers and channel multipliers
+     111             :   int    _channel_pitch_;
+     112             :   int    _channel_roll_;
+     113             :   int    _channel_heading_;
+     114             :   int    _channel_throttle_;
+     115             :   double _channel_mult_pitch_;
+     116             :   double _channel_mult_roll_;
+     117             :   double _channel_mult_heading_;
+     118             :   double _channel_mult_throttle_;
+     119             : 
+     120             :   // | ------------------------ profiler ------------------------ |
+     121             : 
+     122             :   mrs_lib::Profiler profiler_;
+     123             :   bool              _profiler_enabled_ = false;
+     124             : };
+     125             : 
+     126             : //}
+     127             : 
+     128             : // | -------------- tracker's interface routines -------------- |
+     129             : 
+     130             : /* //{ initialize() */
+     131             : 
+     132          91 : bool JoyTracker::initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+     133             :                             std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) {
+     134             : 
+     135          91 :   this->common_handlers_  = common_handlers;
+     136          91 :   this->private_handlers_ = private_handlers;
+     137             : 
+     138          91 :   _uav_name_ = common_handlers->uav_name;
+     139             : 
+     140          91 :   nh_ = nh;
+     141             : 
+     142          91 :   ros::Time::waitForValid();
+     143             : 
+     144             :   // --------------------------------------------------------------
+     145             :   // |                     loading parameters                     |
+     146             :   // --------------------------------------------------------------
+     147             : 
+     148             :   // | ---------- loading params using the parent's nh ---------- |
+     149             : 
+     150         182 :   mrs_lib::ParamLoader param_loader_parent(common_handlers->parent_nh, "ControlManager");
+     151             : 
+     152          91 :   param_loader_parent.loadParam("enable_profiler", _profiler_enabled_);
+     153             : 
+     154          91 :   if (!param_loader_parent.loadedSuccessfully()) {
+     155           0 :     ROS_ERROR("[JoyTracker]: Could not load all parameters!");
+     156           0 :     return false;
+     157             :   }
+     158             : 
+     159             :   // | ---------------- load plugin's parameters ---------------- |
+     160             : 
+     161          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/private/joy_tracker.yaml");
+     162          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/public/joy_tracker.yaml");
+     163             : 
+     164         182 :   const std::string yaml_prefix = "mrs_uav_trackers/joy_tracker/";
+     165             : 
+     166          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "vertical_tracker/vertical_speed", _vertical_speed_);
+     167             : 
+     168          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "max_tilt", _max_tilt_);
+     169             : 
+     170          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "heading_tracker/heading_rate", _heading_rate_);
+     171             : 
+     172             :   // load channels
+     173          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "channels/pitch", _channel_pitch_);
+     174          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "channels/roll", _channel_roll_);
+     175          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "channels/heading", _channel_heading_);
+     176          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "channels/throttle", _channel_throttle_);
+     177             : 
+     178             :   // load channel multipliers
+     179          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "channel_multipliers/pitch", _channel_mult_pitch_);
+     180          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "channel_multipliers/roll", _channel_mult_roll_);
+     181          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "channel_multipliers/heading", _channel_mult_heading_);
+     182          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "channel_multipliers/throttle", _channel_mult_throttle_);
+     183             : 
+     184          91 :   if (!private_handlers->param_loader->loadedSuccessfully()) {
+     185           0 :     ROS_ERROR("[JoyTracker]: could not load all parameters!");
+     186           0 :     return false;
+     187             :   }
+     188             : 
+     189             :   // | ------------------------ profiler ------------------------ |
+     190             : 
+     191          91 :   profiler_ = mrs_lib::Profiler(common_handlers->parent_nh, "JoyTracker", _profiler_enabled_);
+     192             : 
+     193             :   // | ----------------------- subscribers ---------------------- |
+     194             : 
+     195          91 :   mrs_lib::SubscribeHandlerOptions shopts;
+     196          91 :   shopts.nh              = nh_;
+     197          91 :   shopts.node_name       = "JoyTracker";
+     198          91 :   shopts.queue_size      = 1;
+     199          91 :   shopts.transport_hints = ros::TransportHints().tcpNoDelay();
+     200             : 
+     201          91 :   sh_joystick_ = mrs_lib::SubscribeHandler<sensor_msgs::Joy>(shopts, "joystick");
+     202             : 
+     203             :   // | --------------------- finish the init -------------------- |
+     204             : 
+     205          91 :   last_update = ros::Time(0);
+     206             : 
+     207          91 :   is_initialized_ = true;
+     208             : 
+     209          91 :   ROS_INFO("[JoyTracker]: initialized");
+     210             : 
+     211          91 :   return true;
+     212             : }
+     213             : 
+     214             : //}
+     215             : 
+     216             : /* //{ activate() */
+     217             : 
+     218           0 : std::tuple<bool, std::string> JoyTracker::activate(const std::optional<mrs_msgs::TrackerCommand> &last_tracker_cmd) {
+     219             : 
+     220           0 :   std::stringstream ss;
+     221             : 
+     222           0 :   if (!got_uav_state_) {
+     223             : 
+     224           0 :     ss << "odometry not set";
+     225           0 :     return std::tuple(false, ss.str());
+     226             :   }
+     227             : 
+     228           0 :   if (!sh_joystick_.hasMsg()) {
+     229             : 
+     230           0 :     ss << "missing joystick goal";
+     231           0 :     return std::tuple(false, ss.str());
+     232             :   }
+     233             : 
+     234           0 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     235             : 
+     236           0 :   double uav_heading = 0;
+     237             : 
+     238             :   try {
+     239           0 :     uav_heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+     240             :   }
+     241           0 :   catch (...) {
+     242           0 :     ROS_ERROR_THROTTLE(1.0, "[JoyTracker]: could not calculate UAV heading");
+     243             :   }
+     244             : 
+     245             :   // initialized the heading and z from the last tracker command / odometry
+     246             :   {
+     247           0 :     std::scoped_lock lock(mutex_state_);
+     248             : 
+     249           0 :     if (last_tracker_cmd) {
+     250             : 
+     251             :       // the last command is usable
+     252           0 :       state_z_       = last_tracker_cmd->position.z;
+     253           0 :       state_heading_ = last_tracker_cmd->heading;
+     254             : 
+     255             :     } else {
+     256             : 
+     257           0 :       state_z_       = uav_state.pose.position.z;
+     258           0 :       state_heading_ = uav_heading;
+     259             : 
+     260           0 :       ROS_WARN("[JoyTracker]: the previous command is not usable for activation, using Odometry instead");
+     261             :     }
+     262             :   }
+     263             : 
+     264           0 :   is_active_ = true;
+     265             : 
+     266           0 :   ss << "activated";
+     267           0 :   ROS_INFO_STREAM("[JoyTracker]: " << ss.str());
+     268             : 
+     269           0 :   return std::tuple(true, ss.str());
+     270             : }
+     271             : 
+     272             : //}
+     273             : 
+     274             : /* //{ deactivate() */
+     275             : 
+     276          20 : void JoyTracker::deactivate(void) {
+     277             : 
+     278          20 :   is_active_ = false;
+     279             : 
+     280          20 :   ROS_INFO("[JoyTracker]: deactivated");
+     281          20 : }
+     282             : 
+     283             : //}
+     284             : 
+     285             : /* //{ resetStatic() */
+     286             : 
+     287           0 : bool JoyTracker::resetStatic(void) {
+     288             : 
+     289           0 :   return false;
+     290             : }
+     291             : 
+     292             : //}
+     293             : 
+     294             : /* //{ update() */
+     295             : 
+     296      120229 : std::optional<mrs_msgs::TrackerCommand> JoyTracker::update(const mrs_msgs::UavState &                                          uav_state,
+     297             :                                                            [[maybe_unused]] const mrs_uav_managers::Controller::ControlOutput &last_control_output) {
+     298             : 
+     299      360687 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("update");
+     300      360687 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("JoyTracker::update", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+     301             : 
+     302             :   {
+     303      120229 :     std::scoped_lock lock(mutex_uav_state_);
+     304             : 
+     305      120229 :     uav_state_ = uav_state;
+     306             : 
+     307      120229 :     got_uav_state_ = true;
+     308             :   }
+     309             : 
+     310      120229 :   double dt = (ros::Time::now() - last_update).toSec();
+     311             : 
+     312      120229 :   last_update = ros::Time::now();
+     313             : 
+     314             :   // up to this part the update() method is evaluated even when the tracker is not active
+     315      120229 :   if (!is_active_) {
+     316      120229 :     return {};
+     317             :   }
+     318             : 
+     319           0 :   if (!sh_joystick_.hasMsg()) {
+     320           0 :     return {};
+     321             :   }
+     322             : 
+     323             :   // | ------------------ get the joystick data ----------------- |
+     324             : 
+     325           0 :   sensor_msgs::JoyConstPtr joy_data = sh_joystick_.getMsg();
+     326             : 
+     327           0 :   double desired_vertical_speed = _channel_mult_throttle_ * joy_data->axes[_channel_throttle_] * _vertical_speed_;
+     328           0 :   double desired_heading_rate   = _channel_mult_heading_ * joy_data->axes[_channel_heading_] * _heading_rate_;
+     329           0 :   double desired_pitch          = _channel_mult_pitch_ * joy_data->axes[_channel_pitch_] * _max_tilt_;
+     330           0 :   double desired_roll           = _channel_mult_roll_ * joy_data->axes[_channel_roll_] * _max_tilt_;
+     331             : 
+     332             :   // | ----------------------- z tracking ----------------------- |
+     333             : 
+     334           0 :   state_z_ += desired_vertical_speed * dt;
+     335             : 
+     336             :   // | -------------------- heading tracking -------------------- |
+     337             : 
+     338           0 :   state_heading_ += desired_heading_rate * dt;
+     339           0 :   state_heading_ = radians::wrap(state_heading_);
+     340             : 
+     341           0 :   ROS_INFO_THROTTLE(1.0, "[JoyTracker]: desired vert_speed: %.2f, heading_speed: %.2f, pitch: %.2f, roll: %.2f", desired_vertical_speed, desired_heading_rate,
+     342             :                     desired_pitch, desired_roll);
+     343             : 
+     344           0 :   mrs_msgs::TrackerCommand tracker_cmd;
+     345             : 
+     346           0 :   tracker_cmd.header.stamp    = ros::Time::now();
+     347           0 :   tracker_cmd.header.frame_id = uav_state.header.frame_id;
+     348             : 
+     349           0 :   tracker_cmd.use_position_vertical = true;
+     350           0 :   tracker_cmd.position.z            = state_z_;
+     351             : 
+     352             :   // filling these anyway to allow visualization of the reference
+     353           0 :   tracker_cmd.position.x = uav_state.pose.position.x;
+     354           0 :   tracker_cmd.position.y = uav_state.pose.position.y;
+     355             : 
+     356           0 :   tracker_cmd.use_velocity_vertical = true;
+     357           0 :   tracker_cmd.velocity.z            = desired_vertical_speed;
+     358             : 
+     359           0 :   tracker_cmd.use_heading_rate = 1;
+     360           0 :   tracker_cmd.heading_rate     = desired_heading_rate;
+     361             : 
+     362             :   /* tracker_cmd.orientation     = mrs_lib::AttitudeConverter(desired_roll, desired_pitch, 0).setHeadingByYaw(state_heading_); */
+     363           0 :   tracker_cmd.orientation     = mrs_lib::AttitudeConverter(desired_roll, desired_pitch, state_heading_);
+     364           0 :   tracker_cmd.use_orientation = true;
+     365             : 
+     366           0 :   return {tracker_cmd};
+     367             : }
+     368             : 
+     369             : //}
+     370             : 
+     371             : /* //{ getStatus() */
+     372             : 
+     373           0 : const mrs_msgs::TrackerStatus JoyTracker::getStatus() {
+     374             : 
+     375           0 :   mrs_msgs::TrackerStatus tracker_status;
+     376             : 
+     377           0 :   tracker_status.active            = is_active_;
+     378           0 :   tracker_status.callbacks_enabled = callbacks_enabled_;
+     379             : 
+     380           0 :   return tracker_status;
+     381             : }
+     382             : 
+     383             : //}
+     384             : 
+     385             : /* //{ enableCallbacks() */
+     386             : 
+     387         311 : const std_srvs::SetBoolResponse::ConstPtr JoyTracker::enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr &cmd) {
+     388             : 
+     389         622 :   std_srvs::SetBoolResponse res;
+     390         622 :   std::stringstream         ss;
+     391             : 
+     392         311 :   if (cmd->data != callbacks_enabled_) {
+     393             : 
+     394          19 :     callbacks_enabled_ = cmd->data;
+     395             : 
+     396          19 :     ss << "callbacks " << (callbacks_enabled_ ? "enabled" : "disabled");
+     397          19 :     ROS_INFO_STREAM_THROTTLE(1.0, "[JoyTracker]: " << ss.str());
+     398             : 
+     399             :   } else {
+     400             : 
+     401         292 :     ss << "callbacks were already " << (callbacks_enabled_ ? "enabled" : "disabled");
+     402         292 :     ROS_WARN_STREAM_THROTTLE(1.0, "[JoyTracker]: " << ss.str());
+     403             :   }
+     404             : 
+     405         311 :   res.message = ss.str();
+     406         311 :   res.success = true;
+     407             : 
+     408         622 :   return std_srvs::SetBoolResponse::ConstPtr(new std_srvs::SetBoolResponse(res));
+     409             : }
+     410             : 
+     411             : //}
+     412             : 
+     413             : /* switchOdometrySource() //{ */
+     414             : 
+     415           0 : const std_srvs::TriggerResponse::ConstPtr JoyTracker::switchOdometrySource([[maybe_unused]] const mrs_msgs::UavState &new_uav_state) {
+     416           0 :   return std_srvs::TriggerResponse::Ptr();
+     417             : }
+     418             : 
+     419             : //}
+     420             : 
+     421             : /* //{ hover() */
+     422             : 
+     423           0 : const std_srvs::TriggerResponse::ConstPtr JoyTracker::hover([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     424             : 
+     425           0 :   return std_srvs::TriggerResponse::Ptr();
+     426             : }
+     427             : 
+     428             : //}
+     429             : 
+     430             : /* //{ startTrajectoryTracking() */
+     431             : 
+     432           0 : const std_srvs::TriggerResponse::ConstPtr JoyTracker::startTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     433           0 :   return std_srvs::TriggerResponse::Ptr();
+     434             : }
+     435             : 
+     436             : //}
+     437             : 
+     438             : /* //{ stopTrajectoryTracking() */
+     439             : 
+     440           0 : const std_srvs::TriggerResponse::ConstPtr JoyTracker::stopTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     441           0 :   return std_srvs::TriggerResponse::Ptr();
+     442             : }
+     443             : 
+     444             : //}
+     445             : 
+     446             : /* //{ resumeTrajectoryTracking() */
+     447             : 
+     448           0 : const std_srvs::TriggerResponse::ConstPtr JoyTracker::resumeTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     449           0 :   return std_srvs::TriggerResponse::Ptr();
+     450             : }
+     451             : 
+     452             : //}
+     453             : 
+     454             : /* //{ gotoTrajectoryStart() */
+     455             : 
+     456           0 : const std_srvs::TriggerResponse::ConstPtr JoyTracker::gotoTrajectoryStart([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     457           0 :   return std_srvs::TriggerResponse::Ptr();
+     458             : }
+     459             : 
+     460             : //}
+     461             : 
+     462             : /* //{ setConstraints() */
+     463             : 
+     464         299 : const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr JoyTracker::setConstraints([
+     465             :     [maybe_unused]] const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd) {
+     466             : 
+     467         299 :   return mrs_msgs::DynamicsConstraintsSrvResponse::Ptr();
+     468             : }
+     469             : 
+     470             : //}
+     471             : 
+     472             : /* //{ setReference() */
+     473             : 
+     474           0 : const mrs_msgs::ReferenceSrvResponse::ConstPtr JoyTracker::setReference([[maybe_unused]] const mrs_msgs::ReferenceSrvRequest::ConstPtr &cmd) {
+     475             : 
+     476           0 :   return mrs_msgs::ReferenceSrvResponse::Ptr();
+     477             : }
+     478             : 
+     479             : //}
+     480             : 
+     481             : /* //{ setVelocityReference() */
+     482             : 
+     483           0 : const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr JoyTracker::setVelocityReference([
+     484             :     [maybe_unused]] const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr &cmd) {
+     485           0 :   return mrs_msgs::VelocityReferenceSrvResponse::Ptr();
+     486             : }
+     487             : 
+     488             : //}
+     489             : 
+     490             : /* //{ setTrajectoryReference() */
+     491             : 
+     492           4 : const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr JoyTracker::setTrajectoryReference([
+     493             :     [maybe_unused]] const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr &cmd) {
+     494           4 :   return mrs_msgs::TrajectoryReferenceSrvResponse::Ptr();
+     495             : }
+     496             : 
+     497             : //}
+     498             : 
+     499             : }  // namespace joy_tracker
+     500             : 
+     501             : }  // namespace mrs_uav_trackers
+     502             : 
+     503             : #include <pluginlib/class_list_macros.h>
+     504          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_trackers::joy_tracker::JoyTracker, mrs_uav_managers::Tracker)
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Test:MRS UAV System - Test coverage reportLines:43359273.1 %
Date:2024-04-17 23:52:03Functions:213167.7 %
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Test:MRS UAV System - Test coverage reportLines:43359273.1 %
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Current view:top level - mrs_uav_trackers/src/landoff_tracker - landoff_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:43359273.1 %
Date:2024-04-17 23:52:03Functions:213167.7 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_trackers::landoff_tracker::LandoffTracker::resetStatic()0
mrs_uav_trackers::landoff_tracker::LandoffTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::stopVertical()0
mrs_uav_trackers::landoff_tracker::LandoffTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
mrs_uav_trackers::landoff_tracker::LandoffTracker::callbackLand(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)5
mrs_uav_trackers::landoff_tracker::LandoffTracker::callbackELand(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)8
mrs_uav_trackers::landoff_tracker::LandoffTracker::callbackTakeoff(mrs_msgs::Vec1Request_<std::allocator<void> >&, mrs_msgs::Vec1Response_<std::allocator<void> >&)20
mrs_uav_trackers::landoff_tracker::LandoffTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)45
mrs_uav_trackers::landoff_tracker::LandoffTracker::deactivate()61
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_trackers::landoff_tracker::LandoffTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_trackers::landoff_tracker::LandoffTracker::changeState(mrs_uav_trackers::landoff_tracker::States_t)146
mrs_uav_trackers::landoff_tracker::LandoffTracker::changeStateHorizontal(mrs_uav_trackers::landoff_tracker::States_t)179
mrs_uav_trackers::landoff_tracker::LandoffTracker::changeStateVertical(mrs_uav_trackers::landoff_tracker::States_t)219
mrs_uav_trackers::landoff_tracker::LandoffTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
mrs_uav_trackers::landoff_tracker::LandoffTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)311
mrs_uav_trackers::landoff_tracker::LandoffTracker::stopVerticalMotion()653
mrs_uav_trackers::landoff_tracker::LandoffTracker::stopHorizontalMotion()653
mrs_uav_trackers::landoff_tracker::LandoffTracker::getStatus()2208
mrs_uav_trackers::landoff_tracker::LandoffTracker::decelerateVertical()4480
mrs_uav_trackers::landoff_tracker::LandoffTracker::accelerateVertical()15806
mrs_uav_trackers::landoff_tracker::LandoffTracker::stopHorizontal()20286
mrs_uav_trackers::landoff_tracker::LandoffTracker::timerMain(ros::TimerEvent const&)23220
mrs_uav_trackers::landoff_tracker::LandoffTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
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Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_uav_trackers/src/landoff_tracker - landoff_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:43359273.1 %
Date:2024-04-17 23:52:03Functions:213167.7 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_trackers::landoff_tracker::LandoffTracker::deactivate()61
mrs_uav_trackers::landoff_tracker::LandoffTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_trackers::landoff_tracker::LandoffTracker::changeState(mrs_uav_trackers::landoff_tracker::States_t)146
mrs_uav_trackers::landoff_tracker::LandoffTracker::resetStatic()0
mrs_uav_trackers::landoff_tracker::LandoffTracker::callbackLand(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)5
mrs_uav_trackers::landoff_tracker::LandoffTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::stopVertical()0
mrs_uav_trackers::landoff_tracker::LandoffTracker::callbackELand(std_srvs::TriggerRequest_<std::allocator<void> >&, std_srvs::TriggerResponse_<std::allocator<void> >&)8
mrs_uav_trackers::landoff_tracker::LandoffTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
mrs_uav_trackers::landoff_tracker::LandoffTracker::stopHorizontal()20286
mrs_uav_trackers::landoff_tracker::LandoffTracker::callbackTakeoff(mrs_msgs::Vec1Request_<std::allocator<void> >&, mrs_msgs::Vec1Response_<std::allocator<void> >&)20
mrs_uav_trackers::landoff_tracker::LandoffTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)311
mrs_uav_trackers::landoff_tracker::LandoffTracker::accelerateVertical()15806
mrs_uav_trackers::landoff_tracker::LandoffTracker::decelerateVertical()4480
mrs_uav_trackers::landoff_tracker::LandoffTracker::stopVerticalMotion()653
mrs_uav_trackers::landoff_tracker::LandoffTracker::changeStateVertical(mrs_uav_trackers::landoff_tracker::States_t)219
mrs_uav_trackers::landoff_tracker::LandoffTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::stopHorizontalMotion()653
mrs_uav_trackers::landoff_tracker::LandoffTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::changeStateHorizontal(mrs_uav_trackers::landoff_tracker::States_t)179
mrs_uav_trackers::landoff_tracker::LandoffTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
mrs_uav_trackers::landoff_tracker::LandoffTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::landoff_tracker::LandoffTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
mrs_uav_trackers::landoff_tracker::LandoffTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)45
mrs_uav_trackers::landoff_tracker::LandoffTracker::getStatus()2208
mrs_uav_trackers::landoff_tracker::LandoffTracker::timerMain(ros::TimerEvent const&)23220
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LCOV - code coverage report
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Current view:top level - mrs_uav_trackers/src/landoff_tracker - landoff_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:43359273.1 %
Date:2024-04-17 23:52:03Functions:213167.7 %
Legend: Lines: + hit + not hit +
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+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <ros/package.h>
+       5             : 
+       6             : #include <mrs_uav_managers/tracker.h>
+       7             : 
+       8             : #include <mrs_msgs/Vec1.h>
+       9             : #include <mrs_msgs/UavState.h>
+      10             : #include <mrs_msgs/VelocityReferenceSrv.h>
+      11             : 
+      12             : #include <mrs_lib/profiler.h>
+      13             : #include <mrs_lib/mutex.h>
+      14             : #include <mrs_lib/attitude_converter.h>
+      15             : #include <mrs_lib/utils.h>
+      16             : #include <mrs_lib/geometry/cyclic.h>
+      17             : #include <mrs_lib/geometry/misc.h>
+      18             : 
+      19             : //}
+      20             : 
+      21             : /* defines //{ */
+      22             : 
+      23             : #define STOP_THR 1e-3
+      24             : 
+      25             : //}
+      26             : 
+      27             : /* using //{ */
+      28             : 
+      29             : using vec2_t = mrs_lib::geometry::vec_t<2>;
+      30             : using vec3_t = mrs_lib::geometry::vec_t<3>;
+      31             : 
+      32             : using radians  = mrs_lib::geometry::radians;
+      33             : using sradians = mrs_lib::geometry::sradians;
+      34             : 
+      35             : //}
+      36             : 
+      37             : namespace mrs_uav_trackers
+      38             : {
+      39             : 
+      40             : namespace landoff_tracker
+      41             : {
+      42             : 
+      43             : /* //{ class LandoffTracker */
+      44             : 
+      45             : // state machine
+      46             : typedef enum
+      47             : {
+      48             : 
+      49             :   IDLE_STATE,
+      50             :   LANDED_STATE,
+      51             :   STOP_MOTION_STATE,
+      52             :   HOVER_STATE,
+      53             :   ACCELERATING_STATE,
+      54             :   DECELERATING_STATE,
+      55             :   STOPPING_STATE,
+      56             : 
+      57             : } States_t;
+      58             : 
+      59             : const char* state_names[7] = {
+      60             : 
+      61             :     "IDLING", "LANDED", "STOPPING_MOTION", "HOVERING", "ACCELERATING", "DECELERATING", "STOPPING"};
+      62             : 
+      63             : class LandoffTracker : public mrs_uav_managers::Tracker {
+      64             : public:
+      65             :   bool initialize(const ros::NodeHandle& nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      66             :                   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers);
+      67             : 
+      68             :   std::tuple<bool, std::string> activate(const std::optional<mrs_msgs::TrackerCommand>& last_tracker_cmd);
+      69             :   void                          deactivate(void);
+      70             :   bool                          resetStatic(void);
+      71             : 
+      72             :   std::optional<mrs_msgs::TrackerCommand>   update(const mrs_msgs::UavState& uav_state, const mrs_uav_managers::Controller::ControlOutput& last_control_output);
+      73             :   const mrs_msgs::TrackerStatus             getStatus();
+      74             :   const std_srvs::SetBoolResponse::ConstPtr enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr& cmd);
+      75             :   const std_srvs::TriggerResponse::ConstPtr switchOdometrySource(const mrs_msgs::UavState& new_uav_state);
+      76             : 
+      77             :   const mrs_msgs::ReferenceSrvResponse::ConstPtr           setReference(const mrs_msgs::ReferenceSrvRequest::ConstPtr& cmd);
+      78             :   const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr   setVelocityReference(const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr& cmd);
+      79             :   const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr setTrajectoryReference(const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr& cmd);
+      80             : 
+      81             :   const std_srvs::TriggerResponse::ConstPtr hover(const std_srvs::TriggerRequest::ConstPtr& cmd);
+      82             :   const std_srvs::TriggerResponse::ConstPtr startTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr& cmd);
+      83             :   const std_srvs::TriggerResponse::ConstPtr stopTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr& cmd);
+      84             :   const std_srvs::TriggerResponse::ConstPtr resumeTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr& cmd);
+      85             :   const std_srvs::TriggerResponse::ConstPtr gotoTrajectoryStart(const std_srvs::TriggerRequest::ConstPtr& cmd);
+      86             : 
+      87             :   const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr& cmd);
+      88             : 
+      89             : private:
+      90             :   bool callbacks_enabled_ = true;
+      91             : 
+      92             :   mrs_uav_managers::Controller::ControlOutput last_control_output_;
+      93             :   std::mutex                                  mutex_last_control_output_;
+      94             : 
+      95             :   ros::NodeHandle nh_;
+      96             :   std::string     _uav_name_;
+      97             : 
+      98             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>  common_handlers_;
+      99             :   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers_;
+     100             : 
+     101             :   // main timer
+     102             :   void       timerMain(const ros::TimerEvent& event);
+     103             :   ros::Timer timer_main_;
+     104             :   std::mutex mutex_main_timer_;
+     105             : 
+     106             :   // | ------------------------ uav state ----------------------- |
+     107             : 
+     108             :   mrs_msgs::UavState uav_state_;
+     109             :   bool               got_uav_state_ = false;
+     110             :   std::mutex         mutex_uav_state_;
+     111             : 
+     112             :   // | ---------------- the tracker's inner state --------------- |
+     113             : 
+     114             :   int    _main_timer_rate_;
+     115             :   double _landing_reference_;
+     116             :   double _tracker_dt_;
+     117             :   bool   is_initialized_ = false;
+     118             :   bool   is_active_      = false;
+     119             : 
+     120             :   bool   _takeoff_disable_lateral_gains_ = false;
+     121             :   double _takeoff_disable_lateral_gains_z_;
+     122             : 
+     123             :   // | --------------- the tracker's state machine -------------- |
+     124             : 
+     125             :   States_t current_state_vertical_    = IDLE_STATE;
+     126             :   States_t previous_state_vertical_   = IDLE_STATE;
+     127             :   States_t current_state_horizontal_  = IDLE_STATE;
+     128             :   States_t previous_state_horizontal_ = IDLE_STATE;
+     129             : 
+     130             :   void changeStateHorizontal(States_t new_state);
+     131             :   void changeStateVertical(States_t new_state);
+     132             :   void changeState(States_t new_state);
+     133             : 
+     134             :   std::atomic<bool> taking_off_ = false;
+     135             :   std::atomic<bool> landing_    = false;
+     136             :   std::atomic<bool> elanding_   = false;
+     137             : 
+     138             :   std::atomic<bool> cause_failsafe_ = false;
+     139             : 
+     140             :   void stopHorizontalMotion(void);
+     141             :   void stopVerticalMotion(void);
+     142             :   void accelerateVertical(void);
+     143             :   void decelerateVertical(void);
+     144             :   void stopHorizontal(void);
+     145             :   void stopVertical(void);
+     146             : 
+     147             :   // | --------------- takeoff / landing services --------------- |
+     148             : 
+     149             :   ros::ServiceServer service_takeoff_;
+     150             :   ros::ServiceServer service_land_;
+     151             :   ros::ServiceServer service_eland_;
+     152             : 
+     153             :   bool callbackTakeoff(mrs_msgs::Vec1::Request& req, mrs_msgs::Vec1::Response& res);
+     154             :   bool callbackLand(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     155             :   bool callbackELand(std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res);
+     156             : 
+     157             :   // | ------------------ dynamics constraints ------------------ |
+     158             : 
+     159             :   double _horizontal_speed_;
+     160             :   double _vertical_speed_;
+     161             :   double _takeoff_speed_;
+     162             :   double _landing_speed_;
+     163             :   double _elanding_speed_;
+     164             : 
+     165             :   double _horizontal_acceleration_;
+     166             :   double _vertical_acceleration_;
+     167             :   double _takeoff_acceleration_;
+     168             :   double _landing_acceleration_;
+     169             :   double _elanding_acceleration_;
+     170             : 
+     171             :   double _heading_rate_;
+     172             :   double _heading_gain_;
+     173             : 
+     174             :   double _max_position_difference_;
+     175             : 
+     176             :   // | -------------------------- goal -------------------------- |
+     177             : 
+     178             :   double            goal_x_, goal_y_, goal_z_, goal_heading_;
+     179             :   std::atomic<bool> have_goal_ = false;
+     180             :   std::mutex        mutex_goal_;
+     181             : 
+     182             :   // | ---------------- tracker's internal state ---------------- |
+     183             : 
+     184             :   double     state_x_, state_y_, state_z_, state_heading_;
+     185             :   double     speed_x_, speed_y_, speed_heading_;
+     186             :   double     current_heading_, current_vertical_direction_, current_vertical_speed_, current_horizontal_speed_;
+     187             :   double     current_horizontal_acceleration_, current_vertical_acceleration_;
+     188             :   std::mutex mutex_state_;
+     189             : 
+     190             :   // | -------------------- tracker's output -------------------- |
+     191             : 
+     192             :   mrs_msgs::TrackerCommand position_output_;
+     193             : 
+     194             :   // | ------------------------ profiler ------------------------ |
+     195             : 
+     196             :   mrs_lib::Profiler profiler_;
+     197             :   bool              _profiler_enabled_ = false;
+     198             : 
+     199             :   // | ----------------------- constraints ---------------------- |
+     200             : 
+     201             :   mrs_msgs::DynamicsConstraints constraints_;
+     202             :   std::mutex                    mutex_constraints_;
+     203             : };
+     204             : 
+     205             : //}
+     206             : 
+     207             : // | -------------- tracker's interface routines -------------- |
+     208             : 
+     209             : /* //{ initialize() */
+     210             : 
+     211          91 : bool LandoffTracker::initialize(const ros::NodeHandle& nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+     212             :                                 std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) {
+     213             : 
+     214          91 :   this->common_handlers_  = common_handlers;
+     215          91 :   this->private_handlers_ = private_handlers;
+     216             : 
+     217          91 :   _uav_name_ = common_handlers->uav_name;
+     218             : 
+     219          91 :   nh_ = nh;
+     220             : 
+     221          91 :   ros::Time::waitForValid();
+     222             : 
+     223             :   // --------------------------------------------------------------
+     224             :   // |                     loading parameters                     |
+     225             :   // --------------------------------------------------------------
+     226             : 
+     227             :   // | ---------- loading params using the parent's nh ---------- |
+     228             : 
+     229         182 :   mrs_lib::ParamLoader param_loader_parent(common_handlers->parent_nh, "ControlManager");
+     230             : 
+     231          91 :   param_loader_parent.loadParam("enable_profiler", _profiler_enabled_);
+     232             : 
+     233          91 :   if (!param_loader_parent.loadedSuccessfully()) {
+     234           0 :     ROS_ERROR("[LandoffTracker]: Could not load all parameters!");
+     235           0 :     return false;
+     236             :   }
+     237             : 
+     238             :   // | --------------- loading plugin's parameters -------------- |
+     239             : 
+     240          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/private/landoff_tracker.yaml");
+     241          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/public/landoff_tracker.yaml");
+     242             : 
+     243         182 :   const std::string yaml_prefix = "mrs_uav_trackers/landoff_tracker/";
+     244             : 
+     245          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "horizontal_tracker/horizontal_speed", _horizontal_speed_);
+     246          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "horizontal_tracker/horizontal_acceleration", _horizontal_acceleration_);
+     247             : 
+     248          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "vertical_tracker/vertical_speed", _vertical_speed_);
+     249          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "vertical_tracker/vertical_acceleration", _vertical_acceleration_);
+     250             : 
+     251          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "vertical_tracker/takeoff_speed", _takeoff_speed_);
+     252          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "vertical_tracker/takeoff_acceleration", _takeoff_acceleration_);
+     253             : 
+     254          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "vertical_tracker/landing_speed", _landing_speed_);
+     255          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "vertical_tracker/landing_acceleration", _landing_acceleration_);
+     256             : 
+     257          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "vertical_tracker/elanding_speed", _elanding_speed_);
+     258          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "vertical_tracker/elanding_acceleration", _elanding_acceleration_);
+     259             : 
+     260          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "heading_tracker/heading_rate", _heading_rate_);
+     261          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "heading_tracker/heading_gain", _heading_gain_);
+     262             : 
+     263          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "main_timer_rate", _main_timer_rate_);
+     264             : 
+     265          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "landing_reference", _landing_reference_);
+     266             : 
+     267          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "max_position_difference", _max_position_difference_);
+     268             : 
+     269          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "takeoff_disable_lateral_gains", _takeoff_disable_lateral_gains_);
+     270          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "takeoff_disable_lateral_gains_z", _takeoff_disable_lateral_gains_z_);
+     271             : 
+     272          91 :   if (!private_handlers->param_loader->loadedSuccessfully()) {
+     273           0 :     ROS_ERROR("[LandoffTracker]: Could not load all parameters!");
+     274           0 :     return false;
+     275             :   }
+     276             : 
+     277          91 :   _tracker_dt_ = 1.0 / double(_main_timer_rate_);
+     278             : 
+     279          91 :   ROS_INFO("[LandoffTracker]: tracker_dt: %f", _tracker_dt_);
+     280             : 
+     281          91 :   state_x_       = 0;
+     282          91 :   state_y_       = 0;
+     283          91 :   state_z_       = 0;
+     284          91 :   state_heading_ = 0;
+     285             : 
+     286          91 :   speed_x_       = 0;
+     287          91 :   speed_y_       = 0;
+     288          91 :   speed_heading_ = 0;
+     289             : 
+     290          91 :   current_horizontal_speed_ = 0;
+     291          91 :   current_vertical_speed_   = 0;
+     292             : 
+     293          91 :   current_horizontal_acceleration_ = 0;
+     294          91 :   current_vertical_acceleration_   = 0;
+     295             : 
+     296          91 :   current_vertical_direction_ = 0;
+     297             : 
+     298          91 :   current_state_vertical_  = LANDED_STATE;
+     299          91 :   previous_state_vertical_ = LANDED_STATE;
+     300             : 
+     301          91 :   current_state_horizontal_  = LANDED_STATE;
+     302          91 :   previous_state_horizontal_ = LANDED_STATE;
+     303             : 
+     304             :   // | ------------------------ profiler ------------------------ |
+     305             : 
+     306          91 :   profiler_ = mrs_lib::Profiler(common_handlers->parent_nh, "LandoffTracker", _profiler_enabled_);
+     307             : 
+     308             :   // | ------------------------ services ------------------------ |
+     309             : 
+     310          91 :   service_takeoff_ = nh_.advertiseService("takeoff", &LandoffTracker::callbackTakeoff, this);
+     311          91 :   service_land_    = nh_.advertiseService("land", &LandoffTracker::callbackLand, this);
+     312          91 :   service_eland_   = nh_.advertiseService("eland", &LandoffTracker::callbackELand, this);
+     313             : 
+     314             :   // | ------------------------- timers ------------------------- |
+     315             : 
+     316          91 :   timer_main_ = nh_.createTimer(ros::Rate(_main_timer_rate_), &LandoffTracker::timerMain, this, false, false);
+     317             : 
+     318             :   // | ----------------------- finish init ---------------------- |
+     319             : 
+     320          91 :   is_initialized_ = true;
+     321             : 
+     322          91 :   ROS_INFO("[LandoffTracker]: initialized");
+     323             : 
+     324          91 :   return true;
+     325             : }
+     326             : 
+     327             : //}
+     328             : 
+     329             : /* //{ activate() */
+     330             : 
+     331          45 : std::tuple<bool, std::string> LandoffTracker::activate([[maybe_unused]] const std::optional<mrs_msgs::TrackerCommand>& last_tracker_cmd) {
+     332             : 
+     333          90 :   std::stringstream ss;
+     334             : 
+     335          45 :   if (!got_uav_state_) {
+     336             : 
+     337           0 :     ss << "odometry not set";
+     338           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[LandoffTracker]: " << ss.str());
+     339           0 :     return std::tuple(false, ss.str());
+     340             :   }
+     341             : 
+     342             :   // copy member variables
+     343          90 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     344             : 
+     345             :   double uav_heading;
+     346             : 
+     347             :   try {
+     348          45 :     uav_heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+     349             :   }
+     350           0 :   catch (...) {
+     351             : 
+     352           0 :     ss << "could not initialize the UAV heading";
+     353           0 :     ROS_ERROR_STREAM("[LandoffTracker]: " << ss.str());
+     354           0 :     return std::tuple(false, ss.str());
+     355             :   }
+     356             : 
+     357             :   // --------------------------------------------------------------
+     358             :   // |                      initial condition                     |
+     359             :   // --------------------------------------------------------------
+     360             : 
+     361             :   {
+     362          90 :     std::scoped_lock lock(mutex_goal_);
+     363             : 
+     364             :     // the last command is usable
+     365          45 :     state_x_       = uav_state.pose.position.x;
+     366          45 :     state_y_       = uav_state.pose.position.y;
+     367          45 :     state_z_       = uav_state.pose.position.z;
+     368          45 :     state_heading_ = uav_heading;
+     369             : 
+     370          45 :     speed_x_         = uav_state.velocity.linear.x;
+     371          45 :     speed_y_         = uav_state.velocity.linear.y;
+     372          45 :     current_heading_ = atan2(speed_y_, speed_x_);
+     373             : 
+     374          45 :     current_horizontal_speed_ = sqrt(pow(speed_x_, 2) + pow(speed_y_, 2));
+     375             : 
+     376          45 :     current_vertical_speed_     = fabs(uav_state.velocity.linear.z);
+     377          45 :     current_vertical_direction_ = uav_state.velocity.linear.z > 0 ? +1 : -1;
+     378             : 
+     379          45 :     current_horizontal_acceleration_ = 0;
+     380          45 :     current_vertical_acceleration_   = 0;
+     381             : 
+     382          45 :     goal_heading_ = uav_heading;
+     383             : 
+     384          45 :     ROS_INFO("[LandoffTracker]: initial condition: x: %.2f, y: %.2f, z: %.2f, heading: %.2f", state_x_, state_y_, state_z_, state_heading_);
+     385             :   }
+     386             : 
+     387             :   // --------------------------------------------------------------
+     388             :   // |          horizontal initial conditions prediction          |
+     389             :   // --------------------------------------------------------------
+     390             : 
+     391             :   double horizontal_t_stop, horizontal_stop_dist, stop_dist_x, stop_dist_y;
+     392             : 
+     393             :   {
+     394          45 :     std::scoped_lock lock(mutex_state_);
+     395             : 
+     396          45 :     horizontal_t_stop    = current_horizontal_speed_ / _horizontal_acceleration_;
+     397          45 :     horizontal_stop_dist = (horizontal_t_stop * current_horizontal_speed_) / 2.0;
+     398          45 :     stop_dist_x          = cos(current_heading_) * horizontal_stop_dist;
+     399          45 :     stop_dist_y          = sin(current_heading_) * horizontal_stop_dist;
+     400             :   }
+     401             : 
+     402             :   // --------------------------------------------------------------
+     403             :   // |           vertical initial conditions prediction           |
+     404             :   // --------------------------------------------------------------
+     405             : 
+     406             :   double vertical_t_stop, vertical_stop_dist;
+     407             : 
+     408             :   {
+     409          45 :     std::scoped_lock lock(mutex_state_);
+     410             : 
+     411          45 :     vertical_t_stop    = current_vertical_speed_ / _vertical_acceleration_;
+     412          45 :     vertical_stop_dist = current_vertical_direction_ * (vertical_t_stop * current_vertical_speed_) / 2.0;
+     413             :   }
+     414             : 
+     415             :   // --------------------------------------------------------------
+     416             :   // |               heading initial condition prediction             |
+     417             :   // --------------------------------------------------------------
+     418             : 
+     419             :   {
+     420          45 :     std::scoped_lock lock(mutex_goal_, mutex_state_);
+     421             : 
+     422          45 :     goal_x_ = state_x_ + stop_dist_x;
+     423          45 :     goal_y_ = state_y_ + stop_dist_y;
+     424          45 :     goal_z_ = state_z_ + vertical_stop_dist;
+     425             :   }
+     426             : 
+     427          45 :   landing_        = false;
+     428          45 :   taking_off_     = false;
+     429          45 :   is_active_      = true;
+     430          45 :   have_goal_      = false;
+     431          45 :   cause_failsafe_ = false;
+     432             : 
+     433          45 :   timer_main_.start();
+     434             : 
+     435             :   {
+     436          90 :     std::scoped_lock lock(mutex_goal_);
+     437             : 
+     438          45 :     ROS_INFO("[LandoffTracker]: stopping goal: x: %.2f, y: %.2f, z: %.2f, heading: %.2f", goal_x_, goal_y_, goal_z_, goal_heading_);
+     439             :   }
+     440             : 
+     441          45 :   changeState(STOP_MOTION_STATE);
+     442             : 
+     443          45 :   ss << "activated";
+     444          45 :   ROS_INFO_STREAM("[LandoffTracker]: " << ss.str());
+     445             : 
+     446          45 :   return std::tuple(true, ss.str());
+     447             : }
+     448             : 
+     449             : //}
+     450             : 
+     451             : /* //{ deactivate() */
+     452             : 
+     453          61 : void LandoffTracker::deactivate(void) {
+     454             : 
+     455          61 :   is_active_                = false;
+     456          61 :   landing_                  = false;
+     457          61 :   taking_off_               = false;
+     458          61 :   current_state_vertical_   = IDLE_STATE;
+     459          61 :   current_state_horizontal_ = IDLE_STATE;
+     460             : 
+     461          61 :   timer_main_.stop();
+     462             : 
+     463          61 :   ROS_INFO("[LandoffTracker]: deactivated");
+     464          61 : }
+     465             : 
+     466             : //}
+     467             : 
+     468             : /* //{ resetStatic() */
+     469             : 
+     470           0 : bool LandoffTracker::resetStatic(void) {
+     471             : 
+     472           0 :   return false;
+     473             : }
+     474             : 
+     475             : //}
+     476             : 
+     477             : /* //{ update() */
+     478             : 
+     479      120229 : std::optional<mrs_msgs::TrackerCommand> LandoffTracker::update(const mrs_msgs::UavState&                                           uav_state,
+     480             :                                                                [[maybe_unused]] const mrs_uav_managers::Controller::ControlOutput& last_control_output) {
+     481             : 
+     482      360687 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("update");
+     483      360687 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("LandoffTracker::update", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+     484             : 
+     485             :   {
+     486      120229 :     std::scoped_lock lock(mutex_uav_state_);
+     487             : 
+     488      120229 :     uav_state_ = uav_state;
+     489             : 
+     490      120229 :     got_uav_state_ = true;
+     491             :   }
+     492             : 
+     493             :   // up to this part the update() method is evaluated even when the tracker is not active
+     494      120229 :   if (!is_active_ || cause_failsafe_) {
+     495      102784 :     return {};
+     496             :   }
+     497             : 
+     498       17445 :   position_output_.header.stamp    = ros::Time::now();
+     499       17445 :   position_output_.header.frame_id = uav_state_.header.frame_id;
+     500             : 
+     501             :   {
+     502       17445 :     std::scoped_lock lock(mutex_state_);
+     503             : 
+     504       17445 :     position_output_.position.x = state_x_;
+     505       17445 :     position_output_.position.y = state_y_;
+     506       17445 :     position_output_.position.z = state_z_;
+     507       17445 :     position_output_.heading    = state_heading_;
+     508             : 
+     509       17445 :     position_output_.velocity.x   = cos(current_heading_) * current_horizontal_speed_;
+     510       17445 :     position_output_.velocity.y   = sin(current_heading_) * current_horizontal_speed_;
+     511       17445 :     position_output_.velocity.z   = current_vertical_direction_ * current_vertical_speed_;
+     512       17445 :     position_output_.heading_rate = speed_heading_;
+     513             : 
+     514       17445 :     position_output_.use_position_vertical   = 1;
+     515       17445 :     position_output_.use_position_horizontal = 1;
+     516       17445 :     position_output_.use_heading             = 1;
+     517       17445 :     position_output_.use_heading_rate        = 1;
+     518       17445 :     position_output_.use_velocity_vertical   = 1;
+     519       17445 :     position_output_.use_velocity_horizontal = 1;
+     520             :   }
+     521             : 
+     522             :   {
+     523       34890 :     std::scoped_lock lock(mutex_last_control_output_);
+     524             : 
+     525       17445 :     last_control_output_ = last_control_output;
+     526             :   }
+     527             : 
+     528       17445 :   if (_takeoff_disable_lateral_gains_ && taking_off_ && uav_state_.pose.position.z < _takeoff_disable_lateral_gains_z_) {
+     529           0 :     position_output_.disable_position_gains = true;
+     530             :   } else {
+     531       17445 :     position_output_.disable_position_gains = false;
+     532             :   }
+     533             : 
+     534       17445 :   if (taking_off_) {
+     535        8725 :     position_output_.disable_antiwindups = true;
+     536             :   } else {
+     537        8720 :     position_output_.disable_antiwindups = false;
+     538             :   }
+     539             : 
+     540       17445 :   return {position_output_};
+     541             : }
+     542             : 
+     543             : //}
+     544             : 
+     545             : /* //{ getStatus() */
+     546             : 
+     547        2208 : const mrs_msgs::TrackerStatus LandoffTracker::getStatus() {
+     548             : 
+     549        2208 :   mrs_msgs::TrackerStatus tracker_status;
+     550             : 
+     551        2208 :   tracker_status.active            = is_active_;
+     552        2208 :   tracker_status.callbacks_enabled = callbacks_enabled_;
+     553             : 
+     554        2208 :   bool hovering = current_state_vertical_ == HOVER_STATE && current_state_horizontal_ == HOVER_STATE;
+     555        2208 :   bool idling   = current_state_vertical_ == IDLE_STATE && current_state_horizontal_ == IDLE_STATE;
+     556             : 
+     557        2208 :   tracker_status.have_goal = landing_ || taking_off_ || !(hovering || idling);
+     558             : 
+     559        2208 :   tracker_status.tracking_trajectory = false;
+     560             : 
+     561        2208 :   return tracker_status;
+     562             : }
+     563             : 
+     564             : //}
+     565             : 
+     566             : /* //{ enableCallbacks() */
+     567             : 
+     568         311 : const std_srvs::SetBoolResponse::ConstPtr LandoffTracker::enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr& cmd) {
+     569             : 
+     570         622 :   std_srvs::SetBoolResponse res;
+     571         622 :   std::stringstream         ss;
+     572             : 
+     573         311 :   if (cmd->data != callbacks_enabled_) {
+     574             : 
+     575          19 :     callbacks_enabled_ = cmd->data;
+     576             : 
+     577          19 :     ss << "callbacks " << (callbacks_enabled_ ? "enabled" : "disabled");
+     578          19 :     ROS_INFO_STREAM_THROTTLE(1.0, "[LandoffTrakcer]: " << ss.str());
+     579             : 
+     580             :   } else {
+     581             : 
+     582         292 :     ss << "callbacks were already " << (callbacks_enabled_ ? "enabled" : "disabled");
+     583         292 :     ROS_WARN_STREAM_THROTTLE(1.0, "[LandoffTrakcer]: " << ss.str());
+     584             :   }
+     585             : 
+     586         311 :   res.message = ss.str();
+     587         311 :   res.success = true;
+     588             : 
+     589         622 :   return std_srvs::SetBoolResponse::ConstPtr(new std_srvs::SetBoolResponse(res));
+     590             : }
+     591             : 
+     592             : //}
+     593             : 
+     594             : /* switchOdometrySource() //{ */
+     595             : 
+     596           0 : const std_srvs::TriggerResponse::ConstPtr LandoffTracker::switchOdometrySource([[maybe_unused]] const mrs_msgs::UavState& new_uav_state) {
+     597             : 
+     598           0 :   std::scoped_lock lock(mutex_goal_, mutex_state_);
+     599             : 
+     600           0 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     601             : 
+     602           0 :   double old_heading  = 0;
+     603           0 :   double new_heading  = 0;
+     604           0 :   bool   got_headings = true;
+     605             : 
+     606             :   try {
+     607           0 :     old_heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+     608             :   }
+     609           0 :   catch (...) {
+     610           0 :     ROS_ERROR_THROTTLE(1.0, "[LandoffTracker]: could not calculate the old UAV heading");
+     611           0 :     got_headings = false;
+     612             :   }
+     613             : 
+     614             :   try {
+     615           0 :     new_heading = mrs_lib::AttitudeConverter(new_uav_state.pose.orientation).getHeading();
+     616             :   }
+     617           0 :   catch (...) {
+     618           0 :     ROS_ERROR_THROTTLE(1.0, "[LandoffTracker]: could not calculate the new UAV heading");
+     619           0 :     got_headings = false;
+     620             :   }
+     621             : 
+     622           0 :   std_srvs::TriggerResponse res;
+     623             : 
+     624           0 :   if (!got_headings) {
+     625           0 :     res.message = "could not calculate the heading difference";
+     626           0 :     res.success = false;
+     627             : 
+     628           0 :     return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+     629             :   }
+     630             : 
+     631             :   // | --------- recalculate the goal to new coordinates -------- |
+     632             : 
+     633           0 :   double dx       = new_uav_state.pose.position.x - uav_state.pose.position.x;
+     634           0 :   double dy       = new_uav_state.pose.position.y - uav_state.pose.position.y;
+     635           0 :   double dz       = new_uav_state.pose.position.z - uav_state.pose.position.z;
+     636           0 :   double dheading = new_heading - old_heading;
+     637             : 
+     638           0 :   goal_x_ += dx;
+     639           0 :   goal_y_ += dy;
+     640           0 :   goal_z_ += dz;
+     641           0 :   goal_heading_ += dheading;
+     642             : 
+     643             :   // | -------------------- update the state -------------------- |
+     644             : 
+     645           0 :   state_x_ += dx;
+     646           0 :   state_y_ += dy;
+     647           0 :   state_z_ += dz;
+     648           0 :   state_heading_ += dheading;
+     649             : 
+     650           0 :   current_heading_ = atan2(goal_y_ - state_y_, goal_x_ - state_x_);
+     651             : 
+     652           0 :   res.message = "odometry source switched";
+     653           0 :   res.success = true;
+     654             : 
+     655           0 :   return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+     656             : }
+     657             : 
+     658             : //}
+     659             : 
+     660             : /* //{ hover() */
+     661           0 : const std_srvs::TriggerResponse::ConstPtr LandoffTracker::hover([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr& cmd) {
+     662             : 
+     663           0 :   std::scoped_lock lock(mutex_main_timer_);
+     664             : 
+     665             :   // copy member variables
+     666           0 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     667             : 
+     668           0 :   auto [current_horizontal_speed, current_vertical_speed, current_heading, current_vertical_direction] =
+     669           0 :       mrs_lib::get_mutexed(mutex_state_, current_horizontal_speed_, current_vertical_speed_, current_heading_, current_vertical_direction_);
+     670             : 
+     671           0 :   std_srvs::TriggerResponse res;
+     672             : 
+     673             :   // --------------------------------------------------------------
+     674             :   // |          horizontal initial conditions prediction          |
+     675             :   // --------------------------------------------------------------
+     676             :   {
+     677           0 :     std::scoped_lock lock(mutex_state_);
+     678             : 
+     679           0 :     current_horizontal_speed_ = sqrt(pow(uav_state.velocity.linear.x, 2) + pow(uav_state.velocity.linear.y, 2));
+     680           0 :     current_vertical_speed_   = uav_state.velocity.linear.z;
+     681           0 :     current_heading_          = atan2(uav_state.velocity.linear.y, uav_state.velocity.linear.x);
+     682             :   }
+     683             : 
+     684             :   double horizontal_t_stop, horizontal_stop_dist, stop_dist_x, stop_dist_y;
+     685             : 
+     686           0 :   horizontal_t_stop    = current_horizontal_speed / _horizontal_acceleration_;
+     687           0 :   horizontal_stop_dist = (horizontal_t_stop * current_horizontal_speed) / 2.0;
+     688           0 :   stop_dist_x          = cos(current_heading) * horizontal_stop_dist;
+     689           0 :   stop_dist_y          = sin(current_heading) * horizontal_stop_dist;
+     690             : 
+     691             :   // --------------------------------------------------------------
+     692             :   // |           vertical initial conditions prediction           |
+     693             :   // --------------------------------------------------------------
+     694             : 
+     695           0 :   double vertical_t_stop    = current_vertical_speed / _vertical_acceleration_;
+     696           0 :   double vertical_stop_dist = current_vertical_direction * (vertical_t_stop * current_vertical_speed) / 2.0;
+     697             : 
+     698             :   // --------------------------------------------------------------
+     699             :   // |                        set the goal                        |
+     700             :   // --------------------------------------------------------------
+     701             : 
+     702             :   {
+     703           0 :     std::scoped_lock lock(mutex_state_, mutex_goal_);
+     704             : 
+     705           0 :     goal_x_ = state_x_ + stop_dist_x;
+     706           0 :     goal_y_ = state_y_ + stop_dist_y;
+     707           0 :     goal_z_ = state_z_ + vertical_stop_dist;
+     708             :   }
+     709             : 
+     710           0 :   res.message = "hover initiated";
+     711           0 :   res.success = true;
+     712             : 
+     713           0 :   changeState(STOP_MOTION_STATE);
+     714             : 
+     715           0 :   return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+     716             : }
+     717             : 
+     718             : //}
+     719             : 
+     720             : /* //{ startTrajectoryTracking() */
+     721             : 
+     722           0 : const std_srvs::TriggerResponse::ConstPtr LandoffTracker::startTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr& cmd) {
+     723           0 :   return std_srvs::TriggerResponse::Ptr();
+     724             : }
+     725             : 
+     726             : //}
+     727             : 
+     728             : /* //{ stopTrajectoryTracking() */
+     729             : 
+     730           0 : const std_srvs::TriggerResponse::ConstPtr LandoffTracker::stopTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr& cmd) {
+     731           0 :   return std_srvs::TriggerResponse::Ptr();
+     732             : }
+     733             : 
+     734             : //}
+     735             : 
+     736             : /* //{ resumeTrajectoryTracking() */
+     737             : 
+     738           0 : const std_srvs::TriggerResponse::ConstPtr LandoffTracker::resumeTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr& cmd) {
+     739           0 :   return std_srvs::TriggerResponse::Ptr();
+     740             : }
+     741             : 
+     742             : //}
+     743             : 
+     744             : /* //{ gotoTrajectoryStart() */
+     745             : 
+     746           0 : const std_srvs::TriggerResponse::ConstPtr LandoffTracker::gotoTrajectoryStart([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr& cmd) {
+     747           0 :   return std_srvs::TriggerResponse::Ptr();
+     748             : }
+     749             : 
+     750             : //}
+     751             : 
+     752             : /* //{ setConstraints() */
+     753             : 
+     754         299 : const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr LandoffTracker::setConstraints([
+     755             :     [maybe_unused]] const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr& cmd) {
+     756             : 
+     757             : 
+     758         299 :   mrs_lib::set_mutexed(mutex_constraints_, cmd->constraints, constraints_);
+     759             : 
+     760         299 :   ROS_INFO("[LandoffTracker]: updating constraints");
+     761             : 
+     762         598 :   mrs_msgs::DynamicsConstraintsSrvResponse res;
+     763         299 :   res.success = true;
+     764         299 :   res.message = "constraints updated";
+     765             : 
+     766         598 :   return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse(res));
+     767             : }
+     768             : 
+     769             : //}
+     770             : 
+     771             : /* //{ setReference() */
+     772             : 
+     773           0 : const mrs_msgs::ReferenceSrvResponse::ConstPtr LandoffTracker::setReference([[maybe_unused]] const mrs_msgs::ReferenceSrvRequest::ConstPtr& cmd) {
+     774             : 
+     775           0 :   return mrs_msgs::ReferenceSrvResponse::Ptr();
+     776             : }
+     777             : 
+     778             : //}
+     779             : 
+     780             : /* //{ setVelocityReference() */
+     781             : 
+     782           0 : const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr LandoffTracker::setVelocityReference([
+     783             :     [maybe_unused]] const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr& cmd) {
+     784           0 :   return mrs_msgs::VelocityReferenceSrvResponse::Ptr();
+     785             : }
+     786             : 
+     787             : //}
+     788             : 
+     789             : /* //{ setTrajectoryReference() */
+     790             : 
+     791           4 : const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr LandoffTracker::setTrajectoryReference([
+     792             :     [maybe_unused]] const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr& cmd) {
+     793           4 :   return mrs_msgs::TrajectoryReferenceSrvResponse::Ptr();
+     794             : }
+     795             : 
+     796             : //}
+     797             : 
+     798             : // | ----------------- state machine routines ----------------- |
+     799             : 
+     800             : /* //{ changeStateHorizontal() */
+     801             : 
+     802         179 : void LandoffTracker::changeStateHorizontal(States_t new_state) {
+     803             : 
+     804         179 :   previous_state_horizontal_ = current_state_horizontal_;
+     805         179 :   current_state_horizontal_  = new_state;
+     806             : 
+     807         179 :   switch (current_state_horizontal_) {
+     808             : 
+     809          57 :     case STOPPING_STATE: {
+     810             : 
+     811         114 :       std::scoped_lock lock(mutex_state_);
+     812          57 :       current_horizontal_speed_ = 0;
+     813             : 
+     814          57 :       break;
+     815             :     };
+     816             : 
+     817         122 :     default: {
+     818             : 
+     819         122 :       break;
+     820             :     }
+     821             :   }
+     822             : 
+     823         179 :   ROS_INFO("[LandoffTracker]: Switching horizontal state %s -> %s", state_names[previous_state_horizontal_], state_names[current_state_horizontal_]);
+     824         179 : }
+     825             : 
+     826             : //}
+     827             : 
+     828             : /* //{ changeStateVertical() */
+     829             : 
+     830         219 : void LandoffTracker::changeStateVertical(States_t new_state) {
+     831             : 
+     832         219 :   previous_state_vertical_ = current_state_vertical_;
+     833         219 :   current_state_vertical_  = new_state;
+     834             : 
+     835         219 :   switch (current_state_vertical_) {
+     836             : 
+     837          44 :     case HOVER_STATE: {
+     838          44 :       taking_off_ = false;
+     839          44 :       break;
+     840             :     }
+     841             : 
+     842         175 :     default: {
+     843         175 :       break;
+     844             :     }
+     845             :   }
+     846             : 
+     847         219 :   ROS_INFO("[LandoffTracker]: Switching vertical state %s -> %s", state_names[previous_state_vertical_], state_names[current_state_vertical_]);
+     848         219 : }
+     849             : 
+     850             : //}
+     851             : 
+     852             : /* //{ changeState() */
+     853             : 
+     854         146 : void LandoffTracker::changeState(States_t new_state) {
+     855             : 
+     856         146 :   changeStateVertical(new_state);
+     857         146 :   changeStateHorizontal(new_state);
+     858         146 : }
+     859             : 
+     860             : //}
+     861             : 
+     862             : // | --------------------- motion routines -------------------- |
+     863             : 
+     864             : /* //{ stopHorizontalMotion() */
+     865             : 
+     866         653 : void LandoffTracker::stopHorizontalMotion(void) {
+     867             : 
+     868             :   {
+     869        1306 :     std::scoped_lock lock(mutex_state_);
+     870             : 
+     871         653 :     current_horizontal_speed_ -= _horizontal_acceleration_ * _tracker_dt_;
+     872             : 
+     873         653 :     if (current_horizontal_speed_ < 0) {
+     874         362 :       current_horizontal_speed_        = 0;
+     875         362 :       current_horizontal_acceleration_ = 0;
+     876             :     } else {
+     877         291 :       current_horizontal_acceleration_ = -_horizontal_acceleration_;
+     878             :     }
+     879             :   }
+     880         653 : }
+     881             : 
+     882             : //}
+     883             : 
+     884             : /* //{ stopVerticalMotion() */
+     885             : 
+     886         653 : void LandoffTracker::stopVerticalMotion(void) {
+     887             : 
+     888             :   {
+     889        1306 :     std::scoped_lock lock(mutex_state_);
+     890             : 
+     891         653 :     current_vertical_speed_ -= _vertical_acceleration_ * _tracker_dt_;
+     892             : 
+     893         653 :     if (current_vertical_speed_ < 0) {
+     894          47 :       current_vertical_speed_        = 0;
+     895          47 :       current_vertical_acceleration_ = 0;
+     896             :     } else {
+     897         606 :       current_vertical_acceleration_ = -_vertical_acceleration_;
+     898             :     }
+     899             :   }
+     900         653 : }
+     901             : 
+     902             : //}
+     903             : 
+     904             : /* //{ accelerateVertical() */
+     905             : 
+     906       15806 : void LandoffTracker::accelerateVertical(void) {
+     907             : 
+     908             :   // copy member variables
+     909       15806 :   auto [current_vertical_speed, state_z] = mrs_lib::get_mutexed(mutex_state_, current_vertical_speed_, state_z_);
+     910       15806 :   auto goal_z                            = mrs_lib::get_mutexed(mutex_goal_, goal_z_);
+     911       15806 :   auto constraints                       = mrs_lib::get_mutexed(mutex_constraints_, constraints_);
+     912             : 
+     913             :   double used_acceleration;
+     914             :   double used_speed;
+     915             : 
+     916       15806 :   if (taking_off_) {
+     917             : 
+     918        4480 :     used_speed        = _takeoff_speed_;
+     919        4480 :     used_acceleration = _takeoff_acceleration_;
+     920             : 
+     921        4480 :     if (used_speed > constraints.vertical_ascending_speed) {
+     922           0 :       used_speed = constraints.vertical_ascending_speed;
+     923           0 :       ROS_WARN_THROTTLE(1.0, "[LandoffTracker]: saturating takeoff speed");
+     924             :     }
+     925             : 
+     926        4480 :     if (used_acceleration > constraints.vertical_ascending_acceleration) {
+     927           0 :       used_acceleration = constraints.vertical_ascending_acceleration;
+     928           0 :       ROS_WARN_THROTTLE(1.0, "[LandoffTracker]: saturating takeoff acceleration");
+     929             :     }
+     930             : 
+     931       11326 :   } else if (landing_) {
+     932             : 
+     933       11326 :     if (elanding_) {
+     934             : 
+     935        7090 :       used_speed        = _elanding_speed_;
+     936        7090 :       used_acceleration = _elanding_acceleration_;
+     937             : 
+     938             :     } else {
+     939             : 
+     940        4236 :       used_speed        = _landing_speed_;
+     941        4236 :       used_acceleration = _landing_acceleration_;
+     942             : 
+     943        4236 :       if (used_speed > constraints.vertical_descending_speed) {
+     944           0 :         used_speed = constraints.vertical_descending_speed;
+     945           0 :         ROS_WARN_THROTTLE(1.0, "[LandoffTracker]: saturating landing speed");
+     946             :       }
+     947             : 
+     948        4236 :       if (used_acceleration > constraints.vertical_descending_acceleration) {
+     949           0 :         used_acceleration = constraints.vertical_descending_acceleration;
+     950           0 :         ROS_WARN_THROTTLE(1.0, "[LandoffTracker]: saturating landing acceleration");
+     951             :       }
+     952             :     }
+     953             : 
+     954             :   } else {
+     955             : 
+     956             :     // TODO take this from constraints
+     957           0 :     used_speed        = _vertical_speed_;
+     958           0 :     used_acceleration = _vertical_acceleration_;
+     959             :   }
+     960             : 
+     961             :   // set the right heading
+     962       15806 :   double tar_z = goal_z - state_z;
+     963             : 
+     964             :   // set the right vertical direction
+     965             :   {
+     966       15806 :     std::scoped_lock lock(mutex_state_);
+     967             : 
+     968       15806 :     current_vertical_direction_ = mrs_lib::signum(tar_z);
+     969             :   }
+     970             : 
+     971       15806 :   auto current_vertical_direction = mrs_lib::get_mutexed(mutex_state_, current_vertical_direction_);
+     972             : 
+     973             :   // calculate the time to stop and the distance it will take to stop [vertical]
+     974       15806 :   double vertical_t_stop    = current_vertical_speed / used_acceleration;
+     975       15806 :   double vertical_stop_dist = (vertical_t_stop * current_vertical_speed) / 2.0;
+     976       15806 :   double stop_dist_z        = current_vertical_direction * vertical_stop_dist;
+     977             : 
+     978             :   {
+     979       31612 :     std::scoped_lock lock(mutex_state_);
+     980             : 
+     981       15806 :     current_vertical_speed_ += used_acceleration * _tracker_dt_;
+     982             : 
+     983       15806 :     if (current_vertical_speed_ >= used_speed) {
+     984        3894 :       current_vertical_speed_ -= _vertical_acceleration_ * _tracker_dt_;
+     985        3894 :       current_vertical_acceleration_ = 0;
+     986             :     } else {
+     987       11912 :       current_vertical_acceleration_ = used_acceleration;
+     988             :     }
+     989             :   }
+     990             : 
+     991             :   // stopping condition to change to decelerate state
+     992             :   //
+     993             :   // It does not apply if landing or elanding, cause,
+     994             :   // it could potentially stop in mid air if odometry jumps (this happened),
+     995             :   // Instead, landing and elanding is stopped by sensing the throttle.
+     996       15806 :   if (!elanding_ && !landing_) {
+     997        4480 :     if (fabs(state_z + stop_dist_z - goal_z) < (2 * (used_speed * _tracker_dt_))) {
+     998             : 
+     999             :       {
+    1000          20 :         std::scoped_lock lock(mutex_state_);
+    1001             : 
+    1002          20 :         current_vertical_acceleration_ = 0;
+    1003             :       }
+    1004             : 
+    1005          20 :       changeStateVertical(DECELERATING_STATE);
+    1006             :     }
+    1007             :   }
+    1008       15806 : }
+    1009             : 
+    1010             : //}
+    1011             : 
+    1012             : /* //{ decelerateVertical() */
+    1013             : 
+    1014        4480 : void LandoffTracker::decelerateVertical(void) {
+    1015             : 
+    1016             :   double used_acceleration;
+    1017             : 
+    1018        4480 :   if (taking_off_) {
+    1019             : 
+    1020        4480 :     used_acceleration = _takeoff_acceleration_;
+    1021             : 
+    1022           0 :   } else if (landing_) {
+    1023             : 
+    1024           0 :     if (elanding_) {
+    1025             : 
+    1026           0 :       used_acceleration = _elanding_acceleration_;
+    1027             : 
+    1028             :     } else {
+    1029             : 
+    1030           0 :       used_acceleration = _landing_acceleration_;
+    1031             :     }
+    1032             : 
+    1033             :   } else {
+    1034           0 :     used_acceleration = _vertical_acceleration_;
+    1035             :   }
+    1036             : 
+    1037             :   {
+    1038        8960 :     std::scoped_lock lock(mutex_state_);
+    1039             : 
+    1040        4480 :     current_vertical_speed_ -= used_acceleration * _tracker_dt_;
+    1041             : 
+    1042        4480 :     if (current_vertical_speed_ < 0) {
+    1043          20 :       current_vertical_speed_ = 0;
+    1044             :     } else {
+    1045        4460 :       current_vertical_acceleration_ = -used_acceleration;
+    1046             :     }
+    1047             :   }
+    1048             : 
+    1049        4480 :   auto current_vertical_speed = mrs_lib::get_mutexed(mutex_state_, current_vertical_speed_);
+    1050             : 
+    1051        4480 :   if (current_vertical_speed == 0) {
+    1052             : 
+    1053             :     {
+    1054          20 :       std::scoped_lock lock(mutex_state_);
+    1055             : 
+    1056          20 :       current_vertical_acceleration_ = 0;
+    1057             :     }
+    1058             : 
+    1059          20 :     changeStateVertical(STOPPING_STATE);
+    1060             :   }
+    1061        4480 : }
+    1062             : 
+    1063             : //}
+    1064             : 
+    1065             : /* //{ stopHorizontal() */
+    1066             : 
+    1067       20286 : void LandoffTracker::stopHorizontal(void) {
+    1068             : 
+    1069             :   {
+    1070       20286 :     std::scoped_lock lock(mutex_state_, mutex_goal_);
+    1071             : 
+    1072       20286 :     double new_state_x = 0.95 * state_x_ + 0.05 * goal_x_;
+    1073       20286 :     double new_state_y = 0.95 * state_y_ + 0.05 * goal_y_;
+    1074             : 
+    1075       20286 :     double dist_x = new_state_x - state_x_;
+    1076       20286 :     double dist_y = new_state_y - state_y_;
+    1077             : 
+    1078       20286 :     double dt = 1.0 / _main_timer_rate_;
+    1079             : 
+    1080       20286 :     if (std::abs(dist_x / dt) > 1.0) {
+    1081           0 :       dist_x = mrs_lib::signum(dist_x) * (1.0 * dt);
+    1082             :     }
+    1083             : 
+    1084       20286 :     if (std::abs(dist_y / dt) > 1.0) {
+    1085           0 :       dist_y = mrs_lib::signum(dist_y) * (1.0 * dt);
+    1086             :     }
+    1087             : 
+    1088       20286 :     state_x_ += dist_x;
+    1089       20286 :     state_y_ += dist_y;
+    1090             : 
+    1091       20286 :     current_horizontal_acceleration_ = 0;
+    1092             :   }
+    1093       20286 : }
+    1094             : 
+    1095             : //}
+    1096             : 
+    1097             : /* //{ stopVertical() */
+    1098             : 
+    1099           0 : void LandoffTracker::stopVertical(void) {
+    1100             : 
+    1101             :   {
+    1102           0 :     std::scoped_lock lock(mutex_state_, mutex_goal_);
+    1103             : 
+    1104           0 :     double new_state_z = 0.95 * state_z_ + 0.05 * goal_z_;
+    1105             : 
+    1106           0 :     double dist_z = new_state_z - state_z_;
+    1107             : 
+    1108           0 :     double dt = 1.0 / _main_timer_rate_;
+    1109             : 
+    1110           0 :     if (std::abs(dist_z / dt) > 1.0) {
+    1111           0 :       dist_z = mrs_lib::signum(dist_z) * (1.0 * dt);
+    1112             :     }
+    1113             : 
+    1114           0 :     state_z_ += dist_z;
+    1115             : 
+    1116           0 :     current_vertical_acceleration_ = 0;
+    1117             :   }
+    1118           0 : }
+    1119             : 
+    1120             : //}
+    1121             : 
+    1122             : // | --------------------- timer routines --------------------- |
+    1123             : 
+    1124             : /* //{ timerMain() */
+    1125             : 
+    1126       23220 : void LandoffTracker::timerMain(const ros::TimerEvent& event) {
+    1127             : 
+    1128       23220 :   std::scoped_lock lock(mutex_main_timer_);
+    1129             : 
+    1130       23220 :   if (!is_active_) {
+    1131           0 :     return;
+    1132             :   }
+    1133             : 
+    1134             :   // copy member variables
+    1135       46440 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    1136       23220 :   auto [state_x, state_y, state_z, current_horizontal_speed, current_vertical_speed, current_heading, current_vertical_direction] = mrs_lib::get_mutexed(
+    1137       23220 :       mutex_state_, state_x_, state_y_, state_z_, current_horizontal_speed_, current_vertical_speed_, current_heading_, current_vertical_direction_);
+    1138       23220 :   auto [goal_x, goal_y, goal_z] = mrs_lib::get_mutexed(mutex_goal_, goal_x_, goal_y_, goal_z_);
+    1139       46440 :   auto last_control_output      = mrs_lib::get_mutexed(mutex_last_control_output_, last_control_output_);
+    1140             : 
+    1141             :   double uav_x, uav_y, uav_z;
+    1142       23220 :   uav_x = uav_state.pose.position.x;
+    1143       23220 :   uav_y = uav_state.pose.position.y;
+    1144       23220 :   uav_z = uav_state.pose.position.z;
+    1145             : 
+    1146       69660 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("main", _main_timer_rate_, 0.002, event);
+    1147       69660 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("LandoffTracker::main", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+    1148             : 
+    1149       23220 :   bool takeoff_saturated = false;
+    1150             : 
+    1151       23220 :   if (taking_off_) {
+    1152             : 
+    1153             :     // calculate the vector
+    1154        9480 :     double err_x      = uav_x - state_x;
+    1155        9480 :     double err_y      = uav_y - state_y;
+    1156        9480 :     double err_z      = uav_z - state_z;
+    1157        9480 :     double error_size = sqrt(pow(err_x, 2) + pow(err_y, 2) + pow(err_z, 2));
+    1158             : 
+    1159        9480 :     if (error_size > _max_position_difference_) {
+    1160             : 
+    1161             :       // calculate the potential next step
+    1162          63 :       double future_state_x = state_x + cos(current_heading) * current_horizontal_speed * _tracker_dt_;
+    1163          63 :       double future_state_y = state_y + sin(current_heading) * current_horizontal_speed * _tracker_dt_;
+    1164          63 :       double future_state_z = state_z + current_vertical_direction * current_vertical_speed * _tracker_dt_;
+    1165             : 
+    1166             :       // if the step would lead to a greater control error than the threshold
+    1167          63 :       if (mrs_lib::geometry::dist(vec3_t(future_state_x, future_state_y, future_state_z), vec3_t(uav_x, uav_y, uav_z)) > error_size) {
+    1168             : 
+    1169             :         // set this to true... later, we will not update the model if this is true, thus the tracker's motion will stop
+    1170             :         // => the tracker will wait for the controller
+    1171          63 :         takeoff_saturated = true;
+    1172             : 
+    1173          63 :         ROS_WARN_THROTTLE(
+    1174             :             0.1, "[LandoffTracker]: position difference %.3f > %.3f, saturating the motion. Reference: x=%.2f, y=%.2f, z=%.2f, Odometry: %.2f, %.2f, %.2f",
+    1175             :             error_size, _max_position_difference_, future_state_x, future_state_y, future_state_z, uav_x, uav_y, uav_z);
+    1176             :       }
+    1177             :     }
+    1178             : 
+    1179             :     // saturate while ramping up during takeoff
+    1180        9480 :     if (last_control_output.diagnostics.ramping_up) {
+    1181             : 
+    1182         457 :       ROS_INFO_THROTTLE(1.0, "[LandoffTracker]: waiting for the controller to rampup");
+    1183         457 :       takeoff_saturated = true;
+    1184             :     }
+    1185             :   }
+    1186             : 
+    1187       23220 :   if (!takeoff_saturated) {
+    1188             : 
+    1189       22700 :     switch (current_state_horizontal_) {
+    1190             : 
+    1191         653 :       case STOP_MOTION_STATE: {
+    1192             : 
+    1193         653 :         stopHorizontalMotion();
+    1194         653 :         break;
+    1195             :       }
+    1196             : 
+    1197       20286 :       case STOPPING_STATE: {
+    1198             : 
+    1199       20286 :         stopHorizontal();
+    1200       20286 :         break;
+    1201             :       }
+    1202             : 
+    1203        1761 :       default: {
+    1204             : 
+    1205        1761 :         break;
+    1206             :       }
+    1207             :     }
+    1208             : 
+    1209       22700 :     switch (current_state_vertical_) {
+    1210             : 
+    1211         653 :       case STOP_MOTION_STATE: {
+    1212             : 
+    1213         653 :         stopVerticalMotion();
+    1214         653 :         break;
+    1215             :       }
+    1216             : 
+    1217       15806 :       case ACCELERATING_STATE: {
+    1218             : 
+    1219       15806 :         accelerateVertical();
+    1220       15806 :         break;
+    1221             :       }
+    1222             : 
+    1223        4480 :       case DECELERATING_STATE: {
+    1224             : 
+    1225        4480 :         decelerateVertical();
+    1226        4480 :         break;
+    1227             :       }
+    1228             : 
+    1229           0 :       case STOPPING_STATE: {
+    1230             : 
+    1231           0 :         stopVertical();
+    1232           0 :         break;
+    1233             :       }
+    1234             : 
+    1235        1761 :       default: {
+    1236             : 
+    1237        1761 :         break;
+    1238             :       }
+    1239             :     }
+    1240             :   }
+    1241             : 
+    1242       23220 :   if (current_state_horizontal_ == STOP_MOTION_STATE && current_state_vertical_ == STOP_MOTION_STATE) {
+    1243         673 :     if (fabs(current_vertical_speed) <= 0.1 && fabs(current_horizontal_speed) <= 0.1) {
+    1244             : 
+    1245             :       // if the current motion was stopped (the conditions above) but we still have a goal (landing or taking off)
+    1246             :       // -> we should start accelerating towards the goal in the vertical direction
+    1247             :       // This is important, do not modify without testing, otherwise your landing routine may crash into the ground
+    1248             :       // while having large lateral speed
+    1249          57 :       if (have_goal_) {
+    1250             : 
+    1251          33 :         changeStateVertical(ACCELERATING_STATE);
+    1252          33 :         changeStateHorizontal(STOPPING_STATE);
+    1253             : 
+    1254             :       } else {
+    1255             : 
+    1256          24 :         changeState(STOPPING_STATE);
+    1257             : 
+    1258             :         {
+    1259          24 :           std::scoped_lock lock(mutex_state_);
+    1260             : 
+    1261          24 :           current_horizontal_speed_ = 0;
+    1262          24 :           current_vertical_speed_   = 0;
+    1263             :         }
+    1264             :       }
+    1265             :     }
+    1266             :   }
+    1267             : 
+    1268       23220 :   if (current_state_vertical_ == STOPPING_STATE && current_state_horizontal_ == STOPPING_STATE) {
+    1269             : 
+    1270          44 :     if (fabs(state_x - goal_x) > 1.0 || fabs(state_y - goal_y) > 1.0 || fabs(state_z - goal_z) > 1.0) {
+    1271             : 
+    1272           0 :       ROS_ERROR("[LandoffTracker]: distance to the goal is too large when STOPPING, this could have been caused by a race condition!");
+    1273           0 :       ROS_ERROR("[LandoffTracker]: call for Tomas!!");
+    1274             : 
+    1275           0 :       cause_failsafe_ = true;
+    1276             : 
+    1277           0 :       changeState(HOVER_STATE);
+    1278             : 
+    1279          44 :     } else if (fabs(state_x - goal_x) < 0.1 && fabs(state_y - goal_y) < 0.1 && fabs(state_z - goal_z) < 0.1) {
+    1280             : 
+    1281             :       {
+    1282          44 :         std::scoped_lock lock(mutex_state_);
+    1283             : 
+    1284          44 :         if (!taking_off_) {
+    1285          24 :           state_x_ = goal_x;
+    1286          24 :           state_y_ = goal_y;
+    1287          24 :           state_z_ = goal_z;
+    1288             :         }
+    1289             : 
+    1290          44 :         current_horizontal_speed_ = 0;
+    1291          44 :         current_vertical_speed_   = 0;
+    1292             :       }
+    1293             : 
+    1294          44 :       changeState(HOVER_STATE);
+    1295             : 
+    1296          44 :       have_goal_ = false;
+    1297             :     }
+    1298             :   }
+    1299             : 
+    1300       23220 :   if (current_state_horizontal_ == LANDED_STATE && current_state_vertical_ == LANDED_STATE) {
+    1301             :     {
+    1302           0 :       std::scoped_lock lock(mutex_state_);
+    1303             : 
+    1304           0 :       state_x_ = goal_x = uav_x;
+    1305           0 :       state_y_ = goal_y = uav_y;
+    1306           0 :       state_z_ = goal_z = uav_z;
+    1307             : 
+    1308           0 :       have_goal_ = false;
+    1309             :     }
+    1310             :   }
+    1311             : 
+    1312             :   // --------------------------------------------------------------
+    1313             :   // |              motion saturation during takeoff              |
+    1314             :   // --------------------------------------------------------------
+    1315             : 
+    1316             :   // update the inner states
+    1317       23220 :   if (!takeoff_saturated) {
+    1318             :     {
+    1319       22700 :       std::scoped_lock lock(mutex_state_);
+    1320             : 
+    1321       22700 :       state_x_ += cos(current_heading) * current_horizontal_speed * _tracker_dt_;
+    1322       22700 :       state_y_ += sin(current_heading) * current_horizontal_speed * _tracker_dt_;
+    1323       22700 :       state_z_ += current_vertical_direction * current_vertical_speed * _tracker_dt_;
+    1324             :     }
+    1325             :   }
+    1326             : 
+    1327             :   // --------------------------------------------------------------
+    1328             :   // |                        heading tracking                        |
+    1329             :   // --------------------------------------------------------------
+    1330             : 
+    1331             :   // compute the desired heading rate
+    1332             :   {
+    1333       46440 :     std::scoped_lock lock(mutex_state_);
+    1334             : 
+    1335             :     double current_heading_rate;
+    1336             : 
+    1337       23220 :     if (fabs(goal_heading_ - state_heading_) > M_PI)
+    1338           0 :       current_heading_rate = -_heading_gain_ * (goal_heading_ - state_heading_);
+    1339             :     else
+    1340       23220 :       current_heading_rate = _heading_gain_ * (goal_heading_ - state_heading_);
+    1341             : 
+    1342       23220 :     if (current_heading_rate > _heading_rate_) {
+    1343           0 :       current_heading_rate = _heading_rate_;
+    1344       23220 :     } else if (current_heading_rate < -_heading_rate_) {
+    1345           0 :       current_heading_rate = -_heading_rate_;
+    1346             :     }
+    1347             : 
+    1348             :     // flap the resulted state_heading_ aroud PI
+    1349       23220 :     state_heading_ += current_heading_rate * _tracker_dt_;
+    1350             : 
+    1351       23220 :     if (state_heading_ > M_PI) {
+    1352           0 :       state_heading_ -= 2 * M_PI;
+    1353       23220 :     } else if (state_heading_ < -M_PI) {
+    1354           0 :       state_heading_ += 2 * M_PI;
+    1355             :     }
+    1356             : 
+    1357       23220 :     if (fabs(state_heading_ - goal_heading_) < (2 * (_heading_rate_ * _tracker_dt_))) {
+    1358       23220 :       state_heading_ = goal_heading_;
+    1359             :     }
+    1360             :   }
+    1361             : 
+    1362             :   // --------------------------------------------------------------
+    1363             :   // |                      landing setpoint                      |
+    1364             :   // --------------------------------------------------------------
+    1365             : 
+    1366       23220 :   if (landing_) {
+    1367             :     {
+    1368       11923 :       std::scoped_lock lock(mutex_goal_);
+    1369             : 
+    1370       11923 :       goal_z_ = uav_z + _landing_reference_;
+    1371             :     }
+    1372             :   }
+    1373             : }
+    1374             : 
+    1375             : //}
+    1376             : 
+    1377             : // | ------------------------ callbacks ----------------------- |
+    1378             : 
+    1379             : /* //{ callbackTakeoff() */
+    1380             : 
+    1381          20 : bool LandoffTracker::callbackTakeoff(mrs_msgs::Vec1::Request& req, mrs_msgs::Vec1::Response& res) {
+    1382             : 
+    1383          40 :   std::stringstream ss;
+    1384             : 
+    1385             :   // copy member variables
+    1386          40 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    1387             : 
+    1388          20 :   double uav_heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+    1389             : 
+    1390             :   double uav_x, uav_y, uav_z;
+    1391          20 :   uav_x = uav_state.pose.position.x;
+    1392          20 :   uav_y = uav_state.pose.position.y;
+    1393          20 :   uav_z = uav_state.pose.position.z;
+    1394             : 
+    1395          20 :   if (!is_active_) {
+    1396           0 :     ss << "can not takeoff, the tracker is not active";
+    1397           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[LandoffTracker]: " << ss.str());
+    1398           0 :     res.success = false;
+    1399           0 :     res.message = ss.str();
+    1400           0 :     return true;
+    1401             :   }
+    1402             : 
+    1403          20 :   if (!callbacks_enabled_) {
+    1404           0 :     ss << "can not takeoff, the callbacks are disabled";
+    1405           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[LandoffTracker]: " << ss.str());
+    1406           0 :     res.success = false;
+    1407           0 :     res.message = ss.str();
+    1408           0 :     return true;
+    1409             :   }
+    1410             : 
+    1411          20 :   if (req.goal < 0.5 || req.goal > 10.0) {
+    1412             : 
+    1413           0 :     ss << "can not takeoff, the goal should be within [0.5, 10.0] m!";
+    1414           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[LandoffTracker]: " << ss.str());
+    1415           0 :     res.success = false;
+    1416           0 :     res.message = ss.str();
+    1417           0 :     return true;
+    1418             :   }
+    1419             : 
+    1420             :   {
+    1421          40 :     std::scoped_lock lock(mutex_goal_, mutex_state_);
+    1422             : 
+    1423          20 :     state_x_ = uav_x;
+    1424          20 :     goal_x_  = uav_x;
+    1425             : 
+    1426          20 :     state_y_ = uav_y;
+    1427          20 :     goal_y_  = uav_y;
+    1428             : 
+    1429          20 :     state_z_ = uav_z;
+    1430          20 :     goal_z_  = uav_z + req.goal;
+    1431             : 
+    1432          20 :     state_heading_ = uav_heading;
+    1433          20 :     goal_heading_  = uav_heading;
+    1434             : 
+    1435          20 :     speed_x_                = 0;
+    1436          20 :     speed_y_                = 0;
+    1437          20 :     current_vertical_speed_ = 0;
+    1438             : 
+    1439          20 :     have_goal_ = true;
+    1440             :   }
+    1441             : 
+    1442          20 :   ROS_INFO("[LandoffTracker]: taking off");
+    1443             : 
+    1444          20 :   taking_off_ = true;
+    1445          20 :   landing_    = false;
+    1446          20 :   elanding_   = false;
+    1447             : 
+    1448          20 :   res.success = true;
+    1449          20 :   res.message = "taking off";
+    1450             : 
+    1451          20 :   changeState(STOP_MOTION_STATE);
+    1452             : 
+    1453          20 :   return true;
+    1454             : }
+    1455             : 
+    1456             : //}
+    1457             : 
+    1458             : /* //{ callbackLand() */
+    1459             : 
+    1460           5 : bool LandoffTracker::callbackLand([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    1461             : 
+    1462          10 :   std::scoped_lock lock(mutex_main_timer_);
+    1463             : 
+    1464          10 :   std::stringstream ss;
+    1465             : 
+    1466             :   // copy member variables
+    1467          10 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    1468             : 
+    1469           5 :   if (!is_active_) {
+    1470           0 :     ss << "can not land, the tracker is not active";
+    1471           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[LandoffTracker]: " << ss.str());
+    1472           0 :     res.success = false;
+    1473           0 :     res.message = ss.str();
+    1474           0 :     return true;
+    1475             :   }
+    1476             : 
+    1477             :   {
+    1478           5 :     std::scoped_lock lock(mutex_goal_);
+    1479             : 
+    1480           5 :     goal_z_ = uav_state.pose.position.z + _landing_reference_;
+    1481             :   }
+    1482             : 
+    1483           5 :   ROS_INFO("[LandoffTracker]: landing");
+    1484             : 
+    1485           5 :   landing_    = true;
+    1486           5 :   elanding_   = false;
+    1487           5 :   taking_off_ = false;
+    1488           5 :   have_goal_  = true;
+    1489             : 
+    1490           5 :   res.success = true;
+    1491           5 :   res.message = "landing";
+    1492             : 
+    1493           5 :   changeState(STOP_MOTION_STATE);
+    1494             : 
+    1495           5 :   return true;
+    1496             : }
+    1497             : 
+    1498             : //}
+    1499             : 
+    1500             : /* //{ callbackELand() */
+    1501             : 
+    1502           8 : bool LandoffTracker::callbackELand([[maybe_unused]] std_srvs::Trigger::Request& req, std_srvs::Trigger::Response& res) {
+    1503             : 
+    1504          16 :   std::scoped_lock lock(mutex_main_timer_);
+    1505             : 
+    1506          16 :   std::stringstream ss;
+    1507             : 
+    1508             :   // copy member variables
+    1509          16 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    1510             : 
+    1511           8 :   if (!is_active_) {
+    1512             : 
+    1513           0 :     ss << "can not eland, the tracker is not active";
+    1514           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[LandoffTracker]: " << ss.str());
+    1515           0 :     res.success = false;
+    1516           0 :     res.message = ss.str();
+    1517           0 :     taking_off_ = false;
+    1518           0 :     landing_    = false;
+    1519           0 :     elanding_   = false;
+    1520           0 :     changeState(LANDED_STATE);
+    1521           0 :     return true;
+    1522             :   }
+    1523             : 
+    1524             :   {
+    1525           8 :     std::scoped_lock lock(mutex_goal_);
+    1526             : 
+    1527           8 :     goal_z_ = uav_state.pose.position.z + _landing_reference_;
+    1528             :   }
+    1529             : 
+    1530           8 :   ROS_WARN("[LandoffTracker]: emergency landing");
+    1531             : 
+    1532           8 :   landing_    = true;
+    1533           8 :   elanding_   = true;
+    1534           8 :   taking_off_ = false;
+    1535           8 :   have_goal_  = true;
+    1536             : 
+    1537           8 :   res.success = true;
+    1538           8 :   res.message = "elanding";
+    1539             : 
+    1540           8 :   changeState(STOP_MOTION_STATE);
+    1541             : 
+    1542           8 :   return true;
+    1543             : }
+    1544             : 
+    1545             : //}
+    1546             : 
+    1547             : }  // namespace landoff_tracker
+    1548             : 
+    1549             : }  // namespace mrs_uav_trackers
+    1550             : 
+    1551             : #include <pluginlib/class_list_macros.h>
+    1552          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_trackers::landoff_tracker::LandoffTracker, mrs_uav_managers::Tracker)
+
+
+
+ + + + +
Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_trackers/src/landoff_tracker/landoff_tracker.cpp.gcov.overview.html b/mrs_uav_trackers/src/landoff_tracker/landoff_tracker.cpp.gcov.overview.html new file mode 100644 index 0000000000..a184a445d4 --- /dev/null +++ b/mrs_uav_trackers/src/landoff_tracker/landoff_tracker.cpp.gcov.overview.html @@ -0,0 +1,408 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trackers/src/landoff_tracker/landoff_tracker.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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Current view:top level - mrs_uav_trackers/src/line_trackerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:32247467.9 %
Date:2024-04-17 23:52:03Functions:193063.3 %
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LCOV - code coverage report
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Test:MRS UAV System - Test coverage reportLines:32247467.9 %
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Current view:top level - mrs_uav_trackers/src/line_trackerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:32247467.9 %
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Test:MRS UAV System - Test coverage reportLines:32247467.9 %
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67.9 %322 / 47463.3 %19 / 30
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Current view:top level - mrs_uav_trackers/src/line_trackerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:32247467.9 %
Date:2024-04-17 23:52:03Functions:193063.3 %
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Test:MRS UAV System - Test coverage reportLines:32247467.9 %
Date:2024-04-17 23:52:03Functions:193063.3 %
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line_tracker.cpp +
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Current view:top level - mrs_uav_trackers/src/line_tracker - line_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:32247467.9 %
Date:2024-04-17 23:52:03Functions:193063.3 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_trackers::line_tracker::LineTracker::deactivate()0
mrs_uav_trackers::line_tracker::LineTracker::resetStatic()0
mrs_uav_trackers::line_tracker::LineTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_trackers::line_tracker::LineTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
(anonymous namespace)::ProxyExec0::ProxyExec0()1
mrs_uav_trackers::line_tracker::LineTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)1
mrs_uav_trackers::line_tracker::LineTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)1
mrs_uav_trackers::line_tracker::LineTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)1
mrs_uav_trackers::line_tracker::LineTracker::stopVerticalMotion()2
mrs_uav_trackers::line_tracker::LineTracker::stopHorizontalMotion()2
mrs_uav_trackers::line_tracker::LineTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)3
mrs_uav_trackers::line_tracker::LineTracker::changeState(mrs_uav_trackers::line_tracker::States_t)6
mrs_uav_trackers::line_tracker::LineTracker::changeStateVertical(mrs_uav_trackers::line_tracker::States_t)8
mrs_uav_trackers::line_tracker::LineTracker::changeStateHorizontal(mrs_uav_trackers::line_tracker::States_t)8
mrs_uav_trackers::line_tracker::LineTracker::stopHorizontal()46
mrs_uav_trackers::line_tracker::LineTracker::decelerateVertical()100
mrs_uav_trackers::line_tracker::LineTracker::decelerateHorizontal()100
mrs_uav_trackers::line_tracker::LineTracker::getStatus()181
mrs_uav_trackers::line_tracker::LineTracker::accelerateVertical()199
mrs_uav_trackers::line_tracker::LineTracker::stopVertical()851
mrs_uav_trackers::line_tracker::LineTracker::accelerateHorizontal()1004
mrs_uav_trackers::line_tracker::LineTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)1710
mrs_uav_trackers::line_tracker::LineTracker::mainTimer(ros::TimerEvent const&)2228
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Current view:top level - mrs_uav_trackers/src/line_tracker - line_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:32247467.9 %
Date:2024-04-17 23:52:03Functions:193063.3 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()1
mrs_uav_trackers::line_tracker::LineTracker::deactivate()0
mrs_uav_trackers::line_tracker::LineTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)1
mrs_uav_trackers::line_tracker::LineTracker::changeState(mrs_uav_trackers::line_tracker::States_t)6
mrs_uav_trackers::line_tracker::LineTracker::resetStatic()0
mrs_uav_trackers::line_tracker::LineTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)1
mrs_uav_trackers::line_tracker::LineTracker::stopVertical()851
mrs_uav_trackers::line_tracker::LineTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)3
mrs_uav_trackers::line_tracker::LineTracker::stopHorizontal()46
mrs_uav_trackers::line_tracker::LineTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::accelerateVertical()199
mrs_uav_trackers::line_tracker::LineTracker::decelerateVertical()100
mrs_uav_trackers::line_tracker::LineTracker::stopVerticalMotion()2
mrs_uav_trackers::line_tracker::LineTracker::changeStateVertical(mrs_uav_trackers::line_tracker::States_t)8
mrs_uav_trackers::line_tracker::LineTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::accelerateHorizontal()1004
mrs_uav_trackers::line_tracker::LineTracker::decelerateHorizontal()100
mrs_uav_trackers::line_tracker::LineTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::stopHorizontalMotion()2
mrs_uav_trackers::line_tracker::LineTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_trackers::line_tracker::LineTracker::changeStateHorizontal(mrs_uav_trackers::line_tracker::States_t)8
mrs_uav_trackers::line_tracker::LineTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::line_tracker::LineTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)1710
mrs_uav_trackers::line_tracker::LineTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)1
mrs_uav_trackers::line_tracker::LineTracker::getStatus()181
mrs_uav_trackers::line_tracker::LineTracker::mainTimer(ros::TimerEvent const&)2228
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LCOV - code coverage report
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Current view:top level - mrs_uav_trackers/src/line_tracker - line_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:32247467.9 %
Date:2024-04-17 23:52:03Functions:193063.3 %
Legend: Lines: + hit + not hit +
+
+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <ros/package.h>
+       5             : 
+       6             : #include <mrs_uav_managers/tracker.h>
+       7             : 
+       8             : #include <mrs_lib/profiler.h>
+       9             : #include <mrs_lib/mutex.h>
+      10             : #include <mrs_lib/attitude_converter.h>
+      11             : #include <mrs_lib/utils.h>
+      12             : #include <mrs_lib/geometry/cyclic.h>
+      13             : #include <mrs_lib/geometry/misc.h>
+      14             : 
+      15             : #include <mrs_msgs/VelocityReferenceSrv.h>
+      16             : 
+      17             : //}
+      18             : 
+      19             : /* defines //{ */
+      20             : 
+      21             : #define STOP_THR 1e-3
+      22             : 
+      23             : //}
+      24             : 
+      25             : /* using //{ */
+      26             : 
+      27             : using namespace Eigen;
+      28             : 
+      29             : using vec2_t = mrs_lib::geometry::vec_t<2>;
+      30             : using vec3_t = mrs_lib::geometry::vec_t<3>;
+      31             : 
+      32             : using radians  = mrs_lib::geometry::radians;
+      33             : using sradians = mrs_lib::geometry::sradians;
+      34             : 
+      35             : //}
+      36             : 
+      37             : namespace mrs_uav_trackers
+      38             : {
+      39             : 
+      40             : namespace line_tracker
+      41             : {
+      42             : 
+      43             : /* //{ class LineTracker */
+      44             : 
+      45             : // state machine
+      46             : typedef enum
+      47             : {
+      48             : 
+      49             :   IDLE_STATE,
+      50             :   STOP_MOTION_STATE,
+      51             :   ACCELERATING_STATE,
+      52             :   DECELERATING_STATE,
+      53             :   STOPPING_STATE,
+      54             : 
+      55             : } States_t;
+      56             : 
+      57             : const char *state_names[5] = {
+      58             : 
+      59             :     "IDLING", "STOPPING_MOTION", "ACCELERATING", "DECELERATING", "STOPPING"};
+      60             : 
+      61             : class LineTracker : public mrs_uav_managers::Tracker {
+      62             : public:
+      63             :   bool initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      64             :                   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers);
+      65             : 
+      66             :   std::tuple<bool, std::string> activate(const std::optional<mrs_msgs::TrackerCommand> &last_tracker_cmd);
+      67             :   void                          deactivate(void);
+      68             :   bool                          resetStatic(void);
+      69             : 
+      70             :   std::optional<mrs_msgs::TrackerCommand>   update(const mrs_msgs::UavState &uav_state, const mrs_uav_managers::Controller::ControlOutput &last_control_output);
+      71             :   const mrs_msgs::TrackerStatus             getStatus();
+      72             :   const std_srvs::SetBoolResponse::ConstPtr enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr &cmd);
+      73             :   const std_srvs::TriggerResponse::ConstPtr switchOdometrySource(const mrs_msgs::UavState &new_uav_state);
+      74             : 
+      75             :   const mrs_msgs::ReferenceSrvResponse::ConstPtr           setReference(const mrs_msgs::ReferenceSrvRequest::ConstPtr &cmd);
+      76             :   const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr   setVelocityReference(const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr &cmd);
+      77             :   const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr setTrajectoryReference(const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr &cmd);
+      78             : 
+      79             :   const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd);
+      80             : 
+      81             :   const std_srvs::TriggerResponse::ConstPtr hover(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      82             :   const std_srvs::TriggerResponse::ConstPtr startTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      83             :   const std_srvs::TriggerResponse::ConstPtr stopTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      84             :   const std_srvs::TriggerResponse::ConstPtr resumeTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      85             :   const std_srvs::TriggerResponse::ConstPtr gotoTrajectoryStart(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      86             : 
+      87             : private:
+      88             :   ros::NodeHandle nh_;
+      89             : 
+      90             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>  common_handlers_;
+      91             :   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers_;
+      92             : 
+      93             :   bool callbacks_enabled_ = true;
+      94             : 
+      95             :   std::string _uav_name_;
+      96             : 
+      97             :   void       mainTimer(const ros::TimerEvent &event);
+      98             :   ros::Timer main_timer_;
+      99             : 
+     100             :   // | ------------------------ uav state ----------------------- |
+     101             : 
+     102             :   mrs_msgs::UavState uav_state_;
+     103             :   bool               got_uav_state_ = false;
+     104             :   std::mutex         mutex_uav_state_;
+     105             : 
+     106             :   double uav_x_;
+     107             :   double uav_y_;
+     108             :   double uav_z_;
+     109             : 
+     110             :   // tracker's inner states
+     111             :   double _tracker_loop_rate_;
+     112             :   double _tracker_dt_;
+     113             :   bool   is_initialized_ = false;
+     114             :   bool   is_active_      = false;
+     115             : 
+     116             :   // | ----------------- internal state mmachine ---------------- |
+     117             : 
+     118             :   States_t current_state_vertical_    = IDLE_STATE;
+     119             :   States_t previous_state_vertical_   = IDLE_STATE;
+     120             :   States_t current_state_horizontal_  = IDLE_STATE;
+     121             :   States_t previous_state_horizontal_ = IDLE_STATE;
+     122             : 
+     123             :   void changeStateHorizontal(States_t new_state);
+     124             :   void changeStateVertical(States_t new_state);
+     125             :   void changeState(States_t new_state);
+     126             : 
+     127             :   void stopHorizontalMotion(void);
+     128             :   void stopVerticalMotion(void);
+     129             :   void accelerateHorizontal(void);
+     130             :   void accelerateVertical(void);
+     131             :   void decelerateHorizontal(void);
+     132             :   void decelerateVertical(void);
+     133             :   void stopHorizontal(void);
+     134             :   void stopVertical(void);
+     135             : 
+     136             :   // | ------------------ dynamics constraints ------------------ |
+     137             : 
+     138             :   double     _horizontal_speed_;
+     139             :   double     _vertical_speed_;
+     140             :   double     _horizontal_acceleration_;
+     141             :   double     _vertical_acceleration_;
+     142             :   double     _heading_rate_;
+     143             :   double     _heading_gain_;
+     144             :   std::mutex mutex_constraints_;
+     145             : 
+     146             :   // | ---------------------- desired goal ---------------------- |
+     147             : 
+     148             :   double     goal_x_;
+     149             :   double     goal_y_;
+     150             :   double     goal_z_;
+     151             :   double     goal_heading_;
+     152             :   bool       have_goal_ = false;
+     153             :   std::mutex mutex_goal_;
+     154             : 
+     155             :   // | ------------------- the state variables ------------------ |
+     156             :   double state_x_;
+     157             :   double state_y_;
+     158             :   double state_z_;
+     159             :   double state_heading_;
+     160             : 
+     161             :   double speed_x_;
+     162             :   double speed_y_;
+     163             :   double speed_heading_;
+     164             : 
+     165             :   double current_heading_;
+     166             :   double current_vertical_direction_;
+     167             : 
+     168             :   double current_vertical_speed_;
+     169             :   double current_horizontal_speed_;
+     170             : 
+     171             :   double current_horizontal_acceleration_;
+     172             :   double current_vertical_acceleration_;
+     173             : 
+     174             :   std::mutex mutex_state_;
+     175             : 
+     176             :   // | ------------------------ profiler ------------------------ |
+     177             : 
+     178             :   mrs_lib::Profiler profiler_;
+     179             :   bool              _profiler_enabled_ = false;
+     180             : };
+     181             : 
+     182             : //}
+     183             : 
+     184             : // | -------------- tracker's interface routines -------------- |
+     185             : 
+     186             : /* //{ initialize() */
+     187             : 
+     188           1 : bool LineTracker::initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+     189             :                              std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) {
+     190             : 
+     191           1 :   this->common_handlers_  = common_handlers;
+     192           1 :   this->private_handlers_ = private_handlers;
+     193             : 
+     194           1 :   _uav_name_ = common_handlers->uav_name;
+     195             : 
+     196           1 :   nh_ = nh;
+     197             : 
+     198           1 :   ros::Time::waitForValid();
+     199             : 
+     200             :   // --------------------------------------------------------------
+     201             :   // |                     loading parameters                     |
+     202             :   // --------------------------------------------------------------
+     203             : 
+     204             :   // | ---------- loading params using the parent's nh ---------- |
+     205             : 
+     206           2 :   mrs_lib::ParamLoader param_loader_parent(common_handlers->parent_nh, "ControlManager");
+     207             : 
+     208           1 :   param_loader_parent.loadParam("enable_profiler", _profiler_enabled_);
+     209             : 
+     210           1 :   if (!param_loader_parent.loadedSuccessfully()) {
+     211           0 :     ROS_ERROR("[LineTracker]: Could not load all parameters!");
+     212           0 :     return false;
+     213             :   }
+     214             : 
+     215             :   // | ---------------- load plugin's parameters ---------------- |
+     216             : 
+     217           1 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/private/line_tracker.yaml");
+     218           1 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/public/line_tracker.yaml");
+     219             : 
+     220           2 :   const std::string yaml_prefix = "mrs_uav_trackers/line_tracker/";
+     221             : 
+     222           1 :   private_handlers->param_loader->loadParam(yaml_prefix + "horizontal_tracker/horizontal_speed", _horizontal_speed_);
+     223           1 :   private_handlers->param_loader->loadParam(yaml_prefix + "horizontal_tracker/horizontal_acceleration", _horizontal_acceleration_);
+     224             : 
+     225           1 :   private_handlers->param_loader->loadParam(yaml_prefix + "vertical_tracker/vertical_speed", _vertical_speed_);
+     226           1 :   private_handlers->param_loader->loadParam(yaml_prefix + "vertical_tracker/vertical_acceleration", _vertical_acceleration_);
+     227             : 
+     228           1 :   private_handlers->param_loader->loadParam(yaml_prefix + "heading_tracker/heading_rate", _heading_rate_);
+     229           1 :   private_handlers->param_loader->loadParam(yaml_prefix + "heading_tracker/heading_gain", _heading_gain_);
+     230             : 
+     231           1 :   private_handlers->param_loader->loadParam(yaml_prefix + "tracker_loop_rate", _tracker_loop_rate_);
+     232             : 
+     233           1 :   _tracker_dt_ = 1.0 / double(_tracker_loop_rate_);
+     234             : 
+     235           1 :   ROS_INFO("[LineTracker]: tracker_dt: %.2f", _tracker_dt_);
+     236             : 
+     237           1 :   state_x_       = 0;
+     238           1 :   state_y_       = 0;
+     239           1 :   state_z_       = 0;
+     240           1 :   state_heading_ = 0;
+     241             : 
+     242           1 :   speed_x_       = 0;
+     243           1 :   speed_y_       = 0;
+     244           1 :   speed_heading_ = 0;
+     245             : 
+     246           1 :   current_horizontal_speed_ = 0;
+     247           1 :   current_vertical_speed_   = 0;
+     248             : 
+     249           1 :   current_horizontal_acceleration_ = 0;
+     250           1 :   current_vertical_acceleration_   = 0;
+     251             : 
+     252           1 :   current_vertical_direction_ = 0;
+     253             : 
+     254           1 :   current_state_vertical_  = IDLE_STATE;
+     255           1 :   previous_state_vertical_ = IDLE_STATE;
+     256             : 
+     257           1 :   current_state_horizontal_  = IDLE_STATE;
+     258           1 :   previous_state_horizontal_ = IDLE_STATE;
+     259             : 
+     260             :   // --------------------------------------------------------------
+     261             :   // |                          profiler                          |
+     262             :   // --------------------------------------------------------------
+     263             : 
+     264           1 :   profiler_ = mrs_lib::Profiler(common_handlers->parent_nh, "LineTracker", _profiler_enabled_);
+     265             : 
+     266             :   // --------------------------------------------------------------
+     267             :   // |                           timers                           |
+     268             :   // --------------------------------------------------------------
+     269             : 
+     270           1 :   main_timer_ = nh_.createTimer(ros::Rate(_tracker_loop_rate_), &LineTracker::mainTimer, this);
+     271             : 
+     272           1 :   if (!private_handlers->param_loader->loadedSuccessfully()) {
+     273           0 :     ROS_ERROR("[LineTracker]: could not load all parameters!");
+     274           0 :     return false;
+     275             :   }
+     276             : 
+     277           1 :   is_initialized_ = true;
+     278             : 
+     279           1 :   ROS_INFO("[LineTracker]: initialized");
+     280             : 
+     281           1 :   return true;
+     282             : }
+     283             : 
+     284             : //}
+     285             : 
+     286             : /* //{ activate() */
+     287             : 
+     288           1 : std::tuple<bool, std::string> LineTracker::activate(const std::optional<mrs_msgs::TrackerCommand> &last_tracker_cmd) {
+     289             : 
+     290           2 :   std::stringstream ss;
+     291             : 
+     292           1 :   if (!got_uav_state_) {
+     293             : 
+     294           0 :     ss << "odometry not set";
+     295           0 :     ROS_ERROR_STREAM("[LineTracker]: " << ss.str());
+     296           0 :     return std::tuple(false, ss.str());
+     297             :   }
+     298             : 
+     299             :   // copy member variables
+     300           2 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     301             : 
+     302             :   double uav_heading;
+     303             : 
+     304             :   try {
+     305           1 :     uav_heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+     306             :   }
+     307           0 :   catch (...) {
+     308           0 :     ss << "could not calculate the UAV heading";
+     309           0 :     return std::tuple(false, ss.str());
+     310             :   }
+     311             : 
+     312             :   {
+     313           2 :     std::scoped_lock lock(mutex_goal_, mutex_state_);
+     314             : 
+     315           1 :     if (last_tracker_cmd) {
+     316             : 
+     317             :       // the last command is usable
+     318           1 :       if (last_tracker_cmd->use_position_horizontal) {
+     319           1 :         state_x_ = last_tracker_cmd->position.x;
+     320           1 :         state_y_ = last_tracker_cmd->position.y;
+     321             :       } else {
+     322           0 :         state_x_ = uav_state.pose.position.x;
+     323           0 :         state_y_ = uav_state.pose.position.y;
+     324             :       }
+     325             : 
+     326           1 :       if (last_tracker_cmd->use_position_vertical) {
+     327           1 :         state_z_ = last_tracker_cmd->position.z;
+     328             :       } else {
+     329           0 :         state_z_ = uav_state.pose.position.z;
+     330             :       }
+     331             : 
+     332           1 :       if (last_tracker_cmd->use_heading) {
+     333           1 :         state_heading_ = last_tracker_cmd->heading;
+     334           0 :       } else if (last_tracker_cmd->use_orientation) {
+     335             :         try {
+     336           0 :           state_heading_ = mrs_lib::AttitudeConverter(last_tracker_cmd->orientation).getHeading();
+     337             :         }
+     338           0 :         catch (...) {
+     339           0 :           state_heading_ = uav_heading;
+     340             :         }
+     341             :       } else {
+     342           0 :         state_heading_ = uav_heading;
+     343             :       }
+     344             : 
+     345           1 :       if (last_tracker_cmd->use_velocity_horizontal) {
+     346           1 :         speed_x_ = last_tracker_cmd->velocity.x;
+     347           1 :         speed_y_ = last_tracker_cmd->velocity.y;
+     348             :       } else {
+     349           0 :         speed_x_ = uav_state.velocity.linear.x;
+     350           0 :         speed_y_ = uav_state.velocity.linear.y;
+     351             :       }
+     352             : 
+     353           1 :       current_heading_          = atan2(speed_y_, speed_x_);
+     354           1 :       current_horizontal_speed_ = sqrt(pow(speed_x_, 2) + pow(speed_y_, 2));
+     355             : 
+     356           1 :       current_vertical_speed_     = fabs(last_tracker_cmd->velocity.z);
+     357           1 :       current_vertical_direction_ = last_tracker_cmd->velocity.z > 0 ? +1 : -1;
+     358             : 
+     359           1 :       current_horizontal_acceleration_ = 0;
+     360           1 :       current_vertical_acceleration_   = 0;
+     361             : 
+     362           1 :       goal_heading_ = last_tracker_cmd->heading;
+     363             : 
+     364           1 :       ROS_INFO("[LineTracker]: initial condition: x=%.2f, y=%.2f, z=%.2f, heading=%.2f", last_tracker_cmd->position.x, last_tracker_cmd->position.y,
+     365             :                last_tracker_cmd->position.z, last_tracker_cmd->heading);
+     366           1 :       ROS_INFO("[LineTracker]: initial condition: x_rate=%.2f, y_rate=%.2f, z_rate=%.2f", speed_x_, speed_y_, current_vertical_speed_);
+     367             : 
+     368             :     } else {
+     369             : 
+     370           0 :       state_x_       = uav_state.pose.position.x;
+     371           0 :       state_y_       = uav_state.pose.position.y;
+     372           0 :       state_z_       = uav_state.pose.position.z;
+     373           0 :       state_heading_ = uav_heading;
+     374             : 
+     375           0 :       speed_x_                  = uav_state.velocity.linear.x;
+     376           0 :       speed_y_                  = uav_state.velocity.linear.y;
+     377           0 :       current_heading_          = atan2(speed_y_, speed_x_);
+     378           0 :       current_horizontal_speed_ = sqrt(pow(speed_x_, 2) + pow(speed_y_, 2));
+     379             : 
+     380           0 :       current_vertical_speed_     = fabs(uav_state.velocity.linear.z);
+     381           0 :       current_vertical_direction_ = uav_state.velocity.linear.z > 0 ? +1 : -1;
+     382             : 
+     383           0 :       current_horizontal_acceleration_ = 0;
+     384           0 :       current_vertical_acceleration_   = 0;
+     385             : 
+     386           0 :       goal_heading_ = uav_heading;
+     387             : 
+     388           0 :       ROS_WARN("[LineTracker]: the previous command is not usable for activation, using Odometry instead");
+     389             :     }
+     390             :   }
+     391             : 
+     392             :   // --------------------------------------------------------------
+     393             :   // |          horizontal initial conditions prediction          |
+     394             :   // --------------------------------------------------------------
+     395             : 
+     396             :   double horizontal_t_stop, horizontal_stop_dist, stop_dist_x, stop_dist_y;
+     397             : 
+     398             :   {
+     399           1 :     std::scoped_lock lock(mutex_state_);
+     400             : 
+     401           1 :     horizontal_t_stop    = current_horizontal_speed_ / _horizontal_acceleration_;
+     402           1 :     horizontal_stop_dist = (horizontal_t_stop * current_horizontal_speed_) / 2.0;
+     403           1 :     stop_dist_x          = cos(current_heading_) * horizontal_stop_dist;
+     404           1 :     stop_dist_y          = sin(current_heading_) * horizontal_stop_dist;
+     405             :   }
+     406             : 
+     407             :   // --------------------------------------------------------------
+     408             :   // |           vertical initial conditions prediction           |
+     409             :   // --------------------------------------------------------------
+     410             : 
+     411             :   double vertical_t_stop, vertical_stop_dist;
+     412             : 
+     413             :   {
+     414           1 :     std::scoped_lock lock(mutex_state_);
+     415             : 
+     416           1 :     vertical_t_stop    = current_vertical_speed_ / _vertical_acceleration_;
+     417           1 :     vertical_stop_dist = current_vertical_direction_ * (vertical_t_stop * current_vertical_speed_) / 2.0;
+     418             :   }
+     419             : 
+     420             :   // --------------------------------------------------------------
+     421             :   // |              heading initial condition  prediction             |
+     422             :   // --------------------------------------------------------------
+     423             : 
+     424             :   {
+     425           2 :     std::scoped_lock lock(mutex_goal_, mutex_state_);
+     426             : 
+     427           1 :     goal_x_ = state_x_ + stop_dist_x;
+     428           1 :     goal_y_ = state_y_ + stop_dist_y;
+     429           1 :     goal_z_ = state_z_ + vertical_stop_dist;
+     430             : 
+     431           1 :     ROS_INFO("[LineTracker]: setting z goal to %.2f", goal_z_);
+     432             :   }
+     433             : 
+     434           1 :   is_active_ = true;
+     435             : 
+     436           1 :   ss << "activated";
+     437           1 :   ROS_INFO_STREAM("[LineTracker]: " << ss.str());
+     438             : 
+     439           1 :   changeState(STOP_MOTION_STATE);
+     440             : 
+     441           1 :   return std::tuple(true, ss.str());
+     442             : }
+     443             : 
+     444             : //}
+     445             : 
+     446             : /* //{ deactivate() */
+     447             : 
+     448           0 : void LineTracker::deactivate(void) {
+     449             : 
+     450           0 :   is_active_ = false;
+     451             : 
+     452           0 :   ROS_INFO("[LineTracker]: deactivated");
+     453           0 : }
+     454             : 
+     455             : //}
+     456             : 
+     457             : /* //{ resetStatic() */
+     458             : 
+     459           0 : bool LineTracker::resetStatic(void) {
+     460             : 
+     461           0 :   if (!is_initialized_) {
+     462           0 :     ROS_ERROR("[LineTracker]: can not reset, not initialized");
+     463           0 :     return false;
+     464             :   }
+     465             : 
+     466           0 :   if (!is_active_) {
+     467           0 :     ROS_ERROR("[LineTracker]: can not reset, not active");
+     468           0 :     return false;
+     469             :   }
+     470             : 
+     471           0 :   ROS_INFO("[LineTracker]: reseting with no dynamics");
+     472             : 
+     473           0 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     474             : 
+     475             :   double uav_heading;
+     476             :   try {
+     477           0 :     uav_heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+     478             :   }
+     479           0 :   catch (...) {
+     480           0 :     ROS_ERROR_THROTTLE(1.0, "[LineTracker]: could not calculate the UAV heading");
+     481           0 :     return false;
+     482             :   }
+     483             : 
+     484             :   {
+     485           0 :     std::scoped_lock lock(mutex_goal_, mutex_state_, mutex_uav_state_);
+     486             : 
+     487           0 :     state_x_       = uav_state_.pose.position.x;
+     488           0 :     state_y_       = uav_state_.pose.position.y;
+     489           0 :     state_z_       = uav_state_.pose.position.z;
+     490           0 :     state_heading_ = uav_heading;
+     491             : 
+     492           0 :     speed_x_                  = 0;
+     493           0 :     speed_y_                  = 0;
+     494           0 :     current_heading_          = 0;
+     495           0 :     current_horizontal_speed_ = 0;
+     496             : 
+     497           0 :     current_vertical_speed_     = 0;
+     498           0 :     current_vertical_direction_ = 0;
+     499             : 
+     500           0 :     current_horizontal_acceleration_ = 0;
+     501           0 :     current_vertical_acceleration_   = 0;
+     502             : 
+     503           0 :     goal_heading_ = uav_heading;
+     504             :   }
+     505             : 
+     506           0 :   changeState(IDLE_STATE);
+     507             : 
+     508           0 :   return true;
+     509             : }
+     510             : 
+     511             : //}
+     512             : 
+     513             : /* //{ update() */
+     514             : 
+     515        1710 : std::optional<mrs_msgs::TrackerCommand> LineTracker::update(const mrs_msgs::UavState &                                          uav_state,
+     516             :                                                             [[maybe_unused]] const mrs_uav_managers::Controller::ControlOutput &last_control_output) {
+     517             : 
+     518        5130 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("update");
+     519        5130 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("LineTracker::update", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+     520             : 
+     521             :   {
+     522        1710 :     std::scoped_lock lock(mutex_uav_state_);
+     523             : 
+     524        1710 :     uav_state_ = uav_state;
+     525        1710 :     uav_x_     = uav_state_.pose.position.x;
+     526        1710 :     uav_y_     = uav_state_.pose.position.y;
+     527        1710 :     uav_z_     = uav_state_.pose.position.z;
+     528             : 
+     529        1710 :     got_uav_state_ = true;
+     530             :   }
+     531             : 
+     532             :   // up to this part the update() method is evaluated even when the tracker is not active
+     533        1710 :   if (!is_active_) {
+     534         103 :     return {};
+     535             :   }
+     536             : 
+     537        3214 :   mrs_msgs::TrackerCommand tracker_cmd;
+     538             : 
+     539        1607 :   tracker_cmd.header.stamp    = ros::Time::now();
+     540        1607 :   tracker_cmd.header.frame_id = uav_state.header.frame_id;
+     541             : 
+     542             :   {
+     543        1607 :     std::scoped_lock lock(mutex_state_);
+     544             : 
+     545        1607 :     tracker_cmd.position.x = state_x_;
+     546        1607 :     tracker_cmd.position.y = state_y_;
+     547        1607 :     tracker_cmd.position.z = state_z_;
+     548        1607 :     tracker_cmd.heading    = radians::wrap(state_heading_);
+     549             : 
+     550        1607 :     tracker_cmd.velocity.x   = cos(current_heading_) * current_horizontal_speed_;
+     551        1607 :     tracker_cmd.velocity.y   = sin(current_heading_) * current_horizontal_speed_;
+     552        1607 :     tracker_cmd.velocity.z   = current_vertical_direction_ * current_vertical_speed_;
+     553        1607 :     tracker_cmd.heading_rate = speed_heading_;
+     554             : 
+     555        1607 :     tracker_cmd.acceleration.x = 0;
+     556        1607 :     tracker_cmd.acceleration.y = 0;
+     557        1607 :     tracker_cmd.acceleration.z = current_vertical_direction_ * current_vertical_acceleration_;
+     558             : 
+     559        1607 :     tracker_cmd.use_position_vertical   = 1;
+     560        1607 :     tracker_cmd.use_position_horizontal = 1;
+     561        1607 :     tracker_cmd.use_heading             = 1;
+     562        1607 :     tracker_cmd.use_heading_rate        = 1;
+     563        1607 :     tracker_cmd.use_velocity_vertical   = 1;
+     564        1607 :     tracker_cmd.use_velocity_horizontal = 1;
+     565        1607 :     tracker_cmd.use_acceleration        = 1;
+     566             :   }
+     567             : 
+     568        1607 :   return {tracker_cmd};
+     569             : }
+     570             : 
+     571             : //}
+     572             : 
+     573             : /* //{ getStatus() */
+     574             : 
+     575         181 : const mrs_msgs::TrackerStatus LineTracker::getStatus() {
+     576             : 
+     577         181 :   mrs_msgs::TrackerStatus tracker_status;
+     578             : 
+     579         181 :   tracker_status.active            = is_active_;
+     580         181 :   tracker_status.callbacks_enabled = callbacks_enabled_;
+     581             : 
+     582         181 :   bool idling = current_state_vertical_ == IDLE_STATE && current_state_horizontal_ == IDLE_STATE;
+     583             : 
+     584         181 :   tracker_status.have_goal = !idling;
+     585             : 
+     586         181 :   tracker_status.tracking_trajectory = false;
+     587             : 
+     588         181 :   return tracker_status;
+     589             : }
+     590             : 
+     591             : //}
+     592             : 
+     593             : /* //{ enableCallbacks() */
+     594             : 
+     595           0 : const std_srvs::SetBoolResponse::ConstPtr LineTracker::enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr &cmd) {
+     596             : 
+     597           0 :   std_srvs::SetBoolResponse res;
+     598           0 :   std::stringstream         ss;
+     599             : 
+     600           0 :   if (cmd->data != callbacks_enabled_) {
+     601             : 
+     602           0 :     callbacks_enabled_ = cmd->data;
+     603             : 
+     604           0 :     ss << "callbacks " << (callbacks_enabled_ ? "enabled" : "disabled");
+     605           0 :     ROS_INFO_STREAM_THROTTLE(1.0, "[LineTracker]: " << ss.str());
+     606             : 
+     607             :   } else {
+     608             : 
+     609           0 :     ss << "callbacks were already " << (callbacks_enabled_ ? "enabled" : "disabled");
+     610           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[LineTracker]: " << ss.str());
+     611             :   }
+     612             : 
+     613           0 :   res.message = ss.str();
+     614           0 :   res.success = true;
+     615             : 
+     616           0 :   return std_srvs::SetBoolResponse::ConstPtr(new std_srvs::SetBoolResponse(res));
+     617             : }
+     618             : 
+     619             : //}
+     620             : 
+     621             : /* switchOdometrySource() //{ */
+     622             : 
+     623           0 : const std_srvs::TriggerResponse::ConstPtr LineTracker::switchOdometrySource(const mrs_msgs::UavState &new_uav_state) {
+     624             : 
+     625           0 :   std::scoped_lock lock(mutex_goal_, mutex_state_);
+     626             : 
+     627           0 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     628             : 
+     629           0 :   double old_heading  = 0;
+     630           0 :   double new_heading  = 0;
+     631           0 :   bool   got_headings = true;
+     632             : 
+     633             :   try {
+     634           0 :     old_heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+     635             :   }
+     636           0 :   catch (...) {
+     637           0 :     ROS_ERROR_THROTTLE(1.0, "[LineTracker]: could not calculate the old UAV heading");
+     638           0 :     got_headings = false;
+     639             :   }
+     640             : 
+     641             :   try {
+     642           0 :     new_heading = mrs_lib::AttitudeConverter(new_uav_state.pose.orientation).getHeading();
+     643             :   }
+     644           0 :   catch (...) {
+     645           0 :     ROS_ERROR_THROTTLE(1.0, "[LineTracker]: could not calculate the new UAV heading");
+     646           0 :     got_headings = false;
+     647             :   }
+     648             : 
+     649           0 :   std_srvs::TriggerResponse res;
+     650             : 
+     651           0 :   if (!got_headings) {
+     652           0 :     res.message = "could not calculate the heading difference";
+     653           0 :     res.success = false;
+     654             : 
+     655           0 :     return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+     656             :   }
+     657             : 
+     658             :   // | --------- recalculate the goal to new coordinates -------- |
+     659             : 
+     660           0 :   double dx       = new_uav_state.pose.position.x - uav_state.pose.position.x;
+     661           0 :   double dy       = new_uav_state.pose.position.y - uav_state.pose.position.y;
+     662           0 :   double dz       = new_uav_state.pose.position.z - uav_state.pose.position.z;
+     663           0 :   double dheading = new_heading - old_heading;
+     664             : 
+     665           0 :   goal_x_ += dx;
+     666           0 :   goal_y_ += dy;
+     667           0 :   goal_z_ += dz;
+     668           0 :   goal_heading_ += dheading;
+     669             : 
+     670             :   // | -------------------- update the state -------------------- |
+     671             : 
+     672           0 :   state_x_ += dx;
+     673           0 :   state_y_ += dy;
+     674           0 :   state_z_ += dz;
+     675           0 :   state_heading_ += dheading;
+     676             : 
+     677           0 :   current_heading_ = atan2(goal_y_ - state_y_, goal_x_ - state_x_);
+     678             : 
+     679           0 :   res.message = "odometry source switched";
+     680           0 :   res.success = true;
+     681             : 
+     682           0 :   return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+     683             : }
+     684             : 
+     685             : //}
+     686             : 
+     687             : /* //{ hover() */
+     688             : 
+     689           0 : const std_srvs::TriggerResponse::ConstPtr LineTracker::hover([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     690             : 
+     691           0 :   std_srvs::TriggerResponse res;
+     692             : 
+     693             :   // --------------------------------------------------------------
+     694             :   // |          horizontal initial conditions prediction          |
+     695             :   // --------------------------------------------------------------
+     696             :   {
+     697           0 :     std::scoped_lock lock(mutex_state_, mutex_uav_state_);
+     698             : 
+     699           0 :     current_horizontal_speed_ = sqrt(pow(uav_state_.velocity.linear.x, 2) + pow(uav_state_.velocity.linear.y, 2));
+     700           0 :     current_vertical_speed_   = uav_state_.velocity.linear.z;
+     701           0 :     current_heading_          = atan2(uav_state_.velocity.linear.y, uav_state_.velocity.linear.x);
+     702             :   }
+     703             : 
+     704             :   double horizontal_t_stop, horizontal_stop_dist, stop_dist_x, stop_dist_y;
+     705             : 
+     706             :   {
+     707           0 :     std::scoped_lock lock(mutex_state_);
+     708             : 
+     709           0 :     horizontal_t_stop    = current_horizontal_speed_ / _horizontal_acceleration_;
+     710           0 :     horizontal_stop_dist = (horizontal_t_stop * current_horizontal_speed_) / 2.0;
+     711           0 :     stop_dist_x          = cos(current_heading_) * horizontal_stop_dist;
+     712           0 :     stop_dist_y          = sin(current_heading_) * horizontal_stop_dist;
+     713             :   }
+     714             : 
+     715             :   // --------------------------------------------------------------
+     716             :   // |           vertical initial conditions prediction           |
+     717             :   // --------------------------------------------------------------
+     718             : 
+     719             :   double vertical_t_stop, vertical_stop_dist;
+     720             : 
+     721             :   {
+     722           0 :     std::scoped_lock lock(mutex_state_);
+     723             : 
+     724           0 :     vertical_t_stop    = current_vertical_speed_ / _vertical_acceleration_;
+     725           0 :     vertical_stop_dist = current_vertical_direction_ * (vertical_t_stop * current_vertical_speed_) / 2.0;
+     726             :   }
+     727             : 
+     728             :   // --------------------------------------------------------------
+     729             :   // |                        set the goal                        |
+     730             :   // --------------------------------------------------------------
+     731             : 
+     732             :   {
+     733           0 :     std::scoped_lock lock(mutex_goal_, mutex_state_);
+     734             : 
+     735           0 :     goal_x_ = state_x_ + stop_dist_x;
+     736           0 :     goal_y_ = state_y_ + stop_dist_y;
+     737           0 :     goal_z_ = state_z_ + vertical_stop_dist;
+     738             :   }
+     739             : 
+     740           0 :   res.message = "hover initiated";
+     741           0 :   res.success = true;
+     742             : 
+     743           0 :   changeState(STOP_MOTION_STATE);
+     744             : 
+     745           0 :   return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+     746             : }
+     747             : 
+     748             : //}
+     749             : 
+     750             : /* //{ startTrajectoryTracking() */
+     751             : 
+     752           0 : const std_srvs::TriggerResponse::ConstPtr LineTracker::startTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     753           0 :   return std_srvs::TriggerResponse::Ptr();
+     754             : }
+     755             : 
+     756             : //}
+     757             : 
+     758             : /* //{ stopTrajectoryTracking() */
+     759             : 
+     760           0 : const std_srvs::TriggerResponse::ConstPtr LineTracker::stopTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     761           0 :   return std_srvs::TriggerResponse::Ptr();
+     762             : }
+     763             : 
+     764             : //}
+     765             : 
+     766             : /* //{ resumeTrajectoryTracking() */
+     767             : 
+     768           0 : const std_srvs::TriggerResponse::ConstPtr LineTracker::resumeTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     769           0 :   return std_srvs::TriggerResponse::Ptr();
+     770             : }
+     771             : 
+     772             : //}
+     773             : 
+     774             : /* //{ gotoTrajectoryStart() */
+     775             : 
+     776           0 : const std_srvs::TriggerResponse::ConstPtr LineTracker::gotoTrajectoryStart([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     777           0 :   return std_srvs::TriggerResponse::Ptr();
+     778             : }
+     779             : 
+     780             : //}
+     781             : 
+     782             : /* //{ setConstraints() */
+     783             : 
+     784           3 : const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr LineTracker::setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd) {
+     785             : 
+     786           6 :   mrs_msgs::DynamicsConstraintsSrvResponse res;
+     787             : 
+     788             :   // this is the place to copy the constraints
+     789             :   {
+     790           3 :     std::scoped_lock lock(mutex_constraints_);
+     791             : 
+     792           3 :     _horizontal_speed_        = cmd->constraints.horizontal_speed;
+     793           3 :     _horizontal_acceleration_ = cmd->constraints.horizontal_acceleration;
+     794             : 
+     795           3 :     _vertical_speed_        = cmd->constraints.vertical_ascending_speed;
+     796           3 :     _vertical_acceleration_ = cmd->constraints.vertical_ascending_acceleration;
+     797             : 
+     798           3 :     _heading_rate_ = cmd->constraints.heading_speed;
+     799             :   }
+     800             : 
+     801           3 :   res.success = true;
+     802           3 :   res.message = "constraints updated";
+     803             : 
+     804           6 :   return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse(res));
+     805             : }
+     806             : 
+     807             : //}
+     808             : 
+     809             : /* //{ setReference() */
+     810             : 
+     811           1 : const mrs_msgs::ReferenceSrvResponse::ConstPtr LineTracker::setReference(const mrs_msgs::ReferenceSrvRequest::ConstPtr &cmd) {
+     812             : 
+     813           2 :   mrs_msgs::ReferenceSrvResponse res;
+     814             : 
+     815           1 :   auto state_heading = mrs_lib::get_mutexed(mutex_state_, state_heading_);
+     816             : 
+     817             :   {
+     818           1 :     std::scoped_lock lock(mutex_goal_);
+     819             : 
+     820           1 :     goal_x_       = cmd->reference.position.x;
+     821           1 :     goal_y_       = cmd->reference.position.y;
+     822           1 :     goal_z_       = cmd->reference.position.z;
+     823           1 :     goal_heading_ = radians::unwrap(cmd->reference.heading, state_heading);
+     824             : 
+     825           1 :     ROS_INFO("[LineTracker]: received new setpoint %.2f, %.2f, %.2f, %.2f", goal_x_, goal_y_, goal_z_, goal_heading_);
+     826             : 
+     827           1 :     have_goal_ = true;
+     828             :   }
+     829             : 
+     830           1 :   changeState(STOP_MOTION_STATE);
+     831             : 
+     832           1 :   res.success = true;
+     833           1 :   res.message = "reference set";
+     834             : 
+     835           2 :   return mrs_msgs::ReferenceSrvResponse::ConstPtr(new mrs_msgs::ReferenceSrvResponse(res));
+     836             : }
+     837             : 
+     838             : //}
+     839             : 
+     840             : /* //{ setVelocityReference() */
+     841             : 
+     842           0 : const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr LineTracker::setVelocityReference([
+     843             :     [maybe_unused]] const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr &cmd) {
+     844           0 :   return mrs_msgs::VelocityReferenceSrvResponse::Ptr();
+     845             : }
+     846             : 
+     847             : //}
+     848             : 
+     849             : /* //{ setTrajectoryReference() */
+     850             : 
+     851           0 : const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr LineTracker::setTrajectoryReference([
+     852             :     [maybe_unused]] const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr &cmd) {
+     853           0 :   return mrs_msgs::TrajectoryReferenceSrvResponse::Ptr();
+     854             : }
+     855             : 
+     856             : //}
+     857             : 
+     858             : // | ----------------- state machine routines ----------------- |
+     859             : 
+     860             : /* //{ changeStateHorizontal() */
+     861             : 
+     862           8 : void LineTracker::changeStateHorizontal(States_t new_state) {
+     863             : 
+     864           8 :   previous_state_horizontal_ = current_state_horizontal_;
+     865           8 :   current_state_horizontal_  = new_state;
+     866             : 
+     867             :   // just for ROS_INFO
+     868           8 :   ROS_DEBUG("[LineTracker]: Switching horizontal state %s -> %s", state_names[previous_state_horizontal_], state_names[current_state_horizontal_]);
+     869           8 : }
+     870             : 
+     871             : //}
+     872             : 
+     873             : /* //{ changeStateVertical() */
+     874             : 
+     875           8 : void LineTracker::changeStateVertical(States_t new_state) {
+     876             : 
+     877           8 :   previous_state_vertical_ = current_state_vertical_;
+     878           8 :   current_state_vertical_  = new_state;
+     879             : 
+     880             :   // just for ROS_INFO
+     881           8 :   ROS_DEBUG("[LineTracker]: Switching vertical state %s -> %s", state_names[previous_state_vertical_], state_names[current_state_vertical_]);
+     882           8 : }
+     883             : 
+     884             : //}
+     885             : 
+     886             : /* //{ changeState() */
+     887             : 
+     888           6 : void LineTracker::changeState(States_t new_state) {
+     889             : 
+     890           6 :   changeStateVertical(new_state);
+     891           6 :   changeStateHorizontal(new_state);
+     892           6 : }
+     893             : 
+     894             : //}
+     895             : 
+     896             : // | --------------------- motion routines -------------------- |
+     897             : 
+     898             : /* //{ stopHorizontalMotion() */
+     899             : 
+     900           2 : void LineTracker::stopHorizontalMotion(void) {
+     901             : 
+     902             :   {
+     903           4 :     std::scoped_lock lock(mutex_state_);
+     904             : 
+     905           2 :     current_horizontal_speed_ -= _horizontal_acceleration_ * _tracker_dt_;
+     906             : 
+     907           2 :     if (current_horizontal_speed_ < 0) {
+     908           2 :       current_horizontal_speed_        = 0;
+     909           2 :       current_horizontal_acceleration_ = 0;
+     910             :     } else {
+     911           0 :       current_horizontal_acceleration_ = -_horizontal_acceleration_;
+     912             :     }
+     913             :   }
+     914           2 : }
+     915             : 
+     916             : //}
+     917             : 
+     918             : /* //{ stopVerticalMotion() */
+     919             : 
+     920           2 : void LineTracker::stopVerticalMotion(void) {
+     921             : 
+     922             :   {
+     923           4 :     std::scoped_lock lock(mutex_state_);
+     924             : 
+     925           2 :     current_vertical_speed_ -= _vertical_acceleration_ * _tracker_dt_;
+     926             : 
+     927           2 :     if (current_vertical_speed_ < 0) {
+     928           2 :       current_vertical_speed_        = 0;
+     929           2 :       current_vertical_acceleration_ = 0;
+     930             :     } else {
+     931           0 :       current_vertical_acceleration_ = -_vertical_acceleration_;
+     932             :     }
+     933             :   }
+     934           2 : }
+     935             : 
+     936             : //}
+     937             : 
+     938             : /* //{ accelerateHorizontal() */
+     939             : 
+     940        1004 : void LineTracker::accelerateHorizontal(void) {
+     941             : 
+     942             :   // copy member variables
+     943        1004 :   auto [goal_x, goal_y]                             = mrs_lib::get_mutexed(mutex_goal_, goal_x_, goal_y_);
+     944        1004 :   auto [state_x, state_y, current_horizontal_speed] = mrs_lib::get_mutexed(mutex_state_, state_x_, state_y_, current_horizontal_speed_);
+     945             : 
+     946             :   {
+     947        1004 :     std::scoped_lock lock(mutex_state_);
+     948             : 
+     949        1004 :     current_heading_ = atan2(goal_y - state_y, goal_x - state_x);
+     950             :   }
+     951             : 
+     952        1004 :   auto current_heading = mrs_lib::get_mutexed(mutex_state_, current_heading_);
+     953             : 
+     954             :   double horizontal_t_stop, horizontal_stop_dist, stop_dist_x, stop_dist_y;
+     955             : 
+     956        1004 :   horizontal_t_stop    = current_horizontal_speed / _horizontal_acceleration_;
+     957        1004 :   horizontal_stop_dist = (horizontal_t_stop * current_horizontal_speed) / 2.0;
+     958        1004 :   stop_dist_x          = cos(current_heading) * horizontal_stop_dist;
+     959        1004 :   stop_dist_y          = sin(current_heading) * horizontal_stop_dist;
+     960             : 
+     961             :   {
+     962        2008 :     std::scoped_lock lock(mutex_state_);
+     963             : 
+     964        1004 :     current_horizontal_speed_ += _horizontal_acceleration_ * _tracker_dt_;
+     965             : 
+     966        1004 :     if (current_horizontal_speed_ >= _horizontal_speed_) {
+     967         905 :       current_horizontal_speed_        = _horizontal_speed_;
+     968         905 :       current_horizontal_acceleration_ = 0;
+     969             :     } else {
+     970          99 :       current_horizontal_acceleration_ = _horizontal_acceleration_;
+     971             :     }
+     972             :   }
+     973             : 
+     974        1004 :   if (sqrt(pow(state_x + stop_dist_x - goal_x, 2) + pow(state_y + stop_dist_y - goal_y, 2)) < (2 * (_horizontal_speed_ * _tracker_dt_))) {
+     975             : 
+     976             :     {
+     977           1 :       std::scoped_lock lock(mutex_state_);
+     978             : 
+     979           1 :       current_horizontal_acceleration_ = 0;
+     980             :     }
+     981             : 
+     982           1 :     changeStateHorizontal(DECELERATING_STATE);
+     983             :   }
+     984        1004 : }
+     985             : 
+     986             : //}
+     987             : 
+     988             : /* //{ accelerateVertical() */
+     989             : 
+     990         199 : void LineTracker::accelerateVertical(void) {
+     991             : 
+     992         199 :   auto goal_z                            = mrs_lib::get_mutexed(mutex_goal_, goal_z_);
+     993         199 :   auto [state_z, current_vertical_speed] = mrs_lib::get_mutexed(mutex_state_, state_z_, current_vertical_speed_);
+     994             : 
+     995             :   // set the right heading
+     996         199 :   double tar_z = goal_z - state_z;
+     997             : 
+     998             :   // set the right vertical direction
+     999             :   {
+    1000         199 :     std::scoped_lock lock(mutex_state_);
+    1001             : 
+    1002         199 :     current_vertical_direction_ = mrs_lib::signum(tar_z);
+    1003             :   }
+    1004             : 
+    1005         199 :   auto current_vertical_direction = mrs_lib::get_mutexed(mutex_state_, current_vertical_direction_);
+    1006             : 
+    1007             :   // calculate the time to stop and the distance it will take to stop [vertical]
+    1008         199 :   double vertical_t_stop    = current_vertical_speed / _vertical_acceleration_;
+    1009         199 :   double vertical_stop_dist = (vertical_t_stop * current_vertical_speed) / 2.0;
+    1010         199 :   double stop_dist_z        = current_vertical_direction * vertical_stop_dist;
+    1011             : 
+    1012             :   {
+    1013         398 :     std::scoped_lock lock(mutex_state_);
+    1014             : 
+    1015         199 :     current_vertical_speed_ += _vertical_acceleration_ * _tracker_dt_;
+    1016             : 
+    1017         199 :     if (current_vertical_speed_ >= _vertical_speed_) {
+    1018         100 :       current_vertical_speed_        = _vertical_speed_;
+    1019         100 :       current_vertical_acceleration_ = 0;
+    1020             :     } else {
+    1021          99 :       current_vertical_acceleration_ = _vertical_acceleration_;
+    1022             :     }
+    1023             :   }
+    1024             : 
+    1025         199 :   if (fabs(state_z + stop_dist_z - goal_z) < (2 * (_vertical_speed_ * _tracker_dt_))) {
+    1026             : 
+    1027             :     {
+    1028           1 :       std::scoped_lock lock(mutex_state_);
+    1029             : 
+    1030           1 :       current_vertical_acceleration_ = 0;
+    1031             :     }
+    1032             : 
+    1033           1 :     changeStateVertical(DECELERATING_STATE);
+    1034             :   }
+    1035         199 : }
+    1036             : 
+    1037             : //}
+    1038             : 
+    1039             : /* //{ decelerateHorizontal() */
+    1040             : 
+    1041         100 : void LineTracker::decelerateHorizontal(void) {
+    1042             : 
+    1043             :   {
+    1044         200 :     std::scoped_lock lock(mutex_state_);
+    1045             : 
+    1046         100 :     current_horizontal_speed_ -= _horizontal_acceleration_ * _tracker_dt_;
+    1047             : 
+    1048         100 :     if (current_horizontal_speed_ < 0) {
+    1049           1 :       current_horizontal_speed_ = 0;
+    1050             :     } else {
+    1051          99 :       current_horizontal_acceleration_ = -_horizontal_acceleration_;
+    1052             :     }
+    1053             :   }
+    1054             : 
+    1055         100 :   auto current_horizontal_speed = mrs_lib::get_mutexed(mutex_state_, current_horizontal_speed_);
+    1056             : 
+    1057         100 :   if (current_horizontal_speed == 0) {
+    1058             : 
+    1059             :     {
+    1060           1 :       std::scoped_lock lock(mutex_state_);
+    1061             : 
+    1062           1 :       current_horizontal_acceleration_ = 0;
+    1063             :     }
+    1064             : 
+    1065           1 :     changeStateHorizontal(STOPPING_STATE);
+    1066             :   }
+    1067         100 : }
+    1068             : 
+    1069             : //}
+    1070             : 
+    1071             : /* //{ decelerateVertical() */
+    1072             : 
+    1073         100 : void LineTracker::decelerateVertical(void) {
+    1074             : 
+    1075             :   {
+    1076         200 :     std::scoped_lock lock(mutex_state_);
+    1077             : 
+    1078         100 :     current_vertical_speed_ -= _vertical_acceleration_ * _tracker_dt_;
+    1079             : 
+    1080         100 :     if (current_vertical_speed_ < 0) {
+    1081           1 :       current_vertical_speed_ = 0;
+    1082             :     } else {
+    1083          99 :       current_vertical_acceleration_ = -_vertical_acceleration_;
+    1084             :     }
+    1085             :   }
+    1086             : 
+    1087         100 :   auto current_vertical_speed = mrs_lib::get_mutexed(mutex_state_, current_vertical_speed_);
+    1088             : 
+    1089         100 :   if (current_vertical_speed == 0) {
+    1090           1 :     current_vertical_acceleration_ = 0;
+    1091           1 :     changeStateVertical(STOPPING_STATE);
+    1092             :   }
+    1093         100 : }
+    1094             : 
+    1095             : //}
+    1096             : 
+    1097             : /* //{ stopHorizontal() */
+    1098             : 
+    1099          46 : void LineTracker::stopHorizontal(void) {
+    1100             : 
+    1101             :   {
+    1102          46 :     std::scoped_lock lock(mutex_state_);
+    1103             : 
+    1104          46 :     state_x_                         = 0.95 * state_x_ + 0.05 * goal_x_;
+    1105          46 :     state_y_                         = 0.95 * state_y_ + 0.05 * goal_y_;
+    1106          46 :     current_horizontal_acceleration_ = 0;
+    1107             :   }
+    1108          46 : }
+    1109             : 
+    1110             : //}
+    1111             : 
+    1112             : /* //{ stopVertical() */
+    1113             : 
+    1114         851 : void LineTracker::stopVertical(void) {
+    1115             : 
+    1116             :   {
+    1117         851 :     std::scoped_lock lock(mutex_state_);
+    1118             : 
+    1119         851 :     state_z_                       = 0.95 * state_z_ + 0.05 * goal_z_;
+    1120         851 :     current_vertical_acceleration_ = 0;
+    1121             :   }
+    1122         851 : }
+    1123             : 
+    1124             : //}
+    1125             : 
+    1126             : // | ------------------------- timers ------------------------- |
+    1127             : 
+    1128             : /* //{ mainTimer() */
+    1129             : 
+    1130        2228 : void LineTracker::mainTimer(const ros::TimerEvent &event) {
+    1131             : 
+    1132        2228 :   if (!is_active_) {
+    1133         419 :     return;
+    1134             :   }
+    1135             : 
+    1136        5427 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("main", _tracker_loop_rate_, 0.01, event);
+    1137        5427 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("LineTracker::main", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+    1138             : 
+    1139        1809 :   auto [goal_x, goal_y, goal_z]    = mrs_lib::get_mutexed(mutex_goal_, goal_x_, goal_y_, goal_z_);
+    1140        1809 :   auto [state_x, state_y, state_z] = mrs_lib::get_mutexed(mutex_state_, state_x_, state_y_, state_z_);
+    1141             : 
+    1142        1809 :   switch (current_state_horizontal_) {
+    1143             : 
+    1144         657 :     case IDLE_STATE:
+    1145             : 
+    1146         657 :       break;
+    1147             : 
+    1148           2 :     case STOP_MOTION_STATE:
+    1149             : 
+    1150           2 :       stopHorizontalMotion();
+    1151             : 
+    1152           2 :       break;
+    1153             : 
+    1154        1004 :     case ACCELERATING_STATE:
+    1155             : 
+    1156        1004 :       accelerateHorizontal();
+    1157             : 
+    1158        1004 :       break;
+    1159             : 
+    1160         100 :     case DECELERATING_STATE:
+    1161             : 
+    1162         100 :       decelerateHorizontal();
+    1163             : 
+    1164         100 :       break;
+    1165             : 
+    1166          46 :     case STOPPING_STATE:
+    1167             : 
+    1168          46 :       stopHorizontal();
+    1169             : 
+    1170          46 :       break;
+    1171             :   }
+    1172             : 
+    1173        1809 :   switch (current_state_vertical_) {
+    1174             : 
+    1175         657 :     case IDLE_STATE:
+    1176             : 
+    1177         657 :       break;
+    1178             : 
+    1179           2 :     case STOP_MOTION_STATE:
+    1180             : 
+    1181           2 :       stopVerticalMotion();
+    1182             : 
+    1183           2 :       break;
+    1184             : 
+    1185         199 :     case ACCELERATING_STATE:
+    1186             : 
+    1187         199 :       accelerateVertical();
+    1188             : 
+    1189         199 :       break;
+    1190             : 
+    1191         100 :     case DECELERATING_STATE:
+    1192             : 
+    1193         100 :       decelerateVertical();
+    1194             : 
+    1195         100 :       break;
+    1196             : 
+    1197         851 :     case STOPPING_STATE:
+    1198             : 
+    1199         851 :       stopVertical();
+    1200             : 
+    1201         851 :       break;
+    1202             :   }
+    1203             : 
+    1204        1809 :   if (current_state_horizontal_ == STOP_MOTION_STATE && current_state_vertical_ == STOP_MOTION_STATE) {
+    1205           2 :     if (current_vertical_speed_ == 0 && current_horizontal_speed_ == 0) {
+    1206           2 :       if (have_goal_) {
+    1207           1 :         changeState(ACCELERATING_STATE);
+    1208             :       } else {
+    1209           1 :         changeState(STOPPING_STATE);
+    1210             :       }
+    1211             :     }
+    1212             :   }
+    1213             : 
+    1214        1809 :   if (current_state_horizontal_ == STOPPING_STATE && current_state_vertical_ == STOPPING_STATE) {
+    1215          48 :     if (fabs(state_x - goal_x) < 1e-3 && fabs(state_y - goal_y) < 1e-3 && fabs(state_z - goal_z) < 1e-3) {
+    1216             : 
+    1217             :       {
+    1218           2 :         std::scoped_lock lock(mutex_state_);
+    1219             : 
+    1220           2 :         state_x_ = goal_x;
+    1221           2 :         state_y_ = goal_y;
+    1222           2 :         state_z_ = goal_z;
+    1223             :       }
+    1224             : 
+    1225           2 :       changeState(IDLE_STATE);
+    1226             : 
+    1227           2 :       have_goal_ = false;
+    1228             :     }
+    1229             :   }
+    1230             : 
+    1231             :   {
+    1232        1809 :     std::scoped_lock lock(mutex_state_);
+    1233             : 
+    1234        1809 :     state_x_ += cos(current_heading_) * current_horizontal_speed_ * _tracker_dt_;
+    1235        1809 :     state_y_ += sin(current_heading_) * current_horizontal_speed_ * _tracker_dt_;
+    1236        1809 :     state_z_ += current_vertical_direction_ * current_vertical_speed_ * _tracker_dt_;
+    1237             :   }
+    1238             : 
+    1239             :   // --------------------------------------------------------------
+    1240             :   // |                        heading tracking                        |
+    1241             :   // --------------------------------------------------------------
+    1242             : 
+    1243             :   {
+    1244        3618 :     std::scoped_lock lock(mutex_state_);
+    1245             : 
+    1246             :     // compute the desired heading rate
+    1247             :     double current_heading_rate;
+    1248        1809 :     if (fabs(goal_heading_ - state_heading_) > M_PI)
+    1249           0 :       current_heading_rate = -_heading_gain_ * (goal_heading_ - state_heading_);
+    1250             :     else
+    1251        1809 :       current_heading_rate = _heading_gain_ * (goal_heading_ - state_heading_);
+    1252             : 
+    1253        1809 :     if (current_heading_rate > _heading_rate_) {
+    1254          50 :       current_heading_rate = _heading_rate_;
+    1255        1759 :     } else if (current_heading_rate < -_heading_rate_) {
+    1256           0 :       current_heading_rate = -_heading_rate_;
+    1257             :     }
+    1258             : 
+    1259             :     // flap the resulted state_heading_ aroud PI
+    1260        1809 :     state_heading_ += current_heading_rate * _tracker_dt_;
+    1261             : 
+    1262        1809 :     if (fabs(state_heading_ - goal_heading_) < (2 * (_heading_rate_ * _tracker_dt_))) {
+    1263        1370 :       state_heading_ = goal_heading_;
+    1264             :     }
+    1265             :   }
+    1266             : }
+    1267             : 
+    1268             : //}
+    1269             : 
+    1270             : }  // namespace line_tracker
+    1271             : 
+    1272             : }  // namespace mrs_uav_trackers
+    1273             : 
+    1274             : #include <pluginlib/class_list_macros.h>
+    1275           1 : PLUGINLIB_EXPORT_CLASS(mrs_uav_trackers::line_tracker::LineTracker, mrs_uav_managers::Tracker)
+
+
+
+ + + + +
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+ + diff --git a/mrs_uav_trackers/src/line_tracker/line_tracker.cpp.gcov.png b/mrs_uav_trackers/src/line_tracker/line_tracker.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..b7a7e459ce10c0e0990050079801959c58954678 GIT binary patch literal 3774 zcmV;v4ngsWP)QIT0000OP)t-s|NsB0 zs;a7|?_FK${{R500003000620&P%hU00009a7bBm000ie000ie0hKEb8vph4P2>B& zTdVS>cMzRYBt0+*&1P-O*py;~8Up6kQ6O7EQ45SwRTV~)J=uH8KK8!)@mpYX^T|@Gg*&A(r#>5x8vQRudPC+tgks|$T|+}z42@_4JM_fS?;Ig4wQ-!tFgsA7 zmaeBW`rp9_KEXeTmMm#dJCN1^6bV)PMJS;FtQejc3CA0$=y=v~L>Tbblp+K=3iM?X zXlsxqOi0mE0MdxS0}T2n3Y-wIwvL2iiP69^f}c@g#_+8QIB0=8QUM%I9rZ$M(Vjs@ zn`$UVim6^2IOa)xgH|~<86ZIGHyUmZfw-}N(g%Q6tWnguPx7(X%4g&LHZ{R_-wnQd zSh%C3n(8X+s0!jb0M+Gezcbv7_QIrfgC3Y-?S1+X#CtKp)SnlbuFa=_Ax} z6Dfw3rNB`OoYcUv)@_7&A%S3!S))4M@5>#P#r zLz&Tlc9gVsVKiLbGn9^3rW}fV)fNhTJYJw|`~UAB&-Z`l2M<$D;1hfzl-nbPu)ypt zoLm%qdj0aLz1ZNSWB@bz`t&&F=SoSf7MMX%Du{Xp@Q-x^)=M_U_xOQ_5IO)9)^V{v zZS9IFzF#a$d{pWMJlZD(RF>=15h#`lxXv+P5$lLl0Z?kEQr5EAWfWIqUuo7+UFdmP^cl@&s;-?P&I#Y_6<2B4x5w#b zll|kg$2jAseZgzbhm=CwA+xjBg}lJ+mSL{IUe`$DXQ-L+d}m@PvIk+Fb=j1IHD?NJ z9kswU;h#?6-jAmvK?6LeW_qAXfAq>Dwj+`6!_D&pQgbzSQU`+59Kc@3ml>Jni{7)`Bw@Xaq6; zjxL1%EJa~;(N`l%@eU>>IiZ5iqv(qw*Nu4FuwJ|ah7Ebd7p3JAG}+*n6>F5rgs?NLj-2Bwo*iZnG}s6$4q5A z{vEG3)0sErpz!E)$}cNhczo#BuO~M-?zw)APY02gB@^X}SzK*C+~;v-9I4=UH|W9_ zF!95_e{sNLP=hq!Ysgvw)K2X)x-e7C>=HLv<{oj+byc&mf($5Mpk_qN(3=(MBMqG0 z+w}}SKCcuvdo#ef?+fmr88a!W%SZD)*4|B5@I6oi zvW)9#4VD%-0n}5}FWPC>;!MwM;rtsHeS_z$#Rcu*c1w6Id3|(Ktk#iuVV>lLw|678 zvW`NgNm#1v0DPr#S0%!nWs77!vVab(0Un~nfVy%Eb5|R2L7>6Jj ziXqR8#+_?wJ%#?(_+^ z(4MISm_P{f6q|>lnq=fiTkj%+!kl|+P}BPqZ-y|PQY5B5a_ZVad__;$Q;g4a);9~JfW9vG&VrTYM1c7H;PvCzj9Px$-! zB2$7~iY6j`$!BQ)BGLrK(<3!}43sV+-MY+%)eZi^Ljx6iK72D4NiCkU0Xn>Gbf&ol zV*^L=crSK*m(lfOXDXPUVRf>kXEw5Z2ERi+{0d<|JEfL-pV$g;x! z>r6#QH6vPv-fUdTE_{3F+&3tNeK*oa)^t>g`h9!MF@Jp*p7x$P@Lmk$6|HYt@hPhJ zqgxOMOM^{_uiqCIx>6q>>Jyb*J95o)!FFtr@%?MZHVygLj%{Xr|9v|)+89gk*hB00 z^*akZsbGyh?`BSu!yMcuNcL*Ey1lNAHht~y!$xI*cWI07TF9E`Y`-B}w8VbTx=zM6 zBi+qRft~h|rf&Ll`nbX?TqI$Xb%gs;xc0LzF19bF)mD4Kr35#bmAe$in;2jQMY~lx z+=mZz_-D2P*KUBG4UPE4O5K2W!JB|>cQq&D*OSl!{?EFC2^>R60Q+usmpXdR-({EU z_9CLUaC^A(FXr}IxjsJrJc^J^-Q+*nzY?eRFM4?QVxeotDJj?Dss=x|NyrV3TKpmn z?)RJeMI@I@u6g2DvuT{88Ei7ZVk&G#G8t+LqRDVJBLa(U2AhmCg+H75+HofH(KqWo zh$cub#XTeEPH!urKy@9z!LIFnn>NN>(Y2R-GI0y$4cpSom($m+cLGW`9MhXB&|`#! z8;?8y(#jZ$I;q>=nhu|w zw)kK6K^pE?hMH+BIV<%nM=A7Os1-)rj_e{kw?3nFq?d~TzBFn!H#MLS!vSZ(13Pc8 zhbd$}z|@`piAil1auzr4ioz7J9%BRFw~PwpG7SXm8GMAifs}a-KKavqqs=i6=0>o= z9u~oOXh6O=#K5b2zJl};dZI-% zDxg4N@tSE~T{KjXyHG2PwjJ3}fn)t^Lxpcm7JP}@`)pF0yMN69TTOiKo}x~e9^Q=R zAA>3%KXU?2+-b3lrc&x}@{gaLO0jkPwf^x-r&8bIA3wSPA-TtP(cT>Zzr;U^?y=ZE zitaI(7mD|=vYvtm{!&lT?8r%&52=&-=lqr!Z8B^Q`h$lt1F?T#S?Ck`s5 z{w6i!l_$rW{Vwgn$A-~@T-~mwhF2V8eS{AjFWuH?QzXfrxu?zx7+}8>5RoTe?C;5w zFAgqYI{cn_5Yer%-?^*m&G+FNyRbrBb5x?%_slLrN&?js=OndUiZF%Th9YyTd;^L) zpq66F&F546lluFmZbflUi(Eia1MK;bgP7O*b9-sl8cX;dsoOh%KdCDz>VR5`{oG#a z7;7Fy4X}gTlQxGfXp;f6HjDuK2dlmN!9E)+Ju2Kuk$|dnAwy9Hs#@} + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trackers/src/midair_activation_tracker + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_trackers/src/midair_activation_trackerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:679272.8 %
Date:2024-04-17 23:52:03Functions:91850.0 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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midair_activation_tracker.cpp +
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Current view:top level - mrs_uav_trackers/src/midair_activation_trackerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:679272.8 %
Date:2024-04-17 23:52:03Functions:91850.0 %
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<unnamed>72.8 %67 / 9250.0 %9 / 18
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Current view:top level - mrs_uav_trackers/src/midair_activation_trackerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:679272.8 %
Date:2024-04-17 23:52:03Functions:91850.0 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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midair_activation_tracker.cpp +
72.8%72.8%
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<unnamed>72.8 %67 / 9250.0 %9 / 18
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Generated by: LCOV version 1.14
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LCOV - code coverage report
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Current view:top level - mrs_uav_trackers/src/midair_activation_trackerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:679272.8 %
Date:2024-04-17 23:52:03Functions:91850.0 %
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midair_activation_tracker.cpp +
72.8%72.8%
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72.8 %67 / 9250.0 %9 / 18
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_trackers/src/midair_activation_tracker/index-sort-l.html b/mrs_uav_trackers/src/midair_activation_tracker/index-sort-l.html new file mode 100644 index 0000000000..3ce0e524ee --- /dev/null +++ b/mrs_uav_trackers/src/midair_activation_tracker/index-sort-l.html @@ -0,0 +1,102 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trackers/src/midair_activation_tracker + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_trackers/src/midair_activation_trackerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:679272.8 %
Date:2024-04-17 23:52:03Functions:91850.0 %
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midair_activation_tracker.cpp +
72.8%72.8%
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72.8 %67 / 9250.0 %9 / 18
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+
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Generated by: LCOV version 1.14
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Current view:top level - mrs_uav_trackers/src/midair_activation_trackerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:679272.8 %
Date:2024-04-17 23:52:03Functions:91850.0 %
Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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midair_activation_tracker.cpp +
72.8%72.8%
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72.8 %67 / 9250.0 %9 / 18
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+
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp.func-sort-c.html b/mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp.func-sort-c.html new file mode 100644 index 0000000000..b43da75fde --- /dev/null +++ b/mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp.func-sort-c.html @@ -0,0 +1,152 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_trackers/src/midair_activation_tracker - midair_activation_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:679272.8 %
Date:2024-04-17 23:52:03Functions:91850.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::resetStatic()0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::getStatus()38
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)126
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::deactivate()146
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)311
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
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+
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Generated by: LCOV version 1.14
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+ + + diff --git a/mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp.func.html b/mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp.func.html new file mode 100644 index 0000000000..524a5f17db --- /dev/null +++ b/mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp.func.html @@ -0,0 +1,152 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp - functions + + + + + + + + + + + + + + +
LCOV - code coverage report
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Current view:top level - mrs_uav_trackers/src/midair_activation_tracker - midair_activation_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:679272.8 %
Date:2024-04-17 23:52:03Functions:91850.0 %
Legend: Lines: + hit + not hit +
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+ +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::deactivate()146
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::resetStatic()0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)311
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)126
mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker::getStatus()38
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Current view:top level - mrs_uav_trackers/src/midair_activation_tracker - midair_activation_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:679272.8 %
Date:2024-04-17 23:52:03Functions:91850.0 %
Legend: Lines: + hit + not hit +
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+ + + + + + + + +

+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <ros/package.h>
+       5             : 
+       6             : #include <mrs_uav_managers/tracker.h>
+       7             : 
+       8             : #include <mrs_lib/profiler.h>
+       9             : #include <mrs_lib/mutex.h>
+      10             : #include <mrs_lib/attitude_converter.h>
+      11             : #include <mrs_lib/geometry/cyclic.h>
+      12             : #include <mrs_lib/geometry/misc.h>
+      13             : 
+      14             : //}
+      15             : 
+      16             : namespace mrs_uav_trackers
+      17             : {
+      18             : 
+      19             : namespace midair_activation_tracker
+      20             : {
+      21             : 
+      22             : /* //{ class MidairActivationTracker */
+      23             : 
+      24             : class MidairActivationTracker : public mrs_uav_managers::Tracker {
+      25             : public:
+      26             :   bool initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      27             :                   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers);
+      28             : 
+      29             :   std::tuple<bool, std::string> activate(const std::optional<mrs_msgs::TrackerCommand> &last_tracker_cmd);
+      30             :   void                          deactivate(void);
+      31             :   bool                          resetStatic(void);
+      32             : 
+      33             :   std::optional<mrs_msgs::TrackerCommand>   update(const mrs_msgs::UavState &uav_state, const mrs_uav_managers::Controller::ControlOutput &last_control_output);
+      34             :   const mrs_msgs::TrackerStatus             getStatus();
+      35             :   const std_srvs::SetBoolResponse::ConstPtr enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr &cmd);
+      36             :   const std_srvs::TriggerResponse::ConstPtr switchOdometrySource(const mrs_msgs::UavState &new_uav_state);
+      37             : 
+      38             :   const mrs_msgs::ReferenceSrvResponse::ConstPtr           setReference(const mrs_msgs::ReferenceSrvRequest::ConstPtr &cmd);
+      39             :   const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr   setVelocityReference(const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr &cmd);
+      40             :   const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr setTrajectoryReference(const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr &cmd);
+      41             : 
+      42             :   const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd);
+      43             : 
+      44             :   const std_srvs::TriggerResponse::ConstPtr hover(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      45             :   const std_srvs::TriggerResponse::ConstPtr startTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      46             :   const std_srvs::TriggerResponse::ConstPtr stopTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      47             :   const std_srvs::TriggerResponse::ConstPtr resumeTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      48             :   const std_srvs::TriggerResponse::ConstPtr gotoTrajectoryStart(const std_srvs::TriggerRequest::ConstPtr &cmd);
+      49             : 
+      50             : private:
+      51             :   ros::NodeHandle nh_;
+      52             : 
+      53             :   bool callbacks_enabled_ = true;
+      54             : 
+      55             :   std::string _uav_name_;
+      56             : 
+      57             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>  common_handlers_;
+      58             :   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers_;
+      59             : 
+      60             :   // | ---------------- the tracker's inner state --------------- |
+      61             : 
+      62             :   bool is_initialized_ = false;
+      63             :   bool is_active_      = false;
+      64             : 
+      65             :   // | ------------------------ profiler ------------------------ |
+      66             : 
+      67             :   mrs_lib::Profiler profiler_;
+      68             :   bool              _profiler_enabled_ = false;
+      69             : };
+      70             : 
+      71             : //}
+      72             : 
+      73             : // | -------------- tracker's interface routines -------------- |
+      74             : 
+      75             : /* //{ initialize() */
+      76             : 
+      77          91 : bool MidairActivationTracker::initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      78             :                                          std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) {
+      79             : 
+      80          91 :   this->common_handlers_  = common_handlers;
+      81          91 :   this->private_handlers_ = private_handlers;
+      82             : 
+      83          91 :   _uav_name_ = common_handlers->uav_name;
+      84             : 
+      85          91 :   nh_ = nh;
+      86             : 
+      87          91 :   ros::Time::waitForValid();
+      88             : 
+      89             :   // --------------------------------------------------------------
+      90             :   // |                     loading parameters                     |
+      91             :   // --------------------------------------------------------------
+      92             : 
+      93             :   // | ---------- loading params using the parent's nh ---------- |
+      94             : 
+      95         182 :   mrs_lib::ParamLoader param_loader_parent(common_handlers->parent_nh, "ControlManager");
+      96             : 
+      97          91 :   param_loader_parent.loadParam("enable_profiler", _profiler_enabled_);
+      98             : 
+      99          91 :   if (!param_loader_parent.loadedSuccessfully()) {
+     100           0 :     ROS_ERROR("[MidairActivationTracker]: Could not load all parameters!");
+     101           0 :     return false;
+     102             :   }
+     103             : 
+     104             :   // | ---------------- load plugin's parameters ---------------- |
+     105             : 
+     106          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/private/midair_activation_tracker.yaml");
+     107          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/public/midair_activation_tracker.yaml");
+     108             : 
+     109         182 :   const std::string yaml_prefix = "mrs_uav_trackers/midair_activation_tracker/";
+     110             : 
+     111          91 :   if (!private_handlers->param_loader->loadedSuccessfully()) {
+     112           0 :     ROS_ERROR("[MidairActivationTracker]: could not load all parameters!");
+     113           0 :     return false;
+     114             :   }
+     115             : 
+     116             :   // | ------------------------ profiler ------------------------ |
+     117             : 
+     118          91 :   profiler_ = mrs_lib::Profiler(common_handlers->parent_nh, "MidairActivationTracker", _profiler_enabled_);
+     119             : 
+     120             :   // | --------------------- finish the init -------------------- |
+     121             : 
+     122          91 :   is_initialized_ = true;
+     123             : 
+     124          91 :   ROS_INFO("[MidairActivationTracker]: initialized");
+     125             : 
+     126          91 :   return true;
+     127             : }
+     128             : 
+     129             : //}
+     130             : 
+     131             : /* //{ activate() */
+     132             : 
+     133         126 : std::tuple<bool, std::string> MidairActivationTracker::activate([[maybe_unused]] const std::optional<mrs_msgs::TrackerCommand> &last_tracker_cmd) {
+     134             : 
+     135         126 :   std::stringstream ss;
+     136             : 
+     137         126 :   is_active_ = true;
+     138             : 
+     139         126 :   ss << "activated";
+     140         126 :   ROS_INFO_STREAM("[MidairActivationTracker]: " << ss.str());
+     141             : 
+     142         252 :   return std::tuple(true, ss.str());
+     143             : }
+     144             : 
+     145             : //}
+     146             : 
+     147             : /* //{ deactivate() */
+     148             : 
+     149         146 : void MidairActivationTracker::deactivate(void) {
+     150             : 
+     151         146 :   is_active_ = false;
+     152             : 
+     153         146 :   ROS_INFO("[MidairActivationTracker]: deactivated");
+     154         146 : }
+     155             : 
+     156             : //}
+     157             : 
+     158             : /* //{ resetStatic() */
+     159             : 
+     160           0 : bool MidairActivationTracker::resetStatic(void) {
+     161             : 
+     162           0 :   return false;
+     163             : }
+     164             : 
+     165             : //}
+     166             : 
+     167             : /* //{ update() */
+     168             : 
+     169      120229 : std::optional<mrs_msgs::TrackerCommand> MidairActivationTracker::update(
+     170             :     const mrs_msgs::UavState &uav_state, [[maybe_unused]] const mrs_uav_managers::Controller::ControlOutput &last_control_output) {
+     171             : 
+     172             :   // up to this part the update() method is evaluated even when the tracker is not active
+     173      120229 :   if (!is_active_) {
+     174      119945 :     return {};
+     175             :   }
+     176             : 
+     177         852 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("update");
+     178             :   mrs_lib::ScopeTimer timer =
+     179         852 :       mrs_lib::ScopeTimer("MidairActivationTracker::update", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+     180             : 
+     181         568 :   mrs_msgs::TrackerCommand tracker_cmd;
+     182             : 
+     183         284 :   tracker_cmd.header.frame_id = uav_state.header.frame_id;
+     184         284 :   tracker_cmd.header.stamp    = ros::Time::now();
+     185             : 
+     186         284 :   tracker_cmd.position.x = uav_state.pose.position.x;
+     187         284 :   tracker_cmd.position.y = uav_state.pose.position.y;
+     188         284 :   tracker_cmd.position.z = uav_state.pose.position.z;
+     189             : 
+     190         284 :   tracker_cmd.velocity.x = uav_state.velocity.linear.x;
+     191         284 :   tracker_cmd.velocity.y = uav_state.velocity.linear.y;
+     192         284 :   tracker_cmd.velocity.z = uav_state.velocity.linear.z;
+     193             : 
+     194             :   try {
+     195         284 :     tracker_cmd.heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+     196             :   }
+     197           0 :   catch (...) {
+     198           0 :     tracker_cmd.heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getYaw();
+     199           0 :     ROS_WARN_THROTTLE(1.0, "[MidairActivationTracker]: could not get heading");
+     200             :   }
+     201             : 
+     202         284 :   tracker_cmd.use_position_vertical   = true;
+     203         284 :   tracker_cmd.use_position_horizontal = true;
+     204             : 
+     205         284 :   tracker_cmd.use_velocity_vertical   = true;
+     206         284 :   tracker_cmd.use_velocity_horizontal = true;
+     207             : 
+     208         284 :   tracker_cmd.use_heading = true;
+     209             : 
+     210         284 :   ROS_WARN_THROTTLE(0.1, "[MidairActivationTracker]: outputting cmd");
+     211             : 
+     212         284 :   return {tracker_cmd};
+     213             : }
+     214             : 
+     215             : //}
+     216             : 
+     217             : /* //{ getStatus() */
+     218             : 
+     219          38 : const mrs_msgs::TrackerStatus MidairActivationTracker::getStatus() {
+     220             : 
+     221          38 :   mrs_msgs::TrackerStatus tracker_status;
+     222             : 
+     223          38 :   tracker_status.active            = is_active_;
+     224          38 :   tracker_status.callbacks_enabled = callbacks_enabled_;
+     225             : 
+     226          38 :   return tracker_status;
+     227             : }
+     228             : 
+     229             : //}
+     230             : 
+     231             : /* //{ enableCallbacks() */
+     232             : 
+     233         311 : const std_srvs::SetBoolResponse::ConstPtr MidairActivationTracker::enableCallbacks([[maybe_unused]] const std_srvs::SetBoolRequest::ConstPtr &cmd) {
+     234             : 
+     235         622 :   std_srvs::SetBoolResponse res;
+     236             : 
+     237         311 :   res.message = "callbacks are always disabled";
+     238         311 :   res.success = true;
+     239             : 
+     240         622 :   return std_srvs::SetBoolResponse::ConstPtr(new std_srvs::SetBoolResponse(res));
+     241             : }
+     242             : 
+     243             : //}
+     244             : 
+     245             : /* switchOdometrySource() //{ */
+     246             : 
+     247           0 : const std_srvs::TriggerResponse::ConstPtr MidairActivationTracker::switchOdometrySource([[maybe_unused]] const mrs_msgs::UavState &new_uav_state) {
+     248             : 
+     249           0 :   return std_srvs::TriggerResponse::Ptr();
+     250             : }
+     251             : 
+     252             : //}
+     253             : 
+     254             : /* //{ hover() */
+     255             : 
+     256           0 : const std_srvs::TriggerResponse::ConstPtr MidairActivationTracker::hover([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     257             : 
+     258           0 :   return std_srvs::TriggerResponse::Ptr();
+     259             : }
+     260             : 
+     261             : //}
+     262             : 
+     263             : /* //{ startTrajectoryTracking() */
+     264             : 
+     265           0 : const std_srvs::TriggerResponse::ConstPtr MidairActivationTracker::startTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     266           0 :   return std_srvs::TriggerResponse::Ptr();
+     267             : }
+     268             : 
+     269             : //}
+     270             : 
+     271             : /* //{ stopTrajectoryTracking() */
+     272             : 
+     273           0 : const std_srvs::TriggerResponse::ConstPtr MidairActivationTracker::stopTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     274           0 :   return std_srvs::TriggerResponse::Ptr();
+     275             : }
+     276             : 
+     277             : //}
+     278             : 
+     279             : /* //{ resumeTrajectoryTracking() */
+     280             : 
+     281           0 : const std_srvs::TriggerResponse::ConstPtr MidairActivationTracker::resumeTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     282           0 :   return std_srvs::TriggerResponse::Ptr();
+     283             : }
+     284             : 
+     285             : //}
+     286             : 
+     287             : /* //{ gotoTrajectoryStart() */
+     288             : 
+     289           0 : const std_srvs::TriggerResponse::ConstPtr MidairActivationTracker::gotoTrajectoryStart([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
+     290           0 :   return std_srvs::TriggerResponse::Ptr();
+     291             : }
+     292             : 
+     293             : //}
+     294             : 
+     295             : /* //{ setConstraints() */
+     296             : 
+     297         299 : const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr MidairActivationTracker::setConstraints([
+     298             :     [maybe_unused]] const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd) {
+     299             : 
+     300         598 :   mrs_msgs::DynamicsConstraintsSrvResponse res;
+     301             : 
+     302         299 :   res.success = true;
+     303         299 :   res.message = "constraints updated";
+     304             : 
+     305         598 :   return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse(res));
+     306             : }
+     307             : 
+     308             : //}
+     309             : 
+     310             : /* //{ setReference() */
+     311             : 
+     312           0 : const mrs_msgs::ReferenceSrvResponse::ConstPtr MidairActivationTracker::setReference([[maybe_unused]] const mrs_msgs::ReferenceSrvRequest::ConstPtr &cmd) {
+     313             : 
+     314           0 :   return mrs_msgs::ReferenceSrvResponse::Ptr();
+     315             : }
+     316             : 
+     317             : //}
+     318             : 
+     319             : /* //{ setVelocityReference() */
+     320             : 
+     321           0 : const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr MidairActivationTracker::setVelocityReference([
+     322             :     [maybe_unused]] const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr &cmd) {
+     323           0 :   return mrs_msgs::VelocityReferenceSrvResponse::Ptr();
+     324             : }
+     325             : 
+     326             : //}
+     327             : 
+     328             : /* //{ setTrajectoryReference() */
+     329             : 
+     330           4 : const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr MidairActivationTracker::setTrajectoryReference([
+     331             :     [maybe_unused]] const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr &cmd) {
+     332           4 :   return mrs_msgs::TrajectoryReferenceSrvResponse::Ptr();
+     333             : }
+     334             : 
+     335             : //}
+     336             : 
+     337             : }  // namespace midair_activation_tracker
+     338             : 
+     339             : }  // namespace mrs_uav_trackers
+     340             : 
+     341             : #include <pluginlib/class_list_macros.h>
+     342          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_trackers::midair_activation_tracker::MidairActivationTracker, mrs_uav_managers::Tracker)
+
+
+
+ + + + +
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+ + + diff --git a/mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp.gcov.overview.html b/mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp.gcov.overview.html new file mode 100644 index 0000000000..92abe9ea3b --- /dev/null +++ b/mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp.gcov.overview.html @@ -0,0 +1,106 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
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+ + diff --git a/mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp.gcov.png b/mrs_uav_trackers/src/midair_activation_tracker/midair_activation_tracker.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..4f71e52c409a351c83f61f35774f7a90c3d741d3 GIT binary patch literal 1153 zcmV-{1b+L8P)J!}>NZyyuFasP|62uJU5*aFu zjmS0d?pPuUM>KcvwhD9>G)*Rz=p=yIWPvvr_@@Y55pdMTNMg%6%JYb>a|plxWB~;i zsF4hyv^Mf5%|!6`TAz(e^Ad~0QdkGdHqTsTA!J->1xS#7+h-UE z*P@GUim)73fPB?L#8jXQJ(B^lO1%0Hy*7GM^Lkq^aejm3Xq5Ox^wTJOU7cj(=d*u^ zvHRc3yjeD4P`C0`Z{V&?`FF`cK;?mo05XS_xFh>hd2JFe%P0|pHs)z*m$(ouAWnKA z&Vrl78WM~f0LYZc9(K`4`~U8>&3;z&EgHZh8S3tOuV-R8A(&bu(x&Y(@Hl>xaq559 z%g^;=E*yse{@m}2V>xOF2W)oX>USL`>-&o%E-a1)V1uts#<8zzg2Y@HVvoPg*Kv6p z@pX=7aJeb%0h5I7(8Q>X*344QA4(}UN>l`Fk+_%Yh66H+mI1QI6P=XJ{?pn%%yMp3 zcU6T-AJEgK)PQ`6yPYaab+Y`F;Y$G^Uv;RDs$jya;_>-DJms;4a1%XcMjuF0Y!|Xs zKj^~Y^IJE5T}_Tkc3gB9UJ=$nUR^&HW?gS6?2i#X@u?J*q2dcR%-|>|mggwRMhYbW&05|Ly{-x8L`mb* zz31AUMYQS;iE+o71#VmR0HRNI=@8-x;JA%g;s4nf~I@b)c)wInYn^?NK z=JKZERbBI}j%&dMpIF(uQ}uJ5)$C6qGwtFQ4vE` zht6!K@}##)v_)&z-lR9r0625IM{P>uYj24ja7sC26LL2I>G3R8*qQbENDBWoDBz2> zd(%?=m++cIfgi?=GtVddALemFs`&CahsZCFbMonb&*P*s$kKBo*d&GH2UWO5^?r8- z=uA4Xo<_6QKf;dG%rgUQQC)Z@9*$>U(rAjQQARFTYGDrcJ;ZZ{x2@|*q-O|ENDoJL zXa1J+KC+_;Pe^|u;WHSYpGZq71!j>~q!cN_cSk+zQzeeuXun#61_{jPc|86AD!MUP TVQf$600000NkvXXu0mjfd_WxL literal 0 HcmV?d00001 diff --git a/mrs_uav_trackers/src/mpc_tracker/index-detail-sort-f.html b/mrs_uav_trackers/src/mpc_tracker/index-detail-sort-f.html new file mode 100644 index 0000000000..76ffd52208 --- /dev/null +++ b/mrs_uav_trackers/src/mpc_tracker/index-detail-sort-f.html @@ -0,0 +1,110 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trackers/src/mpc_tracker + + + + + + + + + + + + + + +
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Current view:top level - mrs_uav_trackers/src/mpc_trackerHitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1320165080.0 %
Date:2024-04-17 23:52:03Functions:405080.0 %
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mpc_tracker.cpp +
80.0%80.0%
+
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<unnamed>80.0 %1320 / 165080.0 %40 / 50
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Test:MRS UAV System - Test coverage reportLines:1320165080.0 %
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Test:MRS UAV System - Test coverage reportLines:1320165080.0 %
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Current view:top level - mrs_uav_trackers/src/mpc_tracker - mpc_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1320165080.0 %
Date:2024-04-17 23:52:03Functions:405080.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
mrs_uav_trackers::mpc_tracker::MpcTracker::resetStatic()0
mrs_uav_trackers::mpc_tracker::MpcTracker::callbackWiggle(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_trackers::mpc_tracker::MpcTracker::debugPrintState(double)0
mrs_uav_trackers::mpc_tracker::MpcTracker::debugPrintMPCResult(double)0
mrs_uav_trackers::mpc_tracker::MpcTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::mpc_tracker::MpcTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::mpc_tracker::MpcTracker::stopTrajectoryTrackingImpl[abi:cxx11]()0
mrs_uav_trackers::mpc_tracker::MpcTracker::resumeTrajectoryTrackingImpl[abi:cxx11]()0
mrs_uav_trackers::mpc_tracker::MpcTracker::callbackToggleCollisionAvoidance(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_trackers::mpc_tracker::MpcTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::mpc_tracker::MpcTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)1
mrs_uav_trackers::mpc_tracker::MpcTracker::gotoTrajectoryStartImpl[abi:cxx11]()1
mrs_uav_trackers::mpc_tracker::MpcTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)1
mrs_uav_trackers::mpc_tracker::MpcTracker::startTrajectoryTrackingImpl[abi:cxx11]()1
mrs_uav_trackers::mpc_tracker::MpcTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
mrs_uav_trackers::mpc_tracker::MpcTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)5
mrs_uav_trackers::mpc_tracker::MpcTracker::deactivate()40
mrs_uav_trackers::mpc_tracker::MpcTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)82
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_trackers::mpc_tracker::MpcTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_trackers::mpc_tracker::MpcTracker::timerHover(ros::TimerEvent const&)91
mrs_uav_trackers::mpc_tracker::MpcTracker::dynamicReconfigureCallback(mrs_uav_trackers::mpc_trackerConfig&, unsigned int)91
mrs_uav_trackers::mpc_tracker::MpcTracker::setRelativeGoal(double, double, double, double, bool)173
mrs_uav_trackers::mpc_tracker::MpcTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)261
mrs_uav_trackers::mpc_tracker::MpcTracker::setGoal(double, double, double, double, bool)262
mrs_uav_trackers::mpc_tracker::MpcTracker::callbackOtherMavTrajectory(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>)287
mrs_uav_trackers::mpc_tracker::MpcTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
mrs_uav_trackers::mpc_tracker::MpcTracker::setSinglePointReference(double, double, double, double)435
mrs_uav_trackers::mpc_tracker::MpcTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)477
mrs_uav_trackers::mpc_tracker::MpcTracker::timerVelocityTracking(ros::TimerEvent const&)505
mrs_uav_trackers::mpc_tracker::MpcTracker::loadTrajectory[abi:cxx11](mrs_msgs::TrajectoryReference_<std::allocator<void> >)507
mrs_uav_trackers::mpc_tracker::MpcTracker::toggleHover(bool)950
mrs_uav_trackers::mpc_tracker::MpcTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)1691
mrs_uav_trackers::mpc_tracker::MpcTracker::callbackOtherMavDiagnostics(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>)1888
mrs_uav_trackers::mpc_tracker::MpcTracker::timerAvoidanceTrajectory(ros::TimerEvent const&)3835
mrs_uav_trackers::mpc_tracker::MpcTracker::getCurrentTrajectoryIdx()7500
mrs_uav_trackers::mpc_tracker::MpcTracker::getStatus()7500
mrs_uav_trackers::mpc_tracker::MpcTracker::increaseCurrentTrajectoryTime(double)11702
mrs_uav_trackers::mpc_tracker::MpcTracker::timerDiagnostics(ros::TimerEvent const&)19333
mrs_uav_trackers::mpc_tracker::MpcTracker::publishDiagnostics()20317
mrs_uav_trackers::mpc_tracker::MpcTracker::iterateModel(double const&)64313
mrs_uav_trackers::mpc_tracker::MpcTracker::checkTrajectoryForCollisions(int&)68563
mrs_uav_trackers::mpc_tracker::MpcTracker::calculateMPC()69502
mrs_uav_trackers::mpc_tracker::MpcTracker::filterReferenceZ(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, double, double)69502
mrs_uav_trackers::mpc_tracker::MpcTracker::filterReferenceXY(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, double, double)69502
mrs_uav_trackers::mpc_tracker::MpcTracker::manageConstraints()69502
mrs_uav_trackers::mpc_tracker::MpcTracker::timerMPC(ros::TimerEvent const&)69502
mrs_uav_trackers::mpc_tracker::MpcTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
mrs_uav_trackers::mpc_tracker::MpcTracker::checkCollision(double, double, double, double, double, double)145480
mrs_uav_trackers::mpc_tracker::MpcTracker::checkCollisionInflated(double, double, double, double, double, double)145480
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LCOV - code coverage report
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Current view:top level - mrs_uav_trackers/src/mpc_tracker - mpc_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1320165080.0 %
Date:2024-04-17 23:52:03Functions:405080.0 %
Legend: Lines: + hit + not hit +
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Function Name Sort by function nameHit count Sort by hit count
(anonymous namespace)::ProxyExec0::ProxyExec0()91
mrs_uav_trackers::mpc_tracker::MpcTracker::deactivate()40
mrs_uav_trackers::mpc_tracker::MpcTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
mrs_uav_trackers::mpc_tracker::MpcTracker::timerHover(ros::TimerEvent const&)91
mrs_uav_trackers::mpc_tracker::MpcTracker::resetStatic()0
mrs_uav_trackers::mpc_tracker::MpcTracker::toggleHover(bool)950
mrs_uav_trackers::mpc_tracker::MpcTracker::calculateMPC()69502
mrs_uav_trackers::mpc_tracker::MpcTracker::iterateModel(double const&)64313
mrs_uav_trackers::mpc_tracker::MpcTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)261
mrs_uav_trackers::mpc_tracker::MpcTracker::callbackWiggle(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_trackers::mpc_tracker::MpcTracker::checkCollision(double, double, double, double, double, double)145480
mrs_uav_trackers::mpc_tracker::MpcTracker::loadTrajectory[abi:cxx11](mrs_msgs::TrajectoryReference_<std::allocator<void> >)507
mrs_uav_trackers::mpc_tracker::MpcTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
mrs_uav_trackers::mpc_tracker::MpcTracker::debugPrintState(double)0
mrs_uav_trackers::mpc_tracker::MpcTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)1691
mrs_uav_trackers::mpc_tracker::MpcTracker::setRelativeGoal(double, double, double, double, bool)173
mrs_uav_trackers::mpc_tracker::MpcTracker::filterReferenceZ(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, double, double)69502
mrs_uav_trackers::mpc_tracker::MpcTracker::timerDiagnostics(ros::TimerEvent const&)19333
mrs_uav_trackers::mpc_tracker::MpcTracker::filterReferenceXY(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, double, double)69502
mrs_uav_trackers::mpc_tracker::MpcTracker::manageConstraints()69502
mrs_uav_trackers::mpc_tracker::MpcTracker::publishDiagnostics()20317
mrs_uav_trackers::mpc_tracker::MpcTracker::debugPrintMPCResult(double)0
mrs_uav_trackers::mpc_tracker::MpcTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)1
mrs_uav_trackers::mpc_tracker::MpcTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)477
mrs_uav_trackers::mpc_tracker::MpcTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)5
mrs_uav_trackers::mpc_tracker::MpcTracker::timerVelocityTracking(ros::TimerEvent const&)505
mrs_uav_trackers::mpc_tracker::MpcTracker::checkCollisionInflated(double, double, double, double, double, double)145480
mrs_uav_trackers::mpc_tracker::MpcTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
mrs_uav_trackers::mpc_tracker::MpcTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::mpc_tracker::MpcTracker::getCurrentTrajectoryIdx()7500
mrs_uav_trackers::mpc_tracker::MpcTracker::gotoTrajectoryStartImpl[abi:cxx11]()1
mrs_uav_trackers::mpc_tracker::MpcTracker::setSinglePointReference(double, double, double, double)435
mrs_uav_trackers::mpc_tracker::MpcTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)1
mrs_uav_trackers::mpc_tracker::MpcTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::mpc_tracker::MpcTracker::timerAvoidanceTrajectory(ros::TimerEvent const&)3835
mrs_uav_trackers::mpc_tracker::MpcTracker::callbackOtherMavTrajectory(boost::shared_ptr<mrs_msgs::FutureTrajectory_<std::allocator<void> > const>)287
mrs_uav_trackers::mpc_tracker::MpcTracker::dynamicReconfigureCallback(mrs_uav_trackers::mpc_trackerConfig&, unsigned int)91
mrs_uav_trackers::mpc_tracker::MpcTracker::stopTrajectoryTrackingImpl[abi:cxx11]()0
mrs_uav_trackers::mpc_tracker::MpcTracker::callbackOtherMavDiagnostics(boost::shared_ptr<mrs_msgs::MpcTrackerDiagnostics_<std::allocator<void> > const>)1888
mrs_uav_trackers::mpc_tracker::MpcTracker::startTrajectoryTrackingImpl[abi:cxx11]()1
mrs_uav_trackers::mpc_tracker::MpcTracker::checkTrajectoryForCollisions(int&)68563
mrs_uav_trackers::mpc_tracker::MpcTracker::resumeTrajectoryTrackingImpl[abi:cxx11]()0
mrs_uav_trackers::mpc_tracker::MpcTracker::increaseCurrentTrajectoryTime(double)11702
mrs_uav_trackers::mpc_tracker::MpcTracker::callbackToggleCollisionAvoidance(std_srvs::SetBoolRequest_<std::allocator<void> >&, std_srvs::SetBoolResponse_<std::allocator<void> >&)0
mrs_uav_trackers::mpc_tracker::MpcTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
mrs_uav_trackers::mpc_tracker::MpcTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
mrs_uav_trackers::mpc_tracker::MpcTracker::setGoal(double, double, double, double, bool)262
mrs_uav_trackers::mpc_tracker::MpcTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)82
mrs_uav_trackers::mpc_tracker::MpcTracker::timerMPC(ros::TimerEvent const&)69502
mrs_uav_trackers::mpc_tracker::MpcTracker::getStatus()7500
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Generated by: LCOV version 1.14
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Current view:top level - mrs_uav_trackers/src/mpc_tracker - mpc_tracker.cpp (source / functions)HitTotalCoverage
Test:MRS UAV System - Test coverage reportLines:1320165080.0 %
Date:2024-04-17 23:52:03Functions:405080.0 %
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+
          Line data    Source code
+
+       1             : /* includes //{ */
+       2             : 
+       3             : #include <ros/ros.h>
+       4             : #include <ros/package.h>
+       5             : 
+       6             : #include <mrs_uav_managers/tracker.h>
+       7             : #include <mrs_uav_managers/controller.h>
+       8             : 
+       9             : #include <geometry_msgs/Pose.h>
+      10             : #include <geometry_msgs/PoseArray.h>
+      11             : 
+      12             : #include <mrs_msgs/FuturePoint.h>
+      13             : #include <mrs_msgs/FutureTrajectory.h>
+      14             : #include <mrs_msgs/MpcTrackerDiagnostics.h>
+      15             : #include <mrs_msgs/MpcPredictionFullState.h>
+      16             : #include <mrs_msgs/EstimationDiagnostics.h>
+      17             : #include <mrs_msgs/VelocityReference.h>
+      18             : #include <mrs_msgs/VelocityReferenceSrv.h>
+      19             : 
+      20             : #include <std_msgs/String.h>
+      21             : 
+      22             : #include <mrs_lib/profiler.h>
+      23             : #include <mrs_lib/utils.h>
+      24             : #include <mrs_lib/mutex.h>
+      25             : #include <mrs_lib/attitude_converter.h>
+      26             : #include <mrs_lib/subscribe_handler.h>
+      27             : #include <mrs_lib/publisher_handler.h>
+      28             : #include <mrs_lib/geometry/cyclic.h>
+      29             : #include <mrs_lib/geometry/misc.h>
+      30             : #include <mrs_lib/scope_timer.h>
+      31             : 
+      32             : #include <mpc_tracker.h>
+      33             : 
+      34             : #include <dynamic_reconfigure/server.h>
+      35             : #include <mrs_uav_trackers/mpc_trackerConfig.h>
+      36             : 
+      37             : #include <visualization_msgs/Marker.h>
+      38             : #include <visualization_msgs/MarkerArray.h>
+      39             : 
+      40             : //}
+      41             : 
+      42             : /* defines //{ */
+      43             : 
+      44             : #define MPC_N_STATES 12
+      45             : #define MPC_N_INPUTS 3
+      46             : 
+      47             : #define MPC_HEADING_N_STATES 4
+      48             : #define MPC_HEADING_N_INPUTS 1
+      49             : 
+      50             : #define MPC_HORIZON_LENGTH 40
+      51             : 
+      52             : //}
+      53             : 
+      54             : /* using //{ */
+      55             : 
+      56             : using namespace Eigen;
+      57             : 
+      58             : using vec2_t = mrs_lib::geometry::vec_t<2>;
+      59             : using vec3_t = mrs_lib::geometry::vec_t<3>;
+      60             : 
+      61             : using radians  = mrs_lib::geometry::radians;
+      62             : using sradians = mrs_lib::geometry::sradians;
+      63             : 
+      64             : using quat_t = Eigen::Quaterniond;
+      65             : 
+      66             : //}
+      67             : 
+      68             : namespace mrs_uav_trackers
+      69             : {
+      70             : 
+      71             : namespace mpc_tracker
+      72             : {
+      73             : 
+      74             : /* //{ class MpcTracker */
+      75             : 
+      76             : class MpcTracker : public mrs_uav_managers::Tracker {
+      77             : public:
+      78             :   bool initialize(const ros::NodeHandle& nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+      79             :                   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers);
+      80             : 
+      81             :   std::tuple<bool, std::string> activate(const std::optional<mrs_msgs::TrackerCommand>& last_tracker_cmd);
+      82             :   void                          deactivate(void);
+      83             :   bool                          resetStatic(void);
+      84             : 
+      85             :   std::optional<mrs_msgs::TrackerCommand>   update(const mrs_msgs::UavState& uav_state, const mrs_uav_managers::Controller::ControlOutput& last_control_output);
+      86             :   const std_srvs::SetBoolResponse::ConstPtr enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr& cmd);
+      87             :   const mrs_msgs::TrackerStatus             getStatus();
+      88             :   const std_srvs::TriggerResponse::ConstPtr switchOdometrySource(const mrs_msgs::UavState& new_uav_state);
+      89             : 
+      90             :   const mrs_msgs::ReferenceSrvResponse::ConstPtr           setReference(const mrs_msgs::ReferenceSrvRequest::ConstPtr& cmd);
+      91             :   const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr   setVelocityReference(const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr& cmd);
+      92             :   const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr setTrajectoryReference(const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr& cmd);
+      93             : 
+      94             :   const std_srvs::TriggerResponse::ConstPtr hover(const std_srvs::TriggerRequest::ConstPtr& cmd);
+      95             :   const std_srvs::TriggerResponse::ConstPtr startTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr& cmd);
+      96             :   const std_srvs::TriggerResponse::ConstPtr stopTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr& cmd);
+      97             :   const std_srvs::TriggerResponse::ConstPtr resumeTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr& cmd);
+      98             :   const std_srvs::TriggerResponse::ConstPtr gotoTrajectoryStart(const std_srvs::TriggerRequest::ConstPtr& cmd);
+      99             : 
+     100             :   const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr& cmd);
+     101             : 
+     102             : private:
+     103             :   ros::NodeHandle nh_;
+     104             : 
+     105             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>  common_handlers_;
+     106             :   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers_;
+     107             : 
+     108             :   std::atomic<bool> callbacks_enabled_ = true;
+     109             : 
+     110             :   std::string _uav_name_;
+     111             : 
+     112             :   // debugging publishers
+     113             :   mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics> pub_diagnostics_;
+     114             :   mrs_lib::PublisherHandler<std_msgs::String>                pub_status_string_;
+     115             : 
+     116             :   mrs_lib::PublisherHandler<geometry_msgs::PoseArray>        pub_debug_processed_trajectory_poses_;
+     117             :   mrs_lib::PublisherHandler<visualization_msgs::MarkerArray> pub_debug_processed_trajectory_markers_;
+     118             : 
+     119             :   mrs_msgs::UavState uav_state_;
+     120             :   std::mutex         mutex_uav_state_;
+     121             : 
+     122             :   bool is_active_      = false;
+     123             :   bool is_initialized_ = false;
+     124             : 
+     125             :   // | ----------------------- constraints ---------------------- |
+     126             : 
+     127             :   mrs_msgs::DynamicsConstraints constraints_;
+     128             :   std::mutex                    mutex_constraints_;
+     129             : 
+     130             :   mrs_msgs::DynamicsConstraints constraints_filtered_;
+     131             :   std::mutex                    mutex_constraints_filtered_;
+     132             : 
+     133             :   std::atomic<bool> got_constraints_     = false;
+     134             :   std::atomic<bool> all_constraints_set_ = false;
+     135             : 
+     136             :   double _diag_pos_tracking_thr_;
+     137             :   double _diag_heading_tracking_thr_;
+     138             : 
+     139             :   double _mpc_synchronous_rate_limit_;
+     140             :   double _mpc_asynchronous_rate_;
+     141             : 
+     142             :   double update_rate_ = 100.0;
+     143             : 
+     144             :   double     dt1_;
+     145             :   std::mutex mutex_dt1_;
+     146             : 
+     147             :   double _dt2_;
+     148             : 
+     149             :   MatrixXd          _mat_A_;  // system matrix for virtual UAV
+     150             :   MatrixXd          _mat_B_;  // input matrix for virtual UAV
+     151             :   MatrixXd          A_;       // system matrix for virtual UAV
+     152             :   MatrixXd          B_;       // input matrix for virtual UAV
+     153             :   std::atomic<bool> model_first_iteration_ = true;
+     154             :   ros::Time         model_iteration_last_time_;
+     155             : 
+     156             :   MatrixXd _mat_A_heading_;  // system matrix for heading
+     157             :   MatrixXd _mat_B_heading_;  // input matrix for heading
+     158             :   MatrixXd A_heading_;       // system matrix for heading
+     159             :   MatrixXd B_heading_;       // input matrix for heading
+     160             : 
+     161             :   // the reference over the prediction horizon per axis
+     162             :   MatrixXd   des_x_trajectory_;
+     163             :   MatrixXd   des_y_trajectory_;
+     164             :   MatrixXd   des_z_trajectory_;
+     165             :   MatrixXd   des_heading_trajectory_;
+     166             :   std::mutex mutex_des_trajectory_;
+     167             : 
+     168             :   // the reference filtered over the prediction horizon per axis
+     169             :   MatrixXd des_z_filtered_offset_;
+     170             : 
+     171             :   // the whole trajectory reference split per axis
+     172             :   std::shared_ptr<VectorXd> des_x_whole_trajectory_;
+     173             :   std::shared_ptr<VectorXd> des_y_whole_trajectory_;
+     174             :   std::shared_ptr<VectorXd> des_z_whole_trajectory_;
+     175             :   std::shared_ptr<VectorXd> des_heading_whole_trajectory_;
+     176             :   int                       des_whole_trajectory_id_ = 0;
+     177             :   std::mutex                mutex_des_whole_trajectory_;
+     178             : 
+     179             :   int  getCurrentTrajectoryIdx();
+     180             :   void increaseCurrentTrajectoryTime(const double dt);
+     181             : 
+     182             :   // trajectory tracking
+     183             :   std::atomic<bool> trajectory_tracking_in_progress_ = false;
+     184             :   double            trajectory_current_time_;
+     185             :   std::mutex        mutex_trajectory_tracking_states_;
+     186             : 
+     187             :   // params of the loaded trajectory
+     188             :   int    trajectory_size_          = 0;
+     189             :   double trajectory_dt_            = 0.2;
+     190             :   bool   trajectory_track_heading_ = false;
+     191             :   bool   trajectory_tracking_loop_ = false;
+     192             :   bool   trajectory_set_           = false;
+     193             :   int    trajectory_count_         = 0;  // counts how many trajectories we have received
+     194             : 
+     195             :   // mpc output
+     196             :   VectorXd   mpc_u_;
+     197             :   double     mpc_u_heading_;
+     198             :   std::mutex mutex_mpc_u_;
+     199             : 
+     200             :   // current state of the dynamical system
+     201             :   MatrixXd   mpc_x_;          // translation state
+     202             :   MatrixXd   mpc_x_heading_;  // heading state
+     203             :   std::mutex mutex_mpc_x_;
+     204             : 
+     205             :   // odometry reset
+     206             :   std::atomic<bool> odometry_reset_in_progress_ = false;
+     207             :   std::atomic<bool> mpc_result_invalid_         = false;
+     208             : 
+     209             :   // predicting the future
+     210             :   MatrixXd   predicted_trajectory_;
+     211             :   MatrixXd   predicted_heading_trajectory_;
+     212             :   std::mutex mutex_predicted_trajectory_;
+     213             : 
+     214             :   mrs_msgs::MpcPredictionFullState prediction_full_state_;
+     215             :   std::mutex                       mutex_prediction_full_state_;
+     216             : 
+     217             :   mrs_lib::PublisherHandler<geometry_msgs::PoseArray>   ph_predicted_trajectory_debugging_;
+     218             :   mrs_lib::PublisherHandler<geometry_msgs::PoseArray>   ph_mpc_reference_debugging_;
+     219             :   mrs_lib::PublisherHandler<geometry_msgs::PoseStamped> ph_current_trajectory_point_;
+     220             : 
+     221             :   std::atomic<bool> mpc_computed_ = false;
+     222             : 
+     223             :   bool brake_ = false;
+     224             : 
+     225             :   // | ----------------------- MPC solver ----------------------- |
+     226             : 
+     227             :   std::shared_ptr<mrs_mpc_solvers::mpc_tracker::Solver> mpc_solver_y_;
+     228             :   std::shared_ptr<mrs_mpc_solvers::mpc_tracker::Solver> mpc_solver_x_;
+     229             :   std::shared_ptr<mrs_mpc_solvers::mpc_tracker::Solver> mpc_solver_z_;
+     230             :   std::shared_ptr<mrs_mpc_solvers::mpc_tracker::Solver> mpc_solver_heading_;
+     231             : 
+     232             :   std::mutex mutex_mpc_calculation_;
+     233             : 
+     234             :   int _max_iters_xy_;
+     235             :   int _max_iters_z_;
+     236             :   int _max_iters_heading_;
+     237             : 
+     238             :   // | ----------- measuring the "MPC realtime factor" ---------- |
+     239             : 
+     240             :   double mpc_rtf_ = 0.0;
+     241             : 
+     242             :   // | ------------------- collision avoidance ------------------ |
+     243             : 
+     244             :   // configurable params
+     245             :   bool collision_avoidance_enabled_           = false;
+     246             :   bool collision_avoidance_enabled_passively_ = true;
+     247             : 
+     248             :   // TODO what is this?
+     249             :   double    coef_scaler = 0;
+     250             :   ros::Time coef_time;
+     251             : 
+     252             :   double minimum_collison_free_altitude_ = std::numeric_limits<double>::lowest();
+     253             : 
+     254             :   // params
+     255             :   double                   _avoidance_trajectory_rate_;
+     256             :   double                   _avoidance_radius_threshold_;
+     257             :   double                   _avoidance_z_correction_;
+     258             :   std::string              _avoidance_diagnostics_topic_name_;
+     259             :   std::vector<std::string> _avoidance_other_uav_names_;
+     260             :   double                   _avoidance_z_threshold_;
+     261             : 
+     262             :   // how old can the other UAV trajectory be (since receive time)
+     263             :   double _collision_trajectory_timeout_;
+     264             : 
+     265             :   // when collision detected, slow down during the manouver
+     266             :   double _avoidance_collision_horizontal_speed_coef_;
+     267             : 
+     268             :   // when collision detected, slow down fully this number of steps before it
+     269             :   int _avoidance_collision_slow_down_fully_;
+     270             : 
+     271             :   // when collision detected, start slowing down this number of steps before it
+     272             :   int _avoidance_collision_slow_down_;
+     273             : 
+     274             :   // when avoiding, start climbing this number of steps before it
+     275             :   int _avoidance_collision_start_climbing_;
+     276             : 
+     277             :   int avoidance_this_uav_number_;
+     278             :   int avoidance_this_uav_priority_;
+     279             : 
+     280             :   double            collision_free_altitude_;
+     281             :   std::atomic<bool> avoiding_collision_               = false;
+     282             :   bool              collision_avoidance_affecting_me_ = false;
+     283             : 
+     284             :   // avoidance trajectory will not be published unless we computed it at least once
+     285             :   std::atomic<bool> future_was_predicted_ = false;
+     286             : 
+     287             :   // subscribing to the other UAV future trajectories
+     288             :   void callbackOtherMavTrajectory(const mrs_msgs::FutureTrajectory::ConstPtr msg);
+     289             : 
+     290             :   std::vector<mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory>> other_uav_trajectory_subscribers_;
+     291             :   std::map<std::string, mrs_msgs::FutureTrajectory>                  other_uav_avoidance_trajectories_;
+     292             :   std::mutex                                                         mutex_other_uav_avoidance_trajectories_;
+     293             : 
+     294             :   // subscribing to the other UAV diagnostics'
+     295             :   void callbackOtherMavDiagnostics(const mrs_msgs::MpcTrackerDiagnostics::ConstPtr msg);
+     296             : 
+     297             :   std::vector<mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics>> other_uav_diag_subscribers_;
+     298             :   std::map<std::string, mrs_msgs::MpcTrackerDiagnostics>                  other_uav_diagnostics_;
+     299             :   std::mutex                                                              mutex_other_uav_diagnostics_;
+     300             : 
+     301             :   bool checkCollision(const double ax, const double ay, const double az, const double bx, const double by, const double bz);
+     302             :   bool checkCollisionInflated(const double ax, const double ay, const double az, const double bx, const double by, const double bz);
+     303             : 
+     304             :   mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory> ph_avoidance_trajectory_;
+     305             : 
+     306             :   ros::ServiceServer service_server_toggle_avoidance_;
+     307             :   bool               callbackToggleCollisionAvoidance(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res);
+     308             : 
+     309             :   mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics> sh_estimation_diag_;
+     310             : 
+     311             :   // | --------------------- MPC calculation -------------------- |
+     312             : 
+     313             :   ros::Timer        timer_mpc_iteration_;
+     314             :   std::atomic<bool> mpc_synchronous_ = false;
+     315             :   ros::TimerEvent   synchronous_timer_event_;
+     316             : 
+     317             :   std::atomic<bool> mpc_timer_running_ = false;
+     318             :   void              timerMPC(const ros::TimerEvent& event);
+     319             : 
+     320             :   // | -------------------- velocity tracking ------------------- |
+     321             : 
+     322             :   ros::Timer                  timer_velocity_tracking_;
+     323             :   void                        timerVelocityTracking(const ros::TimerEvent& event);
+     324             :   ros::Time                   velocity_reference_time_;
+     325             :   mrs_msgs::VelocityReference velocity_reference_;
+     326             :   std::mutex                  mutex_velocity_reference_;
+     327             :   std::atomic<bool>           velocity_tracking_active_ = false;
+     328             : 
+     329             :   // | ------------------ avoidance trajectory ------------------ |
+     330             : 
+     331             :   ros::Timer timer_avoidance_trajectory_;
+     332             :   void       timerAvoidanceTrajectory(const ros::TimerEvent& event);
+     333             : 
+     334             :   // | ----------------------- diagnostics ---------------------- |
+     335             : 
+     336             :   ros::Timer timer_diagnostics_;
+     337             :   double     _diagnostics_rate_;
+     338             :   void       timerDiagnostics(const ros::TimerEvent& event);
+     339             : 
+     340             :   // | ------------------------ hovering ------------------------ |
+     341             : 
+     342             :   ros::Timer        timer_hover_;
+     343             :   void              timerHover(const ros::TimerEvent& event);
+     344             :   std::atomic<bool> hovering_in_progress_ = false;
+     345             :   void              toggleHover(bool in);
+     346             : 
+     347             :   // | ------------------- trajectory tracking ------------------ |
+     348             : 
+     349             :   std::tuple<bool, std::string> resumeTrajectoryTrackingImpl(void);
+     350             :   std::tuple<bool, std::string> startTrajectoryTrackingImpl(void);
+     351             :   std::tuple<bool, std::string> stopTrajectoryTrackingImpl(void);
+     352             :   std::tuple<bool, std::string> gotoTrajectoryStartImpl(void);
+     353             : 
+     354             :   // | --------------------- other routines --------------------- |
+     355             : 
+     356             :   void publishDiagnostics();
+     357             : 
+     358             :   void debugPrintState(const double throttle);
+     359             :   void debugPrintMPCResult(const double throttle);
+     360             : 
+     361             :   void setGoal(const double pos_x, const double pos_y, const double pos_z, const double heading, const bool use_heading);
+     362             :   void setRelativeGoal(const double pos_x, const double pos_y, const double pos_z, const double heading, const bool use_heading);
+     363             :   void setSinglePointReference(const double x, const double y, const double z, const double heading);
+     364             : 
+     365             :   std::tuple<bool, std::string, bool> loadTrajectory(const mrs_msgs::TrajectoryReference msg);
+     366             : 
+     367             :   MatrixXd                       filterReferenceZ(const VectorXd& des_z_trajectory, const double max_ascending_speed, const double max_descending_speed);
+     368             :   std::tuple<MatrixXd, MatrixXd> filterReferenceXY(const VectorXd& des_x_trajectory, const VectorXd& des_y_trajectory, double max_speed_x, double max_speed_y);
+     369             : 
+     370             :   double checkTrajectoryForCollisions(int& first_collision_index);
+     371             : 
+     372             :   void manageConstraints(void);
+     373             :   void calculateMPC(void);
+     374             :   void iterateModel(const double& dt);
+     375             : 
+     376             :   // | ------------------------ profiler ------------------------ |
+     377             : 
+     378             :   mrs_lib::Profiler profiler;
+     379             :   bool              _profiler_enabled_ = false;
+     380             : 
+     381             :   // | ------------------------- wiggle ------------------------- |
+     382             : 
+     383             :   ros::ServiceServer service_server_wiggle_;
+     384             :   bool               callbackWiggle(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res);
+     385             : 
+     386             :   double wiggle_phase_ = 0;
+     387             : 
+     388             :   // | --------------- dynamic reconfigure server --------------- |
+     389             : 
+     390             :   void dynamicReconfigureCallback(mrs_uav_trackers::mpc_trackerConfig& config, uint32_t level);
+     391             : 
+     392             :   boost::recursive_mutex                      config_mutex_;
+     393             :   typedef mrs_uav_trackers::mpc_trackerConfig Config;
+     394             :   typedef dynamic_reconfigure::Server<Config> ReconfigureServer;
+     395             :   boost::shared_ptr<ReconfigureServer>        reconfigure_server_;
+     396             :   mrs_uav_trackers::mpc_trackerConfig         drs_params_;
+     397             :   std::mutex                                  mutex_drs_params_;
+     398             : };
+     399             : 
+     400             : //}
+     401             : 
+     402             : // | -------------- tracker's interface routines -------------- |
+     403             : 
+     404             : /* //{ initialize() */
+     405             : 
+     406          91 : bool MpcTracker::initialize(const ros::NodeHandle& nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
+     407             :                             std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) {
+     408             : 
+     409          91 :   nh_ = nh;
+     410             : 
+     411          91 :   common_handlers_  = common_handlers;
+     412          91 :   private_handlers_ = private_handlers;
+     413             : 
+     414          91 :   _uav_name_ = common_handlers->uav_name;
+     415             : 
+     416          91 :   ros::Time::waitForValid();
+     417             : 
+     418             :   // --------------------------------------------------------------
+     419             :   // |                     loading parameters                     |
+     420             :   // --------------------------------------------------------------
+     421             : 
+     422             :   // | ---------- loading params using the parent's nh ---------- |
+     423             : 
+     424         182 :   mrs_lib::ParamLoader param_loader_parent(common_handlers->parent_nh, "ControlManager");
+     425             : 
+     426          91 :   param_loader_parent.loadParam("enable_profiler", _profiler_enabled_);
+     427             : 
+     428          91 :   if (!param_loader_parent.loadedSuccessfully()) {
+     429           0 :     ROS_ERROR("[MpcTracker]: Could not load all parameters!");
+     430           0 :     return false;
+     431             :   }
+     432             : 
+     433             :   // | --------------- loading plugin's parameters -------------- |
+     434             : 
+     435          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/private/mpc_tracker.yaml");
+     436          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/public/mpc_tracker.yaml");
+     437             : 
+     438         182 :   const std::string yaml_prefix = "mrs_uav_trackers/mpc_tracker/";
+     439             : 
+     440          91 :   private_handlers->param_loader->loadParam("network/robot_names", _avoidance_other_uav_names_);
+     441             : 
+     442          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_loop/synchronous_rate_limit", _mpc_synchronous_rate_limit_);
+     443          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_loop/asynchronous_loop_rate", _mpc_asynchronous_rate_);
+     444             : 
+     445          91 :   if (_mpc_asynchronous_rate_ < 15) {
+     446           0 :     ROS_ERROR("[MpcTracker]: the asynchronous_loop_rate must be > 15 Hz");
+     447           0 :     return false;
+     448             :   }
+     449             : 
+     450          91 :   dt1_ = 1.0 / _mpc_asynchronous_rate_;
+     451             : 
+     452          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "braking/enabled", drs_params_.braking_enabled);
+     453          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "braking/q_vel_braking", drs_params_.q_vel_braking);
+     454          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "braking/q_vel_no_braking", drs_params_.q_vel_no_braking);
+     455             : 
+     456          91 :   private_handlers->param_loader->loadMatrixKnown(yaml_prefix + "model/translation/A", _mat_A_, MPC_N_STATES, MPC_N_STATES);
+     457          91 :   private_handlers->param_loader->loadMatrixKnown(yaml_prefix + "model/translation/B", _mat_B_, MPC_N_STATES, MPC_N_INPUTS);
+     458             : 
+     459          91 :   A_ = _mat_A_;
+     460          91 :   B_ = _mat_B_;
+     461             : 
+     462          91 :   private_handlers->param_loader->loadMatrixKnown(yaml_prefix + "model/heading/A", _mat_A_heading_, MPC_HEADING_N_STATES, MPC_HEADING_N_STATES);
+     463          91 :   private_handlers->param_loader->loadMatrixKnown(yaml_prefix + "model/heading/B", _mat_B_heading_, MPC_HEADING_N_STATES, MPC_HEADING_N_INPUTS);
+     464             : 
+     465          91 :   A_heading_ = _mat_A_heading_;
+     466          91 :   B_heading_ = _mat_B_heading_;
+     467             : 
+     468             :   // load the MPC parameters
+     469          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_solver/dt2", _dt2_);
+     470             : 
+     471          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "diagnostics/rate", _diagnostics_rate_);
+     472          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "diagnostics/position_tracking_threshold", _diag_pos_tracking_thr_);
+     473          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "diagnostics/orientation_tracking_threshold", _diag_heading_tracking_thr_);
+     474             : 
+     475          91 :   bool verbose_xy      = false;
+     476          91 :   bool verbose_z       = false;
+     477          91 :   bool verbose_heading = false;
+     478             : 
+     479         182 :   std::vector<double> xy_Q;
+     480         182 :   std::vector<double> z_Q;
+     481         182 :   std::vector<double> heading_Q;
+     482             : 
+     483          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_solver/xy/verbose", verbose_xy);
+     484          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_solver/xy/max_n_iterations", _max_iters_xy_);
+     485          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_solver/xy/Q", xy_Q);
+     486             : 
+     487          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_solver/z/verbose", verbose_z);
+     488          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_solver/z/max_n_iterations", _max_iters_z_);
+     489          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_solver/z/Q", z_Q);
+     490             : 
+     491          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_solver/heading/verbose", verbose_heading);
+     492          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_solver/heading/max_n_iterations", _max_iters_heading_);
+     493          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "mpc_solver/heading/Q", heading_Q);
+     494             : 
+     495          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "wiggle/enabled", drs_params_.wiggle_enabled);
+     496          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "wiggle/amplitude", drs_params_.wiggle_amplitude);
+     497          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "wiggle/frequency", drs_params_.wiggle_frequency);
+     498             : 
+     499          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "collision_avoidance/enabled", collision_avoidance_enabled_);
+     500          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "collision_avoidance/enabled_passively", collision_avoidance_enabled_passively_);
+     501          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "collision_avoidance/predicted_trajectory_publish_rate", _avoidance_trajectory_rate_);
+     502          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "collision_avoidance/correction", _avoidance_z_correction_);
+     503          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "collision_avoidance/radius", _avoidance_radius_threshold_);
+     504          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "collision_avoidance/altitude_threshold", _avoidance_z_threshold_);
+     505          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "collision_avoidance/collision_horizontal_speed_coef", _avoidance_collision_horizontal_speed_coef_);
+     506          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "collision_avoidance/collision_slow_down_fully", _avoidance_collision_slow_down_fully_);
+     507          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "collision_avoidance/collision_slow_down_start", _avoidance_collision_slow_down_);
+     508          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "collision_avoidance/collision_start_climbing", _avoidance_collision_start_climbing_);
+     509          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "collision_avoidance/trajectory_timeout", _collision_trajectory_timeout_);
+     510             : 
+     511          91 :   if (!private_handlers->param_loader->loadedSuccessfully()) {
+     512           0 :     ROS_ERROR("[MpcTracker]: could not load all parameters!");
+     513           0 :     return false;
+     514             :   }
+     515             : 
+     516          91 :   ROS_INFO_STREAM("[MpcTracker]: initializing solvers with dt1 = " << dt1_);
+     517             : 
+     518          91 :   mpc_solver_y_ = std::make_shared<mrs_mpc_solvers::mpc_tracker::Solver>("MpcTracker_y", verbose_xy, _max_iters_xy_, xy_Q, dt1_, _dt2_, 1);
+     519          91 :   mpc_solver_x_ = std::make_shared<mrs_mpc_solvers::mpc_tracker::Solver>("MpcTracker_x", verbose_xy, _max_iters_xy_, xy_Q, dt1_, _dt2_, 0);
+     520          91 :   mpc_solver_z_ = std::make_shared<mrs_mpc_solvers::mpc_tracker::Solver>("MpcTracker_z", verbose_z, _max_iters_z_, z_Q, dt1_, _dt2_, 2);
+     521             :   mpc_solver_heading_ =
+     522          91 :       std::make_shared<mrs_mpc_solvers::mpc_tracker::Solver>("MpcTracker_hdg", verbose_heading, _max_iters_heading_, heading_Q, dt1_, _dt2_, 0);
+     523             : 
+     524          91 :   mpc_x_         = MatrixXd::Zero(MPC_N_STATES, 1);
+     525          91 :   mpc_x_heading_ = MatrixXd::Zero(MPC_HEADING_N_STATES, 1);
+     526             : 
+     527          91 :   mpc_u_ = VectorXd::Zero(MPC_N_INPUTS);
+     528             : 
+     529          91 :   coef_time = ros::Time(0);
+     530             : 
+     531          91 :   des_x_trajectory_       = MatrixXd::Zero(MPC_HORIZON_LENGTH, 1);
+     532          91 :   des_y_trajectory_       = MatrixXd::Zero(MPC_HORIZON_LENGTH, 1);
+     533          91 :   des_z_trajectory_       = MatrixXd::Zero(MPC_HORIZON_LENGTH, 1);
+     534          91 :   des_z_filtered_offset_  = MatrixXd::Zero(MPC_HORIZON_LENGTH, 1);
+     535          91 :   des_heading_trajectory_ = MatrixXd::Zero(MPC_HORIZON_LENGTH, 1);
+     536             : 
+     537          91 :   service_server_wiggle_ = nh_.advertiseService("wiggle", &MpcTracker::callbackWiggle, this);
+     538             : 
+     539          91 :   pub_diagnostics_   = mrs_lib::PublisherHandler<mrs_msgs::MpcTrackerDiagnostics>(nh_, "diagnostics", 1);
+     540          91 :   pub_status_string_ = mrs_lib::PublisherHandler<std_msgs::String>(nh_, "string", 1);
+     541             : 
+     542             :   // extract the numerical name
+     543          91 :   sscanf(_uav_name_.c_str(), "uav%d", &avoidance_this_uav_number_);
+     544          91 :   ROS_INFO("[MpcTracker]: Numerical ID of this UAV is %d", avoidance_this_uav_number_);
+     545          91 :   avoidance_this_uav_priority_ = avoidance_this_uav_number_;
+     546             : 
+     547             :   // exclude this drone from the list
+     548          91 :   std::vector<std::string>::iterator it = _avoidance_other_uav_names_.begin();
+     549         192 :   while (it != _avoidance_other_uav_names_.end()) {
+     550             : 
+     551         101 :     std::string temp_str = *it;
+     552             : 
+     553             :     int other_uav_priority;
+     554         101 :     sscanf(temp_str.c_str(), "uav%d", &other_uav_priority);
+     555             : 
+     556         101 :     if (other_uav_priority == avoidance_this_uav_number_) {
+     557             : 
+     558          91 :       _avoidance_other_uav_names_.erase(it);
+     559          91 :       continue;
+     560             :     }
+     561             : 
+     562          10 :     it++;
+     563             :   }
+     564             : 
+     565             :   // initialize velocity tracker
+     566             : 
+     567          91 :   velocity_reference_time_ = ros::Time(0);
+     568             : 
+     569             :   // create publishers for predicted trajectory
+     570             : 
+     571          91 :   ph_avoidance_trajectory_           = mrs_lib::PublisherHandler<mrs_msgs::FutureTrajectory>(nh_, "predicted_trajectory", 1);
+     572          91 :   ph_predicted_trajectory_debugging_ = mrs_lib::PublisherHandler<geometry_msgs::PoseArray>(nh_, "predicted_trajectory_debugging", 1);
+     573          91 :   ph_mpc_reference_debugging_        = mrs_lib::PublisherHandler<geometry_msgs::PoseArray>(nh_, "mpc_reference_debugging", 1, true);
+     574          91 :   ph_current_trajectory_point_       = mrs_lib::PublisherHandler<geometry_msgs::PoseStamped>(nh_, "current_trajectory_point", 1, true);
+     575             : 
+     576          91 :   pub_debug_processed_trajectory_poses_   = mrs_lib::PublisherHandler<geometry_msgs::PoseArray>(nh_, "trajectory_processed/poses", 1, true);
+     577          91 :   pub_debug_processed_trajectory_markers_ = mrs_lib::PublisherHandler<visualization_msgs::MarkerArray>(nh_, "trajectory_processed/markers", 1, true);
+     578             : 
+     579             :   // preallocate predicted trajectory
+     580          91 :   predicted_trajectory_         = MatrixXd::Zero(MPC_HORIZON_LENGTH * MPC_N_STATES, 1);
+     581          91 :   predicted_heading_trajectory_ = MatrixXd::Zero(MPC_HORIZON_LENGTH * MPC_N_STATES, 1);
+     582             : 
+     583          91 :   collision_free_altitude_ = std::numeric_limits<float>::lowest();
+     584             : 
+     585             :   // collision avoidance toggle service
+     586          91 :   service_server_toggle_avoidance_ = nh_.advertiseService("collision_avoidance", &MpcTracker::callbackToggleCollisionAvoidance, this);
+     587             : 
+     588         182 :   mrs_lib::SubscribeHandlerOptions shopts;
+     589          91 :   shopts.nh                 = nh_;
+     590          91 :   shopts.node_name          = "MpcTracker";
+     591          91 :   shopts.no_message_timeout = mrs_lib::no_timeout;
+     592          91 :   shopts.threadsafe         = true;
+     593          91 :   shopts.autostart          = true;
+     594          91 :   shopts.queue_size         = 10;
+     595          91 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
+     596             : 
+     597             :   // create subscribers on other drones diagnostics
+     598          91 :   if (collision_avoidance_enabled_ || collision_avoidance_enabled_passively_) {
+     599             : 
+     600         101 :     for (int i = 0; i < int(_avoidance_other_uav_names_.size()); i++) {
+     601             : 
+     602          30 :       std::string prediction_topic_name = std::string("/") + _avoidance_other_uav_names_[i] + "/control_manager/mpc_tracker/predicted_trajectory";
+     603          20 :       std::string diag_topic_name       = std::string("/") + _avoidance_other_uav_names_[i] + "/control_manager/mpc_tracker/diagnostics";
+     604             : 
+     605          10 :       ROS_INFO("[MpcTracker]: subscribing to %s", prediction_topic_name.c_str());
+     606             : 
+     607          10 :       other_uav_trajectory_subscribers_.push_back(
+     608          20 :           mrs_lib::SubscribeHandler<mrs_msgs::FutureTrajectory>(shopts, prediction_topic_name, &MpcTracker::callbackOtherMavTrajectory, this));
+     609             : 
+     610          10 :       ROS_INFO("[MpcTracker]: subscribing to %s", diag_topic_name.c_str());
+     611             : 
+     612          10 :       other_uav_diag_subscribers_.push_back(
+     613          20 :           mrs_lib::SubscribeHandler<mrs_msgs::MpcTrackerDiagnostics>(shopts, diag_topic_name, &MpcTracker::callbackOtherMavDiagnostics, this));
+     614             :     }
+     615             :   }
+     616             : 
+     617          91 :   sh_estimation_diag_ = mrs_lib::SubscribeHandler<mrs_msgs::EstimationDiagnostics>(shopts, std::string("/") + _uav_name_ + "/estimation_manager/diagnostics");
+     618             : 
+     619             :   // | --------------- dynamic reconfigure server --------------- |
+     620             : 
+     621          91 :   reconfigure_server_.reset(new ReconfigureServer(config_mutex_, nh_));
+     622          91 :   reconfigure_server_->updateConfig(drs_params_);
+     623          91 :   ReconfigureServer::CallbackType f = boost::bind(&MpcTracker::dynamicReconfigureCallback, this, _1, _2);
+     624          91 :   reconfigure_server_->setCallback(f);
+     625             : 
+     626             :   // | ------------------------ profiler ------------------------ |
+     627             : 
+     628          91 :   profiler = mrs_lib::Profiler(common_handlers->parent_nh, "MpcTracker", _profiler_enabled_);
+     629             : 
+     630             :   // | ------------------------- timers ------------------------- |
+     631             : 
+     632         182 :   timer_avoidance_trajectory_ = nh_.createTimer(ros::Rate(_avoidance_trajectory_rate_), &MpcTracker::timerAvoidanceTrajectory, this, false,
+     633         182 :                                                 collision_avoidance_enabled_ || collision_avoidance_enabled_passively_);
+     634          91 :   timer_diagnostics_          = nh_.createTimer(ros::Rate(_diagnostics_rate_), &MpcTracker::timerDiagnostics, this);
+     635          91 :   timer_mpc_iteration_        = nh_.createTimer(ros::Rate(_mpc_asynchronous_rate_), &MpcTracker::timerMPC, this, false, false);
+     636          91 :   timer_velocity_tracking_    = nh_.createTimer(ros::Rate(30.0), &MpcTracker::timerVelocityTracking, this, false, false);
+     637          91 :   timer_hover_                = nh_.createTimer(ros::Rate(10.0), &MpcTracker::timerHover, this, false, false);
+     638             : 
+     639             :   // | ----------------------- finish init ---------------------- |
+     640             : 
+     641          91 :   is_initialized_ = true;
+     642             : 
+     643          91 :   ROS_INFO("[MpcTracker]: initialized");
+     644             : 
+     645          91 :   return true;
+     646             : }
+     647             : 
+     648             : //}
+     649             : 
+     650             : /* //{ activate() */
+     651             : 
+     652          82 : std::tuple<bool, std::string> MpcTracker::activate(const std::optional<mrs_msgs::TrackerCommand>& last_tracker_cmd) {
+     653             : 
+     654         164 :   std::stringstream ss;
+     655             : 
+     656          82 :   if (!got_constraints_) {
+     657             : 
+     658           0 :     ss << "can not activate, missing constraints";
+     659           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+     660             : 
+     661           0 :     return std::tuple(false, ss.str());
+     662             :   }
+     663             : 
+     664         164 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     665             : 
+     666             :   double uav_state_heading;
+     667             : 
+     668             :   try {
+     669          82 :     uav_state_heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+     670             :   }
+     671           0 :   catch (...) {
+     672           0 :     ss << "could not calculate the UAV heading";
+     673           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+     674           0 :     return std::tuple(false, ss.str());
+     675             :   }
+     676             : 
+     677         164 :   MatrixXd mpc_x         = MatrixXd::Zero(MPC_N_STATES, 1);
+     678          82 :   MatrixXd mpc_x_heading = MatrixXd::Zero(MPC_HEADING_N_STATES, 1);
+     679             : 
+     680          82 :   if (last_tracker_cmd) {
+     681             : 
+     682             :     // set the initial condition from the last tracker's cmd
+     683             : 
+     684          80 :     if (last_tracker_cmd->use_position_horizontal) {
+     685          80 :       mpc_x(0, 0) = last_tracker_cmd->position.x;
+     686          80 :       mpc_x(4, 0) = last_tracker_cmd->position.y;
+     687             :     } else {
+     688           0 :       mpc_x(0, 0) = uav_state.pose.position.x;
+     689           0 :       mpc_x(4, 0) = uav_state.pose.position.y;
+     690             :     }
+     691             : 
+     692          80 :     if (last_tracker_cmd->use_position_vertical) {
+     693          80 :       mpc_x(8, 0) = last_tracker_cmd->position.z;
+     694             :     } else {
+     695           0 :       mpc_x(8, 0) = uav_state.pose.position.z;
+     696             :     }
+     697             : 
+     698          80 :     if (last_tracker_cmd->use_velocity_horizontal) {
+     699          80 :       mpc_x(1, 0) = last_tracker_cmd->velocity.x;
+     700          80 :       mpc_x(5, 0) = last_tracker_cmd->velocity.y;
+     701             :     } else {
+     702           0 :       mpc_x(1, 0) = uav_state.velocity.linear.x;
+     703           0 :       mpc_x(5, 0) = uav_state.velocity.linear.y;
+     704             :     }
+     705             : 
+     706          80 :     if (last_tracker_cmd->use_velocity_vertical) {
+     707          80 :       mpc_x(9, 0) = last_tracker_cmd->velocity.z;
+     708             :     } else {
+     709           0 :       mpc_x(9, 0) = uav_state.velocity.linear.z;
+     710             :     }
+     711             : 
+     712          80 :     if (last_tracker_cmd->use_acceleration) {
+     713           0 :       mpc_x(2, 0)  = last_tracker_cmd->acceleration.x;
+     714           0 :       mpc_x(6, 0)  = last_tracker_cmd->acceleration.y;
+     715           0 :       mpc_x(10, 0) = last_tracker_cmd->acceleration.z;
+     716             :     } else {
+     717          80 :       mpc_x(2, 0)  = 0;
+     718          80 :       mpc_x(6, 0)  = 0;
+     719          80 :       mpc_x(10, 0) = 0;
+     720             :     }
+     721             : 
+     722             :     // the jerks
+     723          80 :     mpc_x(3, 0)  = 0;
+     724          80 :     mpc_x(7, 0)  = 0;
+     725          80 :     mpc_x(11, 0) = 0;
+     726             : 
+     727          80 :     if (last_tracker_cmd->use_heading) {
+     728          80 :       mpc_x_heading(0, 0) = last_tracker_cmd->heading;
+     729           0 :     } else if (last_tracker_cmd->use_orientation) {
+     730             :       try {
+     731           0 :         mpc_x_heading(0, 0) = mrs_lib::AttitudeConverter(last_tracker_cmd->orientation).getHeading();
+     732             :       }
+     733           0 :       catch (...) {
+     734           0 :         mpc_x_heading(0, 0) = uav_state_heading;
+     735             :       }
+     736             :     } else {
+     737           0 :       mpc_x_heading(0, 0) = uav_state_heading;
+     738             :     }
+     739             : 
+     740          80 :     if (last_tracker_cmd->use_heading_rate) {
+     741          20 :       mpc_x_heading(1, 0) = last_tracker_cmd->heading_rate;
+     742             :     } else {
+     743          60 :       mpc_x_heading(1, 0) = uav_state.velocity.angular.z;
+     744             :     }
+     745             : 
+     746          80 :     mpc_x_heading(2, 0) = 0;
+     747          80 :     mpc_x_heading(3, 0) = 0;
+     748             : 
+     749          80 :     ROS_INFO("[MpcTracker]: activated with last tracker's command");
+     750             : 
+     751             :   } else {
+     752             : 
+     753             :     // set the initial condition completely from the uav_state
+     754             : 
+     755           2 :     mpc_x(0, 0) = uav_state.pose.position.x;
+     756           2 :     mpc_x(1, 0) = uav_state.velocity.linear.x;
+     757           2 :     mpc_x(2, 0) = 0;
+     758           2 :     mpc_x(3, 0) = 0;
+     759             : 
+     760           2 :     mpc_x(4, 0) = uav_state.pose.position.y;
+     761           2 :     mpc_x(5, 0) = uav_state.velocity.linear.y;
+     762           2 :     mpc_x(6, 0) = 0;
+     763           2 :     mpc_x(7, 0) = 0;
+     764             : 
+     765           2 :     mpc_x(8, 0)  = uav_state.pose.position.z;
+     766           2 :     mpc_x(9, 0)  = uav_state.velocity.linear.z;
+     767           2 :     mpc_x(10, 0) = 0;
+     768           2 :     mpc_x(11, 0) = 0;
+     769             : 
+     770           2 :     mpc_x_heading(0, 0) = uav_state_heading;
+     771           2 :     mpc_x_heading(1, 0) = uav_state.velocity.angular.z;
+     772           2 :     mpc_x_heading(2, 0) = 0;
+     773           2 :     mpc_x_heading(3, 0) = 0;
+     774             : 
+     775           2 :     ROS_INFO("[MpcTracker]: activated with uav state");
+     776             :   }
+     777             : 
+     778             :   {
+     779         164 :     std::scoped_lock lock(mutex_mpc_x_);
+     780             : 
+     781          82 :     mpc_x_         = mpc_x;
+     782          82 :     mpc_x_heading_ = mpc_x_heading;
+     783             :   }
+     784             : 
+     785          82 :   trajectory_tracking_in_progress_ = false;
+     786             : 
+     787          82 :   ss << "activated";
+     788          82 :   ROS_INFO_STREAM("[MpcTracker]: " << ss.str());
+     789             : 
+     790             :   // this is here to initialize the desired_trajectory vector
+     791             :   // if deleted (and I tried) the UAV will briefly fly to the
+     792             :   // origin after activation
+     793          82 :   setRelativeGoal(0, 0, 0, 0, false);  // do not delete
+     794             : 
+     795          82 :   toggleHover(true);
+     796             : 
+     797          82 :   model_first_iteration_ = true;
+     798             : 
+     799          82 :   A_ = _mat_A_;
+     800          82 :   B_ = _mat_B_;
+     801             : 
+     802          82 :   A_heading_ = _mat_A_heading_;
+     803          82 :   B_heading_ = _mat_B_heading_;
+     804             : 
+     805          82 :   is_active_ = true;
+     806             : 
+     807          82 :   if (!mpc_synchronous_) {
+     808          71 :     timer_mpc_iteration_.start();
+     809             :   }
+     810             : 
+     811          82 :   return std::tuple(true, ss.str());
+     812             : }
+     813             : 
+     814             : //}
+     815             : 
+     816             : /* //{ deactivate() */
+     817             : 
+     818          40 : void MpcTracker::deactivate(void) {
+     819             : 
+     820          40 :   toggleHover(false);
+     821             : 
+     822          40 :   is_active_                       = false;
+     823          40 :   trajectory_tracking_in_progress_ = false;
+     824          40 :   model_first_iteration_           = true;
+     825             : 
+     826             :   {
+     827          40 :     std::scoped_lock lock(mutex_trajectory_tracking_states_);
+     828             : 
+     829          40 :     trajectory_current_time_ = 0;
+     830             :   }
+     831             : 
+     832          40 :   ROS_INFO("[MpcTracker]: deactivated");
+     833             : 
+     834          40 :   timer_mpc_iteration_.stop();
+     835             : 
+     836          40 :   publishDiagnostics();
+     837          40 : }
+     838             : 
+     839             : //}
+     840             : 
+     841             : /* //{ resetStatic() */
+     842             : 
+     843           0 : bool MpcTracker::resetStatic(void) {
+     844             : 
+     845           0 :   if (!is_initialized_) {
+     846           0 :     ROS_ERROR("[MpcTracker]: can not reset, not initialized");
+     847           0 :     return false;
+     848             :   }
+     849             : 
+     850           0 :   if (!is_active_) {
+     851           0 :     ROS_ERROR("[MpcTracker]: can not reset, not active");
+     852           0 :     return false;
+     853             :   }
+     854             : 
+     855           0 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     856             : 
+     857             :   double uav_state_heading;
+     858             : 
+     859             :   try {
+     860           0 :     uav_state_heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+     861             :   }
+     862           0 :   catch (...) {
+     863           0 :     ROS_ERROR_THROTTLE(1.0, "[MpcTracker]: could not calculate the UAV heading");
+     864           0 :     return false;
+     865             :   }
+     866             : 
+     867             :   {
+     868           0 :     std::scoped_lock lock(mutex_mpc_x_);
+     869             : 
+     870             :     // set the initial condition from the odometry
+     871             : 
+     872           0 :     ROS_INFO("[MpcTracker]: reseting with uav state with no dynamics");
+     873             : 
+     874           0 :     mpc_x_(0, 0) = uav_state.pose.position.x;
+     875           0 :     mpc_x_(1, 0) = 0;
+     876           0 :     mpc_x_(2, 0) = 0;
+     877           0 :     mpc_x_(3, 0) = 0;
+     878             : 
+     879           0 :     mpc_x_(4, 0) = uav_state.pose.position.y;
+     880           0 :     mpc_x_(5, 0) = 0;
+     881           0 :     mpc_x_(6, 0) = 0;
+     882           0 :     mpc_x_(7, 0) = 0;
+     883             : 
+     884           0 :     mpc_x_(8, 0)  = uav_state.pose.position.z;
+     885           0 :     mpc_x_(9, 0)  = 0;
+     886           0 :     mpc_x_(10, 0) = 0;
+     887           0 :     mpc_x_(11, 0) = 0;
+     888             : 
+     889           0 :     mpc_x_heading_(0, 0) = uav_state_heading;
+     890           0 :     mpc_x_heading_(1, 0) = 0;
+     891           0 :     mpc_x_heading_(2, 0) = 0;
+     892           0 :     mpc_x_heading_(3, 0) = 0;
+     893             : 
+     894           0 :     trajectory_tracking_in_progress_ = false;
+     895             : 
+     896           0 :     ROS_INFO("[MpcTracker]: reseted");
+     897             :   }
+     898             : 
+     899             :   // this is here to initialize the desired_trajectory vector
+     900             :   // if deleted (and I tried) the UAV will briefly fly to the
+     901             :   // origin after activation
+     902           0 :   setRelativeGoal(0, 0, 0, 0, false);  // do not delete
+     903             : 
+     904           0 :   return true;
+     905             : }
+     906             : 
+     907             : //}
+     908             : 
+     909             : /* //{ update() */
+     910             : 
+     911      120229 : std::optional<mrs_msgs::TrackerCommand> MpcTracker::update(const mrs_msgs::UavState&                                           uav_state,
+     912             :                                                            [[maybe_unused]] const mrs_uav_managers::Controller::ControlOutput& last_control_output) {
+     913             : 
+     914      360687 :   mrs_lib::Routine    profiler_routine = profiler.createRoutine("update");
+     915      360687 :   mrs_lib::ScopeTimer timer            = mrs_lib::ScopeTimer("MpcTracker::update", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+     916             : 
+     917      240458 :   auto old_uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+     918             : 
+     919             :   // the time from the last update call
+     920      120229 :   double dt = (uav_state.header.stamp - old_uav_state.header.stamp).toSec();
+     921             : 
+     922             :   // save the uav state
+     923      120229 :   mrs_lib::set_mutexed(mutex_uav_state_, uav_state, uav_state_);
+     924             : 
+     925      120229 :   if (dt > 0) {
+     926             : 
+     927      120229 :     double rate = 1.0 / dt;
+     928             : 
+     929      120229 :     update_rate_ = 0.9 * update_rate_ + 0.1 * rate;
+     930             : 
+     931      120229 :     if (mpc_synchronous_ && (update_rate_ > _mpc_synchronous_rate_limit_)) {
+     932           0 :       mpc_synchronous_ = false;
+     933           0 :       ROS_INFO("[MpcTracker]: detecting high update date (%.1f Hz > %.1f Hz), switching to asynchronous mode.", rate, _mpc_synchronous_rate_limit_);
+     934           0 :       if (is_active_) {
+     935           0 :         timer_mpc_iteration_.start();
+     936             :       }
+     937      120229 :     } else if (!mpc_synchronous_ && (update_rate_ <= _mpc_synchronous_rate_limit_)) {
+     938          14 :       mpc_synchronous_ = true;
+     939          14 :       ROS_INFO("[MpcTracker]: detecting low update rate (%.1f Hz < %.1f Hz), switching to synchronous mode.", rate, _mpc_synchronous_rate_limit_);
+     940          14 :       timer_mpc_iteration_.stop();
+     941             :     }
+     942             :   }
+     943             : 
+     944             :   // up to this part the update() method is evaluated even when the tracker is not active
+     945      120229 :   if (!is_active_) {
+     946       55854 :     return {};
+     947             :   }
+     948             : 
+     949      128750 :   mrs_msgs::TrackerCommand tracker_cmd;
+     950             : 
+     951       64375 :   if (!mpc_synchronous_ && (!mpc_computed_ || mpc_result_invalid_)) {
+     952             : 
+     953          62 :     ROS_WARN_THROTTLE(0.1, "[MpcTracker]: MPC not ready, returning current odom as the command");
+     954             : 
+     955             :     // set the header
+     956          62 :     tracker_cmd.header.stamp    = uav_state.header.stamp;
+     957          62 :     tracker_cmd.header.frame_id = uav_state.header.frame_id;
+     958             : 
+     959             :     // set positions from odom
+     960          62 :     tracker_cmd.position.x              = uav_state.pose.position.x;
+     961          62 :     tracker_cmd.position.y              = uav_state.pose.position.y;
+     962          62 :     tracker_cmd.position.z              = uav_state.pose.position.z;
+     963          62 :     tracker_cmd.use_position_vertical   = 1;
+     964          62 :     tracker_cmd.use_position_horizontal = 1;
+     965             : 
+     966             :     // set velocities from odom
+     967          62 :     tracker_cmd.velocity.x              = uav_state.velocity.linear.x;
+     968          62 :     tracker_cmd.velocity.y              = uav_state.velocity.linear.y;
+     969          62 :     tracker_cmd.velocity.z              = uav_state.velocity.linear.z;
+     970          62 :     tracker_cmd.use_velocity_vertical   = 1;
+     971          62 :     tracker_cmd.use_velocity_horizontal = 1;
+     972             : 
+     973             :     // set zero accelerations
+     974          62 :     tracker_cmd.acceleration.x   = 0;
+     975          62 :     tracker_cmd.acceleration.y   = 0;
+     976          62 :     tracker_cmd.acceleration.z   = 0;
+     977          62 :     tracker_cmd.use_acceleration = 1;
+     978             : 
+     979             :     try {
+     980          62 :       tracker_cmd.heading     = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+     981          62 :       tracker_cmd.use_heading = 1;
+     982             :     }
+     983           0 :     catch (...) {
+     984           0 :       tracker_cmd.use_heading = 0;
+     985           0 :       ROS_WARN_THROTTLE(1.0, "[MpcTracker]: could not calculate the current UAV heading");
+     986             :     }
+     987             : 
+     988             :     // set zero jerk
+     989          62 :     tracker_cmd.jerk.x = 0;
+     990          62 :     tracker_cmd.jerk.y = 0;
+     991          62 :     tracker_cmd.jerk.z = 0;
+     992             : 
+     993             :     try {
+     994          62 :       tracker_cmd.heading_rate     = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeadingRate(uav_state.velocity.angular);
+     995          62 :       tracker_cmd.use_heading_rate = 1;
+     996             :     }
+     997           0 :     catch (...) {
+     998           0 :       tracker_cmd.use_heading_rate = 0;
+     999           0 :       ROS_WARN_THROTTLE(1.0, "[MpcTracker]: could not calculate the current UAV heading rate");
+    1000             :     }
+    1001             : 
+    1002          62 :     return {tracker_cmd};
+    1003             :   }
+    1004             : 
+    1005       64313 :   if (mpc_synchronous_) {
+    1006             : 
+    1007        3609 :     ROS_DEBUG_THROTTLE(1.0, "[MpcTracker]: running in SYNCHRONOUS mode");
+    1008             : 
+    1009        3609 :     if (synchronous_timer_event_.last_real.toSec() > 0) {
+    1010        3595 :       synchronous_timer_event_.last_real = synchronous_timer_event_.current_real;
+    1011             :     } else {
+    1012          14 :       synchronous_timer_event_.last_real = ros::Time::now();
+    1013             :     }
+    1014             : 
+    1015        3609 :     synchronous_timer_event_.current_real = ros::Time::now();
+    1016             : 
+    1017        3609 :     timerMPC(synchronous_timer_event_);
+    1018             : 
+    1019             :   } else {
+    1020       60704 :     ROS_DEBUG_THROTTLE(1.0, "[MpcTracker]: running in ASYNCHRONOUS mode");
+    1021             :   }
+    1022             : 
+    1023       64313 :   if (dt > 0) {
+    1024       64313 :     iterateModel(dt);
+    1025             :   } else {
+    1026           0 :     ROS_WARN_THROTTLE(1.0, "[MpcTracker]: dt !> 0, not iterating the model");
+    1027             :   }
+    1028             : 
+    1029      128626 :   auto [mpc_x, mpc_x_heading] = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_, mpc_x_heading_);
+    1030      128626 :   auto prediction_full_state  = mrs_lib::get_mutexed(mutex_prediction_full_state_, prediction_full_state_);
+    1031             : 
+    1032             :   // check whether all outputs are finite
+    1033       64313 :   bool arefinite = true;
+    1034      836069 :   for (int i = 0; i < 12; i++) {
+    1035      771756 :     if (!std::isfinite(mpc_x(i, 0))) {
+    1036           0 :       arefinite = false;
+    1037             :     }
+    1038             :   }
+    1039             : 
+    1040       64313 :   if (arefinite) {
+    1041             : 
+    1042             :     // set the desired states base on the result of the mpc
+    1043       64313 :     tracker_cmd.position.x     = mpc_x(0, 0);
+    1044       64313 :     tracker_cmd.velocity.x     = mpc_x(1, 0);
+    1045       64313 :     tracker_cmd.acceleration.x = mpc_x(2, 0);
+    1046       64313 :     tracker_cmd.jerk.x         = mpc_x(3, 0);
+    1047             : 
+    1048       64313 :     tracker_cmd.position.y     = mpc_x(4, 0);
+    1049       64313 :     tracker_cmd.velocity.y     = mpc_x(5, 0);
+    1050       64313 :     tracker_cmd.acceleration.y = mpc_x(6, 0);
+    1051       64313 :     tracker_cmd.jerk.y         = mpc_x(7, 0);
+    1052             : 
+    1053       64313 :     tracker_cmd.position.z     = mpc_x(8, 0);
+    1054       64313 :     tracker_cmd.velocity.z     = mpc_x(9, 0);
+    1055       64313 :     tracker_cmd.acceleration.z = mpc_x(10, 0);
+    1056       64313 :     tracker_cmd.jerk.z         = mpc_x(11, 0);
+    1057             : 
+    1058       64313 :     tracker_cmd.full_state_prediction = prediction_full_state;
+    1059             : 
+    1060       64313 :     tracker_cmd.use_position_vertical     = 1;
+    1061       64313 :     tracker_cmd.use_position_horizontal   = 1;
+    1062       64313 :     tracker_cmd.use_velocity_vertical     = 1;
+    1063       64313 :     tracker_cmd.use_velocity_horizontal   = 1;
+    1064       64313 :     tracker_cmd.use_acceleration          = 1;
+    1065       64313 :     tracker_cmd.use_jerk                  = 1;
+    1066       64313 :     tracker_cmd.use_full_state_prediction = 1;
+    1067             : 
+    1068             :   } else {
+    1069             : 
+    1070           0 :     ROS_ERROR_THROTTLE(1.0, "[MpcTracker]: MPC translation outputs are not finite!");
+    1071             : 
+    1072           0 :     return {};
+    1073             :   }
+    1074             : 
+    1075       64313 :   bool heading_finite = true;
+    1076      321565 :   for (int i = 0; i < MPC_HEADING_N_STATES; i++) {
+    1077      257252 :     if (!std::isfinite(mpc_x_heading(i, 0))) {
+    1078           0 :       heading_finite = false;
+    1079             :     }
+    1080             :   }
+    1081             : 
+    1082       64313 :   if (heading_finite) {
+    1083             : 
+    1084       64313 :     tracker_cmd.heading              = mpc_x_heading(0, 0);
+    1085       64313 :     tracker_cmd.heading_rate         = mpc_x_heading(1, 0);
+    1086       64313 :     tracker_cmd.heading_acceleration = mpc_x_heading(2, 0);
+    1087       64313 :     tracker_cmd.heading_jerk         = mpc_x_heading(3, 0);
+    1088             : 
+    1089       64313 :     tracker_cmd.use_heading              = 1;
+    1090       64313 :     tracker_cmd.use_heading_rate         = 1;
+    1091       64313 :     tracker_cmd.use_heading_acceleration = 1;
+    1092       64313 :     tracker_cmd.use_heading_jerk         = 1;
+    1093             : 
+    1094             :   } else {
+    1095             : 
+    1096           0 :     ROS_ERROR_THROTTLE(1.0, "[MpcTracker]: MPC heading output is not finite!");
+    1097             : 
+    1098           0 :     return {};
+    1099             :   }
+    1100             : 
+    1101             :   // set the header
+    1102       64313 :   tracker_cmd.header.stamp    = uav_state.header.stamp;
+    1103       64313 :   tracker_cmd.header.frame_id = uav_state.header.frame_id;
+    1104             : 
+    1105             :   // u have to return a position command
+    1106             :   // can set the jerk to 0
+    1107       64313 :   return {tracker_cmd};
+    1108             : }  // namespace mpc_tracker
+    1109             : 
+    1110             : //}
+    1111             : 
+    1112             : /* //{ getStatus() */
+    1113             : 
+    1114        7500 : const mrs_msgs::TrackerStatus MpcTracker::getStatus() {
+    1115             : 
+    1116       15000 :   auto [mpc_x, mpc_x_heading] = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_, mpc_x_heading_);
+    1117        7500 :   auto trajectory_size        = mrs_lib::get_mutexed(mutex_des_trajectory_, trajectory_size_);
+    1118             : 
+    1119             :   double des_x, des_y, des_z, des_heading;
+    1120             :   {
+    1121        7500 :     std::scoped_lock lock(mutex_des_trajectory_);
+    1122             : 
+    1123        7500 :     des_x       = des_x_trajectory_(0);
+    1124        7500 :     des_y       = des_y_trajectory_(0);
+    1125        7500 :     des_z       = des_z_trajectory_(0);
+    1126        7500 :     des_heading = des_heading_trajectory_(0);
+    1127             :   }
+    1128             : 
+    1129        7500 :   mrs_msgs::TrackerStatus tracker_status;
+    1130             : 
+    1131        7500 :   tracker_status.active            = is_active_;
+    1132        7500 :   tracker_status.callbacks_enabled = is_active_ && callbacks_enabled_ && !hovering_in_progress_;
+    1133             : 
+    1134        7500 :   tracker_status.tracking_trajectory = trajectory_tracking_in_progress_;
+    1135             : 
+    1136        7500 :   bool have_position_error   = sqrt(pow(mpc_x(0, 0) - des_x, 2) + pow(mpc_x(4, 0) - des_y, 2) + pow(mpc_x(8, 0) - des_z, 2)) > _diag_pos_tracking_thr_;
+    1137        7500 :   bool have_heading_error    = fabs(radians::diff(mpc_x_heading(0), des_heading)) > _diag_heading_tracking_thr_;
+    1138        7500 :   bool have_nonzero_velocity = fabs(mpc_x(1, 0)) > 0.1 || fabs(mpc_x(5, 0)) > 0.1 || fabs(mpc_x(9, 0)) > 0.1 || fabs(mpc_x_heading(1, 0)) > 0.1;
+    1139             : 
+    1140        7500 :   tracker_status.have_goal = trajectory_tracking_in_progress_ || hovering_in_progress_ || have_position_error || have_heading_error || have_nonzero_velocity;
+    1141             : 
+    1142        7500 :   int trajectory_tracking_idx = getCurrentTrajectoryIdx();
+    1143             : 
+    1144        7500 :   tracker_status.trajectory_length = trajectory_size;
+    1145        7500 :   tracker_status.trajectory_idx    = trajectory_tracking_idx;
+    1146             : 
+    1147        7500 :   if (trajectory_tracking_in_progress_) {
+    1148             : 
+    1149        2662 :     auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    1150             : 
+    1151        2662 :     std::scoped_lock lock(mutex_des_whole_trajectory_);
+    1152             : 
+    1153        1331 :     tracker_status.trajectory_reference.header.stamp    = ros::Time::now();
+    1154        1331 :     tracker_status.trajectory_reference.header.frame_id = uav_state.header.frame_id;
+    1155             : 
+    1156        1331 :     tracker_status.trajectory_reference.reference.position.x = (*des_x_whole_trajectory_)(trajectory_tracking_idx);
+    1157        1331 :     tracker_status.trajectory_reference.reference.position.y = (*des_y_whole_trajectory_)(trajectory_tracking_idx);
+    1158        1331 :     tracker_status.trajectory_reference.reference.position.z = (*des_z_whole_trajectory_)(trajectory_tracking_idx);
+    1159        1331 :     tracker_status.trajectory_reference.reference.heading    = (*des_heading_whole_trajectory_)(trajectory_tracking_idx);
+    1160             : 
+    1161             :     // | ---------- publish the current trajectory point ---------- |
+    1162             : 
+    1163        2662 :     geometry_msgs::PoseStamped debug_trajectory_point;
+    1164        1331 :     debug_trajectory_point.header.stamp    = ros::Time::now();
+    1165        1331 :     debug_trajectory_point.header.frame_id = uav_state_.header.frame_id;
+    1166             : 
+    1167        1331 :     debug_trajectory_point.pose.position.x = (*des_x_whole_trajectory_)(trajectory_tracking_idx);
+    1168        1331 :     debug_trajectory_point.pose.position.y = (*des_y_whole_trajectory_)(trajectory_tracking_idx);
+    1169        1331 :     debug_trajectory_point.pose.position.z = (*des_z_whole_trajectory_)(trajectory_tracking_idx);
+    1170             : 
+    1171        1331 :     debug_trajectory_point.pose.orientation = mrs_lib::AttitudeConverter(0, 0, (*des_heading_whole_trajectory_)(trajectory_tracking_idx));
+    1172             : 
+    1173        1331 :     ph_current_trajectory_point_.publish(debug_trajectory_point);
+    1174             :   }
+    1175             : 
+    1176       15000 :   return tracker_status;
+    1177             : }
+    1178             : 
+    1179             : //}
+    1180             : 
+    1181             : /* //{ enableCallbacks() */
+    1182             : 
+    1183        1691 : const std_srvs::SetBoolResponse::ConstPtr MpcTracker::enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr& cmd) {
+    1184             : 
+    1185        3382 :   std::stringstream ss;
+    1186             : 
+    1187        1691 :   if (cmd->data != callbacks_enabled_) {
+    1188             : 
+    1189        1399 :     callbacks_enabled_ = cmd->data;
+    1190        1399 :     ss << "callbacks %s" << (callbacks_enabled_ ? "enabled" : "disabled");
+    1191             : 
+    1192             :   } else {
+    1193             : 
+    1194         292 :     ss << "callbacks were already %s" << (callbacks_enabled_ ? "enabled" : "disabled");
+    1195             :   }
+    1196             : 
+    1197        3382 :   std_srvs::SetBoolResponse res;
+    1198        1691 :   res.message = ss.str();
+    1199        1691 :   res.success = true;
+    1200             : 
+    1201        3382 :   return std_srvs::SetBoolResponse::ConstPtr(new std_srvs::SetBoolResponse(res));
+    1202             : }
+    1203             : 
+    1204             : //}
+    1205             : 
+    1206             : /* switchOdometrySource() //{ */
+    1207             : 
+    1208           5 : const std_srvs::TriggerResponse::ConstPtr MpcTracker::switchOdometrySource(const mrs_msgs::UavState& new_uav_state) {
+    1209             : 
+    1210           5 :   odometry_reset_in_progress_ = true;
+    1211           5 :   mpc_result_invalid_         = true;
+    1212             : 
+    1213          10 :   auto x         = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_);
+    1214          10 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    1215             : 
+    1216           5 :   ROS_INFO(
+    1217             :       "[MpcTracker]: start of odmetry reset, curent state [x: %.2f, y: %.2f, z: %.2f] [x_d: %.2f, y_d: %.2f, z_d: %.2f] [x_dd: %.2f, y_dd: %.2f, z_dd: "
+    1218             :       "%.2f], "
+    1219             :       "new odom [x: %.2f, y: %.2f, z: %.2f] [x_d: %.2f, y_d: %.2f, z_d: %.2f] [x_dd: %.2f, y_dd: %.2f, z_dd: %.2f]",
+    1220             :       x(0, 0), x(4, 0), x(8, 0), x(1, 0), x(5, 0), x(9, 0), x(2, 0), x(6, 0), x(10, 0), new_uav_state.pose.position.x, new_uav_state.pose.position.y,
+    1221             :       new_uav_state.pose.position.z, new_uav_state.velocity.linear.x, new_uav_state.velocity.linear.y, new_uav_state.velocity.linear.z,
+    1222             :       new_uav_state.acceleration.linear.x, new_uav_state.acceleration.linear.y, new_uav_state.acceleration.linear.z);
+    1223             : 
+    1224           5 :   timer_mpc_iteration_.stop();
+    1225           5 :   ROS_INFO("[MpcTracker]: mpc timer stopped");
+    1226             : 
+    1227           5 :   while (mpc_timer_running_) {
+    1228             : 
+    1229           2 :     ROS_DEBUG("[MpcTracker]: the mpc is in the middle of an iteration, waiting for it to finish");
+    1230           2 :     ros::Duration wait(0.001);
+    1231           2 :     wait.sleep();
+    1232             : 
+    1233           2 :     if (!mpc_timer_running_) {
+    1234           2 :       ROS_DEBUG("[MpcTracker]: mpc timer finished");
+    1235           2 :       break;
+    1236             :     }
+    1237             :   }
+    1238             : 
+    1239             :   // | --------- recalculate the goal to new coordinates -------- |
+    1240             : 
+    1241           5 :   double old_heading  = 0;
+    1242           5 :   double new_heading  = 0;
+    1243           5 :   bool   got_headings = true;
+    1244             : 
+    1245             :   try {
+    1246           5 :     old_heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
+    1247             :   }
+    1248           0 :   catch (...) {
+    1249           0 :     ROS_ERROR_THROTTLE(1.0, "[LineTracker]: could not calculate the old UAV heading");
+    1250           0 :     got_headings = false;
+    1251             :   }
+    1252             : 
+    1253             :   try {
+    1254           5 :     new_heading = mrs_lib::AttitudeConverter(new_uav_state.pose.orientation).getHeading();
+    1255             :   }
+    1256           0 :   catch (...) {
+    1257           0 :     ROS_ERROR_THROTTLE(1.0, "[LineTracker]: could not calculate the new UAV heading");
+    1258           0 :     got_headings = false;
+    1259             :   }
+    1260             : 
+    1261          10 :   std_srvs::TriggerResponse res;
+    1262             : 
+    1263           5 :   if (!got_headings) {
+    1264           0 :     res.message = "could not calculate the heading difference";
+    1265           0 :     res.success = false;
+    1266             : 
+    1267           0 :     return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+    1268             :   }
+    1269             : 
+    1270             :   // calculate the difference of position
+    1271           5 :   double dx       = new_uav_state.pose.position.x - uav_state_.pose.position.x;
+    1272           5 :   double dy       = new_uav_state.pose.position.y - uav_state_.pose.position.y;
+    1273           5 :   double dz       = new_uav_state.pose.position.z - uav_state_.pose.position.z;
+    1274           5 :   double dheading = new_heading - old_heading;
+    1275             : 
+    1276           5 :   ROS_INFO("[MpcTracker]: dx %f dy %f dz %f dheading %f", dx, dy, dz, dheading);
+    1277             : 
+    1278             :   {
+    1279           5 :     std::scoped_lock lock(mutex_mpc_x_, mutex_des_trajectory_, mutex_des_whole_trajectory_, mutex_uav_state_);
+    1280             : 
+    1281           5 :     if (trajectory_set_) {
+    1282             : 
+    1283           0 :       for (int i = 0; i < trajectory_size_ + MPC_HORIZON_LENGTH; i++) {
+    1284             : 
+    1285           0 :         Eigen::Vector2d temp_vec((*des_x_whole_trajectory_)(i)-uav_state_.pose.position.x, (*des_y_whole_trajectory_)(i)-uav_state_.pose.position.y);
+    1286           0 :         temp_vec = Eigen::Rotation2D<double>(dheading).toRotationMatrix() * temp_vec;
+    1287             : 
+    1288           0 :         (*des_x_whole_trajectory_)(i) = new_uav_state.pose.position.x + temp_vec[0];
+    1289           0 :         (*des_y_whole_trajectory_)(i) = new_uav_state.pose.position.y + temp_vec[1];
+    1290           0 :         (*des_z_whole_trajectory_)(i) += dz;
+    1291           0 :         (*des_heading_whole_trajectory_)(i) += dheading;
+    1292             :       }
+    1293             :     }
+    1294             : 
+    1295         205 :     for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    1296             : 
+    1297         200 :       Eigen::Vector2d temp_vec(des_x_trajectory_(i) - uav_state_.pose.position.x, des_y_trajectory_(i) - uav_state_.pose.position.y);
+    1298         200 :       temp_vec = Eigen::Rotation2D<double>(dheading).toRotationMatrix() * temp_vec;
+    1299             : 
+    1300         200 :       des_x_trajectory_(i, 0) = new_uav_state.pose.position.x + temp_vec[0];
+    1301         200 :       des_y_trajectory_(i, 0) = new_uav_state.pose.position.y + temp_vec[1];
+    1302         200 :       des_z_trajectory_(i, 0) += dz;
+    1303         200 :       des_heading_trajectory_(i, 0) += dheading;
+    1304             :     }
+    1305             : 
+    1306             :     // update the position
+    1307             :     {
+    1308           5 :       Eigen::Vector2d temp_vec(mpc_x_(0, 0) - uav_state_.pose.position.x, mpc_x_(4, 0) - uav_state_.pose.position.y);
+    1309           5 :       temp_vec     = Eigen::Rotation2D<double>(dheading).toRotationMatrix() * temp_vec;
+    1310           5 :       mpc_x_(0, 0) = new_uav_state.pose.position.x + temp_vec[0];
+    1311           5 :       mpc_x_(4, 0) = new_uav_state.pose.position.y + temp_vec[1];
+    1312           5 :       mpc_x_(8, 0) += dz;
+    1313             :     }
+    1314             : 
+    1315             :     // update the velocity
+    1316             :     {
+    1317           5 :       mpc_x_(1, 0) = new_uav_state.velocity.linear.x;
+    1318           5 :       mpc_x_(5, 0) = new_uav_state.velocity.linear.y;
+    1319             :       // we leave the z velocity as it was in the original frame
+    1320             :     }
+    1321             : 
+    1322             :     // update the acceleration
+    1323             :     {
+    1324           5 :       mpc_x_(2, 0)  = 0;
+    1325           5 :       mpc_x_(6, 0)  = 0;
+    1326           5 :       mpc_x_(10, 0) = 0;
+    1327             :     }
+    1328             : 
+    1329             :     // update the heading and its derivative
+    1330           5 :     mpc_x_heading_(0, 0) += dheading;
+    1331           5 :     mpc_x_heading_(1, 0) = new_uav_state.velocity.angular.x;
+    1332             :   }
+    1333             : 
+    1334           5 :   ROS_INFO(
+    1335             :       "[MpcTracker]: start of odmetry reset, curent state [x: %.2f, y: %.2f, z: %.2f] [x_d: %.2f, y_d: %.2f, z_d: %.2f] [x_dd: %.2f, y_dd: %.2f, z_dd: "
+    1336             :       "%.2f]",
+    1337             :       x(0, 0), x(4, 0), x(8, 0), x(1, 0), x(5, 0), x(9, 0), x(2, 0), x(6, 0), x(10, 0));
+    1338             : 
+    1339           5 :   ROS_INFO("[MpcTracker]: starting the MPC timer");
+    1340             : 
+    1341           5 :   if (!mpc_synchronous_) {
+    1342           5 :     timer_mpc_iteration_.start();
+    1343             :   }
+    1344             : 
+    1345           5 :   odometry_reset_in_progress_ = false;
+    1346             : 
+    1347           5 :   return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+    1348             : }
+    1349             : 
+    1350             : //}
+    1351             : 
+    1352             : /* //{ hover() */
+    1353             : 
+    1354           0 : const std_srvs::TriggerResponse::ConstPtr MpcTracker::hover([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr& cmd) {
+    1355             : 
+    1356           0 :   toggleHover(true);
+    1357             : 
+    1358           0 :   std::stringstream ss;
+    1359           0 :   ss << "initiating hover";
+    1360             : 
+    1361           0 :   std_srvs::TriggerResponse res;
+    1362           0 :   res.success = true;
+    1363           0 :   res.message = ss.str();
+    1364             : 
+    1365           0 :   return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+    1366             : }
+    1367             : 
+    1368             : //}
+    1369             : 
+    1370             : /* //{ startTrajectoryTracking() */
+    1371             : 
+    1372           1 : const std_srvs::TriggerResponse::ConstPtr MpcTracker::startTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr& cmd) {
+    1373           2 :   std::stringstream ss;
+    1374             : 
+    1375           2 :   auto [success, message] = startTrajectoryTrackingImpl();
+    1376             : 
+    1377           2 :   std_srvs::TriggerResponse res;
+    1378           1 :   res.success = success;
+    1379           1 :   res.message = message;
+    1380             : 
+    1381           2 :   return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+    1382             : }
+    1383             : 
+    1384             : //}
+    1385             : 
+    1386             : /* //{ stopTrajectoryTracking() */
+    1387             : 
+    1388           0 : const std_srvs::TriggerResponse::ConstPtr MpcTracker::stopTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr& cmd) {
+    1389             : 
+    1390           0 :   auto [success, message] = stopTrajectoryTrackingImpl();
+    1391             : 
+    1392           0 :   std_srvs::TriggerResponse res;
+    1393           0 :   res.success = success;
+    1394           0 :   res.message = message;
+    1395             : 
+    1396           0 :   return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+    1397             : }
+    1398             : 
+    1399             : //}
+    1400             : 
+    1401             : /* //{ resumeTrajectoryTracking() */
+    1402             : 
+    1403           0 : const std_srvs::TriggerResponse::ConstPtr MpcTracker::resumeTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr& cmd) {
+    1404             : 
+    1405           0 :   auto [success, message] = resumeTrajectoryTrackingImpl();
+    1406             : 
+    1407           0 :   std_srvs::TriggerResponse res;
+    1408           0 :   res.success = success;
+    1409           0 :   res.message = message;
+    1410             : 
+    1411           0 :   return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+    1412             : }
+    1413             : 
+    1414             : //}
+    1415             : 
+    1416             : /* //{ gotoTrajectoryStart() */
+    1417             : 
+    1418           1 : const std_srvs::TriggerResponse::ConstPtr MpcTracker::gotoTrajectoryStart([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr& cmd) {
+    1419             : 
+    1420           2 :   auto [success, message] = gotoTrajectoryStartImpl();
+    1421             : 
+    1422           2 :   std_srvs::TriggerResponse res;
+    1423           1 :   res.success = success;
+    1424           1 :   res.message = message;
+    1425             : 
+    1426           2 :   return std_srvs::TriggerResponse::ConstPtr(new std_srvs::TriggerResponse(res));
+    1427             : }
+    1428             : 
+    1429             : //}
+    1430             : 
+    1431             : /* //{ setConstraints() */
+    1432             : 
+    1433         299 : const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr MpcTracker::setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr& constraints) {
+    1434             : 
+    1435         299 :   if (!is_initialized_) {
+    1436           0 :     return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse());
+    1437             :   }
+    1438             : 
+    1439         299 :   mrs_lib::set_mutexed(mutex_constraints_, constraints->constraints, constraints_);
+    1440             : 
+    1441             :   // directly updated the speeds in the constraints
+    1442             :   // the reset needs to wait for manageConstraints()
+    1443             :   {
+    1444         598 :     std::scoped_lock lock(mutex_constraints_filtered_);
+    1445             : 
+    1446             :     // important! this needs to be done to initialize the full struct
+    1447         299 :     if (!got_constraints_) {
+    1448             : 
+    1449          91 :       constraints_filtered_ = constraints->constraints;
+    1450             : 
+    1451             :     } else {
+    1452             : 
+    1453         208 :       constraints_filtered_.horizontal_speed          = constraints->constraints.horizontal_speed;
+    1454         208 :       constraints_filtered_.vertical_ascending_speed  = constraints->constraints.vertical_ascending_speed;
+    1455         208 :       constraints_filtered_.vertical_descending_speed = constraints->constraints.vertical_descending_speed;
+    1456         208 :       constraints_filtered_.heading_speed             = constraints->constraints.heading_speed;
+    1457             :     }
+    1458             :   }
+    1459             : 
+    1460         299 :   got_constraints_ = true;
+    1461             : 
+    1462         299 :   all_constraints_set_ = false;
+    1463             : 
+    1464         299 :   ROS_INFO("[MpcTracker]: updating constraints");
+    1465             : 
+    1466         598 :   mrs_msgs::DynamicsConstraintsSrvResponse res;
+    1467         299 :   res.success = true;
+    1468         299 :   res.message = "constraints updated";
+    1469             : 
+    1470         299 :   return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse(res));
+    1471             : }
+    1472             : 
+    1473             : //}
+    1474             : 
+    1475             : /* //{ setReference() */
+    1476             : 
+    1477         261 : const mrs_msgs::ReferenceSrvResponse::ConstPtr MpcTracker::setReference(const mrs_msgs::ReferenceSrvRequest::ConstPtr& cmd) {
+    1478             : 
+    1479         261 :   toggleHover(false);
+    1480             : 
+    1481         261 :   setGoal(cmd->reference.position.x, cmd->reference.position.y, cmd->reference.position.z, cmd->reference.heading, true);
+    1482             : 
+    1483         522 :   mrs_msgs::ReferenceSrvResponse res;
+    1484         261 :   res.success = true;
+    1485         261 :   res.message = "reference set";
+    1486             : 
+    1487         522 :   return mrs_msgs::ReferenceSrvResponse::ConstPtr(new mrs_msgs::ReferenceSrvResponse(res));
+    1488             : }
+    1489             : 
+    1490             : //}
+    1491             : 
+    1492             : /* //{ setVelocityReference() */
+    1493             : 
+    1494         477 : const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr MpcTracker::setVelocityReference(const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr& cmd) {
+    1495             : 
+    1496         477 :   if (!is_initialized_) {
+    1497           0 :     return mrs_msgs::VelocityReferenceSrvResponse::Ptr();
+    1498             :   }
+    1499             : 
+    1500             :   {
+    1501         477 :     std::scoped_lock lock(mutex_velocity_reference_);
+    1502             : 
+    1503         477 :     velocity_reference_time_ = ros::Time::now();
+    1504             : 
+    1505         477 :     velocity_reference_ = cmd->reference;
+    1506             :   }
+    1507             : 
+    1508         477 :   if (!velocity_tracking_active_) {
+    1509             : 
+    1510           2 :     ROS_INFO("[MpcTracker]: starting velocity tracking timer");
+    1511             : 
+    1512           2 :     timer_velocity_tracking_.stop();
+    1513           2 :     timer_velocity_tracking_.start();
+    1514             : 
+    1515           2 :     velocity_tracking_active_ = true;
+    1516             :   }
+    1517             : 
+    1518         954 :   mrs_msgs::VelocityReferenceSrvResponse response;
+    1519         477 :   response.success = true;
+    1520         477 :   response.message = "reference set";
+    1521             : 
+    1522         477 :   return mrs_msgs::VelocityReferenceSrvResponse::ConstPtr(new mrs_msgs::VelocityReferenceSrvResponse(response));
+    1523             : }
+    1524             : 
+    1525             : //}
+    1526             : 
+    1527             : /* //{ setTrajectoryReference() */
+    1528             : 
+    1529           4 : const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr MpcTracker::setTrajectoryReference([
+    1530             :     [maybe_unused]] const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr& cmd) {
+    1531             : 
+    1532           8 :   std::stringstream ss;
+    1533             : 
+    1534          12 :   auto [success, message, modified] = loadTrajectory(cmd->trajectory);
+    1535             : 
+    1536           8 :   mrs_msgs::TrajectoryReferenceSrvResponse response;
+    1537           4 :   response.success  = success;
+    1538           4 :   response.message  = message;
+    1539           4 :   response.modified = modified;
+    1540             : 
+    1541           8 :   return mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr(new mrs_msgs::TrajectoryReferenceSrvResponse(response));
+    1542             : }
+    1543             : 
+    1544             : //}
+    1545             : 
+    1546             : // | ------------------------ callbacks ----------------------- |
+    1547             : 
+    1548             : /* //{ callbackOtherMavTrajectory() */
+    1549             : 
+    1550         287 : void MpcTracker::callbackOtherMavTrajectory(const mrs_msgs::FutureTrajectory::ConstPtr msg) {
+    1551             : 
+    1552         287 :   if (!is_initialized_) {
+    1553           0 :     return;
+    1554             :   }
+    1555             : 
+    1556         574 :   mrs_lib::Routine    profiler_routine = profiler.createRoutine("callbackOtherMavTrajectory");
+    1557             :   mrs_lib::ScopeTimer timer =
+    1558         574 :       mrs_lib::ScopeTimer("MpcTracker::callbackOtherMavTrajectory", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+    1559             : 
+    1560         287 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    1561             : 
+    1562         287 :   mrs_msgs::FutureTrajectory trajectory = *msg;
+    1563             : 
+    1564             :   // the times might not be synchronized, so just remember the time of receiving it
+    1565         287 :   trajectory.stamp = ros::Time::now();
+    1566             : 
+    1567             :   // transform it from the utm origin to the currently used frame
+    1568         574 :   auto res = common_handlers_->transformer->getTransform("utm_origin", uav_state.header.frame_id, ros::Time::now());
+    1569             : 
+    1570         287 :   if (!res) {
+    1571             : 
+    1572           0 :     std::string message = "[MpcTracker]: can not transform other drone trajectory to the current frame";
+    1573           0 :     ROS_WARN_STREAM_ONCE(message);
+    1574           0 :     ROS_DEBUG_STREAM_THROTTLE(1.0, message);
+    1575             : 
+    1576           0 :     return;
+    1577             :   }
+    1578             : 
+    1579         287 :   geometry_msgs::TransformStamped tf = res.value();
+    1580             : 
+    1581       11767 :   for (int i = 0; i < int(trajectory.points.size()); i++) {
+    1582             : 
+    1583       11480 :     geometry_msgs::PoseStamped original_pose;
+    1584             : 
+    1585       11480 :     original_pose.pose.position.x = trajectory.points[i].x;
+    1586       11480 :     original_pose.pose.position.y = trajectory.points[i].y;
+    1587       11480 :     original_pose.pose.position.z = trajectory.points[i].z;
+    1588             : 
+    1589       11480 :     original_pose.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+    1590             : 
+    1591       11480 :     auto res = common_handlers_->transformer->transform(original_pose, tf);
+    1592             : 
+    1593       11480 :     if (res) {
+    1594       11480 :       trajectory.points[i].x = res.value().pose.position.x;
+    1595       11480 :       trajectory.points[i].y = res.value().pose.position.y;
+    1596       11480 :       trajectory.points[i].z = res.value().pose.position.z;
+    1597             :     } else {
+    1598             : 
+    1599           0 :       std::string message = "[MpcTracker]: could not transform point of other uav future trajectory!";
+    1600           0 :       ROS_WARN_STREAM_ONCE(message);
+    1601           0 :       ROS_DEBUG_STREAM_THROTTLE(1.0, message);
+    1602             : 
+    1603           0 :       return;
+    1604             :     }
+    1605             :   }
+    1606             : 
+    1607             :   {
+    1608         574 :     std::scoped_lock lock(mutex_other_uav_avoidance_trajectories_);
+    1609             : 
+    1610             :     // update the diagnostics
+    1611         287 :     other_uav_avoidance_trajectories_[trajectory.uav_name] = trajectory;
+    1612             :   }
+    1613             : }
+    1614             : 
+    1615             : //}
+    1616             : 
+    1617             : /* //{ callbackOtherMavDiagnostics() */
+    1618             : 
+    1619        1888 : void MpcTracker::callbackOtherMavDiagnostics(const mrs_msgs::MpcTrackerDiagnostics::ConstPtr msg) {
+    1620             : 
+    1621        5664 :   mrs_lib::Routine    profiler_routine = profiler.createRoutine("callbackOtherMavDiagnostics");
+    1622             :   mrs_lib::ScopeTimer timer =
+    1623        5664 :       mrs_lib::ScopeTimer("MpcTracker::callbackOtherMavDiagnostics", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+    1624             : 
+    1625        3776 :   std::scoped_lock lock(mutex_other_uav_diagnostics_);
+    1626             : 
+    1627        3776 :   mrs_msgs::MpcTrackerDiagnostics diagnostics = *msg;
+    1628             : 
+    1629             :   // fill in the current time
+    1630             :   // the other uav's time might not be synchronized with ours
+    1631        1888 :   diagnostics.header.stamp = ros::Time::now();
+    1632             : 
+    1633             :   // update the diagnostics
+    1634        1888 :   other_uav_diagnostics_[diagnostics.uav_name] = diagnostics;
+    1635        1888 : }
+    1636             : 
+    1637             : //}
+    1638             : 
+    1639             : /* //{ callbackToggleCollisionAvoidance() */
+    1640             : 
+    1641           0 : bool MpcTracker::callbackToggleCollisionAvoidance(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res) {
+    1642             : 
+    1643           0 :   collision_avoidance_enabled_ = req.data;
+    1644             : 
+    1645           0 :   ROS_INFO("[MpcTracker]: Collision avoidance was switched %s", collision_avoidance_enabled_ ? "TRUE" : "FALSE");
+    1646             : 
+    1647           0 :   res.message = "Collision avoidance set.";
+    1648           0 :   res.success = true;
+    1649             : 
+    1650           0 :   return true;
+    1651             : }
+    1652             : 
+    1653             : //}
+    1654             : 
+    1655             : /* callbackWiggle() //{ */
+    1656             : 
+    1657           0 : bool MpcTracker::callbackWiggle(std_srvs::SetBool::Request& req, std_srvs::SetBool::Response& res) {
+    1658             : 
+    1659           0 :   if (!is_initialized_) {
+    1660             : 
+    1661           0 :     res.success = false;
+    1662           0 :     res.message = "tracker not active";
+    1663           0 :     return true;
+    1664             :   }
+    1665             : 
+    1666             :   {
+    1667           0 :     std::scoped_lock lock(mutex_drs_params_);
+    1668             : 
+    1669           0 :     drs_params_.wiggle_enabled = req.data;
+    1670             : 
+    1671           0 :     reconfigure_server_->updateConfig(drs_params_);
+    1672             :   }
+    1673             : 
+    1674           0 :   res.success = true;
+    1675           0 :   res.message = "wiggle updated";
+    1676             : 
+    1677           0 :   return true;
+    1678             : }
+    1679             : 
+    1680             : //}
+    1681             : 
+    1682             : /* //{ dynamicReconfigureCallback() */
+    1683             : 
+    1684          91 : void MpcTracker::dynamicReconfigureCallback(mrs_uav_trackers::mpc_trackerConfig& config, [[maybe_unused]] uint32_t level) {
+    1685             : 
+    1686         182 :   std::scoped_lock lock(mutex_drs_params_);
+    1687             : 
+    1688          91 :   drs_params_ = config;
+    1689             : 
+    1690          91 :   ROS_INFO("[MpcTracker]: DRS updated");
+    1691          91 : }
+    1692             : 
+    1693             : //}
+    1694             : 
+    1695             : // --------------------------------------------------------------
+    1696             : // |                          routines                          |
+    1697             : // --------------------------------------------------------------
+    1698             : 
+    1699             : // | --------------- mutual collision avoidance --------------- |
+    1700             : 
+    1701             : /* //{ checkCollision() */
+    1702             : 
+    1703      145480 : bool MpcTracker::checkCollision(const double ax, const double ay, const double az, const double bx, const double by, const double bz) {
+    1704             : 
+    1705      145480 :   if (mrs_lib::geometry::dist(vec2_t(ax, ay), vec2_t(bx, by)) < _avoidance_radius_threshold_ && fabs(az - bz) < _avoidance_z_threshold_) {
+    1706             : 
+    1707       20501 :     return true;
+    1708             : 
+    1709             :   } else {
+    1710             : 
+    1711      124979 :     return false;
+    1712             :   }
+    1713             : }
+    1714             : 
+    1715             : //}
+    1716             : 
+    1717             : /* //{ checkCollisionInflated() */
+    1718             : 
+    1719      145480 : bool MpcTracker::checkCollisionInflated(const double ax, const double ay, const double az, const double bx, const double by, const double bz) {
+    1720             : 
+    1721      145480 :   if (mrs_lib::geometry::dist(vec2_t(ax, ay), vec2_t(bx, by)) < _avoidance_radius_threshold_ + 1.0 && fabs(az - bz) < _avoidance_z_threshold_ + 1.0) {
+    1722             : 
+    1723      145480 :     return true;
+    1724             : 
+    1725             :   } else {
+    1726             : 
+    1727           0 :     return false;
+    1728             :   }
+    1729             : }
+    1730             : 
+    1731             : //}
+    1732             : 
+    1733             : /* //{ checkTrajectoryForCollisions() */
+    1734             : 
+    1735             : // Check for potential collisions and return the needed altitude offset to avoid other drones
+    1736       68563 : double MpcTracker::checkTrajectoryForCollisions(int& first_collision_index) {
+    1737             : 
+    1738       68563 :   std::scoped_lock lock(mutex_predicted_trajectory_, mutex_des_trajectory_, mutex_other_uav_avoidance_trajectories_);
+    1739             : 
+    1740       68563 :   first_collision_index = INT_MAX;
+    1741       68563 :   avoiding_collision_   = false;
+    1742             : 
+    1743       68563 :   std::map<std::string, mrs_msgs::FutureTrajectory>::iterator u = other_uav_avoidance_trajectories_.begin();
+    1744             : 
+    1745       72200 :   while (u != other_uav_avoidance_trajectories_.end()) {
+    1746             : 
+    1747             :     // is the other's trajectory fresh enought?
+    1748        3637 :     if ((ros::Time::now() - u->second.stamp).toSec() < _collision_trajectory_timeout_) {
+    1749             : 
+    1750      149117 :       for (int v = 0; v < MPC_HORIZON_LENGTH; v++) {
+    1751             : 
+    1752             :         // check all points of the trajectory for possible collisions
+    1753      145480 :         if (checkCollision(predicted_trajectory_(v * MPC_N_STATES, 0), predicted_trajectory_(v * MPC_N_STATES + 4, 0),
+    1754      145480 :                            predicted_trajectory_(v * MPC_N_STATES + 8, 0), u->second.points[v].x, u->second.points[v].y, u->second.points[v].z)) {
+    1755             : 
+    1756             :           // collision is detected
+    1757       20501 :           int other_uav_priority = INT_MAX;
+    1758             :           // get the priority of the other uav
+    1759             :           /* sscanf(u->first.c_str(), "uav%d", &other_uav_priority); */
+    1760       20501 :           other_uav_priority = u->second.priority;
+    1761             : 
+    1762             :           // check if we should be avoiding (out priority is higher, or the other uav has collision avoidance turned off)
+    1763       20501 :           if ((u->second.collision_avoidance == false) || (other_uav_priority < avoidance_this_uav_priority_)) {
+    1764             : 
+    1765             :             // we should be avoiding
+    1766       13534 :             avoiding_collision_      = true;
+    1767       13534 :             double tmp_safe_altitude = u->second.points[v].z + _avoidance_z_correction_;
+    1768             : 
+    1769       13534 :             if (tmp_safe_altitude > collision_free_altitude_ && v <= _avoidance_collision_start_climbing_) {
+    1770         356 :               collision_free_altitude_ = tmp_safe_altitude;
+    1771             :             }
+    1772             : 
+    1773       13534 :             ROS_ERROR_STREAM_THROTTLE(1, "[MpcTracker]: avoiding collision with uav" << other_uav_priority);
+    1774             : 
+    1775             :           } else {
+    1776             :             // the other uav should avoid us
+    1777        6967 :             ROS_WARN_STREAM_THROTTLE(1, "[MpcTracker]: detected collision with uav" << other_uav_priority << ", not avoiding (my priority is higher)");
+    1778             :           }
+    1779             :         }
+    1780             : 
+    1781      145480 :         if (checkCollisionInflated(predicted_trajectory_(v * MPC_N_STATES, 0), predicted_trajectory_(v * MPC_N_STATES + 4, 0),
+    1782      145480 :                                    predicted_trajectory_(v * MPC_N_STATES + 8, 0), u->second.points[v].x, u->second.points[v].y, u->second.points[v].z)) {
+    1783             : 
+    1784             :           // collision is detected
+    1785      145480 :           if (first_collision_index > v) {
+    1786        3637 :             first_collision_index = v;
+    1787             :           }
+    1788             :         }
+    1789             :       }
+    1790             :     }
+    1791        3637 :     u++;
+    1792             :   }
+    1793             : 
+    1794       68563 :   if (!avoiding_collision_) {
+    1795             : 
+    1796       67753 :     auto dt1 = mrs_lib::get_mutexed(mutex_dt1_, dt1_);
+    1797             : 
+    1798             :     // we are not avoiding any collisions, so we slowly reduce the collision avoidance offset to return to normal flight
+    1799       67753 :     collision_free_altitude_ -= 2.0 / (1.0 / dt1);
+    1800             : 
+    1801       67753 :     double safety_area_min_z = std::numeric_limits<double>::lowest();
+    1802             : 
+    1803       67753 :     if (collision_free_altitude_ < safety_area_min_z) {
+    1804             : 
+    1805           0 :       collision_free_altitude_ = safety_area_min_z;
+    1806             :     }
+    1807             :   }
+    1808             : 
+    1809      137126 :   return collision_free_altitude_;
+    1810             : }
+    1811             : 
+    1812             : //}
+    1813             : 
+    1814             : // | ------------------ trajectory filtering ------------------ |
+    1815             : 
+    1816             : /* //{ filterReferenceXY() */
+    1817             : 
+    1818       69502 : std::tuple<MatrixXd, MatrixXd> MpcTracker::filterReferenceXY(const VectorXd& des_x_trajectory, const VectorXd& des_y_trajectory, double max_speed_x,
+    1819             :                                                              double max_speed_y) {
+    1820             : 
+    1821       69502 :   auto dt1 = mrs_lib::get_mutexed(mutex_dt1_, dt1_);
+    1822             : 
+    1823      139004 :   auto mpc_x         = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_);
+    1824       69502 :   auto trajectory_dt = mrs_lib::get_mutexed(mutex_des_trajectory_, trajectory_dt_);
+    1825             : 
+    1826      139004 :   MatrixXd filtered_x_trajectory = MatrixXd::Zero(MPC_HORIZON_LENGTH, 1);
+    1827      139004 :   MatrixXd filtered_y_trajectory = MatrixXd::Zero(MPC_HORIZON_LENGTH, 1);
+    1828             : 
+    1829             :   double difference_x;
+    1830             :   double difference_y;
+    1831             :   double max_sample_x;
+    1832             :   double max_sample_y;
+    1833             : 
+    1834     2849582 :   for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    1835             : 
+    1836     2780080 :     if (i == 0) {
+    1837       69502 :       max_sample_x = max_speed_x * dt1;
+    1838       69502 :       max_sample_y = max_speed_y * dt1;
+    1839       69502 :       difference_x = des_x_trajectory(i, 0) - mpc_x(0, 0);
+    1840       69502 :       difference_y = des_y_trajectory(i, 0) - mpc_x(4, 0);
+    1841             :     } else {
+    1842     2710578 :       max_sample_x = max_speed_x * _dt2_;
+    1843     2710578 :       max_sample_y = max_speed_y * _dt2_;
+    1844     2710578 :       difference_x = des_x_trajectory(i, 0) - filtered_x_trajectory(i - 1, 0);
+    1845     2710578 :       difference_y = des_y_trajectory(i, 0) - filtered_y_trajectory(i - 1, 0);
+    1846             :     }
+    1847             : 
+    1848     2780080 :     if (!trajectory_tracking_in_progress_) {
+    1849             : 
+    1850     2312160 :       double direction_angle  = atan2(difference_y, difference_x);
+    1851     2312160 :       double max_dir_sample_x = abs(max_sample_x * cos(direction_angle));
+    1852     2312160 :       double max_dir_sample_y = abs(max_sample_y * sin(direction_angle));
+    1853             : 
+    1854     2312160 :       if (max_sample_x > max_dir_sample_x) {
+    1855      273431 :         max_sample_x = max_dir_sample_x;
+    1856             :       }
+    1857     2312160 :       if (max_sample_y > max_dir_sample_y) {
+    1858     2311026 :         max_sample_y = max_dir_sample_y;
+    1859             :       }
+    1860             : 
+    1861             :       // saturate the difference
+    1862     2312160 :       if (difference_x > max_sample_x)
+    1863      116062 :         difference_x = max_sample_x;
+    1864     2196098 :       else if (difference_x < -max_sample_x)
+    1865      174483 :         difference_x = -max_sample_x;
+    1866             : 
+    1867     2312160 :       if (difference_y > max_sample_y)
+    1868       81942 :         difference_y = max_sample_y;
+    1869     2230218 :       else if (difference_y < -max_sample_y)
+    1870      193172 :         difference_y = -max_sample_y;
+    1871             :     }
+    1872             : 
+    1873     2780080 :     if (i == 0) {
+    1874       69502 :       filtered_x_trajectory(i, 0) = mpc_x(0, 0) + difference_x;
+    1875       69502 :       filtered_y_trajectory(i, 0) = mpc_x(4, 0) + difference_y;
+    1876             :     } else {
+    1877     2710578 :       filtered_x_trajectory(i, 0) = filtered_x_trajectory(i - 1, 0) + difference_x;
+    1878     2710578 :       filtered_y_trajectory(i, 0) = filtered_y_trajectory(i - 1, 0) + difference_y;
+    1879             :     }
+    1880             :   }
+    1881             : 
+    1882             :   // | ----------------------- add wiggle ----------------------- |
+    1883             : 
+    1884       69502 :   auto [wiggle_enabled, wiggle_amplitude, wiggle_frequency_] =
+    1885       69502 :       mrs_lib::get_mutexed(mutex_drs_params_, drs_params_.wiggle_enabled, drs_params_.wiggle_amplitude, drs_params_.wiggle_frequency);
+    1886             : 
+    1887       69502 :   if (wiggle_enabled) {
+    1888             : 
+    1889           0 :     for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    1890           0 :       filtered_x_trajectory(i, 0) += wiggle_amplitude * cos(wiggle_frequency_ * 2 * M_PI * i * trajectory_dt + wiggle_phase_);
+    1891           0 :       filtered_y_trajectory(i, 0) += wiggle_amplitude * sin(wiggle_frequency_ * 2 * M_PI * i * trajectory_dt + wiggle_phase_);
+    1892             :     }
+    1893             : 
+    1894           0 :     wiggle_phase_ += wiggle_frequency_ * dt1 * 2 * M_PI;
+    1895             : 
+    1896           0 :     if (wiggle_phase_ > M_PI) {
+    1897           0 :       wiggle_phase_ -= 2 * M_PI;
+    1898             :     }
+    1899             :   }
+    1900             : 
+    1901      139004 :   return std::make_tuple(filtered_x_trajectory, filtered_y_trajectory);
+    1902             : }
+    1903             : 
+    1904             : //}
+    1905             : 
+    1906             : /* //{ filterReferenceZ() */
+    1907             : 
+    1908       69502 : MatrixXd MpcTracker::filterReferenceZ(const VectorXd& des_z_trajectory, const double max_ascending_speed, const double max_descending_speed) {
+    1909             : 
+    1910      139004 :   auto mpc_x = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_);
+    1911             : 
+    1912       69502 :   auto dt1 = mrs_lib::get_mutexed(mutex_dt1_, dt1_);
+    1913             : 
+    1914             :   double difference_z;
+    1915             :   double max_sample_z;
+    1916             : 
+    1917       69502 :   MatrixXd filtered_trajectory = MatrixXd::Zero(MPC_HORIZON_LENGTH, 1);
+    1918             : 
+    1919       69502 :   double current_z = mpc_x(8, 0);
+    1920             : 
+    1921     2849582 :   for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    1922             : 
+    1923     2780080 :     if (i == 0) {
+    1924             : 
+    1925       69502 :       difference_z = des_z_trajectory(i, 0) - current_z;
+    1926             : 
+    1927       69502 :       if (difference_z > 0) {
+    1928       23342 :         max_sample_z = max_ascending_speed * dt1;
+    1929             :       } else {
+    1930       46160 :         max_sample_z = max_descending_speed * dt1;
+    1931             :       }
+    1932             : 
+    1933             :     } else {
+    1934             : 
+    1935     2710578 :       difference_z = des_z_trajectory(i, 0) - filtered_trajectory(i - 1, 0);
+    1936             : 
+    1937     2710578 :       if (difference_z > 0) {
+    1938      176989 :         max_sample_z = max_ascending_speed * _dt2_;
+    1939             :       } else {
+    1940     2533589 :         max_sample_z = max_descending_speed * _dt2_;
+    1941             :       }
+    1942             :     }
+    1943             : 
+    1944     2780080 :     if (!trajectory_tracking_in_progress_) {
+    1945             : 
+    1946             :       // saturate the difference
+    1947     2312160 :       if (difference_z > max_sample_z)
+    1948       79515 :         difference_z = max_sample_z;
+    1949     2232645 :       else if (difference_z < -max_sample_z)
+    1950       21876 :         difference_z = -max_sample_z;
+    1951             :     }
+    1952             : 
+    1953     2780080 :     if (i == 0) {
+    1954       69502 :       filtered_trajectory(i, 0) = current_z + difference_z;
+    1955             :     } else {
+    1956     2710578 :       filtered_trajectory(i, 0) = filtered_trajectory(i - 1, 0) + difference_z;
+    1957             :     }
+    1958             :   }
+    1959             : 
+    1960      139004 :   return filtered_trajectory;
+    1961             : }
+    1962             : 
+    1963             : //}
+    1964             : 
+    1965             : /* //{ manageConstraints() */
+    1966             : 
+    1967       69502 : void MpcTracker::manageConstraints() {
+    1968             : 
+    1969       69502 :   if (!got_constraints_) {
+    1970       69348 :     return;
+    1971             :   }
+    1972             : 
+    1973       69502 :   if (all_constraints_set_) {
+    1974       69348 :     return;
+    1975             :   }
+    1976             : 
+    1977         154 :   auto constraints            = mrs_lib::get_mutexed(mutex_constraints_, constraints_);
+    1978         308 :   auto [mpc_x, mpc_x_heading] = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_, mpc_x_heading_);
+    1979             : 
+    1980         308 :   bool can_change = (fabs(mpc_x(1, 0)) < constraints.horizontal_speed) && (fabs(mpc_x(2, 0)) < constraints.horizontal_acceleration) &&
+    1981         154 :                     (fabs(mpc_x(3, 0)) < constraints.horizontal_jerk) && (fabs(mpc_x(5, 0)) < constraints.horizontal_speed) &&
+    1982         154 :                     (fabs(mpc_x(6, 0)) < constraints.horizontal_acceleration) && (fabs(mpc_x(7, 0)) < constraints.horizontal_jerk) &&
+    1983         154 :                     (mpc_x(9, 0) < constraints.vertical_ascending_speed) && (mpc_x(9, 0) > -constraints.vertical_descending_speed) &&
+    1984         154 :                     (mpc_x(10, 0) < constraints.vertical_ascending_acceleration) && (mpc_x(10, 0) > -constraints.vertical_descending_acceleration) &&
+    1985         154 :                     (mpc_x(11, 0) < constraints.vertical_ascending_jerk) && (mpc_x(11, 0) > -constraints.vertical_descending_jerk) &&
+    1986         462 :                     (fabs(mpc_x_heading(1, 0)) < constraints.heading_speed) && (fabs(mpc_x_heading(2, 0)) < constraints.heading_acceleration) &&
+    1987         154 :                     (fabs(mpc_x_heading(3, 0)) < constraints.heading_jerk);
+    1988             : 
+    1989         154 :   if (can_change) {
+    1990             : 
+    1991             :     {
+    1992         154 :       std::scoped_lock lock(mutex_constraints_filtered_);
+    1993             : 
+    1994         154 :       constraints_filtered_.horizontal_acceleration = constraints.horizontal_acceleration;
+    1995         154 :       constraints_filtered_.horizontal_jerk         = constraints.horizontal_jerk;
+    1996         154 :       constraints_filtered_.horizontal_snap         = constraints.horizontal_snap;
+    1997             : 
+    1998         154 :       constraints_filtered_.vertical_ascending_acceleration = constraints.vertical_ascending_acceleration;
+    1999         154 :       constraints_filtered_.vertical_ascending_jerk         = constraints.vertical_ascending_jerk;
+    2000         154 :       constraints_filtered_.vertical_ascending_snap         = constraints.vertical_ascending_snap;
+    2001             : 
+    2002         154 :       constraints_filtered_.vertical_descending_acceleration = constraints.vertical_descending_acceleration;
+    2003         154 :       constraints_filtered_.vertical_descending_jerk         = constraints.vertical_descending_jerk;
+    2004         154 :       constraints_filtered_.vertical_descending_snap         = constraints.vertical_descending_snap;
+    2005             : 
+    2006         154 :       constraints_filtered_.heading_acceleration = constraints.heading_acceleration;
+    2007         154 :       constraints_filtered_.heading_jerk         = constraints.heading_jerk;
+    2008         154 :       constraints_filtered_.heading_snap         = constraints.heading_snap;
+    2009             :     }
+    2010             : 
+    2011         154 :     ROS_INFO_THROTTLE(1.0, "[MpcTracker]: all constraints succesfully applied");
+    2012         154 :     all_constraints_set_ = true;
+    2013             : 
+    2014             :   } else {
+    2015           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[MpcTracker]: slowing down to apply new constraints");
+    2016             :   }
+    2017             : }
+    2018             : 
+    2019             : //}
+    2020             : 
+    2021             : /* //{ calculateMPC() */
+    2022             : 
+    2023       69502 : void MpcTracker::calculateMPC() {
+    2024             : 
+    2025       69502 :   std::scoped_lock lock(mutex_mpc_calculation_);
+    2026             : 
+    2027       69502 :   auto dt1 = mrs_lib::get_mutexed(mutex_dt1_, dt1_);
+    2028             : 
+    2029       69502 :   ROS_DEBUG_STREAM_THROTTLE(1.0, "[MpcTracker]: MPC calculation dt = " << dt1);
+    2030             : 
+    2031       69502 :   auto constraints            = mrs_lib::get_mutexed(mutex_constraints_filtered_, constraints_filtered_);
+    2032       69502 :   auto [mpc_x, mpc_x_heading] = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_, mpc_x_heading_);
+    2033       69502 :   auto uav_state              = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    2034       69502 :   auto drs_params             = mrs_lib::get_mutexed(mutex_drs_params_, drs_params_);
+    2035             : 
+    2036       69502 :   MatrixXd des_x_trajectory, des_y_trajectory, des_z_trajectory, des_heading_trajectory;
+    2037             :   {
+    2038      139004 :     std::scoped_lock lock(mutex_des_trajectory_);
+    2039             : 
+    2040       69502 :     des_x_trajectory       = des_x_trajectory_;
+    2041       69502 :     des_y_trajectory       = des_y_trajectory_;
+    2042       69502 :     des_z_trajectory       = des_z_trajectory_;
+    2043       69502 :     des_heading_trajectory = des_heading_trajectory_;
+    2044             :   }
+    2045             : 
+    2046       69502 :   int    first_collision_index = INT_MAX;
+    2047       69502 :   double lowest_z              = std::numeric_limits<double>::max();
+    2048             : 
+    2049       69502 :   if (collision_avoidance_enabled_ && (uav_state.estimator_horizontal == "lat_gps" || uav_state.estimator_horizontal == "lat_rtk")) {
+    2050             : 
+    2051             :     // determine the lowest point in our trajectory
+    2052     2811083 :     for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    2053     2742520 :       if (des_z_trajectory_(i, 0) < lowest_z) {
+    2054       89702 :         lowest_z = des_z_trajectory_(i, 0);
+    2055             :       }
+    2056             :     }
+    2057             : 
+    2058             :     // check other drone trajectories for collisions
+    2059       68563 :     minimum_collison_free_altitude_ = checkTrajectoryForCollisions(first_collision_index);
+    2060             : 
+    2061             :   } else {
+    2062             : 
+    2063         939 :     minimum_collison_free_altitude_ = std::numeric_limits<double>::lowest();
+    2064             :   }
+    2065             : 
+    2066       69502 :   double max_speed_x = constraints.horizontal_speed;
+    2067       69502 :   double max_speed_y = constraints.horizontal_speed;
+    2068       69502 :   double max_speed_z = constraints.vertical_ascending_speed;
+    2069       69502 :   double min_speed_z = constraints.vertical_descending_speed;
+    2070             : 
+    2071       69502 :   double max_acc_x = constraints.horizontal_acceleration;
+    2072       69502 :   double max_acc_y = constraints.horizontal_acceleration;
+    2073       69502 :   double max_acc_z = constraints.vertical_ascending_acceleration;
+    2074       69502 :   double min_acc_z = constraints.vertical_descending_acceleration;
+    2075             : 
+    2076       69502 :   double max_snap_x = constraints.horizontal_snap;
+    2077       69502 :   double max_snap_y = constraints.horizontal_snap;
+    2078       69502 :   double max_snap_z = constraints.vertical_ascending_snap;
+    2079       69502 :   double min_snap_z = constraints.vertical_descending_snap;
+    2080             : 
+    2081       69502 :   double max_jerk_x = constraints.horizontal_jerk;
+    2082       69502 :   double max_jerk_y = constraints.horizontal_jerk;
+    2083       69502 :   double max_jerk_z = constraints.vertical_ascending_jerk;
+    2084       69502 :   double min_jerk_z = constraints.vertical_descending_jerk;
+    2085             : 
+    2086       69502 :   collision_avoidance_affecting_me_ = false;
+    2087             : 
+    2088       69502 :   if (first_collision_index < MPC_HORIZON_LENGTH) {
+    2089             : 
+    2090        3637 :     collision_avoidance_affecting_me_ = true;
+    2091             :     // the tmp variable is used to scale the speed of our drone in collision avoidance, depending on how far away the collision is
+    2092        3637 :     double tmp = 0;
+    2093             : 
+    2094        3637 :     if (first_collision_index <= _avoidance_collision_slow_down_fully_) {
+    2095        3637 :       tmp = 1;
+    2096           0 :     } else if (first_collision_index <= _avoidance_collision_slow_down_) {
+    2097           0 :       tmp = 1.0 - ((double)(first_collision_index - _avoidance_collision_slow_down_fully_)) /
+    2098           0 :                       (double)(_avoidance_collision_slow_down_ - _avoidance_collision_slow_down_fully_);
+    2099           0 :       tmp = tmp * tmp;
+    2100             :     }
+    2101             : 
+    2102        3637 :     if (!std::isfinite(tmp)) {
+    2103           0 :       tmp = 1.0;
+    2104           0 :       ROS_ERROR("[MpcTracker]: NaN detected in variable 'tmp', setting it to 1.0 and returning!!!");
+    2105           0 :       return;
+    2106        3637 :     } else if (tmp > 1.0) {
+    2107           0 :       tmp = 1.0;
+    2108        3637 :     } else if (tmp < 0.0) {
+    2109           0 :       tmp = 0.0;
+    2110             :     }
+    2111             : 
+    2112        3637 :     if (tmp > coef_scaler) {
+    2113           6 :       coef_scaler = tmp;
+    2114           6 :       coef_time   = ros::Time::now();
+    2115             :     }
+    2116        3637 :     if ((ros::Time::now() - coef_time).toSec() > 2.0) {
+    2117        3187 :       coef_scaler = tmp;
+    2118             :     }
+    2119             : 
+    2120             :     // we are close to a possible collision, better slow down a bit to give everyone more time
+    2121        3637 :     max_speed_x = constraints.horizontal_speed * ((_avoidance_collision_horizontal_speed_coef_ * coef_scaler) + (1.0 - coef_scaler));
+    2122        3637 :     max_speed_y = constraints.horizontal_speed * ((_avoidance_collision_horizontal_speed_coef_ * coef_scaler) + (1.0 - coef_scaler));
+    2123             :   }
+    2124             : 
+    2125       69502 :   if (collision_free_altitude_ > lowest_z) {
+    2126             : 
+    2127        1955 :     collision_avoidance_affecting_me_ = true;
+    2128        1955 :     max_speed_x                       = constraints.horizontal_speed * (_avoidance_collision_horizontal_speed_coef_);
+    2129        1955 :     max_speed_y                       = constraints.horizontal_speed * (_avoidance_collision_horizontal_speed_coef_);
+    2130             :   }
+    2131             : 
+    2132             :   // first control input generated by MPC
+    2133      139004 :   VectorXd mpc_u         = VectorXd::Zero(MPC_N_INPUTS);
+    2134       69502 :   double   mpc_u_heading = 0;
+    2135             : 
+    2136       69502 :   double iters_z       = 0;
+    2137       69502 :   double iters_x       = 0;
+    2138       69502 :   double iters_y       = 0;
+    2139       69502 :   double iters_heading = 0;
+    2140             : 
+    2141       69502 :   ros::Time time_begin = ros::Time::now();
+    2142             : 
+    2143      139004 :   MatrixXd des_z_filtered = filterReferenceZ(des_z_trajectory, max_speed_z, min_speed_z);
+    2144             : 
+    2145     2849582 :   for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    2146     2780080 :     if (des_z_filtered(i, 0) < minimum_collison_free_altitude_) {
+    2147       77643 :       des_z_filtered_offset_(i, 0) = minimum_collison_free_altitude_;
+    2148             :     } else {
+    2149     2702437 :       des_z_filtered_offset_(i, 0) = des_z_filtered(i, 0);
+    2150             :     }
+    2151             :   }
+    2152             : 
+    2153             :   // | ----------------- prepare the references ----------------- |
+    2154             : 
+    2155             :   // | -------------------- MPC solver z-axis ------------------- |
+    2156             : 
+    2157       69502 :   if (brake_ && !trajectory_tracking_in_progress_) {
+    2158       55141 :     mpc_solver_z_->setVelQ(drs_params.q_vel_braking);
+    2159             :   } else {
+    2160       14361 :     mpc_solver_z_->setVelQ(drs_params.q_vel_no_braking);
+    2161             :   }
+    2162             : 
+    2163      139004 :   MatrixXd initial_z = MatrixXd::Zero(4, 1);
+    2164             : 
+    2165       69502 :   initial_z(0, 0) = mpc_x(8, 0);
+    2166       69502 :   initial_z(1, 0) = mpc_x(9, 0);
+    2167       69502 :   initial_z(2, 0) = mpc_x(10, 0);
+    2168       69502 :   initial_z(3, 0) = mpc_x(11, 0);
+    2169             : 
+    2170       69502 :   mpc_solver_z_->setDt(dt1);
+    2171       69502 :   mpc_solver_z_->setInitialState(initial_z);
+    2172       69502 :   mpc_solver_z_->loadReference(des_z_filtered_offset_);
+    2173       69502 :   mpc_solver_z_->setLimits(max_speed_z, min_speed_z, max_acc_z, min_acc_z, max_jerk_z, min_jerk_z, max_snap_z, min_snap_z);
+    2174       69502 :   iters_z += mpc_solver_z_->solveMPC();
+    2175             : 
+    2176             :   {
+    2177      139004 :     std::scoped_lock lock(mutex_predicted_trajectory_);
+    2178             : 
+    2179       69502 :     mpc_solver_z_->getStates(predicted_trajectory_);
+    2180             :   }
+    2181             : 
+    2182       69502 :   mpc_u(2) = mpc_solver_z_->getFirstControlInput();
+    2183             : 
+    2184             :   // if we are climbing to avoid a collision, reduce or arrest our horizontal velocity
+    2185             :   double ascend;
+    2186             :   {
+    2187       69502 :     std::scoped_lock lock(mutex_predicted_trajectory_);
+    2188             : 
+    2189       69502 :     ascend = (predicted_trajectory_(10, 0) / max_speed_z);
+    2190             :   }
+    2191             : 
+    2192       69502 :   if (ascend > 0 && collision_free_altitude_ > lowest_z) {
+    2193        1017 :     max_speed_y = max_speed_y * (1.0 - ascend);
+    2194        1017 :     max_speed_x = max_speed_x * (1.0 - ascend);
+    2195             :   }
+    2196             : 
+    2197      208506 :   auto [des_x_filtered, des_y_filtered] = filterReferenceXY(des_x_trajectory, des_y_trajectory, max_speed_x, max_speed_y);
+    2198             : 
+    2199             :   // unwrap the heading reference
+    2200             : 
+    2201       69502 :   des_heading_trajectory(0, 0) = sradians::unwrap(des_heading_trajectory(0, 0), mpc_x_heading(0));
+    2202             : 
+    2203     2780080 :   for (int i = 1; i < MPC_HORIZON_LENGTH; i++) {
+    2204     2710578 :     des_heading_trajectory(i, 0) = sradians::unwrap(des_heading_trajectory(i, 0), des_heading_trajectory(i - 1, 0));
+    2205             :   }
+    2206             : 
+    2207             :   // | -------------------- MPC solver x-axis ------------------- |
+    2208             : 
+    2209       69502 :   if (brake_ && !trajectory_tracking_in_progress_) {
+    2210       55141 :     mpc_solver_x_->setVelQ(drs_params.q_vel_braking);
+    2211             :   } else {
+    2212       14361 :     mpc_solver_x_->setVelQ(drs_params.q_vel_no_braking);
+    2213             :   }
+    2214             : 
+    2215      139004 :   MatrixXd initial_x = MatrixXd::Zero(4, 1);
+    2216             : 
+    2217       69502 :   initial_x(0, 0) = mpc_x(0, 0);
+    2218       69502 :   initial_x(1, 0) = mpc_x(1, 0);
+    2219       69502 :   initial_x(2, 0) = mpc_x(2, 0);
+    2220       69502 :   initial_x(3, 0) = mpc_x(3, 0);
+    2221             : 
+    2222       69502 :   mpc_solver_x_->setDt(dt1);
+    2223       69502 :   mpc_solver_x_->setInitialState(initial_x);
+    2224       69502 :   mpc_solver_x_->loadReference(des_x_filtered);
+    2225       69502 :   mpc_solver_x_->setLimits(max_speed_x, max_speed_x, max_acc_x, max_acc_x, max_jerk_x, max_jerk_x, max_snap_x, max_snap_x);
+    2226       69502 :   iters_x += mpc_solver_x_->solveMPC();
+    2227             : 
+    2228             :   {
+    2229      139004 :     std::scoped_lock lock(mutex_predicted_trajectory_);
+    2230             : 
+    2231       69502 :     mpc_solver_x_->getStates(predicted_trajectory_);
+    2232             :   }
+    2233             : 
+    2234       69502 :   mpc_u(0) = mpc_solver_x_->getFirstControlInput();
+    2235             : 
+    2236             :   // | -------------------- MPC solver y-axis ------------------- |
+    2237             : 
+    2238       69502 :   if (brake_ && !trajectory_tracking_in_progress_) {
+    2239       55141 :     mpc_solver_y_->setVelQ(drs_params.q_vel_braking);
+    2240             :   } else {
+    2241       14361 :     mpc_solver_y_->setVelQ(drs_params.q_vel_no_braking);
+    2242             :   }
+    2243             : 
+    2244      139004 :   MatrixXd initial_y = MatrixXd::Zero(4, 1);
+    2245             : 
+    2246       69502 :   initial_y(0, 0) = mpc_x(4, 0);
+    2247       69502 :   initial_y(1, 0) = mpc_x(5, 0);
+    2248       69502 :   initial_y(2, 0) = mpc_x(6, 0);
+    2249       69502 :   initial_y(3, 0) = mpc_x(7, 0);
+    2250             : 
+    2251       69502 :   mpc_solver_y_->setDt(dt1);
+    2252       69502 :   mpc_solver_y_->setInitialState(initial_y);
+    2253       69502 :   mpc_solver_y_->loadReference(des_y_filtered);
+    2254       69502 :   mpc_solver_y_->setLimits(max_speed_y, max_speed_y, max_acc_y, max_acc_y, max_jerk_y, max_jerk_y, max_snap_y, max_snap_y);
+    2255       69502 :   iters_y += mpc_solver_y_->solveMPC();
+    2256             :   {
+    2257      139004 :     std::scoped_lock lock(mutex_predicted_trajectory_);
+    2258             : 
+    2259       69502 :     mpc_solver_y_->getStates(predicted_trajectory_);
+    2260             :   }
+    2261       69502 :   mpc_u(1) = mpc_solver_y_->getFirstControlInput();
+    2262             : 
+    2263             :   // | ------------------- MPC solver heading ------------------- |
+    2264             : 
+    2265       69502 :   if (brake_ && !trajectory_tracking_in_progress_) {
+    2266       55141 :     mpc_solver_heading_->setVelQ(drs_params.q_vel_braking);
+    2267             :   } else {
+    2268       14361 :     mpc_solver_heading_->setVelQ(drs_params.q_vel_no_braking);
+    2269             :   }
+    2270             : 
+    2271       69502 :   mpc_solver_heading_->setDt(dt1);
+    2272       69502 :   mpc_solver_heading_->setInitialState(mpc_x_heading);
+    2273       69502 :   mpc_solver_heading_->loadReference(des_heading_trajectory);
+    2274       69502 :   mpc_solver_heading_->setLimits(constraints.heading_speed, constraints.heading_speed, constraints.heading_acceleration, constraints.heading_acceleration,
+    2275             :                                  constraints.heading_jerk, constraints.heading_jerk, constraints.heading_snap, constraints.heading_snap);
+    2276       69502 :   iters_heading += mpc_solver_heading_->solveMPC();
+    2277             :   {
+    2278      139004 :     std::scoped_lock lock(mutex_predicted_trajectory_);
+    2279             : 
+    2280       69502 :     mpc_solver_heading_->getStates(predicted_heading_trajectory_);
+    2281             :   }
+    2282       69502 :   mpc_u_heading = mpc_solver_heading_->getFirstControlInput();
+    2283             : 
+    2284             :   {
+    2285       69502 :     bool saturating = false;
+    2286             : 
+    2287       69502 :     if (mpc_u(0) > max_snap_x * 1.01) {
+    2288           0 :       ROS_WARN_STREAM_THROTTLE(0.1, "[MpcTracker]: saturating snap X: " << mpc_u(0));
+    2289           0 :       mpc_u(0)   = max_snap_x;
+    2290           0 :       saturating = true;
+    2291             :     }
+    2292       69502 :     if (mpc_u(0) < -max_snap_x * 1.01) {
+    2293           0 :       ROS_WARN_STREAM_THROTTLE(0.1, "[MpcTracker]: saturating snap X: " << mpc_u(0));
+    2294           0 :       mpc_u(0)   = -max_snap_x;
+    2295           0 :       saturating = true;
+    2296             :     }
+    2297       69502 :     if (mpc_u(1) > max_snap_y * 1.01) {
+    2298           0 :       ROS_WARN_STREAM_THROTTLE(0.1, "[MpcTracker]: saturating snap Y: " << mpc_u(1));
+    2299           0 :       mpc_u(1)   = max_snap_y;
+    2300           0 :       saturating = true;
+    2301             :     }
+    2302       69502 :     if (mpc_u(1) < -max_snap_y * 1.01) {
+    2303           0 :       ROS_WARN_STREAM_THROTTLE(0.1, "[MpcTracker]: saturating snap Y: " << mpc_u(1));
+    2304           0 :       mpc_u(1)   = -max_snap_y;
+    2305           0 :       saturating = true;
+    2306             :     }
+    2307       69502 :     if (mpc_u(2) > max_snap_z * 1.01) {
+    2308           0 :       ROS_WARN_STREAM_THROTTLE(0.1, "[MpcTracker]: saturating snap Z: " << mpc_u(2));
+    2309           0 :       mpc_u(2)   = max_snap_z;
+    2310           0 :       saturating = true;
+    2311             :     }
+    2312       69502 :     if (mpc_u(2) < -min_snap_z * 1.01) {
+    2313           0 :       ROS_WARN_STREAM_THROTTLE(0.1, "[MpcTracker]: saturating snap Z: " << mpc_u(2));
+    2314           0 :       mpc_u(2)   = -min_snap_z;
+    2315           0 :       saturating = true;
+    2316             :     }
+    2317             : 
+    2318       69502 :     if (saturating) {
+    2319           0 :       debugPrintState(0.1);
+    2320           0 :       debugPrintMPCResult(0.1);
+    2321             :     }
+    2322             :   }
+    2323             : 
+    2324             :   {
+    2325       69502 :     std::scoped_lock lock(mutex_mpc_u_);
+    2326             : 
+    2327       69502 :     mpc_u_         = mpc_u;
+    2328       69502 :     mpc_u_heading_ = mpc_u_heading;
+    2329             :   }
+    2330             : 
+    2331       69502 :   double mpc_solver_time = (ros::Time::now() - time_begin).toSec();
+    2332       69502 :   if (mpc_solver_time > dt1 || iters_x > _max_iters_xy_ || iters_y > _max_iters_xy_ || iters_z > _max_iters_z_ || iters_heading > _max_iters_heading_) {
+    2333           0 :     ROS_DEBUG_STREAM_THROTTLE(1.0, "[MpcTracker]: Total MPC solver time: " << mpc_solver_time << " iters X: " << iters_x << "/" << _max_iters_xy_
+    2334             :                                                                            << " iters Y:  " << iters_y << "/" << _max_iters_xy_ << " iters Z: " << iters_z
+    2335             :                                                                            << "/" << _max_iters_z_ << " iters heading: " << iters_heading << "/"
+    2336             :                                                                            << _max_iters_heading_);
+    2337             :   }
+    2338             : 
+    2339       69502 :   future_was_predicted_ = true;
+    2340             : 
+    2341             :   // | ------------- breaking for the next iteration ------------ |
+    2342             : 
+    2343      133135 :   if (drs_params.braking_enabled && (std::abs(des_x_filtered(MPC_HORIZON_LENGTH - 6) - des_x_filtered(MPC_HORIZON_LENGTH - 1)) <= 0.1) &&
+    2344      123053 :       (std::abs(des_y_filtered(MPC_HORIZON_LENGTH - 6) - des_y_filtered(MPC_HORIZON_LENGTH - 1)) <= 0.1) &&
+    2345      198424 :       (std::abs(des_z_filtered(MPC_HORIZON_LENGTH - 6) - des_z_filtered(MPC_HORIZON_LENGTH - 1)) <= 0.1) &&
+    2346       57843 :       (std::abs(radians::diff(des_heading_trajectory(MPC_HORIZON_LENGTH - 6), des_heading_trajectory(MPC_HORIZON_LENGTH - 1))) <= 0.1)) {
+    2347             : 
+    2348       57714 :     brake_ = true;
+    2349       57714 :     ROS_DEBUG_THROTTLE(1.0, "[MpcTracker]: braking");
+    2350             : 
+    2351             :   } else {
+    2352       11788 :     brake_ = false;
+    2353             :   }
+    2354             : 
+    2355             :   /* publish mpc reference //{ */
+    2356             : 
+    2357             :   {
+    2358      139004 :     geometry_msgs::PoseArray debug_trajectory_out;
+    2359       69502 :     debug_trajectory_out.header.stamp    = ros::Time::now();
+    2360       69502 :     debug_trajectory_out.header.frame_id = uav_state_.header.frame_id;
+    2361             : 
+    2362             :     {
+    2363      139004 :       std::scoped_lock lock(mutex_predicted_trajectory_);
+    2364             : 
+    2365     2849582 :       for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    2366             : 
+    2367     2780080 :         geometry_msgs::Pose new_pose;
+    2368             : 
+    2369     2780080 :         new_pose.position.x = des_x_filtered(i, 0);
+    2370     2780080 :         new_pose.position.y = des_y_filtered(i, 0);
+    2371     2780080 :         new_pose.position.z = des_z_filtered(i, 0);
+    2372             : 
+    2373     2780080 :         new_pose.orientation = mrs_lib::AttitudeConverter(0, 0, des_heading_trajectory(i));
+    2374             : 
+    2375     2780080 :         debug_trajectory_out.poses.push_back(new_pose);
+    2376             :       }
+    2377             :     }
+    2378             : 
+    2379       69502 :     ph_mpc_reference_debugging_.publish(debug_trajectory_out);
+    2380             :   }
+    2381             : 
+    2382             :   //}
+    2383             : }
+    2384             : 
+    2385             : //}
+    2386             : 
+    2387             : /* iterateModel() //{ */
+    2388             : 
+    2389       64313 : void MpcTracker::iterateModel(const double& dt) {
+    2390             : 
+    2391       64313 :   auto dt1 = mrs_lib::get_mutexed(mutex_dt1_, dt1_);
+    2392             : 
+    2393       64313 :   if (model_first_iteration_) {
+    2394             : 
+    2395          82 :     model_iteration_last_time_ = ros::Time::now();
+    2396          82 :     model_first_iteration_     = false;
+    2397             : 
+    2398             :   } else {
+    2399             : 
+    2400       64231 :     dt1 = 0.9 * dt1 + 0.1 * dt;
+    2401             : 
+    2402       64231 :     mrs_lib::set_mutexed(mutex_dt1_, dt1, dt1_);
+    2403       64231 :     timer_mpc_iteration_.setPeriod(ros::Duration(dt1), false);
+    2404             : 
+    2405             :     // clang-format off
+    2406       64231 :     A_ << 1, dt1, 0.5*dt1*dt1, 0,           0, 0,   0,           0,           0, 0,   0,           0,
+    2407       64231 :           0, 1,   dt1,         0.5*dt1*dt1, 0, 0,   0,           0,           0, 0,   0,           0,
+    2408       64231 :           0, 0,   1,           dt1,         0, 0,   0,           0,           0, 0,   0,           0,
+    2409       64231 :           0, 0,   0,           1,           0, 0,   0,           0,           0, 0,   0,           0,
+    2410       64231 :           0, 0,   0,           0,           1, dt1, 0.5*dt1*dt1, 0,           0, 0,   0,           0,
+    2411       64231 :           0, 0,   0,           0,           0, 1,   dt1,         0.5*dt1*dt1, 0, 0,   0,           0,
+    2412       64231 :           0, 0,   0,           0,           0, 0,   1,           dt1,         0, 0,   0,           0,
+    2413       64231 :           0, 0,   0,           0,           0, 0,   0,           1,           0, 0,   0,           0,
+    2414       64231 :           0, 0,   0,           0,           0, 0,   0,           0,           1, dt1, 0.5*dt1*dt1, 0,
+    2415       64231 :           0, 0,   0,           0,           0, 0,   0,           0,           0, 1,   dt1,         0.5*dt1*dt1,
+    2416       64231 :           0, 0,   0,           0,           0, 0,   0,           0,           0, 0,   1,           dt1,
+    2417       64231 :           0, 0,   0,           0,           0, 0,   0,           0,           0, 0,   0,           1;
+    2418             : 
+    2419       64231 :       B_ << 0,   0,   0,
+    2420       64231 :             0,   0,   0,
+    2421       64231 :             0,   0,   0,
+    2422       64231 :             dt1, 0,   0,
+    2423       64231 :             0,   0,   0,
+    2424       64231 :             0,   0,   0,
+    2425       64231 :             0,   0,   0,
+    2426       64231 :             0,   dt1, 0,
+    2427       64231 :             0,   0,   0,
+    2428       64231 :             0,   0,   0,
+    2429       64231 :             0,   0,   0,
+    2430       64231 :             0,   0,   dt1;
+    2431             : 
+    2432       64231 :       A_heading_ << 1, dt1, 0.5*dt1*dt1, 0,
+    2433       64231 :                     0, 1,   dt1,         0.5*dt1*dt1,
+    2434       64231 :                     0, 0,   1,           dt1,
+    2435       64231 :                     0, 0,   0,           1;
+    2436             : 
+    2437       64231 :       B_heading_ << 0,
+    2438       64231 :                     0,
+    2439      128462 :                     0,
+    2440       64231 :                     dt1;
+    2441             : 
+    2442       64231 :     model_iteration_last_time_ = ros::Time::now();
+    2443             :   }
+    2444             : 
+    2445             :   {
+    2446      128626 :     auto [mpc_x, mpc_x_heading] = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_, mpc_x_heading_);
+    2447      128626 :     auto [mpc_u, mpc_u_heading] = mrs_lib::get_mutexed(mutex_mpc_u_, mpc_u_, mpc_u_heading_);
+    2448             : 
+    2449      128626 :     MatrixXd new_mpc_x         = A_ * mpc_x + B_ * mpc_u;
+    2450      128626 :     MatrixXd new_mpc_x_heading = A_heading_ * mpc_x_heading + B_heading_ * mpc_u_heading;
+    2451             : 
+    2452             :     // | --------------- check the state difference --------------- |
+    2453             :     {
+    2454       64313 :       auto constraints = mrs_lib::get_mutexed(mutex_constraints_, constraints_);
+    2455             : 
+    2456       64313 :       bool problem = false;
+    2457             : 
+    2458             :       // position
+    2459             : 
+    2460       64313 :       if (fabs((new_mpc_x(0) - mpc_x(0)) / dt1) > 1.05 * constraints.horizontal_speed) {
+    2461           0 :         ROS_DEBUG("[MpcTracker]: horizontal pos x update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x(0), new_mpc_x(0),
+    2462             :                   fabs((new_mpc_x(0) - mpc_x(0)) / dt1), constraints.horizontal_speed);
+    2463           0 :         problem = true;
+    2464             :       }
+    2465             : 
+    2466       64313 :       if (fabs((new_mpc_x(4) - mpc_x(4)) / dt1) > 1.05 * constraints.horizontal_speed) {
+    2467           0 :         ROS_DEBUG("[MpcTracker]: horizontal pos y update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x(4), new_mpc_x(4),
+    2468             :                   fabs((new_mpc_x(4) - mpc_x(4)) / dt1), constraints.horizontal_speed);
+    2469           0 :         problem = true;
+    2470             :     }
+    2471             : 
+    2472       64313 :       if (((new_mpc_x(8) - mpc_x(8)) / dt1) > 1.05 * constraints.vertical_ascending_speed) {
+    2473           0 :         ROS_DEBUG("[MpcTracker]: vertical pos z update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x(8), new_mpc_x(8),
+    2474             :                   ((new_mpc_x(8) - mpc_x(8)) / dt1), constraints.vertical_ascending_speed);
+    2475           0 :         problem = true;
+    2476             :       }
+    2477             : 
+    2478       64313 :       if (((new_mpc_x(8) - mpc_x(8)) / dt1) < 1.05 * -constraints.vertical_descending_speed) {
+    2479           0 :         ROS_DEBUG("[MpcTracker]: vertical pos z update violates constraints: %.2f -> %.2f = %.2f, < %.2f", mpc_x(8), new_mpc_x(8),
+    2480             :                   ((new_mpc_x(8) - mpc_x(8)) / dt1), -constraints.vertical_descending_speed);
+    2481           0 :         problem = true;
+    2482             :       }
+    2483             : 
+    2484             :       /* if (fabs(radians::diff(new_mpc_x_heading(0), mpc_x_heading(0)) / dt1) > 1.2 * constraints.heading_speed) { */
+    2485             :       /*   ROS_DEBUG("[MpcTracker]: heading update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x_heading(0), new_mpc_x_heading(0), */
+    2486             :       /*             fabs(radians::diff(new_mpc_x_heading(0), mpc_x_heading(0)) / dt1), constraints.heading_speed); */
+    2487             :       /*   problem = true; */
+    2488             :       /* } */
+    2489             : 
+    2490             :       // velocity
+    2491             : 
+    2492       64313 :       if (fabs((new_mpc_x(1) - mpc_x(1)) / dt1) > 1.05 * constraints.horizontal_acceleration) {
+    2493           0 :         ROS_DEBUG("[MpcTracker]: horizontal vel x update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x(1), new_mpc_x(1),
+    2494             :                   fabs((new_mpc_x(1) - mpc_x(1)) / dt1), constraints.horizontal_acceleration);
+    2495           0 :         problem = true;
+    2496             :       }
+    2497             : 
+    2498       64313 :       if (fabs((new_mpc_x(5) - mpc_x(5)) / dt1) > 1.05 * constraints.horizontal_acceleration) {
+    2499           0 :         ROS_DEBUG("[MpcTracker]: horizontal vel y update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x(5), new_mpc_x(5),
+    2500             :                   fabs((new_mpc_x(5) - mpc_x(5)) / dt1), constraints.horizontal_acceleration);
+    2501           0 :         problem = true;
+    2502             :       }
+    2503             : 
+    2504       64313 :       if (((new_mpc_x(9) - mpc_x(9)) / dt1) > 1.05 * constraints.vertical_ascending_acceleration) {
+    2505           0 :         ROS_DEBUG("[MpcTracker]: vertical vel z update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x(9), new_mpc_x(9),
+    2506             :                   ((new_mpc_x(9) - mpc_x(9)) / dt1), constraints.vertical_ascending_acceleration);
+    2507           0 :         problem = true;
+    2508             :       }
+    2509             : 
+    2510       64313 :       if (((new_mpc_x(9) - mpc_x(9)) / dt1) < 1.05 * -constraints.vertical_descending_acceleration) {
+    2511           0 :         ROS_DEBUG("[MpcTracker]: vertical vel z update violates constraints: %.2f -> %.2f = %.2f, < %.2f", mpc_x(9), new_mpc_x(9),
+    2512             :                   ((new_mpc_x(9) - mpc_x(9)) / dt1), -constraints.vertical_descending_acceleration);
+    2513           0 :         problem = true;
+    2514             :       }
+    2515             : 
+    2516             :       // acceleration
+    2517             : 
+    2518       64313 :       if (fabs((new_mpc_x(2) - mpc_x(2)) / dt1) > 1.05 * constraints.horizontal_jerk) {
+    2519           0 :         ROS_DEBUG("[MpcTracker]: horizontal acc x update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x(2), new_mpc_x(2),
+    2520             :                   fabs((new_mpc_x(2) - mpc_x(2)) / dt1), constraints.horizontal_jerk);
+    2521           0 :         problem = true;
+    2522             :       }
+    2523             : 
+    2524       64313 :       if (fabs((new_mpc_x(6) - mpc_x(6)) / dt1) > 1.05 * constraints.horizontal_jerk) {
+    2525           0 :         ROS_DEBUG("[MpcTracker]: horizontal acc y update violates constraints: %.2f -> %.2f, = %.2f > %.2f", mpc_x(6), new_mpc_x(6),
+    2526             :                   fabs((new_mpc_x(6) - mpc_x(6)) / dt1), constraints.horizontal_jerk);
+    2527           0 :         problem = true;
+    2528             :       }
+    2529             : 
+    2530       64313 :       if (((new_mpc_x(10) - mpc_x(10)) / dt1) > 1.05 * constraints.vertical_ascending_jerk) {
+    2531           0 :         ROS_DEBUG("[MpcTracker]: vertical acc z update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x(10), new_mpc_x(10),
+    2532             :                   ((new_mpc_x(10) - mpc_x(10)) / dt1), constraints.vertical_ascending_jerk);
+    2533           0 :         problem = true;
+    2534             :       }
+    2535             : 
+    2536       64313 :       if (((new_mpc_x(10) - mpc_x(10)) / dt1) < 1.05 * -constraints.vertical_descending_jerk) {
+    2537           0 :         ROS_DEBUG("[MpcTracker]: vertical acc z update violates constraints: %.2f -> %.2f = %.2f, < %.2f", mpc_x(10), new_mpc_x(10),
+    2538             :                   ((new_mpc_x(10) - mpc_x(10)) / dt1), -constraints.vertical_descending_jerk);
+    2539           0 :         problem = true;
+    2540             :       }
+    2541             : 
+    2542             :       // jerk
+    2543             : 
+    2544       64313 :       if (fabs((new_mpc_x(3) - mpc_x(3)) / dt1) > 1.05 * constraints.horizontal_snap) {
+    2545           0 :         ROS_DEBUG("[MpcTracker]: horizontal jerk x update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x(3), new_mpc_x(3),
+    2546             :                   fabs((new_mpc_x(3) - mpc_x(3)) / dt1), constraints.horizontal_snap);
+    2547           0 :         problem = true;
+    2548             :       }
+    2549             : 
+    2550       64313 :       if (fabs((new_mpc_x(7) - mpc_x(7)) / dt1) > 1.05 * constraints.horizontal_snap) {
+    2551           0 :         ROS_DEBUG("[MpcTracker]: horizontal jerk y update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x(7), new_mpc_x(7),
+    2552             :                   fabs((new_mpc_x(7) - mpc_x(7)) / dt1), constraints.horizontal_snap);
+    2553           0 :         problem = true;
+    2554             :       }
+    2555             : 
+    2556       64313 :       if (((new_mpc_x(11) - mpc_x(11)) / dt1) > 1.05 * constraints.vertical_ascending_snap) {
+    2557           0 :         ROS_DEBUG("[MpcTracker]: vertical jerk z update violates constraints: %.2f -> %.2f = %.2f, > %.2f", mpc_x(11), new_mpc_x(11),
+    2558             :                   ((new_mpc_x(11) - mpc_x(11)) / dt1), constraints.vertical_ascending_snap);
+    2559           0 :         problem = true;
+    2560             :       }
+    2561             : 
+    2562       64313 :       if (((new_mpc_x(11) - mpc_x(11)) / dt1) < 1.05 * -constraints.vertical_descending_snap) {
+    2563           0 :         ROS_DEBUG("[MpcTracker]: vertical jerk z update violates constraints: %.2f -> %.2f = %.2f, < %.2f", mpc_x(11), new_mpc_x(11),
+    2564             :                   ((new_mpc_x(11) - mpc_x(11)) / dt1), -constraints.vertical_descending_snap);
+    2565           0 :         problem = true;
+    2566             :       }
+    2567             : 
+    2568       64313 :       if (problem) {
+    2569           0 :         debugPrintState(0.001);
+    2570           0 :         debugPrintMPCResult(0.001);
+    2571             :       }
+    2572             :     }
+    2573             : 
+    2574             :     {
+    2575       64313 :       std::scoped_lock lock(mutex_mpc_x_);
+    2576             : 
+    2577       64313 :       mpc_x_         = new_mpc_x;
+    2578       64313 :       mpc_x_heading_ = new_mpc_x_heading;
+    2579             : 
+    2580       64313 :       mpc_x_heading_(0) = sradians::wrap(mpc_x_heading_(0));
+    2581             :     }
+    2582             :   }
+    2583       64313 : }
+    2584             : 
+    2585             : //}
+    2586             : 
+    2587             : // | -------------------- referece setting -------------------- |
+    2588             : 
+    2589             : /* //{ loadTrajectory() */
+    2590             : 
+    2591             : // method for setting desired trajectory
+    2592         507 : std::tuple<bool, std::string, bool> MpcTracker::loadTrajectory(const mrs_msgs::TrajectoryReference msg) {
+    2593             : 
+    2594         507 :   auto dt1 = mrs_lib::get_mutexed(mutex_dt1_, dt1_);
+    2595             : 
+    2596             :   // copy the member variables
+    2597        1014 :   auto x         = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_);
+    2598        1014 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    2599             : 
+    2600        1014 :   std::stringstream ss;
+    2601             : 
+    2602             :   /* check the trajectory dt //{ */
+    2603             : 
+    2604             :   double trajectory_dt;
+    2605         507 :   if (msg.dt <= 1e-4) {
+    2606           0 :     trajectory_dt = 0.2;
+    2607           0 :     ROS_WARN_THROTTLE(10.0, "[MpcTracker]: the trajectory dt was not specified, assuming its the old 0.2 s");
+    2608         507 :   } else if (msg.dt < dt1) {
+    2609           0 :     trajectory_dt = 0.2;
+    2610           0 :     ss << std::setprecision(3) << "the trajectory dt (" << msg.dt << " s) is too small (smaller than the tracker's internal step size: " << dt1 << " s)";
+    2611           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    2612           0 :     return std::tuple(false, ss.str(), false);
+    2613             :   } else {
+    2614         507 :     trajectory_dt = msg.dt;
+    2615             :   }
+    2616             : 
+    2617             :   //}
+    2618             : 
+    2619         507 :   int trajectory_size = msg.points.size();
+    2620             : 
+    2621             :   /* sanitize the time-ness of the trajectory //{ */
+    2622             : 
+    2623         507 :   int    trajectory_sample_offset    = 0;  // how many samples in past is the trajectory
+    2624         507 :   int    trajectory_subsample_offset = 0;  // how many simulation inner loops ahead of the first valid sample
+    2625         507 :   double trajectory_time_offset      = 0;  // how much time in past in [s]
+    2626             : 
+    2627             :   // btw, "trajectory_time_offset = trajectory_dt*trajectory_sample_offset + _dt1_*trajectory_subsample_offset" should hold
+    2628         507 :   if (msg.fly_now) {
+    2629             : 
+    2630         506 :     ros::Time trajectory_time = msg.header.stamp;
+    2631             : 
+    2632             :     // the desired time is 0 => the current time
+    2633             :     // the trajecoty is a single point => the current time
+    2634         506 :     if (trajectory_time == ros::Time(0) || int(msg.points.size()) == 1) {
+    2635             : 
+    2636           2 :       trajectory_time_offset = 0.0;
+    2637             : 
+    2638             :       // the desired time is specified
+    2639             :     } else {
+    2640             : 
+    2641         504 :       trajectory_time_offset = (ros::Time::now() - trajectory_time).toSec();
+    2642             : 
+    2643             :       // when the time offset is negative, thus in the future
+    2644             :       // just say it, but use it like its from the current time
+    2645         504 :       if (trajectory_time_offset < 0.0) {
+    2646             : 
+    2647           0 :         ROS_WARN_THROTTLE(1.0, "[MpcTracker]: received trajectory with timestamp in the future by %.3f s", -trajectory_time_offset);
+    2648             : 
+    2649           0 :         trajectory_time_offset = 0.0;
+    2650             :       }
+    2651             :     }
+    2652             : 
+    2653             :     // if the time offset is set, check if we need to "move the first idx"
+    2654         506 :     if (trajectory_time_offset > 0.0) {
+    2655             : 
+    2656             :       // calculate the offset in samples
+    2657           1 :       trajectory_sample_offset = int(floor(trajectory_time_offset / trajectory_dt));
+    2658             : 
+    2659             :       // and get the subsample offset, which will be used to initialize the interpolator
+    2660           1 :       trajectory_subsample_offset = int(floor(fmod(trajectory_time_offset, trajectory_dt) / dt1));
+    2661             : 
+    2662           1 :       ROS_DEBUG_THROTTLE(0.1, "[MpcTracker]: received trajectory with timestamp in the past by %.3f s",
+    2663             :                          trajectory_dt * trajectory_sample_offset + dt1 * trajectory_subsample_offset);
+    2664             : 
+    2665             :       // if the offset is larger than the number of points in the trajectory
+    2666             :       // the trajectory can not be used
+    2667           1 :       if (trajectory_sample_offset >= trajectory_size) {
+    2668             : 
+    2669           0 :         ss << "trajectory timestamp is too old (time difference = " << trajectory_time_offset << ")";
+    2670           0 :         ROS_ERROR_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    2671           0 :         return std::tuple(false, ss.str(), false);
+    2672             : 
+    2673             :       } else {
+    2674             : 
+    2675             :         // if the offset is larger than one trajectory sample,
+    2676             :         // offset the start
+    2677           1 :         if (trajectory_time_offset >= trajectory_dt) {
+    2678             : 
+    2679             :           // decrease the trajectory size
+    2680           0 :           trajectory_size -= trajectory_sample_offset;
+    2681             : 
+    2682           0 :           ROS_DEBUG_THROTTLE(0.1, "[MpcTracker]: offsetting trajectory by %d samples", trajectory_sample_offset);
+    2683             : 
+    2684             :         } else {
+    2685             : 
+    2686           1 :           trajectory_sample_offset = 0;
+    2687             :         }
+    2688             :       }
+    2689             :     }
+    2690             : 
+    2691             :   } else { // not fly_now
+    2692             : 
+    2693           1 :       trajectory_tracking_in_progress_ = false;
+    2694             :   }
+    2695             : 
+    2696             :   //}
+    2697             : 
+    2698         507 :   ROS_DEBUG_THROTTLE(1.0, "[MpcTracker]: trajectory sample offset: %d", trajectory_sample_offset);
+    2699         507 :   ROS_DEBUG_THROTTLE(1.0, "[MpcTracker]: trajectory subsample offset: %d", trajectory_subsample_offset);
+    2700             : 
+    2701             :   // after this, we should have the correct value of
+    2702             :   // * trajectory_size
+    2703             :   // * trajectory_sample_offset
+    2704             :   // * trajectory_subsample_offset
+    2705             : 
+    2706             :   /* copy the trajectory to a local variable //{ */
+    2707             : 
+    2708             :   // copy only the part from the first valid index
+    2709             : 
+    2710        1014 :   MatrixXd des_x_whole_trajectory       = VectorXd::Zero(trajectory_size + MPC_HORIZON_LENGTH, 1);
+    2711        1014 :   MatrixXd des_y_whole_trajectory       = VectorXd::Zero(trajectory_size + MPC_HORIZON_LENGTH, 1);
+    2712        1014 :   MatrixXd des_z_whole_trajectory       = VectorXd::Zero(trajectory_size + MPC_HORIZON_LENGTH, 1);
+    2713        1014 :   MatrixXd des_heading_whole_trajectory = VectorXd::Zero(trajectory_size + MPC_HORIZON_LENGTH, 1);
+    2714             : 
+    2715       26237 :   for (int i = 0; i < trajectory_size; i++) {
+    2716             : 
+    2717       25730 :     des_x_whole_trajectory(i)       = msg.points[trajectory_sample_offset + i].position.x;
+    2718       25730 :     des_y_whole_trajectory(i)       = msg.points[trajectory_sample_offset + i].position.y;
+    2719       25730 :     des_z_whole_trajectory(i)       = msg.points[trajectory_sample_offset + i].position.z;
+    2720       25730 :     des_heading_whole_trajectory(i) = msg.points[trajectory_sample_offset + i].heading;
+    2721             :   }
+    2722             : 
+    2723             :   //}
+    2724             : 
+    2725             :   /* set looping //{ */
+    2726             : 
+    2727         507 :   bool loop = false;
+    2728             : 
+    2729         507 :   if (msg.loop) {
+    2730             : 
+    2731           0 :     double first_x = des_x_whole_trajectory(0);
+    2732           0 :     double first_y = des_y_whole_trajectory(0);
+    2733           0 :     double first_z = des_z_whole_trajectory(0);
+    2734           0 :     double first_hdg = des_heading_whole_trajectory(0);
+    2735             : 
+    2736           0 :     double last_x = des_x_whole_trajectory(trajectory_size - 1);
+    2737           0 :     double last_y = des_y_whole_trajectory(trajectory_size - 1);
+    2738           0 :     double last_z = des_z_whole_trajectory(trajectory_size - 1);
+    2739           0 :     double last_hdg = des_heading_whole_trajectory(trajectory_size - 1);
+    2740             : 
+    2741             :     // check whether the trajectory is loopable
+    2742           0 :     if (mrs_lib::geometry::dist(vec3_t(first_x, first_y, first_z), vec3_t(last_x, last_y, last_z)) < 1.0 && abs(sradians::diff(first_hdg, last_hdg)) < 0.2) {
+    2743             : 
+    2744           0 :       ROS_INFO_THROTTLE(1.0, "[MpcTracker]: looping enabled");
+    2745           0 :       loop = true;
+    2746             : 
+    2747             :     } else {
+    2748             : 
+    2749           0 :       ss << "can not loop trajectory, the first and last points are too far apart";
+    2750           0 :       ROS_WARN_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    2751           0 :       return std::tuple(false, ss.str(), false);
+    2752             :     }
+    2753             : 
+    2754             :   } else {
+    2755             : 
+    2756         507 :     loop = false;
+    2757             :   }
+    2758             : 
+    2759             :   //}
+    2760             : 
+    2761             :   // by this time, the values of these should be set:
+    2762             :   // * loop
+    2763             : 
+    2764             :   /* add tail (the last point repeated to fill the prediction horizon) //{ */
+    2765             : 
+    2766         507 :   if (!loop) {
+    2767             : 
+    2768             :     // extend it so it has smooth ending
+    2769       20787 :     for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    2770             : 
+    2771       20280 :       des_x_whole_trajectory(i + trajectory_size)       = des_x_whole_trajectory(i + trajectory_size - 1);
+    2772       20280 :       des_y_whole_trajectory(i + trajectory_size)       = des_y_whole_trajectory(i + trajectory_size - 1);
+    2773       20280 :       des_z_whole_trajectory(i + trajectory_size)       = des_z_whole_trajectory(i + trajectory_size - 1);
+    2774       20280 :       des_heading_whole_trajectory(i + trajectory_size) = des_heading_whole_trajectory(i + trajectory_size - 1);
+    2775             :     }
+    2776             :   }
+    2777             : 
+    2778             :   //}
+    2779             : 
+    2780             :   // by this time, the values of these should be set correctly:
+    2781             :   // * trajectory_size
+    2782             :   // * des_x_whole_trajectory
+    2783             :   // * des_y_whole_trajectory
+    2784             :   // * des_z_whole_trajectory
+    2785             :   // * des_heading_whole_trajectory
+    2786             : 
+    2787             :   /* update the global variables //{ */
+    2788             : 
+    2789             :   {
+    2790        1014 :     std::scoped_lock lock(mutex_des_whole_trajectory_, mutex_des_trajectory_, mutex_trajectory_tracking_states_);
+    2791             : 
+    2792         507 :     des_whole_trajectory_id_ = msg.input_id;
+    2793             : 
+    2794         507 :     auto mpc_x_heading = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_heading_);
+    2795             : 
+    2796         507 :     trajectory_tracking_in_progress_ = msg.fly_now;
+    2797         507 :     trajectory_track_heading_        = msg.use_heading;
+    2798             : 
+    2799             :     // allocate the vectors
+    2800         507 :     des_x_whole_trajectory_       = std::make_shared<VectorXd>(trajectory_size + MPC_HORIZON_LENGTH, 1);
+    2801         507 :     des_y_whole_trajectory_       = std::make_shared<VectorXd>(trajectory_size + MPC_HORIZON_LENGTH, 1);
+    2802         507 :     des_z_whole_trajectory_       = std::make_shared<VectorXd>(trajectory_size + MPC_HORIZON_LENGTH, 1);
+    2803         507 :     des_heading_whole_trajectory_ = std::make_shared<VectorXd>(trajectory_size + MPC_HORIZON_LENGTH, 1);
+    2804             : 
+    2805       46517 :     for (int i = 0; i < trajectory_size + MPC_HORIZON_LENGTH; i++) {
+    2806             : 
+    2807       46010 :       (*des_x_whole_trajectory_)(i) = des_x_whole_trajectory(i);
+    2808       46010 :       (*des_y_whole_trajectory_)(i) = des_y_whole_trajectory(i);
+    2809       46010 :       (*des_z_whole_trajectory_)(i) = des_z_whole_trajectory(i);
+    2810             : 
+    2811       46010 :       if (trajectory_track_heading_) {
+    2812       46010 :         (*des_heading_whole_trajectory_)(i) = des_heading_whole_trajectory(i);
+    2813             :       } else {
+    2814           0 :         (*des_heading_whole_trajectory_).fill(mpc_x_heading(0, 0));
+    2815             :       }
+    2816             :     }
+    2817             : 
+    2818             :     // if we are tracking trajectory, copy the setpoint
+    2819         507 :     if (trajectory_tracking_in_progress_) {
+    2820             : 
+    2821         506 :       toggleHover(false);
+    2822             : 
+    2823             :       /* interpolate the trajectory points and fill in the desired_trajectory vector //{ */
+    2824             : 
+    2825       20746 :       for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    2826             : 
+    2827       20240 :         double first_time = dt1 + i * _dt2_ + trajectory_subsample_offset * dt1;
+    2828             : 
+    2829       20240 :         int first_idx  = floor(first_time / trajectory_dt);
+    2830       20240 :         int second_idx = first_idx + 1;
+    2831             : 
+    2832       20240 :         double interp_coeff = std::fmod(first_time / trajectory_dt, 1.0);
+    2833             : 
+    2834       20240 :         if (trajectory_tracking_loop_) {
+    2835             : 
+    2836           0 :           if (second_idx >= trajectory_size) {
+    2837           0 :             second_idx -= trajectory_size;
+    2838             :           }
+    2839             : 
+    2840           0 :           if (first_idx >= trajectory_size) {
+    2841           0 :             first_idx -= trajectory_size;
+    2842             :           }
+    2843             :         } else {
+    2844             : 
+    2845       20240 :           if (second_idx >= trajectory_size) {
+    2846           0 :             second_idx = trajectory_size - 1;
+    2847             :           }
+    2848             : 
+    2849       20240 :           if (first_idx >= trajectory_size) {
+    2850           0 :             first_idx = trajectory_size - 1;
+    2851             :           }
+    2852             :         }
+    2853             : 
+    2854       20240 :         des_x_trajectory_(i, 0) = (1 - interp_coeff) * des_x_whole_trajectory(first_idx) + interp_coeff * des_x_whole_trajectory(second_idx);
+    2855       20240 :         des_y_trajectory_(i, 0) = (1 - interp_coeff) * des_y_whole_trajectory(first_idx) + interp_coeff * des_y_whole_trajectory(second_idx);
+    2856       20240 :         des_z_trajectory_(i, 0) = (1 - interp_coeff) * des_z_whole_trajectory(first_idx) + interp_coeff * des_z_whole_trajectory(second_idx);
+    2857             : 
+    2858       20240 :         des_heading_trajectory_(i, 0) = sradians::interp(des_heading_whole_trajectory(first_idx), des_heading_whole_trajectory(second_idx), interp_coeff);
+    2859             :       }
+    2860             : 
+    2861             :       //}
+    2862             :     }
+    2863             : 
+    2864         507 :     trajectory_size_             = trajectory_size;
+    2865         507 :     trajectory_current_time_     = 0;
+    2866         507 :     trajectory_set_              = true;
+    2867         507 :     trajectory_tracking_loop_    = loop;
+    2868         507 :     trajectory_dt_               = trajectory_dt;
+    2869         507 :     trajectory_count_++;
+    2870             :   }
+    2871             : 
+    2872             :   //}
+    2873             : 
+    2874         507 :   ROS_INFO_THROTTLE(1, "[MpcTracker]: finished setting trajectory with length %d", trajectory_size);
+    2875             : 
+    2876             :   /* publish the debugging topics of the post-processed trajectory //{ */
+    2877             : 
+    2878             :   {
+    2879             : 
+    2880        1014 :     geometry_msgs::PoseArray debug_trajectory_out;
+    2881         507 :     debug_trajectory_out.header.stamp    = ros::Time::now();
+    2882         507 :     debug_trajectory_out.header.frame_id = common_handlers_->transformer->resolveFrame(msg.header.frame_id);
+    2883             : 
+    2884             :     {
+    2885        1014 :       std::scoped_lock lock(mutex_des_whole_trajectory_);
+    2886             : 
+    2887       26237 :       for (int i = 0; i < trajectory_size; i++) {
+    2888             : 
+    2889       25730 :         geometry_msgs::Pose new_pose;
+    2890             : 
+    2891       25730 :         new_pose.position.x = (*des_x_whole_trajectory_)(i);
+    2892       25730 :         new_pose.position.y = (*des_y_whole_trajectory_)(i);
+    2893       25730 :         new_pose.position.z = (*des_z_whole_trajectory_)(i);
+    2894             : 
+    2895       25730 :         new_pose.orientation = mrs_lib::AttitudeConverter(0, 0, (*des_heading_whole_trajectory_)(i));
+    2896             : 
+    2897       25730 :         debug_trajectory_out.poses.push_back(new_pose);
+    2898             :       }
+    2899             :     }
+    2900             : 
+    2901         507 :     pub_debug_processed_trajectory_poses_.publish(debug_trajectory_out);
+    2902             : 
+    2903        1014 :     visualization_msgs::MarkerArray msg_out;
+    2904             : 
+    2905        1014 :     visualization_msgs::Marker marker;
+    2906             : 
+    2907         507 :     marker.header.stamp     = ros::Time::now();
+    2908         507 :     marker.header.frame_id  = common_handlers_->transformer->resolveFrame(msg.header.frame_id);
+    2909         507 :     marker.type             = visualization_msgs::Marker::LINE_LIST;
+    2910         507 :     marker.color.a          = 1;
+    2911         507 :     marker.scale.x          = 0.05;
+    2912         507 :     marker.color.r          = 1;
+    2913         507 :     marker.color.g          = 0;
+    2914         507 :     marker.color.b          = 0;
+    2915         507 :     marker.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+    2916             : 
+    2917             :     {
+    2918        1014 :       std::scoped_lock lock(mutex_des_whole_trajectory_);
+    2919             : 
+    2920       25730 :       for (int i = 0; i < trajectory_size - 1; i++) {
+    2921             : 
+    2922       25223 :         geometry_msgs::Point point1;
+    2923             : 
+    2924       25223 :         point1.x = des_x_whole_trajectory(i);
+    2925       25223 :         point1.y = des_y_whole_trajectory(i);
+    2926       25223 :         point1.z = des_z_whole_trajectory(i);
+    2927             : 
+    2928       25223 :         marker.points.push_back(point1);
+    2929             : 
+    2930       25223 :         geometry_msgs::Point point2;
+    2931             : 
+    2932       25223 :         point2.x = des_x_whole_trajectory(i + 1);
+    2933       25223 :         point2.y = des_y_whole_trajectory(i + 1);
+    2934       25223 :         point2.z = des_z_whole_trajectory(i + 1);
+    2935             : 
+    2936       25223 :         marker.points.push_back(point2);
+    2937             :       }
+    2938             :     }
+    2939             : 
+    2940         507 :     msg_out.markers.push_back(marker);
+    2941             : 
+    2942         507 :     pub_debug_processed_trajectory_markers_.publish(msg_out);
+    2943             :   }
+    2944             : 
+    2945             :   //}
+    2946             : 
+    2947         507 :   publishDiagnostics();
+    2948             : 
+    2949        1014 :   return std::tuple(true, "trajectory loaded", false);
+    2950             : }
+    2951             : 
+    2952             : //}
+    2953             : 
+    2954             : /* //{ setSinglePointReference() */
+    2955             : 
+    2956             : // fill the des_*_trajectory based on a single point
+    2957         435 : void MpcTracker::setSinglePointReference(const double x, const double y, const double z, const double heading) {
+    2958             : 
+    2959         870 :   std::scoped_lock lock(mutex_des_trajectory_);
+    2960             : 
+    2961         435 :   des_x_trajectory_.fill(x);
+    2962         435 :   des_y_trajectory_.fill(y);
+    2963         435 :   des_z_trajectory_.fill(z);
+    2964         435 :   des_heading_trajectory_.fill(heading);
+    2965         435 : }
+    2966             : 
+    2967             : //}
+    2968             : 
+    2969             : /* //{ setGoal() */
+    2970             : 
+    2971             : // set absolute goal
+    2972         262 : void MpcTracker::setGoal(const double pos_x, const double pos_y, const double pos_z, const double heading, const bool use_heading) {
+    2973             : 
+    2974         262 :   double desired_heading = sradians::wrap(heading);
+    2975             : 
+    2976         524 :   auto mpc_x_heading = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_heading_);
+    2977             : 
+    2978         262 :   if (!use_heading) {
+    2979           0 :     desired_heading = mpc_x_heading(0, 0);
+    2980             :   }
+    2981             : 
+    2982         262 :   trajectory_tracking_in_progress_ = false;
+    2983             : 
+    2984         262 :   setSinglePointReference(pos_x, pos_y, pos_z, desired_heading);
+    2985             : 
+    2986         262 :   publishDiagnostics();
+    2987         262 : }
+    2988             : 
+    2989             : //}
+    2990             : 
+    2991             : /* //{ setRelativeGoal() */
+    2992             : 
+    2993         173 : void MpcTracker::setRelativeGoal(const double pos_x, const double pos_y, const double pos_z, const double heading, const bool use_heading) {
+    2994             : 
+    2995         346 :   auto [mpc_x, mpc_x_heading] = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_, mpc_x_heading_);
+    2996             : 
+    2997         173 :   double abs_x = mpc_x(0, 0) + pos_x;
+    2998         173 :   double abs_y = mpc_x(4, 0) + pos_y;
+    2999         173 :   double abs_z = mpc_x(8, 0) + pos_z;
+    3000             : 
+    3001         173 :   double abs_heading = mpc_x_heading(0, 0);
+    3002             : 
+    3003         173 :   if (use_heading) {
+    3004           0 :     abs_heading += heading;
+    3005             :   }
+    3006             : 
+    3007         173 :   trajectory_tracking_in_progress_ = false;
+    3008             : 
+    3009         173 :   setSinglePointReference(abs_x, abs_y, abs_z, abs_heading);
+    3010             : 
+    3011         173 :   publishDiagnostics();
+    3012         173 : }
+    3013             : 
+    3014             : //}
+    3015             : 
+    3016             : /* toggleHover() //{ */
+    3017             : 
+    3018         950 : void MpcTracker::toggleHover(bool in) {
+    3019             : 
+    3020         950 :   if (in == false && hovering_in_progress_) {
+    3021             : 
+    3022          84 :     ROS_DEBUG("[MpcTracker]: stoppping the hover timer");
+    3023             : 
+    3024          84 :     timer_hover_.stop();
+    3025             : 
+    3026          84 :     hovering_in_progress_ = false;
+    3027             : 
+    3028         866 :   } else if (in == true && !hovering_in_progress_) {
+    3029             : 
+    3030          84 :     ROS_DEBUG("[MpcTracker]: starting the hover timer");
+    3031             : 
+    3032          84 :     hovering_in_progress_ = true;
+    3033             : 
+    3034          84 :     timer_hover_.start();
+    3035             :   }
+    3036         950 : }
+    3037             : 
+    3038             : //}
+    3039             : 
+    3040             : // | ------------------- trajectory tracking ------------------ |
+    3041             : 
+    3042             : /* startTrajectoryTrackingImpl() //{ */
+    3043             : 
+    3044           1 : std::tuple<bool, std::string> MpcTracker::startTrajectoryTrackingImpl(void) {
+    3045             : 
+    3046           2 :   std::stringstream ss;
+    3047             : 
+    3048           1 :   if (trajectory_set_) {
+    3049             : 
+    3050           1 :     toggleHover(false);
+    3051             : 
+    3052             :     {
+    3053           1 :       std::scoped_lock lock(mutex_des_trajectory_);
+    3054             : 
+    3055           1 :       trajectory_tracking_in_progress_ = true;
+    3056           1 :       trajectory_current_time_ = 0;
+    3057             :     }
+    3058             : 
+    3059           1 :     publishDiagnostics();
+    3060             : 
+    3061           1 :     ss << "trajectory tracking started";
+    3062           1 :     ROS_INFO_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    3063             : 
+    3064           1 :     return std::tuple(true, ss.str());
+    3065             : 
+    3066             :   } else {
+    3067             : 
+    3068           0 :     ss << "can not start trajectory tracking, the trajectory is not set";
+    3069           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    3070             : 
+    3071           0 :     return std::tuple(false, ss.str());
+    3072             :   }
+    3073             : }
+    3074             : 
+    3075             : //}
+    3076             : 
+    3077             : /* resumeTrajectoryTrackingImpl() //{ */
+    3078             : 
+    3079           0 : std::tuple<bool, std::string> MpcTracker::resumeTrajectoryTrackingImpl(void) {
+    3080             : 
+    3081           0 :   std::stringstream ss;
+    3082             : 
+    3083           0 :   if (trajectory_set_) {
+    3084             : 
+    3085           0 :     toggleHover(false);
+    3086             : 
+    3087           0 :     int trajectory_tracking_idx = getCurrentTrajectoryIdx();
+    3088             : 
+    3089           0 :     if (trajectory_tracking_idx < (trajectory_size_ - 1)) {
+    3090             : 
+    3091             :       {
+    3092           0 :         std::scoped_lock lock(mutex_des_trajectory_);
+    3093             : 
+    3094           0 :         trajectory_tracking_in_progress_ = true;
+    3095             :       }
+    3096             : 
+    3097           0 :       ss << "trajectory tracking resumed";
+    3098           0 :       ROS_INFO_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    3099             : 
+    3100           0 :       publishDiagnostics();
+    3101             : 
+    3102           0 :       return std::tuple(true, ss.str());
+    3103             : 
+    3104             :     } else {
+    3105             : 
+    3106           0 :       ss << "can not resume trajectory tracking, trajectory is already finished";
+    3107           0 :       ROS_WARN_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    3108             : 
+    3109           0 :       return std::tuple(false, ss.str());
+    3110             :     }
+    3111             : 
+    3112             :   } else {
+    3113             : 
+    3114           0 :     ss << "can not resume trajectory tracking, ther trajectory is not set";
+    3115           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    3116             : 
+    3117           0 :     return std::tuple(false, ss.str());
+    3118             :   }
+    3119             : }
+    3120             : 
+    3121             : //}
+    3122             : 
+    3123             : /* stopTrajectoryTrackingImpl() //{ */
+    3124             : 
+    3125           0 : std::tuple<bool, std::string> MpcTracker::stopTrajectoryTrackingImpl(void) {
+    3126             : 
+    3127           0 :   std::stringstream ss;
+    3128             : 
+    3129           0 :   if (trajectory_tracking_in_progress_) {
+    3130             : 
+    3131           0 :     trajectory_tracking_in_progress_ = false;
+    3132             : 
+    3133           0 :     toggleHover(true);
+    3134             : 
+    3135           0 :     ss << "stopping trajectory tracking";
+    3136           0 :     ROS_INFO_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    3137             : 
+    3138           0 :     publishDiagnostics();
+    3139             : 
+    3140             :   } else {
+    3141             : 
+    3142           0 :     ss << "can not stop trajectory tracking, already at stop";
+    3143           0 :     ROS_INFO_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    3144             :   }
+    3145             : 
+    3146           0 :   return std::tuple(true, ss.str());
+    3147             : }
+    3148             : 
+    3149             : //}
+    3150             : 
+    3151             : /* gotoTrajectoryStartImpl() //{ */
+    3152             : 
+    3153           1 : std::tuple<bool, std::string> MpcTracker::gotoTrajectoryStartImpl(void) {
+    3154             : 
+    3155           2 :   std::stringstream ss;
+    3156             : 
+    3157           1 :   if (trajectory_set_) {
+    3158             : 
+    3159           1 :     toggleHover(false);
+    3160             : 
+    3161           1 :     trajectory_tracking_in_progress_ = false;
+    3162             : 
+    3163             :     {
+    3164           2 :       std::scoped_lock lock(mutex_des_whole_trajectory_);
+    3165             : 
+    3166           1 :       setGoal((*des_x_whole_trajectory_)[0], (*des_y_whole_trajectory_)[0], (*des_z_whole_trajectory_)[0], (*des_heading_whole_trajectory_)[0],
+    3167           1 :               trajectory_track_heading_);
+    3168             :     }
+    3169             : 
+    3170           1 :     publishDiagnostics();
+    3171             : 
+    3172           1 :     ss << "flying to the start of the trajectory";
+    3173           1 :     ROS_INFO_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    3174             : 
+    3175           1 :     return std::tuple(true, ss.str());
+    3176             : 
+    3177             :   } else {
+    3178             : 
+    3179           0 :     ss << "can not fly to the start of the trajectory, the trajectory is not set";
+    3180           0 :     ROS_WARN_STREAM_THROTTLE(1.0, "[MpcTracker]: " << ss.str());
+    3181             : 
+    3182           0 :     return std::tuple(false, ss.str());
+    3183             :   }
+    3184             : }
+    3185             : 
+    3186             : //}
+    3187             : 
+    3188             : // | ------------------------- support ------------------------ |
+    3189             : 
+    3190             : /* //{ publishDiagnostics() */
+    3191             : 
+    3192       20317 : void MpcTracker::publishDiagnostics(void) {
+    3193             : 
+    3194       40634 :   auto des_x_trajectory       = mrs_lib::get_mutexed(mutex_des_trajectory_, des_x_trajectory_);
+    3195       40634 :   auto des_y_trajectory       = mrs_lib::get_mutexed(mutex_des_trajectory_, des_y_trajectory_);
+    3196       40634 :   auto des_z_trajectory       = mrs_lib::get_mutexed(mutex_des_trajectory_, des_z_trajectory_);
+    3197       40634 :   auto des_heading_trajectory = mrs_lib::get_mutexed(mutex_des_trajectory_, des_heading_trajectory_);
+    3198             : 
+    3199       40634 :   mrs_msgs::MpcTrackerDiagnostics diagnostics;
+    3200             : 
+    3201       20317 :   diagnostics.header.stamp    = ros::Time::now();
+    3202       20317 :   diagnostics.header.frame_id = uav_state_.header.frame_id;
+    3203             : 
+    3204       20317 :   diagnostics.active = is_active_;
+    3205             : 
+    3206       20317 :   diagnostics.uav_name = _uav_name_;
+    3207             : 
+    3208       20317 :   diagnostics.collision_avoidance_active = collision_avoidance_enabled_;
+    3209       20317 :   diagnostics.avoiding_collision         = collision_avoidance_affecting_me_;
+    3210             : 
+    3211       20317 :   diagnostics.setpoint.position.x = des_x_trajectory(0, 0);
+    3212       20317 :   diagnostics.setpoint.position.y = des_y_trajectory(0, 0);
+    3213       20317 :   diagnostics.setpoint.position.z = des_z_trajectory(0, 0);
+    3214             : 
+    3215       20317 :   diagnostics.setpoint.orientation = mrs_lib::AttitudeConverter(0, 0, des_heading_trajectory(0, 0));
+    3216             : 
+    3217       40634 :   std::stringstream ss;
+    3218             : 
+    3219             :   {
+    3220       40634 :     std::scoped_lock lock(mutex_other_uav_diagnostics_);
+    3221             : 
+    3222             :     // fill in if other UAVs are sending their trajectories
+    3223       20317 :     std::map<std::string, mrs_msgs::MpcTrackerDiagnostics>::iterator u = other_uav_diagnostics_.begin();
+    3224             : 
+    3225       22218 :     while (u != other_uav_diagnostics_.end()) {
+    3226             : 
+    3227        1901 :       if (u->second.collision_avoidance_active) {
+    3228             : 
+    3229             :         // is the other's trajectory fresh enought?
+    3230        1211 :         if ((ros::Time::now() - u->second.header.stamp).toSec() < _collision_trajectory_timeout_) {
+    3231        1211 :           diagnostics.avoidance_active_uavs.push_back(u->first);
+    3232        1211 :           ss << u->first.c_str() << ", ";
+    3233             :         }
+    3234             :       }
+    3235             : 
+    3236        1901 :       u++;
+    3237             :     }
+    3238             :   }
+    3239             : 
+    3240       40634 :   auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    3241             : 
+    3242       20317 :   if (ss.str().length() > 0) {
+    3243        1211 :     ROS_DEBUG_STREAM_THROTTLE(5.0, "[MpcTracker]: getting avoidance trajectories: " << ss.str());
+    3244       41365 :   } else if (collision_avoidance_enabled_ &&
+    3245       22259 :       (uav_state.estimator_horizontal == "lat_gps" || uav_state.estimator_horizontal == "lat_rtk")) {
+    3246       15796 :     ROS_DEBUG_THROTTLE(10.0, "[MpcTracker]: missing avoidance trajectories!");
+    3247             :   }
+    3248             : 
+    3249       20317 :   pub_diagnostics_.publish(diagnostics);
+    3250             : 
+    3251       40634 :   std_msgs::String string_msg;
+    3252             : 
+    3253       20317 :   if (diagnostics.avoidance_active_uavs.empty()) {
+    3254             : 
+    3255       19106 :     string_msg.data = "-id col_avoid I see: NOTHING";
+    3256             : 
+    3257             :   } else {
+    3258             : 
+    3259        1211 :     string_msg.data = "-id col_avoid I see: ";
+    3260             :   }
+    3261             : 
+    3262       20317 :   if (diagnostics.avoidance_active_uavs.size() <= 3) {
+    3263             : 
+    3264       21528 :     for (size_t i = 0; i < diagnostics.avoidance_active_uavs.size(); i++) {
+    3265        1211 :       if (i == 0) {
+    3266        1211 :         string_msg.data += diagnostics.avoidance_active_uavs[i];
+    3267             :       } else {
+    3268           0 :         string_msg.data += ", " + diagnostics.avoidance_active_uavs[i];
+    3269             :       }
+    3270             :     }
+    3271             : 
+    3272             :   } else {
+    3273             : 
+    3274           0 :     std::stringstream ss;
+    3275           0 :     ss << diagnostics.avoidance_active_uavs.size();
+    3276             : 
+    3277           0 :     string_msg.data += ss.str() + " UAVs";
+    3278             :   }
+    3279             : 
+    3280       20317 :   pub_status_string_.publish(string_msg);
+    3281       20317 : }
+    3282             : 
+    3283             : //}
+    3284             : 
+    3285             : /* debugPrintState() //{ */
+    3286             : 
+    3287           0 : void MpcTracker::debugPrintState(const double throttle) {
+    3288             : 
+    3289           0 :   auto [mpc_x, mpc_x_heading] = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_, mpc_x_heading_);
+    3290             : 
+    3291           0 :   ROS_DEBUG_THROTTLE(throttle, "[MpcTracker]: MPC internal state: pos [%.2f, %.2f, %.2f, %.2f]", mpc_x(0), mpc_x(4), mpc_x(8), mpc_x_heading(0));
+    3292           0 :   ROS_DEBUG_THROTTLE(throttle, "[MpcTracker]: MPC internal state: vel [%.2f, %.2f, %.2f, %.2f]", mpc_x(1), mpc_x(5), mpc_x(9), mpc_x_heading(1));
+    3293           0 :   ROS_DEBUG_THROTTLE(throttle, "[MpcTracker]: MPC internal state: acc [%.2f, %.2f, %.2f, %.2f]", mpc_x(2), mpc_x(6), mpc_x(10), mpc_x_heading(2));
+    3294           0 :   ROS_DEBUG_THROTTLE(throttle, "[MpcTracker]: MPC internal state: jerk [%.2f, %.2f, %.2f, %.2f]", mpc_x(3), mpc_x(7), mpc_x(11), mpc_x_heading(3));
+    3295           0 : }
+    3296             : 
+    3297             : //}
+    3298             : 
+    3299             : /* debugPrintMPCu() //{ */
+    3300             : 
+    3301           0 : void MpcTracker::debugPrintMPCResult(const double throttle) {
+    3302             : 
+    3303           0 :   auto [mpc_u, mpc_u_heading] = mrs_lib::get_mutexed(mutex_mpc_u_, mpc_u_, mpc_u_heading_);
+    3304           0 :   auto constraints            = mrs_lib::get_mutexed(mutex_constraints_, constraints_);
+    3305             : 
+    3306           0 :   ROS_DEBUG_THROTTLE(throttle, "[MpcTracker]: MPC result: [%.2f, %.2f, %.2f, %.2f]", mpc_u(0), mpc_u(1), mpc_u(2), mpc_u_heading);
+    3307           0 :   ROS_DEBUG_THROTTLE(throttle, "[MpcTracker]: snap constraint: hor: %.2f, ver asc: %.2f, vert desc: %.2f, heading: %.2f]", constraints.horizontal_snap,
+    3308             :                      constraints.vertical_ascending_snap, constraints.vertical_descending_snap, constraints.heading_snap);
+    3309           0 : }
+    3310             : 
+    3311             : //}
+    3312             : 
+    3313             : /* getCurrentTrajectoryIdx() //{ */
+    3314             : 
+    3315        7500 : int MpcTracker::getCurrentTrajectoryIdx() {
+    3316             : 
+    3317        7500 :   auto trajectory_current_time = mrs_lib::get_mutexed(mutex_trajectory_tracking_states_, trajectory_current_time_);
+    3318        7500 :   auto trajectory_dt   = mrs_lib::get_mutexed(mutex_trajectory_tracking_states_, trajectory_dt_);
+    3319             : 
+    3320        7500 :   return floor(trajectory_current_time / trajectory_dt);
+    3321             : }
+    3322             : 
+    3323             : //}
+    3324             : 
+    3325             : /* increaseCurrentTrajectoryTime() //{ */
+    3326             : 
+    3327       11702 : void MpcTracker::increaseCurrentTrajectoryTime(const double dt) {
+    3328             : 
+    3329       11702 :   auto trajectory_current_time = mrs_lib::get_mutexed(mutex_trajectory_tracking_states_, trajectory_current_time_);
+    3330       11702 :   auto [trajectory_size, trajectory_dt] = mrs_lib::get_mutexed(mutex_des_trajectory_, trajectory_size_, trajectory_dt_);
+    3331             : 
+    3332       11702 :   trajectory_current_time += dt;
+    3333             : 
+    3334       11702 :   const double trajectory_duration = trajectory_size * trajectory_dt;
+    3335             : 
+    3336             :   // if the tracking idx hits the end of the trajectory
+    3337       11702 :   if (trajectory_current_time >= trajectory_duration) {
+    3338             : 
+    3339           4 :     if (trajectory_tracking_loop_) {
+    3340             : 
+    3341             :       // reset the idx
+    3342           0 :       trajectory_current_time -= trajectory_duration;
+    3343             : 
+    3344           0 :       ROS_INFO("[MpcTracker]: trajectory looped");
+    3345             : 
+    3346             :     } else {
+    3347             : 
+    3348           4 :       trajectory_tracking_in_progress_ = false;
+    3349             : 
+    3350           4 :       ROS_INFO("[MpcTracker]: done tracking trajectory");
+    3351             :     }
+    3352             :   }
+    3353             : 
+    3354       11702 :   mrs_lib::set_mutexed(mutex_trajectory_tracking_states_, trajectory_current_time, trajectory_current_time_);
+    3355       11702 : }
+    3356             : 
+    3357             : //}
+    3358             : 
+    3359             : // --------------------------------------------------------------
+    3360             : // |                           timers                           |
+    3361             : // --------------------------------------------------------------
+    3362             : 
+    3363             : /* //{ timerDiagnostics() */
+    3364             : 
+    3365             : // published diagnostics in reguar intervals
+    3366       19333 : void MpcTracker::timerDiagnostics(const ros::TimerEvent& event) {
+    3367             : 
+    3368       19333 :   if (!is_initialized_)
+    3369           0 :     return;
+    3370             : 
+    3371       57999 :   mrs_lib::Routine    profiler_routine = profiler.createRoutine("timerDiagnostics", _diagnostics_rate_, 0.1, event);
+    3372       57999 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("MpcTracker::timerDiagnostics", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+    3373             : 
+    3374       19333 :   publishDiagnostics();
+    3375             : }
+    3376             : 
+    3377             : //}
+    3378             : 
+    3379             : /* //{ timerMPC() */
+    3380             : 
+    3381       69502 : void MpcTracker::timerMPC(const ros::TimerEvent& event) {
+    3382             : 
+    3383       69502 :   if (odometry_reset_in_progress_) {
+    3384           0 :     ROS_ERROR("[MpcTracker]: mpc iteration tried run while reseting odometry");
+    3385           0 :     return;
+    3386             :   }
+    3387             : 
+    3388       69502 :   auto dt1 = mrs_lib::get_mutexed(mutex_dt1_, dt1_);
+    3389             : 
+    3390       69502 :   mrs_lib::AtomicScopeFlag unset_running(mpc_timer_running_);
+    3391             : 
+    3392       69502 :   bool started_with_invalid = mpc_result_invalid_;
+    3393             : 
+    3394       69502 :   if (!is_active_) {
+    3395           0 :     return;
+    3396             :   }
+    3397             : 
+    3398       69502 :   if (!is_initialized_) {
+    3399           0 :     return;
+    3400             :   }
+    3401             : 
+    3402      208506 :   mrs_lib::Routine    profiler_routine = profiler.createRoutine("timerMPC", 1.0 / dt1, 0.01, event);
+    3403      208506 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("MpcTracker::timerMPC", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+    3404             : 
+    3405       69502 :   ros::Time     begin = ros::Time::now();
+    3406       69502 :   ros::Time     end;
+    3407       69502 :   ros::Duration interval;
+    3408             :   int           trajectory_id;
+    3409             : 
+    3410             :   // if we are tracking trajectory, copy the setpoint
+    3411       69502 :   if (trajectory_tracking_in_progress_) {
+    3412             : 
+    3413       23404 :     MatrixXd des_x_trajectory, des_y_trajectory, des_z_trajectory, des_heading_trajectory;
+    3414       23404 :     VectorXd des_x_whole_trajectory, des_y_whole_trajectory, des_z_whole_trajectory, des_heading_whole_trajectory;
+    3415             :     double   trajectory_dt;
+    3416             :     int      trajectory_size;
+    3417             :     {
+    3418       11702 :       std::scoped_lock lock(mutex_des_trajectory_, mutex_des_whole_trajectory_);
+    3419             : 
+    3420       11702 :       des_x_trajectory       = des_x_trajectory_;
+    3421       11702 :       des_y_trajectory       = des_y_trajectory_;
+    3422       11702 :       des_z_trajectory       = des_z_trajectory_;
+    3423       11702 :       des_heading_trajectory = des_heading_trajectory_;
+    3424             : 
+    3425       11702 :       des_x_whole_trajectory       = *des_x_whole_trajectory_;
+    3426       11702 :       des_y_whole_trajectory       = *des_y_whole_trajectory_;
+    3427       11702 :       des_z_whole_trajectory       = *des_z_whole_trajectory_;
+    3428       11702 :       des_heading_whole_trajectory = *des_heading_whole_trajectory_;
+    3429             : 
+    3430       11702 :       trajectory_size = trajectory_size_;
+    3431       11702 :       trajectory_dt   = trajectory_dt_;
+    3432             : 
+    3433       11702 :       trajectory_id = des_whole_trajectory_id_;
+    3434             :     }
+    3435             : 
+    3436             :     /* interpolate the trajectory points and fill in the desired_trajectory vector //{ */
+    3437             : 
+    3438       11702 :     const double dt_from_last_update = (event.current_real - event.last_real).toSec();
+    3439             : 
+    3440       11702 :     increaseCurrentTrajectoryTime(dt_from_last_update);
+    3441             : 
+    3442       11702 :     auto trajectory_current_time = mrs_lib::get_mutexed(mutex_trajectory_tracking_states_, trajectory_current_time_);
+    3443             : 
+    3444      479782 :     for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    3445             : 
+    3446      468080 :       double first_time = trajectory_current_time + double(i) * _dt2_;
+    3447             : 
+    3448      468080 :       int first_idx  = int(floor(first_time / trajectory_dt));
+    3449      468080 :       int second_idx = first_idx + 1;
+    3450             : 
+    3451      468080 :       double interp_coeff = std::fmod(first_time / trajectory_dt, 1.0);
+    3452             : 
+    3453      468080 :       if (trajectory_tracking_loop_) {
+    3454             : 
+    3455           0 :         if (second_idx >= trajectory_size) {
+    3456           0 :           second_idx = second_idx % trajectory_size;
+    3457             :         }
+    3458             : 
+    3459           0 :         if (first_idx >= trajectory_size) {
+    3460           0 :           first_idx = first_idx % trajectory_size;
+    3461             :         }
+    3462             : 
+    3463             :       } else {
+    3464             : 
+    3465      468080 :         if (second_idx >= trajectory_size) {
+    3466       58097 :           second_idx = trajectory_size - 1;
+    3467             :         }
+    3468             : 
+    3469      468080 :         if (first_idx >= trajectory_size) {
+    3470       55280 :           first_idx = trajectory_size - 1;
+    3471             :         }
+    3472             :       }
+    3473             : 
+    3474      468080 :       des_x_trajectory(i, 0) = (1 - interp_coeff) * des_x_whole_trajectory[first_idx] + interp_coeff * des_x_whole_trajectory[second_idx];
+    3475      468080 :       des_y_trajectory(i, 0) = (1 - interp_coeff) * des_y_whole_trajectory[first_idx] + interp_coeff * des_y_whole_trajectory[second_idx];
+    3476      468080 :       des_z_trajectory(i, 0) = (1 - interp_coeff) * des_z_whole_trajectory[first_idx] + interp_coeff * des_z_whole_trajectory[second_idx];
+    3477             : 
+    3478      468080 :       des_heading_trajectory(i, 0) = sradians::interp(des_heading_whole_trajectory[first_idx], des_heading_whole_trajectory[second_idx], interp_coeff);
+    3479             :     }
+    3480             : 
+    3481             :     {
+    3482       23404 :       std::scoped_lock lock(mutex_des_trajectory_);
+    3483             : 
+    3484       11702 :       des_x_trajectory_       = des_x_trajectory;
+    3485       11702 :       des_y_trajectory_       = des_y_trajectory;
+    3486       11702 :       des_z_trajectory_       = des_z_trajectory;
+    3487       11702 :       des_heading_trajectory_ = des_heading_trajectory;
+    3488             :     }
+    3489             : 
+    3490             :     //}
+    3491             : 
+    3492             :   } else {
+    3493             : 
+    3494       57800 :     std::scoped_lock lock(mutex_des_whole_trajectory_);
+    3495             : 
+    3496       57800 :     trajectory_id = des_whole_trajectory_id_;
+    3497             :   }
+    3498             : 
+    3499       69502 :   manageConstraints();
+    3500             : 
+    3501       69502 :   calculateMPC();
+    3502             : 
+    3503       69502 :   end      = ros::Time::now();
+    3504       69502 :   interval = end - begin;
+    3505             : 
+    3506             :   // | ------------------ calculate the MPC RTF ----------------- |
+    3507             : 
+    3508       69502 :   mpc_rtf_ = 0.99 * mpc_rtf_ + 0.01 * (interval.toSec()/dt1);
+    3509             : 
+    3510       69502 :   if (mpc_rtf_ >= 1.0) {
+    3511           0 :     ROS_WARN_THROTTLE(5.0, "[MpcTracker] MPC Real Time Factor (%.3f) is slow", mpc_rtf_);
+    3512             :   }
+    3513             : 
+    3514             :   /* publish predicted future //{ */
+    3515             : 
+    3516             :   {
+    3517      139004 :     geometry_msgs::PoseArray debug_trajectory_out;
+    3518       69502 :     debug_trajectory_out.header.stamp    = ros::Time::now();
+    3519       69502 :     debug_trajectory_out.header.frame_id = uav_state_.header.frame_id;
+    3520             : 
+    3521             :     {
+    3522      139004 :       std::scoped_lock lock(mutex_predicted_trajectory_);
+    3523             : 
+    3524     2849582 :       for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    3525             : 
+    3526     2780080 :         geometry_msgs::Pose newPose;
+    3527             : 
+    3528     2780080 :         newPose.position.x = predicted_trajectory_(i * MPC_N_STATES);
+    3529     2780080 :         newPose.position.y = predicted_trajectory_(i * MPC_N_STATES + 4);
+    3530     2780080 :         newPose.position.z = predicted_trajectory_(i * MPC_N_STATES + 8);
+    3531             : 
+    3532             :         try {
+    3533     2780080 :           newPose.orientation = mrs_lib::AttitudeConverter(0, 0, predicted_heading_trajectory_(i * MPC_N_STATES));
+    3534           0 :         } catch (...) {
+    3535           0 :           ROS_ERROR_THROTTLE(1.0, "[MpcTracker]: failed to fill orientation into debug print trajectory");
+    3536             :         }
+    3537             : 
+    3538     2780080 :         debug_trajectory_out.poses.push_back(newPose);
+    3539             :       }
+    3540             :     }
+    3541             : 
+    3542       69502 :     ph_predicted_trajectory_debugging_.publish(debug_trajectory_out);
+    3543             :   }
+    3544             : 
+    3545             :   //}
+    3546             : 
+    3547             :   /* publish full state prediction //{ */
+    3548             : 
+    3549             :   {
+    3550      139004 :     mrs_msgs::MpcPredictionFullState prediction_fs_out;
+    3551       69502 :     prediction_fs_out.header.stamp    = ros::Time::now();
+    3552       69502 :     prediction_fs_out.header.frame_id = uav_state_.header.frame_id;
+    3553             : 
+    3554       69502 :     ros::Time stamp = prediction_fs_out.header.stamp;
+    3555             : 
+    3556       69502 :     prediction_fs_out.input_id = trajectory_id;
+    3557             : 
+    3558             :     {
+    3559      139004 :       std::scoped_lock lock(mutex_predicted_trajectory_);
+    3560             : 
+    3561     2849582 :       for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    3562             : 
+    3563     2780080 :         if (i == 0) {
+    3564       69502 :           stamp += ros::Duration(0.01);
+    3565             :         } else {
+    3566     2710578 :           stamp += ros::Duration(0.2);
+    3567             :         }
+    3568             : 
+    3569     2780080 :         prediction_fs_out.stamps.push_back(stamp);
+    3570             : 
+    3571             :         {  // position
+    3572     2780080 :           geometry_msgs::Point point;
+    3573             : 
+    3574     2780080 :           point.x = predicted_trajectory_(i * MPC_N_STATES);
+    3575     2780080 :           point.y = predicted_trajectory_(i * MPC_N_STATES + 4);
+    3576     2780080 :           point.z = predicted_trajectory_(i * MPC_N_STATES + 8);
+    3577             : 
+    3578     2780080 :           prediction_fs_out.position.push_back(point);
+    3579             :         }
+    3580             : 
+    3581             :         {  // velocity
+    3582     2780080 :           geometry_msgs::Vector3 vector;
+    3583             : 
+    3584     2780080 :           vector.x = predicted_trajectory_(i * MPC_N_STATES + 1);
+    3585     2780080 :           vector.y = predicted_trajectory_(i * MPC_N_STATES + 5);
+    3586     2780080 :           vector.z = predicted_trajectory_(i * MPC_N_STATES + 9);
+    3587             : 
+    3588     2780080 :           prediction_fs_out.velocity.push_back(vector);
+    3589             :         }
+    3590             : 
+    3591             :         {  // acceleration
+    3592     2780080 :           geometry_msgs::Vector3 vector3;
+    3593             : 
+    3594     2780080 :           vector3.x = predicted_trajectory_(i * MPC_N_STATES + 2);
+    3595     2780080 :           vector3.y = predicted_trajectory_(i * MPC_N_STATES + 6);
+    3596     2780080 :           vector3.z = predicted_trajectory_(i * MPC_N_STATES + 10);
+    3597             : 
+    3598     2780080 :           prediction_fs_out.acceleration.push_back(vector3);
+    3599             :         }
+    3600             : 
+    3601             :         {  // jerk
+    3602     2780080 :           geometry_msgs::Vector3 vector3;
+    3603             : 
+    3604     2780080 :           vector3.x = predicted_trajectory_(i * MPC_N_STATES + 3);
+    3605     2780080 :           vector3.y = predicted_trajectory_(i * MPC_N_STATES + 7);
+    3606     2780080 :           vector3.z = predicted_trajectory_(i * MPC_N_STATES + 11);
+    3607             : 
+    3608     2780080 :           prediction_fs_out.jerk.push_back(vector3);
+    3609             :         }
+    3610             : 
+    3611             :         {
+    3612             :           // heading
+    3613             : 
+    3614     2780080 :           prediction_fs_out.heading.push_back(predicted_heading_trajectory_(i * MPC_N_STATES));
+    3615     2780080 :           prediction_fs_out.heading_rate.push_back(predicted_heading_trajectory_(i * MPC_N_STATES + 1));
+    3616     2780080 :           prediction_fs_out.heading_acceleration.push_back(predicted_heading_trajectory_(i * MPC_N_STATES + 2));
+    3617     2780080 :           prediction_fs_out.heading_jerk.push_back(predicted_heading_trajectory_(i * MPC_N_STATES + 3));
+    3618             :         }
+    3619             :       }
+    3620             :     }
+    3621             : 
+    3622             :     {
+    3623      139004 :       std::scoped_lock lock(mutex_prediction_full_state_);
+    3624       69502 :       prediction_full_state_ = prediction_fs_out;
+    3625             :     }
+    3626             :   }
+    3627             : 
+    3628             :   //}
+    3629             : 
+    3630       69502 :   mpc_computed_ = true;
+    3631             : 
+    3632       69502 :   if (started_with_invalid) {
+    3633             : 
+    3634           5 :     mpc_result_invalid_ = false;
+    3635             : 
+    3636           5 :     ROS_INFO("[MpcTracker]: calculated the first MPC result after invalidation");
+    3637             :   }
+    3638             : }
+    3639             : 
+    3640             : //}
+    3641             : 
+    3642             : /* timerVelocityTracking() //{ */
+    3643             : 
+    3644         505 : void MpcTracker::timerVelocityTracking(const ros::TimerEvent& event) {
+    3645             : 
+    3646         505 :   if (!is_initialized_) {
+    3647           2 :     return;
+    3648             :   }
+    3649             : 
+    3650         505 :   if (!velocity_tracking_active_) {
+    3651           0 :     return;
+    3652             :   }
+    3653             : 
+    3654        1010 :   mrs_lib::Routine    profiler_routine = profiler.createRoutine("timerVelocityTracking", int(30.0), 0.01, event);
+    3655             :   mrs_lib::ScopeTimer timer =
+    3656        1010 :       mrs_lib::ScopeTimer("MpcTracker::timerVelocityTracking", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+    3657             : 
+    3658             :   // stop the timer when timeout
+    3659         505 :   if ((ros::Time::now() - velocity_reference_time_).toSec() > 0.5) {
+    3660             : 
+    3661           2 :     ROS_WARN_THROTTLE(1.0, "[MpcTracker]: velocity reference timeouted, hovering");
+    3662           2 :     timer_velocity_tracking_.stop();
+    3663             : 
+    3664           2 :     toggleHover(true);
+    3665             : 
+    3666           2 :     velocity_tracking_active_ = false;
+    3667             : 
+    3668           2 :     return;
+    3669             :   }
+    3670             : 
+    3671        1006 :   auto [mpc_x, mpc_x_heading] = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_, mpc_x_heading_);
+    3672         503 :   auto velocity_reference     = mrs_lib::get_mutexed(mutex_velocity_reference_, velocity_reference_);
+    3673             : 
+    3674        1006 :   mrs_msgs::TrajectoryReference trajectory;
+    3675             : 
+    3676         503 :   trajectory.fly_now         = true;
+    3677         503 :   trajectory.use_heading     = true;
+    3678         503 :   trajectory.dt              = 0.2;
+    3679         503 :   trajectory.header.stamp    = ros::Time::now();
+    3680         503 :   trajectory.header.frame_id = "";
+    3681             : 
+    3682         503 :   double x       = mpc_x(0, 0);
+    3683         503 :   double y       = mpc_x(4, 0);
+    3684         503 :   double z       = mpc_x(8, 0);
+    3685         503 :   double heading = mpc_x_heading(0, 0);
+    3686             : 
+    3687       25653 :   for (int i = 0; i < 50; i++) {
+    3688             : 
+    3689       25150 :     mrs_msgs::Reference reference;
+    3690       25150 :     reference.position.x = x;
+    3691       25150 :     reference.position.y = y;
+    3692       25150 :     reference.position.z = z;
+    3693       25150 :     reference.heading    = heading;
+    3694             : 
+    3695       25150 :     trajectory.points.push_back(reference);
+    3696             : 
+    3697       25150 :     x += velocity_reference.velocity.x * trajectory.dt;
+    3698       25150 :     y += velocity_reference.velocity.y * trajectory.dt;
+    3699       25150 :     z += velocity_reference.velocity.z * trajectory.dt;
+    3700             : 
+    3701       25150 :     if (velocity_reference.use_altitude) {
+    3702           0 :       z = velocity_reference.altitude;
+    3703             :     }
+    3704             : 
+    3705       25150 :     if (velocity_reference.use_heading_rate) {
+    3706       25150 :       heading += velocity_reference.heading_rate * trajectory.dt;
+    3707           0 :     } else if (velocity_reference.use_heading) {
+    3708           0 :       heading = velocity_reference.heading;
+    3709             :     }
+    3710             :   }
+    3711             : 
+    3712        1006 :   auto [success, message, modified] = loadTrajectory(trajectory);
+    3713             : }
+    3714             : 
+    3715             : //}
+    3716             : 
+    3717             : /* //{ timerAvoidanceTrajectory() */
+    3718             : 
+    3719        3835 : void MpcTracker::timerAvoidanceTrajectory(const ros::TimerEvent& event) {
+    3720             : 
+    3721        3835 :   if (!is_active_) {
+    3722        1945 :     return;
+    3723             :   }
+    3724             : 
+    3725        1926 :   if (!is_initialized_) {
+    3726           0 :     return;
+    3727             :   }
+    3728             : 
+    3729        1926 :   if (!sh_estimation_diag_.hasMsg()) {
+    3730           0 :     return;
+    3731             :   } else {
+    3732             :     // we won't try to transform and publish the avoidance prediction if we cannot transform it
+    3733             : 
+    3734        1926 :     auto                     estimation_diag      = sh_estimation_diag_.getMsg();
+    3735        1926 :     std::vector<std::string> state_estimators = estimation_diag.get()->switchable_state_estimators;
+    3736             : 
+    3737        1926 :     bool got_gps_est = std::find(state_estimators.begin(), state_estimators.end(), "gps_garmin") != state_estimators.end() || std::find(state_estimators.begin(), state_estimators.end(), "gps_baro") != state_estimators.end();
+    3738        1926 :     bool got_rtk_est = std::find(state_estimators.begin(), state_estimators.end(), "rtk") != state_estimators.end();
+    3739             : 
+    3740        1926 :     if (!got_gps_est && !got_rtk_est) {
+    3741          36 :       return;
+    3742             :     }
+    3743             :   }
+    3744             : 
+    3745        3780 :   mrs_lib::Routine    profiler_routine = profiler.createRoutine("timerAvoidanceTrajectory", _avoidance_trajectory_rate_, 0.1, event);
+    3746             :   mrs_lib::ScopeTimer timer =
+    3747        3780 :       mrs_lib::ScopeTimer("MpcTracker::timerAvoidanceTrajectory", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+    3748             : 
+    3749        1890 :   auto uav_state            = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
+    3750        1890 :   auto predicted_trajectory = mrs_lib::get_mutexed(mutex_predicted_trajectory_, predicted_trajectory_);
+    3751             : 
+    3752        1890 :   if (future_was_predicted_) {
+    3753             : 
+    3754        1889 :     mrs_msgs::FutureTrajectory avoidance_trajectory;
+    3755             : 
+    3756             :     // fill last trajectory with initial data
+    3757        1889 :     avoidance_trajectory.stamp               = ros::Time::now();
+    3758        1889 :     avoidance_trajectory.uav_name            = _uav_name_;
+    3759        1889 :     avoidance_trajectory.priority            = avoidance_this_uav_priority_;
+    3760        1889 :     avoidance_trajectory.collision_avoidance = collision_avoidance_enabled_ && (uav_state.estimator_horizontal == "lat_gps" || uav_state.estimator_horizontal == "lat_rtk");
+    3761        1889 :     avoidance_trajectory.points.clear();
+    3762        1889 :     avoidance_trajectory.stamp               = ros::Time::now();
+    3763        1889 :     avoidance_trajectory.uav_name            = _uav_name_;
+    3764        1889 :     avoidance_trajectory.priority            = avoidance_this_uav_priority_;
+    3765        1889 :     avoidance_trajectory.collision_avoidance = collision_avoidance_enabled_;
+    3766             : 
+    3767        3778 :     auto res = common_handlers_->transformer->getTransform(uav_state.header.frame_id, "utm_origin", ros::Time::now());
+    3768             : 
+    3769        1889 :     if (!res) {
+    3770             : 
+    3771           0 :       std::string message = "[MpcTracker]: can not transform predicted future to utm_origin";
+    3772           0 :       ROS_WARN_STREAM_ONCE(message);
+    3773           0 :       ROS_DEBUG_STREAM_THROTTLE(1.0, message);
+    3774           0 :       return;
+    3775             : 
+    3776             :     } else {
+    3777             : 
+    3778        3778 :       geometry_msgs::TransformStamped tf = res.value();
+    3779             : 
+    3780       77449 :       for (int i = 0; i < MPC_HORIZON_LENGTH; i++) {
+    3781             : 
+    3782             :         // original point
+    3783      151120 :         geometry_msgs::PoseStamped original_point;
+    3784             : 
+    3785       75560 :         original_point.header.stamp    = ros::Time::now();
+    3786       75560 :         original_point.header.frame_id = uav_state.header.frame_id;
+    3787             : 
+    3788       75560 :         original_point.pose.position.x = predicted_trajectory(i * MPC_N_STATES);
+    3789       75560 :         original_point.pose.position.y = predicted_trajectory(i * MPC_N_STATES + 4);
+    3790       75560 :         original_point.pose.position.z = predicted_trajectory(i * MPC_N_STATES + 8);
+    3791             : 
+    3792       75560 :         original_point.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
+    3793             : 
+    3794      151120 :         auto res = common_handlers_->transformer->transform(original_point, tf);
+    3795             : 
+    3796       75560 :         if (res) {
+    3797             : 
+    3798       75560 :           mrs_msgs::FuturePoint new_point;
+    3799             : 
+    3800       75560 :           new_point.x = res.value().pose.position.x;
+    3801       75560 :           new_point.y = res.value().pose.position.y;
+    3802       75560 :           new_point.z = res.value().pose.position.z;
+    3803             : 
+    3804       75560 :           avoidance_trajectory.points.push_back(new_point);
+    3805             : 
+    3806             :         } else {
+    3807             : 
+    3808           0 :           std::string message = "[MpcTracker]: can not transform a point of a future trajectory";
+    3809           0 :           ROS_WARN_STREAM_ONCE(message);
+    3810           0 :           ROS_DEBUG_STREAM_THROTTLE(1.0, message);
+    3811             :         }
+    3812             :       }
+    3813             :     }
+    3814             : 
+    3815        1889 :     ph_avoidance_trajectory_.publish(avoidance_trajectory);
+    3816             :   }
+    3817             : }
+    3818             : 
+    3819             : //}
+    3820             : 
+    3821             : /* timerHover() //{ */
+    3822             : 
+    3823          91 : void MpcTracker::timerHover(const ros::TimerEvent& event) {
+    3824             : 
+    3825         182 :   MatrixXd mpc_x = mrs_lib::get_mutexed(mutex_mpc_x_, mpc_x_);
+    3826             : 
+    3827         273 :   mrs_lib::Routine    profiler_routine = profiler.createRoutine("timerHover", 10, 0.01, event);
+    3828         273 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("MpcTracker::timerHover", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
+    3829             : 
+    3830          91 :   setRelativeGoal(0, 0, 0, 0, false);
+    3831             : 
+    3832          91 :   if (fabs(mpc_x(1, 0)) < 0.1 && fabs(mpc_x(5, 0)) < 0.1 && fabs(mpc_x(9, 0)) < 0.1) {
+    3833             : 
+    3834          57 :     toggleHover(false);
+    3835             : 
+    3836          57 :     ROS_INFO("[MpcTracker]: timerHover: speed is low, stopping hover timer");
+    3837             :   }
+    3838          91 : }
+    3839             : 
+    3840             : //}
+    3841             : 
+    3842             : }  // namespace mpc_tracker
+    3843             : 
+    3844             : }  // namespace mrs_uav_trackers
+    3845             : 
+    3846             : #include <pluginlib/class_list_macros.h>
+    3847          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_trackers::mpc_tracker::MpcTracker, mrs_uav_managers::Tracker)
+
+
+
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+ + diff --git a/mrs_uav_trackers/src/mpc_tracker/mpc_tracker.cpp.gcov.png b/mrs_uav_trackers/src/mpc_tracker/mpc_tracker.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..5541b3db44d56a3ccc412a4ada79e6a52a1042a1 GIT binary patch literal 12412 zcmV-?FoVyDP)vVxgI*zH%Ih3Y*{;uOWmvx11h^-m#Q*#R1fSs zBc=nF!#G}gpoo_MhxZJ+uHc@~^3j2=UvW@U)+ zz+irgfOiDgHO4ikUBVu>w+H|iDc}Vu09@S|duJvL&Y{&Hl=dHotQfBZW1+d>)d5#E zAJf@bmOjD&xLh0;O@PZzTDz=}7zeFqfbkwb+@0ONIM+!LaIxNg^OXd=ek#J~ z0Sg$Dr9f|+L1czWZ=AvF^t|5T7|Vc>Xb$7|H!_S4ki#e^X7OA5>d$EoWqvvXc67zr zJQJ`03l>-REIW*WJ%-ndKN-8}!CepbA;Xin{j!o4FOutfVGKVAn8K24*YIq~CHzhS zwoCYmwwclvm%9*_u0sZxy$T@1!)$vGm}(>ij%6hE5VKmLEFTrW$FsnZrBe*YxIhY) zOz8wbwETIarv=b=%>b_0RR1Ps@k%$i{dH%BMYvy^E+wk{?u?J>^m>u*5rYJy-7PL2 zls)5^n0Q#=0nG=G|L2HV1#=S?9$Hw0F_{Az+#Ob@S1DB#h>!OIQ7Iq`3>jWSDkLUp z>;{_tM0Rk{bPY(tnEL_CTc}`+{v6zYSg{-0!0W5b2aq`VyL|u@AKwUgS8~q$#ZbF2 z45h}|l(;(Jh~Zg`3vdR7opSL%X%h;goX2^5q2Mm~OY0cpolpgk)S|@S(UBaI9jY+K z)mkhS6!)Og*77}ITpg`rA~2?8F9aVn7^Myph_<-X@qoDnKm!t8hh9oonfUb7GR6)c z=@R}IkHU*T4+F%+6gGDnx()`WJ&8xx2O@~*x|3|O>-Fx>L-t<-NZp4GrFuogd;iZ$ zb=}o3?%HYZv`-I6P~B%2rgpUyaD=}{b-wm9gP;;U&KeiZW*EGSvjI+iAokN@rII|R zblQIY+_na9l;8AHz-$o`QnILYc&&NADA#2eA_6RRsdm#7?4c15I*L+Sny%~3M;6fR zf!)d2bHiJVWQ+^ydMea&US8=|_8 zVuKM;9ac>*)!{?&Y6$+to!0;vwVcEf7<-+msY3&EsKXN%{TjHfQa~xjT-(rqz3lN9 zt7w)Q*t7Hvsf@97&z2~j>Xn?L>&07FDp_6K^aq#Jxf3ic+{(L$!2;|VWikhF#b+%fOpFC!2qT>^TFev@_-L4D_ z4`K^sQ~-|vNDf5X^^SN(p==;+h1)#j^H&T7IAZ9F43P5Ss_D0;_ z>a}THU^0zYQpdZOf?@VIr!TG-XT|_-Qoz&Bk#Pn}%{0cddNLWF>IU8mSMs^u61yNecp3ZuuC&*Ogn0N@F| zb`?NE*7m-GcsfI!dtoYQNdsN8fQPQ@P!!NQT6h-=URrxX>lq{pGu(dJt=2h^CoNS{ z2}O`ST4H>RGD}acCw58?IXBLcZw;v?Qq1)hIrB~Oh{G9-1upr>uzF0UuuVz9U314A zJQ^`lI-CcT9PI^n1)Jfcba&kZ{hF?2JuA9~Y1PfaM3@+A4bps+5)*GaK?Q-HYqBkq z1zP=4>skVMh%pubrR*W(`yh5O+Qy}{l>Q>8Iw_!QBf?p)ZXD?t^Wg=+CiYOg4uDFk z{TDuPHDfrl$#%^3elm+Iu=;Ae;{})s4iNnz*EO6M7SPW$qqOp_tAGw8rv895@5X)-^0={}Xgq_7Ic8ZYf#!iMGlx zF1zv(w#{*##vQd`d_2CMuMq6^5m4x1_da`oj&#mXiXt&Q zB-Ho;)|y78z##S^0x4BPQCrt+3aN|aVFG?$RknNSiQ?lv&~q)5o_7jGP>`idhych) z&=K9UQt1Kfx_IxRa#Xqk8o}KhHaS&BGZZsX0HinAGcRv$7RmvSvcB_x4=ZO^s2XgP z;EDlda@NnsEROW8?D;9GKR|jYZ6*f%|4Yx?s3tUJ9OLu(^;H9 z*B(o@6hXTHMa$4ixWL|HyQTnTU7IRKk~}(L&u`T|1))f9S4w3qJ0M!L{tEs*|6|)r}d%Qrhm&n7}LtgKbSLecZ zxkwJ4dk8S?nNFF|U39PRzdIPkLDmy0Q$hyg)i5fLAE8`^gs*M~FZ zX3M=o4N#BKPV)$iZ_YV;OXAm7<)9v;___eE89s_+ilzumEXd_Y-AYZY{lMyQDSNi+ zEVp300b|z~yY_2pVKiDP1ygSFHazYUIh~wg7|YHpu>ufxJy8J+dk+5V zEAcxrE=I+@Ys6S|`4II0t_-W+m3ypm`04z_@6hK+~e-iVkUm^!U2}a}C9|kCEP)UK=VP~e!%PD|rVuHpXbz39G7prY;H z4*%_LC8;HFw;~-_9C2Pu5*&iWmc5i$kI@|+3wFSkIdaqd9cql@0UcAQTW13BB(JAi z*t1sZd{l`EX$VsR-@=}?>Xb^l-ZzQ0b0+lyjWWq5U(Js-yd%37QBToTSzIm*o$W~9@l$JnJzj?ep~ zX9M@r<&2yOcF*W!AR;H_umaC zXcDT0#7JXZYeM1cr%aM?;fcM-6#ys`o}{8=&?w%$=dXxf6O&H8QlaYOng3ux;*+en z=bFwt1B%b_#|xMkTV^;Yz*6FUswr65kZAMboXl}okShBL_l1gZ)?R zT$M9L+q!lbV=#1*?v^es5#ZJOG3to{zZpRKXElbWTIlt$H*^Y{`z2S%hd^3*c zS~`U-$Gz(h>Eqs^JMO`UlAWWSB)c~%o~p_rWY2b{h37fX#|*%HN+^x{BLVqTCmrGQ zZYwMSx|wug7s;Jyb1uMn(xEf@HRJv?VzaR-A!21mfCuH{c94lL#RHlsj2Js`G(S|6 z^&Hu$!B~jIL4ZwTMB_Y)fC(#`Jeu_a{#uOCDV5=lTxzlQ^0Bs$k#0aA9Yw(A$8>m% zh-W_x2t`Tf4g+t?`WI&J-hZht&6)aAz~?F-Aq^FV6EA9XP9Y)fQviF$m{kT)J@``; 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    LCOV - code coverage report
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    Current view:top level - mrs_uav_trackers/src/speed_trackerHitTotalCoverage
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    Function Name Sort by function nameHit count Sort by hit count
    mrs_uav_trackers::speed_tracker::SpeedTracker::resetStatic()0
    mrs_uav_trackers::speed_tracker::SpeedTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::callbackCommand(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::getStatus()0
    mrs_uav_trackers::speed_tracker::SpeedTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
    mrs_uav_trackers::speed_tracker::SpeedTracker::deactivate()20
    (anonymous namespace)::ProxyExec0::ProxyExec0()91
    mrs_uav_trackers::speed_tracker::SpeedTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
    mrs_uav_trackers::speed_tracker::SpeedTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
    mrs_uav_trackers::speed_tracker::SpeedTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)311
    mrs_uav_trackers::speed_tracker::SpeedTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
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    Current view:top level - mrs_uav_trackers/src/speed_tracker - speed_tracker.cpp (source / functions)HitTotalCoverage
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    Function Name Sort by function nameHit count Sort by hit count
    (anonymous namespace)::ProxyExec0::ProxyExec0()91
    mrs_uav_trackers::speed_tracker::SpeedTracker::deactivate()20
    mrs_uav_trackers::speed_tracker::SpeedTracker::initialize(ros::NodeHandle const&, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>, std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t>)91
    mrs_uav_trackers::speed_tracker::SpeedTracker::resetStatic()0
    mrs_uav_trackers::speed_tracker::SpeedTracker::setReference(boost::shared_ptr<mrs_msgs::ReferenceSrvRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::setConstraints(boost::shared_ptr<mrs_msgs::DynamicsConstraintsSrvRequest_<std::allocator<void> > const> const&)299
    mrs_uav_trackers::speed_tracker::SpeedTracker::callbackCommand(boost::shared_ptr<mrs_msgs::SpeedTrackerCommand_<std::allocator<void> > const>)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::enableCallbacks(boost::shared_ptr<std_srvs::SetBoolRequest_<std::allocator<void> > const> const&)311
    mrs_uav_trackers::speed_tracker::SpeedTracker::gotoTrajectoryStart(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::setVelocityReference(boost::shared_ptr<mrs_msgs::VelocityReferenceSrvRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::switchOdometrySource(mrs_msgs::UavState_<std::allocator<void> > const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::setTrajectoryReference(boost::shared_ptr<mrs_msgs::TrajectoryReferenceSrvRequest_<std::allocator<void> > const> const&)4
    mrs_uav_trackers::speed_tracker::SpeedTracker::stopTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::startTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::resumeTrajectoryTracking(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::hover(boost::shared_ptr<std_srvs::TriggerRequest_<std::allocator<void> > const> const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::update(mrs_msgs::UavState_<std::allocator<void> > const&, mrs_uav_managers::Controller::ControlOutput const&)120229
    mrs_uav_trackers::speed_tracker::SpeedTracker::activate[abi:cxx11](std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&)0
    mrs_uav_trackers::speed_tracker::SpeedTracker::getStatus()0
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    Current view:top level - mrs_uav_trackers/src/speed_tracker - speed_tracker.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:6141114.8 %
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    Legend: Lines: + hit + not hit +
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    +
              Line data    Source code
    +
    +       1             : /* includes //{ */
    +       2             : 
    +       3             : #include <ros/ros.h>
    +       4             : 
    +       5             : #include <mrs_uav_managers/tracker.h>
    +       6             : 
    +       7             : #include <mrs_msgs/SpeedTrackerCommand.h>
    +       8             : #include <mrs_msgs/VelocityReferenceSrv.h>
    +       9             : 
    +      10             : #include <mrs_lib/profiler.h>
    +      11             : #include <mrs_lib/mutex.h>
    +      12             : #include <mrs_lib/attitude_converter.h>
    +      13             : #include <mrs_lib/subscribe_handler.h>
    +      14             : #include <mrs_lib/geometry/cyclic.h>
    +      15             : #include <mrs_lib/geometry/misc.h>
    +      16             : #include <mrs_lib/publisher_handler.h>
    +      17             : 
    +      18             : #include <visualization_msgs/Marker.h>
    +      19             : #include <visualization_msgs/MarkerArray.h>
    +      20             : 
    +      21             : //}
    +      22             : 
    +      23             : /* defines //{ */
    +      24             : 
    +      25             : #define STOP_THR 1e-3
    +      26             : 
    +      27             : //}
    +      28             : 
    +      29             : /* using //{ */
    +      30             : 
    +      31             : using vec2_t = mrs_lib::geometry::vec_t<2>;
    +      32             : using vec3_t = mrs_lib::geometry::vec_t<3>;
    +      33             : 
    +      34             : using radians  = mrs_lib::geometry::radians;
    +      35             : using sradians = mrs_lib::geometry::sradians;
    +      36             : 
    +      37             : //}
    +      38             : 
    +      39             : namespace mrs_uav_trackers
    +      40             : {
    +      41             : 
    +      42             : namespace speed_tracker
    +      43             : {
    +      44             : 
    +      45             : /* //{ class SpeedTracker */
    +      46             : 
    +      47             : class SpeedTracker : public mrs_uav_managers::Tracker {
    +      48             : public:
    +      49             :   bool initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
    +      50             :                   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers);
    +      51             : 
    +      52             :   std::tuple<bool, std::string> activate(const std::optional<mrs_msgs::TrackerCommand> &last_tracker_cmd);
    +      53             :   void                          deactivate(void);
    +      54             :   bool                          resetStatic(void);
    +      55             : 
    +      56             :   std::optional<mrs_msgs::TrackerCommand>   update(const mrs_msgs::UavState &uav_state, const mrs_uav_managers::Controller::ControlOutput &last_control_output);
    +      57             :   const mrs_msgs::TrackerStatus             getStatus();
    +      58             :   const std_srvs::SetBoolResponse::ConstPtr enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr &cmd);
    +      59             :   const std_srvs::TriggerResponse::ConstPtr switchOdometrySource(const mrs_msgs::UavState &new_uav_state);
    +      60             : 
    +      61             :   const mrs_msgs::ReferenceSrvResponse::ConstPtr           setReference(const mrs_msgs::ReferenceSrvRequest::ConstPtr &cmd);
    +      62             :   const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr   setVelocityReference(const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr &cmd);
    +      63             :   const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr setTrajectoryReference(const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr &cmd);
    +      64             : 
    +      65             :   const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr setConstraints(const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd);
    +      66             : 
    +      67             :   const std_srvs::TriggerResponse::ConstPtr hover(const std_srvs::TriggerRequest::ConstPtr &cmd);
    +      68             :   const std_srvs::TriggerResponse::ConstPtr startTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
    +      69             :   const std_srvs::TriggerResponse::ConstPtr stopTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
    +      70             :   const std_srvs::TriggerResponse::ConstPtr resumeTrajectoryTracking(const std_srvs::TriggerRequest::ConstPtr &cmd);
    +      71             :   const std_srvs::TriggerResponse::ConstPtr gotoTrajectoryStart(const std_srvs::TriggerRequest::ConstPtr &cmd);
    +      72             : 
    +      73             : private:
    +      74             :   ros::NodeHandle nh_;
    +      75             : 
    +      76             :   bool callbacks_enabled_ = true;
    +      77             : 
    +      78             :   std::string _uav_name_;
    +      79             : 
    +      80             :   std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t>  common_handlers_;
    +      81             :   std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers_;
    +      82             : 
    +      83             :   mrs_lib::PublisherHandler<visualization_msgs::MarkerArray> ph_rviz_marker_;
    +      84             : 
    +      85             :   // | ------------------------ uav state ----------------------- |
    +      86             : 
    +      87             :   mrs_msgs::UavState uav_state_;
    +      88             :   bool               got_uav_state_ = false;
    +      89             :   std::mutex         mutex_uav_state_;
    +      90             : 
    +      91             :   // | ------------------- tracker constraints ------------------ |
    +      92             : 
    +      93             :   mrs_msgs::DynamicsConstraints constraints_;
    +      94             :   std::mutex                    mutex_constraints_;
    +      95             : 
    +      96             :   // | ---------------- the tracker's inner state --------------- |
    +      97             : 
    +      98             :   bool is_initialized_  = false;
    +      99             :   bool is_active_       = false;
    +     100             :   bool first_iteration_ = true;
    +     101             : 
    +     102             :   double _external_command_timeout_;
    +     103             : 
    +     104             :   mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand> sh_command_;
    +     105             : 
    +     106             :   void callbackCommand(const mrs_msgs::SpeedTrackerCommand::ConstPtr msg);
    +     107             : 
    +     108             :   // stores the post-processed and transformed command
    +     109             :   mrs_msgs::SpeedTrackerCommand command_;
    +     110             :   std::mutex                    mutex_command_;
    +     111             :   ros::Time                     last_command_time_;
    +     112             : 
    +     113             :   // | ------------------------ profiler ------------------------ |
    +     114             : 
    +     115             :   mrs_lib::Profiler profiler_;
    +     116             :   bool              _profiler_enabled_ = false;
    +     117             : };
    +     118             : 
    +     119             : //}
    +     120             : 
    +     121             : // | -------------- tracker's interface routines -------------- |
    +     122             : 
    +     123             : /* //{ initialize() */
    +     124             : 
    +     125          91 : bool SpeedTracker::initialize(const ros::NodeHandle &nh, std::shared_ptr<mrs_uav_managers::control_manager::CommonHandlers_t> common_handlers,
    +     126             :                               std::shared_ptr<mrs_uav_managers::control_manager::PrivateHandlers_t> private_handlers) {
    +     127             : 
    +     128          91 :   this->common_handlers_  = common_handlers;
    +     129          91 :   this->private_handlers_ = private_handlers;
    +     130             : 
    +     131          91 :   _uav_name_ = common_handlers->uav_name;
    +     132             : 
    +     133          91 :   nh_ = nh;
    +     134             : 
    +     135          91 :   ros::Time::waitForValid();
    +     136             : 
    +     137             :   // --------------------------------------------------------------
    +     138             :   // |                     loading parameters                     |
    +     139             :   // --------------------------------------------------------------
    +     140             : 
    +     141             :   // | ---------------- load parent's parameters ---------------- |
    +     142             : 
    +     143         182 :   mrs_lib::ParamLoader param_loader_parent(common_handlers->parent_nh, "ControlManager");
    +     144             : 
    +     145          91 :   param_loader_parent.loadParam("enable_profiler", _profiler_enabled_);
    +     146             : 
    +     147          91 :   if (!param_loader_parent.loadedSuccessfully()) {
    +     148           0 :     ROS_ERROR("[SpeedTracker]: Could not load all parameters!");
    +     149           0 :     return false;
    +     150             :   }
    +     151             : 
    +     152             :   // | ---------------- load plugin's parameters ---------------- |
    +     153             : 
    +     154          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/private/speed_tracker.yaml");
    +     155          91 :   private_handlers->param_loader->addYamlFile(ros::package::getPath("mrs_uav_trackers") + "/config/public/speed_tracker.yaml");
    +     156             : 
    +     157         182 :   const std::string yaml_prefix = "mrs_uav_trackers/speed_tracker/";
    +     158             : 
    +     159          91 :   private_handlers->param_loader->loadParam(yaml_prefix + "command_timeout", _external_command_timeout_);
    +     160             : 
    +     161          91 :   if (!private_handlers->param_loader->loadedSuccessfully()) {
    +     162           0 :     ROS_ERROR("[SpeedTracker]: could not load all parameters!");
    +     163           0 :     return false;
    +     164             :   }
    +     165             : 
    +     166             :   // | ------------------------ profiler ------------------------ |
    +     167             : 
    +     168          91 :   profiler_ = mrs_lib::Profiler(common_handlers->parent_nh, "SpeedTracker", _profiler_enabled_);
    +     169             : 
    +     170             :   // | ----------------------- subscribers ---------------------- |
    +     171             : 
    +     172          91 :   mrs_lib::SubscribeHandlerOptions shopts;
    +     173          91 :   shopts.nh              = nh_;
    +     174          91 :   shopts.node_name       = "SpeedTracker";
    +     175          91 :   shopts.threadsafe      = true;
    +     176          91 :   shopts.autostart       = true;
    +     177          91 :   shopts.transport_hints = ros::TransportHints().tcpNoDelay();
    +     178             : 
    +     179          91 :   sh_command_ = mrs_lib::SubscribeHandler<mrs_msgs::SpeedTrackerCommand>(shopts, "command", &SpeedTracker::callbackCommand, this);
    +     180             : 
    +     181             :   // | ----------------------- publishers ----------------------- |
    +     182             : 
    +     183          91 :   ph_rviz_marker_ = mrs_lib::PublisherHandler<visualization_msgs::MarkerArray>(nh_, "rviz_marker", 1);
    +     184             : 
    +     185             :   // | --------------------- finish the init -------------------- |
    +     186             : 
    +     187          91 :   is_initialized_ = true;
    +     188             : 
    +     189          91 :   ROS_INFO("[SpeedTracker]: initialized");
    +     190             : 
    +     191          91 :   return true;
    +     192             : }
    +     193             : 
    +     194             : //}
    +     195             : 
    +     196             : /* //{ activate() */
    +     197             : 
    +     198           0 : std::tuple<bool, std::string> SpeedTracker::activate([[maybe_unused]] const std::optional<mrs_msgs::TrackerCommand> &last_tracker_cmd) {
    +     199             : 
    +     200           0 :   std::stringstream ss;
    +     201             : 
    +     202           0 :   if (!got_uav_state_) {
    +     203           0 :     ss << "odometry not set";
    +     204           0 :     ROS_ERROR_STREAM("[SpeedTracker]: " << ss.str());
    +     205           0 :     return std::tuple(false, ss.str());
    +     206             :   }
    +     207             : 
    +     208           0 :   if (!sh_command_.hasMsg()) {
    +     209           0 :     ss << "missing command";
    +     210           0 :     ROS_ERROR_STREAM("[SpeedTracker]: " << ss.str());
    +     211           0 :     return std::tuple(false, ss.str());
    +     212             :   }
    +     213             : 
    +     214           0 :   ros::Time external_command_time = sh_command_.lastMsgTime();
    +     215             : 
    +     216             :   // timeout the external command
    +     217           0 :   if ((ros::Time::now() - external_command_time).toSec() > _external_command_timeout_) {
    +     218           0 :     ss << "the command is too old";
    +     219           0 :     ROS_ERROR_STREAM("[SpeedTracker]: " << ss.str());
    +     220           0 :     return std::tuple(false, ss.str());
    +     221             :   }
    +     222             : 
    +     223           0 :   is_active_ = true;
    +     224             : 
    +     225           0 :   ss << "activated";
    +     226           0 :   ROS_INFO_STREAM("[SpeedTracker]: " << ss.str());
    +     227             : 
    +     228           0 :   return std::tuple(true, ss.str());
    +     229             : }
    +     230             : 
    +     231             : //}
    +     232             : 
    +     233             : /* //{ deactivate() */
    +     234             : 
    +     235          20 : void SpeedTracker::deactivate(void) {
    +     236             : 
    +     237          20 :   is_active_ = false;
    +     238             : 
    +     239          20 :   ROS_INFO("[SpeedTracker]: deactivated");
    +     240          20 : }
    +     241             : 
    +     242             : //}
    +     243             : 
    +     244             : /* //{ resetStatic() */
    +     245             : 
    +     246           0 : bool SpeedTracker::resetStatic(void) {
    +     247             : 
    +     248           0 :   return false;
    +     249             : }
    +     250             : 
    +     251             : //}
    +     252             : 
    +     253             : /* //{ update() */
    +     254             : 
    +     255      120229 : std::optional<mrs_msgs::TrackerCommand> SpeedTracker::update(const mrs_msgs::UavState &                                          uav_state,
    +     256             :                                                              [[maybe_unused]] const mrs_uav_managers::Controller::ControlOutput &last_control_output) {
    +     257             : 
    +     258      360687 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("update");
    +     259      360687 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("SpeedTracker::update", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
    +     260             : 
    +     261             :   {
    +     262      120229 :     std::scoped_lock lock(mutex_uav_state_);
    +     263             : 
    +     264      120229 :     uav_state_ = uav_state;
    +     265             : 
    +     266      120229 :     got_uav_state_ = true;
    +     267             :   }
    +     268             : 
    +     269             :   double uav_heading;
    +     270             : 
    +     271             :   try {
    +     272      120229 :     uav_heading = mrs_lib::AttitudeConverter(uav_state_.pose.orientation).getHeading();
    +     273             :   }
    +     274           0 :   catch (...) {
    +     275           0 :     ROS_ERROR_THROTTLE(1.0, "[SpeedTracker]: could not calculate UAV heading");
    +     276             : 
    +     277           0 :     return {};
    +     278             :   }
    +     279             : 
    +     280             :   // up to this part the update() method is evaluated even when the tracker is not active
    +     281      120229 :   if (!is_active_) {
    +     282      120229 :     return {};
    +     283             :   }
    +     284             : 
    +     285           0 :   ros::Time external_command_time = sh_command_.lastMsgTime();
    +     286             : 
    +     287             :   // timeout the external command
    +     288           0 :   if (sh_command_.hasMsg() && (ros::Time::now() - external_command_time).toSec() > _external_command_timeout_) {
    +     289           0 :     ROS_ERROR("[SpeedTracker]: command timeouted, returning nil");
    +     290           0 :     first_iteration_ = true;
    +     291           0 :     return {};
    +     292             :   }
    +     293             : 
    +     294           0 :   auto command = mrs_lib::get_mutexed(mutex_command_, command_);
    +     295             : 
    +     296           0 :   mrs_msgs::TrackerCommand tracker_cmd;
    +     297             : 
    +     298           0 :   tracker_cmd.header.stamp    = ros::Time::now();
    +     299           0 :   tracker_cmd.header.frame_id = uav_state.header.frame_id;
    +     300             : 
    +     301           0 :   tracker_cmd.position.x = uav_state.pose.position.x;
    +     302           0 :   tracker_cmd.position.y = uav_state.pose.position.y;
    +     303             : 
    +     304           0 :   if (command.use_velocity) {
    +     305           0 :     tracker_cmd.velocity.x              = command.velocity.x;
    +     306           0 :     tracker_cmd.velocity.y              = command.velocity.y;
    +     307           0 :     tracker_cmd.velocity.z              = command.velocity.z;
    +     308           0 :     tracker_cmd.use_velocity_horizontal = true;
    +     309           0 :     tracker_cmd.use_velocity_vertical   = true;
    +     310             :   } else {
    +     311           0 :     tracker_cmd.velocity.x              = uav_state.velocity.linear.x;
    +     312           0 :     tracker_cmd.velocity.y              = uav_state.velocity.linear.y;
    +     313           0 :     tracker_cmd.velocity.z              = uav_state.velocity.linear.z;
    +     314           0 :     tracker_cmd.use_velocity_horizontal = false;
    +     315           0 :     tracker_cmd.use_velocity_vertical   = false;
    +     316             :   }
    +     317             : 
    +     318           0 :   if (command.use_z) {
    +     319           0 :     tracker_cmd.position.z            = command.z;
    +     320           0 :     tracker_cmd.use_position_vertical = true;
    +     321             :   } else {
    +     322           0 :     tracker_cmd.position.z            = uav_state.pose.position.z;
    +     323           0 :     tracker_cmd.use_position_vertical = false;
    +     324             :   }
    +     325             : 
    +     326           0 :   if (command.use_acceleration) {
    +     327           0 :     tracker_cmd.acceleration.x   = command.acceleration.x;
    +     328           0 :     tracker_cmd.acceleration.y   = command.acceleration.y;
    +     329           0 :     tracker_cmd.acceleration.z   = command.acceleration.z;
    +     330           0 :     tracker_cmd.use_acceleration = true;
    +     331           0 :   } else if (command.use_force) {
    +     332           0 :     tracker_cmd.acceleration.x   = command.force.x / last_control_output.diagnostics.total_mass;
    +     333           0 :     tracker_cmd.acceleration.y   = command.force.y / last_control_output.diagnostics.total_mass;
    +     334           0 :     tracker_cmd.acceleration.z   = command.force.z / last_control_output.diagnostics.total_mass;
    +     335           0 :     tracker_cmd.use_acceleration = true;
    +     336             :   } else {
    +     337           0 :     tracker_cmd.acceleration.x   = 0;
    +     338           0 :     tracker_cmd.acceleration.y   = 0;
    +     339           0 :     tracker_cmd.acceleration.z   = 0;
    +     340           0 :     tracker_cmd.use_acceleration = false;
    +     341             :   }
    +     342             : 
    +     343           0 :   if (command.use_heading) {
    +     344           0 :     tracker_cmd.heading     = command.heading;
    +     345           0 :     tracker_cmd.use_heading = true;
    +     346             :   } else {
    +     347           0 :     tracker_cmd.heading     = uav_heading;
    +     348           0 :     tracker_cmd.use_heading = false;
    +     349             :   }
    +     350             : 
    +     351           0 :   if (command.use_heading_rate) {
    +     352           0 :     tracker_cmd.heading_rate     = command.heading_rate;
    +     353           0 :     tracker_cmd.use_heading_rate = true;
    +     354             :   } else {
    +     355           0 :     tracker_cmd.heading_rate     = uav_state.velocity.angular.z;
    +     356           0 :     tracker_cmd.use_heading_rate = false;
    +     357             :   }
    +     358             : 
    +     359           0 :   return {tracker_cmd};
    +     360             : }
    +     361             : 
    +     362             : //}
    +     363             : 
    +     364             : /* //{ getStatus() */
    +     365             : 
    +     366           0 : const mrs_msgs::TrackerStatus SpeedTracker::getStatus() {
    +     367             : 
    +     368           0 :   mrs_msgs::TrackerStatus tracker_status;
    +     369             : 
    +     370           0 :   tracker_status.active            = is_active_;
    +     371           0 :   tracker_status.callbacks_enabled = callbacks_enabled_;
    +     372             : 
    +     373           0 :   return tracker_status;
    +     374             : }
    +     375             : 
    +     376             : //}
    +     377             : 
    +     378             : /* //{ enableCallbacks() */
    +     379             : 
    +     380         311 : const std_srvs::SetBoolResponse::ConstPtr SpeedTracker::enableCallbacks(const std_srvs::SetBoolRequest::ConstPtr &cmd) {
    +     381             : 
    +     382         622 :   std_srvs::SetBoolResponse res;
    +     383         622 :   std::stringstream         ss;
    +     384             : 
    +     385         311 :   if (cmd->data != callbacks_enabled_) {
    +     386             : 
    +     387          19 :     callbacks_enabled_ = cmd->data;
    +     388             : 
    +     389          19 :     ss << "callbacks " << (callbacks_enabled_ ? "enabled" : "disabled");
    +     390          19 :     ROS_INFO_STREAM_THROTTLE(1.0, "[SpeedTracker]: " << ss.str());
    +     391             : 
    +     392             :   } else {
    +     393             : 
    +     394         292 :     ss << "callbacks were already " << (callbacks_enabled_ ? "enabled" : "disabled");
    +     395         292 :     ROS_WARN_STREAM_THROTTLE(1.0, "[SpeedTracker]: " << ss.str());
    +     396             :   }
    +     397             : 
    +     398         311 :   res.message = ss.str();
    +     399         311 :   res.success = true;
    +     400             : 
    +     401         622 :   return std_srvs::SetBoolResponse::ConstPtr(new std_srvs::SetBoolResponse(res));
    +     402             : }
    +     403             : 
    +     404             : //}
    +     405             : 
    +     406             : /* switchOdometrySource() //{ */
    +     407             : 
    +     408           0 : const std_srvs::TriggerResponse::ConstPtr SpeedTracker::switchOdometrySource([[maybe_unused]] const mrs_msgs::UavState &new_uav_state) {
    +     409             : 
    +     410           0 :   return std_srvs::TriggerResponse::Ptr();
    +     411             : }
    +     412             : 
    +     413             : //}
    +     414             : 
    +     415             : /* //{ hover() */
    +     416             : 
    +     417           0 : const std_srvs::TriggerResponse::ConstPtr SpeedTracker::hover([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
    +     418             : 
    +     419           0 :   return std_srvs::TriggerResponse::Ptr();
    +     420             : }
    +     421             : 
    +     422             : //}
    +     423             : 
    +     424             : /* //{ startTrajectoryTracking() */
    +     425             : 
    +     426           0 : const std_srvs::TriggerResponse::ConstPtr SpeedTracker::startTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
    +     427           0 :   return std_srvs::TriggerResponse::Ptr();
    +     428             : }
    +     429             : 
    +     430             : //}
    +     431             : 
    +     432             : /* //{ stopTrajectoryTracking() */
    +     433             : 
    +     434           0 : const std_srvs::TriggerResponse::ConstPtr SpeedTracker::stopTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
    +     435           0 :   return std_srvs::TriggerResponse::Ptr();
    +     436             : }
    +     437             : 
    +     438             : //}
    +     439             : 
    +     440             : /* //{ resumeTrajectoryTracking() */
    +     441             : 
    +     442           0 : const std_srvs::TriggerResponse::ConstPtr SpeedTracker::resumeTrajectoryTracking([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
    +     443           0 :   return std_srvs::TriggerResponse::Ptr();
    +     444             : }
    +     445             : 
    +     446             : //}
    +     447             : 
    +     448             : /* //{ gotoTrajectoryStart() */
    +     449             : 
    +     450           0 : const std_srvs::TriggerResponse::ConstPtr SpeedTracker::gotoTrajectoryStart([[maybe_unused]] const std_srvs::TriggerRequest::ConstPtr &cmd) {
    +     451           0 :   return std_srvs::TriggerResponse::Ptr();
    +     452             : }
    +     453             : 
    +     454             : //}
    +     455             : 
    +     456             : /* //{ setConstraints() */
    +     457             : 
    +     458         299 : const mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr SpeedTracker::setConstraints([
    +     459             :     [maybe_unused]] const mrs_msgs::DynamicsConstraintsSrvRequest::ConstPtr &cmd) {
    +     460             : 
    +     461             :   {
    +     462         299 :     std::scoped_lock lock(mutex_constraints_);
    +     463             : 
    +     464         299 :     constraints_ = cmd->constraints;
    +     465             :   }
    +     466             : 
    +     467         598 :   mrs_msgs::DynamicsConstraintsSrvResponse res;
    +     468             : 
    +     469         299 :   res.success = true;
    +     470         299 :   res.message = "constraints updated";
    +     471             : 
    +     472         598 :   return mrs_msgs::DynamicsConstraintsSrvResponse::ConstPtr(new mrs_msgs::DynamicsConstraintsSrvResponse(res));
    +     473             : }
    +     474             : 
    +     475             : //}
    +     476             : 
    +     477             : /* //{ setReference() */
    +     478             : 
    +     479           0 : const mrs_msgs::ReferenceSrvResponse::ConstPtr SpeedTracker::setReference([[maybe_unused]] const mrs_msgs::ReferenceSrvRequest::ConstPtr &cmd) {
    +     480             : 
    +     481           0 :   return mrs_msgs::ReferenceSrvResponse::Ptr();
    +     482             : }
    +     483             : 
    +     484             : //}
    +     485             : 
    +     486             : /* //{ setVelocityReference() */
    +     487             : 
    +     488           0 : const mrs_msgs::VelocityReferenceSrvResponse::ConstPtr SpeedTracker::setVelocityReference([
    +     489             :     [maybe_unused]] const mrs_msgs::VelocityReferenceSrvRequest::ConstPtr &cmd) {
    +     490           0 :   return mrs_msgs::VelocityReferenceSrvResponse::Ptr();
    +     491             : }
    +     492             : 
    +     493             : //}
    +     494             : 
    +     495             : /* //{ setTrajectoryReference() */
    +     496             : 
    +     497           4 : const mrs_msgs::TrajectoryReferenceSrvResponse::ConstPtr SpeedTracker::setTrajectoryReference([
    +     498             :     [maybe_unused]] const mrs_msgs::TrajectoryReferenceSrvRequest::ConstPtr &cmd) {
    +     499           4 :   return mrs_msgs::TrajectoryReferenceSrvResponse::Ptr();
    +     500             : }
    +     501             : 
    +     502             : //}
    +     503             : 
    +     504             : // | --------------------- custom methods --------------------- |
    +     505             : 
    +     506             : /* callbackCommand() //{ */
    +     507             : 
    +     508           0 : void SpeedTracker::callbackCommand(const mrs_msgs::SpeedTrackerCommand::ConstPtr msg) {
    +     509             : 
    +     510           0 :   if (!is_initialized_)
    +     511           0 :     return;
    +     512             : 
    +     513           0 :   mrs_lib::Routine    profiler_routine = profiler_.createRoutine("callbackCommand");
    +     514           0 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("SpeedTracker::callbackCommand", common_handlers_->scope_timer.logger, common_handlers_->scope_timer.enabled);
    +     515             : 
    +     516           0 :   mrs_msgs::SpeedTrackerCommandConstPtr external_command = msg;
    +     517             : 
    +     518             :   double dt;
    +     519           0 :   if (first_iteration_) {
    +     520             : 
    +     521           0 :     last_command_time_ = ros::Time::now();
    +     522           0 :     first_iteration_   = false;
    +     523             : 
    +     524             :     {
    +     525           0 :       std::scoped_lock lock(mutex_command_);
    +     526             : 
    +     527           0 :       command_ = *external_command;
    +     528             :     }
    +     529             : 
    +     530           0 :     return;
    +     531             :   } else {
    +     532           0 :     dt                 = (ros::Time::now() - last_command_time_).toSec();
    +     533           0 :     last_command_time_ = ros::Time::now();
    +     534             : 
    +     535           0 :     if (dt <= 1e-4) {
    +     536           0 :       ROS_WARN_THROTTLE(1.0, "[SpeedTracker]: the command dt is %.5f, returning", dt);
    +     537           0 :       return;
    +     538             :     }
    +     539             :   }
    +     540             : 
    +     541           0 :   mrs_msgs::SpeedTrackerCommand transformed_command = *external_command;
    +     542             : 
    +     543           0 :   auto old_command = mrs_lib::get_mutexed(mutex_command_, command_);
    +     544           0 :   auto constraints = mrs_lib::get_mutexed(mutex_constraints_, constraints_);
    +     545           0 :   auto uav_state   = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
    +     546             : 
    +     547             :   double uav_heading;
    +     548             : 
    +     549             :   try {
    +     550           0 :     uav_heading = mrs_lib::AttitudeConverter(uav_state_.pose.orientation).getHeading();
    +     551             :   }
    +     552           0 :   catch (...) {
    +     553           0 :     ROS_ERROR_THROTTLE(1.0, "[SpeedTracker]: could not calculate UAV heading");
    +     554           0 :     return;
    +     555             :   }
    +     556             : 
    +     557             :   // transform the command
    +     558             : 
    +     559             :   // transform velocity
    +     560             : 
    +     561           0 :   if (transformed_command.use_velocity) {
    +     562             : 
    +     563           0 :     geometry_msgs::Vector3Stamped vector3;
    +     564           0 :     vector3.header = transformed_command.header;
    +     565             : 
    +     566           0 :     vector3.vector.x = transformed_command.velocity.x;
    +     567           0 :     vector3.vector.y = transformed_command.velocity.y;
    +     568           0 :     vector3.vector.z = transformed_command.velocity.z;
    +     569             : 
    +     570           0 :     auto ret = common_handlers_->transformer->transformSingle(vector3, "");
    +     571             : 
    +     572           0 :     if (ret) {
    +     573           0 :       transformed_command.velocity.x = ret.value().vector.x;
    +     574           0 :       transformed_command.velocity.y = ret.value().vector.y;
    +     575           0 :       transformed_command.velocity.z = ret.value().vector.z;
    +     576             :     } else {
    +     577           0 :       return;
    +     578             :     }
    +     579             : 
    +     580             :     /* horizontal speed limit //{ */
    +     581             : 
    +     582             :     {
    +     583           0 :       double des_horizontal_speed = sqrt(pow(transformed_command.velocity.x, 2) + pow(transformed_command.velocity.y, 2));
    +     584             : 
    +     585           0 :       if (des_horizontal_speed > constraints.horizontal_speed) {
    +     586             : 
    +     587           0 :         double des_speed_heading = atan2(transformed_command.velocity.y, transformed_command.velocity.x);
    +     588             : 
    +     589           0 :         transformed_command.velocity.x = cos(des_speed_heading) * constraints.horizontal_speed;
    +     590           0 :         transformed_command.velocity.y = sin(des_speed_heading) * constraints.horizontal_speed;
    +     591             :       }
    +     592             :     }
    +     593             : 
    +     594             :     //}
    +     595             : 
    +     596             :     /* horizontal speed change rate limit //{ */
    +     597             : 
    +     598             :     {
    +     599             :       Eigen::Vector2d hor_speed_derivative =
    +     600           0 :           Eigen::Vector2d(transformed_command.velocity.x - old_command.velocity.x, transformed_command.velocity.y - old_command.velocity.y) / dt;
    +     601             : 
    +     602             :       // exceeding the maximum acceleration
    +     603           0 :       if (hor_speed_derivative.norm() > constraints.horizontal_acceleration) {
    +     604             : 
    +     605           0 :         ROS_WARN_THROTTLE(1.0, "[SpeedTracker]: limitting speed change rate");
    +     606           0 :         double direction = atan2(hor_speed_derivative[1], hor_speed_derivative[0]);
    +     607             : 
    +     608           0 :         transformed_command.velocity.x = old_command.velocity.x + cos(direction) * constraints.horizontal_acceleration * dt;
    +     609           0 :         transformed_command.velocity.y = old_command.velocity.y + sin(direction) * constraints.horizontal_acceleration * dt;
    +     610             :       }
    +     611             :     }
    +     612             : 
    +     613             :     //}
    +     614             : 
    +     615             :     /* vertical speed limit //{ */
    +     616             : 
    +     617             :     {
    +     618             :       // if ascending
    +     619           0 :       if (transformed_command.velocity.z > constraints.vertical_ascending_speed) {
    +     620             : 
    +     621           0 :         transformed_command.velocity.z = constraints.vertical_ascending_speed;
    +     622             :       }
    +     623             : 
    +     624             :       // if descending
    +     625           0 :       if (transformed_command.velocity.z < -constraints.vertical_descending_speed) {
    +     626             : 
    +     627           0 :         transformed_command.velocity.z = -constraints.vertical_descending_speed;
    +     628             :       }
    +     629             :     }
    +     630             : 
    +     631             :     //}
    +     632             : 
    +     633             :     /* vertical speed change rate //{ */
    +     634             : 
    +     635             :     {
    +     636             : 
    +     637           0 :       double vert_speed_derivative = (transformed_command.velocity.z - old_command.velocity.z) / dt;
    +     638             : 
    +     639           0 :       if (vert_speed_derivative > constraints.vertical_ascending_acceleration) {
    +     640             : 
    +     641           0 :         ROS_WARN_THROTTLE(1.0, "[SpeedTracker]: limitting vertical ascending speed change rate");
    +     642           0 :         transformed_command.velocity.z = old_command.velocity.z + constraints.vertical_ascending_acceleration * dt;
    +     643             : 
    +     644           0 :       } else if (vert_speed_derivative < -constraints.vertical_descending_acceleration) {
    +     645             : 
    +     646           0 :         ROS_WARN_THROTTLE(1.0, "[SpeedTracker]: limitting vertical descending speed change rate");
    +     647           0 :         transformed_command.velocity.z = old_command.velocity.z - constraints.vertical_descending_acceleration * dt;
    +     648             :       }
    +     649             :     }
    +     650             : 
    +     651             :     //}
    +     652             :   }
    +     653             : 
    +     654             :   /* transform and constrain heading //{ */
    +     655             : 
    +     656           0 :   if (transformed_command.use_heading) {
    +     657             : 
    +     658           0 :     mrs_msgs::ReferenceStamped temp_ref;
    +     659           0 :     temp_ref.header = transformed_command.header;
    +     660             : 
    +     661           0 :     temp_ref.reference.heading = transformed_command.heading;
    +     662             : 
    +     663           0 :     auto ret = common_handlers_->transformer->transformSingle(temp_ref, "");
    +     664             : 
    +     665           0 :     if (ret) {
    +     666             : 
    +     667             :       // calculate the produced heading rate
    +     668           0 :       double des_hdg_rate = sradians::diff(ret.value().reference.heading, old_command.heading) / dt;
    +     669             : 
    +     670             :       // saturate the change in the desired heading
    +     671           0 :       if (des_hdg_rate > constraints.heading_speed) {
    +     672             : 
    +     673           0 :         ROS_WARN_THROTTLE(1.0, "[SpeedTracker]: limitting change of the desired heading using constraints");
    +     674           0 :         transformed_command.heading = old_command.heading + constraints.heading_speed * dt;
    +     675             : 
    +     676           0 :       } else if (des_hdg_rate < -constraints.heading_speed) {
    +     677             : 
    +     678           0 :         ROS_WARN_THROTTLE(1.0, "[SpeedTracker]: limitting change of the desired heading using constraints");
    +     679           0 :         transformed_command.heading = old_command.heading - constraints.heading_speed * dt;
    +     680             : 
    +     681             :       } else {
    +     682             : 
    +     683           0 :         transformed_command.heading = ret.value().reference.heading;
    +     684             :       }
    +     685             : 
    +     686             :     } else {
    +     687           0 :       return;
    +     688             :     }
    +     689             :   } else {
    +     690           0 :     transformed_command.use_heading = false;
    +     691           0 :     transformed_command.heading     = uav_heading;
    +     692             :   }
    +     693             : 
    +     694             :   //}
    +     695             : 
    +     696           0 :   if (transformed_command.use_heading_rate) {
    +     697             : 
    +     698           0 :     if (transformed_command.heading_rate > constraints.heading_speed) {
    +     699           0 :       transformed_command.heading_rate = constraints.heading_speed;
    +     700           0 :     } else if (transformed_command.heading_rate < -constraints.heading_speed) {
    +     701           0 :       transformed_command.heading_rate = -constraints.heading_speed;
    +     702             :     }
    +     703             :   }
    +     704             : 
    +     705           0 :   if (transformed_command.use_acceleration) {
    +     706             : 
    +     707           0 :     geometry_msgs::Vector3Stamped vector3;
    +     708           0 :     vector3.header = transformed_command.header;
    +     709             : 
    +     710           0 :     vector3.vector.x = transformed_command.acceleration.x;
    +     711           0 :     vector3.vector.y = transformed_command.acceleration.y;
    +     712           0 :     vector3.vector.z = transformed_command.acceleration.z;
    +     713             : 
    +     714           0 :     auto ret = common_handlers_->transformer->transformSingle(vector3, "");
    +     715             : 
    +     716           0 :     if (ret) {
    +     717           0 :       transformed_command.acceleration.x = ret.value().vector.x;
    +     718           0 :       transformed_command.acceleration.y = ret.value().vector.y;
    +     719           0 :       transformed_command.acceleration.z = ret.value().vector.z;
    +     720             :     } else {
    +     721           0 :       return;
    +     722             :     }
    +     723             : 
    +     724             :     /* horizontal acceleration limit //{ */
    +     725             : 
    +     726             :     {
    +     727           0 :       double des_horizontal_acceleration = sqrt(pow(transformed_command.acceleration.x, 2) + pow(transformed_command.acceleration.y, 2));
    +     728             : 
    +     729           0 :       if (des_horizontal_acceleration > constraints.horizontal_acceleration) {
    +     730             : 
    +     731           0 :         double des_acc_heading = atan2(transformed_command.acceleration.y, transformed_command.acceleration.x);
    +     732             : 
    +     733           0 :         transformed_command.acceleration.x = cos(des_acc_heading) * constraints.horizontal_acceleration;
    +     734           0 :         transformed_command.acceleration.y = sin(des_acc_heading) * constraints.horizontal_acceleration;
    +     735             :       }
    +     736             :     }
    +     737             : 
    +     738             :     //}
    +     739             : 
    +     740             :     /* horizontal acceleration change rate limit //{ */
    +     741             : 
    +     742             :     {
    +     743             :       Eigen::Vector2d hor_acc_derivative =
    +     744           0 :           Eigen::Vector2d(transformed_command.acceleration.x - old_command.acceleration.x, transformed_command.acceleration.y - old_command.acceleration.y) /
    +     745           0 :           (dt);
    +     746             : 
    +     747             :       // exceeding the maximum acceleration
    +     748           0 :       if (hor_acc_derivative.norm() > constraints.horizontal_jerk) {
    +     749             : 
    +     750           0 :         ROS_WARN_THROTTLE(1.0, "[SpeedTracker]: limitting acceleration change rate");
    +     751           0 :         double direction = atan2(hor_acc_derivative[1], hor_acc_derivative[0]);
    +     752             : 
    +     753           0 :         transformed_command.acceleration.x = old_command.acceleration.x + cos(direction) * constraints.horizontal_jerk * dt;
    +     754           0 :         transformed_command.acceleration.y = old_command.acceleration.y + sin(direction) * constraints.horizontal_jerk * dt;
    +     755             :       }
    +     756             :     }
    +     757             : 
    +     758             :     //}
    +     759             : 
    +     760             :     /* vertical acceleration limit //{ */
    +     761             : 
    +     762             :     {
    +     763             :       // if ascending
    +     764           0 :       if (transformed_command.acceleration.z > constraints.vertical_ascending_acceleration) {
    +     765             : 
    +     766           0 :         transformed_command.acceleration.z = constraints.vertical_ascending_acceleration;
    +     767             :       }
    +     768             : 
    +     769             :       // if descending
    +     770           0 :       if (transformed_command.acceleration.z < -constraints.vertical_descending_acceleration) {
    +     771             : 
    +     772           0 :         transformed_command.acceleration.z = -constraints.vertical_descending_acceleration;
    +     773             :       }
    +     774             :     }
    +     775             : 
    +     776             :     //}
    +     777             : 
    +     778             :     /* vertical acceleration change rate //{ */
    +     779             : 
    +     780             :     {
    +     781             : 
    +     782           0 :       double vert_acc_derivative = (transformed_command.acceleration.z - old_command.acceleration.z) / dt;
    +     783             : 
    +     784           0 :       if (vert_acc_derivative > constraints.vertical_ascending_jerk) {
    +     785             : 
    +     786           0 :         ROS_WARN_THROTTLE(1.0, "[SpeedTracker]: limitting vertical ascending acceleration change rate");
    +     787           0 :         transformed_command.acceleration.z = old_command.acceleration.z + constraints.vertical_ascending_jerk * dt;
    +     788             : 
    +     789           0 :       } else if (vert_acc_derivative < -constraints.vertical_descending_jerk) {
    +     790             : 
    +     791           0 :         ROS_WARN_THROTTLE(1.0, "[SpeedTracker]: limitting vertical descending acceleration change rate");
    +     792           0 :         transformed_command.acceleration.z = old_command.acceleration.z - constraints.vertical_descending_jerk * dt;
    +     793             :       }
    +     794             :     }
    +     795             : 
    +     796             :     //}
    +     797             :   }
    +     798             : 
    +     799             :   // transform force
    +     800             : 
    +     801           0 :   if (transformed_command.use_force) {
    +     802             : 
    +     803           0 :     geometry_msgs::Vector3Stamped vector3;
    +     804           0 :     vector3.header = transformed_command.header;
    +     805             : 
    +     806           0 :     vector3.vector.x = transformed_command.force.x;
    +     807           0 :     vector3.vector.y = transformed_command.force.y;
    +     808           0 :     vector3.vector.z = transformed_command.force.z;
    +     809             : 
    +     810           0 :     auto ret = common_handlers_->transformer->transformSingle(vector3, "");
    +     811             : 
    +     812           0 :     if (ret) {
    +     813           0 :       transformed_command.force.x = vector3.vector.x;
    +     814           0 :       transformed_command.force.y = vector3.vector.y;
    +     815           0 :       transformed_command.force.z = vector3.vector.z;
    +     816             :     } else {
    +     817           0 :       return;
    +     818             :     }
    +     819             :   }
    +     820             : 
    +     821             :   // check the feasibility of the z
    +     822             :   {
    +     823           0 :     double z_derivative = (transformed_command.z - old_command.z) / dt;
    +     824             : 
    +     825           0 :     if (z_derivative > constraints.vertical_ascending_speed) {
    +     826             : 
    +     827           0 :       transformed_command.z = old_command.z + constraints.vertical_ascending_speed * dt;
    +     828             : 
    +     829           0 :     } else if (z_derivative < -constraints.vertical_ascending_speed) {
    +     830             : 
    +     831           0 :       transformed_command.z = old_command.z - constraints.vertical_descending_speed * dt;
    +     832             :     }
    +     833             : 
    +     834             :     // saturate the desired z using the safety area
    +     835           0 :     if (common_handlers_->safety_area.use_safety_area) {
    +     836             : 
    +     837           0 :       if (transformed_command.z > common_handlers_->safety_area.getMaxZ("")) {
    +     838             : 
    +     839           0 :         transformed_command.z = common_handlers_->safety_area.getMaxZ("");
    +     840             : 
    +     841           0 :       } else if (transformed_command.z < common_handlers_->safety_area.getMinZ("")) {
    +     842             : 
    +     843           0 :         transformed_command.z = common_handlers_->safety_area.getMinZ("");
    +     844             :       }
    +     845             :     }
    +     846             :   }
    +     847             : 
    +     848             :   // if not active, nullify the desired speeds and accelerations
    +     849             :   // this will produce a rumpum (using the constraints) after the activation
    +     850           0 :   if (!is_active_) {
    +     851             : 
    +     852           0 :     auto uav_state = mrs_lib::get_mutexed(mutex_uav_state_, uav_state_);
    +     853             : 
    +     854           0 :     transformed_command.velocity.x = 0;
    +     855           0 :     transformed_command.velocity.y = 0;
    +     856           0 :     transformed_command.velocity.z = 0;
    +     857             : 
    +     858           0 :     transformed_command.acceleration.x = 0;
    +     859           0 :     transformed_command.acceleration.y = 0;
    +     860           0 :     transformed_command.acceleration.z = 0;
    +     861             : 
    +     862             :     try {
    +     863           0 :       transformed_command.heading = mrs_lib::AttitudeConverter(uav_state.pose.orientation).getHeading();
    +     864             :     }
    +     865           0 :     catch (...) {
    +     866           0 :       return;
    +     867             :     }
    +     868             : 
    +     869           0 :     transformed_command.z = uav_state_.pose.position.z;
    +     870             :   }
    +     871             : 
    +     872             :   {
    +     873           0 :     std::scoped_lock lock(mutex_command_);
    +     874             : 
    +     875           0 :     command_ = transformed_command;
    +     876             :   }
    +     877             : 
    +     878           0 :   if (!is_active_) {
    +     879           0 :     ROS_INFO_ONCE("[SpeedTracker]: getting command");
    +     880             :   } else {
    +     881           0 :     ROS_INFO_THROTTLE(5.0, "[SpeedTracker]: getting command");
    +     882             :   }
    +     883             : 
    +     884             :   // --------------------------------------------------------------
    +     885             :   // |                     publish rviz markers                   |
    +     886             :   // --------------------------------------------------------------
    +     887             : 
    +     888           0 :   visualization_msgs::MarkerArray msg_out;
    +     889             : 
    +     890           0 :   double id = 0;
    +     891             : 
    +     892           0 :   geometry_msgs::Point point;
    +     893             : 
    +     894             :   /* desired speed //{ */
    +     895             : 
    +     896           0 :   if (transformed_command.use_velocity) {
    +     897             : 
    +     898           0 :     std::scoped_lock lock(mutex_uav_state_);
    +     899             : 
    +     900           0 :     visualization_msgs::Marker marker;
    +     901             : 
    +     902           0 :     marker.header.frame_id = uav_state_.header.frame_id;
    +     903           0 :     marker.header.stamp    = ros::Time::now();
    +     904           0 :     marker.ns              = "speed_tracker";
    +     905           0 :     marker.id              = id++;
    +     906           0 :     marker.type            = visualization_msgs::Marker::ARROW;
    +     907           0 :     marker.action          = visualization_msgs::Marker::ADD;
    +     908             : 
    +     909             :     /* position //{ */
    +     910             : 
    +     911           0 :     marker.pose.position.x = 0.0;
    +     912           0 :     marker.pose.position.y = 0.0;
    +     913           0 :     marker.pose.position.z = 0.0;
    +     914             : 
    +     915             :     //}
    +     916             : 
    +     917             :     /* orientation //{ */
    +     918             : 
    +     919           0 :     marker.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
    +     920             : 
    +     921             :     //}
    +     922             : 
    +     923             :     /* origin //{ */
    +     924           0 :     point.x = uav_state_.pose.position.x;
    +     925           0 :     point.y = uav_state_.pose.position.y;
    +     926           0 :     point.z = uav_state_.pose.position.z;
    +     927             : 
    +     928           0 :     marker.points.push_back(point);
    +     929             : 
    +     930             :     //}
    +     931             : 
    +     932             :     /* tip //{ */
    +     933             : 
    +     934           0 :     point.x = uav_state_.pose.position.x + transformed_command.velocity.x;
    +     935           0 :     point.y = uav_state_.pose.position.y + transformed_command.velocity.y;
    +     936           0 :     point.z = uav_state_.pose.position.z + transformed_command.velocity.z;
    +     937             : 
    +     938           0 :     marker.points.push_back(point);
    +     939             : 
    +     940             :     //}
    +     941             : 
    +     942           0 :     marker.scale.x = 0.05;
    +     943           0 :     marker.scale.y = 0.05;
    +     944           0 :     marker.scale.z = 0.05;
    +     945             : 
    +     946           0 :     marker.color.a = 0.5;
    +     947           0 :     marker.color.r = 0.0;
    +     948           0 :     marker.color.g = 1.0;
    +     949           0 :     marker.color.b = 0.0;
    +     950             : 
    +     951           0 :     marker.mesh_resource = "package://pr2_description/meshes/base_v0/base.dae";
    +     952             : 
    +     953           0 :     msg_out.markers.push_back(marker);
    +     954             :   }
    +     955             : 
    +     956             :   //}
    +     957             : 
    +     958             :   /* desired acceleration //{ */
    +     959           0 :   if (transformed_command.use_acceleration) {
    +     960             : 
    +     961           0 :     std::scoped_lock lock(mutex_uav_state_);
    +     962             : 
    +     963           0 :     visualization_msgs::Marker marker;
    +     964             : 
    +     965           0 :     marker.header.frame_id = uav_state_.header.frame_id;
    +     966           0 :     marker.header.stamp    = ros::Time::now();
    +     967           0 :     marker.ns              = "speed_tracker";
    +     968           0 :     marker.id              = id++;
    +     969           0 :     marker.type            = visualization_msgs::Marker::ARROW;
    +     970           0 :     marker.action          = visualization_msgs::Marker::ADD;
    +     971             : 
    +     972             :     /* position //{ */
    +     973             : 
    +     974           0 :     marker.pose.position.x = 0.0;
    +     975           0 :     marker.pose.position.y = 0.0;
    +     976           0 :     marker.pose.position.z = 0.0;
    +     977             : 
    +     978             :     //}
    +     979             : 
    +     980             :     /* orientation //{ */
    +     981             : 
    +     982           0 :     marker.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
    +     983             : 
    +     984             :     //}
    +     985             : 
    +     986             :     /* origin //{ */
    +     987           0 :     point.x = uav_state_.pose.position.x;
    +     988           0 :     point.y = uav_state_.pose.position.y;
    +     989           0 :     point.z = uav_state_.pose.position.z;
    +     990             : 
    +     991           0 :     marker.points.push_back(point);
    +     992             : 
    +     993             :     //}
    +     994             : 
    +     995             :     /* tip //{ */
    +     996             : 
    +     997           0 :     point.x = uav_state_.pose.position.x + transformed_command.acceleration.x;
    +     998           0 :     point.y = uav_state_.pose.position.y + transformed_command.acceleration.y;
    +     999           0 :     point.z = uav_state_.pose.position.z + transformed_command.acceleration.z;
    +    1000             : 
    +    1001           0 :     marker.points.push_back(point);
    +    1002             : 
    +    1003             :     //}
    +    1004             : 
    +    1005           0 :     marker.scale.x = 0.05;
    +    1006           0 :     marker.scale.y = 0.05;
    +    1007           0 :     marker.scale.z = 0.05;
    +    1008             : 
    +    1009           0 :     marker.color.a = 0.5;
    +    1010           0 :     marker.color.r = 1.0;
    +    1011           0 :     marker.color.g = 0.0;
    +    1012           0 :     marker.color.b = 0.0;
    +    1013             : 
    +    1014           0 :     marker.mesh_resource = "package://pr2_description/meshes/base_v0/base.dae";
    +    1015             : 
    +    1016           0 :     msg_out.markers.push_back(marker);
    +    1017             :   }
    +    1018             : 
    +    1019             :   //}
    +    1020             : 
    +    1021             :   /* desired force //{ */
    +    1022           0 :   if (transformed_command.use_force) {
    +    1023             : 
    +    1024           0 :     std::scoped_lock lock(mutex_uav_state_);
    +    1025             : 
    +    1026           0 :     visualization_msgs::Marker marker;
    +    1027             : 
    +    1028           0 :     marker.header.frame_id = uav_state_.header.frame_id;
    +    1029           0 :     marker.header.stamp    = ros::Time::now();
    +    1030           0 :     marker.ns              = "speed_tracker";
    +    1031           0 :     marker.id              = id++;
    +    1032           0 :     marker.type            = visualization_msgs::Marker::ARROW;
    +    1033           0 :     marker.action          = visualization_msgs::Marker::ADD;
    +    1034             : 
    +    1035             :     /* position //{ */
    +    1036             : 
    +    1037           0 :     marker.pose.position.x = 0.0;
    +    1038           0 :     marker.pose.position.y = 0.0;
    +    1039           0 :     marker.pose.position.z = 0.0;
    +    1040             : 
    +    1041             :     //}
    +    1042             : 
    +    1043             :     /* orientation //{ */
    +    1044             : 
    +    1045           0 :     marker.pose.orientation = mrs_lib::AttitudeConverter(0, 0, 0);
    +    1046             : 
    +    1047             :     //}
    +    1048             : 
    +    1049             :     /* origin //{ */
    +    1050           0 :     point.x = uav_state_.pose.position.x;
    +    1051           0 :     point.y = uav_state_.pose.position.y;
    +    1052           0 :     point.z = uav_state_.pose.position.z;
    +    1053             : 
    +    1054           0 :     marker.points.push_back(point);
    +    1055             : 
    +    1056             :     //}
    +    1057             : 
    +    1058             :     /* tip //{ */
    +    1059             : 
    +    1060           0 :     point.x = uav_state_.pose.position.x + transformed_command.force.x;
    +    1061           0 :     point.y = uav_state_.pose.position.y + transformed_command.force.y;
    +    1062           0 :     point.z = uav_state_.pose.position.z + transformed_command.force.z;
    +    1063             : 
    +    1064           0 :     marker.points.push_back(point);
    +    1065             : 
    +    1066             :     //}
    +    1067             : 
    +    1068           0 :     marker.scale.x = 0.05;
    +    1069           0 :     marker.scale.y = 0.05;
    +    1070           0 :     marker.scale.z = 0.05;
    +    1071             : 
    +    1072           0 :     marker.color.a = 0.5;
    +    1073           0 :     marker.color.r = 0.0;
    +    1074           0 :     marker.color.g = 0.0;
    +    1075           0 :     marker.color.b = 1.0;
    +    1076             : 
    +    1077           0 :     marker.mesh_resource = "package://pr2_description/meshes/base_v0/base.dae";
    +    1078             : 
    +    1079           0 :     msg_out.markers.push_back(marker);
    +    1080             :   }
    +    1081             : 
    +    1082             :   //}
    +    1083             : 
    +    1084           0 :   ph_rviz_marker_.publish(msg_out);
    +    1085             : }
    +    1086             : 
    +    1087             : //}
    +    1088             : 
    +    1089             : }  // namespace speed_tracker
    +    1090             : 
    +    1091             : }  // namespace mrs_uav_trackers
    +    1092             : 
    +    1093             : #include <pluginlib/class_list_macros.h>
    +    1094          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_trackers::speed_tracker::SpeedTracker, mrs_uav_managers::Tracker)
    +
    +
    +
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    eth_mav_msgs::yawFromQuaternion(Eigen::Quaternion<double, 0> const&)849
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright 2015 Fadri Furrer, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright 2015 Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright 2015 Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright 2015 Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright 2015 Mina Kamel, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  *     http://www.apache.org/licenses/LICENSE-2.0
    +      13             : 
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : // Common conversion functions between geometry messages, Eigen types, and yaw.
    +      22             : 
    +      23             : #ifndef ETH_MAV_MSGS_COMMON_H
    +      24             : #define ETH_MAV_MSGS_COMMON_H
    +      25             : 
    +      26             : #include <geometry_msgs/Point.h>
    +      27             : #include <geometry_msgs/Quaternion.h>
    +      28             : #include <geometry_msgs/Vector3.h>
    +      29             : #include <Eigen/Geometry>
    +      30             : #include <boost/algorithm/clamp.hpp>
    +      31             : 
    +      32             : namespace eth_mav_msgs
    +      33             : {
    +      34             : 
    +      35             : const double kSmallValueCheck         = 1.e-6;
    +      36             : const double kNumNanosecondsPerSecond = 1.e9;
    +      37             : 
    +      38             : /* MagnitudeOfGravity() //{ */
    +      39             : 
    +      40             : /// Magnitude of Earth's gravitational field at specific height [m] and latitude
    +      41             : /// [rad] (from wikipedia).
    +      42             : inline double MagnitudeOfGravity(const double height, const double latitude_radians) {
    +      43             :   // gravity calculation constants
    +      44             :   const double kGravity_0 = 9.780327;
    +      45             :   const double kGravity_a = 0.0053024;
    +      46             :   const double kGravity_b = 0.0000058;
    +      47             :   const double kGravity_c = 3.155 * 1e-7;
    +      48             : 
    +      49             :   double sin_squared_latitude       = std::sin(latitude_radians) * std::sin(latitude_radians);
    +      50             :   double sin_squared_twice_latitude = std::sin(2 * latitude_radians) * std::sin(2 * latitude_radians);
    +      51             :   return kGravity_0 * ((1 + kGravity_a * sin_squared_latitude - kGravity_b * sin_squared_twice_latitude) - kGravity_c * height);
    +      52             : }
    +      53             : 
    +      54             : //}
    +      55             : 
    +      56             : /* vector3FromMsg() //{ */
    +      57             : 
    +      58             : inline Eigen::Vector3d vector3FromMsg(const geometry_msgs::Vector3& msg) {
    +      59             :   return Eigen::Vector3d(msg.x, msg.y, msg.z);
    +      60             : }
    +      61             : 
    +      62             : //}
    +      63             : 
    +      64             : /* vector3FromPointMsg() //{ */
    +      65             : 
    +      66             : inline Eigen::Vector3d vector3FromPointMsg(const geometry_msgs::Point& msg) {
    +      67             :   return Eigen::Vector3d(msg.x, msg.y, msg.z);
    +      68             : }
    +      69             : 
    +      70             : //}
    +      71             : 
    +      72             : /* quaternionFromMsg() //{ */
    +      73             : 
    +      74             : inline Eigen::Quaterniond quaternionFromMsg(const geometry_msgs::Quaternion& msg) {
    +      75             :   // Make sure this always returns a valid Quaternion, even if the message was
    +      76             :   // uninitialized or only approximately set.
    +      77             :   Eigen::Quaterniond quaternion(msg.w, msg.x, msg.y, msg.z);
    +      78             :   if (quaternion.norm() < std::numeric_limits<double>::epsilon()) {
    +      79             :     quaternion.setIdentity();
    +      80             :   } else {
    +      81             :     quaternion.normalize();
    +      82             :   }
    +      83             :   return quaternion;
    +      84             : }
    +      85             : 
    +      86             : //}
    +      87             : 
    +      88             : /* vectorEigenToMsg() //{ */
    +      89             : 
    +      90             : inline void vectorEigenToMsg(const Eigen::Vector3d& eigen, geometry_msgs::Vector3* msg) {
    +      91             :   assert(msg != NULL);
    +      92             :   msg->x = eigen.x();
    +      93             :   msg->y = eigen.y();
    +      94             :   msg->z = eigen.z();
    +      95             : }
    +      96             : 
    +      97             : //}
    +      98             : 
    +      99             : /* pointEigenToMsg() //{ */
    +     100             : 
    +     101             : inline void pointEigenToMsg(const Eigen::Vector3d& eigen, geometry_msgs::Point* msg) {
    +     102             :   assert(msg != NULL);
    +     103             :   msg->x = eigen.x();
    +     104             :   msg->y = eigen.y();
    +     105             :   msg->z = eigen.z();
    +     106             : }
    +     107             : 
    +     108             : //}
    +     109             : 
    +     110             : /* quaternionEigenToMsg() //{ */
    +     111             : 
    +     112             : inline void quaternionEigenToMsg(const Eigen::Quaterniond& eigen, geometry_msgs::Quaternion* msg) {
    +     113             :   assert(msg != NULL);
    +     114             :   msg->x = eigen.x();
    +     115             :   msg->y = eigen.y();
    +     116             :   msg->z = eigen.z();
    +     117             :   msg->w = eigen.w();
    +     118             : }
    +     119             : 
    +     120             : //}
    +     121             : 
    +     122             : /* yawFromQuaternion() //{ */
    +     123             : 
    +     124             : /**
    +     125             :  * \brief Extracts the yaw part from a quaternion, using RPY / euler (z-y'-z'')
    +     126             :  * angles.
    +     127             :  * RPY rotates about the fixed axes in the order x-y-z,
    +     128             :  * which is the same as euler angles in the order z-y'-x''.
    +     129             :  */
    +     130         849 : inline double yawFromQuaternion(const Eigen::Quaterniond& q) {
    +     131         849 :   return std::atan2(2.0 * (q.w() * q.z() + q.x() * q.y()), 1.0 - 2.0 * (q.y() * q.y() + q.z() * q.z()));
    +     132             : }
    +     133             : 
    +     134             : //}
    +     135             : 
    +     136             : /* quaternionFromYaw() //{ */
    +     137             : 
    +     138        2117 : inline Eigen::Quaterniond quaternionFromYaw(double yaw) {
    +     139        4234 :   return Eigen::Quaterniond(Eigen::AngleAxisd(yaw, Eigen::Vector3d::UnitZ()));
    +     140             : }
    +     141             : 
    +     142             : //}
    +     143             : 
    +     144             : /* setQuaternionMsgFromYaw() //{ */
    +     145             : 
    +     146             : inline void setQuaternionMsgFromYaw(double yaw, geometry_msgs::Quaternion* msg) {
    +     147             :   assert(msg != NULL);
    +     148             :   Eigen::Quaterniond q_yaw = quaternionFromYaw(yaw);
    +     149             :   msg->x                   = q_yaw.x();
    +     150             :   msg->y                   = q_yaw.y();
    +     151             :   msg->z                   = q_yaw.z();
    +     152             :   msg->w                   = q_yaw.w();
    +     153             : }
    +     154             : 
    +     155             : //}
    +     156             : 
    +     157             : /* setAngularVelocityMsgFromYawRate() //{ */
    +     158             : 
    +     159             : inline void setAngularVelocityMsgFromYawRate(double yaw_rate, geometry_msgs::Vector3* msg) {
    +     160             :   assert(msg != NULL);
    +     161             :   msg->x = 0.0;
    +     162             :   msg->y = 0.0;
    +     163             :   msg->z = yaw_rate;
    +     164             : }
    +     165             : 
    +     166             : //}
    +     167             : 
    +     168             : /* getEulerAnglesFromQuaternion() //{ */
    +     169             : 
    +     170             : inline void getEulerAnglesFromQuaternion(const Eigen::Quaternion<double>& q, Eigen::Vector3d* euler_angles) {
    +     171             :   {
    +     172             :     assert(euler_angles != NULL);
    +     173             : 
    +     174             :     *euler_angles << std::atan2(2.0 * (q.w() * q.x() + q.y() * q.z()), 1.0 - 2.0 * (q.x() * q.x() + q.y() * q.y())),
    +     175             :         std::asin(2.0 * (q.w() * q.y() - q.z() * q.x())), std::atan2(2.0 * (q.w() * q.z() + q.x() * q.y()), 1.0 - 2.0 * (q.y() * q.y() + q.z() * q.z()));
    +     176             :   }
    +     177             : }
    +     178             : 
    +     179             : //}
    +     180             : 
    +     181             : /* skewMatrixFromVector() //{ */
    +     182             : 
    +     183             : inline void skewMatrixFromVector(const Eigen::Vector3d& vec, Eigen::Matrix3d* vec_skew) {
    +     184             :   assert(vec_skew);
    +     185             :   *vec_skew << 0.0f, -vec(2), vec(1), vec(2), 0.0f, -vec(0), -vec(1), vec(0), 0.0f;
    +     186             : }
    +     187             : 
    +     188             : //}
    +     189             : 
    +     190             : /* vectorFromSkewMatrix() //{ */
    +     191             : 
    +     192             : inline bool vectorFromSkewMatrix(const Eigen::Matrix3d& vec_skew, Eigen::Vector3d* vec) {
    +     193             :   assert(vec);
    +     194             :   if ((vec_skew + vec_skew.transpose()).norm() < kSmallValueCheck) {
    +     195             :     *vec << vec_skew(2, 1), vec_skew(0, 2), vec_skew(1, 0);
    +     196             :     return true;
    +     197             :   } else {
    +     198             :     std::cerr << "[eth_mav_msgs] Matrix is not skew-symmetric." << std::endl;
    +     199             :     *vec = Eigen::Vector3d::Zero();
    +     200             :     return false;
    +     201             :   }
    +     202             : }
    +     203             : 
    +     204             : //}
    +     205             : 
    +     206             : /* isRotationMatrix() //{ */
    +     207             : 
    +     208             : inline bool isRotationMatrix(const Eigen::Matrix3d& mat) {
    +     209             :   // Check that R^T * R = I
    +     210             :   if ((mat.transpose() * mat - Eigen::Matrix3d::Identity()).norm() > kSmallValueCheck) {
    +     211             :     std::cerr << "[eth_mav_msgs::common] Rotation matrix requirement violated (R^T * R = I)" << std::endl;
    +     212             :     return false;
    +     213             :   }
    +     214             :   // Check that det(R) = 1
    +     215             :   if (mat.determinant() - 1.0 > kSmallValueCheck) {
    +     216             :     std::cerr << "[eth_mav_msgs::common] Rotation matrix requirement violated (det(R) = 1)" << std::endl;
    +     217             :     return false;
    +     218             :   }
    +     219             :   return true;
    +     220             : }
    +     221             : 
    +     222             : //}
    +     223             : 
    +     224             : /* matrixFromRotationVector() //{ */
    +     225             : 
    +     226             : // Rotation matrix from rotation vector as described in
    +     227             : // "Computationally Efficient Trajectory Generation for Fully Actuated Multirotor Vehicles"
    +     228             : // Brescianini 2018
    +     229             : inline void matrixFromRotationVector(const Eigen::Vector3d& vec, Eigen::Matrix3d* mat) {
    +     230             :   // R = (I + sin||r|| / ||r||) [r] + ((1 - cos||r||)/||r||^2) [r]^2
    +     231             :   // where [r] is the skew matrix of r vector
    +     232             :   assert(mat);
    +     233             :   double          r_norm        = vec.norm();
    +     234             :   Eigen::Matrix3d vec_skew_norm = Eigen::Matrix3d::Zero();
    +     235             :   if (r_norm > 0.0) {
    +     236             :     skewMatrixFromVector(vec / r_norm, &vec_skew_norm);
    +     237             :   }
    +     238             : 
    +     239             :   *mat = Eigen::Matrix3d::Identity() + vec_skew_norm * std::sin(r_norm) + vec_skew_norm * vec_skew_norm * (1 - std::cos(r_norm));
    +     240             : }
    +     241             : 
    +     242             : //}
    +     243             : 
    +     244             : /* vectorFromRotationMatrix() //{ */
    +     245             : 
    +     246             : // Rotation vector from rotation matrix as described in
    +     247             : // "Computationally Efficient Trajectory Generation for Fully Actuated Multirotor Vehicles"
    +     248             : // Brescianini 2018
    +     249             : inline bool vectorFromRotationMatrix(const Eigen::Matrix3d& mat, Eigen::Vector3d* vec) {
    +     250             :   // [r] = phi / 2sin(phi) * (R - R^T)
    +     251             :   // where [r] is the skew matrix of r vector
    +     252             :   // and phi satisfies 1 + 2cos(phi) = trace(R)
    +     253             :   assert(vec);
    +     254             : 
    +     255             :   if (!isRotationMatrix(mat)) {
    +     256             :     std::cerr << "[eth_mav_msgs::common] Not a rotation matrix." << std::endl;
    +     257             :     return false;
    +     258             :   }
    +     259             : 
    +     260             :   if ((mat - Eigen::Matrix3d::Identity()).norm() < kSmallValueCheck) {
    +     261             :     *vec = Eigen::Vector3d::Zero();
    +     262             :     return true;
    +     263             :   }
    +     264             : 
    +     265             :   // Compute cosine of angle and clamp in range [-1, 1]
    +     266             :   double cos_phi         = (mat.trace() - 1.0) / 2.0;
    +     267             :   double cos_phi_clamped = boost::algorithm::clamp(cos_phi, -1.0, 1.0);
    +     268             :   double phi             = std::acos(cos_phi_clamped);
    +     269             : 
    +     270             :   if (phi < kSmallValueCheck) {
    +     271             :     *vec = Eigen::Vector3d::Zero();
    +     272             :   } else {
    +     273             :     Eigen::Matrix3d vec_skew = (mat - mat.transpose()) * phi / (2.0 * std::sin(phi));
    +     274             :     Eigen::Vector3d vec_unskewed;
    +     275             :     if (vectorFromSkewMatrix(vec_skew, &vec_unskewed)) {
    +     276             :       *vec = vec_unskewed;
    +     277             :     } else {
    +     278             :       return false;
    +     279             :     }
    +     280             :   }
    +     281             :   return true;
    +     282             : }
    +     283             : 
    +     284             : //}
    +     285             : 
    +     286             : /* omegaFromRotationVector() //{ */
    +     287             : 
    +     288             : // Calculates angular velocity (omega) from rotation vector derivative
    +     289             : // based on formula derived in "Finite rotations and angular velocity" by Asher
    +     290             : // Peres
    +     291             : inline Eigen::Vector3d omegaFromRotationVector(const Eigen::Vector3d& rot_vec, const Eigen::Vector3d& rot_vec_vel) {
    +     292             :   double phi = rot_vec.norm();
    +     293             :   if (std::abs(phi) < 1.0e-3) {
    +     294             :     // This captures the case of zero rotation
    +     295             :     return rot_vec_vel;
    +     296             :   }
    +     297             : 
    +     298             :   double phi_inv   = 1.0 / phi;
    +     299             :   double phi_2_inv = phi_inv / phi;
    +     300             :   double phi_3_inv = phi_2_inv / phi;
    +     301             : 
    +     302             :   // Create skew-symmetric matrix from rotation vector
    +     303             :   Eigen::Matrix3d phi_skew;
    +     304             :   skewMatrixFromVector(rot_vec, &phi_skew);
    +     305             : 
    +     306             :   // Set up matrix to calculate omega
    +     307             :   Eigen::Matrix3d W;
    +     308             :   W = Eigen::MatrixXd::Identity(3, 3) + phi_skew * (1 - std::cos(phi)) * phi_2_inv + phi_skew * phi_skew * (phi - std::sin(phi)) * phi_3_inv;
    +     309             :   return W * rot_vec_vel;
    +     310             : }
    +     311             : 
    +     312             : //}
    +     313             : 
    +     314             : /* omegaDotFromRotationVector() //{ */
    +     315             : 
    +     316             : // Calculates angular acceleration (omegaDot) from rotation vector derivative
    +     317             : // based on formula derived in "Finite rotations and angular velocity" by Asher
    +     318             : // Peres
    +     319             : inline Eigen::Vector3d omegaDotFromRotationVector(const Eigen::Vector3d& rot_vec, const Eigen::Vector3d& rot_vec_vel, const Eigen::Vector3d& rot_vec_acc) {
    +     320             :   double phi = rot_vec.norm();
    +     321             :   if (std::abs(phi) < 1.0e-3) {
    +     322             :     // This captures the case of zero rotation
    +     323             :     return rot_vec_acc;
    +     324             :   }
    +     325             : 
    +     326             :   double phi_dot = rot_vec.dot(rot_vec_vel) / phi;
    +     327             : 
    +     328             :   double phi_inv   = 1.0 / phi;
    +     329             :   double phi_2_inv = phi_inv / phi;
    +     330             :   double phi_3_inv = phi_2_inv / phi;
    +     331             :   double phi_4_inv = phi_3_inv / phi;
    +     332             : 
    +     333             : 
    +     334             :   // Create skew-symmetric matrix from rotation vector and velocity
    +     335             :   Eigen::Matrix3d phi_skew;
    +     336             :   Eigen::Matrix3d phi_dot_skew;
    +     337             : 
    +     338             :   skewMatrixFromVector(rot_vec, &phi_skew);
    +     339             :   skewMatrixFromVector(rot_vec_vel, &phi_dot_skew);
    +     340             : 
    +     341             :   // Set up matrices to calculate omega dot
    +     342             :   Eigen::Matrix3d W_vel;
    +     343             :   Eigen::Matrix3d W_acc;
    +     344             :   W_vel = phi_skew * (phi * std::sin(phi) - 2.0f + 2.0f * std::cos(phi)) * phi_dot * phi_3_inv +
    +     345             :           phi_skew * phi_skew * (-2.0f * phi - phi * std::cos(phi) + 3.0f * std::sin(phi)) * phi_dot * phi_4_inv +
    +     346             :           phi_dot_skew * phi_skew * (phi - std::sin(phi)) * phi_3_inv;
    +     347             : 
    +     348             :   W_acc = Eigen::MatrixXd::Identity(3, 3) + phi_skew * (1.0f - std::cos(phi)) * phi_2_inv + phi_skew * phi_skew * (phi - std::sin(phi)) * phi_3_inv;
    +     349             : 
    +     350             :   return W_vel * rot_vec_vel + W_acc * rot_vec_acc;
    +     351             : }
    +     352             : 
    +     353             : //}
    +     354             : 
    +     355             : /* getSquaredRotorSpeedsFromAllocationAndState() //{ */
    +     356             : 
    +     357             : // Calculate the nominal rotor rates given the MAV mass, allocation matrix,
    +     358             : // angular velocity, angular acceleration, and body acceleration (normalized
    +     359             : // thrust).
    +     360             : //
    +     361             : // [torques, thrust]' = A * n^2, where
    +     362             : // torques = J * ang_acc + ang_vel x J
    +     363             : // thrust = m * norm(acc)
    +     364             : //
    +     365             : // The allocation matrix A has of a hexacopter is:
    +     366             : // A = K * B, where
    +     367             : // K = diag(l*c_T, l*c_T, c_M, c_T),
    +     368             : //     [ s  1  s -s -1 -s]
    +     369             : // B = [-c  0  c  c  0 -c]
    +     370             : //     [-1  1 -1  1 -1  1]
    +     371             : //     [ 1  1  1  1  1  1],
    +     372             : // l: arm length
    +     373             : // c_T: thrust constant
    +     374             : // c_M: moment constant
    +     375             : // s: sin(30°)
    +     376             : // c: cos(30°)
    +     377             : //
    +     378             : // The inverse can be computed computationally efficient:
    +     379             : // A^-1 \approx B^pseudo * K^-1
    +     380             : inline void getSquaredRotorSpeedsFromAllocationAndState(const Eigen::MatrixXd& allocation_inv, const Eigen::Vector3d& inertia, double mass,
    +     381             :                                                         const Eigen::Vector3d& angular_velocity_B, const Eigen::Vector3d& angular_acceleration_B,
    +     382             :                                                         const Eigen::Vector3d& acceleration_B, Eigen::VectorXd* rotor_rates_squared) {
    +     383             :   const Eigen::Vector3d torque       = inertia.asDiagonal() * angular_acceleration_B + angular_velocity_B.cross(inertia.asDiagonal() * angular_velocity_B);
    +     384             :   const double          thrust_force = mass * acceleration_B.norm();
    +     385             :   Eigen::Vector4d       input;
    +     386             :   input << torque, thrust_force;
    +     387             :   *rotor_rates_squared = allocation_inv * input;
    +     388             : }
    +     389             : 
    +     390             : //}
    +     391             : 
    +     392             : /* nanosecondsToSeconds() //{ */
    +     393             : 
    +     394             : inline double nanosecondsToSeconds(int64_t nanoseconds) {
    +     395             :   double seconds = nanoseconds / kNumNanosecondsPerSecond;
    +     396             :   return seconds;
    +     397             : }
    +     398             : 
    +     399             : //}
    +     400             : 
    +     401             : /* secondsToNanoseconds() //{ */
    +     402             : 
    +     403             : inline int64_t secondsToNanoseconds(double seconds) {
    +     404             :   int64_t nanoseconds = static_cast<int64_t>(seconds * kNumNanosecondsPerSecond);
    +     405             :   return nanoseconds;
    +     406             : }
    +     407             : 
    +     408             : //}
    +     409             : 
    +     410             : }  // namespace eth_mav_msgs
    +     411             : 
    +     412             : #endif  // eth_mav_msgs_COMMON_H
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              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright 2015 Fadri Furrer, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright 2015 Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright 2015 Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright 2015 Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright 2015 Mina Kamel, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  *     http://www.apache.org/licenses/LICENSE-2.0
    +      13             : 
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #ifndef ETH_MAV_MSGS_EIGEN_MAV_MSGS_H
    +      22             : #define ETH_MAV_MSGS_EIGEN_MAV_MSGS_H
    +      23             : 
    +      24             : #include <Eigen/Eigen>
    +      25             : #include <deque>
    +      26             : #include <iostream>
    +      27             : 
    +      28             : #include <eth_mav_msgs/common.h>
    +      29             : 
    +      30             : namespace eth_mav_msgs
    +      31             : {
    +      32             : 
    +      33             : /// Actuated degrees of freedom.
    +      34             : enum MavActuation
    +      35             : {
    +      36             :   DOF4 = 4,
    +      37             :   DOF6 = 6
    +      38             : };
    +      39             : 
    +      40             : /* struct EigenAttitudeThrust //{ */
    +      41             : 
    +      42             : struct EigenAttitudeThrust
    +      43             : {
    +      44             :   EigenAttitudeThrust() : attitude(Eigen::Quaterniond::Identity()), thrust(Eigen::Vector3d::Zero()) {
    +      45             :   }
    +      46             :   EigenAttitudeThrust(const Eigen::Quaterniond& _attitude, const Eigen::Vector3d& _thrust) {
    +      47             :     attitude = _attitude;
    +      48             :     thrust   = _thrust;
    +      49             :   }
    +      50             : 
    +      51             :   EIGEN_MAKE_ALIGNED_OPERATOR_NEW
    +      52             :   Eigen::Quaterniond attitude;
    +      53             :   Eigen::Vector3d    thrust;
    +      54             : };
    +      55             : 
    +      56             : //}
    +      57             : 
    +      58             : /* struct EigenAttitudeThrust //{ */
    +      59             : 
    +      60             : struct EigenActuators
    +      61             : {
    +      62             :   // TODO(ffurrer): Find a proper way of initializing :)
    +      63             : 
    +      64             :   EigenActuators(const Eigen::VectorXd& _angular_velocities) {
    +      65             :     angular_velocities = _angular_velocities;
    +      66             :   }
    +      67             : 
    +      68             :   EIGEN_MAKE_ALIGNED_OPERATOR_NEW
    +      69             :   Eigen::VectorXd angles;              // In rad.
    +      70             :   Eigen::VectorXd angular_velocities;  // In rad/s.
    +      71             :   Eigen::VectorXd normalized;          // Everything else, normalized [-1 to 1].
    +      72             : };
    +      73             : 
    +      74             : //}
    +      75             : 
    +      76             : /* struct EigenRateThrust //{ */
    +      77             : 
    +      78             : struct EigenRateThrust
    +      79             : {
    +      80             :   EigenRateThrust() : angular_rates(Eigen::Vector3d::Zero()), thrust(Eigen::Vector3d::Zero()) {
    +      81             :   }
    +      82             : 
    +      83             :   EigenRateThrust(const Eigen::Vector3d& _angular_rates, const Eigen::Vector3d _thrust) : angular_rates(_angular_rates), thrust(_thrust) {
    +      84             :   }
    +      85             : 
    +      86             :   EIGEN_MAKE_ALIGNED_OPERATOR_NEW
    +      87             :   Eigen::Vector3d angular_rates;
    +      88             :   Eigen::Vector3d thrust;
    +      89             : };
    +      90             : 
    +      91             : //}
    +      92             : 
    +      93             : /* struct EigenTorqueThrust //{ */
    +      94             : 
    +      95             : struct EigenTorqueThrust
    +      96             : {
    +      97             :   EigenTorqueThrust() : torque(Eigen::Vector3d::Zero()), thrust(Eigen::Vector3d::Zero()) {
    +      98             :   }
    +      99             : 
    +     100             :   EigenTorqueThrust(const Eigen::Vector3d& _torque, const Eigen::Vector3d _thrust) : torque(_torque), thrust(_thrust) {
    +     101             :   }
    +     102             : 
    +     103             :   EIGEN_MAKE_ALIGNED_OPERATOR_NEW
    +     104             :   Eigen::Vector3d torque;
    +     105             :   Eigen::Vector3d thrust;
    +     106             : };
    +     107             : 
    +     108             : //}
    +     109             : 
    +     110             : /* struct EigenRollPitchYawrateThrust //{ */
    +     111             : 
    +     112             : struct EigenRollPitchYawrateThrust
    +     113             : {
    +     114             :   EigenRollPitchYawrateThrust() : roll(0.0), pitch(0.0), yaw_rate(0.0), thrust(Eigen::Vector3d::Zero()) {
    +     115             :   }
    +     116             : 
    +     117             :   EigenRollPitchYawrateThrust(double _roll, double _pitch, double _yaw_rate, const Eigen::Vector3d& _thrust)
    +     118             :       : roll(_roll), pitch(_pitch), yaw_rate(_yaw_rate), thrust(_thrust) {
    +     119             :   }
    +     120             : 
    +     121             :   double          roll;
    +     122             :   double          pitch;
    +     123             :   double          yaw_rate;
    +     124             :   Eigen::Vector3d thrust;
    +     125             : };
    +     126             : 
    +     127             : //}
    +     128             : 
    +     129             : /* class EigenMavState //{ */
    +     130             : 
    +     131             : /**
    +     132             :  * \brief Container holding the state of a MAV: position, velocity, attitude and
    +     133             :  * angular velocity.
    +     134             :  *        In addition, holds the acceleration expressed in body coordinates,
    +     135             :  * which is what the accelerometer
    +     136             :  *        usually measures.
    +     137             :  */
    +     138             : class EigenMavState {
    +     139             : public:
    +     140             :   typedef std::vector<EigenMavState, Eigen::aligned_allocator<EigenMavState>> Vector;
    +     141             :   EIGEN_MAKE_ALIGNED_OPERATOR_NEW
    +     142             : 
    +     143             :   /// Initializes all members to zero / identity.
    +     144             :   EigenMavState()
    +     145             :       : position_W(Eigen::Vector3d::Zero()),
    +     146             :         velocity_W(Eigen::Vector3d::Zero()),
    +     147             :         acceleration_B(Eigen::Vector3d::Zero()),
    +     148             :         orientation_W_B(Eigen::Quaterniond::Identity()),
    +     149             :         angular_velocity_B(Eigen::Vector3d::Zero()),
    +     150             :         angular_acceleration_B(Eigen::Vector3d::Zero()) {
    +     151             :   }
    +     152             : 
    +     153             :   EigenMavState(const Eigen::Vector3d& position_W, const Eigen::Vector3d& velocity_W, const Eigen::Vector3d& acceleration_B,
    +     154             :                 const Eigen::Quaterniond& orientation_W_B, const Eigen::Vector3d& angular_velocity_B, const Eigen::Vector3d& angular_acceleration_B)
    +     155             :       : position_W(position_W),
    +     156             :         velocity_W(velocity_W),
    +     157             :         acceleration_B(acceleration_B),
    +     158             :         orientation_W_B(orientation_W_B),
    +     159             :         angular_velocity_B(angular_velocity_B),
    +     160             :         angular_acceleration_B(angular_acceleration_B) {
    +     161             :   }
    +     162             : 
    +     163             :   std::string toString() const {
    +     164             :     std::stringstream ss;
    +     165             :     ss << "position:              " << position_W.transpose() << std::endl
    +     166             :        << "velocity:              " << velocity_W.transpose() << std::endl
    +     167             :        << "acceleration_body:     " << acceleration_B.transpose() << std::endl
    +     168             :        << "orientation (w-x-y-z): " << orientation_W_B.w() << " " << orientation_W_B.x() << " " << orientation_W_B.y() << " " << orientation_W_B.z() << " "
    +     169             :        << std::endl
    +     170             :        << "angular_velocity_body: " << angular_velocity_B.transpose() << std::endl
    +     171             :        << "angular_acceleration_body: " << angular_acceleration_B.transpose() << std::endl;
    +     172             : 
    +     173             :     return ss.str();
    +     174             :   }
    +     175             : 
    +     176             :   Eigen::Vector3d    position_W;
    +     177             :   Eigen::Vector3d    velocity_W;
    +     178             :   Eigen::Vector3d    acceleration_B;
    +     179             :   Eigen::Quaterniond orientation_W_B;
    +     180             :   Eigen::Vector3d    angular_velocity_B;
    +     181             :   Eigen::Vector3d    angular_acceleration_B;
    +     182             : };
    +     183             : 
    +     184             : //}
    +     185             : 
    +     186             : /* struct EigenTrajectoryPoint //{ */
    +     187             : 
    +     188             : struct EigenTrajectoryPoint
    +     189             : {
    +     190             :   typedef std::vector<EigenTrajectoryPoint, Eigen::aligned_allocator<EigenTrajectoryPoint>> Vector;
    +     191        2117 :   EigenTrajectoryPoint()
    +     192        2117 :       : timestamp_ns(-1),
    +     193             :         time_from_start_ns(0),
    +     194           0 :         position_W(Eigen::Vector3d::Zero()),
    +     195           0 :         velocity_W(Eigen::Vector3d::Zero()),
    +     196           0 :         acceleration_W(Eigen::Vector3d::Zero()),
    +     197           0 :         jerk_W(Eigen::Vector3d::Zero()),
    +     198           0 :         snap_W(Eigen::Vector3d::Zero()),
    +     199             :         orientation_W_B(Eigen::Quaterniond::Identity()),
    +     200           0 :         angular_velocity_W(Eigen::Vector3d::Zero()),
    +     201        4234 :         angular_acceleration_W(Eigen::Vector3d::Zero()),
    +     202        2117 :         degrees_of_freedom(MavActuation::DOF4) {
    +     203        2117 :   }
    +     204             : 
    +     205             :   EigenTrajectoryPoint(int64_t _time_from_start_ns, const Eigen::Vector3d& _position, const Eigen::Vector3d& _velocity, const Eigen::Vector3d& _acceleration,
    +     206             :                        const Eigen::Vector3d& _jerk, const Eigen::Vector3d& _snap, const Eigen::Quaterniond& _orientation,
    +     207             :                        const Eigen::Vector3d& _angular_velocity, const Eigen::Vector3d& _angular_acceleration,
    +     208             :                        const MavActuation& _degrees_of_freedom = MavActuation::DOF4)
    +     209             :       : time_from_start_ns(_time_from_start_ns),
    +     210             :         position_W(_position),
    +     211             :         velocity_W(_velocity),
    +     212             :         acceleration_W(_acceleration),
    +     213             :         jerk_W(_jerk),
    +     214             :         snap_W(_snap),
    +     215             :         orientation_W_B(_orientation),
    +     216             :         angular_velocity_W(_angular_velocity),
    +     217             :         angular_acceleration_W(_angular_acceleration),
    +     218             :         degrees_of_freedom(_degrees_of_freedom) {
    +     219             :   }
    +     220             : 
    +     221             :   EigenTrajectoryPoint(int64_t _time_from_start_ns, const Eigen::Vector3d& _position, const Eigen::Vector3d& _velocity, const Eigen::Vector3d& _acceleration,
    +     222             :                        const Eigen::Vector3d& _jerk, const Eigen::Vector3d& _snap, const Eigen::Quaterniond& _orientation,
    +     223             :                        const Eigen::Vector3d& _angular_velocity, const MavActuation& _degrees_of_freedom = MavActuation::DOF4)
    +     224             :       : EigenTrajectoryPoint(_time_from_start_ns, _position, _velocity, _acceleration, _jerk, _snap, _orientation, _angular_velocity, Eigen::Vector3d::Zero(),
    +     225             :                              _degrees_of_freedom) {
    +     226             :   }
    +     227             : 
    +     228             :   EIGEN_MAKE_ALIGNED_OPERATOR_NEW
    +     229             :   int64_t         timestamp_ns;  // Time since epoch, negative value = invalid timestamp.
    +     230             :   int64_t         time_from_start_ns;
    +     231             :   Eigen::Vector3d position_W;
    +     232             :   Eigen::Vector3d velocity_W;
    +     233             :   Eigen::Vector3d acceleration_W;
    +     234             :   Eigen::Vector3d jerk_W;
    +     235             :   Eigen::Vector3d snap_W;
    +     236             : 
    +     237             :   Eigen::Quaterniond orientation_W_B;
    +     238             :   Eigen::Vector3d    angular_velocity_W;
    +     239             :   Eigen::Vector3d    angular_acceleration_W;
    +     240             :   MavActuation       degrees_of_freedom;
    +     241             : 
    +     242             :   // Accessors for making dealing with orientation/angular velocity easier.
    +     243         849 :   inline double getYaw() const {
    +     244         849 :     return yawFromQuaternion(orientation_W_B);
    +     245             :   }
    +     246             :   inline double getYawRate() const {
    +     247             :     return angular_velocity_W.z();
    +     248             :   }
    +     249             :   inline double getYawAcc() const {
    +     250             :     return angular_acceleration_W.z();
    +     251             :   }
    +     252             :   // WARNING: sets roll and pitch to 0.
    +     253        2117 :   inline void setFromYaw(double yaw) {
    +     254        2117 :     orientation_W_B = quaternionFromYaw(yaw);
    +     255        2117 :   }
    +     256        1268 :   inline void setFromYawRate(double yaw_rate) {
    +     257        1268 :     angular_velocity_W.x() = 0.0;
    +     258        1268 :     angular_velocity_W.y() = 0.0;
    +     259        1268 :     angular_velocity_W.z() = yaw_rate;
    +     260        1268 :   }
    +     261        1268 :   inline void setFromYawAcc(double yaw_acc) {
    +     262        1268 :     angular_acceleration_W.x() = 0.0;
    +     263        1268 :     angular_acceleration_W.y() = 0.0;
    +     264        1268 :     angular_acceleration_W.z() = yaw_acc;
    +     265        1268 :   }
    +     266             : 
    +     267             :   std::string toString() const {
    +     268             :     std::stringstream ss;
    +     269             :     ss << "position:          " << position_W.transpose() << std::endl
    +     270             :        << "velocity:          " << velocity_W.transpose() << std::endl
    +     271             :        << "acceleration:      " << acceleration_W.transpose() << std::endl
    +     272             :        << "jerk:              " << jerk_W.transpose() << std::endl
    +     273             :        << "snap:              " << snap_W.transpose() << std::endl
    +     274             :        << "yaw:               " << getYaw() << std::endl
    +     275             :        << "yaw_rate:          " << getYawRate() << std::endl
    +     276             :        << "yaw_acc:           " << getYawAcc() << std::endl;
    +     277             : 
    +     278             :     return ss.str();
    +     279             :   }
    +     280             : };
    +     281             : 
    +     282             : //}
    +     283             : 
    +     284             : /* EigenTrajectoryPoint operator* //{ */
    +     285             : 
    +     286             : // Operator overload to transform Trajectory Points according to the Eigen
    +     287             : // interfaces (uses operator* for this).
    +     288             : // Has to be outside of class.
    +     289             : // Example:
    +     290             : // Eigen::Affine3d transform; EigenTrajectoryPoint point;
    +     291             : // EigenTrajectoryPoint transformed = transform * point;
    +     292             : inline EigenTrajectoryPoint operator*(const Eigen::Affine3d& lhs, const EigenTrajectoryPoint& rhs) {
    +     293             :   EigenTrajectoryPoint transformed(rhs);
    +     294             :   transformed.position_W             = lhs * rhs.position_W;
    +     295             :   transformed.velocity_W             = lhs.rotation() * rhs.velocity_W;
    +     296             :   transformed.acceleration_W         = lhs.rotation() * rhs.acceleration_W;
    +     297             :   transformed.jerk_W                 = lhs.rotation() * rhs.jerk_W;
    +     298             :   transformed.snap_W                 = lhs.rotation() * rhs.snap_W;
    +     299             :   transformed.orientation_W_B        = lhs.rotation() * rhs.orientation_W_B;
    +     300             :   transformed.angular_velocity_W     = lhs.rotation() * rhs.angular_velocity_W;
    +     301             :   transformed.angular_acceleration_W = lhs.rotation() * rhs.angular_acceleration_W;
    +     302             :   return transformed;
    +     303             : }
    +     304             : 
    +     305             : //}
    +     306             : 
    +     307             : /* struct EigenOdometry //{ */
    +     308             : 
    +     309             : struct EigenOdometry
    +     310             : {
    +     311             :   EigenOdometry()
    +     312             :       : timestamp_ns(-1),
    +     313             :         position_W(Eigen::Vector3d::Zero()),
    +     314             :         orientation_W_B(Eigen::Quaterniond::Identity()),
    +     315             :         velocity_B(Eigen::Vector3d::Zero()),
    +     316             :         angular_velocity_B(Eigen::Vector3d::Zero()) {
    +     317             :   }
    +     318             : 
    +     319             :   EigenOdometry(const Eigen::Vector3d& _position, const Eigen::Quaterniond& _orientation, const Eigen::Vector3d& _velocity_body,
    +     320             :                 const Eigen::Vector3d& _angular_velocity)
    +     321             :       : position_W(_position), orientation_W_B(_orientation), velocity_B(_velocity_body), angular_velocity_B(_angular_velocity) {
    +     322             :   }
    +     323             : 
    +     324             :   EIGEN_MAKE_ALIGNED_OPERATOR_NEW
    +     325             :   int64_t                     timestamp_ns;  // Time since epoch, negative value = invalid timestamp.
    +     326             :   Eigen::Vector3d             position_W;
    +     327             :   Eigen::Quaterniond          orientation_W_B;
    +     328             :   Eigen::Vector3d             velocity_B;  // Velocity in expressed in the Body frame!
    +     329             :   Eigen::Vector3d             angular_velocity_B;
    +     330             :   Eigen::Matrix<double, 6, 6> pose_covariance_;
    +     331             :   Eigen::Matrix<double, 6, 6> twist_covariance_;
    +     332             : 
    +     333             :   // Accessors for making dealing with orientation/angular velocity easier.
    +     334             :   inline double getYaw() const {
    +     335             :     return yawFromQuaternion(orientation_W_B);
    +     336             :   }
    +     337             :   inline void getEulerAngles(Eigen::Vector3d* euler_angles) const {
    +     338             :     getEulerAnglesFromQuaternion(orientation_W_B, euler_angles);
    +     339             :   }
    +     340             :   inline double getYawRate() const {
    +     341             :     return angular_velocity_B.z();
    +     342             :   }
    +     343             :   // WARNING: sets roll and pitch to 0.
    +     344             :   inline void setFromYaw(double yaw) {
    +     345             :     orientation_W_B = quaternionFromYaw(yaw);
    +     346             :   }
    +     347             :   inline void setFromYawRate(double yaw_rate) {
    +     348             :     angular_velocity_B.x() = 0.0;
    +     349             :     angular_velocity_B.y() = 0.0;
    +     350             :     angular_velocity_B.z() = yaw_rate;
    +     351             :   }
    +     352             : 
    +     353             :   inline Eigen::Vector3d getVelocityWorld() const {
    +     354             :     return orientation_W_B * velocity_B;
    +     355             :   }
    +     356             :   inline void setVelocityWorld(const Eigen::Vector3d& velocity_world) {
    +     357             :     velocity_B = orientation_W_B.inverse() * velocity_world;
    +     358             :   }
    +     359             : };
    +     360             : 
    +     361             : //}
    +     362             : 
    +     363             : // TODO(helenol): replaced with aligned allocator headers from Simon.
    +     364             : #define MAV_MSGS_CONCATENATE(x, y) x##y
    +     365             : #define MAV_MSGS_CONCATENATE2(x, y) MAV_MSGS_CONCATENATE(x, y)
    +     366             : #define MAV_MSGS_MAKE_ALIGNED_CONTAINERS(EIGEN_TYPE)                                                               \
    +     367             :   typedef std::vector<EIGEN_TYPE, Eigen::aligned_allocator<EIGEN_TYPE>> MAV_MSGS_CONCATENATE2(EIGEN_TYPE, Vector); \
    +     368             :   typedef std::deque<EIGEN_TYPE, Eigen::aligned_allocator<EIGEN_TYPE>>  MAV_MSGS_CONCATENATE2(EIGEN_TYPE, Deque);
    +     369             : 
    +     370             : MAV_MSGS_MAKE_ALIGNED_CONTAINERS(EigenAttitudeThrust)
    +     371             : MAV_MSGS_MAKE_ALIGNED_CONTAINERS(EigenActuators)
    +     372             : MAV_MSGS_MAKE_ALIGNED_CONTAINERS(EigenRateThrust)
    +     373             : MAV_MSGS_MAKE_ALIGNED_CONTAINERS(EigenTrajectoryPoint)
    +     374             : MAV_MSGS_MAKE_ALIGNED_CONTAINERS(EigenRollPitchYawrateThrust)
    +     375             : MAV_MSGS_MAKE_ALIGNED_CONTAINERS(EigenOdometry)
    +     376             : 
    +     377             : }  // namespace eth_mav_msgs
    +     378             : 
    +     379             : #endif  // MAV_MSGS_EIGEN_MAV_MSGS_H
    +
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #ifndef ETH_TRAJECTORY_GENERATION_EXTREMUM_H_
    +      22             : #define ETH_TRAJECTORY_GENERATION_EXTREMUM_H_
    +      23             : 
    +      24             : #include <iostream>
    +      25             : 
    +      26             : namespace eth_trajectory_generation
    +      27             : {
    +      28             : 
    +      29             : // Container holding the properties of an extremum (time, value,
    +      30             : // segment where it occurred).
    +      31             : struct Extremum
    +      32             : {
    +      33             : public:
    +      34       21557 :   Extremum() : time(0.0), value(0.0), segment_idx(0) {
    +      35       21557 :   }
    +      36             : 
    +      37       12755 :   Extremum(double _time, double _value, int _segment_idx) : time(_time), value(_value), segment_idx(_segment_idx) {
    +      38       12755 :   }
    +      39             : 
    +      40       28354 :   bool operator<(const Extremum& rhs) const {
    +      41       28354 :     return value < rhs.value;
    +      42             :   }
    +      43        2844 :   bool operator>(const Extremum& rhs) const {
    +      44        2844 :     return value > rhs.value;
    +      45             :   }
    +      46             : 
    +      47             :   double time;         // Time where the extremum occurs, relative to the segment start.
    +      48             :   double value;        // Value of the extremum at time.
    +      49             :   int    segment_idx;  // Index of the segment where the extremum occurs.
    +      50             : };
    +      51             : 
    +      52             : inline std::ostream& operator<<(std::ostream& stream, const Extremum& e) {
    +      53             :   stream << "time: " << e.time << ", value: " << e.value << ", segment idx: " << e.segment_idx << std::endl;
    +      54             :   return stream;
    +      55             : }
    +      56             : 
    +      57             : }  // namespace eth_trajectory_generation
    +      58             : 
    +      59             : #endif  // ETH_TRAJECTORY_GENERATION_EXTREMUM_H_
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    eth_trajectory_generation::PolynomialOptimization<10>::setFreeConstraints(std::vector<Eigen::Matrix<double, -1, 1, 0, -1, 1>, std::allocator<Eigen::Matrix<double, -1, 1, 0, -1, 1> > > const&)0
    eth_trajectory_generation::PolynomialOptimization<10>::computeSegmentMaximumMagnitudeCandidates(int, eth_trajectory_generation::Segment const&, double, double, std::vector<double, std::allocator<double> >*)0
    eth_trajectory_generation::PolynomialOptimization<10>::computeMaximumOfMagnitude(int, std::vector<eth_trajectory_generation::Extremum, std::allocator<eth_trajectory_generation::Extremum> >*) const0
    eth_trajectory_generation::PolynomialOptimization<10>::setupFromVertices(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, std::vector<double, std::allocator<double> > const&, int)15
    eth_trajectory_generation::PolynomialOptimization<10>::setupConstraintReorderingMatrix()15
    eth_trajectory_generation::PolynomialOptimization<10>::PolynomialOptimization(unsigned long)15
    eth_trajectory_generation::PolynomialOptimization<10>::computeCost() const1649
    eth_trajectory_generation::PolynomialOptimization<10>::solveLinear()1872
    eth_trajectory_generation::PolynomialOptimization<10>::updateSegmentsFromCompactConstraints()1872
    eth_trajectory_generation::PolynomialOptimization<10>::constructR(Eigen::SparseMatrix<double, 0, int>*) const1872
    eth_trajectory_generation::PolynomialOptimization<10>::updateSegmentTimes(std::vector<double, std::allocator<double> > const&)1887
    eth_trajectory_generation::PolynomialOptimization<10>::setupMappingMatrix(double, Eigen::Matrix<double, 10, 10, 0, 10, 10>*)18269
    eth_trajectory_generation::PolynomialOptimization<10>::invertMappingMatrix(Eigen::Matrix<double, 10, 10, 0, 10, 10> const&, Eigen::Matrix<double, 10, 10, 0, 10, 10>*)18269
    eth_trajectory_generation::PolynomialOptimization<10>::computeQuadraticCostJacobian(int, double, Eigen::Matrix<double, 10, 10, 0, 10, 10>*)18269
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    eth_trajectory_generation::PolynomialOptimization<10>::solveLinear()1872
    eth_trajectory_generation::PolynomialOptimization<10>::setupFromVertices(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, std::vector<double, std::allocator<double> > const&, int)15
    eth_trajectory_generation::PolynomialOptimization<10>::setFreeConstraints(std::vector<Eigen::Matrix<double, -1, 1, 0, -1, 1>, std::allocator<Eigen::Matrix<double, -1, 1, 0, -1, 1> > > const&)0
    eth_trajectory_generation::PolynomialOptimization<10>::setupMappingMatrix(double, Eigen::Matrix<double, 10, 10, 0, 10, 10>*)18269
    eth_trajectory_generation::PolynomialOptimization<10>::updateSegmentTimes(std::vector<double, std::allocator<double> > const&)1887
    eth_trajectory_generation::PolynomialOptimization<10>::invertMappingMatrix(Eigen::Matrix<double, 10, 10, 0, 10, 10> const&, Eigen::Matrix<double, 10, 10, 0, 10, 10>*)18269
    eth_trajectory_generation::PolynomialOptimization<10>::computeQuadraticCostJacobian(int, double, Eigen::Matrix<double, 10, 10, 0, 10, 10>*)18269
    eth_trajectory_generation::PolynomialOptimization<10>::setupConstraintReorderingMatrix()15
    eth_trajectory_generation::PolynomialOptimization<10>::updateSegmentsFromCompactConstraints()1872
    eth_trajectory_generation::PolynomialOptimization<10>::computeSegmentMaximumMagnitudeCandidates(int, eth_trajectory_generation::Segment const&, double, double, std::vector<double, std::allocator<double> >*)0
    eth_trajectory_generation::PolynomialOptimization<10>::PolynomialOptimization(unsigned long)15
    eth_trajectory_generation::PolynomialOptimization<10>::constructR(Eigen::SparseMatrix<double, 0, int>*) const1872
    eth_trajectory_generation::PolynomialOptimization<10>::computeCost() const1649
    eth_trajectory_generation::PolynomialOptimization<10>::computeMaximumOfMagnitude(int, std::vector<eth_trajectory_generation::Extremum, std::allocator<eth_trajectory_generation::Extremum> >*) const0
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              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #ifndef eth_trajectory_generation_IMPL_POLYNOMIAL_OPTIMIZATION_LINEAR_IMPL_H_
    +      22             : #define eth_trajectory_generation_IMPL_POLYNOMIAL_OPTIMIZATION_LINEAR_IMPL_H_
    +      23             : 
    +      24             : #include <eth_trajectory_generation/misc.h>
    +      25             : #include <Eigen/Sparse>
    +      26             : #include <set>
    +      27             : #include <tuple>
    +      28             : 
    +      29             : // fixes error due to std::iota (has been introduced in c++ standard lately
    +      30             : // and may cause compilation errors depending on compiler)
    +      31             : #if __cplusplus <= 199711L
    +      32             : #include <algorithm>
    +      33             : #else
    +      34             : #include <numeric>
    +      35             : #endif
    +      36             : 
    +      37             : #include <eth_trajectory_generation/convolution.h>
    +      38             : 
    +      39             : namespace eth_trajectory_generation
    +      40             : {
    +      41             : 
    +      42             : /* PolynomialOptimization() //{ */
    +      43             : 
    +      44             : template <int _N>
    +      45          15 : PolynomialOptimization<_N>::PolynomialOptimization(size_t dimension)
    +      46             :     : dimension_(dimension),
    +      47             :       derivative_to_optimize_(derivative_order::INVALID),
    +      48             :       n_vertices_(0),
    +      49             :       n_segments_(0),
    +      50             :       n_all_constraints_(0),
    +      51             :       n_fixed_constraints_(0),
    +      52          15 :       n_free_constraints_(0) {
    +      53          15 :   fixed_constraints_compact_.resize(dimension_);
    +      54          15 :   free_constraints_compact_.resize(dimension_);
    +      55          15 : }
    +      56             : 
    +      57             : //}
    +      58             : 
    +      59             : /* setupFromVertices() //{ */
    +      60             : 
    +      61             : template <int _N>
    +      62          15 : bool PolynomialOptimization<_N>::setupFromVertices(const Vertex::Vector& vertices, const std::vector<double>& times, int derivative_to_optimize) {
    +      63          15 :   CHECK(derivative_to_optimize >= 0 && derivative_to_optimize <= kHighestDerivativeToOptimize)
    +      64           0 :       << "You tried to optimize the " << derivative_to_optimize << "th derivative of position on a " << N
    +      65           0 :       << "th order polynomial. This is not possible, you either need a higher "
    +      66             :          "order polynomial or a smaller derivative to optimize.";
    +      67             : 
    +      68          15 :   derivative_to_optimize_ = derivative_to_optimize;
    +      69          15 :   vertices_               = vertices;
    +      70          15 :   segment_times_          = times;
    +      71             : 
    +      72          15 :   n_vertices_ = vertices.size();
    +      73          15 :   n_segments_ = n_vertices_ - 1;
    +      74             : 
    +      75          15 :   segments_.resize(n_segments_, Segment(N, dimension_));
    +      76             : 
    +      77          15 :   CHECK(n_vertices_ == times.size() + 1) << "Size of times must be one less than positions.";
    +      78             : 
    +      79          15 :   inverse_mapping_matrices_.resize(n_segments_);
    +      80          15 :   cost_matrices_.resize(n_segments_);
    +      81             : 
    +      82             :   // Iterate through all vertices and remove invalid constraints (order too
    +      83             :   // high).
    +      84         188 :   for (size_t vertex_idx = 0; vertex_idx < n_vertices_; ++vertex_idx) {
    +      85         173 :     Vertex& vertex = vertices_[vertex_idx];
    +      86             : 
    +      87             :     // Check if we have valid constraints.
    +      88         173 :     bool   vertex_valid = true;
    +      89         346 :     Vertex vertex_tmp(dimension_);
    +      90         417 :     for (Vertex::Constraints::const_iterator it = vertex.cBegin(); it != vertex.cEnd(); ++it) {
    +      91         244 :       if (it->first > kHighestDerivativeToOptimize) {
    +      92           0 :         vertex_valid = false;
    +      93           0 :         LOG(WARNING) << "Invalid constraint on vertex " << vertex_idx << ": maximum possible derivative is " << kHighestDerivativeToOptimize
    +      94           0 :                      << ", but was set to " << it->first << ". Ignoring constraint";
    +      95             :       } else {
    +      96         244 :         vertex_tmp.addConstraint(it->first, it->second);
    +      97             :       }
    +      98             :     }
    +      99         173 :     if (!vertex_valid) {
    +     100           0 :       vertex = vertex_tmp;
    +     101             :     }
    +     102             :   }
    +     103          15 :   updateSegmentTimes(times);
    +     104          15 :   setupConstraintReorderingMatrix();
    +     105          15 :   return true;
    +     106             : }
    +     107             : 
    +     108             : //}
    +     109             : 
    +     110             : /* setupMappingMatrix() //{ */
    +     111             : 
    +     112             : template <int _N>
    +     113       18269 : void PolynomialOptimization<_N>::setupMappingMatrix(double segment_time, SquareMatrix* A) {
    +     114             :   // The sum of fixed/free variables has to be equal on both ends of the
    +     115             :   // segment.
    +     116             :   // Thus, A is created as [A(t=0); A(t=segment_time)].
    +     117      109614 :   for (int i = 0; i < N / 2; ++i) {
    +     118       91345 :     A->row(i)         = Polynomial::baseCoeffsWithTime(N, i, 0.0);
    +     119       91345 :     A->row(i + N / 2) = Polynomial::baseCoeffsWithTime(N, i, segment_time);
    +     120             :   }
    +     121       18269 : }
    +     122             : 
    +     123             : //}
    +     124             : 
    +     125             : /* computeCost() //{ */
    +     126             : 
    +     127             : template <int _N>
    +     128        1649 : double PolynomialOptimization<_N>::computeCost() const {
    +     129        1649 :   CHECK(n_segments_ == segments_.size() && n_segments_ == cost_matrices_.size());
    +     130        1649 :   double cost = 0;
    +     131       18161 :   for (size_t segment_idx = 0; segment_idx < n_segments_; ++segment_idx) {
    +     132       16512 :     const SquareMatrix& Q       = cost_matrices_[segment_idx];
    +     133       16512 :     const Segment&      segment = segments_[segment_idx];
    +     134       82560 :     for (size_t dimension_idx = 0; dimension_idx < dimension_; ++dimension_idx) {
    +     135       66048 :       const Eigen::VectorXd c            = segment[dimension_idx].getCoefficients(derivative_order::POSITION);
    +     136       66048 :       const double          partial_cost = c.transpose() * Q * c;
    +     137       66048 :       cost += partial_cost;
    +     138             :     }
    +     139             :   }
    +     140        1649 :   return 0.5 * cost;  // cost = 0.5 * c^T * Q * c
    +     141             : }
    +     142             : 
    +     143             : //}
    +     144             : 
    +     145             : /* invertMappingMatrix() //{ */
    +     146             : 
    +     147             : template <int _N>
    +     148       18269 : void PolynomialOptimization<_N>::invertMappingMatrix(const SquareMatrix& mapping_matrix, SquareMatrix* inverse_mapping_matrix) {
    +     149             :   // The mapping matrix has the following structure:
    +     150             :   // [ x 0 0 0 0 0 ]
    +     151             :   // [ 0 x 0 0 0 0 ]
    +     152             :   // [ 0 0 x 0 0 0 ]
    +     153             :   // [ x x x x x x ]
    +     154             :   // [ 0 x x x x x ]
    +     155             :   // [ 0 0 x x x x ]
    +     156             :   // ==>
    +     157             :   // [ A_diag B=0 ]
    +     158             :   // [ C      D   ]
    +     159             :   // We make use of the Schur-complement, so the inverse is:
    +     160             :   // [ inv(A_diag)               0      ]
    +     161             :   // [ -inv(D) * C * inv(A_diag) inv(D) ]
    +     162       18269 :   const int half_n = N / 2;
    +     163             : 
    +     164             :   // "template" keyword required below as half_n is dependent on the template
    +     165             :   // parameter.
    +     166       18269 :   const Eigen::Matrix<double, half_n, 1>      A_diag = mapping_matrix.template block<half_n, half_n>(0, 0).diagonal();
    +     167       18269 :   const Eigen::Matrix<double, half_n, half_n> A_inv  = A_diag.cwiseInverse().asDiagonal();
    +     168             : 
    +     169       18269 :   const Eigen::Matrix<double, half_n, half_n> C = mapping_matrix.template block<half_n, half_n>(half_n, 0);
    +     170             : 
    +     171       18269 :   const Eigen::Matrix<double, half_n, half_n> D_inv = mapping_matrix.template block<half_n, half_n>(half_n, half_n).inverse();
    +     172             : 
    +     173       18269 :   inverse_mapping_matrix->template block<half_n, half_n>(0, 0) = A_inv;
    +     174       18269 :   inverse_mapping_matrix->template block<half_n, half_n>(0, half_n).setZero();
    +     175       18269 :   inverse_mapping_matrix->template block<half_n, half_n>(half_n, 0)      = -D_inv * C * A_inv;
    +     176       18269 :   inverse_mapping_matrix->template block<half_n, half_n>(half_n, half_n) = D_inv;
    +     177       18269 : }
    +     178             : 
    +     179             : //}
    +     180             : 
    +     181             : /* setupConstraintReorderingMatrix() //{ */
    +     182             : 
    +     183             : template <int _N>
    +     184          15 : void PolynomialOptimization<_N>::setupConstraintReorderingMatrix() {
    +     185             :   typedef Eigen::Triplet<double> Triplet;
    +     186          30 :   std::vector<Triplet>           reordering_list;
    +     187             : 
    +     188          15 :   const size_t n_vertices = vertices_.size();
    +     189             : 
    +     190          30 :   std::vector<Constraint> all_constraints;
    +     191          30 :   std::set<Constraint>    fixed_constraints;
    +     192          15 :   std::set<Constraint>    free_constraints;
    +     193             : 
    +     194          15 :   all_constraints.reserve(n_vertices_ * N / 2);  // Will have exactly this number of elements in the end.
    +     195             : 
    +     196         188 :   for (size_t vertex_idx = 0; vertex_idx < n_vertices; ++vertex_idx) {
    +     197         173 :     const Vertex& vertex = vertices_[vertex_idx];
    +     198             : 
    +     199             :     // Extract constraints and sort them to fixed and free. For the start and
    +     200             :     // end Vertex, we need to do this once, while we need to do it twice for the
    +     201             :     // other vertices, since constraints are shared and enforce continuity.
    +     202         173 :     int n_constraint_occurence = 2;
    +     203         173 :     if (vertex_idx == 0 || vertex_idx == (n_segments_))
    +     204          30 :       n_constraint_occurence = 1;
    +     205         489 :     for (int co = 0; co < n_constraint_occurence; ++co) {
    +     206        1896 :       for (size_t constraint_idx = 0; constraint_idx < N / 2; ++constraint_idx) {
    +     207        3160 :         Constraint constraint;
    +     208        1580 :         constraint.vertex_idx     = vertex_idx;
    +     209        1580 :         constraint.constraint_idx = constraint_idx;
    +     210        1580 :         bool has_constraint       = vertex.getConstraint(constraint_idx, &(constraint.value));
    +     211        1580 :         if (has_constraint) {
    +     212         387 :           all_constraints.push_back(constraint);
    +     213         387 :           fixed_constraints.insert(constraint);
    +     214             :         } else {
    +     215        1193 :           constraint.value = Vertex::ConstraintValue::Constant(dimension_, 0);
    +     216        1193 :           all_constraints.push_back(constraint);
    +     217        1193 :           free_constraints.insert(constraint);
    +     218             :         }
    +     219             :       }
    +     220             :     }
    +     221             :   }
    +     222             : 
    +     223          15 :   n_all_constraints_   = all_constraints.size();
    +     224          15 :   n_fixed_constraints_ = fixed_constraints.size();
    +     225          15 :   n_free_constraints_  = free_constraints.size();
    +     226             : 
    +     227          15 :   reordering_list.reserve(n_all_constraints_);
    +     228          15 :   constraint_reordering_ = Eigen::SparseMatrix<double>(n_all_constraints_, n_fixed_constraints_ + n_free_constraints_);
    +     229             : 
    +     230          75 :   for (Eigen::VectorXd& df : fixed_constraints_compact_)
    +     231          60 :     df.resize(n_fixed_constraints_, Eigen::NoChange);
    +     232             : 
    +     233          15 :   int row = 0;
    +     234          15 :   int col = 0;
    +     235        1595 :   for (const Constraint& ca : all_constraints) {
    +     236       35900 :     for (const Constraint& cf : fixed_constraints) {
    +     237       34320 :       if (ca == cf) {
    +     238         387 :         reordering_list.emplace_back(Triplet(row, col, 1.0));
    +     239        1935 :         for (size_t d = 0; d < dimension_; ++d) {
    +     240        1548 :           Eigen::VectorXd&      df                        = fixed_constraints_compact_[d];
    +     241        1548 :           const Eigen::VectorXd constraint_all_dimensions = cf.value;
    +     242        1548 :           df[col]                                         = constraint_all_dimensions[d];
    +     243             :         }
    +     244             :       }
    +     245       34320 :       ++col;
    +     246             :     }
    +     247      100260 :     for (const Constraint& cp : free_constraints) {
    +     248       98680 :       if (ca == cp)
    +     249        1193 :         reordering_list.emplace_back(Triplet(row, col, 1.0));
    +     250       98680 :       ++col;
    +     251             :     }
    +     252        1580 :     col = 0;
    +     253        1580 :     ++row;
    +     254             :   }
    +     255             : 
    +     256          15 :   constraint_reordering_.setFromTriplets(reordering_list.begin(), reordering_list.end());
    +     257          15 : }
    +     258             : 
    +     259             : //}
    +     260             : 
    +     261             : /* setupConstraintReorderingMatrix() //{ */
    +     262             : 
    +     263             : template <int _N>
    +     264        1872 : void PolynomialOptimization<_N>::updateSegmentsFromCompactConstraints() {
    +     265        1872 :   const size_t n_all_constraints = n_fixed_constraints_ + n_free_constraints_;
    +     266             : 
    +     267        9360 :   for (size_t dimension_idx = 0; dimension_idx < dimension_; ++dimension_idx) {
    +     268        7488 :     const Eigen::VectorXd& df     = fixed_constraints_compact_[dimension_idx];
    +     269        7488 :     const Eigen::VectorXd& dp_opt = free_constraints_compact_[dimension_idx];
    +     270             : 
    +     271       14976 :     Eigen::VectorXd d_all(n_all_constraints);
    +     272        7488 :     d_all << df, dp_opt;
    +     273             : 
    +     274       79932 :     for (size_t i = 0; i < n_segments_; ++i) {
    +     275       72444 :       const Eigen::Matrix<double, N, 1> new_d   = constraint_reordering_.block(i * N, 0, N, n_all_constraints) * d_all;
    +     276       72444 :       const Eigen::Matrix<double, N, 1> coeffs  = inverse_mapping_matrices_[i] * new_d;
    +     277       72444 :       Segment&                          segment = segments_[i];
    +     278       72444 :       segment.setTime(segment_times_[i]);
    +     279       72444 :       segment[dimension_idx] = Polynomial(N, coeffs);
    +     280             :     }
    +     281             :   }
    +     282        1872 : }
    +     283             : 
    +     284             : //}
    +     285             : 
    +     286             : /* updateSegmentTimes() //{ */
    +     287             : 
    +     288             : template <int _N>
    +     289        1887 : void PolynomialOptimization<_N>::updateSegmentTimes(const std::vector<double>& segment_times) {
    +     290        1887 :   const size_t n_segment_times = segment_times.size();
    +     291        1887 :   CHECK(n_segment_times == n_segments_) << "Number of segment times (" << n_segment_times << ") does not match number of segments (" << n_segments_ << ")";
    +     292             : 
    +     293        1887 :   segment_times_ = segment_times;
    +     294             : 
    +     295       20156 :   for (size_t i = 0; i < n_segments_; i++) {
    +     296       18269 :     const double segment_time = segment_times[i];
    +     297       18269 :     CHECK_GT(segment_time, 0) << "Segment times need to be greater than zero";
    +     298             : 
    +     299       18269 :     computeQuadraticCostJacobian(derivative_to_optimize_, segment_time, &cost_matrices_[i]);
    +     300       18269 :     SquareMatrix A;
    +     301       18269 :     setupMappingMatrix(segment_time, &A);
    +     302       18269 :     invertMappingMatrix(A, &inverse_mapping_matrices_[i]);
    +     303             :   };
    +     304        1887 : }
    +     305             : 
    +     306             : //}
    +     307             : 
    +     308             : /* constructR() //{ */
    +     309             : 
    +     310             : template <int _N>
    +     311        1872 : void PolynomialOptimization<_N>::constructR(Eigen::SparseMatrix<double>* R) const {
    +     312        1872 :   CHECK_NOTNULL(R);
    +     313             :   typedef Eigen::Triplet<double> Triplet;
    +     314        3744 :   std::vector<Triplet>           cost_unconstrained_triplets;
    +     315        1872 :   cost_unconstrained_triplets.reserve(N * N * n_segments_);
    +     316             : 
    +     317       19983 :   for (size_t i = 0; i < n_segments_; ++i) {
    +     318       18111 :     const SquareMatrix& Ai        = inverse_mapping_matrices_[i];
    +     319       18111 :     const SquareMatrix& Q         = cost_matrices_[i];
    +     320       18111 :     const SquareMatrix  H         = Ai.transpose() * Q * Ai;
    +     321       18111 :     const int           start_pos = i * N;
    +     322      199221 :     for (int row = 0; row < N; ++row) {
    +     323     1992210 :       for (int col = 0; col < N; ++col) {
    +     324     1811100 :         cost_unconstrained_triplets.emplace_back(Triplet(start_pos + row, start_pos + col, H(row, col)));
    +     325             :       }
    +     326             :     }
    +     327             :   }
    +     328        1872 :   Eigen::SparseMatrix<double> cost_unconstrained(N * n_segments_, N * n_segments_);
    +     329        1872 :   cost_unconstrained.setFromTriplets(cost_unconstrained_triplets.begin(), cost_unconstrained_triplets.end());
    +     330             : 
    +     331             :   // [1]: R = C^T * H * C. C: constraint_reodering_ ; H: cost_unconstrained,
    +     332             :   // assembled from the block-H above.
    +     333        1872 :   *R = constraint_reordering_.transpose() * cost_unconstrained * constraint_reordering_;
    +     334        1872 : }
    +     335             : 
    +     336             : //}
    +     337             : 
    +     338             : /* solveLinear() //{ */
    +     339             : 
    +     340             : template <int _N>
    +     341        1872 : bool PolynomialOptimization<_N>::solveLinear() {
    +     342        1872 :   CHECK(derivative_to_optimize_ >= 0 && derivative_to_optimize_ <= kHighestDerivativeToOptimize);
    +     343             :   // Catch the fully constrained case:
    +     344        1872 :   if (n_free_constraints_ == 0) {
    +     345           0 :     DLOG(WARNING) << "No free constraints set in the vertices. Polynomial can "
    +     346             :                      "not be optimized. Outputting fully constrained polynomial.";
    +     347           0 :     updateSegmentsFromCompactConstraints();
    +     348           0 :     return true;
    +     349             :   }
    +     350             : 
    +     351             :   // TODO(acmarkus): figure out if sparse becomes less efficient for small
    +     352             :   // problems, and switch back to dense in case.
    +     353             : 
    +     354             :   // Compute cost matrix for the unconstrained optimization problem.
    +     355             :   // Block-wise H = A^{-T}QA^{-1} according to [1]
    +     356        3744 :   Eigen::SparseMatrix<double> R;
    +     357        1872 :   constructR(&R);
    +     358             : 
    +     359             :   // Extract block matrices and prepare solver.
    +     360        3744 :   Eigen::SparseMatrix<double> Rpf = R.block(n_fixed_constraints_, 0, n_free_constraints_, n_fixed_constraints_);
    +     361        3744 :   Eigen::SparseMatrix<double> Rpp = R.block(n_fixed_constraints_, n_fixed_constraints_, n_free_constraints_, n_free_constraints_);
    +     362        1872 :   Eigen::SparseQR<Eigen::SparseMatrix<double>, Eigen::COLAMDOrdering<int>> solver;
    +     363        1872 :   solver.compute(Rpp);
    +     364             : 
    +     365             :   // Compute dp_opt for every dimension.
    +     366        9360 :   for (size_t dimension_idx = 0; dimension_idx < dimension_; ++dimension_idx) {
    +     367        7488 :     Eigen::VectorXd df                       = -Rpf * fixed_constraints_compact_[dimension_idx];  // Rpf = Rfp^T
    +     368        7488 :     free_constraints_compact_[dimension_idx] = solver.solve(df);                                  // dp = -Rpp^-1 * Rpf * df
    +     369             :   }
    +     370             : 
    +     371        1872 :   updateSegmentsFromCompactConstraints();
    +     372        1872 :   return true;
    +     373             : }
    +     374             : 
    +     375             : //}
    +     376             : 
    +     377             : /* printReorderingMatrix() //{ */
    +     378             : 
    +     379             : template <int _N>
    +     380             : void PolynomialOptimization<_N>::printReorderingMatrix(std::ostream& stream) const {
    +     381             :   stream << "Mapping matrix:\n" << constraint_reordering_ << std::endl;
    +     382             : }
    +     383             : 
    +     384             : //}
    +     385             : 
    +     386             : /* computeSegmentMaximumMagnitudeCandidates() //{ */
    +     387             : 
    +     388             : template <int _N>
    +     389             : template <int Derivative>
    +     390             : bool PolynomialOptimization<_N>::computeSegmentMaximumMagnitudeCandidates(const Segment& segment, double t_start, double t_stop,
    +     391             :                                                                           std::vector<double>* candidates) {
    +     392             :   return computeSegmentMaximumMagnitudeCandidates(Derivative, segment, t_start, t_stop, candidates);
    +     393             : }
    +     394             : 
    +     395             : //}
    +     396             : 
    +     397             : /* computeSegmentMaximumMagnitudeCandidates() //{ */
    +     398             : 
    +     399             : template <int _N>
    +     400           0 : bool PolynomialOptimization<_N>::computeSegmentMaximumMagnitudeCandidates(int derivative, const Segment& segment, double t_start, double t_stop,
    +     401             :                                                                           std::vector<double>* candidates) {
    +     402           0 :   CHECK(candidates);
    +     403           0 :   CHECK(N - derivative - 1 > 0) << "N-Derivative-1 has to be greater 0";
    +     404             : 
    +     405             :   // Use the implementation of this in the segment (template-free) as it's
    +     406             :   // actually faster.
    +     407           0 :   std::vector<int> dimensions(segment.D());
    +     408           0 :   std::iota(dimensions.begin(), dimensions.end(), 0);
    +     409           0 :   return segment.computeMinMaxMagnitudeCandidateTimes(derivative, t_start, t_stop, dimensions, candidates);
    +     410             : }
    +     411             : 
    +     412             : //}
    +     413             : 
    +     414             : /* computeSegmentMaximumMagnitudeCandidatesBySampling() //{ */
    +     415             : 
    +     416             : template <int _N>
    +     417             : template <int Derivative>
    +     418             : void PolynomialOptimization<_N>::
    +     419             :     computeSegmentMaximumMagnitudeCandidatesBySampling(
    +     420             :         const Segment& segment, double t_start, double t_stop, double dt,
    +     421             :         std::vector<double>* candidates) {
    +     422             :   CHECK_NOTNULL(candidates);
    +     423             :   // Start is candidate.
    +     424             :   candidates->push_back(t_start);
    +     425             : 
    +     426             :   // Determine initial direction from t_start to t_start + dt.
    +     427             :   auto t_old = t_start + dt;
    +     428             :   auto value_new = segment.evaluate(t_old, Derivative);
    +     429             :   auto value_old = segment.evaluate(t_start, Derivative);
    +     430             :   auto direction = value_new.norm() - value_old.norm();
    +     431             : 
    +     432             :   // Continue with direction from t_start + dt to t_start + 2 dt until t_stop.
    +     433             :   bool last_sample = false;
    +     434             :   for (double t = t_start + dt + dt; t <= t_stop; t += dt) {
    +     435             :     // Update direction.
    +     436             :     value_old = value_new;
    +     437             :     value_new = segment.evaluate(t, Derivative);
    +     438             :     auto direction_new = value_new.norm() - value_old.norm();
    +     439             : 
    +     440             :     if (std::signbit(direction) != std::signbit(direction_new)) {
    +     441             :       auto value_deriv = segment.evaluate(t_old, Derivative + 1);
    +     442             :       if (value_deriv.norm() < 1e-2) {
    +     443             :         candidates->push_back(t_old);  // extremum was at last dt
    +     444             :       }
    +     445             :     }
    +     446             : 
    +     447             :     direction = direction_new;
    +     448             :     t_old = t;
    +     449             : 
    +     450             :     // Check last sample before t_stop.
    +     451             :     if ((t + dt) > t_stop && !last_sample) {
    +     452             :       t = t_stop - dt;
    +     453             :       last_sample = true;
    +     454             :     }
    +     455             :   }
    +     456             : 
    +     457             :   // End is candidates.
    +     458             :   if (candidates->back() != t_stop) {
    +     459             :     candidates->push_back(t_stop);
    +     460             :   }
    +     461             : }
    +     462             : 
    +     463             : //}
    +     464             : 
    +     465             : /* computeMaximumOfMagnitude() //{ */
    +     466             : 
    +     467             : template <int _N>
    +     468             : template <int Derivative>
    +     469             : Extremum PolynomialOptimization<_N>::computeMaximumOfMagnitude(std::vector<Extremum>* candidates) const {
    +     470             :   return computeMaximumOfMagnitude(Derivative, candidates);
    +     471             : }
    +     472             : 
    +     473             : //}
    +     474             : 
    +     475             : /* computeMaximumOfMagnitude() //{ */
    +     476             : 
    +     477             : template <int _N>
    +     478           0 : Extremum PolynomialOptimization<_N>::computeMaximumOfMagnitude(int derivative, std::vector<Extremum>* candidates) const {
    +     479           0 :   if (candidates != nullptr)
    +     480           0 :     candidates->clear();
    +     481             : 
    +     482           0 :   int      segment_idx = 0;
    +     483           0 :   Extremum extremum;
    +     484           0 :   for (const Segment& s : segments_) {
    +     485           0 :     std::vector<double> extrema_times;
    +     486           0 :     extrema_times.reserve(N - 1);
    +     487             :     // Add the beginning as well. Call below appends its extrema.
    +     488           0 :     extrema_times.push_back(0.0);
    +     489           0 :     computeSegmentMaximumMagnitudeCandidates(derivative, s, 0.0, s.getTime(), &extrema_times);
    +     490             : 
    +     491           0 :     for (double t : extrema_times) {
    +     492           0 :       const Extremum candidate(t, s.evaluate(t, derivative).norm(), segment_idx);
    +     493           0 :       if (extremum < candidate)
    +     494           0 :         extremum = candidate;
    +     495           0 :       if (candidates != nullptr)
    +     496           0 :         candidates->emplace_back(candidate);
    +     497             :     }
    +     498           0 :     ++segment_idx;
    +     499             :   }
    +     500             :   // Check last time at last segment.
    +     501           0 :   const Extremum candidate(segments_.back().getTime(), segments_.back().evaluate(segments_.back().getTime(), derivative).norm(), n_segments_ - 1);
    +     502           0 :   if (extremum < candidate)
    +     503           0 :     extremum = candidate;
    +     504           0 :   if (candidates != nullptr)
    +     505           0 :     candidates->emplace_back(candidate);
    +     506             : 
    +     507           0 :   return extremum;
    +     508             : }
    +     509             : 
    +     510             : //}
    +     511             : 
    +     512             : /* setFreeConstraints() //{ */
    +     513             : 
    +     514             : template <int _N>
    +     515           0 : void PolynomialOptimization<_N>::setFreeConstraints(const std::vector<Eigen::VectorXd>& free_constraints) {
    +     516           0 :   CHECK(free_constraints.size() == dimension_);
    +     517           0 :   for (const Eigen::VectorXd& v : free_constraints)
    +     518           0 :     CHECK(static_cast<size_t>(v.size()) == n_free_constraints_);
    +     519             : 
    +     520           0 :   free_constraints_compact_ = free_constraints;
    +     521           0 :   updateSegmentsFromCompactConstraints();
    +     522           0 : }
    +     523             : 
    +     524             : //}
    +     525             : 
    +     526             : /* getAInverse() //{ */
    +     527             : 
    +     528             : template <int _N>
    +     529             : void PolynomialOptimization<_N>::getAInverse(Eigen::MatrixXd* A_inv) const {
    +     530             :   CHECK_NOTNULL(A_inv);
    +     531             : 
    +     532             :   A_inv->resize(N * n_segments_, N * n_segments_);
    +     533             :   A_inv->setZero();
    +     534             : 
    +     535             :   for (size_t i = 0; i < n_segments_; ++i) {
    +     536             :     (*A_inv).block<N, N>(N * i, N * i) = inverse_mapping_matrices_[i];
    +     537             :   }
    +     538             : }
    +     539             : 
    +     540             : //}
    +     541             : 
    +     542             : /* getM() //{ */
    +     543             : 
    +     544             : template <int _N>
    +     545             : void PolynomialOptimization<_N>::getM(Eigen::MatrixXd* M) const {
    +     546             :   CHECK_NOTNULL(M);
    +     547             :   *M = constraint_reordering_;
    +     548             : }
    +     549             : 
    +     550             : //}
    +     551             : 
    +     552             : /* getR() //{ */
    +     553             : 
    +     554             : template <int _N>
    +     555             : void PolynomialOptimization<_N>::getR(Eigen::MatrixXd* R) const {
    +     556             :   CHECK_NOTNULL(R);
    +     557             : 
    +     558             :   Eigen::SparseMatrix<double> R_sparse;
    +     559             :   constructR(&R_sparse);
    +     560             : 
    +     561             :   *R = R_sparse;
    +     562             : }
    +     563             : 
    +     564             : //}
    +     565             : 
    +     566             : /* getA() //{ */
    +     567             : 
    +     568             : template <int _N>
    +     569             : void PolynomialOptimization<_N>::getA(Eigen::MatrixXd* A) const {
    +     570             :   CHECK_NOTNULL(A);
    +     571             :   A->resize(N * n_segments_, N * n_segments_);
    +     572             :   A->setZero();
    +     573             : 
    +     574             :   // Create a mapping matrix per segment and append them together.
    +     575             :   for (size_t i = 0; i < n_segments_; ++i) {
    +     576             :     const double segment_time = segment_times_[i];
    +     577             :     CHECK_GT(segment_time, 0) << "Segment times need to be greater than zero";
    +     578             : 
    +     579             :     SquareMatrix A_segment;
    +     580             :     setupMappingMatrix(segment_time, &A_segment);
    +     581             : 
    +     582             :     (*A).block<N, N>(N * i, N * i) = A_segment;
    +     583             :   }
    +     584             : }
    +     585             : 
    +     586             : //}
    +     587             : 
    +     588             : /* getMpinv() //{ */
    +     589             : 
    +     590             : template <int _N>
    +     591             : void PolynomialOptimization<_N>::getMpinv(Eigen::MatrixXd* M_pinv) const {
    +     592             :   CHECK_NOTNULL(M_pinv);
    +     593             : 
    +     594             :   // Pseudoinverse implementation by @SebastianInd.
    +     595             :   *M_pinv = constraint_reordering_.transpose();
    +     596             :   for (int M_row = 0; M_row < M_pinv->rows(); M_row++) {
    +     597             :     M_pinv->row(M_row) = M_pinv->row(M_row) / M_pinv->row(M_row).sum();
    +     598             :   }
    +     599             : }
    +     600             : 
    +     601             : //}
    +     602             : 
    +     603             : /* computeQuadraticCostJacobian() //{ */
    +     604             : 
    +     605             : template <int _N>
    +     606       18269 : void PolynomialOptimization<_N>::computeQuadraticCostJacobian(int derivative, double t, SquareMatrix* cost_jacobian) {
    +     607       18269 :   CHECK_LT(derivative, N);
    +     608             : 
    +     609       18269 :   cost_jacobian->setZero();
    +     610      164421 :   for (int col = 0; col < N - derivative; col++) {
    +     611     1315370 :     for (int row = 0; row < N - derivative; row++) {
    +     612     1169220 :       double exponent = (N - 1 - derivative) * 2 + 1 - row - col;
    +     613             : 
    +     614     1169220 :       (*cost_jacobian)(N - 1 - row, N - 1 - col) =
    +     615     1169220 :           Polynomial::base_coefficients_(derivative, N - 1 - row) * Polynomial::base_coefficients_(derivative, N - 1 - col) * pow(t, exponent) * 2.0 / exponent;
    +     616             :     }
    +     617             :   }
    +     618       18269 : }
    +     619             : 
    +     620             : //}
    +     621             : 
    +     622             : }  // namespace eth_trajectory_generation
    +     623             : 
    +     624             : #endif  // eth_trajectory_generation_IMPL_POLYNOMIAL_OPTIMIZATION_LINEAR_IMPL_H_
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    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimizeTime()0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::objectiveFunctionTime(std::vector<double, std::allocator<double> > const&, std::vector<double, std::allocator<double> >&, void*)0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::computeTotalTrajectoryTime(std::vector<double, std::allocator<double> > const&)0
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    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::objectiveFunctionTimeAndConstraints(std::vector<double, std::allocator<double> > const&, std::vector<double, std::allocator<double> >&, void*)0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::setFreeEndpointDerivativeHardConstraints(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, std::vector<double, std::allocator<double> >*, std::vector<double, std::allocator<double> >*)0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::evaluateMaximumMagnitudeAsSoftConstraint(std::vector<std::shared_ptr<eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::ConstraintData>, std::allocator<std::shared_ptr<eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::ConstraintData> > > const&, double, double) const0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimizeTimeMellingerOuterLoop()::{lambda(double)#2}::operator()(double) const0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimizeTimeMellingerOuterLoop()::{lambda(double)#3}::operator()(double) const0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimizeTimeMellingerOuterLoop()::{lambda(double)#1}::operator()(double) const0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::setupFromVertices(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, std::vector<double, std::allocator<double> > const&, int)15
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimizeTimeMellingerOuterLoop()15
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::scaleSegmentTimesWithViolation()15
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimize()15
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::PolynomialOptimizationNonLinear(unsigned long, eth_trajectory_generation::NonlinearOptimizationParameters const&)15
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::addMaximumMagnitudeConstraint(int, int, double)180
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::getCostAndGradientMellinger(std::vector<double, std::allocator<double> >*)208
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    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimizeTime()0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::setupFromVertices(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, std::vector<double, std::allocator<double> > const&, int)15
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::objectiveFunctionTime(std::vector<double, std::allocator<double> > const&, std::vector<double, std::allocator<double> >&, void*)0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::computeTotalTrajectoryTime(std::vector<double, std::allocator<double> > const&)0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::getCostAndGradientMellinger(std::vector<double, std::allocator<double> >*)208
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::addMaximumMagnitudeConstraint(int, int, double)180
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimizeTimeAndFreeConstraints()0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimizeTimeMellingerOuterLoop()15
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::scaleSegmentTimesWithViolation()15
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::evaluateMaximumMagnitudeConstraint(std::vector<double, std::allocator<double> > const&, std::vector<double, std::allocator<double> >&, void*)0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::objectiveFunctionTimeAndConstraints(std::vector<double, std::allocator<double> > const&, std::vector<double, std::allocator<double> >&, void*)0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::objectiveFunctionTimeMellingerOuterLoop(std::vector<double, std::allocator<double> > const&, std::vector<double, std::allocator<double> >&, void*)208
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::setFreeEndpointDerivativeHardConstraints(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, std::vector<double, std::allocator<double> >*, std::vector<double, std::allocator<double> >*)0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimize()15
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::PolynomialOptimizationNonLinear(unsigned long, eth_trajectory_generation::NonlinearOptimizationParameters const&)15
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::evaluateMaximumMagnitudeAsSoftConstraint(std::vector<std::shared_ptr<eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::ConstraintData>, std::allocator<std::shared_ptr<eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::ConstraintData> > > const&, double, double) const0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimizeTimeMellingerOuterLoop()::{lambda(double)#2}::operator()(double) const0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimizeTimeMellingerOuterLoop()::{lambda(double)#3}::operator()(double) const0
    eth_trajectory_generation::PolynomialOptimizationNonLinear<10>::optimizeTimeMellingerOuterLoop()::{lambda(double)#1}::operator()(double) const0
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2015, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * You can contact the author at <markus dot achtelik at mavt dot ethz dot ch>
    +       4             :  *
    +       5             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       6             :  * you may not use this file except in compliance with the License.
    +       7             :  * You may obtain a copy of the License at
    +       8             :  *
    +       9             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      10             :  *
    +      11             :  * Unless required by applicable law or agreed to in writing, software
    +      12             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      13             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      14             :  * See the License for the specific language governing permissions and
    +      15             :  * limitations under the License.
    +      16             :  */
    +      17             : 
    +      18             : #ifndef ETH_TRAJECTORY_GENERATION_IMPL_POLYNOMIAL_OPTIMIZATION_NONLINEAR_IMPL_H_
    +      19             : #define ETH_TRAJECTORY_GENERATION_IMPL_POLYNOMIAL_OPTIMIZATION_NONLINEAR_IMPL_H_
    +      20             : 
    +      21             : #include <chrono>
    +      22             : #include <numeric>
    +      23             : 
    +      24             : #include <eth_trajectory_generation/polynomial_optimization_nonlinear.h>
    +      25             : #include <eth_trajectory_generation/timing.h>
    +      26             : 
    +      27             : namespace eth_trajectory_generation
    +      28             : {
    +      29             : 
    +      30             : inline std::ostream& operator<<(std::ostream& stream, const OptimizationInfo& val) {
    +      31             :   stream << "--- optimization info ---" << std::endl;
    +      32             :   stream << "  optimization time:     " << val.optimization_time << std::endl;
    +      33             :   stream << "  n_iterations:          " << val.n_iterations << std::endl;
    +      34             :   stream << "  stopping reason:       " << nlopt::returnValueToString(val.stopping_reason) << std::endl;
    +      35             :   stream << "  cost trajectory:       " << val.cost_trajectory << std::endl;
    +      36             :   stream << "  cost time:             " << val.cost_time << std::endl;
    +      37             :   stream << "  cost soft constraints: " << val.cost_soft_constraints << std::endl;
    +      38             :   stream << "  maxima: " << std::endl;
    +      39             :   for (const std::pair<int, Extremum>& m : val.maxima) {
    +      40             :     stream << "    " << positionDerivativeToString(m.first) << ": " << m.second.value << " in segment " << m.second.segment_idx << " and segment time "
    +      41             :            << m.second.time << std::endl;
    +      42             :   }
    +      43             :   return stream;
    +      44             : }
    +      45             : 
    +      46             : template <int _N>
    +      47          15 : PolynomialOptimizationNonLinear<_N>::PolynomialOptimizationNonLinear(size_t dimension, const NonlinearOptimizationParameters& parameters)
    +      48          15 :     : poly_opt_(dimension), optimization_parameters_(parameters) {
    +      49          15 : }
    +      50             : 
    +      51             : template <int _N>
    +      52          15 : bool PolynomialOptimizationNonLinear<_N>::setupFromVertices(const Vertex::Vector& vertices, const std::vector<double>& segment_times,
    +      53             :                                                             int derivative_to_optimize) {
    +      54          15 :   bool ret = poly_opt_.setupFromVertices(vertices, segment_times, derivative_to_optimize);
    +      55             : 
    +      56             :   size_t n_optimization_parameters;
    +      57          15 :   switch (optimization_parameters_.time_alloc_method) {
    +      58          15 :     case NonlinearOptimizationParameters::kSquaredTime:
    +      59             :     case NonlinearOptimizationParameters::kRichterTime:
    +      60             :     case NonlinearOptimizationParameters::kMellingerOuterLoop:
    +      61          15 :       n_optimization_parameters = segment_times.size();
    +      62          15 :       break;
    +      63           0 :     default:
    +      64           0 :       n_optimization_parameters = segment_times.size() + poly_opt_.getNumberFreeConstraints() * poly_opt_.getDimension();
    +      65           0 :       break;
    +      66             :   }
    +      67             : 
    +      68          15 :   nlopt_.reset(new nlopt::opt(optimization_parameters_.algorithm, n_optimization_parameters));
    +      69          15 :   nlopt_->set_ftol_rel(optimization_parameters_.f_rel);
    +      70          15 :   nlopt_->set_ftol_abs(optimization_parameters_.f_abs);
    +      71          15 :   nlopt_->set_xtol_rel(optimization_parameters_.x_rel);
    +      72          15 :   nlopt_->set_xtol_abs(optimization_parameters_.x_abs);
    +      73          15 :   nlopt_->set_maxeval(optimization_parameters_.max_iterations);
    +      74          15 :   nlopt_->set_maxtime(optimization_parameters_.max_time);
    +      75             : 
    +      76          15 :   if (optimization_parameters_.random_seed < 0)
    +      77           0 :     nlopt_srand_time();
    +      78             :   else
    +      79          15 :     nlopt_srand(optimization_parameters_.random_seed);
    +      80             : 
    +      81          15 :   return ret;
    +      82             : }
    +      83             : 
    +      84             : template <int _N>
    +      85             : bool PolynomialOptimizationNonLinear<_N>::solveLinear() {
    +      86             :   return poly_opt_.solveLinear();
    +      87             : }
    +      88             : 
    +      89             : template <int _N>
    +      90          15 : int PolynomialOptimizationNonLinear<_N>::optimize() {
    +      91          15 :   optimization_info_ = OptimizationInfo();
    +      92          15 :   int result         = nlopt::FAILURE;
    +      93             : 
    +      94          15 :   const std::chrono::high_resolution_clock::time_point t_start = std::chrono::high_resolution_clock::now();
    +      95             : 
    +      96          15 :   switch (optimization_parameters_.time_alloc_method) {
    +      97           0 :     case NonlinearOptimizationParameters::kSquaredTime:
    +      98             :     case NonlinearOptimizationParameters::kRichterTime:
    +      99           0 :       result = optimizeTime();
    +     100           0 :       break;
    +     101           0 :     case NonlinearOptimizationParameters::kSquaredTimeAndConstraints:
    +     102             :     case NonlinearOptimizationParameters::kRichterTimeAndConstraints:
    +     103           0 :       result = optimizeTimeAndFreeConstraints();
    +     104           0 :       break;
    +     105          15 :     case NonlinearOptimizationParameters::kMellingerOuterLoop:
    +     106          15 :       result = optimizeTimeMellingerOuterLoop();
    +     107          15 :       break;
    +     108           0 :     default:
    +     109           0 :       break;
    +     110             :   }
    +     111             : 
    +     112          15 :   const std::chrono::high_resolution_clock::time_point t_stop = std::chrono::high_resolution_clock::now();
    +     113          15 :   optimization_info_.optimization_time                        = std::chrono::duration_cast<std::chrono::duration<double>>(t_stop - t_start).count();
    +     114             : 
    +     115          15 :   optimization_info_.stopping_reason = result;
    +     116             : 
    +     117          15 :   return result;
    +     118             : }
    +     119             : 
    +     120             : template <int _N>
    +     121           0 : int PolynomialOptimizationNonLinear<_N>::optimizeTime() {
    +     122           0 :   std::vector<double> initial_step, segment_times;
    +     123             : 
    +     124           0 :   poly_opt_.getSegmentTimes(&segment_times);
    +     125           0 :   const size_t n_segments = segment_times.size();
    +     126             : 
    +     127           0 :   initial_step.reserve(n_segments);
    +     128           0 :   for (double t : segment_times) {
    +     129           0 :     initial_step.push_back(optimization_parameters_.initial_stepsize_rel * t);
    +     130             :   }
    +     131             : 
    +     132             :   try {
    +     133             :     // Set a lower bound on the segment time per segment to avoid numerical
    +     134             :     // issues.
    +     135           0 :     nlopt_->set_initial_step(initial_step);
    +     136           0 :     nlopt_->set_upper_bounds(std::numeric_limits<double>::max());
    +     137           0 :     nlopt_->set_lower_bounds(kOptimizationTimeLowerBound);
    +     138           0 :     nlopt_->set_min_objective(&PolynomialOptimizationNonLinear<N>::objectiveFunctionTime, this);
    +     139             :   }
    +     140           0 :   catch (std::exception& e) {
    +     141           0 :     LOG(ERROR) << "error while setting up nlopt: " << e.what() << std::endl;
    +     142           0 :     return nlopt::FAILURE;
    +     143             :   }
    +     144             : 
    +     145           0 :   double final_cost = std::numeric_limits<double>::max();
    +     146             :   int    result;
    +     147             : 
    +     148             :   try {
    +     149           0 :     result = nlopt_->optimize(segment_times, final_cost);
    +     150             :   }
    +     151           0 :   catch (std::exception& e) {
    +     152           0 :     LOG(ERROR) << "error while running nlopt: " << e.what() << std::endl;
    +     153           0 :     return nlopt::FAILURE;
    +     154             :   }
    +     155             : 
    +     156           0 :   return result;
    +     157             : }
    +     158             : 
    +     159             : template <int _N>
    +     160          15 : int PolynomialOptimizationNonLinear<_N>::optimizeTimeMellingerOuterLoop() {
    +     161          30 :   std::vector<double> segment_times;
    +     162          15 :   poly_opt_.getSegmentTimes(&segment_times);
    +     163             : 
    +     164             :   // Save original segment times
    +     165          30 :   std::vector<double> original_segment_times = segment_times;
    +     166             : 
    +     167          15 :   if (optimization_parameters_.print_debug_info_time_allocation) {
    +     168           0 :     std::cout << "Segment times: ";
    +     169           0 :     for (const double seg_time : segment_times) {
    +     170           0 :       std::cout << seg_time << " ";
    +     171             :     }
    +     172           0 :     std::cout << std::endl;
    +     173             :   }
    +     174             : 
    +     175             :   try {
    +     176             :     // Set a lower bound on the segment time per segment to avoid numerical
    +     177             :     // issues.
    +     178          15 :     nlopt_->set_upper_bounds(std::numeric_limits<double>::max());
    +     179          15 :     nlopt_->set_lower_bounds(kOptimizationTimeLowerBound);
    +     180          15 :     nlopt_->set_min_objective(&PolynomialOptimizationNonLinear<N>::objectiveFunctionTimeMellingerOuterLoop, this);
    +     181             :   }
    +     182           0 :   catch (std::exception& e) {
    +     183           0 :     LOG(ERROR) << "error while setting up nlopt: " << e.what() << std::endl;
    +     184           0 :     return nlopt::FAILURE;
    +     185             :   }
    +     186             : 
    +     187          15 :   double final_cost = std::numeric_limits<double>::max();
    +     188          15 :   int    result     = nlopt::FAILURE;
    +     189             : 
    +     190             :   try {
    +     191          15 :     result = nlopt_->optimize(segment_times, final_cost);
    +     192             :   }
    +     193          12 :   catch (std::exception& e) {
    +     194           6 :     LOG(ERROR) << "error while running nlopt: " << e.what() << ". This likely means the optimization aborted early." << std::endl;
    +     195           6 :     if (final_cost == std::numeric_limits<double>::max()) {
    +     196           0 :       return nlopt::FAILURE;
    +     197             :     }
    +     198             : 
    +     199           6 :     if (optimization_parameters_.print_debug_info_time_allocation) {
    +     200           0 :       std::cout << "Segment times after opt: ";
    +     201           0 :       for (const double seg_time : segment_times) {
    +     202           0 :         std::cout << seg_time << " ";
    +     203             :       }
    +     204           0 :       std::cout << std::endl;
    +     205           0 :       std::cout << "Final cost: " << final_cost << std::endl;
    +     206           0 :       std::cout << "Nlopt result: " << result << std::endl;
    +     207             :     }
    +     208             :   }
    +     209             : 
    +     210             :   // Scaling of segment times
    +     211          30 :   std::vector<double> relative_segment_times;
    +     212          15 :   poly_opt_.getSegmentTimes(&relative_segment_times);
    +     213          15 :   scaleSegmentTimesWithViolation();
    +     214          15 :   std::vector<double> scaled_segment_times;
    +     215          15 :   poly_opt_.getSegmentTimes(&scaled_segment_times);
    +     216             : 
    +     217             :   // Print all parameter after scaling
    +     218          15 :   if (optimization_parameters_.print_debug_info_time_allocation) {
    +     219           0 :     std::cout << "[MEL          Original]: ";
    +     220           0 :     std::for_each(original_segment_times.cbegin(), original_segment_times.cend(), [](double c) { std::cout << c << " "; });
    +     221           0 :     std::cout << std::endl;
    +     222           0 :     std::cout << "[MEL RELATIVE Solution]: ";
    +     223           0 :     std::for_each(relative_segment_times.cbegin(), relative_segment_times.cend(), [](double c) { std::cout << c << " "; });
    +     224           0 :     std::cout << std::endl;
    +     225           0 :     std::cout << "[MEL          Solution]: ";
    +     226           0 :     std::for_each(scaled_segment_times.cbegin(), scaled_segment_times.cend(), [](double c) { std::cout << c << " "; });
    +     227           0 :     std::cout << std::endl;
    +     228           0 :     std::cout << "[MEL   Trajectory Time] Before: " << std::accumulate(original_segment_times.begin(), original_segment_times.end(), 0.0)
    +     229           0 :               << " | After Rel Change: " << std::accumulate(relative_segment_times.begin(), relative_segment_times.end(), 0.0)
    +     230           0 :               << " | After Scaling: " << std::accumulate(scaled_segment_times.begin(), scaled_segment_times.end(), 0.0) << std::endl;
    +     231             :   }
    +     232             : 
    +     233          15 :   return result;
    +     234             : }
    +     235             : 
    +     236             : template <int _N>
    +     237             : double PolynomialOptimizationNonLinear<_N>::getCost() const {
    +     238             :   return poly_opt_.computeCost();
    +     239             : }
    +     240             : 
    +     241             : template <int _N>
    +     242             : double PolynomialOptimizationNonLinear<_N>::getTotalCostWithSoftConstraints() const {
    +     243             :   double cost_trajectory = poly_opt_.computeCost();
    +     244             : 
    +     245             :   // Use consistent cost metrics regardless of method set, to compare between
    +     246             :   // methods.
    +     247             :   std::vector<double> segment_times;
    +     248             :   poly_opt_.getSegmentTimes(&segment_times);
    +     249             :   double total_time       = std::accumulate(segment_times.begin(), segment_times.end(), 0.0);
    +     250             :   double cost_time        = total_time * total_time * optimization_parameters_.time_penalty;
    +     251             :   double cost_constraints = evaluateMaximumMagnitudeAsSoftConstraint(inequality_constraints_, optimization_parameters_.soft_constraint_weight, 1e9);
    +     252             : 
    +     253             :   return cost_trajectory + cost_time + cost_constraints;
    +     254             : }
    +     255             : 
    +     256             : template <int _N>
    +     257         208 : double PolynomialOptimizationNonLinear<_N>::getCostAndGradientMellinger(std::vector<double>* gradients) {
    +     258             :   // Weighting terms for different costs
    +     259             :   // Retrieve the current segment times
    +     260         416 :   std::vector<double> segment_times;
    +     261         208 :   poly_opt_.getSegmentTimes(&segment_times);
    +     262         208 :   const double J_d = poly_opt_.computeCost();
    +     263             : 
    +     264         208 :   if (poly_opt_.getNumberSegments() == 1) {
    +     265           0 :     if (gradients != NULL) {
    +     266           0 :       gradients->clear();
    +     267           0 :       gradients->resize(poly_opt_.getNumberSegments(), 0.0);
    +     268             :     }
    +     269             : 
    +     270           0 :     return J_d;
    +     271             :   }
    +     272             : 
    +     273         208 :   if (gradients != NULL) {
    +     274         208 :     const size_t n_segments = poly_opt_.getNumberSegments();
    +     275             : 
    +     276         208 :     gradients->clear();
    +     277         208 :     gradients->resize(n_segments);
    +     278             : 
    +     279             :     // Initialize changed segment times for numerical derivative
    +     280         416 :     std::vector<double> segment_times_bigger(n_segments);
    +     281         208 :     const double        increment_time = 0.1;
    +     282        1649 :     for (size_t n = 0; n < n_segments; ++n) {
    +     283             :       // Now the same with an increased segment time
    +     284             :       // Calculate cost with higher segment time
    +     285        1441 :       segment_times_bigger = segment_times;
    +     286             :       // Deduct h*(-1/(m-2)) according to paper Mellinger "Minimum snap
    +     287             :       // trajectory generation and control for quadrotors"
    +     288        1441 :       double const_traj_time_corr = increment_time / (n_segments - 1.0);
    +     289       16512 :       for (size_t i = 0; i < segment_times_bigger.size(); ++i) {
    +     290       15071 :         if (i == n) {
    +     291        1441 :           segment_times_bigger[i] += increment_time;
    +     292             :         } else {
    +     293       13630 :           segment_times_bigger[i] -= const_traj_time_corr;
    +     294             :         }
    +     295             :       }
    +     296             : 
    +     297             :       // TODO: add case if segment_time is at threshold 0.1s
    +     298             :       // 1) How many segments > 0.1s
    +     299             :       // 2) trajectory time correction only on those
    +     300             :       // for (int j = 0; j < segment_times_bigger.size(); ++j) {
    +     301             :       //   double thresh_corr = 0.0;
    +     302             :       //   if (segment_times_bigger[j] < 0.1) {
    +     303             :       //     thresh_corr = 0.1-segment_times_bigger[j];
    +     304             :       //   }
    +     305             :       // }
    +     306             : 
    +     307             :       // Check and make sure that segment times are >
    +     308             :       // kOptimizationTimeLowerBound
    +     309       16512 :       for (double& t : segment_times_bigger) {
    +     310       15071 :         t = std::max(kOptimizationTimeLowerBound, t);
    +     311             :       }
    +     312             : 
    +     313             :       // Update the segment times. This changes the polynomial coefficients.
    +     314        1441 :       poly_opt_.updateSegmentTimes(segment_times_bigger);
    +     315        1441 :       poly_opt_.solveLinear();
    +     316             : 
    +     317             :       // Calculate cost and gradient with new segment time
    +     318        1441 :       const double J_d_bigger = poly_opt_.computeCost();
    +     319        1441 :       const double dJd_dt     = (J_d_bigger - J_d) / increment_time;
    +     320             : 
    +     321             :       // Calculate the gradient
    +     322        1441 :       gradients->at(n) = dJd_dt;
    +     323             :     }
    +     324             : 
    +     325             :     // Set again the original segment times from before calculating the
    +     326             :     // numerical gradient
    +     327         208 :     poly_opt_.updateSegmentTimes(segment_times);
    +     328         208 :     poly_opt_.solveLinear();
    +     329             :   }
    +     330             : 
    +     331             :   // Compute cost without gradient
    +     332         208 :   return J_d;
    +     333             : }
    +     334             : 
    +     335             : template <int _N>
    +     336          15 : void PolynomialOptimizationNonLinear<_N>::scaleSegmentTimesWithViolation() {
    +     337             : 
    +     338             :   // Get trajectory
    +     339          30 :   Trajectory traj;
    +     340          15 :   poly_opt_.getTrajectory(&traj);
    +     341             : 
    +     342             :   // get constraints
    +     343          15 :   double v_max_horizontal = 0.0;
    +     344          15 :   double a_max_horizontal = 0.0;
    +     345          15 :   double j_max_horizontal = 0.0;
    +     346             : 
    +     347          15 :   double v_max_vertical = 0.0;
    +     348          15 :   double a_max_vertical = 0.0;
    +     349          15 :   double j_max_vertical = 0.0;
    +     350             : 
    +     351          15 :   double v_max_heading = 0.0;
    +     352          15 :   double a_max_heading = 0.0;
    +     353          15 :   double j_max_heading = 0.0;
    +     354             : 
    +     355         195 :   for (const auto& constraint : inequality_constraints_) {
    +     356         180 :     if (constraint->dimension <= 1) {
    +     357          90 :       if (constraint->derivative == derivative_order::VELOCITY) {
    +     358          30 :         v_max_horizontal = constraint->value;
    +     359          60 :       } else if (constraint->derivative == derivative_order::ACCELERATION) {
    +     360          30 :         a_max_horizontal = constraint->value;
    +     361          30 :       } else if (constraint->derivative == derivative_order::JERK) {
    +     362          30 :         j_max_horizontal = constraint->value;
    +     363             :       }
    +     364          90 :     } else if (constraint->dimension == 2) {
    +     365          45 :       if (constraint->derivative == derivative_order::VELOCITY) {
    +     366          15 :         v_max_vertical = constraint->value;
    +     367          30 :       } else if (constraint->derivative == derivative_order::ACCELERATION) {
    +     368          15 :         a_max_vertical = constraint->value;
    +     369          15 :       } else if (constraint->derivative == derivative_order::JERK) {
    +     370          15 :         j_max_vertical = constraint->value;
    +     371             :       }
    +     372          45 :     } else if (constraint->dimension == 3) {
    +     373          45 :       if (constraint->derivative == derivative_order::VELOCITY) {
    +     374          15 :         v_max_heading = constraint->value;
    +     375          30 :       } else if (constraint->derivative == derivative_order::ACCELERATION) {
    +     376          15 :         a_max_heading = constraint->value;
    +     377          15 :       } else if (constraint->derivative == derivative_order::JERK) {
    +     378          15 :         j_max_heading = constraint->value;
    +     379             :       }
    +     380             :     }
    +     381             :   }
    +     382             : 
    +     383          15 :   if (optimization_parameters_.print_debug_info_time_allocation) {
    +     384             : 
    +     385             :     double v_max_actual_horizontal, a_max_actual_horizontal, j_max_actual_horizontal;
    +     386           0 :     traj.computeMaxDerivativesHorizontal(&v_max_actual_horizontal, &a_max_actual_horizontal, &j_max_actual_horizontal);
    +     387           0 :     std::cout << "[Time Scaling] Beginning: v: max: " << v_max_actual_horizontal << " / " << v_max_horizontal << " a: max: " << a_max_actual_horizontal << " / "
    +     388           0 :               << a_max_horizontal << std::endl;
    +     389             : 
    +     390             :     double v_max_actual_vertical, a_max_actual_vertical, j_max_actual_vertical;
    +     391           0 :     traj.computeMaxDerivativesVertical(&v_max_actual_vertical, &a_max_actual_vertical, &j_max_actual_vertical);
    +     392           0 :     std::cout << "[Time Scaling] Beginning: v: max: " << v_max_actual_vertical << " / " << v_max_vertical << " a: max: " << a_max_actual_vertical << " / "
    +     393           0 :               << a_max_vertical << std::endl;
    +     394             : 
    +     395             :     double v_max_actual_heading, a_max_actual_heading, j_max_actual_heading;
    +     396           0 :     traj.computeMaxDerivativesHeading(&v_max_actual_heading, &a_max_actual_heading, &j_max_actual_heading);
    +     397           0 :     std::cout << "[Time Scaling] Beginning: v: max: " << v_max_actual_heading << " / " << v_max_heading << " a: max: " << a_max_actual_heading << " / "
    +     398           0 :               << a_max_heading << std::endl;
    +     399             :   }
    +     400             : 
    +     401             :   // Run the trajectory time scaling.
    +     402          15 :   traj.scaleSegmentTimesToMeetConstraints(v_max_horizontal, v_max_vertical, a_max_horizontal, a_max_vertical, j_max_horizontal, j_max_vertical, v_max_heading,
    +     403             :                                           a_max_heading, j_max_heading);
    +     404             : 
    +     405          30 :   std::vector<double> segment_times;
    +     406          15 :   segment_times = traj.getSegmentTimes();
    +     407          15 :   poly_opt_.updateSegmentTimes(segment_times);
    +     408          15 :   poly_opt_.solveLinear();
    +     409             : 
    +     410          15 :   if (optimization_parameters_.print_debug_info_time_allocation) {
    +     411             : 
    +     412             :     double v_max_actual_horizontal, a_max_actual_horizontal, j_max_actual_horizontal;
    +     413           0 :     traj.computeMaxDerivativesHorizontal(&v_max_actual_horizontal, &a_max_actual_horizontal, &j_max_actual_horizontal);
    +     414           0 :     std::cout << "[Time Scaling] End: v: max: " << v_max_actual_horizontal << " / " << v_max_horizontal << " a: max: " << a_max_actual_horizontal << " / "
    +     415           0 :               << a_max_horizontal << std::endl;
    +     416             : 
    +     417             :     double v_max_actual_vertical, a_max_actual_vertical, j_max_actual_vertical;
    +     418           0 :     traj.computeMaxDerivativesVertical(&v_max_actual_vertical, &a_max_actual_vertical, &j_max_actual_vertical);
    +     419           0 :     std::cout << "[Time Scaling] End: v: max: " << v_max_actual_vertical << " / " << v_max_vertical << " a: max: " << a_max_actual_vertical << " / "
    +     420           0 :               << a_max_vertical << std::endl;
    +     421             : 
    +     422             :     double v_max_actual_heading, a_max_actual_heading, j_max_actual_heading;
    +     423           0 :     traj.computeMaxDerivativesHeading(&v_max_actual_heading, &a_max_actual_heading, &j_max_actual_heading);
    +     424           0 :     std::cout << "[Time Scaling] End: v: max: " << v_max_actual_heading << " / " << v_max_heading << " a: max: " << a_max_actual_heading << " / "
    +     425           0 :               << a_max_heading << std::endl;
    +     426             :   }
    +     427          15 : }
    +     428             : 
    +     429             : template <int _N>
    +     430           0 : int PolynomialOptimizationNonLinear<_N>::optimizeTimeAndFreeConstraints() {
    +     431           0 :   std::vector<double> initial_step, initial_solution, segment_times, lower_bounds, upper_bounds;
    +     432             : 
    +     433           0 :   poly_opt_.getSegmentTimes(&segment_times);
    +     434           0 :   const size_t n_segments = segment_times.size();
    +     435             : 
    +     436             :   // compute initial solution
    +     437           0 :   poly_opt_.solveLinear();
    +     438           0 :   std::vector<Eigen::VectorXd> free_constraints;
    +     439           0 :   poly_opt_.getFreeConstraints(&free_constraints);
    +     440           0 :   if (free_constraints.size() == 0 || free_constraints.front().size() == 0) {
    +     441           0 :     LOG(WARNING) << "No free derivative variables, same as time-only optimization.";
    +     442             :   }
    +     443             : 
    +     444           0 :   const size_t n_optimization_variables = n_segments + free_constraints.size() * free_constraints.front().size();
    +     445             : 
    +     446           0 :   CHECK_GT(n_optimization_variables, 0u);
    +     447             : 
    +     448           0 :   initial_solution.reserve(n_optimization_variables);
    +     449           0 :   initial_step.reserve(n_optimization_variables);
    +     450           0 :   lower_bounds.reserve(n_optimization_variables);
    +     451           0 :   upper_bounds.reserve(n_optimization_variables);
    +     452             : 
    +     453             :   // copy all constraints into one vector:
    +     454           0 :   for (double t : segment_times) {
    +     455           0 :     initial_solution.push_back(t);
    +     456             :   }
    +     457             : 
    +     458           0 :   for (const Eigen::VectorXd& c : free_constraints) {
    +     459           0 :     for (int i = 0; i < c.size(); ++i) {
    +     460           0 :       initial_solution.push_back(c[i]);
    +     461             :     }
    +     462             :   }
    +     463             : 
    +     464             :   // Setup for getting bounds on the free endpoint derivatives
    +     465           0 :   std::vector<double> lower_bounds_free, upper_bounds_free;
    +     466           0 :   const size_t        n_optimization_variables_free = free_constraints.size() * free_constraints.front().size();
    +     467           0 :   lower_bounds_free.reserve(n_optimization_variables_free);
    +     468           0 :   upper_bounds_free.reserve(n_optimization_variables_free);
    +     469             : 
    +     470             :   // Get the lower and upper bounds constraints on the free endpoint
    +     471             :   // derivatives
    +     472           0 :   Vertex::Vector vertices;
    +     473           0 :   poly_opt_.getVertices(&vertices);
    +     474           0 :   setFreeEndpointDerivativeHardConstraints(vertices, &lower_bounds_free, &upper_bounds_free);
    +     475             : 
    +     476             :   // Set segment time constraints
    +     477           0 :   for (size_t l = 0; l < n_segments; ++l) {
    +     478           0 :     lower_bounds.push_back(kOptimizationTimeLowerBound);
    +     479           0 :     upper_bounds.push_back(std::numeric_limits<double>::max());
    +     480             :   }
    +     481             :   // Append free endpoint derivative constraints
    +     482           0 :   lower_bounds.insert(std::end(lower_bounds), std::begin(lower_bounds_free), std::end(lower_bounds_free));
    +     483           0 :   upper_bounds.insert(std::end(upper_bounds), std::begin(upper_bounds_free), std::end(upper_bounds_free));
    +     484             : 
    +     485           0 :   for (size_t i = 0; i < initial_solution.size(); i++) {
    +     486           0 :     double       x     = initial_solution[i];
    +     487           0 :     const double abs_x = std::abs(x);
    +     488             :     // Initial step size cannot be 0.0 --> invalid arg
    +     489           0 :     if (abs_x <= std::numeric_limits<double>::epsilon()) {
    +     490           0 :       initial_step.push_back(1e-13);
    +     491             :     } else {
    +     492           0 :       initial_step.push_back(optimization_parameters_.initial_stepsize_rel * abs_x);
    +     493             :     }
    +     494             : 
    +     495             :     // Check if initial solution isn't already out of bounds.
    +     496           0 :     if (x < lower_bounds[i]) {
    +     497           0 :       lower_bounds[i] = x;
    +     498           0 :     } else if (x > upper_bounds[i]) {
    +     499           0 :       upper_bounds[i] = x;
    +     500             :     }
    +     501             :   }
    +     502             : 
    +     503             :   // Make sure everything is the same size, otherwise NLOPT will have a bad
    +     504             :   // time.
    +     505           0 :   CHECK_EQ(lower_bounds.size(), upper_bounds.size());
    +     506           0 :   CHECK_EQ(initial_solution.size(), lower_bounds.size());
    +     507           0 :   CHECK_EQ(initial_solution.size(), initial_step.size());
    +     508           0 :   CHECK_EQ(initial_solution.size(), n_optimization_variables);
    +     509             : 
    +     510             :   try {
    +     511           0 :     nlopt_->set_initial_step(initial_step);
    +     512           0 :     nlopt_->set_lower_bounds(lower_bounds);
    +     513           0 :     nlopt_->set_upper_bounds(upper_bounds);
    +     514           0 :     nlopt_->set_min_objective(&PolynomialOptimizationNonLinear<N>::objectiveFunctionTimeAndConstraints, this);
    +     515             :   }
    +     516           0 :   catch (std::exception& e) {
    +     517           0 :     LOG(ERROR) << "error while setting up nlopt: " << e.what() << std::endl;
    +     518           0 :     return nlopt::FAILURE;
    +     519             :   }
    +     520             : 
    +     521           0 :   double final_cost = std::numeric_limits<double>::max();
    +     522             :   int    result;
    +     523             : 
    +     524             :   try {
    +     525           0 :     timing::Timer timer_solve("optimize_nonlinear_full_total_time");
    +     526             : 
    +     527           0 :     result = nlopt_->optimize(initial_solution, final_cost);
    +     528           0 :     timer_solve.Stop();
    +     529             :   }
    +     530           0 :   catch (std::exception& e) {
    +     531           0 :     LOG(ERROR) << "error while running nlopt: " << e.what() << std::endl;
    +     532           0 :     return nlopt::FAILURE;
    +     533             :   }
    +     534             : 
    +     535           0 :   return result;
    +     536             : }
    +     537             : 
    +     538             : template <int _N>
    +     539         180 : bool PolynomialOptimizationNonLinear<_N>::addMaximumMagnitudeConstraint(int dimension, int derivative, double maximum_value) {
    +     540             : 
    +     541         180 :   CHECK_GE(derivative, 0);
    +     542         180 :   CHECK_GE(maximum_value, 0.0);
    +     543             : 
    +     544         360 :   std::shared_ptr<ConstraintData> constraint_data(new ConstraintData);
    +     545         180 :   constraint_data->dimension   = dimension;
    +     546         180 :   constraint_data->derivative  = derivative;
    +     547         180 :   constraint_data->value       = maximum_value;
    +     548         180 :   constraint_data->this_object = this;
    +     549             : 
    +     550             :   // Store the shared_ptrs such that their data will be destroyed later.
    +     551         180 :   inequality_constraints_.push_back(constraint_data);
    +     552             : 
    +     553         180 :   if (!optimization_parameters_.use_soft_constraints) {
    +     554             :     try {
    +     555           0 :       nlopt_->add_inequality_constraint(&PolynomialOptimizationNonLinear<N>::evaluateMaximumMagnitudeConstraint, constraint_data.get(),
    +     556             :                                         optimization_parameters_.inequality_constraint_tolerance);
    +     557             :     }
    +     558           0 :     catch (std::exception& e) {
    +     559           0 :       LOG(ERROR) << "ERROR while setting inequality constraint " << e.what() << std::endl;
    +     560           0 :       return false;
    +     561             :     }
    +     562             :   }
    +     563             : 
    +     564         180 :   return true;
    +     565             : }
    +     566             : 
    +     567             : template <int _N>
    +     568           0 : double PolynomialOptimizationNonLinear<_N>::objectiveFunctionTime(const std::vector<double>& segment_times, std::vector<double>& gradient, void* data) {
    +     569           0 :   CHECK(gradient.empty()) << "computing gradient not possible, choose a gradient free method";
    +     570           0 :   CHECK_NOTNULL(data);
    +     571             : 
    +     572           0 :   PolynomialOptimizationNonLinear<N>* optimization_data = static_cast<PolynomialOptimizationNonLinear<N>*>(data);  // wheee ...
    +     573             : 
    +     574           0 :   CHECK_EQ(segment_times.size(), optimization_data->poly_opt_.getNumberSegments());
    +     575             : 
    +     576           0 :   optimization_data->poly_opt_.updateSegmentTimes(segment_times);
    +     577           0 :   optimization_data->poly_opt_.solveLinear();
    +     578           0 :   double       cost_trajectory  = optimization_data->poly_opt_.computeCost();
    +     579           0 :   double       cost_time        = 0;
    +     580           0 :   double       cost_constraints = 0;
    +     581           0 :   const double total_time       = computeTotalTrajectoryTime(segment_times);
    +     582             : 
    +     583           0 :   switch (optimization_data->optimization_parameters_.time_alloc_method) {
    +     584           0 :     case NonlinearOptimizationParameters::kRichterTime:
    +     585           0 :       cost_time = total_time * optimization_data->optimization_parameters_.time_penalty;
    +     586           0 :       break;
    +     587           0 :     default:  // kSquaredTime
    +     588           0 :       cost_time = total_time * total_time * optimization_data->optimization_parameters_.time_penalty;
    +     589           0 :       break;
    +     590             :   }
    +     591             : 
    +     592           0 :   if (optimization_data->optimization_parameters_.print_debug_info) {
    +     593           0 :     std::cout << "---- cost at iteration " << optimization_data->optimization_info_.n_iterations << "---- " << std::endl;
    +     594           0 :     std::cout << "  trajectory: " << cost_trajectory << std::endl;
    +     595           0 :     std::cout << "  time: " << cost_time << std::endl;
    +     596             :   }
    +     597             : 
    +     598           0 :   if (optimization_data->optimization_parameters_.use_soft_constraints) {
    +     599           0 :     cost_constraints = optimization_data->evaluateMaximumMagnitudeAsSoftConstraint(optimization_data->inequality_constraints_,
    +     600             :                                                                                    optimization_data->optimization_parameters_.soft_constraint_weight);
    +     601             :   }
    +     602             : 
    +     603           0 :   if (optimization_data->optimization_parameters_.print_debug_info) {
    +     604           0 :     std::cout << "  sum: " << cost_trajectory + cost_time + cost_constraints << std::endl;
    +     605           0 :     std::cout << "  total time: " << total_time << std::endl;
    +     606             :   }
    +     607             : 
    +     608           0 :   optimization_data->optimization_info_.n_iterations++;
    +     609           0 :   optimization_data->optimization_info_.cost_trajectory       = cost_trajectory;
    +     610           0 :   optimization_data->optimization_info_.cost_time             = cost_time;
    +     611           0 :   optimization_data->optimization_info_.cost_soft_constraints = cost_constraints;
    +     612             : 
    +     613           0 :   return cost_trajectory + cost_time + cost_constraints;
    +     614             : }
    +     615             : 
    +     616             : template <int _N>
    +     617         208 : double PolynomialOptimizationNonLinear<_N>::objectiveFunctionTimeMellingerOuterLoop(const std::vector<double>& segment_times, std::vector<double>& gradient,
    +     618             :                                                                                     void* data) {
    +     619         208 :   CHECK(!gradient.empty()) << "only with gradients possible, choose a gradient based method";
    +     620         208 :   CHECK_NOTNULL(data);
    +     621             : 
    +     622         208 :   PolynomialOptimizationNonLinear<N>* optimization_data = static_cast<PolynomialOptimizationNonLinear<N>*>(data);  // wheee ...
    +     623             : 
    +     624         208 :   CHECK_EQ(segment_times.size(), optimization_data->poly_opt_.getNumberSegments());
    +     625             : 
    +     626         208 :   optimization_data->poly_opt_.updateSegmentTimes(segment_times);
    +     627         208 :   optimization_data->poly_opt_.solveLinear();
    +     628             :   double cost_trajectory;
    +     629         208 :   if (!gradient.empty()) {
    +     630         208 :     cost_trajectory = optimization_data->getCostAndGradientMellinger(&gradient);
    +     631             :   } else {
    +     632           0 :     cost_trajectory = optimization_data->getCostAndGradientMellinger(NULL);
    +     633             :   }
    +     634             : 
    +     635         208 :   if (optimization_data->optimization_parameters_.print_debug_info) {
    +     636           0 :     std::cout << "---- cost at iteration " << optimization_data->optimization_info_.n_iterations << "---- " << std::endl;
    +     637           0 :     std::cout << "  segment times: ";
    +     638           0 :     for (double segment_time : segment_times) {
    +     639           0 :       std::cout << segment_time << " ";
    +     640             :     }
    +     641           0 :     std::cout << std::endl;
    +     642           0 :     std::cout << "  sum: " << cost_trajectory << std::endl;
    +     643             :   }
    +     644             : 
    +     645         208 :   optimization_data->optimization_info_.n_iterations++;
    +     646         208 :   optimization_data->optimization_info_.cost_trajectory = cost_trajectory;
    +     647             : 
    +     648         208 :   return cost_trajectory;
    +     649             : }
    +     650             : 
    +     651             : template <int _N>
    +     652           0 : double PolynomialOptimizationNonLinear<_N>::objectiveFunctionTimeAndConstraints(const std::vector<double>& x, std::vector<double>& gradient, void* data) {
    +     653           0 :   CHECK(gradient.empty()) << "computing gradient not possible, choose a gradient-free method";
    +     654           0 :   CHECK_NOTNULL(data);
    +     655             : 
    +     656           0 :   PolynomialOptimizationNonLinear<N>* optimization_data = static_cast<PolynomialOptimizationNonLinear<N>*>(data);  // wheee ...
    +     657             : 
    +     658           0 :   const size_t n_segments         = optimization_data->poly_opt_.getNumberSegments();
    +     659           0 :   const size_t n_free_constraints = optimization_data->poly_opt_.getNumberFreeConstraints();
    +     660           0 :   const size_t dim                = optimization_data->poly_opt_.getDimension();
    +     661             : 
    +     662           0 :   CHECK_EQ(x.size(), n_segments + n_free_constraints * dim);
    +     663             : 
    +     664           0 :   std::vector<Eigen::VectorXd> free_constraints;
    +     665           0 :   free_constraints.resize(dim);
    +     666           0 :   std::vector<double> segment_times;
    +     667           0 :   segment_times.reserve(n_segments);
    +     668             : 
    +     669           0 :   for (size_t i = 0; i < n_segments; ++i) {
    +     670           0 :     segment_times.push_back(x[i]);
    +     671             :   }
    +     672             : 
    +     673           0 :   for (size_t d = 0; d < dim; ++d) {
    +     674           0 :     const size_t idx_start = n_segments + d * n_free_constraints;
    +     675             : 
    +     676           0 :     Eigen::VectorXd& free_constraints_dim = free_constraints[d];
    +     677           0 :     free_constraints_dim.resize(n_free_constraints, Eigen::NoChange);
    +     678           0 :     for (size_t i = 0; i < n_free_constraints; ++i) {
    +     679           0 :       free_constraints_dim[i] = x[idx_start + i];
    +     680             :     }
    +     681             :   }
    +     682             : 
    +     683           0 :   optimization_data->poly_opt_.updateSegmentTimes(segment_times);
    +     684           0 :   optimization_data->poly_opt_.setFreeConstraints(free_constraints);
    +     685             : 
    +     686           0 :   double cost_trajectory  = optimization_data->poly_opt_.computeCost();
    +     687           0 :   double cost_time        = 0;
    +     688           0 :   double cost_constraints = 0;
    +     689             : 
    +     690           0 :   const double total_time = computeTotalTrajectoryTime(segment_times);
    +     691           0 :   switch (optimization_data->optimization_parameters_.time_alloc_method) {
    +     692           0 :     case NonlinearOptimizationParameters::kRichterTimeAndConstraints:
    +     693           0 :       cost_time = total_time * optimization_data->optimization_parameters_.time_penalty;
    +     694           0 :       break;
    +     695           0 :     default:  // kSquaredTimeAndConstraints
    +     696           0 :       cost_time = total_time * total_time * optimization_data->optimization_parameters_.time_penalty;
    +     697           0 :       break;
    +     698             :   }
    +     699             : 
    +     700           0 :   if (optimization_data->optimization_parameters_.print_debug_info) {
    +     701           0 :     std::cout << "---- cost at iteration " << optimization_data->optimization_info_.n_iterations << "---- " << std::endl;
    +     702           0 :     std::cout << "  trajectory: " << cost_trajectory << std::endl;
    +     703           0 :     std::cout << "  time: " << cost_time << std::endl;
    +     704             :   }
    +     705             : 
    +     706           0 :   if (optimization_data->optimization_parameters_.use_soft_constraints) {
    +     707           0 :     cost_constraints = optimization_data->evaluateMaximumMagnitudeAsSoftConstraint(optimization_data->inequality_constraints_,
    +     708             :                                                                                    optimization_data->optimization_parameters_.soft_constraint_weight);
    +     709             :   }
    +     710             : 
    +     711           0 :   if (optimization_data->optimization_parameters_.print_debug_info) {
    +     712           0 :     std::cout << "  sum: " << cost_trajectory + cost_time + cost_constraints << std::endl;
    +     713           0 :     std::cout << "  total time: " << total_time << std::endl;
    +     714             :   }
    +     715             : 
    +     716           0 :   optimization_data->optimization_info_.n_iterations++;
    +     717           0 :   optimization_data->optimization_info_.cost_trajectory       = cost_trajectory;
    +     718           0 :   optimization_data->optimization_info_.cost_time             = cost_time;
    +     719           0 :   optimization_data->optimization_info_.cost_soft_constraints = cost_constraints;
    +     720             : 
    +     721           0 :   return cost_trajectory + cost_time + cost_constraints;
    +     722             : }
    +     723             : 
    +     724             : template <int _N>
    +     725           0 : double PolynomialOptimizationNonLinear<_N>::evaluateMaximumMagnitudeConstraint([[maybe_unused]] const std::vector<double>& segment_times,
    +     726             :                                                                                std::vector<double>& gradient, void* data) {
    +     727           0 :   CHECK(gradient.empty()) << "computing gradient not possible, choose a gradient-free method";
    +     728           0 :   ConstraintData*                     constraint_data   = static_cast<ConstraintData*>(data);  // wheee ...
    +     729           0 :   PolynomialOptimizationNonLinear<N>* optimization_data = constraint_data->this_object;
    +     730             : 
    +     731           0 :   Extremum max;
    +     732           0 :   max = optimization_data->poly_opt_.computeMaximumOfMagnitude(constraint_data->derivative, nullptr);
    +     733             : 
    +     734           0 :   optimization_data->optimization_info_.maxima[constraint_data->derivative] = max;
    +     735             : 
    +     736           0 :   return max.value - constraint_data->value;
    +     737             : }
    +     738             : 
    +     739             : template <int _N>
    +     740           0 : double PolynomialOptimizationNonLinear<_N>::evaluateMaximumMagnitudeAsSoftConstraint(
    +     741             :     [[maybe_unused]] const std::vector<std::shared_ptr<ConstraintData>>& inequality_constraints, double weight, double maximum_cost) const {
    +     742           0 :   std::vector<double> dummy;
    +     743           0 :   double              cost = 0;
    +     744             : 
    +     745           0 :   if (optimization_parameters_.print_debug_info)
    +     746           0 :     std::cout << "  soft_constraints: " << std::endl;
    +     747             : 
    +     748           0 :   for (std::shared_ptr<const ConstraintData> constraint : inequality_constraints_) {
    +     749             :     // need to call the c-style callback function here, thus the ugly cast to
    +     750             :     // void*.
    +     751           0 :     double abs_violation = evaluateMaximumMagnitudeConstraint(dummy, dummy, (void*)constraint.get());
    +     752             : 
    +     753           0 :     double       relative_violation = abs_violation / constraint->value;
    +     754           0 :     const double current_cost       = std::min(maximum_cost, exp(relative_violation * weight));
    +     755           0 :     cost += current_cost;
    +     756           0 :     if (optimization_parameters_.print_debug_info) {
    +     757           0 :       std::cout << "    derivative " << constraint->derivative << " abs violation: " << abs_violation << " : relative violation: " << relative_violation
    +     758           0 :                 << " cost: " << current_cost << std::endl;
    +     759             :     }
    +     760             :   }
    +     761           0 :   return cost;
    +     762             : }
    +     763             : 
    +     764             : template <int _N>
    +     765           0 : void PolynomialOptimizationNonLinear<_N>::setFreeEndpointDerivativeHardConstraints(const Vertex::Vector& vertices, std::vector<double>* lower_bounds,
    +     766             :                                                                                    std::vector<double>* upper_bounds) {
    +     767           0 :   CHECK_NOTNULL(lower_bounds);
    +     768           0 :   CHECK_NOTNULL(upper_bounds);
    +     769           0 :   CHECK(lower_bounds->empty()) << "Lower bounds not empty!";
    +     770           0 :   CHECK(upper_bounds->empty()) << "Upper bounds not empty!";
    +     771             : 
    +     772           0 :   const size_t n_free_constraints     = poly_opt_.getNumberFreeConstraints();
    +     773           0 :   const size_t dim                    = poly_opt_.getDimension();
    +     774           0 :   const int    derivative_to_optimize = poly_opt_.getDerivativeToOptimize();
    +     775             : 
    +     776             :   // Set all values to -inf/inf and reset only bounded opti param with values
    +     777           0 :   lower_bounds->resize(dim * n_free_constraints, std::numeric_limits<double>::lowest());
    +     778           0 :   upper_bounds->resize(dim * n_free_constraints, std::numeric_limits<double>::max());
    +     779             : 
    +     780             :   // Add higher order derivative constraints (v_max and a_max)
    +     781             :   // Check at each vertex which of the derivatives is a free derivative.
    +     782             :   // If it is a free derivative check if we have a constraint in
    +     783             :   // inequality_constraints_ and set the constraint as hard constraint in
    +     784             :   // lower_bounds and upper_bounds
    +     785           0 :   for (const auto& constraint_data : inequality_constraints_) {
    +     786           0 :     unsigned int free_deriv_counter = 0;
    +     787           0 :     const int    derivative_hc      = constraint_data->derivative;
    +     788           0 :     const int    dimension          = constraint_data->dimension;
    +     789           0 :     const double value_hc           = constraint_data->value;
    +     790             : 
    +     791           0 :     for (size_t v = 0; v < vertices.size(); ++v) {
    +     792           0 :       for (int deriv = 0; deriv <= derivative_to_optimize; ++deriv) {
    +     793           0 :         if (!vertices[v].hasConstraint(deriv)) {
    +     794           0 :           if (deriv == derivative_hc) {
    +     795           0 :             unsigned int start_idx                           = dimension * n_free_constraints;
    +     796           0 :             lower_bounds->at(start_idx + free_deriv_counter) = -std::abs(value_hc);
    +     797           0 :             upper_bounds->at(start_idx + free_deriv_counter) = std::abs(value_hc);
    +     798             :           }
    +     799           0 :           free_deriv_counter++;
    +     800             :         }
    +     801             :       }
    +     802             :     }
    +     803             :   }
    +     804           0 : }
    +     805             : 
    +     806             : template <int _N>
    +     807           0 : double PolynomialOptimizationNonLinear<_N>::computeTotalTrajectoryTime(const std::vector<double>& segment_times) {
    +     808           0 :   double total_time = 0;
    +     809           0 :   for (double t : segment_times)
    +     810           0 :     total_time += t;
    +     811           0 :   return total_time;
    +     812             : }
    +     813             : 
    +     814             : }  // namespace eth_trajectory_generation
    +     815             : 
    +     816             : namespace nlopt
    +     817             : {
    +     818             : 
    +     819             : inline std::string returnValueToString(int return_value) {
    +     820             :   switch (return_value) {
    +     821             :     case nlopt::SUCCESS:
    +     822             :       return std::string("SUCCESS");
    +     823             :     case nlopt::FAILURE:
    +     824             :       return std::string("FAILURE");
    +     825             :     case nlopt::INVALID_ARGS:
    +     826             :       return std::string("INVALID_ARGS");
    +     827             :     case nlopt::OUT_OF_MEMORY:
    +     828             :       return std::string("OUT_OF_MEMORY");
    +     829             :     case nlopt::ROUNDOFF_LIMITED:
    +     830             :       return std::string("ROUNDOFF_LIMITED");
    +     831             :     case nlopt::FORCED_STOP:
    +     832             :       return std::string("FORCED_STOP");
    +     833             :     case nlopt::STOPVAL_REACHED:
    +     834             :       return std::string("STOPVAL_REACHED");
    +     835             :     case nlopt::FTOL_REACHED:
    +     836             :       return std::string("FTOL_REACHED");
    +     837             :     case nlopt::XTOL_REACHED:
    +     838             :       return std::string("XTOL_REACHED");
    +     839             :     case nlopt::MAXEVAL_REACHED:
    +     840             :       return std::string("MAXEVAL_REACHED");
    +     841             :     case nlopt::MAXTIME_REACHED:
    +     842             :       return std::string("MAXTIME_REACHED");
    +     843             :     default:
    +     844             :       return std::string("ERROR CODE UNKNOWN");
    +     845             :   }
    +     846             : }
    +     847             : }  // namespace nlopt
    +     848             : 
    +     849             : #endif  // ETH_TRAJECTORY_GENERATION_IMPL_POLYNOMIAL_OPTIMIZATION_NONLINEAR_IMPL_H_
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    LCOV - code coverage report
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    Current view:top level - mrs_uav_trajectory_generation/include/eth_trajectory_generationHitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:12920562.9 %
    Date:2024-04-17 23:52:03Functions:376061.7 %
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    + + + diff --git a/mrs_uav_trajectory_generation/include/eth_trajectory_generation/polynomial.h.func-sort-c.html b/mrs_uav_trajectory_generation/include/eth_trajectory_generation/polynomial.h.func-sort-c.html new file mode 100644 index 0000000000..5246f72709 --- /dev/null +++ b/mrs_uav_trajectory_generation/include/eth_trajectory_generation/polynomial.h.func-sort-c.html @@ -0,0 +1,120 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trajectory_generation/include/eth_trajectory_generation/polynomial.h - functions + + + + + + + + + + + + + + +
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    Test:MRS UAV System - Test coverage reportLines:444989.8 %
    Date:2024-04-17 23:52:03Functions:81080.0 %
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::Polynomial::operator==(eth_trajectory_generation::Polynomial const&) const0
    eth_trajectory_generation::Polynomial::operator!=(eth_trajectory_generation::Polynomial const&) const0
    eth_trajectory_generation::Polynomial::Polynomial(int)15
    eth_trajectory_generation::Polynomial::Polynomial(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)948
    eth_trajectory_generation::Polynomial::getConvolutionLength(int, int)2844
    eth_trajectory_generation::Polynomial::evaluate(double, int) const42879
    eth_trajectory_generation::Polynomial::Polynomial(int, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)72444
    eth_trajectory_generation::Polynomial::getCoefficients(int) const72684
    eth_trajectory_generation::Polynomial::baseCoeffsWithTime(int, int, double)182690
    eth_trajectory_generation::Polynomial::baseCoeffsWithTime(int, int, double, Eigen::Matrix<double, -1, 1, 0, -1, 1>*)182690
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    Generated by: LCOV version 1.14
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    Date:2024-04-17 23:52:03Functions:81080.0 %
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::Polynomial::baseCoeffsWithTime(int, int, double)182690
    eth_trajectory_generation::Polynomial::baseCoeffsWithTime(int, int, double, Eigen::Matrix<double, -1, 1, 0, -1, 1>*)182690
    eth_trajectory_generation::Polynomial::getConvolutionLength(int, int)2844
    eth_trajectory_generation::Polynomial::Polynomial(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)948
    eth_trajectory_generation::Polynomial::Polynomial(int)15
    eth_trajectory_generation::Polynomial::Polynomial(int, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)72444
    eth_trajectory_generation::Polynomial::getCoefficients(int) const72684
    eth_trajectory_generation::Polynomial::evaluate(double, int) const42879
    eth_trajectory_generation::Polynomial::operator==(eth_trajectory_generation::Polynomial const&) const0
    eth_trajectory_generation::Polynomial::operator!=(eth_trajectory_generation::Polynomial const&) const0
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #ifndef ETH_TRAJECTORY_GENERATION_POLYNOMIAL_H_
    +      22             : #define ETH_TRAJECTORY_GENERATION_POLYNOMIAL_H_
    +      23             : 
    +      24             : #include <eth_trajectory_generation/misc.h>
    +      25             : #include <Eigen/Eigen>
    +      26             : #include <Eigen/SVD>
    +      27             : #include <utility>
    +      28             : #include <vector>
    +      29             : 
    +      30             : namespace eth_trajectory_generation
    +      31             : {
    +      32             : 
    +      33             : // Implementation of polynomials of order N-1. Order must be known at
    +      34             : // compile time.
    +      35             : // Polynomial coefficients are stored with increasing powers,
    +      36             : // i.e. c_0 + c_1*t ... c_{N-1} * t^{N-1}
    +      37             : // where N = number of coefficients of the polynomial.
    +      38             : class Polynomial {
    +      39             : public:
    +      40             :   typedef std::vector<Polynomial> Vector;
    +      41             : 
    +      42             :   // Maximum degree of a polynomial for which the static derivative (basis
    +      43             :   // coefficient) matrix should be evaluated for.
    +      44             :   // kMaxN = max. number of coefficients.
    +      45             :   static constexpr int kMaxN = 12;
    +      46             :   // kMaxConvolutionSize = max. convolution size for N = 12, convolved with its
    +      47             :   // derivative.
    +      48             :   static constexpr int kMaxConvolutionSize = 2 * kMaxN - 2;
    +      49             :   // One static shared across all members of the class, computed up to order
    +      50             :   // kMaxConvolutionSize.
    +      51             :   static Eigen::MatrixXd base_coefficients_;
    +      52             : 
    +      53          15 :   Polynomial(int N) : N_(N), coefficients_(N) {
    +      54          15 :     coefficients_.setZero();
    +      55          15 :   }
    +      56             : 
    +      57             :   // Assigns arbitrary coefficients to a polynomial.
    +      58       72444 :   Polynomial(int N, const Eigen::VectorXd& coeffs) : N_(N), coefficients_(coeffs) {
    +      59       72444 :     CHECK_EQ(N_, coeffs.size()) << "Number of coefficients has to match.";
    +      60       72444 :   }
    +      61             : 
    +      62         948 :   Polynomial(const Eigen::VectorXd& coeffs) : N_(coeffs.size()), coefficients_(coeffs) {
    +      63         948 :   }
    +      64             :   /// Gets the number of coefficients (order + 1) of the polynomial.
    +      65             :   int N() const {
    +      66             :     return N_;
    +      67             :   }
    +      68             : 
    +      69           0 :   inline bool operator==(const Polynomial& rhs) const {
    +      70           0 :     return coefficients_ == rhs.coefficients_;
    +      71             :   }
    +      72           0 :   inline bool operator!=(const Polynomial& rhs) const {
    +      73           0 :     return !operator==(rhs);
    +      74             :   }
    +      75             :   inline Polynomial operator+(const Polynomial& rhs) const {
    +      76             :     return Polynomial(coefficients_ + rhs.coefficients_);
    +      77             :   }
    +      78             :   inline Polynomial& operator+=(const Polynomial& rhs) {
    +      79             :     this->coefficients_ += rhs.coefficients_;
    +      80             :     return *this;
    +      81             :   }
    +      82             :   // The product of two polynomials is the convolution of their coefficients.
    +      83             :   inline Polynomial operator*(const Polynomial& rhs) const {
    +      84             :     return Polynomial(convolve(coefficients_, rhs.coefficients_));
    +      85             :   }
    +      86             :   // The product of a polynomial with a scalar. Note that polynomials are in
    +      87             :   // general not homogeneous, i.e., f(a*t) != a*f(t)
    +      88             :   inline Polynomial operator*(const double& rhs) const {
    +      89             :     return Polynomial(coefficients_ * rhs);
    +      90             :   }
    +      91             : 
    +      92             :   // Sets up the internal representation from coefficients.
    +      93             :   // Coefficients are stored in increasing order with the power of t,
    +      94             :   // i.e. c1 + c2*t + c3*t^2 ==> coeffs = [c1 c2 c3]
    +      95             :   /* setCoefficients() //{ */
    +      96             : 
    +      97             :   void setCoefficients(const Eigen::VectorXd& coeffs) {
    +      98             :     CHECK_EQ(N_, coeffs.size()) << "Number of coefficients has to match.";
    +      99             :     coefficients_ = coeffs;
    +     100             :   }
    +     101             : 
    +     102             :   //}
    +     103             : 
    +     104             :   // Returns the coefficients for the specified derivative of the
    +     105             :   // polynomial as a ROW vector.
    +     106             :   /* getCoefficients() //{ */
    +     107             : 
    +     108       72684 :   Eigen::VectorXd getCoefficients(int derivative = 0) const {
    +     109       72684 :     CHECK_LE(derivative, N_);
    +     110       72684 :     if (derivative == 0) {
    +     111       66996 :       return coefficients_;
    +     112             :     } else {
    +     113       11376 :       Eigen::VectorXd result(N_);
    +     114        5688 :       result.setZero();
    +     115        5688 :       result.head(N_ - derivative) =
    +     116       11376 :           coefficients_.tail(N_ - derivative).cwiseProduct(base_coefficients_.block(derivative, derivative, 1, N_ - derivative).transpose());
    +     117        5688 :       return result;
    +     118             :     }
    +     119             :   }
    +     120             : 
    +     121             :   //}
    +     122             : 
    +     123             :   // Evaluates the polynomial at time t and writes the result.
    +     124             :   // Fills in all derivatives up to result.size()-1 (that is, if result is a
    +     125             :   // 3-vector, then will fill in derivatives 0, 1, and 2).
    +     126             :   /* evaluate() //{ */
    +     127             : 
    +     128             :   void evaluate(double t, Eigen::VectorXd* result) const {
    +     129             :     CHECK_LE(result->size(), N_);
    +     130             :     const int max_deg = result->size();
    +     131             : 
    +     132             :     const int tmp = N_ - 1;
    +     133             :     for (int i = 0; i < max_deg; i++) {
    +     134             :       Eigen::RowVectorXd row = base_coefficients_.block(i, 0, 1, N_);
    +     135             :       double             acc = row[tmp] * coefficients_[tmp];
    +     136             :       for (int j = tmp - 1; j >= i; --j) {
    +     137             :         acc *= t;
    +     138             :         acc += row[j] * coefficients_[j];
    +     139             :       }
    +     140             :       (*result)[i] = acc;
    +     141             :     }
    +     142             :   }
    +     143             : 
    +     144             :   //}
    +     145             : 
    +     146             :   // Evaluates the specified derivative of the polynomial at time t and returns
    +     147             :   // the result (only one value).
    +     148             :   /* evaluate() //{ */
    +     149             : 
    +     150       42879 :   double evaluate(double t, int derivative) const {
    +     151       42879 :     if (derivative >= N_) {
    +     152           0 :       return 0.0;
    +     153             :     }
    +     154             :     double             result;
    +     155       42879 :     const int          tmp = N_ - 1;
    +     156       42879 :     Eigen::RowVectorXd row = base_coefficients_.block(derivative, 0, 1, N_);
    +     157       42879 :     result                 = row[tmp] * coefficients_[tmp];
    +     158      338147 :     for (int j = tmp - 1; j >= derivative; --j) {
    +     159      295268 :       result *= t;
    +     160      295268 :       result += row[j] * coefficients_[j];
    +     161             :     }
    +     162       42879 :     return result;
    +     163             :   }
    +     164             : 
    +     165             :   //}
    +     166             : 
    +     167             :   // Uses Jenkins-Traub to get all the roots of the polynomial at a certain
    +     168             :   // derivative.
    +     169             :   bool getRoots(int derivative, Eigen::VectorXcd* roots) const;
    +     170             : 
    +     171             :   // Finds all candidates for the minimum and maximum between t_start and t_end
    +     172             :   // by evaluating the roots of the polynomial's derivative.
    +     173             :   static bool selectMinMaxCandidatesFromRoots(double t_start, double t_end, const Eigen::VectorXcd& roots_derivative_of_derivative,
    +     174             :                                               std::vector<double>* candidates);
    +     175             : 
    +     176             :   // Finds all candidates for the minimum and maximum between t_start and t_end
    +     177             :   // by computing the roots of the derivative polynomial.
    +     178             :   bool computeMinMaxCandidates(double t_start, double t_end, int derivative, std::vector<double>* candidates) const;
    +     179             : 
    +     180             :   // Evaluates the minimum and maximum of a polynomial between time t_start and
    +     181             :   // t_end given the roots of the derivative.
    +     182             :   // Returns the minimum and maximum as pair<t, value>.
    +     183             :   bool selectMinMaxFromRoots(double t_start, double t_end, int derivative, const Eigen::VectorXcd& roots_derivative_of_derivative,
    +     184             :                              std::pair<double, double>* minimum, std::pair<double, double>* maximum) const;
    +     185             : 
    +     186             :   // Computes the minimum and maximum of a polynomial between time t_start and
    +     187             :   // t_end by computing the roots of the derivative polynomial.
    +     188             :   // Returns the minimum and maximum as pair<t, value>.
    +     189             :   bool computeMinMax(double t_start, double t_end, int derivative, std::pair<double, double>* minimum, std::pair<double, double>* maximum) const;
    +     190             : 
    +     191             :   // Selects the minimum and maximum of a polynomial among a candidate set.
    +     192             :   // Returns the minimum and maximum as pair<t, value>.
    +     193             :   bool selectMinMaxFromCandidates(const std::vector<double>& candidates, int derivative, std::pair<double, double>* minimum,
    +     194             :                                   std::pair<double, double>* maximum) const;
    +     195             : 
    +     196             :   // Increase the number of coefficients of this polynomial up to the specified
    +     197             :   // degree by appending zeros.
    +     198             :   bool getPolynomialWithAppendedCoefficients(int new_N, Polynomial* new_polynomial) const;
    +     199             : 
    +     200             :   // Computes the base coefficients with the according powers of t, as
    +     201             :   // e.g. needed for computation of (in)equality constraints.
    +     202             :   // Output: coeffs = vector to write the coefficients to
    +     203             :   // Input: polynomial derivative for which the coefficients have to
    +     204             :   // be computed
    +     205             :   // Input: t = time of evaluation
    +     206             :   /* baseCoeffsWithTime() //{ */
    +     207             : 
    +     208      182690 :   static void baseCoeffsWithTime(int N, int derivative, double t, Eigen::VectorXd* coeffs) {
    +     209      182690 :     CHECK_LT(derivative, N);
    +     210      182690 :     CHECK_GE(derivative, 0);
    +     211             : 
    +     212      182690 :     coeffs->resize(N, 1);
    +     213      182690 :     coeffs->setZero();
    +     214             :     // first coefficient doesn't get multiplied
    +     215      182690 :     (*coeffs)[derivative] = base_coefficients_(derivative, derivative);
    +     216             : 
    +     217      182690 :     if (std::abs(t) < std::numeric_limits<double>::epsilon())
    +     218       91345 :       return;
    +     219             : 
    +     220       91345 :     double t_power = t;
    +     221             :     // now multiply increasing power of t towards the right
    +     222      730760 :     for (int j = derivative + 1; j < N; j++) {
    +     223      639415 :       (*coeffs)[j] = base_coefficients_(derivative, j) * t_power;
    +     224      639415 :       t_power      = t_power * t;
    +     225             :     }
    +     226             :   }
    +     227             : 
    +     228             :   //}
    +     229             : 
    +     230             :   // Convenience method to compute the base coefficents with time
    +     231             :   // static void baseCoeffsWithTime(const Eigen::MatrixBase<Derived> &
    +     232             :   // coeffs, int derivative, double t)
    +     233      182690 :   static Eigen::VectorXd baseCoeffsWithTime(int N, int derivative, double t) {
    +     234      182690 :     Eigen::VectorXd c(N);
    +     235      182690 :     baseCoeffsWithTime(N, derivative, t, &c);
    +     236      182690 :     return c;
    +     237             :   }
    +     238             : 
    +     239             :   // Discrete convolution of two vectors.
    +     240             :   // convolve(d, k)[m] = sum(d[m - n] * k[n])
    +     241             :   static Eigen::VectorXd convolve(const Eigen::VectorXd& data, const Eigen::VectorXd& kernel);
    +     242             : 
    +     243        2844 :   static inline int getConvolutionLength(int data_size, int kernel_size) {
    +     244        2844 :     return data_size + kernel_size - 1;
    +     245             :   }
    +     246             : 
    +     247             :   // Scales the polynomial in time with a scaling factor.
    +     248             :   // To stretch out by a factor of 10, pass scaling_factor (b) = 1/10. To shrink
    +     249             :   // by a factor of 10, pass scalign factor = 10.
    +     250             :   // p_out = a12*b^12*t^12 + a11*b^11*t^11... etc.
    +     251             :   void scalePolynomialInTime(double scaling_factor);
    +     252             : 
    +     253             :   // Offset this polynomial.
    +     254             :   void offsetPolynomial(const double offset);
    +     255             : 
    +     256             : private:
    +     257             :   int             N_;
    +     258             :   Eigen::VectorXd coefficients_;
    +     259             : };
    +     260             : 
    +     261             : // Static functions to compute base coefficients.
    +     262             : 
    +     263             : // Computes the base coefficients of the derivatives of the polynomial,
    +     264             : // up to order N.
    +     265             : Eigen::MatrixXd computeBaseCoefficients(int N);
    +     266             : 
    +     267             : }  // namespace eth_trajectory_generation
    +     268             : 
    +     269             : #endif  // ETH_TRAJECTORY_GENERATION_POLYNOMIAL_H_
    +
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    eth_trajectory_generation::PolynomialOptimization<10>::getVertices(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> >*) const0
    eth_trajectory_generation::PolynomialOptimization<10>::getDimension() const0
    eth_trajectory_generation::PolynomialOptimization<10>::getFreeConstraints(std::vector<Eigen::Matrix<double, -1, 1, 0, -1, 1>, std::allocator<Eigen::Matrix<double, -1, 1, 0, -1, 1> > >*) const0
    eth_trajectory_generation::PolynomialOptimization<10>::getDerivativeToOptimize() const0
    eth_trajectory_generation::PolynomialOptimization<10>::getNumberFreeConstraints() const0
    eth_trajectory_generation::PolynomialOptimization<10>::getSegments(std::vector<eth_trajectory_generation::Segment, std::allocator<eth_trajectory_generation::Segment> >*) const10
    eth_trajectory_generation::PolynomialOptimization<10>::getTrajectory(eth_trajectory_generation::Trajectory*) const25
    eth_trajectory_generation::PolynomialOptimization<10>::getSegmentTimes(std::vector<double, std::allocator<double> >*) const253
    eth_trajectory_generation::PolynomialOptimization<10>::getNumberSegments() const624
    eth_trajectory_generation::Constraint::operator<(eth_trajectory_generation::Constraint const&) const12038
    eth_trajectory_generation::Constraint::operator==(eth_trajectory_generation::Constraint const&) const133000
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    eth_trajectory_generation::Constraint::operator==(eth_trajectory_generation::Constraint const&) const133000
    eth_trajectory_generation::Constraint::operator<(eth_trajectory_generation::Constraint const&) const12038
    eth_trajectory_generation::PolynomialOptimization<10>::getSegments(std::vector<eth_trajectory_generation::Segment, std::allocator<eth_trajectory_generation::Segment> >*) const10
    eth_trajectory_generation::PolynomialOptimization<10>::getVertices(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> >*) const0
    eth_trajectory_generation::PolynomialOptimization<10>::getDimension() const0
    eth_trajectory_generation::PolynomialOptimization<10>::getTrajectory(eth_trajectory_generation::Trajectory*) const25
    eth_trajectory_generation::PolynomialOptimization<10>::getSegmentTimes(std::vector<double, std::allocator<double> >*) const253
    eth_trajectory_generation::PolynomialOptimization<10>::getNumberSegments() const624
    eth_trajectory_generation::PolynomialOptimization<10>::getFreeConstraints(std::vector<Eigen::Matrix<double, -1, 1, 0, -1, 1>, std::allocator<Eigen::Matrix<double, -1, 1, 0, -1, 1> > >*) const0
    eth_trajectory_generation::PolynomialOptimization<10>::getDerivativeToOptimize() const0
    eth_trajectory_generation::PolynomialOptimization<10>::getNumberFreeConstraints() const0
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #ifndef ETH_TRAJECTORY_GENERATION_POLYNOMIAL_OPTIMIZATION_LINEAR_H_
    +      22             : #define ETH_TRAJECTORY_GENERATION_POLYNOMIAL_OPTIMIZATION_LINEAR_H_
    +      23             : 
    +      24             : #include <Eigen/Sparse>
    +      25             : #include <tuple>
    +      26             : 
    +      27             : #include <eth_trajectory_generation/misc.h>
    +      28             : #include <eth_trajectory_generation/extremum.h>
    +      29             : #include <eth_trajectory_generation/motion_defines.h>
    +      30             : #include <eth_trajectory_generation/polynomial.h>
    +      31             : #include <eth_trajectory_generation/segment.h>
    +      32             : #include <eth_trajectory_generation/trajectory.h>
    +      33             : #include <eth_trajectory_generation/vertex.h>
    +      34             : 
    +      35             : namespace eth_trajectory_generation
    +      36             : {
    +      37             : 
    +      38             : // Implements the unconstrained optimization of paths consisting of
    +      39             : // polynomial segments as described in [1]
    +      40             : // [1]: Polynomial Trajectory Planning for Aggressive Quadrotor Flight in Dense
    +      41             : // Indoor Environments.
    +      42             : //      Charles Richter, Adam Bry, and Nicholas Roy. In ISRR 2013
    +      43             : // _N = Number of coefficients of the underlying polynomials.
    +      44             : // Polynomial coefficients are stored with increasing powers,
    +      45             : // i.e. c_0 + c_1*t ... c_{N-1} * t^{N-1}.
    +      46             : template <int _N = 10>
    +      47             : class PolynomialOptimization {
    +      48             :   static_assert(_N % 2 == 0, "The number of coefficients has to be even.");
    +      49             : 
    +      50             : public:
    +      51             :   enum
    +      52             :   {
    +      53             :     N = _N
    +      54             :   };
    +      55             :   static constexpr int                                                      kHighestDerivativeToOptimize = N / 2 - 1;
    +      56             :   typedef Eigen::Matrix<double, N, N>                                       SquareMatrix;
    +      57             :   typedef std::vector<SquareMatrix, Eigen::aligned_allocator<SquareMatrix>> SquareMatrixVector;
    +      58             : 
    +      59             :   // Sets up the optimization problem for the specified dimension.
    +      60             :   PolynomialOptimization(size_t dimension);
    +      61             : 
    +      62             :   // Sets up the optimization problem from a vector of Vertex objects and
    +      63             :   // a vector of times between the vertices.
    +      64             :   // Input: vertices = Vector containing the vertices defining the support
    +      65             :   // points and constraints of the path.
    +      66             :   // Input: segment_times = Vector containing the time between two vertices.
    +      67             :   // Thus, its size is size(vertices) - 1.
    +      68             :   // Input: derivative_to_optimize = Specifies the derivative of which the
    +      69             :   // cost is optimized.
    +      70             :   bool setupFromVertices(const Vertex::Vector& vertices, const std::vector<double>& segment_times, int derivative_to_optimize = kHighestDerivativeToOptimize);
    +      71             : 
    +      72             :   // Sets up the optimization problem from a vector of positions and a
    +      73             :   // vector of times between the via points.
    +      74             :   // The optimized derivative is set to the maximum possible based on the given
    +      75             :   // N (N/2-1).
    +      76             :   // Input: positions = Vector containing the start positions, intermediate
    +      77             :   // positions and the final position.
    +      78             :   // Input: times = Vector containing the time between two positions. Thus,
    +      79             :   // its size is size(positions) - 1.
    +      80             :   bool setupFromPositons(const std::vector<double>& positions, const std::vector<double>& times);
    +      81             : 
    +      82             :   // Wrapper that inverts the mapping matrix (A in [1]) to take advantage
    +      83             :   // of its structure.
    +      84             :   // Input: A matrix
    +      85             :   // Output: Ai inverse of the A matrix
    +      86             :   static void invertMappingMatrix(const SquareMatrix& mapping_matrix, SquareMatrix* inverse_mapping_matrix);
    +      87             : 
    +      88             :   static void setupMappingMatrix(double segment_time, SquareMatrix* A);
    +      89             : 
    +      90             :   // Computes the cost in the derivative that was specified during
    +      91             :   // setupFromVertices().
    +      92             :   // The cost is computed as: 0.5*c^T*Q*c
    +      93             :   // where c are the coefficients and Q is the cost matrix of each segment.
    +      94             :   double computeCost() const;
    +      95             : 
    +      96             :   // Updates the segment times. The number of times has to be equal to
    +      97             :   // the number of vertices that was initially passed during the problem setup.
    +      98             :   // This recomputes all cost- and inverse mapping block-matrices and is meant
    +      99             :   // to be called during non-linear optimization procedures.
    +     100             :   void updateSegmentTimes(const std::vector<double>& segment_times);
    +     101             : 
    +     102             :   // Solves the linear optimization problem according to [1].
    +     103             :   // The solver is re-used for every dimension, which means:
    +     104             :   //  - segment times are equal for each dimension.
    +     105             :   //  - each dimension has the same type/set of constraints. Their values can of
    +     106             :   //    course differ.
    +     107             :   bool solveLinear();
    +     108             : 
    +     109             :   // Returns the trajectory created by the optimization.
    +     110             :   // Only valid after solveLinear() is called. This is the preferred external
    +     111             :   // interface for getting information back out of the solver.
    +     112          25 :   void getTrajectory(Trajectory* trajectory) const {
    +     113          25 :     CHECK_NOTNULL(trajectory);
    +     114          25 :     trajectory->setSegments(segments_);
    +     115          25 :   }
    +     116             : 
    +     117             :   // Computes the candidates for the maximum magnitude of a single
    +     118             :   // segment in the specified derivative.
    +     119             :   // In the 1D case, it simply returns the roots of the derivative of the
    +     120             :   // segment-polynomial.
    +     121             :   // For higher dimensions, e.g. 3D, we need to find the extrema of
    +     122             :   // \sqrt{x(t)^2 + y(t)^2 + z(t)^2}
    +     123             :   // where x, y, z are polynomials describing the position or the derivative,
    +     124             :   // specified by Derivative.
    +     125             :   // Taking the derivative yields  2 x \dot{x} + 2 y \dot{y} + 2 z \dot{z},
    +     126             :   // which needs to be zero at the extrema. The multiplication of two
    +     127             :   // polynomials is a convolution of their coefficients. Re-ordering by their
    +     128             :   // powers and addition yields a polynomial, for which we can compute the
    +     129             :   // roots. Derivative = Derivative of position, in which to find the maxima.
    +     130             :   // Input: segment = Segment to find the maximum.
    +     131             :   // Input: t_start = Only maxima >= t_start are returned. Usually set to 0.
    +     132             :   // Input: t_stop = Only maxima <= t_stop are returned. Usually set to
    +     133             :   // segment time.
    +     134             :   // Output: candidates = Vector containing the candidate times for a maximum.
    +     135             :   // Returns whether the computation succeeded -- false means no candidates
    +     136             :   // were found by Jenkins-Traub.
    +     137             :   template <int Derivative>
    +     138             :   static bool computeSegmentMaximumMagnitudeCandidates(const Segment& segment, double t_start, double t_stop, std::vector<double>* candidates);
    +     139             : 
    +     140             :   // Template-free version of above:
    +     141             :   static bool computeSegmentMaximumMagnitudeCandidates(int derivative, const Segment& segment, double t_start, double t_stop, std::vector<double>* candidates);
    +     142             : 
    +     143             :   // Computes the candidates for the maximum magnitude of a single
    +     144             :   // segment in the specified derivative.
    +     145             :   // Computed by sampling and rather meant for debugging / testing.
    +     146             :   // Derivative = Derivative of position, in which to find the maxima.
    +     147             :   // Input: segment = Segment to find the maximum.
    +     148             :   // Input: t_start = Start time of sampling. Usually set to 0.
    +     149             :   // Input: t_stop = End time of sampling. Usually set to segment time.
    +     150             :   // Input: sampling_interval = Time between two sampling points.
    +     151             :   // Output: candidates = Vector containing the candidate times for a maximum.
    +     152             :   template <int Derivative>
    +     153             :   static void computeSegmentMaximumMagnitudeCandidatesBySampling(const Segment& segment, double t_start, double t_stop, double sampling_interval,
    +     154             :                                                                  std::vector<double>* candidates);
    +     155             : 
    +     156             :   // Computes the global maximum of the magnitude of the path in the
    +     157             :   // specified derivative.
    +     158             :   // This uses computeSegmentMaximumMagnitudeCandidates to compute the
    +     159             :   // candidates for each segment.
    +     160             :   // Derivative = Derivative of position, in which to find the maxima.
    +     161             :   // Output: candidates = Vector containing the candidate times for the global
    +     162             :   // maximum, i.e. all local maxima.
    +     163             :   //                        Optional, can be set to nullptr if not needed.
    +     164             :   // Output: return = The global maximum of the path.
    +     165             :   template <int Derivative>
    +     166             :   Extremum computeMaximumOfMagnitude(std::vector<Extremum>* candidates) const;
    +     167             : 
    +     168             :   // Template-free version of above.
    +     169             :   Extremum computeMaximumOfMagnitude(int derivative, std::vector<Extremum>* candidates) const;
    +     170             : 
    +     171           0 :   void getVertices(Vertex::Vector* vertices) const {
    +     172           0 :     CHECK_NOTNULL(vertices);
    +     173           0 :     *vertices = vertices_;
    +     174           0 :   }
    +     175             : 
    +     176             :   // Only for internal use -- always use getTrajectory() instead if you can!
    +     177          10 :   void getSegments(Segment::Vector* segments) const {
    +     178          10 :     CHECK_NOTNULL(segments);
    +     179          10 :     *segments = segments_;
    +     180          10 :   }
    +     181             : 
    +     182         253 :   void getSegmentTimes(std::vector<double>* segment_times) const {
    +     183         253 :     CHECK(segment_times != nullptr);
    +     184         253 :     *segment_times = segment_times_;
    +     185         253 :   }
    +     186             : 
    +     187           0 :   void getFreeConstraints(std::vector<Eigen::VectorXd>* free_constraints) const {
    +     188           0 :     CHECK(free_constraints != nullptr);
    +     189           0 :     *free_constraints = free_constraints_compact_;
    +     190           0 :   }
    +     191             : 
    +     192             :   void setFreeConstraints(const std::vector<Eigen::VectorXd>& free_constraints);
    +     193             : 
    +     194             :   void getFixedConstraints(std::vector<Eigen::VectorXd>* fixed_constraints) const {
    +     195             :     CHECK(fixed_constraints != nullptr);
    +     196             :     *fixed_constraints = fixed_constraints_compact_;
    +     197             :   }
    +     198             : 
    +     199             :   // Computes the Jacobian of the integral over the squared derivative
    +     200             :   // Output: cost_jacobian = Jacobian matrix to write into.
    +     201             :   // If C is dynamic, the correct size has to be set.
    +     202             :   // Input: t = time of evaluation
    +     203             :   // Input: derivative used to compute the cost
    +     204             :   static void computeQuadraticCostJacobian(int derivative, double t, SquareMatrix* cost_jacobian);
    +     205             : 
    +     206           0 :   size_t getDimension() const {
    +     207           0 :     return dimension_;
    +     208             :   }
    +     209         624 :   size_t getNumberSegments() const {
    +     210         624 :     return n_segments_;
    +     211             :   }
    +     212             :   size_t getNumberAllConstraints() const {
    +     213             :     return n_all_constraints_;
    +     214             :   }
    +     215             :   size_t getNumberFixedConstraints() const {
    +     216             :     return n_fixed_constraints_;
    +     217             :   }
    +     218           0 :   size_t getNumberFreeConstraints() const {
    +     219           0 :     return n_free_constraints_;
    +     220             :   }
    +     221           0 :   int getDerivativeToOptimize() const {
    +     222           0 :     return derivative_to_optimize_;
    +     223             :   }
    +     224             : 
    +     225             :   // Accessor functions for internal matrices.
    +     226             :   void getAInverse(Eigen::MatrixXd* A_inv) const;
    +     227             :   void getM(Eigen::MatrixXd* M) const;
    +     228             :   void getR(Eigen::MatrixXd* R) const;
    +     229             :   // Extras not directly used in the standard optimization:
    +     230             :   void getA(Eigen::MatrixXd* A) const;
    +     231             :   void getMpinv(Eigen::MatrixXd* M_pinv) const;  // Pseudo-inverse of M.
    +     232             : 
    +     233             :   void printReorderingMatrix(std::ostream& stream) const;
    +     234             : 
    +     235             : private:
    +     236             :   // Constructs the sparse R (cost) matrix.
    +     237             :   void constructR(Eigen::SparseMatrix<double>* R) const;
    +     238             : 
    +     239             :   // Sets up the matrix (C in [1]) that reorders constraints for the
    +     240             :   // optimization problem.
    +     241             :   // This matrix is the same for each dimension, i.e. each dimension must have
    +     242             :   // the same fixed and free parameters.
    +     243             :   void setupConstraintReorderingMatrix();
    +     244             : 
    +     245             :   // Updates the segments stored internally from the set of compact fixed
    +     246             :   // and free constraints.
    +     247             :   void updateSegmentsFromCompactConstraints();
    +     248             : 
    +     249             :   // Matrix consisting of entries with value 1 to reorder free and fixed
    +     250             :   // constraints (C in [1]).
    +     251             :   Eigen::SparseMatrix<double> constraint_reordering_;
    +     252             : 
    +     253             :   // Original vertices containing the constraints.
    +     254             :   Vertex::Vector vertices_;
    +     255             : 
    +     256             :   // The actual segments containing the solution.
    +     257             :   Segment::Vector segments_;
    +     258             : 
    +     259             :   // Vector that stores an inverted mapping matrix for each segment
    +     260             :   // (A^-1 in [1]).
    +     261             :   SquareMatrixVector inverse_mapping_matrices_;
    +     262             : 
    +     263             :   // Vector that stores the cost matrix for each segment (Q in [1]).
    +     264             :   SquareMatrixVector cost_matrices_;
    +     265             : 
    +     266             :   // Contains the compact form of fixed constraints for each dimension
    +     267             :   // (d_f in [1]).
    +     268             :   std::vector<Eigen::VectorXd> fixed_constraints_compact_;
    +     269             : 
    +     270             :   // Contains the compact form of free constraints to optimize for each
    +     271             :   // dimension (d_p in [1]).
    +     272             :   std::vector<Eigen::VectorXd> free_constraints_compact_;
    +     273             : 
    +     274             :   std::vector<double> segment_times_;
    +     275             : 
    +     276             :   // Number of polynomials, e.g 3 for a 3D path.
    +     277             :   size_t dimension_;
    +     278             : 
    +     279             :   int    derivative_to_optimize_;
    +     280             :   size_t n_vertices_;
    +     281             :   size_t n_segments_;
    +     282             : 
    +     283             :   size_t n_all_constraints_;
    +     284             :   size_t n_fixed_constraints_;
    +     285             :   size_t n_free_constraints_;
    +     286             : };
    +     287             : 
    +     288             : // Constraint class that aggregates all constraints from incoming Vertices.
    +     289             : struct Constraint
    +     290             : {
    +     291       12038 :   inline bool operator<(const Constraint& rhs) const {
    +     292       12038 :     if (vertex_idx < rhs.vertex_idx)
    +     293         316 :       return true;
    +     294       11722 :     if (rhs.vertex_idx < vertex_idx)
    +     295        7163 :       return false;
    +     296             : 
    +     297        4559 :     if (constraint_idx < rhs.constraint_idx)
    +     298        1077 :       return true;
    +     299        3482 :     if (rhs.constraint_idx < constraint_idx)
    +     300        2052 :       return false;
    +     301        1430 :     return false;
    +     302             :   }
    +     303             : 
    +     304      133000 :   inline bool operator==(const Constraint& rhs) const {
    +     305      133000 :     return vertex_idx == rhs.vertex_idx && constraint_idx == rhs.constraint_idx;
    +     306             :   }
    +     307             : 
    +     308             :   size_t                  vertex_idx;
    +     309             :   size_t                  constraint_idx;
    +     310             :   Vertex::ConstraintValue value;
    +     311             : };
    +     312             : 
    +     313             : }  // namespace eth_trajectory_generation
    +     314             : 
    +     315             : #include "eth_trajectory_generation/impl/polynomial_optimization_linear_impl.h"
    +     316             : 
    +     317             : #endif  // ETH_TRAJECTORY_GENERATION_POLYNOMIAL_OPTIMIZATION_LINEAR_H_
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #ifndef ETH_TRAJECTORY_GENERATION_POLYNOMIAL_OPTIMIZATION_NONLINEAR_H_
    +      22             : #define ETH_TRAJECTORY_GENERATION_POLYNOMIAL_OPTIMIZATION_NONLINEAR_H_
    +      23             : 
    +      24             : #include <memory>
    +      25             : #include <nlopt.hpp>
    +      26             : 
    +      27             : #include <eth_trajectory_generation/polynomial_optimization_linear.h>
    +      28             : 
    +      29             : namespace eth_trajectory_generation
    +      30             : {
    +      31             : 
    +      32             : constexpr double kOptimizationTimeLowerBound = 0.01;
    +      33             : 
    +      34             : // Class holding all important parameters for nonlinear optimization.
    +      35             : struct NonlinearOptimizationParameters
    +      36             : {
    +      37             :   // Default parameters should be reasonable enough to use without further
    +      38             :   // fine-tuning.
    +      39             : 
    +      40             :   // Stopping criteria, if objective function changes less than absolute value.
    +      41             :   // Disabled if negative.
    +      42             :   double f_abs = -1;
    +      43             : 
    +      44             :   // Stopping criteria, if objective function changes less than relative value.
    +      45             :   // Disabled if negative.
    +      46             :   double f_rel = 0.05;
    +      47             : 
    +      48             :   // Stopping criteria, if state changes less than relative value.
    +      49             :   // Disabled if negative.
    +      50             :   double x_rel = -1;
    +      51             : 
    +      52             :   // Stopping criteria, if state changes less than absolute value.
    +      53             :   // Disabled if negative.
    +      54             :   double x_abs = -1;
    +      55             : 
    +      56             :   // Determines a fraction of the initial guess as initial step size.
    +      57             :   // Heuristic value if negative.
    +      58             :   double initial_stepsize_rel = 0.1;
    +      59             : 
    +      60             :   // Absolute tolerance, within an equality constraint is considered as met.
    +      61             :   double equality_constraint_tolerance = 1.0e-3;
    +      62             : 
    +      63             :   // Absolute tolerance, within an inequality constraint is considered as met.
    +      64             :   double inequality_constraint_tolerance = 0.1;
    +      65             : 
    +      66             :   // Maximum number of iterations. Disabled if negative.
    +      67             :   int max_iterations = 3000;
    +      68             : 
    +      69             :   // max execution time in secs
    +      70             :   double max_time = 1.0;
    +      71             : 
    +      72             :   // Penalty for the segment time.
    +      73             :   double time_penalty = 500.0;
    +      74             : 
    +      75             :   // Optimization algorithm used by nlopt, see
    +      76             :   // http://ab-initio.mit.edu/wiki/index.php/NLopt_Algorithms
    +      77             :   // Previous value was nlopt::LN_SBPLX, but we found that BOBYQA has slightly
    +      78             :   // better convergence and lower run-time in the unit tests.
    +      79             :   nlopt::algorithm algorithm = nlopt::LN_BOBYQA;
    +      80             : 
    +      81             :   // Random seed, if an optimization algorithm involving random numbers
    +      82             :   // is used (e.g. nlopt::GN_ISRES).
    +      83             :   // If set to a value < 0, a "random" (getTimeofday) value for the seed
    +      84             :   // is chosen.
    +      85             :   int random_seed = 0;
    +      86             : 
    +      87             :   // Decide whether to use soft constraints.
    +      88             :   bool use_soft_constraints = true;
    +      89             : 
    +      90             :   // Weights the relative violation of a soft constraint.
    +      91             :   double soft_constraint_weight = 100.0;
    +      92             : 
    +      93             :   enum TimeAllocMethod
    +      94             :   {
    +      95             :     kSquaredTime               = 0,
    +      96             :     kRichterTime               = 1,
    +      97             :     kMellingerOuterLoop        = 2,
    +      98             :     kSquaredTimeAndConstraints = 3,
    +      99             :     kRichterTimeAndConstraints = 4,
    +     100             :     kUnknown                   = 5,
    +     101             :   } time_alloc_method = kSquaredTimeAndConstraints;
    +     102             : 
    +     103             :   bool print_debug_info                 = false;
    +     104             :   bool print_debug_info_time_allocation = false;
    +     105             : };
    +     106             : 
    +     107             : struct OptimizationInfo
    +     108             : {
    +     109             :   int                     n_iterations          = 0;
    +     110             :   int                     stopping_reason       = nlopt::FAILURE;
    +     111             :   double                  cost_trajectory       = 0.0;
    +     112             :   double                  cost_time             = 0.0;
    +     113             :   double                  cost_soft_constraints = 0.0;
    +     114             :   double                  optimization_time     = 0.0;
    +     115             :   std::map<int, Extremum> maxima;
    +     116             : };
    +     117             : 
    +     118             : std::ostream& operator<<(std::ostream& stream, const OptimizationInfo& val);
    +     119             : 
    +     120             : // Implements a nonlinear optimization of the unconstrained optimization
    +     121             : // of paths consisting of polynomial segments as described in [1]
    +     122             : // [1]: Polynomial Trajectory Planning for Aggressive Quadrotor Flight in Dense
    +     123             : // Indoor Environments.
    +     124             : // Charles Richter, Adam Bry, and Nicholas Roy. In ISRR 2013
    +     125             : // _N specifies the number of coefficients for the underlying polynomials.
    +     126             : template <int _N = 10>
    +     127             : class PolynomialOptimizationNonLinear {
    +     128             :   static_assert(_N % 2 == 0, "The number of coefficients has to be even.");
    +     129             : 
    +     130             : public:
    +     131             :   enum
    +     132             :   {
    +     133             :     N = _N
    +     134             :   };
    +     135             : 
    +     136             :   // Sets up the nonlinear optimization problem.
    +     137             :   // Input: dimension = Spatial dimension of the problem. Usually 1 or 3.
    +     138             :   // Input: parameters = Parameters for the optimization problem.
    +     139             :   // Input: optimize_time_only = Specifies whether the optimization is run
    +     140             :   // over the segment times only.
    +     141             :   // If true, only the segment times are optimization parameters, and the
    +     142             :   // remaining free parameters are found by solving the linear optimization
    +     143             :   // problem with the given segment times in every iteration.
    +     144             :   // If false, both segment times and free derivatives become optimization
    +     145             :   // variables. The latter case is theoretically correct, but may result in
    +     146             :   // more iterations.
    +     147             :   PolynomialOptimizationNonLinear(size_t dimension, const NonlinearOptimizationParameters& parameters);
    +     148             : 
    +     149             :   // Sets up the optimization problem from a vector of Vertex objects and
    +     150             :   // a vector of times between the vertices.
    +     151             :   // Input: vertices = Vector containing the vertices defining the support
    +     152             :   // points and constraints of the path.
    +     153             :   // Input: segment_times = Vector containing an initial guess of the time
    +     154             :   // between two vertices. Thus, its size is size(vertices) - 1.
    +     155             :   // Input: derivative_to_optimize = Specifies the derivative of which the
    +     156             :   // cost is optimized.
    +     157             :   bool setupFromVertices(const Vertex::Vector& vertices, const std::vector<double>& segment_times,
    +     158             :                          int derivative_to_optimize = PolynomialOptimization<N>::kHighestDerivativeToOptimize);
    +     159             : 
    +     160             :   // Adds a constraint for the maximum of magnitude to the optimization
    +     161             :   // problem.
    +     162             :   // Input: derivative_order = Order of the derivative, for which the
    +     163             :   // constraint should be checked. Usually velocity (=1) or acceleration (=2).
    +     164             :   // maximum_value = Maximum magnitude of the specified derivative.
    +     165             :   bool addMaximumMagnitudeConstraint(int dimension, int derivative_order, double maximum_value);
    +     166             : 
    +     167             :   // Solves the linear optimization problem according to [1].
    +     168             :   // The solver is re-used for every dimension, which means:
    +     169             :   //  - segment times are equal for each dimension.
    +     170             :   //  - each dimension has the same type/set of constraints. Their values can of
    +     171             :   // course differ.
    +     172             :   bool solveLinear();
    +     173             : 
    +     174             :   // Runs the optimization until one of the stopping criteria in
    +     175             :   // NonlinearOptimizationParameters and the constraints are met.
    +     176             :   int optimize();
    +     177             : 
    +     178             :   // Get the resulting trajectory out -- prefer this as the main method
    +     179             :   // to get the results of the optimization, over getting the reference
    +     180             :   // to the linear optimizer.
    +     181          10 :   void getTrajectory(Trajectory* trajectory) const {
    +     182          10 :     poly_opt_.getTrajectory(trajectory);
    +     183          10 :   }
    +     184             : 
    +     185             :   // Returns a const reference to the underlying linear optimization
    +     186             :   // object.
    +     187             :   const PolynomialOptimization<N>& getPolynomialOptimizationRef() const {
    +     188             :     return poly_opt_;
    +     189             :   }
    +     190             : 
    +     191             :   // Returns a non-const reference to the underlying linear optimization
    +     192             :   // object.
    +     193          10 :   PolynomialOptimization<N>& getPolynomialOptimizationRef() {
    +     194          10 :     return poly_opt_;
    +     195             :   }
    +     196             : 
    +     197          30 :   OptimizationInfo getOptimizationInfo() const {
    +     198          30 :     return optimization_info_;
    +     199             :   }
    +     200             : 
    +     201             :   // Functions for optimization, but may be useful for diagnostics outside.
    +     202             :   // Gets the trajectory cost (same as the cost in the linear problem).
    +     203             :   double getCost() const;
    +     204             : 
    +     205             :   // Gets the cost including the soft constraints and time costs, should be
    +     206             :   // the same cost function as used in the full optimization. Returns the same
    +     207             :   // metrics regardless of time estimation method set.
    +     208             :   double getTotalCostWithSoftConstraints() const;
    +     209             : 
    +     210             :   void scaleSegmentTimesWithViolation();
    +     211             : 
    +     212             : private:
    +     213             :   // Holds the data for constraint evaluation, since these methods are
    +     214             :   // static.
    +     215             :   struct ConstraintData
    +     216             :   {
    +     217             :     PolynomialOptimizationNonLinear<N>* this_object;
    +     218             :     int                                 derivative;
    +     219             :     int                                 dimension;
    +     220             :     double                              value;
    +     221             :   };
    +     222             : 
    +     223             :   // Objective function for the time-only version.
    +     224             :   // Input: segment_times = Segment times in the current iteration.
    +     225             :   // Input: gradient = Gradient of the objective function w.r.t. changes of
    +     226             :   // parameters. We can't compute the gradient analytically here.
    +     227             :   // Thus, only gradient-free optimization methods are possible.
    +     228             :   // Input: Custom data pointer = In our case, it's an ConstraintData object.
    +     229             :   // Output: Cost = based on the parameters passed in.
    +     230             :   static double objectiveFunctionTime(const std::vector<double>& segment_times, std::vector<double>& gradient, void* data);
    +     231             : 
    +     232             :   // Objective function for the time-only Mellinger Outer Loop.
    +     233             :   // Input: segment_times = Segment times in the current iteration.
    +     234             :   // Input: gradient = Gradient of the objective function w.r.t. changes of
    +     235             :   // parameters. We can't compute the gradient analytically here.
    +     236             :   // Thus, only gradient-free optimization methods are possible.
    +     237             :   // Input: Custom data pointer = In our case, it's an ConstraintData object.
    +     238             :   // Output: Cost = based on the parameters passed in.
    +     239             :   static double objectiveFunctionTimeMellingerOuterLoop(const std::vector<double>& segment_times, std::vector<double>& gradient, void* data);
    +     240             : 
    +     241             :   // Objective function for the version optimizing segment times and free
    +     242             :   // derivatives.
    +     243             :   // Input: optimization_variables = Optimization variables times in the
    +     244             :   // current iteration.
    +     245             :   // The variables (time, derivatives) are stacked as follows: [segment_times
    +     246             :   // derivatives_dim_0 ... derivatives_dim_N]
    +     247             :   // Input: gradient = Gradient of the objective function wrt. changes of
    +     248             :   // parameters. We can't compute the gradient analytically here.
    +     249             :   // Thus, only gradient free optimization methods are possible.
    +     250             :   // Input: data = Custom data pointer. In our case, it's an ConstraintData
    +     251             :   // object.
    +     252             :   // Output: Cost based on the parameters passed in.
    +     253             :   static double objectiveFunctionTimeAndConstraints(const std::vector<double>& optimization_variables, std::vector<double>& gradient, void* data);
    +     254             : 
    +     255             :   // Evaluates the maximum magnitude constraint at the current value of
    +     256             :   // the optimization variables.
    +     257             :   // All input parameters are ignored, all information is contained in data.
    +     258             :   static double evaluateMaximumMagnitudeConstraint(const std::vector<double>& optimization_variables, std::vector<double>& gradient, void* data);
    +     259             : 
    +     260             :   // Does the actual optimization work for the time-only version.
    +     261             :   int optimizeTime();
    +     262             :   int optimizeTimeMellingerOuterLoop();
    +     263             : 
    +     264             :   // Does the actual optimization work for the full optimization version.
    +     265             :   int optimizeTimeAndFreeConstraints();
    +     266             : 
    +     267             :   // Evaluates the maximum magnitude constraints as soft constraints and
    +     268             :   // returns a cost, depending on the violation of the constraints.
    +     269             :   // cost_i = min(maximum_cost, exp(abs_violation_i / max_allowed_i * weight))
    +     270             :   //  cost = sum(cost_i)
    +     271             :   // Input: inequality_constraints = Vector of ConstraintData shared_ptrs,
    +     272             :   // describing the constraints.
    +     273             :   // Input: weight = Multiplicative weight of the constraint violation.
    +     274             :   // Input: maximum_cost = Upper bound of the cost. Necessary, since exp of a
    +     275             :   // high violation can end up in inf.
    +     276             :   // Output: Sum of the costs per constraint.
    +     277             :   double evaluateMaximumMagnitudeAsSoftConstraint(const std::vector<std::shared_ptr<ConstraintData>>& inequality_constraints, double weight,
    +     278             :                                                   double maximum_cost = 1.0e12) const;
    +     279             : 
    +     280             :   // Set lower and upper bounds on the optimization parameters
    +     281             :   void setFreeEndpointDerivativeHardConstraints(const Vertex::Vector& vertices, std::vector<double>* lower_bounds, std::vector<double>* upper_bounds);
    +     282             : 
    +     283             :   // Computes the gradients by doing forward difference!
    +     284             :   double getCostAndGradientMellinger(std::vector<double>* gradients);
    +     285             : 
    +     286             :   // Computes the total trajectory time.
    +     287             :   static double computeTotalTrajectoryTime(const std::vector<double>& segment_times);
    +     288             : 
    +     289             :   // nlopt optimization object.
    +     290             :   std::shared_ptr<nlopt::opt> nlopt_;
    +     291             : 
    +     292             :   // Underlying linear optimization object.
    +     293             :   PolynomialOptimization<N> poly_opt_;
    +     294             : 
    +     295             :   // Parameters for the nonlinear optimzation.
    +     296             :   NonlinearOptimizationParameters optimization_parameters_;
    +     297             : 
    +     298             :   // Holds the data for evaluating inequality constraints.
    +     299             :   std::vector<std::shared_ptr<ConstraintData>> inequality_constraints_;
    +     300             : 
    +     301             :   OptimizationInfo optimization_info_;
    +     302             : };
    +     303             : 
    +     304             : }  // namespace eth_trajectory_generation
    +     305             : 
    +     306             : namespace nlopt
    +     307             : {
    +     308             : // Convenience function that turns nlopt's return values into something
    +     309             : // readable.
    +     310             : std::string returnValueToString(int return_value);
    +     311             : }  // namespace nlopt
    +     312             : 
    +     313             : #endif  // ETH_TRAJECTORY_GENERATION_POLYNOMIAL_OPTIMIZATION_NONLINEAR_H_
    +     314             : 
    +     315             : #include "eth_trajectory_generation/impl/polynomial_optimization_nonlinear_impl.h"
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::Segment::Segment(int, int)15
    eth_trajectory_generation::Segment::N() const277
    eth_trajectory_generation::Segment::Segment(eth_trajectory_generation::Segment const&)504
    eth_trajectory_generation::Segment::D() const1067
    eth_trajectory_generation::Segment::getTime() const13536
    eth_trajectory_generation::Segment::setTime(double)72602
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    eth_trajectory_generation::Segment::setTime(double)72602
    eth_trajectory_generation::Segment::Segment(eth_trajectory_generation::Segment const&)504
    eth_trajectory_generation::Segment::Segment(int, int)15
    eth_trajectory_generation::Segment::D() const1067
    eth_trajectory_generation::Segment::N() const277
    eth_trajectory_generation::Segment::getTime() const13536
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #ifndef ETH_TRAJECTORY_GENERATION_SEGMENT_H_
    +      22             : #define ETH_TRAJECTORY_GENERATION_SEGMENT_H_
    +      23             : 
    +      24             : #include <Eigen/Core>
    +      25             : #include <chrono>
    +      26             : #include <map>
    +      27             : #include <vector>
    +      28             : 
    +      29             : #include <eth_trajectory_generation/misc.h>
    +      30             : #include <eth_trajectory_generation/extremum.h>
    +      31             : #include <eth_trajectory_generation/motion_defines.h>
    +      32             : #include <eth_trajectory_generation/polynomial.h>
    +      33             : 
    +      34             : namespace eth_trajectory_generation
    +      35             : {
    +      36             : 
    +      37             : constexpr double kNumNSecPerSec = 1.0e9;
    +      38             : constexpr double kNumSecPerNsec = 1.0e-9;
    +      39             : 
    +      40             : // Class holding the properties of parametric segment of a path.
    +      41             : // Time of the segment and one polynomial for each dimension.
    +      42             : //    X------------X---------------X
    +      43             : //  vertex             segment
    +      44             : class Segment {
    +      45             : public:
    +      46             :   typedef std::vector<Segment> Vector;
    +      47             : 
    +      48          15 :   Segment(int N, int D) : time_(0.0), N_(N), D_(D) {
    +      49          15 :     polynomials_.resize(D_, Polynomial(N_));
    +      50          15 :   }
    +      51         504 :   Segment(const Segment& segment) = default;
    +      52             : 
    +      53             :   bool        operator==(const Segment& rhs) const;
    +      54             :   inline bool operator!=(const Segment& rhs) const {
    +      55             :     return !operator==(rhs);
    +      56             :   }
    +      57             : 
    +      58        1067 :   int D() const {
    +      59        1067 :     return D_;
    +      60             :   }
    +      61         277 :   int N() const {
    +      62         277 :     return N_;
    +      63             :   }
    +      64       13536 :   double getTime() const {
    +      65       13536 :     return time_;
    +      66             :   }
    +      67             :   uint64_t getTimeNSec() const {
    +      68             :     return static_cast<uint64_t>(kNumNSecPerSec * time_);
    +      69             :   }
    +      70             : 
    +      71       72602 :   void setTime(double time_sec) {
    +      72       72602 :     time_ = time_sec;
    +      73       72602 :   }
    +      74             :   void setTimeNSec(uint64_t time_ns) {
    +      75             :     time_ = time_ns * kNumSecPerNsec;
    +      76             :   }
    +      77             : 
    +      78             :   Polynomial& operator[](size_t idx);
    +      79             : 
    +      80             :   const Polynomial& operator[](size_t idx) const;
    +      81             : 
    +      82             :   const Polynomial::Vector& getPolynomialsRef() const {
    +      83             :     return polynomials_;
    +      84             :   }
    +      85             : 
    +      86             :   Eigen::VectorXd evaluate(double t, int derivative_order = derivative_order::POSITION) const;
    +      87             : 
    +      88             :   // Computes the candidates for the minimum and maximum magnitude of a single
    +      89             :   // segment in the specified derivative. In the 1D case, it simply returns the
    +      90             :   // roots of the derivative of the segment-polynomial. For higher dimensions,
    +      91             :   // e.g. 3D, we need to find the extrema of \sqrt{x(t)^2 + y(t)^2 + z(t)^2}
    +      92             :   // where x, y, z are polynomials describing the position or the derivative,
    +      93             :   // specified by Derivative. Taking the derivative yields
    +      94             :   // 2 x \dot{x} + 2 y \dot{y} + 2 z \dot{z}, which needs to be zero at the
    +      95             :   // extrema. The multiplication of two polynomials is a convolution of their
    +      96             :   // coefficients. Re-ordering by their powers and addition yields a polynomial,
    +      97             :   // for which we can compute the roots.
    +      98             :   // Input: derivative = Derivative of position, in which to find the maxima.
    +      99             :   // Input: t_start = Only maxima >= t_start are returned. Usually set to 0.
    +     100             :   // Input: t_stop = Only maxima <= t_stop are returned. Usually set to segment
    +     101             :   // time.
    +     102             :   // Input: dimensions = Vector containing the dimensions that are evaluated.
    +     103             :   // Usually [0, 1, 2] for position, [3] for yaw.
    +     104             :   // Output: candidates = Vector containing the candidate extrema times.
    +     105             :   // Returns whether the computation succeeded -- false means no candidates
    +     106             :   // were found by Jenkins-Traub.
    +     107             :   bool computeMinMaxMagnitudeCandidateTimes(int derivative, double t_start, double t_end, const std::vector<int>& dimensions,
    +     108             :                                             std::vector<double>* candidate_times) const;
    +     109             : 
    +     110             :   // Convenience function. Additionally evaluates the candidate times.
    +     111             :   bool computeMinMaxMagnitudeCandidates(int derivative, double t_start, double t_end, const std::vector<int>& dimensions,
    +     112             :                                         std::vector<Extremum>* candidates) const;
    +     113             : 
    +     114             :   // Convenience function. Evaluates the magnitudes between t_start and t_end
    +     115             :   // for a set of candidates for given dimensions.
    +     116             :   bool selectMinMaxMagnitudeFromCandidates(int derivative, double t_start, double t_end, const std::vector<int>& dimensions,
    +     117             :                                            const std::vector<Extremum>& candidates, Extremum* minimum, Extremum* maximum) const;
    +     118             : 
    +     119             :   // Split a segment to get a segment with the specified dimension.
    +     120             :   bool getSegmentWithSingleDimension(int dimension, Segment* new_segment) const;
    +     121             :   // Compose this segment and another segment to a new segment.
    +     122             :   bool getSegmentWithAppendedDimension(const Segment& segment_to_append, Segment* new_segment) const;
    +     123             : 
    +     124             :   // Offset this segment by vector A_r_B.
    +     125             :   bool offsetSegment(const Eigen::VectorXd& A_r_B);
    +     126             : 
    +     127             : protected:
    +     128             :   Polynomial::Vector polynomials_;
    +     129             :   double             time_;
    +     130             : 
    +     131             : private:
    +     132             :   int N_;  // Number of coefficients.
    +     133             :   int D_;  // Number of dimensions.
    +     134             : };
    +     135             : 
    +     136             : // Prints the properties of the segment.
    +     137             : // Polynomial coefficients are printed with increasing powers,
    +     138             : // i.e. c_0 + c_1*t ... c_{N-1} * t^{N-1}
    +     139             : void printSegment(std::ostream& stream, const Segment& s, int derivative);
    +     140             : 
    +     141             : std::ostream& operator<<(std::ostream& stream, const Segment& s);
    +     142             : 
    +     143             : std::ostream& operator<<(std::ostream& stream, const std::vector<Segment>& segments);
    +     144             : 
    +     145             : }  // namespace eth_trajectory_generation
    +     146             : 
    +     147             : #endif  // ETH_TRAJECTORY_GENERATION_SEGMENT_H_
    +
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Add(double)0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Accumulator()0
    eth_trajectory_generation::timing::TimerMapValue::TimerMapValue()0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::RollingMean() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::LazyVariance() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::TotalSamples() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Max() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Min() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Sum() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Mean() const0
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Add(double)0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Accumulator()0
    eth_trajectory_generation::timing::TimerMapValue::TimerMapValue()0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::RollingMean() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::LazyVariance() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::TotalSamples() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Max() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Min() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Sum() const0
    eth_trajectory_generation::timing::Accumulator<double, double, 50>::Mean() const0
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : /* Adapted from Paul Furgale Schweizer Messer sm_timing */
    +      22             : 
    +      23             : #ifndef ETH_TRAJECTORY_GENERATION_TIMING_H_
    +      24             : #define ETH_TRAJECTORY_GENERATION_TIMING_H_
    +      25             : 
    +      26             : #include <algorithm>
    +      27             : #include <chrono>
    +      28             : #include <limits>
    +      29             : #include <map>
    +      30             : #include <string>
    +      31             : #include <vector>
    +      32             : 
    +      33             : namespace eth_trajectory_generation
    +      34             : {
    +      35             : namespace timing
    +      36             : {
    +      37             : 
    +      38             : template <typename T, typename Total, int N>
    +      39             : class Accumulator {
    +      40             : public:
    +      41           0 :   Accumulator() : window_samples_(0), total_samples_(0), window_sum_(0), sum_(0), min_(std::numeric_limits<T>::max()), max_(std::numeric_limits<T>::min()) {
    +      42           0 :   }
    +      43             : 
    +      44           0 :   void Add(T sample) {
    +      45           0 :     if (window_samples_ < N) {
    +      46           0 :       samples_[window_samples_++] = sample;
    +      47           0 :       window_sum_ += sample;
    +      48             :     } else {
    +      49           0 :       T& oldest = samples_[window_samples_++ % N];
    +      50           0 :       window_sum_ += sample - oldest;
    +      51           0 :       oldest = sample;
    +      52             :     }
    +      53           0 :     sum_ += sample;
    +      54           0 :     ++total_samples_;
    +      55           0 :     if (sample > max_) {
    +      56           0 :       max_ = sample;
    +      57             :     }
    +      58           0 :     if (sample < min_) {
    +      59           0 :       min_ = sample;
    +      60             :     }
    +      61           0 :   }
    +      62             : 
    +      63           0 :   int TotalSamples() const {
    +      64           0 :     return total_samples_;
    +      65             :   }
    +      66             : 
    +      67           0 :   double Sum() const {
    +      68           0 :     return sum_;
    +      69             :   }
    +      70             : 
    +      71           0 :   double Mean() const {
    +      72           0 :     return sum_ / total_samples_;
    +      73             :   }
    +      74             : 
    +      75           0 :   double RollingMean() const {
    +      76           0 :     return window_sum_ / std::min(window_samples_, N);
    +      77             :   }
    +      78             : 
    +      79           0 :   double Max() const {
    +      80           0 :     return max_;
    +      81             :   }
    +      82             : 
    +      83           0 :   double Min() const {
    +      84           0 :     return min_;
    +      85             :   }
    +      86             : 
    +      87           0 :   double LazyVariance() const {
    +      88           0 :     if (window_samples_ == 0) {
    +      89           0 :       return 0.0;
    +      90             :     }
    +      91           0 :     double var  = 0;
    +      92           0 :     double mean = RollingMean();
    +      93           0 :     for (int i = 0; i < std::min(window_samples_, N); ++i) {
    +      94           0 :       var += (samples_[i] - mean) * (samples_[i] - mean);
    +      95             :     }
    +      96           0 :     var /= std::min(window_samples_, N);
    +      97           0 :     return var;
    +      98             :   }
    +      99             : 
    +     100             : private:
    +     101             :   int   window_samples_;
    +     102             :   int   total_samples_;
    +     103             :   Total window_sum_;
    +     104             :   Total sum_;
    +     105             :   T     min_;
    +     106             :   T     max_;
    +     107             :   T     samples_[N];
    +     108             : };
    +     109             : 
    +     110             : struct TimerMapValue
    +     111             : {
    +     112           0 :   TimerMapValue() {
    +     113           0 :   }
    +     114             : 
    +     115             :   // Create an accumulator with specified window size.
    +     116             :   Accumulator<double, double, 50> acc_;
    +     117             : };
    +     118             : 
    +     119             : // A class that has the timer interface but does nothing. Swapping this in in
    +     120             : // place of the Timer class (say with a typedef) should allow one to disable
    +     121             : // timing. Because all of the functions are inline, they should just disappear.
    +     122             : class DummyTimer {
    +     123             : public:
    +     124             :   DummyTimer(size_t /*handle*/, bool /*constructStopped*/ = false) {
    +     125             :   }
    +     126             :   DummyTimer(std::string const& /*tag*/, bool /*constructStopped*/ = false) {
    +     127             :   }
    +     128             :   ~DummyTimer() {
    +     129             :   }
    +     130             : 
    +     131             :   void Start() {
    +     132             :   }
    +     133             :   void Stop() {
    +     134             :   }
    +     135             :   bool IsTiming() {
    +     136             :     return false;
    +     137             :   }
    +     138             : };
    +     139             : 
    +     140             : class Timer {
    +     141             : public:
    +     142             :   Timer(size_t handle, bool constructStopped = false);
    +     143             :   Timer(std::string const& tag, bool constructStopped = false);
    +     144             :   ~Timer();
    +     145             : 
    +     146             :   void Start();
    +     147             :   void Stop();
    +     148             :   bool IsTiming() const;
    +     149             : 
    +     150             : private:
    +     151             :   std::chrono::time_point<std::chrono::system_clock> time_;
    +     152             : 
    +     153             :   bool   timing_;
    +     154             :   size_t handle_;
    +     155             : };
    +     156             : 
    +     157             : class Timing {
    +     158             : public:
    +     159             :   typedef std::map<std::string, size_t> map_t;
    +     160             :   friend class Timer;
    +     161             :   // Definition of static functions to query the timers.
    +     162             :   static size_t       GetHandle(std::string const& tag);
    +     163             :   static std::string  GetTag(size_t handle);
    +     164             :   static double       GetTotalSeconds(size_t handle);
    +     165             :   static double       GetTotalSeconds(std::string const& tag);
    +     166             :   static double       GetMeanSeconds(size_t handle);
    +     167             :   static double       GetMeanSeconds(std::string const& tag);
    +     168             :   static size_t       GetNumSamples(size_t handle);
    +     169             :   static size_t       GetNumSamples(std::string const& tag);
    +     170             :   static double       GetVarianceSeconds(size_t handle);
    +     171             :   static double       GetVarianceSeconds(std::string const& tag);
    +     172             :   static double       GetMinSeconds(size_t handle);
    +     173             :   static double       GetMinSeconds(std::string const& tag);
    +     174             :   static double       GetMaxSeconds(size_t handle);
    +     175             :   static double       GetMaxSeconds(std::string const& tag);
    +     176             :   static double       GetHz(size_t handle);
    +     177             :   static double       GetHz(std::string const& tag);
    +     178             :   static void         Print(std::ostream& out);
    +     179             :   static std::string  Print();
    +     180             :   static std::string  SecondsToTimeString(double seconds);
    +     181             :   static void         Reset();
    +     182             :   static const map_t& GetTimers() {
    +     183             :     return Instance().tag_map_;
    +     184             :   }
    +     185             : 
    +     186             : private:
    +     187             :   void AddTime(size_t handle, double seconds);
    +     188             : 
    +     189             :   static Timing& Instance();
    +     190             : 
    +     191             :   Timing();
    +     192             :   ~Timing();
    +     193             : 
    +     194             :   typedef std::vector<TimerMapValue> list_t;
    +     195             : 
    +     196             :   list_t timers_;
    +     197             :   map_t  tag_map_;
    +     198             :   size_t max_tag_length_;
    +     199             : };
    +     200             : 
    +     201             : #if DISABLE_TIMING
    +     202             : typedef DummyTimer DebugTimer;
    +     203             : #else
    +     204             : typedef Timer DebugTimer;
    +     205             : #endif
    +     206             : 
    +     207             : // Small timer for benchmarking.
    +     208             : class MiniTimer {
    +     209             : public:
    +     210             :   MiniTimer() : start_(std::chrono::system_clock::now()) {
    +     211             :   }
    +     212             : 
    +     213             :   void start() {
    +     214             :     start_ = std::chrono::system_clock::now();
    +     215             :   }
    +     216             : 
    +     217             :   double stop() {
    +     218             :     end_ = std::chrono::system_clock::now();
    +     219             :     return getTime();
    +     220             :   }
    +     221             : 
    +     222             :   double getTime() const {
    +     223             :     if (end_ < start_) {
    +     224             :       return 0.0;
    +     225             :     }
    +     226             :     std::chrono::duration<double> duration = end_ - start_;
    +     227             :     return duration.count();
    +     228             :   }
    +     229             : 
    +     230             : private:
    +     231             :   std::chrono::time_point<std::chrono::system_clock> start_;
    +     232             :   std::chrono::time_point<std::chrono::system_clock> end_;
    +     233             : };
    +     234             : 
    +     235             : }  // namespace timing
    +     236             : }  // namespace eth_trajectory_generation
    +     237             : 
    +     238             : #endif  // ETH_TRAJECTORY_GENERATION_TIMING_H_
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    eth_trajectory_generation::Trajectory::clear()0
    eth_trajectory_generation::Trajectory::getSegments(std::vector<eth_trajectory_generation::Segment, std::allocator<eth_trajectory_generation::Segment> >*) const0
    eth_trajectory_generation::Trajectory::K() const0
    eth_trajectory_generation::Trajectory::N() const0
    eth_trajectory_generation::Trajectory::segments() const0
    eth_trajectory_generation::Trajectory::getMaxTime() const20
    eth_trajectory_generation::Trajectory::getMinTime() const20
    eth_trajectory_generation::Trajectory::addSegments(std::vector<eth_trajectory_generation::Segment, std::allocator<eth_trajectory_generation::Segment> > const&)25
    eth_trajectory_generation::Trajectory::setSegments(std::vector<eth_trajectory_generation::Segment, std::allocator<eth_trajectory_generation::Segment> > const&)25
    eth_trajectory_generation::Trajectory::Trajectory()25
    eth_trajectory_generation::Trajectory::~Trajectory()25
    eth_trajectory_generation::Trajectory::D() const1278
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    eth_trajectory_generation::Trajectory::addSegments(std::vector<eth_trajectory_generation::Segment, std::allocator<eth_trajectory_generation::Segment> > const&)25
    eth_trajectory_generation::Trajectory::setSegments(std::vector<eth_trajectory_generation::Segment, std::allocator<eth_trajectory_generation::Segment> > const&)25
    eth_trajectory_generation::Trajectory::clear()0
    eth_trajectory_generation::Trajectory::Trajectory()25
    eth_trajectory_generation::Trajectory::~Trajectory()25
    eth_trajectory_generation::Trajectory::getMaxTime() const20
    eth_trajectory_generation::Trajectory::getMinTime() const20
    eth_trajectory_generation::Trajectory::getSegments(std::vector<eth_trajectory_generation::Segment, std::allocator<eth_trajectory_generation::Segment> >*) const0
    eth_trajectory_generation::Trajectory::D() const1278
    eth_trajectory_generation::Trajectory::K() const0
    eth_trajectory_generation::Trajectory::N() const0
    eth_trajectory_generation::Trajectory::segments() const0
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #ifndef ETH_TRAJECTORY_GENERATION_TRAJECTORY_H_
    +      22             : #define ETH_TRAJECTORY_GENERATION_TRAJECTORY_H_
    +      23             : 
    +      24             : #include <eth_trajectory_generation/extremum.h>
    +      25             : #include <eth_trajectory_generation/segment.h>
    +      26             : #include <eth_trajectory_generation/vertex.h>
    +      27             : 
    +      28             : namespace eth_trajectory_generation
    +      29             : {
    +      30             : 
    +      31             : // Holder class for trajectories of D dimensions, of K segments, and
    +      32             : // polynomial order N-1. (N=12 -> 11th order polynomial, with 12 coefficients).
    +      33             : class Trajectory {
    +      34             : public:
    +      35          25 :   Trajectory() : D_(0), N_(0), max_time_(0.0) {
    +      36          25 :   }
    +      37          25 :   ~Trajectory() {
    +      38          25 :   }
    +      39             : 
    +      40             :   bool        operator==(const Trajectory& rhs) const;
    +      41             :   inline bool operator!=(const Trajectory& rhs) const {
    +      42             :     return !operator==(rhs);
    +      43             :   }
    +      44             : 
    +      45        1278 :   int D() const {
    +      46        1278 :     return D_;
    +      47             :   }
    +      48           0 :   int N() const {
    +      49           0 :     return N_;
    +      50             :   }
    +      51           0 :   int K() const {
    +      52           0 :     return segments_.size();
    +      53             :   }
    +      54             : 
    +      55             :   bool empty() const {
    +      56             :     return segments_.empty();
    +      57             :   }
    +      58           0 :   void clear() {
    +      59           0 :     segments_.clear();
    +      60           0 :     D_        = 0;
    +      61           0 :     N_        = 0;
    +      62           0 :     max_time_ = 0.0;
    +      63           0 :   }
    +      64             : 
    +      65          25 :   void setSegments(const Segment::Vector& segments) {
    +      66          25 :     CHECK(!segments.empty());
    +      67             :     // Reset states.
    +      68          25 :     D_        = segments.front().D();
    +      69          25 :     N_        = segments.front().N();
    +      70          25 :     max_time_ = 0.0;
    +      71          25 :     segments_.clear();
    +      72             : 
    +      73          25 :     addSegments(segments);
    +      74          25 :   }
    +      75             : 
    +      76          25 :   void addSegments(const Segment::Vector& segments) {
    +      77         277 :     for (const Segment& segment : segments) {
    +      78         252 :       CHECK_EQ(segment.D(), D_);
    +      79         252 :       CHECK_EQ(segment.N(), N_);
    +      80         252 :       max_time_ += segment.getTime();
    +      81             :     }
    +      82          25 :     segments_.insert(segments_.end(), segments.begin(), segments.end());
    +      83          25 :   }
    +      84             : 
    +      85           0 :   void getSegments(Segment::Vector* segments) const {
    +      86           0 :     CHECK_NOTNULL(segments);
    +      87           0 :     *segments = segments_;
    +      88           0 :   }
    +      89             : 
    +      90           0 :   const Segment::Vector& segments() const {
    +      91           0 :     return segments_;
    +      92             :   }
    +      93             : 
    +      94          20 :   double getMinTime() const {
    +      95          20 :     return 0.0;
    +      96             :   }
    +      97          20 :   double getMaxTime() const {
    +      98          20 :     return max_time_;
    +      99             :   }
    +     100             :   std::vector<double> getSegmentTimes() const;
    +     101             : 
    +     102             :   // Functions to create new trajectories by splitting (getting a NEW trajectory
    +     103             :   // with a single dimension) or compositing (create a new trajectory with
    +     104             :   // another trajectory appended).
    +     105             :   Trajectory getTrajectoryWithSingleDimension(int dimension) const;
    +     106             :   bool       getTrajectoryWithAppendedDimension(const Trajectory& trajectory_to_append, Trajectory* new_trajectory) const;
    +     107             : 
    +     108             :   // Add trajectories with same dimensions and coefficients to this trajectory.
    +     109             :   bool addTrajectories(const std::vector<Trajectory>& trajectories, Trajectory* merged) const;
    +     110             : 
    +     111             :   // Offset this trajectory by vector A_r_B.
    +     112             :   bool offsetTrajectory(const Eigen::VectorXd& A_r_B);
    +     113             : 
    +     114             :   // Evaluate the vertex constraint at time t.
    +     115             :   Vertex getVertexAtTime(double t, int max_derivative_order) const;
    +     116             :   // Evaluate the vertex constraint at start time.
    +     117             :   Vertex getStartVertex(int max_derivative_order) const;
    +     118             :   // Evaluate the vertex constraint at goal time.
    +     119             :   Vertex getGoalVertex(int max_derivative_order) const;
    +     120             :   // Evaluate all underlying vertices.
    +     121             :   bool getVertices(int max_derivative_order_pos, int max_derivative_order_yaw, Vertex::Vector* pos_vertices, Vertex::Vector* yaw_vertices) const;
    +     122             :   bool getVertices(int max_derivative_order, Vertex::Vector* vertices) const;
    +     123             : 
    +     124             :   // Evaluation functions.
    +     125             :   // Evaluate at a single time, and a single derivative. Return type of
    +     126             :   // dimension D.
    +     127             :   Eigen::VectorXd evaluate(double t, int derivative_order = derivative_order::POSITION) const;
    +     128             : 
    +     129             :   // Evaluates the trajectory in a specified range and derivative.
    +     130             :   // Outputs are a vector of the sampled values (size of VectorXd is D) by
    +     131             :   // time and optionally the actual sampling times.
    +     132             :   void evaluateRange(double t_start, double t_end, double dt, int derivative_order, std::vector<Eigen::VectorXd>* result,
    +     133             :                      std::vector<double>* sampling_times = nullptr) const;
    +     134             : 
    +     135             :   // Compute the analytic minimum and maximum of magnitude for a given
    +     136             :   // derivative and dimensions, e.g., [0, 1, 2] for position or [3] for yaw.
    +     137             :   // Returns false in case of extremum calculation failure.
    +     138             :   bool computeMinMaxMagnitude(int derivative, const std::vector<int>& dimensions, Extremum* minimum, Extremum* maximum, int seg) const;
    +     139             : 
    +     140             :   // Compute the analytic minimum and maximum of magnitude for a given
    +     141             :   // derivative and dimensions, e.g., [0, 1, 2] for position or [3] for yaw.
    +     142             :   // Returns false in case of extremum calculation failure.
    +     143             :   bool computeMinMaxMagnitude(int derivative, const std::vector<int>& dimensions, Extremum* minimum, Extremum* maximum) const;
    +     144             : 
    +     145             :   // Compute max velocity and max acceleration. Shorthand for the method above.
    +     146             :   bool computeMaxDerivativesHorizontal(double* v_max, double* a_max, double* j_max, int seg) const;
    +     147             :   bool computeMaxDerivativesHorizontal(double* v_max, double* a_max, double* j_max) const;
    +     148             : 
    +     149             :   bool computeMaxDerivativesVertical(double* v_max, double* a_max, double* j_max, int seg) const;
    +     150             :   bool computeMaxDerivativesVertical(double* v_max, double* a_max, double* j_max) const;
    +     151             : 
    +     152             :   bool computeMaxDerivativesHeading(double* v_max, double* a_max, double* j_max, int seg) const;
    +     153             :   bool computeMaxDerivativesHeading(double* v_max, double* a_max, double* j_max) const;
    +     154             : 
    +     155             :   // This method SCALES the segment times evenly.
    +     156             :   bool scaleSegmentTimes(double scaling);
    +     157             : 
    +     158             :   // This method SCALES the segment times evenly to ensure that the trajectory
    +     159             :   // is feasible given the provided v_max and a_max. Does not change the shape
    +     160             :   // of the trajectory, and only *increases* segment times.
    +     161             :   bool scaleSegmentTimesToMeetConstraints(const double v_max_translation_horizontal, const double v_max_translation_vertical,
    +     162             :                                           const double a_max_translation_horizontal, const double a_max_translation_vertical,
    +     163             :                                           const double j_max_translation_horizontal, const double j_max_translation_vertical, const double v_max_heading,
    +     164             :                                           const double a_max_heading, const double j_max_heading);
    +     165             : 
    +     166             : private:
    +     167             :   int    D_;         // Number of dimensions.
    +     168             :   int    N_;         // Number of coefficients.
    +     169             :   double max_time_;  // Time at the end of the trajectory.
    +     170             : 
    +     171             :   // K is number of segments...
    +     172             :   Segment::Vector segments_;
    +     173             : };
    +     174             : 
    +     175             : }  // namespace eth_trajectory_generation
    +     176             : 
    +     177             : #endif  // ETH_TRAJECTORY_GENERATION_TRAJECTORY_H_
    +
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    eth_trajectory_generation::Vertex::D() const0
    eth_trajectory_generation::Vertex::cBegin() const173
    eth_trajectory_generation::Vertex::Vertex(unsigned long)374
    eth_trajectory_generation::Vertex::cEnd() const417
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    eth_trajectory_generation::Vertex::cBegin() const173
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #ifndef ETH_TRAJECTORY_GENERATION_VERTEX_H_
    +      22             : #define ETH_TRAJECTORY_GENERATION_VERTEX_H_
    +      23             : 
    +      24             : #include <Eigen/Core>
    +      25             : #include <chrono>
    +      26             : #include <map>
    +      27             : #include <vector>
    +      28             : #include <eth_trajectory_generation/misc.h>
    +      29             : #include <eth_trajectory_generation/motion_defines.h>
    +      30             : #include <eth_trajectory_generation/polynomial.h>
    +      31             : 
    +      32             : namespace eth_trajectory_generation
    +      33             : {
    +      34             : 
    +      35             : // A vertex describes the properties of a support point of a path.
    +      36             : // A vertex has a set of constraints, the derivative of position a value, that
    +      37             : // have to be matched during optimization procedures. In case of a
    +      38             : // multi-dimensional vertex (mostly 3D), the constraint for a derivative
    +      39             : // exists in all dimensions, but can have different values in each dimension.
    +      40             : //     X------------X---------------X
    +      41             : //   vertex             segment
    +      42             : class Vertex {
    +      43             : public:
    +      44             :   typedef std::vector<Vertex>             Vector;
    +      45             :   typedef Eigen::VectorXd                 ConstraintValue;
    +      46             :   typedef std::pair<int, ConstraintValue> Constraint;
    +      47             :   typedef std::map<int, ConstraintValue>  Constraints;
    +      48             : 
    +      49             :   // Constructs an empty vertex and sets time_to_next and
    +      50             :   // derivative_to_optimize to zero.
    +      51         374 :   Vertex(size_t dimension) : D_(dimension) {
    +      52         374 :   }
    +      53             : 
    +      54           0 :   int D() const {
    +      55           0 :     return D_;
    +      56             :   }
    +      57             : 
    +      58             :   // Adds a constraint for the specified derivative order with the given
    +      59             :   // value. If this is a multi-dimensional vertex, all dimensions are
    +      60             :   // set to the same value.
    +      61             :   inline void addConstraint(int derivative_order, double value) {
    +      62             :     constraints_[derivative_order] = ConstraintValue::Constant(D_, value);
    +      63             :   }
    +      64             : 
    +      65             :   // Adds a constraint for the derivative specified in type with the given
    +      66             :   // values in the constraint vector. The dimension has to match the derivative.
    +      67             :   void addConstraint(int type, const Eigen::VectorXd& constraint);
    +      68             : 
    +      69             :   // Removes a constraint for the derivative specified in type. Returns false if
    +      70             :   // constraint was not set.
    +      71             :   bool removeConstraint(int type);
    +      72             : 
    +      73             :   // Sets a constraint for position and sets all derivatives up to
    +      74             :   // (including) up_to_derivative to zero. Convenience method for
    +      75             :   // beginning / end vertices. up_to_derivative should be set to
    +      76             :   // getHighestDerivativeFromN(N), where N is the order of your polynomial.
    +      77             :   void makeStartOrEnd(const Eigen::VectorXd& constraint, int up_to_derivative);
    +      78             : 
    +      79             :   void makeStartOrEnd(double value, int up_to_derivative) {
    +      80             :     makeStartOrEnd(Eigen::VectorXd::Constant(D_, value), up_to_derivative);
    +      81             :   }
    +      82             : 
    +      83             :   // Returns whether the vertex has a constraint for the specified derivative
    +      84             :   // order.
    +      85             :   bool hasConstraint(int derivative_order) const;
    +      86             : 
    +      87             :   // Passes the value of the constraint for derivative order to *value,
    +      88             :   // and returns whether the constraint is set.
    +      89             :   bool getConstraint(int derivative_order, Eigen::VectorXd* constraint) const;
    +      90             : 
    +      91             :   // Returns a const iterator to the first constraint.
    +      92         173 :   typename Constraints::const_iterator cBegin() const {
    +      93         173 :     return constraints_.begin();
    +      94             :   }
    +      95             : 
    +      96             :   // Returns a const iterator to the end of the constraints,
    +      97             :   // i.e. one after the last element.
    +      98         417 :   typename Constraints::const_iterator cEnd() const {
    +      99         417 :     return constraints_.end();
    +     100             :   }
    +     101             : 
    +     102             :   // Returns the number of constraints.
    +     103             :   size_t getNumberOfConstraints() const {
    +     104             :     return constraints_.size();
    +     105             :   }
    +     106             : 
    +     107             :   // Checks if both lhs and rhs are equal up to tol in case of double values.
    +     108             :   bool isEqualTol(const Vertex& rhs, double tol) const;
    +     109             : 
    +     110             :   // Get subdimension vertex.
    +     111             :   bool getSubdimension(const std::vector<size_t>& subdimensions, int max_derivative_order, Vertex* subvertex) const;
    +     112             : 
    +     113             : private:
    +     114             :   int         D_;
    +     115             :   Constraints constraints_;
    +     116             : };
    +     117             : 
    +     118             : std::ostream& operator<<(std::ostream& stream, const Vertex& v);
    +     119             : 
    +     120             : std::ostream& operator<<(std::ostream& stream, const std::vector<Vertex>& vertices);
    +     121             : 
    +     122             : // Makes a rough estimate based on v_max and a_max about the time
    +     123             : // required to get from one vertex to the next. Uses the current preferred
    +     124             : // method.
    +     125             : std::vector<double> estimateSegmentTimes(const Vertex::Vector& vertices, const double v_max_horizontal, const double v_max_vertical,
    +     126             :                                          const double a_max_horizontal, const double a_max_vertical, const double j_max_horizontal, const double j_max_vertical,
    +     127             :                                          const double heading_speed_max, const double heading_acc_max);
    +     128             : 
    +     129             : // Calculate the velocity assuming instantaneous constant acceleration a_max
    +     130             : // and straight line rest-to-rest trajectories.
    +     131             : // The time_factor \in [1..Inf] increases the allocated time making the segments
    +     132             : // slower and thus feasibility more likely. This method does not take into
    +     133             : // account the start and goal velocity and acceleration.
    +     134             : std::vector<double> estimateSegmentTimesVelocityRamp(const Vertex::Vector& vertices, double v_max, double a_max, double time_factor = 1.0);
    +     135             : 
    +     136             : std::vector<double> estimateSegmentTimesEuclidean(const Vertex::Vector& vertices, const double v_max_horizontal, const double v_max_vertical,
    +     137             :                                                   const double a_max_horizontal, const double a_max_vertical, const double j_max_horizontal,
    +     138             :                                                   const double j_max_vertical, const double heading_speed_max, const double heading_acc_max);
    +     139             : 
    +     140             : std::vector<double> estimateSegmentTimesBaca(const Vertex::Vector& vertices, const double v_max_horizontal, const double v_max_vertical,
    +     141             :                                              const double a_max_horizontal, const double a_max_vertical, const double j_max_horizontal,
    +     142             :                                              const double j_max_vertical, const double heading_speed_max, const double heading_acc_max);
    +     143             : 
    +     144             : double computeTimeVelocityRamp(const Eigen::VectorXd& start, const Eigen::VectorXd& goal, double v_max, double a_max);
    +     145             : 
    +     146             : inline int getHighestDerivativeFromN(int N) {
    +     147             :   return N / 2 - 1;
    +     148             : }
    +     149             : 
    +     150             : // Creates random vertices for position within minimum_position and
    +     151             : // maximum_position.
    +     152             : // Vertices at the beginning and end have only fixed constraints with their
    +     153             : // derivative set to zero, while  all vertices in between have position as fixed
    +     154             : // constraint and the derivatives are left free.
    +     155             : // Input: maximum_derivative = The maximum derivative to be set to zero for
    +     156             : // beginning and end.
    +     157             : // Input: n_segments = Number of segments of the resulting trajectory. Number
    +     158             : // of vertices is n_segments + 1.
    +     159             : // Input: minimum_position = Minimum position of the space to sample.
    +     160             : // Input: maximum_position = Maximum position of the space to sample.
    +     161             : // Input: seed = Initial seed for random number generation.
    +     162             : // Output: return = Vector containing n_segments + 1 vertices.
    +     163             : Vertex::Vector createRandomVertices(int maximum_derivative, size_t n_segments, const Eigen::VectorXd& minimum_position, const Eigen::VectorXd& maximum_position,
    +     164             :                                     size_t seed = 0);
    +     165             : 
    +     166             : Vertex::Vector createSquareVertices(int maximum_derivative, const Eigen::Vector3d& center, double side_length, int rounds);
    +     167             : 
    +     168             : // Conveninence function to create 1D vertices.
    +     169             : Vertex::Vector createRandomVertices1D(int maximum_derivative, size_t n_segments, double minimum_position, double maximum_position, size_t seed = 0);
    +     170             : }  // namespace eth_trajectory_generation
    +     171             : 
    +     172             : #endif  // ETH_TRAJECTORY_GENERATION_VERTEX_H_
    +
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    LCOV - code coverage report
    + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generationHitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:452103643.6 %
    Date:2024-04-17 23:52:03Functions:3110529.5 %
    Legend: Rating: + low: < 75 % + medium: >= 75 % + high: >= 90 % +
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    Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
    motion_defines.cpp +
    0.0%
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    0.0 %0 / 280.0 %0 / 4
    polynomial.cpp +
    49.5%49.5%
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    49.5 %54 / 10954.5 %6 / 11
    segment.cpp +
    40.0%40.0%
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    40.0 %54 / 13546.2 %6 / 13
    timing.cpp +
    0.0%
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    0.0 %0 / 1110.0 %0 / 30
    trajectory.cpp +
    57.3%57.3%
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    57.3 %180 / 31447.8 %11 / 23
    trajectory_sampling.cpp +
    42.0%42.0%
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    42.0 %29 / 6928.6 %2 / 7
    vertex.cpp +
    50.0%50.0%
    +
    50.0 %135 / 27035.3 %6 / 17
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    +
    + + + + +
    Generated by: LCOV version 1.14
    +
    + + + diff --git a/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.func-sort-c.html b/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.func-sort-c.html new file mode 100644 index 0000000000..5c1abf15ef --- /dev/null +++ b/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.func-sort-c.html @@ -0,0 +1,96 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp - functions + + + + + + + + + + + + + + +
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    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generation - motion_defines.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:0280.0 %
    Date:2024-04-17 23:52:03Functions:040.0 %
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::positionDerivativeToInt(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::orientationDerivativeToInt(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::positionDerivativeToString[abi:cxx11](int)0
    eth_trajectory_generation::orintationDerivativeToString[abi:cxx11](int)0
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    +
    + + + +
    Generated by: LCOV version 1.14
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    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generation - motion_defines.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:0280.0 %
    Date:2024-04-17 23:52:03Functions:040.0 %
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::positionDerivativeToInt(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::orientationDerivativeToInt(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::positionDerivativeToString[abi:cxx11](int)0
    eth_trajectory_generation::orintationDerivativeToString[abi:cxx11](int)0
    +
    +
    + + + +
    Generated by: LCOV version 1.14
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    + + + diff --git a/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.gcov.frameset.html b/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.gcov.frameset.html new file mode 100644 index 0000000000..ae6bbb029b --- /dev/null +++ b/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.gcov.frameset.html @@ -0,0 +1,19 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp + + + + + + + + <center>Frames not supported by your browser!<br></center> + + + + diff --git a/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.gcov.html b/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.gcov.html new file mode 100644 index 0000000000..cf10e80d2f --- /dev/null +++ b/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.gcov.html @@ -0,0 +1,174 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp + + + + + + + + + + + + + + +
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    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generation - motion_defines.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:0280.0 %
    Date:2024-04-17 23:52:03Functions:040.0 %
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #include <eth_trajectory_generation/motion_defines.h>
    +      22             : 
    +      23             : namespace eth_trajectory_generation
    +      24             : {
    +      25             : 
    +      26             : /* positionDerivativeToString //{ */
    +      27             : 
    +      28           0 : std::string positionDerivativeToString(int derivative) {
    +      29           0 :   if (derivative >= derivative_order::POSITION && derivative <= derivative_order::SNAP) {
    +      30             :     static constexpr const char* text[] = {"position", "velocity", "acceleration", "jerk", "snap"};
    +      31           0 :     return std::string(text[derivative]);
    +      32             :   } else {
    +      33           0 :     return std::string("invalid");
    +      34             :   }
    +      35             : }
    +      36             : 
    +      37             : //}
    +      38             : 
    +      39             : /* positionDerivativeToInt() //{ */
    +      40             : 
    +      41           0 : int positionDerivativeToInt(const std::string& string) {
    +      42             :   using namespace derivative_order;
    +      43           0 :   if (string == "position") {
    +      44           0 :     return POSITION;
    +      45           0 :   } else if (string == "velocity") {
    +      46           0 :     return VELOCITY;
    +      47           0 :   } else if (string == "acceleration") {
    +      48           0 :     return ACCELERATION;
    +      49           0 :   } else if (string == "jerk") {
    +      50           0 :     return JERK;
    +      51           0 :   } else if (string == "snap") {
    +      52           0 :     return SNAP;
    +      53             :   } else {
    +      54           0 :     return INVALID;
    +      55             :   }
    +      56             : }
    +      57             : 
    +      58             : //}
    +      59             : 
    +      60             : /* orintationDerivativeToString() //{ */
    +      61             : 
    +      62           0 : std::string orintationDerivativeToString(int derivative) {
    +      63           0 :   if (derivative >= derivative_order::ORIENTATION && derivative <= derivative_order::ANGULAR_ACCELERATION) {
    +      64             :     static constexpr const char* text[] = {"orientation", "angular_velocity", "angular_acceleration"};
    +      65           0 :     return std::string(text[derivative]);
    +      66             :   } else {
    +      67           0 :     return std::string("invalid");
    +      68             :   }
    +      69             : }
    +      70             : 
    +      71             : //}
    +      72             : 
    +      73             : /* orientationDerivativeToInt() //{ */
    +      74             : 
    +      75           0 : int orientationDerivativeToInt(const std::string& string) {
    +      76             :   using namespace derivative_order;
    +      77           0 :   if (string == "orientation") {
    +      78           0 :     return ORIENTATION;
    +      79           0 :   } else if (string == "angular_velocity") {
    +      80           0 :     return ANGULAR_VELOCITY;
    +      81           0 :   } else if (string == "angular_acceleration") {
    +      82           0 :     return ANGULAR_ACCELERATION;
    +      83             :   } else {
    +      84           0 :     return INVALID;
    +      85             :   }
    +      86             : }
    +      87             : 
    +      88             : //}
    +      89             : 
    +      90             : }  // namespace eth_trajectory_generation
    +
    +
    +
    + + + + +
    Generated by: LCOV version 1.14
    +
    + + + diff --git a/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.gcov.overview.html b/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.gcov.overview.html new file mode 100644 index 0000000000..3819ee7329 --- /dev/null +++ b/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.gcov.overview.html @@ -0,0 +1,43 @@ + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp + + + + + + + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + overview + + +
    + Top

    + Overview +
    + + diff --git a/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.gcov.png b/mrs_uav_trajectory_generation/src/eth_trajectory_generation/motion_defines.cpp.gcov.png new file mode 100644 index 0000000000000000000000000000000000000000..bade438aeee28f72eefe41ba50044c764ab87b8c GIT binary patch literal 473 zcmV;~0Ve*5P)KS6jBiAPj^ZBzwXg;QqH_DG9G6Ehv6??oHK7nKO9}IqJ|&n)i5^Kd$tGv;bP4 zZ$uSHUU3(8B!+??jP~|EG+jAe#1#qR4v%Z`764Ln?`O^_v#nbmkOAJbf#2-NI;ab~0OG zG&NipuOs{(;~lDHw0hhyPSAy)JX||wZhNAdIV$vKOXVV{p + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trajectory_generation/src/eth_trajectory_generation/polynomial.cpp - functions + + + + + + + + + + + + + + +
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    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generation - polynomial.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:5410949.5 %
    Date:2024-04-17 23:52:03Functions:61154.5 %
    Legend: Lines: + hit + not hit +
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    + +
    + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +

    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::Polynomial::offsetPolynomial(double)0
    eth_trajectory_generation::Polynomial::computeMinMax(double, double, int, std::pair<double, double>*, std::pair<double, double>*) const0
    eth_trajectory_generation::Polynomial::selectMinMaxFromRoots(double, double, int, Eigen::Matrix<std::complex<double>, -1, 1, 0, -1, 1> const&, std::pair<double, double>*, std::pair<double, double>*) const0
    eth_trajectory_generation::Polynomial::selectMinMaxFromCandidates(std::vector<double, std::allocator<double> > const&, int, std::pair<double, double>*, std::pair<double, double>*) const0
    eth_trajectory_generation::Polynomial::getPolynomialWithAppendedCoefficients(int, eth_trajectory_generation::Polynomial*) const0
    eth_trajectory_generation::computeBaseCoefficients(int)91
    eth_trajectory_generation::Polynomial::scalePolynomialInTime(double)632
    eth_trajectory_generation::Polynomial::convolve(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)1896
    eth_trajectory_generation::Polynomial::selectMinMaxCandidatesFromRoots(double, double, Eigen::Matrix<std::complex<double>, -1, 1, 0, -1, 1> const&, std::vector<double, std::allocator<double> >*)2844
    eth_trajectory_generation::Polynomial::computeMinMaxCandidates(double, double, int, std::vector<double, std::allocator<double> >*) const2844
    eth_trajectory_generation::Polynomial::getRoots(int, Eigen::Matrix<std::complex<double>, -1, 1, 0, -1, 1>*) const2844
    +
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    + + + +
    Generated by: LCOV version 1.14
    +
    + + + diff --git a/mrs_uav_trajectory_generation/src/eth_trajectory_generation/polynomial.cpp.func.html b/mrs_uav_trajectory_generation/src/eth_trajectory_generation/polynomial.cpp.func.html new file mode 100644 index 0000000000..fccb7b4eb5 --- /dev/null +++ b/mrs_uav_trajectory_generation/src/eth_trajectory_generation/polynomial.cpp.func.html @@ -0,0 +1,124 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trajectory_generation/src/eth_trajectory_generation/polynomial.cpp - functions + + + + + + + + + + + + + + +
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    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generation - polynomial.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:5410949.5 %
    Date:2024-04-17 23:52:03Functions:61154.5 %
    Legend: Lines: + hit + not hit +
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::Polynomial::offsetPolynomial(double)0
    eth_trajectory_generation::Polynomial::scalePolynomialInTime(double)632
    eth_trajectory_generation::Polynomial::selectMinMaxCandidatesFromRoots(double, double, Eigen::Matrix<std::complex<double>, -1, 1, 0, -1, 1> const&, std::vector<double, std::allocator<double> >*)2844
    eth_trajectory_generation::Polynomial::convolve(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)1896
    eth_trajectory_generation::computeBaseCoefficients(int)91
    eth_trajectory_generation::Polynomial::computeMinMax(double, double, int, std::pair<double, double>*, std::pair<double, double>*) const0
    eth_trajectory_generation::Polynomial::selectMinMaxFromRoots(double, double, int, Eigen::Matrix<std::complex<double>, -1, 1, 0, -1, 1> const&, std::pair<double, double>*, std::pair<double, double>*) const0
    eth_trajectory_generation::Polynomial::computeMinMaxCandidates(double, double, int, std::vector<double, std::allocator<double> >*) const2844
    eth_trajectory_generation::Polynomial::selectMinMaxFromCandidates(std::vector<double, std::allocator<double> > const&, int, std::pair<double, double>*, std::pair<double, double>*) const0
    eth_trajectory_generation::Polynomial::getPolynomialWithAppendedCoefficients(int, eth_trajectory_generation::Polynomial*) const0
    eth_trajectory_generation::Polynomial::getRoots(int, Eigen::Matrix<std::complex<double>, -1, 1, 0, -1, 1>*) const2844
    +
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    Generated by: LCOV version 1.14
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    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generation - polynomial.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:5410949.5 %
    Date:2024-04-17 23:52:03Functions:61154.5 %
    Legend: Lines: + hit + not hit +
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    + + + + + + + + +

    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
    +      17             :  * implied. See the License for the specific language governing
    +      18             :  * permissions and limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #include <eth_trajectory_generation/polynomial.h>
    +      22             : #include <eth_trajectory_generation/rpoly/rpoly_ak1.h>
    +      23             : 
    +      24             : #include <algorithm>
    +      25             : #include <limits>
    +      26             : 
    +      27             : namespace eth_trajectory_generation
    +      28             : {
    +      29             : 
    +      30        2844 : bool Polynomial::getRoots(int derivative, Eigen::VectorXcd* roots) const {
    +      31        2844 :   return findRootsJenkinsTraub(getCoefficients(derivative), roots);
    +      32             : }
    +      33             : 
    +      34             : /* selectMinMaxCandidatesFromRoots() //{ */
    +      35             : 
    +      36        2844 : bool Polynomial::selectMinMaxCandidatesFromRoots(double t_start, double t_end, const Eigen::VectorXcd& roots_derivative_of_derivative,
    +      37             :                                                  std::vector<double>* candidates) {
    +      38        2844 :   CHECK_NOTNULL(candidates);
    +      39        2844 :   if (t_start > t_end) {
    +      40           0 :     LOG(WARNING) << "t_start is greater than t_end.";
    +      41           0 :     return false;
    +      42             :   }
    +      43        2844 :   candidates->clear();
    +      44        2844 :   candidates->reserve(roots_derivative_of_derivative.size() + 2);
    +      45             :   // Put start and end in, as they are valid candidates.
    +      46        2844 :   candidates->push_back(t_start);
    +      47        2844 :   candidates->push_back(t_end);
    +      48       25896 :   for (size_t i = 0; i < static_cast<size_t>(roots_derivative_of_derivative.size()); i++) {
    +      49             :     // Only real roots are considered as critical points.
    +      50       23052 :     if (std::abs(roots_derivative_of_derivative[i].imag()) > std::numeric_limits<double>::epsilon()) {
    +      51       15985 :       continue;
    +      52             :     }
    +      53       10842 :     const double candidate = roots_derivative_of_derivative[i].real();
    +      54             : 
    +      55             :     // Do not evaluate points outside the domain.
    +      56       10842 :     if (candidate < t_start || candidate > t_end) {
    +      57        3775 :       continue;
    +      58             :     } else {
    +      59        7067 :       candidates->push_back(candidate);
    +      60             :     }
    +      61             :   }
    +      62        2844 :   return true;
    +      63             : }
    +      64             : 
    +      65             : //}
    +      66             : 
    +      67             : /* computeMinMaxCandidates() //{ */
    +      68             : 
    +      69        2844 : bool Polynomial::computeMinMaxCandidates(double t_start, double t_end, int derivative, std::vector<double>* candidates) const {
    +      70        2844 :   CHECK_NOTNULL(candidates);
    +      71        2844 :   candidates->clear();
    +      72        2844 :   if (N_ - derivative - 1 < 0) {
    +      73           0 :     LOG(WARNING) << "N - derivative - 1 has to be at least 0.";
    +      74           0 :     return false;
    +      75             :   }
    +      76        5688 :   Eigen::VectorXcd roots;
    +      77        2844 :   bool             success = getRoots(derivative + 1, &roots);
    +      78        2844 :   if (!success) {
    +      79           0 :     VLOG(1) << "Couldn't find roots, polynomial may be constant.";
    +      80             :   }
    +      81        2844 :   if (!selectMinMaxCandidatesFromRoots(t_start, t_end, roots, candidates)) {
    +      82           0 :     return false;
    +      83             :   }
    +      84        2844 :   return true;
    +      85             : }
    +      86             : 
    +      87             : //}
    +      88             : 
    +      89             : /* selectMinMaxFromRoots() //{ */
    +      90             : 
    +      91           0 : bool Polynomial::selectMinMaxFromRoots(double t_start, double t_end, int derivative, const Eigen::VectorXcd& roots_derivative_of_derivative,
    +      92             :                                        std::pair<double, double>* minimum, std::pair<double, double>* maximum) const {
    +      93           0 :   CHECK_NOTNULL(minimum);
    +      94           0 :   CHECK_NOTNULL(maximum);
    +      95             :   // Find candidates in interval t_start to t_end computing the roots.
    +      96           0 :   std::vector<double> candidates;
    +      97           0 :   if (!selectMinMaxCandidatesFromRoots(t_start, t_end, roots_derivative_of_derivative, &candidates)) {
    +      98           0 :     return false;
    +      99             :   }
    +     100             :   // Evaluate minimum and maximum.
    +     101           0 :   return selectMinMaxFromCandidates(candidates, derivative, minimum, maximum);
    +     102             : }
    +     103             : 
    +     104             : //}
    +     105             : 
    +     106             : /* computeMinMax() //{ */
    +     107             : 
    +     108           0 : bool Polynomial::computeMinMax(double t_start, double t_end, int derivative, std::pair<double, double>* minimum, std::pair<double, double>* maximum) const {
    +     109           0 :   CHECK_NOTNULL(minimum);
    +     110           0 :   CHECK_NOTNULL(maximum);
    +     111             :   // Find candidates in interval t_start to t_end by computing the roots.
    +     112           0 :   std::vector<double> candidates;
    +     113           0 :   if (!computeMinMaxCandidates(t_start, t_end, derivative, &candidates)) {
    +     114           0 :     return false;
    +     115             :   }
    +     116             :   // Evaluate minimum and maximum.
    +     117           0 :   return selectMinMaxFromCandidates(candidates, derivative, minimum, maximum);
    +     118             : }
    +     119             : 
    +     120             : //}
    +     121             : 
    +     122             : /* selectMinMaxFromCandidates() //{ */
    +     123             : 
    +     124           0 : bool Polynomial::selectMinMaxFromCandidates(const std::vector<double>& candidates, int derivative, std::pair<double, double>* minimum,
    +     125             :                                             std::pair<double, double>* maximum) const {
    +     126           0 :   CHECK_NOTNULL(minimum);
    +     127           0 :   CHECK_NOTNULL(maximum);
    +     128           0 :   if (candidates.empty()) {
    +     129           0 :     LOG(WARNING) << "Cannot find extrema from an empty candidates vector.";
    +     130           0 :     return false;
    +     131             :   }
    +     132           0 :   minimum->first  = candidates[0];
    +     133           0 :   minimum->second = std::numeric_limits<double>::max();
    +     134           0 :   maximum->first  = candidates[0];
    +     135           0 :   maximum->second = std::numeric_limits<double>::lowest();
    +     136             : 
    +     137           0 :   for (const double& t : candidates) {
    +     138           0 :     const double value = evaluate(t, derivative);
    +     139           0 :     if (value < minimum->second) {
    +     140           0 :       minimum->first  = t;
    +     141           0 :       minimum->second = value;
    +     142             :     }
    +     143           0 :     if (value > maximum->second) {
    +     144           0 :       maximum->first  = t;
    +     145           0 :       maximum->second = value;
    +     146             :     }
    +     147             :   }
    +     148           0 :   return true;
    +     149             : }
    +     150             : 
    +     151             : //}
    +     152             : 
    +     153             : /* computeBaseCoefficients() //{ */
    +     154             : 
    +     155          91 : Eigen::MatrixXd computeBaseCoefficients(int N) {
    +     156          91 :   Eigen::MatrixXd base_coefficients(N, N);
    +     157             : 
    +     158          91 :   base_coefficients.setZero();
    +     159          91 :   base_coefficients.row(0).setOnes();
    +     160             : 
    +     161          91 :   const int DEG   = N - 1;
    +     162          91 :   int       order = DEG;
    +     163        2002 :   for (int n = 1; n < N; n++) {
    +     164       24843 :     for (int i = DEG - order; i < N; i++) {
    +     165       22932 :       base_coefficients(n, i) = (order - DEG + i) * base_coefficients(n - 1, i);
    +     166             :     }
    +     167        1911 :     order--;
    +     168             :   }
    +     169          91 :   return base_coefficients;
    +     170             : }
    +     171             : 
    +     172             : //}
    +     173             : 
    +     174             : /* convolve() //{ */
    +     175             : 
    +     176        1896 : Eigen::VectorXd Polynomial::convolve(const Eigen::VectorXd& data, const Eigen::VectorXd& kernel) {
    +     177        1896 :   const int       convolution_dimension = getConvolutionLength(data.size(), kernel.size());
    +     178        1896 :   Eigen::VectorXd convolved             = Eigen::VectorXd::Zero(convolution_dimension);
    +     179        3792 :   Eigen::VectorXd kernel_reverse        = kernel.reverse();
    +     180             : 
    +     181       28440 :   for (int i = 0; i < convolution_dimension; i++) {
    +     182       26544 :     const int data_idx = i - kernel.size() + 1;
    +     183             : 
    +     184       26544 :     int lower_bound = std::max(0, -data_idx);
    +     185       26544 :     int upper_bound = std::min(kernel.size(), data.size() - data_idx);
    +     186             : 
    +     187      133984 :     for (int kernel_idx = lower_bound; kernel_idx < upper_bound; ++kernel_idx) {
    +     188      107440 :       convolved[i] += kernel_reverse[kernel_idx] * data[data_idx + kernel_idx];
    +     189             :     }
    +     190             :   }
    +     191        3792 :   return convolved;
    +     192             : }
    +     193             : 
    +     194             : //}
    +     195             : 
    +     196             : /* getPolynomialWithAppendedCoefficients() //{ */
    +     197             : 
    +     198           0 : bool Polynomial::getPolynomialWithAppendedCoefficients(int new_N, Polynomial* new_polynomial) const {
    +     199           0 :   if (new_N == N_) {
    +     200           0 :     *new_polynomial = *this;
    +     201           0 :     return true;
    +     202           0 :   } else if (new_N < N_) {
    +     203           0 :     LOG(WARNING) << "You shan't decrease the number of coefficients.";
    +     204           0 :     *new_polynomial = *this;
    +     205           0 :     return false;
    +     206             :   } else {
    +     207           0 :     Eigen::VectorXd coeffs = Eigen::VectorXd::Zero(new_N);
    +     208           0 :     coeffs.head(N_)        = coefficients_;
    +     209           0 :     *new_polynomial        = Polynomial(coeffs);
    +     210           0 :     return true;
    +     211             :   }
    +     212             : }
    +     213             : 
    +     214             : //}
    +     215             : 
    +     216             : /* scalePolynomialInTime() //{ */
    +     217             : 
    +     218         632 : void Polynomial::scalePolynomialInTime(double scaling_factor) {
    +     219         632 :   double scale = 1.0;
    +     220        6952 :   for (int n = 0; n < N_; n++) {
    +     221        6320 :     coefficients_[n] *= scale;
    +     222        6320 :     scale *= scaling_factor;
    +     223             :   }
    +     224         632 : }
    +     225             : 
    +     226             : //}
    +     227             : 
    +     228             : /* offsetPolynomial() //{ */
    +     229             : 
    +     230           0 : void Polynomial::offsetPolynomial(const double offset) {
    +     231           0 :   if (coefficients_.size() == 0)
    +     232           0 :     return;
    +     233             : 
    +     234           0 :   coefficients_[0] += offset;
    +     235             : }
    +     236             : 
    +     237             : //}
    +     238             : 
    +     239             : Eigen::MatrixXd Polynomial::base_coefficients_ = computeBaseCoefficients(Polynomial::kMaxConvolutionSize);
    +     240             : 
    +     241             : }  // namespace eth_trajectory_generation
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::rpoly_impl::rpoly_ak1(double*, int*, double*, double*)2736
    eth_trajectory_generation::rpolyWrapper(double*, int*, double*, double*)2736
    eth_trajectory_generation::findLastNonZeroCoeff(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)2844
    eth_trajectory_generation::findRootsJenkinsTraub(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, Eigen::Matrix<std::complex<double>, -1, 1, 0, -1, 1>*)2844
    eth_trajectory_generation::rpoly_impl::QuadIT_ak1(int, int*, double, double, double*, double*, double*, double*, double*, int, double*, double*, double*, double*, double*, double*, double*, double*, double*, double*, double*, double*, double*)7902
    eth_trajectory_generation::rpoly_impl::RealIT_ak1(int*, int*, double*, int, double*, int, double*, double*, double*, double*, double*)8155
    eth_trajectory_generation::rpoly_impl::Fxshfr_ak1(int, int*, double, double, double*, int, double*, int, double*, double*, double*, double*, double*)12776
    eth_trajectory_generation::rpoly_impl::Quad_ak1(double, double, double, double*, double*, double*, double*)25733
    eth_trajectory_generation::rpoly_impl::newest_ak1(int, double*, double*, double, double, double, double, double, double, double, double, double, double, double, double, double*, int, double*)46799
    eth_trajectory_generation::rpoly_impl::nextK_ak1(int, int, double, double, double, double*, double*, double*, double*, double*)46819
    eth_trajectory_generation::rpoly_impl::calcSC_ak1(int, double, double, double*, double*, double*, double*, double*, double*, double*, double*, double*, double*, double, double, double*)77291
    eth_trajectory_generation::rpoly_impl::QuadSD_ak1(int, double, double, double*, double*, double*, double*)113409
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::rpoly_impl::Fxshfr_ak1(int, int*, double, double, double*, int, double*, int, double*, double*, double*, double*, double*)12776
    eth_trajectory_generation::rpoly_impl::QuadIT_ak1(int, int*, double, double, double*, double*, double*, double*, double*, int, double*, double*, double*, double*, double*, double*, double*, double*, double*, double*, double*, double*, double*)7902
    eth_trajectory_generation::rpoly_impl::QuadSD_ak1(int, double, double, double*, double*, double*, double*)113409
    eth_trajectory_generation::rpoly_impl::RealIT_ak1(int*, int*, double*, int, double*, int, double*, double*, double*, double*, double*)8155
    eth_trajectory_generation::rpoly_impl::calcSC_ak1(int, double, double, double*, double*, double*, double*, double*, double*, double*, double*, double*, double*, double, double, double*)77291
    eth_trajectory_generation::rpoly_impl::newest_ak1(int, double*, double*, double, double, double, double, double, double, double, double, double, double, double, double, double*, int, double*)46799
    eth_trajectory_generation::rpoly_impl::Quad_ak1(double, double, double, double*, double*, double*, double*)25733
    eth_trajectory_generation::rpoly_impl::nextK_ak1(int, int, double, double, double, double*, double*, double*, double*, double*)46819
    eth_trajectory_generation::rpoly_impl::rpoly_ak1(double*, int*, double*, double*)2736
    eth_trajectory_generation::rpolyWrapper(double*, int*, double*, double*)2736
    eth_trajectory_generation::findLastNonZeroCoeff(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)2844
    eth_trajectory_generation::findRootsJenkinsTraub(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, Eigen::Matrix<std::complex<double>, -1, 1, 0, -1, 1>*)2844
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    +
              Line data    Source code
    +
    +       1             : // rpoly_ak1.cpp - Program for calculating the roots of a polynomial of real
    +       2             : // coefficients.
    +       3             : // Written in Microsoft Visual Studio Express 2013 for Windows Desktop
    +       4             : // 27 May 2014
    +       5             : //
    +       6             : // The sub-routines listed below are translations of the FORTRAN routines
    +       7             : // included in RPOLY.FOR,
    +       8             : // posted off the NETLIB site as TOMS/493:
    +       9             : //
    +      10             : // http://www.netlib.org/toms/493
    +      11             : //
    +      12             : // TOMS/493 is based on the Jenkins-Traub algorithm.
    +      13             : //
    +      14             : // To distinguish the routines posted below from others, an _ak1 suffix has been
    +      15             : // appended to them.
    +      16             : //
    +      17             : // Following is a list of the major changes made in the course of translating
    +      18             : // the TOMS/493 routines
    +      19             : // to the C++ versions posted below:
    +      20             : // 1) All global variables have been eliminated.
    +      21             : // 2) The "FAIL" parameter passed into RPOLY.FOR has been eliminated.
    +      22             : // 3) RPOLY.FOR solves polynomials of degree up to 100, but does not explicitly
    +      23             : // state this limit.
    +      24             : //     rpoly_ak1 explicitly states this limit; uses the macro name MAXDEGREE to
    +      25             : //     specify this limit;
    +      26             : //     and does a check to ensure that the user input variable Degree is not
    +      27             : //     greater than MAXDEGREE
    +      28             : //     (if it is, an error message is output and rpoly_ak1 terminates). If a
    +      29             : //     user wishes to compute
    +      30             : //     roots of polynomials of degree greater than MAXDEGREE, using a macro name
    +      31             : //     like MAXDEGREE provides
    +      32             : //     the simplest way of offering this capability.
    +      33             : // 4) All "GO TO" statements have been eliminated.
    +      34             : //
    +      35             : // A small main program is included also, to provide an example of how to use
    +      36             : // rpoly_ak1. In this
    +      37             : // example, data is input from a file to eliminate the need for a user to type
    +      38             : // data in via
    +      39             : // the console.
    +      40             : 
    +      41             : #include <iostream>
    +      42             : #include <fstream>
    +      43             : #include <cctype>
    +      44             : #include <cmath>
    +      45             : #include <cfloat>
    +      46             : 
    +      47             : #include <eth_trajectory_generation/rpoly/rpoly_ak1.h>
    +      48             : 
    +      49             : namespace eth_trajectory_generation
    +      50             : {
    +      51             : 
    +      52             : constexpr int kRpolyMaxDegree = 100;
    +      53             : 
    +      54             : // Wraps the call to rpoly_ak1.
    +      55             : void rpolyWrapper(double* coefficients_decreasing, int* degree, double* roots_real, double* roots_imag);
    +      56             : 
    +      57             : /* findLastNonZeroCoeff() //{ */
    +      58             : 
    +      59        2844 : int findLastNonZeroCoeff(const Eigen::VectorXd& coefficients) {
    +      60        2844 :   int last_non_zero_coefficient = -1;
    +      61             : 
    +      62             :   // Find last non-zero coefficient:
    +      63        9288 :   for (int i = coefficients.size() - 1; i != -1; i--) {
    +      64        9180 :     if (std::abs(coefficients(i)) >= std::numeric_limits<double>::min()) {
    +      65        2736 :       last_non_zero_coefficient = i;
    +      66        2736 :       break;
    +      67             :     }
    +      68             :   }
    +      69        2844 :   return last_non_zero_coefficient;
    +      70             : }
    +      71             : 
    +      72             : //}
    +      73             : 
    +      74             : /* findRootsJenkinsTraub() //{ */
    +      75             : 
    +      76        2844 : bool findRootsJenkinsTraub(const Eigen::VectorXd& coefficients_increasing, Eigen::VectorXcd* roots) {
    +      77             :   // Remove trailing zeros.
    +      78        2844 :   const int last_non_zero_coefficient = findLastNonZeroCoeff(coefficients_increasing);
    +      79        2844 :   if (last_non_zero_coefficient == -1) {
    +      80             :     // The polynomial has all zero coefficients and has no roots.
    +      81         108 :     roots->resize(0);
    +      82         108 :     return true;
    +      83             :   }
    +      84             : 
    +      85             :   // Reverse coefficients in descending order.
    +      86        5472 :   Eigen::VectorXd coefficients_decreasing = coefficients_increasing.head(last_non_zero_coefficient + 1).reverse();
    +      87             : 
    +      88        2736 :   const int n_coefficients = coefficients_decreasing.size();
    +      89        2736 :   if (n_coefficients < 2) {
    +      90             :     // The polynomial is 0th order and has no roots.
    +      91           0 :     roots->resize(0);
    +      92           0 :     return true;
    +      93             :   }
    +      94        2736 :   int     degree     = n_coefficients - 1;
    +      95        2736 :   double* polynomial = new double[kRpolyMaxDegree + 1];
    +      96        2736 :   double* roots_real = new double[kRpolyMaxDegree];
    +      97        2736 :   double* roots_imag = new double[kRpolyMaxDegree];
    +      98             : 
    +      99       28524 :   for (size_t i = 0; i < n_coefficients; i++) {
    +     100       25788 :     polynomial[i] = coefficients_decreasing(i);
    +     101             :   }
    +     102             : 
    +     103        2736 :   rpolyWrapper(polynomial, &degree, roots_real, roots_imag);
    +     104        2736 :   if (degree > 0) {
    +     105        2736 :     roots->resize(degree);
    +     106       25788 :     for (int i = 0; i < degree; ++i) {
    +     107       23052 :       (*roots)[i] = std::complex<double>(roots_real[i], roots_imag[i]);
    +     108             :     }
    +     109             :   }
    +     110             : 
    +     111        2736 :   delete[] polynomial;
    +     112        2736 :   delete[] roots_real;
    +     113        2736 :   delete[] roots_imag;
    +     114             : 
    +     115        2736 :   if (degree > 0) {
    +     116        2736 :     return true;
    +     117             :   } else {
    +     118           0 :     return false;
    +     119             :   }
    +     120             : }
    +     121             : 
    +     122             : //}
    +     123             : 
    +     124             : /* findRootsJenkinsTraub() //{ */
    +     125             : 
    +     126             : namespace rpoly_impl
    +     127             : {
    +     128             : 
    +     129             : using namespace std;
    +     130             : 
    +     131             : #define MAXDEGREE 100
    +     132             : #define MDP1 MAXDEGREE + 1
    +     133             : 
    +     134             : void rpoly_ak1(double op[MDP1], int* Degree, double zeror[MAXDEGREE], double zeroi[MAXDEGREE]);
    +     135             : void Fxshfr_ak1(int L2, int* NZ, double sr, double bnd, double K[MDP1], int N, double p[MDP1], int NN, double qp[MDP1], double* lzi, double* lzr, double* szi,
    +     136             :                 double* szr);
    +     137             : void QuadSD_ak1(int NN, double u, double v, double p[MDP1], double q[MDP1], double* a, double* b);
    +     138             : int  calcSC_ak1(int N, double a, double b, double* a1, double* a3, double* a7, double* c, double* d, double* e, double* f, double* g, double* h, double K[MDP1],
    +     139             :                 double u, double v, double qk[MDP1]);
    +     140             : void nextK_ak1(int N, int tFlag, double a, double b, double a1, double* a3, double* a7, double K[MDP1], double qk[MDP1], double qp[MDP1]);
    +     141             : void newest_ak1(int tFlag, double* uu, double* vv, double a, double a1, double a3, double a7, double b, double c, double d, double f, double g, double h,
    +     142             :                 double u, double v, double K[MDP1], int N, double p[MDP1]);
    +     143             : void QuadIT_ak1(int N, int* NZ, double uu, double vv, double* szr, double* szi, double* lzr, double* lzi, double qp[MDP1], int NN, double* a, double* b,
    +     144             :                 double p[MDP1], double qk[MDP1], double* a1, double* a3, double* a7, double* d, double* e, double* f, double* g, double* h, double K[MDP1]);
    +     145             : void RealIT_ak1(int* iFlag, int* NZ, double* sss, int N, double p[MDP1], int NN, double qp[MDP1], double* szr, double* szi, double K[MDP1], double qk[MDP1]);
    +     146             : void Quad_ak1(double a, double b1, double c, double* sr, double* si, double* lr, double* li);
    +     147             : 
    +     148        2736 : void rpoly_ak1(double op[MDP1], int* Degree, double zeror[MAXDEGREE], double zeroi[MAXDEGREE]) {
    +     149             :   int i, j, jj, l, N, NM1, NN, NZ, zerok;
    +     150             : 
    +     151             :   double K[MDP1], p[MDP1], pt[MDP1], qp[MDP1], temp[MDP1];
    +     152             :   double bnd, df, dx, factor, ff, moduli_max, moduli_min, sc, x, xm;
    +     153             :   double aa, bb, cc, lzi, lzr, sr, szi, szr, t, xx, xxx, yy;
    +     154             : 
    +     155        2736 :   const double RADFAC = 3.14159265358979323846 / 180;  // Degrees-to-radians conversion factor = pi/180
    +     156        2736 :   const double lb2    = log(2.0);                      // Dummy variable to avoid re-calculating this value in loop below
    +     157        2736 :   const double lo     = FLT_MIN / DBL_EPSILON;
    +     158        2736 :   const double cosr   = cos(94.0 * RADFAC);  // = -0.069756474
    +     159        2736 :   const double sinr   = sin(94.0 * RADFAC);  // = 0.99756405
    +     160             : 
    +     161        2736 :   if ((*Degree) > MAXDEGREE) {
    +     162             :     cout << "\nThe entered Degree is greater than MAXDEGREE. Exiting rpoly. No "
    +     163           0 :             "further action taken.\n";
    +     164           0 :     *Degree = -1;
    +     165           0 :     return;
    +     166             :   }  // End ((*Degree) > MAXDEGREE)
    +     167             : 
    +     168             :   // Do a quick check to see if leading coefficient is 0
    +     169        2736 :   if (op[0] != 0) {
    +     170        2736 :     N  = *Degree;
    +     171        2736 :     xx = sqrt(0.5);  // = 0.70710678
    +     172        2736 :     yy = -xx;
    +     173             : 
    +     174             :     // Remove zeros at the origin, if any
    +     175        2736 :     j = 0;
    +     176        2836 :     while (op[N] == 0) {
    +     177         100 :       zeror[j] = zeroi[j] = 0.0;
    +     178         100 :       N--;
    +     179         100 :       j++;
    +     180             :     }  // End while (op[N] == 0)
    +     181             : 
    +     182        2736 :     NN = N + 1;
    +     183             : 
    +     184             :     // Make a copy of the coefficients
    +     185       28424 :     for (i = 0; i < NN; i++)
    +     186       25688 :       p[i] = op[i];
    +     187             : 
    +     188       15484 :     while (N >= 1) {  // Main loop
    +     189             :       // Start the algorithm for one zero
    +     190       15484 :       if (N <= 2) {
    +     191             :         // Calculate the final zero or pair of zeros
    +     192        2736 :         if (N < 2) {
    +     193         910 :           zeror[(*Degree) - 1] = -(p[1] / p[0]);
    +     194         910 :           zeroi[(*Degree) - 1] = 0.0;
    +     195             :         }       // End if (N < 2)
    +     196             :         else {  // else N == 2
    +     197        1826 :           Quad_ak1(p[0], p[1], p[2], &zeror[(*Degree) - 2], &zeroi[(*Degree) - 2], &zeror[(*Degree) - 1], &zeroi[(*Degree) - 1]);
    +     198             :         }  // End else N == 2
    +     199        2736 :         break;
    +     200             :       }  // End if (N <= 2)
    +     201             : 
    +     202             :       // Find the largest and smallest moduli of the coefficients
    +     203             : 
    +     204       12748 :       moduli_max = 0.0;
    +     205       12748 :       moduli_min = FLT_MAX;
    +     206             : 
    +     207      111872 :       for (i = 0; i < NN; i++) {
    +     208       99124 :         x = fabs(p[i]);
    +     209       99124 :         if (x > moduli_max)
    +     210       48350 :           moduli_max = x;
    +     211       99124 :         if ((x != 0) && (x < moduli_min))
    +     212       39310 :           moduli_min = x;
    +     213             :       }  // End for i
    +     214             : 
    +     215             :       // Scale if there are large or very small coefficients
    +     216             :       // Computes a scale factor to multiply the coefficients of the polynomial.
    +     217             :       // The scaling
    +     218             :       // is done to avoid overflow and to avoid undetected underflow interfering
    +     219             :       // with the
    +     220             :       // convergence criterion.
    +     221             :       // The factor is a power of the base.
    +     222             : 
    +     223       12748 :       sc = lo / moduli_min;
    +     224             : 
    +     225       12748 :       if (((sc <= 1.0) && (moduli_max >= 10)) || ((sc > 1.0) && (FLT_MAX / sc >= moduli_max))) {
    +     226        1939 :         sc     = ((sc == 0) ? FLT_MIN : sc);
    +     227        1939 :         l      = (int)(log(sc) / lb2 + 0.5);
    +     228        1939 :         factor = pow(2.0, l);
    +     229        1939 :         if (factor != 1.0) {
    +     230       22045 :           for (i = 0; i < NN; i++)
    +     231       20108 :             p[i] *= factor;
    +     232             :         }  // End if (factor != 1.0)
    +     233             :       }    // End if (((sc <= 1.0) && (moduli_max >= 10)) || ((sc > 1.0) &&
    +     234             :            // (FLT_MAX/sc >= moduli_max)))
    +     235             : 
    +     236             :       // Compute lower bound on moduli of zeros
    +     237             : 
    +     238      111872 :       for (i = 0; i < NN; i++)
    +     239       99124 :         pt[i] = fabs(p[i]);
    +     240       12748 :       pt[N] = -(pt[N]);
    +     241             : 
    +     242       12748 :       NM1 = N - 1;
    +     243             : 
    +     244             :       // Compute upper estimate of bound
    +     245             : 
    +     246       12748 :       x = exp((log(-pt[N]) - log(pt[0])) / (double)N);
    +     247             : 
    +     248       12748 :       if (pt[NM1] != 0) {
    +     249             :         // If Newton step at the origin is better, use it
    +     250       12748 :         xm = -pt[N] / pt[NM1];
    +     251       12748 :         x  = ((xm < x) ? xm : x);
    +     252             :       }  // End if (pt[NM1] != 0)
    +     253             : 
    +     254             :       // Chop the interval (0, x) until ff <= 0
    +     255             : 
    +     256       12748 :       xm = x;
    +     257         472 :       do {
    +     258       13220 :         x  = xm;
    +     259       13220 :         xm = 0.1 * x;
    +     260       13220 :         ff = pt[0];
    +     261      105086 :         for (i = 1; i < NN; i++)
    +     262       91866 :           ff = ff * xm + pt[i];
    +     263       13220 :       } while (ff > 0);  // End do-while loop
    +     264             : 
    +     265       12748 :       dx = x;
    +     266             : 
    +     267             :       // Do Newton iteration until x converges to two decimal places
    +     268             : 
    +     269       56129 :       while (fabs(dx / x) > 0.005) {
    +     270       43381 :         df = ff = pt[0];
    +     271      313575 :         for (i = 1; i < N; i++) {
    +     272      270194 :           ff = x * ff + pt[i];
    +     273      270194 :           df = x * df + ff;
    +     274             :         }  // End for i
    +     275       43381 :         ff = x * ff + pt[N];
    +     276       43381 :         dx = ff / df;
    +     277       43381 :         x -= dx;
    +     278             :       }  // End while loop
    +     279             : 
    +     280       12748 :       bnd = x;
    +     281             : 
    +     282             :       // Compute the derivative as the initial K polynomial and do 5 steps with
    +     283             :       // no shift
    +     284             : 
    +     285       86376 :       for (i = 1; i < N; i++)
    +     286       73628 :         K[i] = (double)(N - i) * p[i] / ((double)N);
    +     287       12748 :       K[0] = p[0];
    +     288             : 
    +     289       12748 :       aa    = p[N];
    +     290       12748 :       bb    = p[NM1];
    +     291       12748 :       zerok = ((K[NM1] == 0) ? 1 : 0);
    +     292             : 
    +     293       76488 :       for (jj = 0; jj < 5; jj++) {
    +     294       63740 :         cc = K[NM1];
    +     295       63740 :         if (zerok) {
    +     296             :           // Use unscaled form of recurrence
    +     297           0 :           for (i = 0; i < NM1; i++) {
    +     298           0 :             j    = NM1 - i;
    +     299           0 :             K[j] = K[j - 1];
    +     300             :           }  // End for i
    +     301           0 :           K[0]  = 0;
    +     302           0 :           zerok = ((K[NM1] == 0) ? 1 : 0);
    +     303             :         }  // End if (zerok)
    +     304             : 
    +     305             :         else {  // else !zerok
    +     306             :           // Used scaled form of recurrence if value of K at 0 is nonzero
    +     307       63740 :           t = -aa / cc;
    +     308      431880 :           for (i = 0; i < NM1; i++) {
    +     309      368140 :             j    = NM1 - i;
    +     310      368140 :             K[j] = t * K[j - 1] + p[j];
    +     311             :           }  // End for i
    +     312       63740 :           K[0]  = p[0];
    +     313       63740 :           zerok = ((fabs(K[NM1]) <= fabs(bb) * DBL_EPSILON * 10.0) ? 1 : 0);
    +     314             :         }  // End else !zerok
    +     315             : 
    +     316             :       }  // End for jj
    +     317             : 
    +     318             :       // Save K for restarts with new shifts
    +     319       99124 :       for (i = 0; i < N; i++)
    +     320       86376 :         temp[i] = K[i];
    +     321             : 
    +     322             :       // Loop to select the quadratic corresponding to each new shift
    +     323             : 
    +     324       12776 :       for (jj = 1; jj <= 20; jj++) {
    +     325             :         // Quadratic corresponds to a double shift to a non-real point and its
    +     326             :         // complex conjugate. The point has modulus BND and amplitude rotated
    +     327             :         // by 94 degrees from the previous shift.
    +     328             : 
    +     329       12776 :         xxx = -(sinr * yy) + cosr * xx;
    +     330       12776 :         yy  = sinr * xx + cosr * yy;
    +     331       12776 :         xx  = xxx;
    +     332       12776 :         sr  = bnd * xx;
    +     333             : 
    +     334             :         // Second stage calculation, fixed quadratic
    +     335             : 
    +     336       12776 :         Fxshfr_ak1(20 * jj, &NZ, sr, bnd, K, N, p, NN, qp, &lzi, &lzr, &szi, &szr);
    +     337             : 
    +     338       12776 :         if (NZ != 0) {
    +     339             :           // The second stage jumps directly to one of the third stage
    +     340             :           // iterations and
    +     341             :           // returns here if successful. Deflate the polynomial, store the zero
    +     342             :           // or
    +     343             :           // zeros, and return to the main algorithm.
    +     344             : 
    +     345       12748 :           j        = (*Degree) - N;
    +     346       12748 :           zeror[j] = szr;
    +     347       12748 :           zeroi[j] = szi;
    +     348       12748 :           NN       = NN - NZ;
    +     349       12748 :           N        = NN - 1;
    +     350       93482 :           for (i = 0; i < NN; i++)
    +     351       80734 :             p[i] = qp[i];
    +     352       12748 :           if (NZ != 1) {
    +     353        5642 :             zeror[j + 1] = lzr;
    +     354        5642 :             zeroi[j + 1] = lzi;
    +     355             :           }  // End if (NZ != 1)
    +     356       12748 :           break;
    +     357             :         }       // End if (NZ != 0)
    +     358             :         else {  // Else (NZ == 0)
    +     359             : 
    +     360             :           // If the iteration is unsuccessful, another quadratic is chosen after
    +     361             :           // restoring K
    +     362         354 :           for (i = 0; i < N; i++)
    +     363         326 :             K[i] = temp[i];
    +     364             :         }  // End else (NZ == 0)
    +     365             : 
    +     366             :       }  // End for jj
    +     367             : 
    +     368             :       // Return with failure if no convergence with 20 shifts
    +     369             : 
    +     370       12748 :       if (jj > 20) {
    +     371             :         cout << "\nFailure. No convergence after 20 shifts. Program "
    +     372           0 :                 "terminated.\n";
    +     373           0 :         *Degree -= N;
    +     374           0 :         break;
    +     375             :       }  // End if (jj > 20)
    +     376             : 
    +     377             :     }  // End while (N >= 1)
    +     378             : 
    +     379             :   }       // End if op[0] != 0
    +     380             :   else {  // else op[0] == 0
    +     381             :     cout << "\nThe leading coefficient is zero. No further action taken. "
    +     382           0 :             "Program terminated.\n";
    +     383           0 :     *Degree = 0;
    +     384             :   }  // End else op[0] == 0
    +     385             : 
    +     386        2736 :   return;
    +     387             : }  // End rpoly_ak1
    +     388             : 
    +     389       12776 : void Fxshfr_ak1(int L2, int* NZ, double sr, double bnd, double K[MDP1], int N, double p[MDP1], int NN, double qp[MDP1], double* lzi, double* lzr, double* szi,
    +     390             :                 double* szr) {
    +     391             :   // Computes up to L2 fixed shift K-polynomials, testing for convergence in the
    +     392             :   // linear or
    +     393             :   // quadratic case. Initiates one of the variable shift iterations and returns
    +     394             :   // with the
    +     395             :   // number of zeros found.
    +     396             : 
    +     397             :   // L2 limit of fixed shift steps
    +     398             :   // NZ number of zeros found
    +     399             : 
    +     400             :   int    fflag, i, iFlag, j, spass, stry, tFlag, vpass, vtry;
    +     401             :   double a, a1, a3, a7, b, betas, betav, c, d, e, f, g, h, oss, ots, otv, ovv, s, ss, ts, tss, tv, tvv, u, ui, v, vi, vv;
    +     402             :   double qk[MDP1], svk[MDP1];
    +     403             : 
    +     404       12776 :   *NZ   = 0;
    +     405       12776 :   betav = betas = 0.25;
    +     406       12776 :   u             = -(2.0 * sr);
    +     407       12776 :   oss           = sr;
    +     408       12776 :   ovv = v = bnd;
    +     409             : 
    +     410             :   // Evaluate polynomial by synthetic division
    +     411       12776 :   QuadSD_ak1(NN, u, v, p, qp, &a, &b);
    +     412             : 
    +     413       12776 :   tFlag = calcSC_ak1(N, a, b, &a1, &a3, &a7, &c, &d, &e, &f, &g, &h, K, u, v, qk);
    +     414             : 
    +     415       30817 :   for (j = 0; j < L2; j++) {
    +     416             :     // Calculate next K polynomial and estimate v
    +     417       30789 :     nextK_ak1(N, tFlag, a, b, a1, &a3, &a7, K, qk, qp);
    +     418       30789 :     tFlag = calcSC_ak1(N, a, b, &a1, &a3, &a7, &c, &d, &e, &f, &g, &h, K, u, v, qk);
    +     419       30789 :     newest_ak1(tFlag, &ui, &vi, a, a1, a3, a7, b, c, d, f, g, h, u, v, K, N, p);
    +     420             : 
    +     421       30789 :     vv = vi;
    +     422             : 
    +     423             :     // Estimate s
    +     424             : 
    +     425       30789 :     ss = ((K[N - 1] != 0.0) ? -(p[N] / K[N - 1]) : 0.0);
    +     426             : 
    +     427       30789 :     ts = tv = 1.0;
    +     428             : 
    +     429       30789 :     if ((j != 0) && (tFlag != 3)) {
    +     430             :       // Compute relative measures of convergence of s and v sequences
    +     431             : 
    +     432       18013 :       tv = ((vv != 0.0) ? fabs((vv - ovv) / vv) : tv);
    +     433       18013 :       ts = ((ss != 0.0) ? fabs((ss - oss) / ss) : ts);
    +     434             : 
    +     435             :       // If decreasing, multiply the two most recent convergence measures
    +     436             : 
    +     437       18013 :       tvv = ((tv < otv) ? tv * otv : 1.0);
    +     438       18013 :       tss = ((ts < ots) ? ts * ots : 1.0);
    +     439             : 
    +     440             :       // Compare with convergence criteria
    +     441             : 
    +     442       18013 :       vpass = ((tvv < betav) ? 1 : 0);
    +     443       18013 :       spass = ((tss < betas) ? 1 : 0);
    +     444             : 
    +     445       18013 :       if ((spass) || (vpass)) {
    +     446             :         // At least one sequence has passed the convergence test.
    +     447             :         // Store variables before iterating
    +     448             : 
    +     449      113244 :         for (i = 0; i < N; i++)
    +     450       98810 :           svk[i] = K[i];
    +     451             : 
    +     452       14434 :         s = ss;
    +     453             : 
    +     454             :         // Choose iteration according to the fastest converging sequence
    +     455             : 
    +     456       14434 :         stry = vtry = 0;
    +     457       14434 :         fflag       = 1;
    +     458             : 
    +     459         264 :         do {
    +     460       14698 :           iFlag = 1;  // Begin each loop by assuming RealIT will be called
    +     461             :                       // UNLESS iFlag changed below
    +     462             : 
    +     463       14698 :           if ((fflag && ((fflag = 0) == 0)) && ((spass) && (!vpass || (tss < tvv)))) {
    +     464             :             ;  // Do nothing. Provides a quick "short circuit".
    +     465             :           }    // End if (fflag)
    +     466             : 
    +     467             :           else {  // else !fflag
    +     468        7902 :             QuadIT_ak1(N, NZ, ui, vi, szr, szi, lzr, lzi, qp, NN, &a, &b, p, qk, &a1, &a3, &a7, &d, &e, &f, &g, &h, K);
    +     469             : 
    +     470        7902 :             if ((*NZ) > 0)
    +     471        5642 :               return;
    +     472             : 
    +     473             :             // Quadratic iteration has failed. Flag that it has been tried and
    +     474             :             // decrease the
    +     475             :             // convergence criterion
    +     476             : 
    +     477        2260 :             vtry = 1;
    +     478        2260 :             betav *= 0.25;
    +     479             : 
    +     480             :             // Try linear iteration if it has not been tried and the s sequence
    +     481             :             // is converging
    +     482        2260 :             if (stry || (!spass)) {
    +     483         901 :               iFlag = 0;
    +     484             :             }  // End if (stry || (!spass))
    +     485             :             else {
    +     486        9597 :               for (i = 0; i < N; i++)
    +     487        8238 :                 K[i] = svk[i];
    +     488             :             }  // End if (stry || !spass)
    +     489             : 
    +     490             :           }  // End else !fflag
    +     491             : 
    +     492        9056 :           if (iFlag != 0) {
    +     493        8155 :             RealIT_ak1(&iFlag, NZ, &s, N, p, NN, qp, szr, szi, K, qk);
    +     494             : 
    +     495        8155 :             if ((*NZ) > 0)
    +     496        7106 :               return;
    +     497             : 
    +     498             :             // Linear iteration has failed. Flag that it has been tried and
    +     499             :             // decrease the
    +     500             :             // convergence criterion
    +     501             : 
    +     502        1049 :             stry = 1;
    +     503        1049 :             betas *= 0.25;
    +     504             : 
    +     505        1049 :             if (iFlag != 0) {
    +     506             :               // If linear iteration signals an almost double real zero, attempt
    +     507             :               // quadratic iteration
    +     508             : 
    +     509          65 :               ui = -(s + s);
    +     510          65 :               vi = s * s;
    +     511          65 :               continue;
    +     512             : 
    +     513             :             }  // End if (iFlag != 0)
    +     514             :           }    // End if (iFlag != 0)
    +     515             : 
    +     516             :           // Restore variables
    +     517       15473 :           for (i = 0; i < N; i++)
    +     518       13588 :             K[i] = svk[i];
    +     519             : 
    +     520             :           // Try quadratic iteration if it has not been tried and the v sequence
    +     521             :           // is converging
    +     522             : 
    +     523        1950 :         } while (vpass && !vtry);  // End do-while loop
    +     524             : 
    +     525             :         // Re-compute qp and scalar values to continue the second stage
    +     526             : 
    +     527        1686 :         QuadSD_ak1(NN, u, v, p, qp, &a, &b);
    +     528        1686 :         tFlag = calcSC_ak1(N, a, b, &a1, &a3, &a7, &c, &d, &e, &f, &g, &h, K, u, v, qk);
    +     529             : 
    +     530             :       }  // End if ((spass) || (vpass))
    +     531             : 
    +     532             :     }  // End if ((j != 0) && (tFlag != 3))
    +     533             : 
    +     534       18041 :     ovv = vv;
    +     535       18041 :     oss = ss;
    +     536       18041 :     otv = tv;
    +     537       18041 :     ots = ts;
    +     538             :   }  // End for j
    +     539             : 
    +     540          28 :   return;
    +     541             : }  // End Fxshfr_ak1
    +     542             : 
    +     543      113409 : void QuadSD_ak1(int NN, double u, double v, double p[MDP1], double q[MDP1], double* a, double* b) {
    +     544             :   // Divides p by the quadratic 1, u, v placing the quotient in q and the
    +     545             :   // remainder in a, b
    +     546             : 
    +     547             :   int i;
    +     548             : 
    +     549      113409 :   q[0] = *b = p[0];
    +     550      113409 :   q[1] = *a = -((*b) * u) + p[1];
    +     551             : 
    +     552      704406 :   for (i = 2; i < NN; i++) {
    +     553      590997 :     q[i] = -((*a) * u + (*b) * v) + p[i];
    +     554      590997 :     *b   = (*a);
    +     555      590997 :     *a   = q[i];
    +     556             :   }  // End for i
    +     557             : 
    +     558      113409 :   return;
    +     559             : }  // End QuadSD_ak1
    +     560             : 
    +     561       77291 : int calcSC_ak1(int N, double a, double b, double* a1, double* a3, double* a7, double* c, double* d, double* e, double* f, double* g, double* h, double K[MDP1],
    +     562             :                double u, double v, double qk[MDP1]) {
    +     563             :   // This routine calculates scalar quantities used to compute the next K
    +     564             :   // polynomial and
    +     565             :   // new estimates of the quadratic coefficients.
    +     566             : 
    +     567             :   // calcSC - integer variable set here indicating how the calculations are
    +     568             :   // normalized
    +     569             :   //  to avoid overflow.
    +     570             : 
    +     571       77291 :   int dumFlag = 3;  // TYPE = 3 indicates the quadratic is almost a factor of K
    +     572             : 
    +     573             :   // Synthetic division of K by the quadratic 1, u, v
    +     574       77291 :   QuadSD_ak1(N, u, v, K, qk, c, d);
    +     575             : 
    +     576       77291 :   if (fabs((*c)) <= (10.0 * DBL_EPSILON * fabs(K[N - 1]))) {
    +     577           0 :     if (fabs((*d)) <= (10.0 * DBL_EPSILON * fabs(K[N - 2])))
    +     578           0 :       return dumFlag;
    +     579             :   }  // End if (fabs(c) <= (100.0*DBL_EPSILON*fabs(K[N - 1])))
    +     580             : 
    +     581       77291 :   *h = v * b;
    +     582       77291 :   if (fabs((*d)) >= fabs((*c))) {
    +     583       59106 :     dumFlag = 2;  // TYPE = 2 indicates that all formulas are divided by d
    +     584       59106 :     *e      = a / (*d);
    +     585       59106 :     *f      = (*c) / (*d);
    +     586       59106 :     *g      = u * b;
    +     587       59106 :     *a3     = (*e) * ((*g) + a) + (*h) * (b / (*d));
    +     588       59106 :     *a1     = -a + (*f) * b;
    +     589       59106 :     *a7     = (*h) + ((*f) + u) * a;
    +     590             :   }  // End if(fabs(d) >= fabs(c))
    +     591             :   else {
    +     592       18185 :     dumFlag = 1;  // TYPE = 1 indicates that all formulas are divided by c;
    +     593       18185 :     *e      = a / (*c);
    +     594       18185 :     *f      = (*d) / (*c);
    +     595       18185 :     *g      = (*e) * u;
    +     596       18185 :     *a3     = (*e) * a + ((*g) + (*h) / (*c)) * b;
    +     597       18185 :     *a1     = -(a * ((*d) / (*c))) + b;
    +     598       18185 :     *a7     = (*g) * (*d) + (*h) * (*f) + a;
    +     599             :   }  // End else
    +     600             : 
    +     601       77291 :   return dumFlag;
    +     602             : }  // End calcSC_ak1
    +     603             : 
    +     604       46819 : void nextK_ak1(int N, int tFlag, double a, double b, double a1, double* a3, double* a7, double K[MDP1], double qk[MDP1], double qp[MDP1]) {
    +     605             :   // Computes the next K polynomials using the scalars computed in calcSC_ak1
    +     606             : 
    +     607             :   int    i;
    +     608             :   double temp;
    +     609             : 
    +     610       46819 :   if (tFlag == 3) {  // Use unscaled form of the recurrence
    +     611           0 :     K[1] = K[0] = 0.0;
    +     612             : 
    +     613           0 :     for (i = 2; i < N; i++)
    +     614           0 :       K[i] = qk[i - 2];
    +     615             : 
    +     616           0 :     return;
    +     617             :   }  // End if (tFlag == 3)
    +     618             : 
    +     619       46819 :   temp = ((tFlag == 1) ? b : a);
    +     620             : 
    +     621       46819 :   if (fabs(a1) > (10.0 * DBL_EPSILON * fabs(temp))) {
    +     622             :     // Use scaled form of the recurrence
    +     623             : 
    +     624       46819 :     (*a7) /= a1;
    +     625       46819 :     (*a3) /= a1;
    +     626       46819 :     K[0] = qp[0];
    +     627       46819 :     K[1] = -((*a7) * qp[0]) + qp[1];
    +     628             : 
    +     629      282753 :     for (i = 2; i < N; i++)
    +     630      235934 :       K[i] = -((*a7) * qp[i - 1]) + (*a3) * qk[i - 2] + qp[i];
    +     631             : 
    +     632             :   }  // End if (fabs(a1) > (10.0*DBL_EPSILON*fabs(temp)))
    +     633             :   else {
    +     634             :     // If a1 is nearly zero, then use a special form of the recurrence
    +     635             : 
    +     636           0 :     K[0] = 0.0;
    +     637           0 :     K[1] = -(*a7) * qp[0];
    +     638             : 
    +     639           0 :     for (i = 2; i < N; i++)
    +     640           0 :       K[i] = -((*a7) * qp[i - 1]) + (*a3) * qk[i - 2];
    +     641             :   }  // End else
    +     642             : 
    +     643       46819 :   return;
    +     644             : 
    +     645             : }  // End nextK_ak1
    +     646             : 
    +     647       46799 : void newest_ak1(int tFlag, double* uu, double* vv, double a, double a1, double a3, double a7, double b, double c, double d, double f, double g, double h,
    +     648             :                 double u, double v, double K[MDP1], int N, double p[MDP1]) {
    +     649             :   // Compute new estimates of the quadratic coefficients using the scalars
    +     650             :   // computed in calcSC_ak1
    +     651             : 
    +     652             :   double a4, a5, b1, b2, c1, c2, c3, c4, temp;
    +     653             : 
    +     654       46799 :   (*vv) = (*uu) = 0.0;  // The quadratic is zeroed
    +     655             : 
    +     656       46799 :   if (tFlag != 3) {
    +     657       46799 :     if (tFlag != 2) {
    +     658       10347 :       a4 = a + u * b + h * f;
    +     659       10347 :       a5 = c + (u + v * f) * d;
    +     660             :     }       // End if (tFlag != 2)
    +     661             :     else {  // else tFlag == 2
    +     662       36452 :       a4 = (a + g) * f + h;
    +     663       36452 :       a5 = (f + u) * c + v * d;
    +     664             :     }  // End else tFlag == 2
    +     665             : 
    +     666             :     // Evaluate new quadratic coefficients
    +     667             : 
    +     668       46799 :     b1   = -K[N - 1] / p[N];
    +     669       46799 :     b2   = -(K[N - 2] + b1 * p[N - 1]) / p[N];
    +     670       46799 :     c1   = v * b2 * a1;
    +     671       46799 :     c2   = b1 * a7;
    +     672       46799 :     c3   = b1 * b1 * a3;
    +     673       46799 :     c4   = -(c2 + c3) + c1;
    +     674       46799 :     temp = -c4 + a5 + b1 * a4;
    +     675       46799 :     if (temp != 0.0) {
    +     676       46782 :       *uu = -((u * (c3 + c2) + v * (b1 * a1 + b2 * a7)) / temp) + u;
    +     677       46782 :       *vv = v * (1.0 + c4 / temp);
    +     678             :     }  // End if (temp != 0)
    +     679             : 
    +     680             :   }  // End if (tFlag != 3)
    +     681             : 
    +     682       46799 :   return;
    +     683             : }  // End newest_ak1
    +     684             : 
    +     685        7902 : void QuadIT_ak1(int N, int* NZ, double uu, double vv, double* szr, double* szi, double* lzr, double* lzi, double qp[MDP1], int NN, double* a, double* b,
    +     686             :                 double p[MDP1], double qk[MDP1], double* a1, double* a3, double* a7, double* d, double* e, double* f, double* g, double* h, double K[MDP1]) {
    +     687             :   // Variable-shift K-polynomial iteration for a quadratic factor converges only
    +     688             :   // if the
    +     689             :   // zeros are equimodular or nearly so.
    +     690             : 
    +     691        7902 :   int    i, j = 0, tFlag, triedFlag = 0;
    +     692             :   double c, ee, mp, omp, relstp, t, u, ui, v, vi, zm;
    +     693             : 
    +     694        7902 :   *NZ = 0;   // Number of zeros found
    +     695        7902 :   u   = uu;  // uu and vv are coefficients of the starting quadratic
    +     696        7902 :   v   = vv;
    +     697             : 
    +     698       16005 :   do {
    +     699       23907 :     Quad_ak1(1.0, u, v, szr, szi, lzr, lzi);
    +     700             : 
    +     701             :     // Return if roots of the quadratic are real and not close to multiple or
    +     702             :     // nearly
    +     703             :     // equal and of opposite sign.
    +     704             : 
    +     705       23907 :     if (fabs(fabs(*szr) - fabs(*lzr)) > 0.01 * fabs(*lzr))
    +     706        2255 :       break;
    +     707             : 
    +     708             :     // Evaluate polynomial by quadratic synthetic division
    +     709             : 
    +     710       21652 :     QuadSD_ak1(NN, u, v, p, qp, a, b);
    +     711             : 
    +     712       21652 :     mp = fabs(-((*szr) * (*b)) + (*a)) + fabs((*szi) * (*b));
    +     713             : 
    +     714             :     // Compute a rigorous bound on the rounding error in evaluating p
    +     715             : 
    +     716       21652 :     zm = sqrt(fabs(v));
    +     717       21652 :     ee = 2.0 * fabs(qp[0]);
    +     718       21652 :     t  = -((*szr) * (*b));
    +     719             : 
    +     720      145757 :     for (i = 1; i < N; i++)
    +     721      124105 :       ee = ee * zm + fabs(qp[i]);
    +     722             : 
    +     723       21652 :     ee = ee * zm + fabs((*a) + t);
    +     724       21652 :     ee = (9.0 * ee + 2.0 * fabs(t) - 7.0 * (fabs((*a) + t) + zm * fabs((*b)))) * DBL_EPSILON;
    +     725             : 
    +     726             :     // Iteration has converged sufficiently if the polynomial value is less than
    +     727             :     // 20 times this bound
    +     728             : 
    +     729       21652 :     if (mp <= 20.0 * ee) {
    +     730        5642 :       *NZ = 2;
    +     731        5642 :       break;
    +     732             :     }  // End if (mp <= 20.0*ee)
    +     733             : 
    +     734       16010 :     j++;
    +     735             : 
    +     736             :     // Stop iteration after 20 steps
    +     737       16010 :     if (j > 20)
    +     738           0 :       break;
    +     739             : 
    +     740       16010 :     if (j >= 2) {
    +     741       10012 :       if ((relstp <= 0.01) && (mp >= omp) && (!triedFlag)) {
    +     742             :         // A cluster appears to be stalling the convergence. Five fixed shift
    +     743             :         // steps are taken with a u, v close to the cluster.
    +     744             : 
    +     745           4 :         relstp = ((relstp < DBL_EPSILON) ? sqrt(DBL_EPSILON) : sqrt(relstp));
    +     746             : 
    +     747           4 :         u -= u * relstp;
    +     748           4 :         v += v * relstp;
    +     749             : 
    +     750           4 :         QuadSD_ak1(NN, u, v, p, qp, a, b);
    +     751             : 
    +     752          24 :         for (i = 0; i < 5; i++) {
    +     753          20 :           tFlag = calcSC_ak1(N, *a, *b, a1, a3, a7, &c, d, e, f, g, h, K, u, v, qk);
    +     754          20 :           nextK_ak1(N, tFlag, *a, *b, *a1, a3, a7, K, qk, qp);
    +     755             :         }  // End for i
    +     756             : 
    +     757           4 :         triedFlag = 1;
    +     758           4 :         j         = 0;
    +     759             : 
    +     760             :       }  // End if ((relstp <= 0.01) && (mp >= omp) && (!triedFlag))
    +     761             : 
    +     762             :     }  // End if (j >= 2)
    +     763             : 
    +     764       16010 :     omp = mp;
    +     765             : 
    +     766             :     // Calculate next K polynomial and new u and v
    +     767             : 
    +     768       16010 :     tFlag = calcSC_ak1(N, *a, *b, a1, a3, a7, &c, d, e, f, g, h, K, u, v, qk);
    +     769       16010 :     nextK_ak1(N, tFlag, *a, *b, *a1, a3, a7, K, qk, qp);
    +     770       16010 :     tFlag = calcSC_ak1(N, *a, *b, a1, a3, a7, &c, d, e, f, g, h, K, u, v, qk);
    +     771       16010 :     newest_ak1(tFlag, &ui, &vi, *a, *a1, *a3, *a7, *b, c, *d, *f, *g, *h, u, v, K, N, p);
    +     772             : 
    +     773             :     // If vi is zero, the iteration is not converging
    +     774       16010 :     if (vi != 0) {
    +     775       16005 :       relstp = fabs((-v + vi) / vi);
    +     776       16005 :       u      = ui;
    +     777       16005 :       v      = vi;
    +     778             :     }                 // End if (vi != 0)
    +     779       16010 :   } while (vi != 0);  // End do-while loop
    +     780             : 
    +     781       15804 :   return;
    +     782             : 
    +     783             : }  // End QuadIT_ak1
    +     784             : 
    +     785        8155 : void RealIT_ak1(int* iFlag, int* NZ, double* sss, int N, double p[MDP1], int NN, double qp[MDP1], double* szr, double* szi, double K[MDP1], double qk[MDP1]) {
    +     786             :   // Variable-shift H-polynomial iteration for a real zero
    +     787             : 
    +     788             :   // sss  - starting iterate
    +     789             :   // NZ - number of zeros found
    +     790             :   // iFlag  - flag to indicate a pair of zeros near real axis
    +     791             : 
    +     792        8155 :   int    i, j = 0, nm1 = N - 1;
    +     793             :   double ee, kv, mp, ms, omp, pv, s, t;
    +     794             : 
    +     795        8155 :   *iFlag = *NZ = 0;
    +     796        8155 :   s            = *sss;
    +     797             : 
    +     798             :   for (;;) {
    +     799       36811 :     qp[0] = pv = p[0];
    +     800             : 
    +     801             :     // Evaluate p at s
    +     802      283865 :     for (i = 1; i < NN; i++)
    +     803      247054 :       qp[i] = pv = pv * s + p[i];
    +     804             : 
    +     805       36811 :     mp = fabs(pv);
    +     806             : 
    +     807             :     // Compute a rigorous bound on the error in evaluating p
    +     808             : 
    +     809       36811 :     ms = fabs(s);
    +     810       36811 :     ee = 0.5 * fabs(qp[0]);
    +     811      283865 :     for (i = 1; i < NN; i++)
    +     812      247054 :       ee = ee * ms + fabs(qp[i]);
    +     813             : 
    +     814             :     // Iteration has converged sufficiently if the polynomial value is less than
    +     815             :     // 20 times this bound
    +     816             : 
    +     817       36811 :     if (mp <= 20.0 * DBL_EPSILON * (2.0 * ee - mp)) {
    +     818        7106 :       *NZ  = 1;
    +     819        7106 :       *szr = s;
    +     820        7106 :       *szi = 0.0;
    +     821        7106 :       break;
    +     822             :     }  // End if (mp <= 20.0*DBL_EPSILON*(2.0*ee - mp))
    +     823             : 
    +     824       29705 :     j++;
    +     825             : 
    +     826             :     // Stop iteration after 10 steps
    +     827             : 
    +     828       29705 :     if (j > 10)
    +     829         984 :       break;
    +     830             : 
    +     831       28721 :     if (j >= 2) {
    +     832       20654 :       if ((fabs(t) <= 0.001 * fabs(-t + s)) && (mp > omp)) {
    +     833             :         // A cluster of zeros near the real axis has been encountered;
    +     834             :         // Return with iFlag set to initiate a quadratic iteration
    +     835             : 
    +     836          65 :         *iFlag = 1;
    +     837          65 :         *sss   = s;
    +     838          65 :         break;
    +     839             :       }  // End if ((fabs(t) <= 0.001*fabs(s - t)) && (mp > omp))
    +     840             : 
    +     841             :     }  // End if (j >= 2)
    +     842             : 
    +     843             :     // Return if the polynomial value has increased significantly
    +     844             : 
    +     845       28656 :     omp = mp;
    +     846             : 
    +     847             :     // Compute t, the next polynomial and the new iterate
    +     848       28656 :     qk[0] = kv = K[0];
    +     849      191109 :     for (i = 1; i < N; i++)
    +     850      162453 :       qk[i] = kv = kv * s + K[i];
    +     851             : 
    +     852       28656 :     if (fabs(kv) > fabs(K[nm1]) * 10.0 * DBL_EPSILON) {
    +     853             :       // Use the scaled form of the recurrence if the value of K at s is
    +     854             :       // non-zero
    +     855       28656 :       t    = -(pv / kv);
    +     856       28656 :       K[0] = qp[0];
    +     857      191109 :       for (i = 1; i < N; i++)
    +     858      162453 :         K[i] = t * qk[i - 1] + qp[i];
    +     859             :     }       // End if (fabs(kv) > fabs(K[nm1])*10.0*DBL_EPSILON)
    +     860             :     else {  // else (fabs(kv) <= fabs(K[nm1])*10.0*DBL_EPSILON)
    +     861             :       // Use unscaled form
    +     862           0 :       K[0] = 0.0;
    +     863           0 :       for (i = 1; i < N; i++)
    +     864           0 :         K[i] = qk[i - 1];
    +     865             :     }  // End else (fabs(kv) <= fabs(K[nm1])*10.0*DBL_EPSILON)
    +     866             : 
    +     867       28656 :     kv = K[0];
    +     868      191109 :     for (i = 1; i < N; i++)
    +     869      162453 :       kv = kv * s + K[i];
    +     870             : 
    +     871       28656 :     t = ((fabs(kv) > (fabs(K[nm1]) * 10.0 * DBL_EPSILON)) ? -(pv / kv) : 0.0);
    +     872             : 
    +     873       28656 :     s += t;
    +     874             : 
    +     875             :   }  // End infinite for loop
    +     876             : 
    +     877        8155 :   return;
    +     878             : 
    +     879             : }  // End RealIT_ak1
    +     880             : 
    +     881       25733 : void Quad_ak1(double a, double b1, double c, double* sr, double* si, double* lr, double* li) {
    +     882             :   // Calculates the zeros of the quadratic a*Z^2 + b1*Z + c
    +     883             :   // The quadratic formula, modified to avoid overflow, is used to find the
    +     884             :   // larger zero if the
    +     885             :   // zeros are real and both zeros are complex. The smaller real zero is found
    +     886             :   // directly from
    +     887             :   // the product of the zeros c/a.
    +     888             : 
    +     889             :   double b, d, e;
    +     890             : 
    +     891       25733 :   *sr = *si = *lr = *li = 0.0;
    +     892             : 
    +     893       25733 :   if (a == 0) {
    +     894           0 :     *sr = ((b1 != 0) ? -(c / b1) : *sr);
    +     895           0 :     return;
    +     896             :   }  // End if (a == 0))
    +     897             : 
    +     898       25733 :   if (c == 0) {
    +     899           0 :     *lr = -(b1 / a);
    +     900           0 :     return;
    +     901             :   }  // End if (c == 0)
    +     902             : 
    +     903             :   // Compute discriminant avoiding overflow
    +     904             : 
    +     905       25733 :   b = b1 / 2.0;
    +     906       25733 :   if (fabs(b) < fabs(c)) {
    +     907       10889 :     e = ((c >= 0) ? a : -a);
    +     908       10889 :     e = -e + b * (b / fabs(c));
    +     909       10889 :     d = sqrt(fabs(e)) * sqrt(fabs(c));
    +     910             :   }       // End if (fabs(b) < fabs(c))
    +     911             :   else {  // Else (fabs(b) >= fabs(c))
    +     912       14844 :     e = -((a / b) * (c / b)) + 1.0;
    +     913       14844 :     d = sqrt(fabs(e)) * (fabs(b));
    +     914             :   }  // End else (fabs(b) >= fabs(c))
    +     915             : 
    +     916       25733 :   if (e >= 0) {
    +     917             :     // Real zeros
    +     918             : 
    +     919        3784 :     d   = ((b >= 0) ? -d : d);
    +     920        3784 :     *lr = (-b + d) / a;
    +     921        3784 :     *sr = ((*lr != 0) ? (c / (*lr)) / a : *sr);
    +     922             :   }       // End if (e >= 0)
    +     923             :   else {  // Else (e < 0)
    +     924             :     // Complex conjugate zeros
    +     925             : 
    +     926       21949 :     *lr = *sr = -(b / a);
    +     927       21949 :     *si       = fabs(d / a);
    +     928       21949 :     *li       = -(*si);
    +     929             :   }  // End else (e < 0)
    +     930             : 
    +     931       25733 :   return;
    +     932             : }  // End Quad_ak1
    +     933             : 
    +     934             : 
    +     935             : }  // namespace rpoly_impl
    +     936             : 
    +     937             : //}
    +     938             : 
    +     939        2736 : void rpolyWrapper(double* coefficients_decreasing, int* degree, double* roots_real, double* roots_imag) {
    +     940        2736 :   rpoly_impl::rpoly_ak1(coefficients_decreasing, degree, roots_real, roots_imag);
    +     941        2736 : }
    +     942             : 
    +     943             : }  // namespace eth_trajectory_generation
    +
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    Date:2024-04-17 23:52:03Functions:61346.2 %
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::printSegment(std::basic_ostream<char, std::char_traits<char> >&, eth_trajectory_generation::Segment const&, int)0
    eth_trajectory_generation::Segment::offsetSegment(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)0
    eth_trajectory_generation::operator<<(std::basic_ostream<char, std::char_traits<char> >&, eth_trajectory_generation::Segment const&)0
    eth_trajectory_generation::operator<<(std::basic_ostream<char, std::char_traits<char> >&, std::vector<eth_trajectory_generation::Segment, std::allocator<eth_trajectory_generation::Segment> > const&)0
    eth_trajectory_generation::Segment::getSegmentWithSingleDimension(int, eth_trajectory_generation::Segment*) const0
    eth_trajectory_generation::Segment::getSegmentWithAppendedDimension(eth_trajectory_generation::Segment const&, eth_trajectory_generation::Segment*) const0
    eth_trajectory_generation::Segment::operator==(eth_trajectory_generation::Segment const&) const0
    eth_trajectory_generation::Segment::computeMinMaxMagnitudeCandidates(int, double, double, std::vector<int, std::allocator<int> > const&, std::vector<eth_trajectory_generation::Extremum, std::allocator<eth_trajectory_generation::Extremum> >*) const2844
    eth_trajectory_generation::Segment::selectMinMaxMagnitudeFromCandidates(int, double, double, std::vector<int, std::allocator<int> > const&, std::vector<eth_trajectory_generation::Extremum, std::allocator<eth_trajectory_generation::Extremum> > const&, eth_trajectory_generation::Extremum*, eth_trajectory_generation::Extremum*) const2844
    eth_trajectory_generation::Segment::computeMinMaxMagnitudeCandidateTimes(int, double, double, std::vector<int, std::allocator<int> > const&, std::vector<double, std::allocator<double> >*) const2844
    eth_trajectory_generation::Segment::evaluate(double, int) const6340
    eth_trajectory_generation::Segment::operator[](unsigned long) const66048
    eth_trajectory_generation::Segment::operator[](unsigned long)73076
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::printSegment(std::basic_ostream<char, std::char_traits<char> >&, eth_trajectory_generation::Segment const&, int)0
    eth_trajectory_generation::Segment::offsetSegment(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)0
    eth_trajectory_generation::Segment::operator[](unsigned long)73076
    eth_trajectory_generation::operator<<(std::basic_ostream<char, std::char_traits<char> >&, eth_trajectory_generation::Segment const&)0
    eth_trajectory_generation::operator<<(std::basic_ostream<char, std::char_traits<char> >&, std::vector<eth_trajectory_generation::Segment, std::allocator<eth_trajectory_generation::Segment> > const&)0
    eth_trajectory_generation::Segment::getSegmentWithSingleDimension(int, eth_trajectory_generation::Segment*) const0
    eth_trajectory_generation::Segment::getSegmentWithAppendedDimension(eth_trajectory_generation::Segment const&, eth_trajectory_generation::Segment*) const0
    eth_trajectory_generation::Segment::computeMinMaxMagnitudeCandidates(int, double, double, std::vector<int, std::allocator<int> > const&, std::vector<eth_trajectory_generation::Extremum, std::allocator<eth_trajectory_generation::Extremum> >*) const2844
    eth_trajectory_generation::Segment::selectMinMaxMagnitudeFromCandidates(int, double, double, std::vector<int, std::allocator<int> > const&, std::vector<eth_trajectory_generation::Extremum, std::allocator<eth_trajectory_generation::Extremum> > const&, eth_trajectory_generation::Extremum*, eth_trajectory_generation::Extremum*) const2844
    eth_trajectory_generation::Segment::computeMinMaxMagnitudeCandidateTimes(int, double, double, std::vector<int, std::allocator<int> > const&, std::vector<double, std::allocator<double> >*) const2844
    eth_trajectory_generation::Segment::evaluate(double, int) const6340
    eth_trajectory_generation::Segment::operator==(eth_trajectory_generation::Segment const&) const0
    eth_trajectory_generation::Segment::operator[](unsigned long) const66048
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    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generation - segment.cpp (source / functions)HitTotalCoverage
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #include <eth_trajectory_generation/segment.h>
    +      22             : 
    +      23             : #include <cmath>
    +      24             : #include <limits>
    +      25             : 
    +      26             : namespace eth_trajectory_generation
    +      27             : {
    +      28             : 
    +      29             : /* operator==(const Segment& rhs)() //{ */
    +      30             : 
    +      31           0 : bool Segment::operator==(const Segment& rhs) const {
    +      32           0 :   if (D_ != rhs.D_ || time_ != rhs.time_) {
    +      33           0 :     return false;
    +      34             :   } else {
    +      35           0 :     for (int i = 0; i < D(); i++) {
    +      36           0 :       if (polynomials_[i] != rhs[i]) {
    +      37           0 :         return false;
    +      38             :       }
    +      39             :     }
    +      40             :   }
    +      41           0 :   return true;
    +      42             : }
    +      43             : 
    +      44             : //}
    +      45             : 
    +      46             : /* Segment::operator[](size_t idx) //{ */
    +      47             : 
    +      48       73076 : Polynomial& Segment::operator[](size_t idx) {
    +      49       73076 :   CHECK_LT(idx, static_cast<size_t>(D_));
    +      50       73076 :   return polynomials_[idx];
    +      51             : }
    +      52             : 
    +      53             : //}
    +      54             : 
    +      55             : /* Segment::operator[](size_t idx) //{ */
    +      56             : 
    +      57       66048 : const Polynomial& Segment::operator[](size_t idx) const {
    +      58       66048 :   CHECK_LT(idx, static_cast<size_t>(D_));
    +      59       66048 :   return polynomials_[idx];
    +      60             : }
    +      61             : 
    +      62             : //}
    +      63             : 
    +      64             : /* evaluate() //{ */
    +      65             : 
    +      66        6340 : Eigen::VectorXd Segment::evaluate(double t, int derivative) const {
    +      67        6340 :   Eigen::VectorXd result(D_);
    +      68        6340 :   result.setZero();
    +      69       31700 :   for (int d = 0; d < D_; ++d) {
    +      70       25360 :     result[d] = polynomials_[d].evaluate(t, derivative);
    +      71             :   }
    +      72        6340 :   return result;
    +      73             : }
    +      74             : 
    +      75             : //}
    +      76             : 
    +      77             : /* printSegment() //{ */
    +      78             : 
    +      79           0 : void printSegment(std::ostream& stream, const Segment& s, int derivative) {
    +      80           0 :   CHECK(derivative >= 0 && derivative < s.N());
    +      81           0 :   stream << "t: " << s.getTime() << std::endl;
    +      82           0 :   stream << " coefficients for " << positionDerivativeToString(derivative) << ": " << std::endl;
    +      83           0 :   for (int i = 0; i < s.D(); ++i) {
    +      84           0 :     stream << "dim " << i << ": " << std::endl;
    +      85           0 :     stream << s[i].getCoefficients(derivative) << std::endl;
    +      86             :   }
    +      87           0 : }
    +      88             : 
    +      89             : //}
    +      90             : 
    +      91             : /* operator<<(std::ostream& stream, const Segment& s) //{ */
    +      92             : 
    +      93           0 : std::ostream& operator<<(std::ostream& stream, const Segment& s) {
    +      94           0 :   printSegment(stream, s, derivative_order::POSITION);
    +      95           0 :   return stream;
    +      96             : }
    +      97             : 
    +      98             : //}
    +      99             : 
    +     100             : /* operator<<(std::ostream& stream, const std::vector<Segment>& segments) //{ */
    +     101             : 
    +     102           0 : std::ostream& operator<<(std::ostream& stream, const std::vector<Segment>& segments) {
    +     103           0 :   for (const Segment& s : segments)
    +     104           0 :     stream << s << std::endl;
    +     105             : 
    +     106           0 :   return stream;
    +     107             : }
    +     108             : 
    +     109             : //}
    +     110             : 
    +     111             : /* computeMinMaxMagnitudeCandidateTimes() //{ */
    +     112             : 
    +     113        2844 : bool Segment::computeMinMaxMagnitudeCandidateTimes(
    +     114             : 
    +     115             :     int derivative, double t_start, double t_end, const std::vector<int>& dimensions, std::vector<double>* candidate_times) const {
    +     116        2844 :   CHECK_NOTNULL(candidate_times);
    +     117        2844 :   candidate_times->clear();
    +     118             :   // Compute magnitude derivative roots.
    +     119        2844 :   if (dimensions.empty()) {
    +     120           0 :     LOG(WARNING) << "No dimensions specified." << std::endl;
    +     121           0 :     return false;
    +     122        2844 :   } else if (dimensions.size() > 1) {
    +     123         948 :     const int       n_d                           = N_ - derivative;
    +     124         948 :     const int       n_dd                          = n_d - 1;
    +     125         948 :     const int       convolved_coefficients_length = Polynomial::getConvolutionLength(n_d, n_dd);
    +     126         948 :     Eigen::VectorXd convolved_coefficients(convolved_coefficients_length);
    +     127         948 :     convolved_coefficients.setZero();
    +     128        2844 :     for (int dim : dimensions) {
    +     129        1896 :       if (dim < 0 || dim >= D_) {
    +     130           0 :         LOG(WARNING) << "Specified dimensions " << dim << " are out of bounds [0.." << D_ - 1 << "]." << std::endl;
    +     131           0 :         return false;
    +     132             :       }
    +     133             :       // Our coefficients are INCREASING, so when you take the derivative,
    +     134             :       // only the lower powers of t have non-zero coefficients.
    +     135             :       // So we take the head.
    +     136        3792 :       Eigen::VectorXd d  = polynomials_[dim].getCoefficients(derivative).head(n_d);
    +     137        1896 :       Eigen::VectorXd dd = polynomials_[dim].getCoefficients(derivative + 1).head(n_dd);
    +     138        1896 :       convolved_coefficients += Polynomial::convolve(d, dd);
    +     139             :     }
    +     140         948 :     Polynomial polynomial_convolved(convolved_coefficients);
    +     141             : 
    +     142             :     // derivative = -1 because the convolved polynomial is the derivative
    +     143             :     // already. We wish to find the minimum and maximum candidates for the
    +     144             :     // integral.
    +     145         948 :     if (!polynomial_convolved.computeMinMaxCandidates(t_start, t_end, -1, candidate_times)) {
    +     146           0 :       return false;
    +     147             :     }
    +     148             :   } else {
    +     149             :     // For dimension.size() == 1  we can simply evaluate the roots of the
    +     150             :     // derivative.
    +     151        1896 :     if (!polynomials_[dimensions[0]].computeMinMaxCandidates(t_start, t_end, derivative, candidate_times)) {
    +     152           0 :       return false;
    +     153             :     }
    +     154             :   }
    +     155        2844 :   return true;
    +     156             : }
    +     157             : 
    +     158             : //}
    +     159             : 
    +     160             : /* computeMinMaxMagnitudeCandidates() //{ */
    +     161             : 
    +     162        2844 : bool Segment::computeMinMaxMagnitudeCandidates(
    +     163             : 
    +     164             :     int derivative, double t_start, double t_end, const std::vector<int>& dimensions, std::vector<Extremum>* candidates) const {
    +     165        2844 :   CHECK_NOTNULL(candidates);
    +     166             :   // Find candidate times (roots + start + end).
    +     167        2844 :   std::vector<double> candidate_times;
    +     168        2844 :   computeMinMaxMagnitudeCandidateTimes(derivative, t_start, t_end, dimensions, &candidate_times);
    +     169             : 
    +     170             :   // Evaluate candidate times.
    +     171        2844 :   candidates->resize(candidate_times.size());
    +     172       15599 :   for (size_t i = 0; i < candidate_times.size(); i++) {
    +     173       12755 :     double magnitude = 0.0;
    +     174       30274 :     for (int dim : dimensions) {
    +     175       17519 :       magnitude += std::pow(polynomials_[dim].evaluate(candidate_times[i], derivative), 2);
    +     176             :     }
    +     177       12755 :     magnitude        = std::sqrt(magnitude);
    +     178       12755 :     (*candidates)[i] = Extremum(candidate_times[i], magnitude, 0);
    +     179             :   }
    +     180             : 
    +     181        5688 :   return true;
    +     182             : }
    +     183             : 
    +     184             : //}
    +     185             : 
    +     186             : /* selectMinMaxMagnitudeFromCandidates() //{ */
    +     187             : 
    +     188        2844 : bool Segment::selectMinMaxMagnitudeFromCandidates(
    +     189             : 
    +     190             :     int derivative, double t_start, double t_end, const std::vector<int>& dimensions, const std::vector<Extremum>& candidates, Extremum* minimum,
    +     191             :     Extremum* maximum) const {
    +     192        2844 :   CHECK_NOTNULL(minimum);
    +     193        2844 :   CHECK_NOTNULL(maximum);
    +     194        2844 :   if (t_start > t_end) {
    +     195           0 :     LOG(WARNING) << "t_start is greater than t_end.";
    +     196           0 :     return false;
    +     197             :   }
    +     198             : 
    +     199        2844 :   minimum->value = std::numeric_limits<double>::max();
    +     200        2844 :   maximum->value = std::numeric_limits<double>::lowest();
    +     201             : 
    +     202             :   // Evaluate passed candidates.
    +     203       15599 :   for (const Extremum& candidate : candidates) {
    +     204       12755 :     if (candidate.time < t_start || candidate.time > t_end) {
    +     205           0 :       continue;
    +     206             :     }
    +     207       12755 :     *maximum = std::max(*maximum, candidate);
    +     208       12755 :     *minimum = std::min(*minimum, candidate);
    +     209             :   }
    +     210             : 
    +     211        2844 :   return true;
    +     212             : }
    +     213             : 
    +     214             : //}
    +     215             : 
    +     216             : /* selectMinMaxMagnitudeFromCandidates() //{ */
    +     217             : 
    +     218           0 : bool Segment::getSegmentWithSingleDimension(int dimension, Segment* new_segment) const {
    +     219           0 :   if (dimension < 0 || dimension >= D_) {
    +     220           0 :     LOG(WARNING) << "You shan't ask for a dimension that does not exist in the segment.";
    +     221           0 :     return false;
    +     222             :   }
    +     223             : 
    +     224           0 :   *new_segment      = Segment(N_, 1);
    +     225           0 :   (*new_segment)[0] = polynomials_[dimension];
    +     226           0 :   new_segment->setTime(time_);
    +     227           0 :   return true;
    +     228             : }
    +     229             : 
    +     230             : //}
    +     231             : 
    +     232             : /* getSegmentWithAppendedDimension() //{ */
    +     233             : 
    +     234           0 : bool Segment::getSegmentWithAppendedDimension(const Segment& segment_to_append, Segment* new_segment) const {
    +     235           0 :   if (N_ == 0 || D_ == 0) {
    +     236           0 :     *new_segment = segment_to_append;
    +     237           0 :     return true;
    +     238             :   }
    +     239           0 :   if (segment_to_append.N() == 0 || segment_to_append.D() == 0) {
    +     240           0 :     *new_segment = *this;
    +     241           0 :     return true;
    +     242             :   }
    +     243             : 
    +     244             :   // Get common polynomial order.
    +     245           0 :   const int new_N = std::max(segment_to_append.N(), N_);
    +     246           0 :   const int new_D = D_ + segment_to_append.D();
    +     247             : 
    +     248             :   // Create temporary segments to scale polynomials if necessary.
    +     249           0 :   Segment current_segment        = *this;
    +     250           0 :   Segment segment_to_append_temp = segment_to_append;
    +     251             : 
    +     252             :   // Scale segment polynomials to the longer segment time.
    +     253           0 :   const double new_time = std::max(time_, segment_to_append.getTime());
    +     254           0 :   if (time_ < new_time && new_time > 0.0) {
    +     255           0 :     for (int d = 0; d < D_; d++) {
    +     256           0 :       current_segment[d].scalePolynomialInTime(time_ / new_time);
    +     257           0 :     }
    +     258           0 :   } else if (segment_to_append.getTime() < new_time && new_time > 0.0) {
    +     259           0 :     for (int d = 0; d < segment_to_append.D(); d++) {
    +     260           0 :       segment_to_append_temp[d].scalePolynomialInTime(segment_to_append.getTime() / new_time);
    +     261             :     }
    +     262             :   }
    +     263             : 
    +     264           0 :   *new_segment = Segment(new_N, new_D);
    +     265             : 
    +     266           0 :   if (N_ == segment_to_append.N()) {
    +     267           0 :     for (int i = 0; i < new_D; i++) {
    +     268           0 :       if (i < D_) {
    +     269           0 :         (*new_segment)[i] = current_segment[i];
    +     270             :       } else {
    +     271           0 :         (*new_segment)[i] = segment_to_append_temp[i - D_];
    +     272             :       }
    +     273             :     }
    +     274             :   } else {
    +     275           0 :     for (int i = 0; i < new_D; i++) {
    +     276           0 :       Polynomial polynomial_to_append(new_N);
    +     277           0 :       if (i < D_) {
    +     278           0 :         if (!polynomials_[i].getPolynomialWithAppendedCoefficients(new_N, &polynomial_to_append)) {
    +     279           0 :           return false;
    +     280             :         }
    +     281             :       } else {
    +     282           0 :         if (!segment_to_append[i - D_].getPolynomialWithAppendedCoefficients(new_N, &polynomial_to_append)) {
    +     283           0 :           return false;
    +     284             :         }
    +     285             :       }
    +     286           0 :       (*new_segment)[i] = polynomial_to_append;
    +     287             :     }
    +     288             :   }
    +     289             : 
    +     290           0 :   new_segment->setTime(new_time);
    +     291           0 :   return true;
    +     292             : }
    +     293             : 
    +     294             : //}
    +     295             : 
    +     296             : /* offsetSegment() //{ */
    +     297             : 
    +     298           0 : bool Segment::offsetSegment(const Eigen::VectorXd& A_r_B) {
    +     299             : 
    +     300           0 :   if (A_r_B.size() < std::min(D_, 3)) {
    +     301           0 :     LOG(WARNING) << "Offset vector size smaller than segment dimension.";
    +     302           0 :     return false;
    +     303             :   }
    +     304             : 
    +     305             :   // Only translate the first three dimensions.
    +     306           0 :   for (size_t i = 0; i < std::min(D_, 3); ++i) {
    +     307           0 :     polynomials_[i].offsetPolynomial(A_r_B(i));
    +     308             :   }
    +     309             : 
    +     310           0 :   return true;
    +     311             : }
    +     312             : 
    +     313             : //}
    +     314             : 
    +     315             : }  // namespace eth_trajectory_generation
    +
    +
    +
    + + + + +
    Generated by: LCOV version 1.14
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::timing::Timer::Stop()0
    eth_trajectory_generation::timing::Timer::Start()0
    eth_trajectory_generation::timing::Timer::Timer(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)0
    eth_trajectory_generation::timing::Timer::Timer(unsigned long, bool)0
    eth_trajectory_generation::timing::Timer::~Timer()0
    eth_trajectory_generation::timing::Timing::GetMaxSeconds(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetMaxSeconds(unsigned long)0
    eth_trajectory_generation::timing::Timing::GetMinSeconds(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetMinSeconds(unsigned long)0
    eth_trajectory_generation::timing::Timing::GetNumSamples(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetNumSamples(unsigned long)0
    eth_trajectory_generation::timing::Timing::GetMeanSeconds(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetMeanSeconds(unsigned long)0
    eth_trajectory_generation::timing::Timing::GetTotalSeconds(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetTotalSeconds(unsigned long)0
    eth_trajectory_generation::timing::Timing::GetVarianceSeconds(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetVarianceSeconds(unsigned long)0
    eth_trajectory_generation::timing::Timing::SecondsToTimeString[abi:cxx11](double)0
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    eth_trajectory_generation::timing::Timing::GetHz(unsigned long)0
    eth_trajectory_generation::timing::Timing::Print[abi:cxx11]()0
    eth_trajectory_generation::timing::Timing::Print(std::basic_ostream<char, std::char_traits<char> >&)0
    eth_trajectory_generation::timing::Timing::Reset()0
    eth_trajectory_generation::timing::Timing::GetTag[abi:cxx11](unsigned long)0
    eth_trajectory_generation::timing::Timing::AddTime(unsigned long, double)0
    eth_trajectory_generation::timing::Timing::Instance()0
    eth_trajectory_generation::timing::Timing::GetHandle(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::Timing()0
    eth_trajectory_generation::timing::Timing::~Timing()0
    eth_trajectory_generation::timing::Timer::IsTiming() const0
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    eth_trajectory_generation::timing::Timer::Stop()0
    eth_trajectory_generation::timing::Timer::Start()0
    eth_trajectory_generation::timing::Timer::Timer(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)0
    eth_trajectory_generation::timing::Timer::Timer(unsigned long, bool)0
    eth_trajectory_generation::timing::Timer::~Timer()0
    eth_trajectory_generation::timing::Timing::GetMaxSeconds(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetMaxSeconds(unsigned long)0
    eth_trajectory_generation::timing::Timing::GetMinSeconds(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetMinSeconds(unsigned long)0
    eth_trajectory_generation::timing::Timing::GetNumSamples(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetNumSamples(unsigned long)0
    eth_trajectory_generation::timing::Timing::GetMeanSeconds(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetMeanSeconds(unsigned long)0
    eth_trajectory_generation::timing::Timing::GetTotalSeconds(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetTotalSeconds(unsigned long)0
    eth_trajectory_generation::timing::Timing::GetVarianceSeconds(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetVarianceSeconds(unsigned long)0
    eth_trajectory_generation::timing::Timing::SecondsToTimeString[abi:cxx11](double)0
    eth_trajectory_generation::timing::Timing::GetHz(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::GetHz(unsigned long)0
    eth_trajectory_generation::timing::Timing::Print[abi:cxx11]()0
    eth_trajectory_generation::timing::Timing::Print(std::basic_ostream<char, std::char_traits<char> >&)0
    eth_trajectory_generation::timing::Timing::Reset()0
    eth_trajectory_generation::timing::Timing::GetTag[abi:cxx11](unsigned long)0
    eth_trajectory_generation::timing::Timing::AddTime(unsigned long, double)0
    eth_trajectory_generation::timing::Timing::Instance()0
    eth_trajectory_generation::timing::Timing::GetHandle(std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)0
    eth_trajectory_generation::timing::Timing::Timing()0
    eth_trajectory_generation::timing::Timing::~Timing()0
    eth_trajectory_generation::timing::Timer::IsTiming() const0
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    Test:MRS UAV System - Test coverage reportLines:01110.0 %
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : /* Adapted from Paul Furgale Schweizer Messer sm_timing*/
    +      22             : 
    +      23             : #include <math.h>
    +      24             : #include <stdio.h>
    +      25             : #include <algorithm>
    +      26             : #include <ostream>
    +      27             : #include <sstream>
    +      28             : #include <string>
    +      29             : 
    +      30             : #include <eth_trajectory_generation/timing.h>
    +      31             : 
    +      32             : namespace eth_trajectory_generation
    +      33             : {
    +      34             : namespace timing
    +      35             : {
    +      36             : 
    +      37           0 : Timing& Timing::Instance() {
    +      38           0 :   static Timing t;
    +      39           0 :   return t;
    +      40             : }
    +      41             : 
    +      42           0 : Timing::Timing() : max_tag_length_(0) {
    +      43           0 : }
    +      44             : 
    +      45           0 : Timing::~Timing() {
    +      46           0 : }
    +      47             : 
    +      48             : /* GetHandle() //{ */
    +      49             : 
    +      50             : // Static functions to query the timers:
    +      51           0 : size_t Timing::GetHandle(std::string const& tag) {
    +      52             :   // Search for an existing tag.
    +      53           0 :   map_t::iterator i = Instance().tag_map_.find(tag);
    +      54           0 :   if (i == Instance().tag_map_.end()) {
    +      55             :     // If it is not there, create a tag.
    +      56           0 :     size_t handle            = Instance().timers_.size();
    +      57           0 :     Instance().tag_map_[tag] = handle;
    +      58           0 :     Instance().timers_.push_back(TimerMapValue());
    +      59             :     // Track the maximum tag length to help printing a table of timing values
    +      60             :     // later.
    +      61           0 :     Instance().max_tag_length_ = std::max(Instance().max_tag_length_, tag.size());
    +      62           0 :     return handle;
    +      63             :   } else {
    +      64           0 :     return i->second;
    +      65             :   }
    +      66             : }
    +      67             : 
    +      68             : //}
    +      69             : 
    +      70             : /* GetTag() //{ */
    +      71             : 
    +      72           0 : std::string Timing::GetTag(size_t handle) {
    +      73           0 :   std::string tag;
    +      74             : 
    +      75             :   // Perform a linear search for the tag.
    +      76           0 :   for (typename map_t::value_type current_tag : Instance().tag_map_) {
    +      77           0 :     if (current_tag.second == handle) {
    +      78           0 :       return current_tag.first;
    +      79             :     }
    +      80             :   }
    +      81           0 :   return tag;
    +      82             : }
    +      83             : 
    +      84             : //}
    +      85             : 
    +      86             : /* Timer() //{ */
    +      87             : 
    +      88             : // Class functions used for timing.
    +      89           0 : Timer::Timer(size_t handle, bool constructStopped) : timing_(false), handle_(handle) {
    +      90           0 :   if (!constructStopped)
    +      91           0 :     Start();
    +      92           0 : }
    +      93             : 
    +      94             : //}
    +      95             : 
    +      96             : /* Timer() //{ */
    +      97             : 
    +      98           0 : Timer::Timer(std::string const& tag, bool constructStopped) : timing_(false), handle_(Timing::GetHandle(tag)) {
    +      99           0 :   if (!constructStopped)
    +     100           0 :     Start();
    +     101           0 : }
    +     102             : 
    +     103             : //}
    +     104             : 
    +     105             : /* ~Timer() //{ */
    +     106             : 
    +     107           0 : Timer::~Timer() {
    +     108           0 :   if (IsTiming())
    +     109           0 :     Stop();
    +     110           0 : }
    +     111             : 
    +     112             : //}
    +     113             : 
    +     114             : /* Start() //{ */
    +     115             : 
    +     116           0 : void Timer::Start() {
    +     117           0 :   timing_ = true;
    +     118           0 :   time_   = std::chrono::system_clock::now();
    +     119           0 : }
    +     120             : 
    +     121             : //}
    +     122             : 
    +     123             : /* Stop() //{ */
    +     124             : 
    +     125           0 : void Timer::Stop() {
    +     126           0 :   std::chrono::time_point<std::chrono::system_clock> now = std::chrono::system_clock::now();
    +     127           0 :   double                                             dt  = std::chrono::duration<double>(now - time_).count();
    +     128             : 
    +     129           0 :   Timing::Instance().AddTime(handle_, dt);
    +     130           0 :   timing_ = false;
    +     131           0 : }
    +     132             : 
    +     133             : //}
    +     134             : 
    +     135             : /* IsTiming() //{ */
    +     136             : 
    +     137           0 : bool Timer::IsTiming() const {
    +     138           0 :   return timing_;
    +     139             : }
    +     140             : 
    +     141             : //}
    +     142             : 
    +     143             : /* AddTime() //{ */
    +     144             : 
    +     145           0 : void Timing::AddTime(size_t handle, double seconds) {
    +     146           0 :   timers_[handle].acc_.Add(seconds);
    +     147           0 : }
    +     148             : 
    +     149             : //}
    +     150             : 
    +     151             : /* GetTotalSeconds() //{ */
    +     152             : 
    +     153           0 : double Timing::GetTotalSeconds(size_t handle) {
    +     154           0 :   return Instance().timers_[handle].acc_.Sum();
    +     155             : }
    +     156             : 
    +     157             : //}
    +     158             : 
    +     159             : /* GetTotalSeconds() //{ */
    +     160             : 
    +     161           0 : double Timing::GetTotalSeconds(std::string const& tag) {
    +     162           0 :   return GetTotalSeconds(GetHandle(tag));
    +     163             : }
    +     164             : 
    +     165             : //}
    +     166             : 
    +     167             : /* GetMeanSeconds() //{ */
    +     168             : 
    +     169           0 : double Timing::GetMeanSeconds(size_t handle) {
    +     170           0 :   return Instance().timers_[handle].acc_.Mean();
    +     171             : }
    +     172             : 
    +     173             : //}
    +     174             : 
    +     175             : /* GetMeanSeconds() //{ */
    +     176             : 
    +     177           0 : double Timing::GetMeanSeconds(std::string const& tag) {
    +     178           0 :   return GetMeanSeconds(GetHandle(tag));
    +     179             : }
    +     180             : 
    +     181             : //}
    +     182             : 
    +     183             : /* GetNumSamples() //{ */
    +     184             : 
    +     185           0 : size_t Timing::GetNumSamples(size_t handle) {
    +     186           0 :   return Instance().timers_[handle].acc_.TotalSamples();
    +     187             : }
    +     188             : 
    +     189             : //}
    +     190             : 
    +     191             : /* GetNumSamples() //{ */
    +     192             : 
    +     193           0 : size_t Timing::GetNumSamples(std::string const& tag) {
    +     194           0 :   return GetNumSamples(GetHandle(tag));
    +     195             : }
    +     196             : 
    +     197             : //}
    +     198             : 
    +     199             : /* GetVarianceSeconds() //{ */
    +     200             : 
    +     201           0 : double Timing::GetVarianceSeconds(size_t handle) {
    +     202           0 :   return Instance().timers_[handle].acc_.LazyVariance();
    +     203             : }
    +     204             : 
    +     205             : //}
    +     206             : 
    +     207             : /* GetVarianceSeconds() //{ */
    +     208             : 
    +     209           0 : double Timing::GetVarianceSeconds(std::string const& tag) {
    +     210           0 :   return GetVarianceSeconds(GetHandle(tag));
    +     211             : }
    +     212             : 
    +     213             : //}
    +     214             : 
    +     215             : /* GetMinSeconds() //{ */
    +     216             : 
    +     217           0 : double Timing::GetMinSeconds(size_t handle) {
    +     218           0 :   return Instance().timers_[handle].acc_.Min();
    +     219             : }
    +     220             : 
    +     221             : //}
    +     222             : 
    +     223             : /* GetMinSeconds() //{ */
    +     224             : 
    +     225           0 : double Timing::GetMinSeconds(std::string const& tag) {
    +     226           0 :   return GetMinSeconds(GetHandle(tag));
    +     227             : }
    +     228             : 
    +     229             : //}
    +     230             : 
    +     231             : /* GetMaxSeconds() //{ */
    +     232             : 
    +     233           0 : double Timing::GetMaxSeconds(size_t handle) {
    +     234           0 :   return Instance().timers_[handle].acc_.Max();
    +     235             : }
    +     236             : 
    +     237             : //}
    +     238             : 
    +     239             : /* GetMaxSeconds() //{ */
    +     240             : 
    +     241           0 : double Timing::GetMaxSeconds(std::string const& tag) {
    +     242           0 :   return GetMaxSeconds(GetHandle(tag));
    +     243             : }
    +     244             : 
    +     245             : //}
    +     246             : 
    +     247             : /* GetHz() //{ */
    +     248             : 
    +     249           0 : double Timing::GetHz(size_t handle) {
    +     250           0 :   return 1.0 / Instance().timers_[handle].acc_.RollingMean();
    +     251             : }
    +     252             : 
    +     253             : //}
    +     254             : 
    +     255             : /* GetHz() //{ */
    +     256             : 
    +     257           0 : double Timing::GetHz(std::string const& tag) {
    +     258           0 :   return GetHz(GetHandle(tag));
    +     259             : }
    +     260             : 
    +     261             : //}
    +     262             : 
    +     263             : /* SecondsToTimeString() //{ */
    +     264             : 
    +     265           0 : std::string Timing::SecondsToTimeString(double seconds) {
    +     266             :   char buffer[256];
    +     267           0 :   snprintf(buffer, sizeof(buffer), "%09.6f", seconds);
    +     268           0 :   return buffer;
    +     269             : }
    +     270             : 
    +     271             : //}
    +     272             : 
    +     273             : /* Print() //{ */
    +     274             : 
    +     275           0 : void Timing::Print(std::ostream& out) {
    +     276           0 :   map_t& tagMap = Instance().tag_map_;
    +     277             : 
    +     278           0 :   if (tagMap.empty()) {
    +     279           0 :     return;
    +     280             :   }
    +     281             : 
    +     282           0 :   out << "SM Timing\n";
    +     283           0 :   out << "-----------\n";
    +     284           0 :   for (typename map_t::value_type t : tagMap) {
    +     285           0 :     size_t i = t.second;
    +     286           0 :     out.width((std::streamsize)Instance().max_tag_length_);
    +     287           0 :     out.setf(std::ios::left, std::ios::adjustfield);
    +     288           0 :     out << t.first << "\t";
    +     289           0 :     out.width(7);
    +     290             : 
    +     291           0 :     out.setf(std::ios::right, std::ios::adjustfield);
    +     292           0 :     out << GetNumSamples(i) << "\t";
    +     293           0 :     if (GetNumSamples(i) > 0) {
    +     294           0 :       out << SecondsToTimeString(GetTotalSeconds(i)) << "\t";
    +     295           0 :       double meansec = GetMeanSeconds(i);
    +     296           0 :       double stddev  = sqrt(GetVarianceSeconds(i));
    +     297           0 :       out << "(" << SecondsToTimeString(meansec) << " +- ";
    +     298           0 :       out << SecondsToTimeString(stddev) << ")\t";
    +     299             : 
    +     300           0 :       double minsec = GetMinSeconds(i);
    +     301           0 :       double maxsec = GetMaxSeconds(i);
    +     302             : 
    +     303             :       // The min or max are out of bounds.
    +     304           0 :       out << "[" << SecondsToTimeString(minsec) << "," << SecondsToTimeString(maxsec) << "]";
    +     305             :     }
    +     306           0 :     out << std::endl;
    +     307             :   }
    +     308             : }
    +     309             : 
    +     310             : //}
    +     311             : 
    +     312             : /* Print() //{ */
    +     313             : 
    +     314           0 : std::string Timing::Print() {
    +     315           0 :   std::stringstream ss;
    +     316           0 :   Print(ss);
    +     317           0 :   return ss.str();
    +     318             : }
    +     319             : 
    +     320             : //}
    +     321             : 
    +     322             : /* Reset() //{ */
    +     323             : 
    +     324           0 : void Timing::Reset() {
    +     325           0 :   Instance().tag_map_.clear();
    +     326           0 : }
    +     327             : 
    +     328             : //}
    +     329             : 
    +     330             : }  // namespace timing
    +     331             : }  // namespace eth_trajectory_generation
    +
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    Date:2024-04-17 23:52:03Functions:112347.8 %
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::Trajectory::offsetTrajectory(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)0
    eth_trajectory_generation::Trajectory::scaleSegmentTimes(double)0
    eth_trajectory_generation::Trajectory::getVertices(int, std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> >*) const0
    eth_trajectory_generation::Trajectory::getVertices(int, int, std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> >*, std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> >*) const0
    eth_trajectory_generation::Trajectory::getGoalVertex(int) const0
    eth_trajectory_generation::Trajectory::getStartVertex(int) const0
    eth_trajectory_generation::Trajectory::addTrajectories(std::vector<eth_trajectory_generation::Trajectory, std::allocator<eth_trajectory_generation::Trajectory> > const&, eth_trajectory_generation::Trajectory*) const0
    eth_trajectory_generation::Trajectory::getVertexAtTime(double, int) const0
    eth_trajectory_generation::Trajectory::getTrajectoryWithSingleDimension(int) const0
    eth_trajectory_generation::Trajectory::getTrajectoryWithAppendedDimension(eth_trajectory_generation::Trajectory const&, eth_trajectory_generation::Trajectory*) const0
    eth_trajectory_generation::Trajectory::evaluate(double, int) const0
    eth_trajectory_generation::Trajectory::operator==(eth_trajectory_generation::Trajectory const&) const0
    eth_trajectory_generation::Trajectory::scaleSegmentTimesToMeetConstraints(double, double, double, double, double, double, double, double, double)15
    eth_trajectory_generation::Trajectory::getSegmentTimes() const15
    eth_trajectory_generation::Trajectory::computeMaxDerivativesHeading(double*, double*, double*) const15
    eth_trajectory_generation::Trajectory::computeMaxDerivativesVertical(double*, double*, double*) const15
    eth_trajectory_generation::Trajectory::computeMaxDerivativesHorizontal(double*, double*, double*) const15
    eth_trajectory_generation::Trajectory::evaluateRange(double, double, double, int, std::vector<Eigen::Matrix<double, -1, 1, 0, -1, 1>, std::allocator<Eigen::Matrix<double, -1, 1, 0, -1, 1> > >*, std::vector<double, std::allocator<double> >*) const50
    eth_trajectory_generation::Trajectory::computeMinMaxMagnitude(int, std::vector<int, std::allocator<int> > const&, eth_trajectory_generation::Extremum*, eth_trajectory_generation::Extremum*) const135
    eth_trajectory_generation::Trajectory::computeMaxDerivativesHeading(double*, double*, double*, int) const158
    eth_trajectory_generation::Trajectory::computeMaxDerivativesVertical(double*, double*, double*, int) const158
    eth_trajectory_generation::Trajectory::computeMaxDerivativesHorizontal(double*, double*, double*, int) const158
    eth_trajectory_generation::Trajectory::computeMinMaxMagnitude(int, std::vector<int, std::allocator<int> > const&, eth_trajectory_generation::Extremum*, eth_trajectory_generation::Extremum*, int) const1422
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    Test:MRS UAV System - Test coverage reportLines:18031457.3 %
    Date:2024-04-17 23:52:03Functions:112347.8 %
    Legend: Lines: + hit + not hit +
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::Trajectory::offsetTrajectory(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)0
    eth_trajectory_generation::Trajectory::scaleSegmentTimes(double)0
    eth_trajectory_generation::Trajectory::scaleSegmentTimesToMeetConstraints(double, double, double, double, double, double, double, double, double)15
    eth_trajectory_generation::Trajectory::getVertices(int, std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> >*) const0
    eth_trajectory_generation::Trajectory::getVertices(int, int, std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> >*, std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> >*) const0
    eth_trajectory_generation::Trajectory::evaluateRange(double, double, double, int, std::vector<Eigen::Matrix<double, -1, 1, 0, -1, 1>, std::allocator<Eigen::Matrix<double, -1, 1, 0, -1, 1> > >*, std::vector<double, std::allocator<double> >*) const50
    eth_trajectory_generation::Trajectory::getGoalVertex(int) const0
    eth_trajectory_generation::Trajectory::getStartVertex(int) const0
    eth_trajectory_generation::Trajectory::addTrajectories(std::vector<eth_trajectory_generation::Trajectory, std::allocator<eth_trajectory_generation::Trajectory> > const&, eth_trajectory_generation::Trajectory*) const0
    eth_trajectory_generation::Trajectory::getSegmentTimes() const15
    eth_trajectory_generation::Trajectory::getVertexAtTime(double, int) const0
    eth_trajectory_generation::Trajectory::computeMinMaxMagnitude(int, std::vector<int, std::allocator<int> > const&, eth_trajectory_generation::Extremum*, eth_trajectory_generation::Extremum*) const135
    eth_trajectory_generation::Trajectory::computeMinMaxMagnitude(int, std::vector<int, std::allocator<int> > const&, eth_trajectory_generation::Extremum*, eth_trajectory_generation::Extremum*, int) const1422
    eth_trajectory_generation::Trajectory::computeMaxDerivativesHeading(double*, double*, double*) const15
    eth_trajectory_generation::Trajectory::computeMaxDerivativesHeading(double*, double*, double*, int) const158
    eth_trajectory_generation::Trajectory::computeMaxDerivativesVertical(double*, double*, double*) const15
    eth_trajectory_generation::Trajectory::computeMaxDerivativesVertical(double*, double*, double*, int) const158
    eth_trajectory_generation::Trajectory::computeMaxDerivativesHorizontal(double*, double*, double*) const15
    eth_trajectory_generation::Trajectory::computeMaxDerivativesHorizontal(double*, double*, double*, int) const158
    eth_trajectory_generation::Trajectory::getTrajectoryWithSingleDimension(int) const0
    eth_trajectory_generation::Trajectory::getTrajectoryWithAppendedDimension(eth_trajectory_generation::Trajectory const&, eth_trajectory_generation::Trajectory*) const0
    eth_trajectory_generation::Trajectory::evaluate(double, int) const0
    eth_trajectory_generation::Trajectory::operator==(eth_trajectory_generation::Trajectory const&) const0
    +
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    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generation - trajectory.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:18031457.3 %
    Date:2024-04-17 23:52:03Functions:112347.8 %
    Legend: Lines: + hit + not hit +
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    +
              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #include <eth_trajectory_generation/trajectory.h>
    +      22             : #include <limits>
    +      23             : 
    +      24             : // fixes error due to std::iota (has been introduced in c++ standard lately
    +      25             : // and may cause compilation errors depending on compiler)
    +      26             : #if __cplusplus <= 199711L
    +      27             : #include <algorithm>
    +      28             : #else
    +      29             : #include <numeric>
    +      30             : #endif
    +      31             : 
    +      32             : namespace eth_trajectory_generation
    +      33             : {
    +      34             : 
    +      35             : /* operator==(const Trajectory& rhs) //{ */
    +      36             : 
    +      37           0 : bool Trajectory::operator==(const Trajectory& rhs) const {
    +      38           0 :   if (segments_.size() != rhs.segments_.size()) {
    +      39             :     // Different number of segments.
    +      40           0 :     return false;
    +      41             :   } else {
    +      42           0 :     for (int i = 0; i < K(); i++) {
    +      43           0 :       if (segments_ != rhs.segments_) {
    +      44           0 :         return false;
    +      45             :       }
    +      46             :     }
    +      47           0 :     return true;
    +      48             :   }
    +      49             : }
    +      50             : 
    +      51             : //}
    +      52             : 
    +      53             : /* evaluate() //{ */
    +      54             : 
    +      55           0 : Eigen::VectorXd Trajectory::evaluate(double t, int derivative_order) const {
    +      56             : 
    +      57           0 :   double accumulated_time = 0.0;
    +      58             : 
    +      59             :   // Look for the correct segment.
    +      60           0 :   size_t i = 0;
    +      61           0 :   for (i = 0; i < segments_.size(); ++i) {
    +      62           0 :     accumulated_time += segments_[i].getTime();
    +      63             :     // |<--t_accumulated -->|
    +      64             :     // x----------x---------x
    +      65             :     //               ^t_start
    +      66             :     //            |chosen it|
    +      67             :     // in case t_start falls on a vertex, the iterator right of the vertex is
    +      68             :     // chosen, hence accumulated_segment_time_ns > t_start
    +      69           0 :     if (accumulated_time > t) {
    +      70           0 :       break;
    +      71             :     }
    +      72             :   }
    +      73           0 :   if (t > accumulated_time) {
    +      74           0 :     LOG(ERROR) << "Time out of range of the trajectory!";
    +      75           0 :     return Eigen::VectorXd::Zero(D(), 1);
    +      76             :   }
    +      77             : 
    +      78             :   // Make sure we don't go off the end of the segments (can happen if t is
    +      79             :   // equal to trajectory max time).
    +      80           0 :   if (i >= segments_.size()) {
    +      81           0 :     i = segments_.size() - 1;
    +      82             :   }
    +      83             :   // Go back to the start of this segment.
    +      84           0 :   accumulated_time -= segments_[i].getTime();
    +      85             : 
    +      86           0 :   return segments_[i].evaluate(t - accumulated_time, derivative_order);
    +      87             : }
    +      88             : 
    +      89             : //}
    +      90             : 
    +      91             : /* evaluateRange() //{ */
    +      92             : 
    +      93          50 : void Trajectory::evaluateRange(double t_start, double t_end, double dt, int derivative_order, std::vector<Eigen::VectorXd>* result,
    +      94             :                                std::vector<double>* sampling_times) const {
    +      95          50 :   const size_t expected_number_of_samples = (t_end - t_start) / dt + 1;
    +      96             : 
    +      97          50 :   result->clear();
    +      98          50 :   result->reserve(expected_number_of_samples);
    +      99             : 
    +     100          50 :   if (sampling_times != nullptr) {
    +     101           0 :     sampling_times->clear();
    +     102           0 :     sampling_times->reserve(expected_number_of_samples);
    +     103             :   }
    +     104             : 
    +     105          50 :   double accumulated_time = 0.0;
    +     106             : 
    +     107             :   // Look for the correct segment to start.
    +     108          50 :   size_t i = 0;
    +     109          50 :   for (i = 0; i < segments_.size(); ++i) {
    +     110          50 :     accumulated_time += segments_[i].getTime();
    +     111             :     // |<--t_accumulated -->|
    +     112             :     // x----------x---------x
    +     113             :     //               ^t_start
    +     114             :     //            |chosen it|
    +     115             :     // in case t_start falls on a vertex, the iterator right of the vertex is
    +     116             :     // chosen, hence accumulated_segment_time_ns > t_start
    +     117          50 :     if (accumulated_time > t_start) {
    +     118          50 :       break;
    +     119             :     }
    +     120             :   }
    +     121          50 :   if (t_start > accumulated_time) {
    +     122           0 :     LOG(ERROR) << "Start time out of range of the trajectory!";
    +     123           0 :     return;
    +     124             :   }
    +     125             : 
    +     126             :   // Go back to the start of this segment.
    +     127          50 :   accumulated_time -= segments_[i].getTime();
    +     128          50 :   double time_in_segment = t_start - accumulated_time;
    +     129             : 
    +     130             :   // Get all the samples, incrementing the segments as we go.
    +     131        6810 :   while (accumulated_time < t_end) {
    +     132        6760 :     if (time_in_segment > segments_[i].getTime()) {
    +     133         420 :       time_in_segment = time_in_segment - segments_[i].getTime();
    +     134         420 :       i++;
    +     135             :       // Make sure we don't access segments that don't exist!
    +     136         420 :       if (i >= segments_.size()) {
    +     137           0 :         break;
    +     138             :       }
    +     139         420 :       continue;
    +     140             :     }
    +     141             : 
    +     142        6340 :     result->push_back(segments_[i].evaluate(time_in_segment, derivative_order));
    +     143             : 
    +     144        6340 :     if (sampling_times != nullptr) {
    +     145           0 :       sampling_times->push_back(accumulated_time);
    +     146             :     }
    +     147             : 
    +     148        6340 :     time_in_segment += dt;
    +     149        6340 :     accumulated_time += dt;
    +     150             :   }
    +     151             : }
    +     152             : 
    +     153             : //}
    +     154             : 
    +     155             : /* getTrajectoryWithSingleDimension() //{ */
    +     156             : 
    +     157           0 : Trajectory Trajectory::getTrajectoryWithSingleDimension(int dimension) const {
    +     158           0 :   CHECK_LT(dimension, D_);
    +     159             : 
    +     160             :   // Create a new set of segments with just 1 dimension.
    +     161           0 :   Segment::Vector segments;
    +     162           0 :   segments.reserve(segments_.size());
    +     163             : 
    +     164           0 :   for (size_t k = 0; k < segments_.size(); ++k) {
    +     165           0 :     Segment segment(N_, 1);
    +     166           0 :     segment[0] = (segments_[k])[dimension];
    +     167           0 :     segments.push_back(segment);
    +     168             :   }
    +     169             : 
    +     170           0 :   Trajectory traj;
    +     171           0 :   traj.setSegments(segments);
    +     172           0 :   return traj;
    +     173             : }
    +     174             : 
    +     175             : //}
    +     176             : 
    +     177             : /* getTrajectoryWithAppendedDimension() //{ */
    +     178             : 
    +     179           0 : bool Trajectory::getTrajectoryWithAppendedDimension(const Trajectory& trajectory_to_append, Trajectory* new_trajectory) const {
    +     180             :   // Handle the case of one of the trajectories being empty.
    +     181           0 :   if (N_ == 0 || D_ == 0) {
    +     182           0 :     *new_trajectory = trajectory_to_append;
    +     183           0 :     return true;
    +     184             :   }
    +     185           0 :   if (trajectory_to_append.N() == 0 || trajectory_to_append.D() == 0) {
    +     186           0 :     *new_trajectory = *this;
    +     187           0 :     return true;
    +     188             :   }
    +     189           0 :   CHECK_EQ(static_cast<int>(segments_.size()), trajectory_to_append.K());
    +     190             : 
    +     191             :   // Create a new set of segments with all of the dimensions.
    +     192           0 :   Segment::Vector segments;
    +     193           0 :   segments.reserve(segments_.size());
    +     194             : 
    +     195           0 :   for (size_t k = 0; k < segments_.size(); ++k) {
    +     196           0 :     Segment new_segment(0, 0);
    +     197           0 :     if (!segments_[k].getSegmentWithAppendedDimension(trajectory_to_append.segments()[k], &new_segment)) {
    +     198           0 :       return false;
    +     199             :     }
    +     200           0 :     segments.push_back(new_segment);
    +     201             :   }
    +     202             : 
    +     203           0 :   new_trajectory->setSegments(segments);
    +     204           0 :   return true;
    +     205             : }
    +     206             : 
    +     207             : //}
    +     208             : 
    +     209             : /* computeMinMaxMagnitude() //{ */
    +     210             : 
    +     211        1422 : bool Trajectory::computeMinMaxMagnitude(int derivative, const std::vector<int>& dimensions, Extremum* minimum, Extremum* maximum, int seg) const {
    +     212             : 
    +     213        1422 :   CHECK_NOTNULL(minimum);
    +     214        1422 :   CHECK_NOTNULL(maximum);
    +     215             : 
    +     216        1422 :   minimum->value = std::numeric_limits<double>::max();
    +     217        1422 :   maximum->value = std::numeric_limits<double>::lowest();
    +     218             : 
    +     219             :   // Compute candidates.
    +     220        2844 :   std::vector<Extremum> candidates;
    +     221        1422 :   if (!segments_[seg].computeMinMaxMagnitudeCandidates(derivative, 0.0, segments_[seg].getTime(), dimensions, &candidates)) {
    +     222           0 :     return false;
    +     223             :   }
    +     224             :   // Evaluate candidates.
    +     225        1422 :   Extremum minimum_candidate, maximum_candidate;
    +     226        1422 :   if (!segments_[seg].selectMinMaxMagnitudeFromCandidates(derivative, 0.0, segments_[seg].getTime(), dimensions, candidates, &minimum_candidate,
    +     227             :                                                           &maximum_candidate)) {
    +     228           0 :     return false;
    +     229             :   }
    +     230             :   // Select minimum / maximum.
    +     231        1422 :   if (minimum_candidate < *minimum) {
    +     232        1422 :     *minimum             = minimum_candidate;
    +     233        1422 :     minimum->segment_idx = static_cast<int>(seg);
    +     234             :   }
    +     235        1422 :   if (maximum_candidate > *maximum) {
    +     236        1422 :     *maximum             = maximum_candidate;
    +     237        1422 :     maximum->segment_idx = static_cast<int>(seg);
    +     238             :   }
    +     239             : 
    +     240        1422 :   return true;
    +     241             : }
    +     242             : 
    +     243             : //}
    +     244             : 
    +     245             : /* computeMinMaxMagnitude() //{ */
    +     246             : 
    +     247         135 : bool Trajectory::computeMinMaxMagnitude(int derivative, const std::vector<int>& dimensions, Extremum* minimum, Extremum* maximum) const {
    +     248             : 
    +     249         135 :   CHECK_NOTNULL(minimum);
    +     250         135 :   CHECK_NOTNULL(maximum);
    +     251             : 
    +     252         135 :   minimum->value = std::numeric_limits<double>::max();
    +     253         135 :   maximum->value = std::numeric_limits<double>::lowest();
    +     254             : 
    +     255             :   // For all segments in the trajectory:
    +     256        1557 :   for (size_t segment_idx = 0; segment_idx < segments_.size(); segment_idx++) {
    +     257             : 
    +     258             :     // Compute candidates.
    +     259        1422 :     std::vector<Extremum> candidates;
    +     260        1422 :     if (!segments_[segment_idx].computeMinMaxMagnitudeCandidates(derivative, 0.0, segments_[segment_idx].getTime(), dimensions, &candidates)) {
    +     261           0 :       return false;
    +     262             :     }
    +     263             :     // Evaluate candidates.
    +     264        1422 :     Extremum minimum_candidate, maximum_candidate;
    +     265        1422 :     if (!segments_[segment_idx].selectMinMaxMagnitudeFromCandidates(derivative, 0.0, segments_[segment_idx].getTime(), dimensions, candidates,
    +     266             :                                                                     &minimum_candidate, &maximum_candidate)) {
    +     267           0 :       return false;
    +     268             :     }
    +     269             :     // Select minimum / maximum.
    +     270        1422 :     if (minimum_candidate < *minimum) {
    +     271         143 :       *minimum             = minimum_candidate;
    +     272         143 :       minimum->segment_idx = static_cast<int>(segment_idx);
    +     273             :     }
    +     274        1422 :     if (maximum_candidate > *maximum) {
    +     275         336 :       *maximum             = maximum_candidate;
    +     276         336 :       maximum->segment_idx = static_cast<int>(segment_idx);
    +     277             :     }
    +     278             :   }
    +     279         135 :   return true;
    +     280             : }
    +     281             : 
    +     282             : //}
    +     283             : 
    +     284             : /* getSegmentTimes() //{ */
    +     285             : 
    +     286          15 : std::vector<double> Trajectory::getSegmentTimes() const {
    +     287          15 :   std::vector<double> segment_times(segments_.size());
    +     288         173 :   for (size_t i = 0; i < segment_times.size(); ++i) {
    +     289         158 :     segment_times[i] = segments_[i].getTime();
    +     290             :   }
    +     291          15 :   return segment_times;
    +     292             : }
    +     293             : 
    +     294             : //}
    +     295             : 
    +     296             : /* addTrajectories() //{ */
    +     297             : 
    +     298           0 : bool Trajectory::addTrajectories(const std::vector<Trajectory>& trajectories, Trajectory* merged) const {
    +     299           0 :   CHECK_NOTNULL(merged);
    +     300           0 :   merged->clear();
    +     301           0 :   *merged = *this;
    +     302             : 
    +     303           0 :   for (const Trajectory& t : trajectories) {
    +     304             :     // Check dimensions and coefficients.
    +     305             :     // TODO(rikba): Allow different number of coefficients.
    +     306           0 :     if (t.D() != D_ || t.N() != N_) {
    +     307           0 :       LOG(WARNING) << "Dimension to append: " << t.D() << " this dimension: " << D_;
    +     308           0 :       LOG(WARNING) << "Number of coefficients to append: " << t.N() << " this number of coefficients: " << N_;
    +     309           0 :       return false;
    +     310             :     }
    +     311             :     // Add segments.
    +     312           0 :     Segment::Vector segments;
    +     313           0 :     t.getSegments(&segments);
    +     314           0 :     merged->addSegments(segments);
    +     315             :   }
    +     316             : 
    +     317           0 :   return true;
    +     318             : }
    +     319             : 
    +     320             : //}
    +     321             : 
    +     322             : /* offsetTrajectory() //{ */
    +     323             : 
    +     324           0 : bool Trajectory::offsetTrajectory(const Eigen::VectorXd& A_r_B) {
    +     325           0 :   if (A_r_B.size() < std::min(D_, 3)) {
    +     326           0 :     LOG(WARNING) << "Offset vector size smaller than trajectory dimension.";
    +     327           0 :     return false;
    +     328             :   }
    +     329             : 
    +     330           0 :   for (Segment& s : segments_) {
    +     331             :     // Returns false if dimension check fails at segment level.
    +     332           0 :     if (!s.offsetSegment(A_r_B))
    +     333           0 :       return false;
    +     334             :   }
    +     335             : 
    +     336           0 :   return true;
    +     337             : }
    +     338             : 
    +     339             : //}
    +     340             : 
    +     341             : /* offsetTrajectory() //{ */
    +     342             : 
    +     343           0 : Vertex Trajectory::getVertexAtTime(double t, int max_derivative_order) const {
    +     344           0 :   Vertex v(D_);
    +     345           0 :   for (int i = 0; i <= max_derivative_order; i++) {
    +     346           0 :     v.addConstraint(i, evaluate(t, i));
    +     347             :   }
    +     348           0 :   return v;
    +     349             : }
    +     350             : 
    +     351             : //}
    +     352             : 
    +     353             : /* getStartVertex() //{ */
    +     354             : 
    +     355           0 : Vertex Trajectory::getStartVertex(int max_derivative_order) const {
    +     356           0 :   return getVertexAtTime(0.0, max_derivative_order);
    +     357             : }
    +     358             : 
    +     359             : //}
    +     360             : 
    +     361             : /* getGoalVertex() //{ */
    +     362             : 
    +     363           0 : Vertex Trajectory::getGoalVertex(int max_derivative_order) const {
    +     364           0 :   return getVertexAtTime(max_time_, max_derivative_order);
    +     365             : }
    +     366             : 
    +     367             : //}
    +     368             : 
    +     369             : /* getVertices() //{ */
    +     370             : 
    +     371           0 : bool Trajectory::getVertices(int max_derivative_order_pos, int max_derivative_order_yaw, Vertex::Vector* pos_vertices, Vertex::Vector* yaw_vertices) const {
    +     372           0 :   CHECK_NOTNULL(pos_vertices);
    +     373           0 :   CHECK_NOTNULL(yaw_vertices);
    +     374           0 :   const std::vector<size_t> kPosDimensions      = {0, 1, 2};
    +     375           0 :   const std::vector<size_t> kYawDimensions      = {3};
    +     376           0 :   const int                 kMaxDerivativeOrder = std::max(max_derivative_order_pos, max_derivative_order_yaw);
    +     377           0 :   pos_vertices->resize(segments_.size() + 1, Vertex(3));
    +     378           0 :   yaw_vertices->resize(segments_.size() + 1, Vertex(1));
    +     379             : 
    +     380             :   // Start vertex.
    +     381           0 :   Vertex temp_vertex(4);
    +     382           0 :   temp_vertex = getStartVertex(kMaxDerivativeOrder);
    +     383           0 :   if (!temp_vertex.getSubdimension(kPosDimensions, max_derivative_order_pos, &pos_vertices->front()))
    +     384           0 :     return false;
    +     385           0 :   if (!temp_vertex.getSubdimension(kYawDimensions, max_derivative_order_yaw, &yaw_vertices->front()))
    +     386           0 :     return false;
    +     387             : 
    +     388           0 :   double t = 0.0;
    +     389           0 :   for (size_t i = 0; i < segments_.size(); ++i) {
    +     390           0 :     t += segments_[i].getTime();
    +     391           0 :     temp_vertex = getVertexAtTime(t, kMaxDerivativeOrder);
    +     392           0 :     if (!temp_vertex.getSubdimension(kPosDimensions, max_derivative_order_pos, &(*pos_vertices)[i + 1]))
    +     393           0 :       return false;
    +     394           0 :     if (!temp_vertex.getSubdimension(kYawDimensions, max_derivative_order_yaw, &(*yaw_vertices)[i + 1]))
    +     395           0 :       return false;
    +     396             :   }
    +     397           0 :   return true;
    +     398             : }
    +     399             : 
    +     400             : //}
    +     401             : 
    +     402             : /* getVertices() //{ */
    +     403             : 
    +     404           0 : bool Trajectory::getVertices(int max_derivative_order, Vertex::Vector* vertices) const {
    +     405           0 :   CHECK_NOTNULL(vertices);
    +     406           0 :   vertices->resize(segments_.size() + 1, D_);
    +     407           0 :   vertices->front() = getStartVertex(max_derivative_order);
    +     408             : 
    +     409           0 :   double t = 0.0;
    +     410           0 :   for (size_t i = 0; i < segments_.size(); ++i) {
    +     411           0 :     t += segments_[i].getTime();
    +     412           0 :     (*vertices)[i + 1] = getVertexAtTime(t, max_derivative_order);
    +     413             :   }
    +     414           0 :   return true;
    +     415             : }
    +     416             : 
    +     417             : //}
    +     418             : 
    +     419             : /* computeMaxDerivativesHorizontal() //{ */
    +     420             : 
    +     421             : // compute max velocity, acceleration and jerk
    +     422         158 : bool Trajectory::computeMaxDerivativesHorizontal(double* v_max, double* a_max, double* j_max, int seg) const {
    +     423             : 
    +     424             :   // not counting the heading dimension, that is going to be solved separately
    +     425         158 :   std::vector<int> dimensions;  // Evaluate in whatever dimensions we have.
    +     426             : 
    +     427         158 :   dimensions.push_back(0);
    +     428         158 :   dimensions.push_back(1);
    +     429             : 
    +     430         158 :   Extremum v_min_traj, v_max_traj, a_min_traj, a_max_traj, j_min_traj, j_max_traj;
    +     431             : 
    +     432         158 :   bool success = computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::VELOCITY, dimensions, &v_min_traj, &v_max_traj, seg);
    +     433         158 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::ACCELERATION, dimensions, &a_min_traj, &a_max_traj, seg);
    +     434         158 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::JERK, dimensions, &j_min_traj, &j_max_traj, seg);
    +     435             : 
    +     436         158 :   *v_max = v_max_traj.value;
    +     437         158 :   *a_max = a_max_traj.value;
    +     438         158 :   *j_max = j_max_traj.value;
    +     439             : 
    +     440         316 :   return success;
    +     441             : }
    +     442             : 
    +     443             : //}
    +     444             : 
    +     445             : /* computeMaxDerivativesHorizontal() //{ */
    +     446             : 
    +     447             : // compute max velocity, acceleration and jerk
    +     448          15 : bool Trajectory::computeMaxDerivativesHorizontal(double* v_max, double* a_max, double* j_max) const {
    +     449             : 
    +     450             :   // not counting the heading dimension, that is going to be solved separately
    +     451          15 :   std::vector<int> dimensions;  // Evaluate in whatever dimensions we have.
    +     452             : 
    +     453          15 :   dimensions.push_back(0);
    +     454          15 :   dimensions.push_back(1);
    +     455             : 
    +     456          15 :   Extremum v_min_traj, v_max_traj, a_min_traj, a_max_traj, j_min_traj, j_max_traj;
    +     457             : 
    +     458          15 :   bool success = computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::VELOCITY, dimensions, &v_min_traj, &v_max_traj);
    +     459          15 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::ACCELERATION, dimensions, &a_min_traj, &a_max_traj);
    +     460          15 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::JERK, dimensions, &j_min_traj, &j_max_traj);
    +     461             : 
    +     462          15 :   *v_max = v_max_traj.value;
    +     463          15 :   *a_max = a_max_traj.value;
    +     464          15 :   *j_max = j_max_traj.value;
    +     465             : 
    +     466          30 :   return success;
    +     467             : }
    +     468             : 
    +     469             : //}
    +     470             : 
    +     471             : /* computeMaxDerivativesVertical() //{ */
    +     472             : 
    +     473             : // compute max velocity, acceleration and jerk
    +     474         158 : bool Trajectory::computeMaxDerivativesVertical(double* v_max, double* a_max, double* j_max, int seg) const {
    +     475             : 
    +     476             :   // not counting the heading dimension, that is going to be solved separately
    +     477         158 :   std::vector<int> dimensions;  // Evaluate in whatever dimensions we have.
    +     478             : 
    +     479         158 :   dimensions.push_back(2);
    +     480             : 
    +     481         158 :   Extremum v_min_traj, v_max_traj, a_min_traj, a_max_traj, j_min_traj, j_max_traj;
    +     482             : 
    +     483         158 :   bool success = computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::VELOCITY, dimensions, &v_min_traj, &v_max_traj, seg);
    +     484         158 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::ACCELERATION, dimensions, &a_min_traj, &a_max_traj, seg);
    +     485         158 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::JERK, dimensions, &j_min_traj, &j_max_traj, seg);
    +     486             : 
    +     487         158 :   *v_max = v_max_traj.value;
    +     488         158 :   *a_max = a_max_traj.value;
    +     489         158 :   *j_max = j_max_traj.value;
    +     490             : 
    +     491         316 :   return success;
    +     492             : }
    +     493             : 
    +     494             : //}
    +     495             : 
    +     496             : /* computeMaxDerivativesVertical() //{ */
    +     497             : 
    +     498             : // compute max velocity, acceleration and jerk
    +     499          15 : bool Trajectory::computeMaxDerivativesVertical(double* v_max, double* a_max, double* j_max) const {
    +     500             : 
    +     501             :   // not counting the heading dimension, that is going to be solved separately
    +     502          15 :   std::vector<int> dimensions;  // Evaluate in whatever dimensions we have.
    +     503             : 
    +     504          15 :   dimensions.push_back(2);
    +     505             : 
    +     506          15 :   Extremum v_min_traj, v_max_traj, a_min_traj, a_max_traj, j_min_traj, j_max_traj;
    +     507             : 
    +     508          15 :   bool success = computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::VELOCITY, dimensions, &v_min_traj, &v_max_traj);
    +     509          15 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::ACCELERATION, dimensions, &a_min_traj, &a_max_traj);
    +     510          15 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::JERK, dimensions, &j_min_traj, &j_max_traj);
    +     511             : 
    +     512          15 :   *v_max = v_max_traj.value;
    +     513          15 :   *a_max = a_max_traj.value;
    +     514          15 :   *j_max = j_max_traj.value;
    +     515             : 
    +     516          30 :   return success;
    +     517             : }
    +     518             : 
    +     519             : //}
    +     520             : 
    +     521             : /* computeMaxDerivativesHeading() //{ */
    +     522             : 
    +     523             : // compute max velocity, acceleration and jerk
    +     524         158 : bool Trajectory::computeMaxDerivativesHeading(double* v_max, double* a_max, double* j_max, int seg) const {
    +     525             : 
    +     526         158 :   std::vector<int> dimensions;  // Evaluate in whatever dimensions we have.
    +     527             : 
    +     528         158 :   dimensions.push_back(3);  // 3 = heading
    +     529             : 
    +     530         158 :   Extremum v_min_traj, v_max_traj, a_min_traj, a_max_traj, j_min_traj, j_max_traj;
    +     531             : 
    +     532         158 :   bool success = computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::VELOCITY, dimensions, &v_min_traj, &v_max_traj, seg);
    +     533         158 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::ACCELERATION, dimensions, &a_min_traj, &a_max_traj, seg);
    +     534         158 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::JERK, dimensions, &j_min_traj, &j_max_traj, seg);
    +     535             : 
    +     536         158 :   *v_max = v_max_traj.value;
    +     537         158 :   *a_max = a_max_traj.value;
    +     538         158 :   *j_max = j_max_traj.value;
    +     539             : 
    +     540         316 :   return success;
    +     541             : }
    +     542             : 
    +     543             : //}
    +     544             : 
    +     545             : /* computeMaxDerivativesHeading() //{ */
    +     546             : 
    +     547             : // compute max velocity, acceleration and jerk
    +     548          15 : bool Trajectory::computeMaxDerivativesHeading(double* v_max, double* a_max, double* j_max) const {
    +     549             : 
    +     550          15 :   std::vector<int> dimensions;  // Evaluate in whatever dimensions we have.
    +     551             : 
    +     552          15 :   dimensions.push_back(3);  // 3 = heading
    +     553             : 
    +     554          15 :   Extremum v_min_traj, v_max_traj, a_min_traj, a_max_traj, j_min_traj, j_max_traj;
    +     555             : 
    +     556          15 :   bool success = computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::VELOCITY, dimensions, &v_min_traj, &v_max_traj);
    +     557          15 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::ACCELERATION, dimensions, &a_min_traj, &a_max_traj);
    +     558          15 :   success &= computeMinMaxMagnitude(eth_trajectory_generation::derivative_order::JERK, dimensions, &j_min_traj, &j_max_traj);
    +     559             : 
    +     560          15 :   *v_max = v_max_traj.value;
    +     561          15 :   *a_max = a_max_traj.value;
    +     562          15 :   *j_max = j_max_traj.value;
    +     563             : 
    +     564          30 :   return success;
    +     565             : }
    +     566             : 
    +     567             : //}
    +     568             : 
    +     569             : /* scaleSegmentTimes() //{ */
    +     570             : 
    +     571           0 : bool Trajectory::scaleSegmentTimes(double scaling) {
    +     572           0 :   if (scaling < 1.0e-6)
    +     573           0 :     return false;
    +     574             : 
    +     575             :   // Scale the segment times of each segment.
    +     576           0 :   double new_max_time    = 0.0;
    +     577           0 :   double scaling_inverse = 1.0 / scaling;
    +     578           0 :   for (size_t i = 0; i < segments_.size(); i++) {
    +     579           0 :     double new_time = segments_[i].getTime() * scaling;
    +     580           0 :     for (int d = 0; d < segments_[i].D(); d++) {
    +     581           0 :       (segments_[i])[d].scalePolynomialInTime(scaling_inverse);
    +     582             :     }
    +     583           0 :     segments_[i].setTime(new_time);
    +     584           0 :     new_max_time += new_time;
    +     585             :   }
    +     586           0 :   max_time_ = new_max_time;
    +     587             : 
    +     588           0 :   return true;
    +     589             : }
    +     590             : 
    +     591             : //}
    +     592             : 
    +     593             : /* scaleSegmentTimesToMeetConstraints() //{ */
    +     594             : 
    +     595             : // This method SCALES the segment times evenly to ensure that the trajectory
    +     596             : // is feasible given the provided v_max and a_max. Does not change the shape
    +     597             : // of the trajectory, and only *increases* segment times.
    +     598          15 : bool Trajectory::scaleSegmentTimesToMeetConstraints(const double v_max_horizontal, const double v_max_vertical, const double a_max_horizontal,
    +     599             :                                                     const double a_max_vertical, const double j_max_horizontal, const double j_max_vertical,
    +     600             :                                                     const double v_max_heading, const double a_max_heading, const double j_max_heading) {
    +     601             : 
    +     602             :   // In vast majority of cases, this will converge within 1 iteration.
    +     603          15 :   constexpr size_t kMaxCounter = 20;
    +     604          15 :   constexpr double kTolerance  = 1e-3;
    +     605             : 
    +     606          15 :   bool within_range = false;
    +     607             : 
    +     608          15 :   for (size_t i = 0; i < kMaxCounter; i++) {
    +     609             : 
    +     610         173 :     for (size_t seg = 0; seg < segments_.size(); seg++) {
    +     611             : 
    +     612             :       // From Liu, Sikang, et al. "Planning Dynamically Feasible Trajectories for
    +     613             :       // Quadrotors Using Safe Flight Corridors in 3-D Complex Environments." IEEE
    +     614             :       // Robotics and Automation Letters 2.3 (2017).
    +     615             :       double v_max_horizontal_actual, a_max_horizontal_actual, j_max_horizontal_actual;
    +     616         158 :       computeMaxDerivativesHorizontal(&v_max_horizontal_actual, &a_max_horizontal_actual, &j_max_horizontal_actual, seg);
    +     617             : 
    +     618             :       double v_max_vertical_actual, a_max_vertical_actual, j_max_vertical_actual;
    +     619         158 :       computeMaxDerivativesVertical(&v_max_vertical_actual, &a_max_vertical_actual, &j_max_vertical_actual, seg);
    +     620             : 
    +     621             :       double v_max_heading_actual, a_max_heading_actual, j_max_heading_actual;
    +     622         158 :       computeMaxDerivativesHeading(&v_max_heading_actual, &a_max_heading_actual, &j_max_heading_actual, seg);
    +     623             : 
    +     624             :       // Reevaluate constraint/bound violation
    +     625         158 :       double velocity_violation_horizontal     = v_max_horizontal_actual / v_max_horizontal;
    +     626         158 :       double velocity_violation_vertical       = v_max_vertical_actual / v_max_vertical;
    +     627         158 :       double acceleration_violation_horizontal = a_max_horizontal_actual / a_max_horizontal;
    +     628         158 :       double acceleration_violation_vertical   = a_max_vertical_actual / a_max_vertical;
    +     629         158 :       double jerk_violation_horizontal         = j_max_horizontal_actual / j_max_horizontal;
    +     630         158 :       double jerk_violation_vertical           = j_max_vertical_actual / j_max_vertical;
    +     631             : 
    +     632         158 :       double velocity_violation_heading     = v_max_heading_actual / v_max_heading;
    +     633         158 :       double acceleration_violation_heading = a_max_heading_actual / a_max_heading;
    +     634         158 :       double jerk_violation_heading         = j_max_heading_actual / j_max_heading;
    +     635             : 
    +     636         158 :       double velocity_violation     = std::max(std::max(velocity_violation_horizontal, velocity_violation_vertical), velocity_violation_heading);
    +     637         158 :       double acceleration_violation = std::max(std::max(acceleration_violation_horizontal, acceleration_violation_vertical), acceleration_violation_heading);
    +     638         158 :       double jerk_violation         = std::max(std::max(jerk_violation_horizontal, jerk_violation_vertical), jerk_violation_heading);
    +     639             : 
    +     640         158 :       within_range = velocity_violation <= 1.0 + kTolerance && acceleration_violation <= 1.0 + kTolerance && jerk_violation <= 1.0 + kTolerance;
    +     641             : 
    +     642         158 :       double violation_scaling = std::max(1.0, std::max(std::max(velocity_violation, sqrt(acceleration_violation)), cbrt(jerk_violation)));
    +     643             : 
    +     644             :       // First figure out how to stretch the trajectory in time.
    +     645         158 :       double violation_scaling_inverse = 1.0 / violation_scaling;
    +     646             : 
    +     647             :       // Scale the segment times of each segment.
    +     648         158 :       double new_max_time = 0.0;
    +     649         158 :       double new_time     = segments_[seg].getTime() * violation_scaling;
    +     650             : 
    +     651         790 :       for (int d = 0; d < segments_[seg].D(); d++) {
    +     652         632 :         (segments_[seg])[d].scalePolynomialInTime(violation_scaling_inverse);
    +     653             :       }
    +     654             : 
    +     655         158 :       segments_[seg].setTime(new_time);
    +     656         158 :       new_max_time += new_time;
    +     657         158 :       max_time_ = new_max_time;
    +     658             :     }
    +     659             : 
    +     660             :     double v_max_horizontal_actual, a_max_horizontal_actual, j_max_horizontal_actual;
    +     661          15 :     computeMaxDerivativesHorizontal(&v_max_horizontal_actual, &a_max_horizontal_actual, &j_max_horizontal_actual);
    +     662             : 
    +     663             :     double v_max_vertical_actual, a_max_vertical_actual, j_max_vertical_actual;
    +     664          15 :     computeMaxDerivativesVertical(&v_max_vertical_actual, &a_max_vertical_actual, &j_max_vertical_actual);
    +     665             : 
    +     666             :     double v_max_heading_actual, a_max_heading_actual, j_max_heading_actual;
    +     667          15 :     computeMaxDerivativesHeading(&v_max_heading_actual, &a_max_heading_actual, &j_max_heading_actual);
    +     668             : 
    +     669             :     // Reevaluate constraint/bound violation
    +     670          15 :     double velocity_violation_horizontal     = v_max_horizontal_actual / v_max_horizontal;
    +     671          15 :     double velocity_violation_vertical       = v_max_vertical_actual / v_max_vertical;
    +     672          15 :     double acceleration_violation_horizontal = a_max_horizontal_actual / a_max_horizontal;
    +     673          15 :     double acceleration_violation_vertical   = a_max_vertical_actual / a_max_vertical;
    +     674          15 :     double jerk_violation_horizontal         = j_max_horizontal_actual / j_max_horizontal;
    +     675          15 :     double jerk_violation_vertical           = j_max_vertical_actual / j_max_vertical;
    +     676             : 
    +     677          15 :     double velocity_violation_heading     = v_max_heading_actual / v_max_heading;
    +     678          15 :     double acceleration_violation_heading = a_max_heading_actual / a_max_heading;
    +     679          15 :     double jerk_violation_heading         = j_max_heading_actual / j_max_heading;
    +     680             : 
    +     681          15 :     double velocity_violation     = std::max(std::max(velocity_violation_horizontal, velocity_violation_vertical), velocity_violation_heading);
    +     682          15 :     double acceleration_violation = std::max(std::max(acceleration_violation_horizontal, acceleration_violation_vertical), acceleration_violation_heading);
    +     683          15 :     double jerk_violation         = std::max(std::max(jerk_violation_horizontal, jerk_violation_vertical), jerk_violation_heading);
    +     684             : 
    +     685          15 :     within_range = velocity_violation <= 1.0 + kTolerance && acceleration_violation <= 1.0 + kTolerance && jerk_violation <= 1.0 + kTolerance;
    +     686             : 
    +     687          15 :     if (within_range) {
    +     688          15 :       break;
    +     689             :     }
    +     690             :   }
    +     691          15 :   return within_range;
    +     692             : }
    +     693             : 
    +     694             : //}
    +     695             : 
    +     696             : }  // namespace eth_trajectory_generation
    +
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    eth_trajectory_generation::sampleSegmentAtTime(eth_trajectory_generation::Segment const&, double, eth_mav_msgs::EigenTrajectoryPoint*)0
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    eth_trajectory_generation::sampleSegmentAtTime(eth_trajectory_generation::Segment const&, double, eth_mav_msgs::EigenTrajectoryPoint*)0
    bool eth_trajectory_generation::sampleFlatStateAtTime<eth_trajectory_generation::Trajectory>(eth_trajectory_generation::Trajectory const&, double, eth_mav_msgs::EigenTrajectoryPoint*)0
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    eth_trajectory_generation::sampleWholeTrajectory(eth_trajectory_generation::Trajectory const&, double, std::vector<eth_mav_msgs::EigenTrajectoryPoint, Eigen::aligned_allocator<eth_mav_msgs::EigenTrajectoryPoint> >*)10
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    eth_trajectory_generation::sampleTrajectoryInRange(eth_trajectory_generation::Trajectory const&, double, double, double, std::vector<eth_mav_msgs::EigenTrajectoryPoint, Eigen::aligned_allocator<eth_mav_msgs::EigenTrajectoryPoint> >*)10
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              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #include <eth_trajectory_generation/trajectory_sampling.h>
    +      22             : 
    +      23             : namespace eth_trajectory_generation
    +      24             : {
    +      25             : 
    +      26             : const double kNumNanosecondsPerSecond = 1.e9;
    +      27             : 
    +      28             : /* sampleTrajectoryAtTime() //{ */
    +      29             : 
    +      30           0 : bool sampleTrajectoryAtTime(const Trajectory& trajectory, double sample_time, eth_mav_msgs::EigenTrajectoryPoint* state) {
    +      31           0 :   CHECK_NOTNULL(state);
    +      32           0 :   if (sample_time < trajectory.getMinTime() || sample_time > trajectory.getMaxTime()) {
    +      33           0 :     LOG(ERROR) << "Sample time should be within [" << trajectory.getMinTime() << " " << trajectory.getMaxTime() << "] but is " << sample_time;
    +      34           0 :     return false;
    +      35             :   }
    +      36             : 
    +      37           0 :   if (trajectory.D() < 3) {
    +      38           0 :     LOG(ERROR) << "Dimension has to be at least 3, but is " << trajectory.D();
    +      39           0 :     return false;
    +      40             :   }
    +      41             : 
    +      42           0 :   return sampleFlatStateAtTime<Trajectory>(trajectory, sample_time, state);
    +      43             : }
    +      44             : 
    +      45             : //}
    +      46             : 
    +      47             : /* sampleTrajectoryInRange() //{ */
    +      48             : 
    +      49          10 : bool sampleTrajectoryInRange(const Trajectory& trajectory, double min_time, double max_time, double sampling_interval,
    +      50             :                              eth_mav_msgs::EigenTrajectoryPointVector* states) {
    +      51          10 :   CHECK_NOTNULL(states);
    +      52          10 :   if (min_time < trajectory.getMinTime() || max_time > trajectory.getMaxTime()) {
    +      53           0 :     LOG(ERROR) << "Sample time should be within [" << trajectory.getMinTime() << " " << trajectory.getMaxTime() << "] but is [" << min_time << " " << max_time
    +      54           0 :                << "]";
    +      55           0 :     return false;
    +      56             :   }
    +      57             : 
    +      58          10 :   if (trajectory.D() < 3) {
    +      59           0 :     LOG(ERROR) << "Dimension has to be at least 3, but is " << trajectory.D();
    +      60           0 :     return false;
    +      61             :   }
    +      62             : 
    +      63          20 :   std::vector<Eigen::VectorXd> position, velocity, acceleration, jerk, snap, yaw, yaw_rate;
    +      64             : 
    +      65          10 :   trajectory.evaluateRange(min_time, max_time, sampling_interval, derivative_order::POSITION, &position);
    +      66          10 :   trajectory.evaluateRange(min_time, max_time, sampling_interval, derivative_order::VELOCITY, &velocity);
    +      67          10 :   trajectory.evaluateRange(min_time, max_time, sampling_interval, derivative_order::ACCELERATION, &acceleration);
    +      68          10 :   trajectory.evaluateRange(min_time, max_time, sampling_interval, derivative_order::JERK, &jerk);
    +      69          10 :   trajectory.evaluateRange(min_time, max_time, sampling_interval, derivative_order::SNAP, &snap);
    +      70             : 
    +      71          10 :   size_t n_samples = position.size();
    +      72             : 
    +      73          10 :   states->resize(n_samples);
    +      74        1278 :   for (size_t i = 0; i < n_samples; ++i) {
    +      75        1268 :     eth_mav_msgs::EigenTrajectoryPoint& state = (*states)[i];
    +      76             : 
    +      77             :     /* state.degrees_of_freedom = eth_mav_msgs::MavActuation::DOF4; */
    +      78        1268 :     state.position_W         = position[i].head<3>();
    +      79        1268 :     state.velocity_W         = velocity[i].head<3>();
    +      80        1268 :     state.acceleration_W     = acceleration[i].head<3>();
    +      81        1268 :     state.jerk_W             = jerk[i].head<3>();
    +      82        1268 :     state.snap_W             = snap[i].head<3>();
    +      83        1268 :     state.time_from_start_ns = static_cast<int64_t>((min_time + sampling_interval * i) * kNumNanosecondsPerSecond);
    +      84        1268 :     if (trajectory.D() == 4) {
    +      85        1268 :       state.setFromYaw(position[i](3));
    +      86        1268 :       state.setFromYawRate(velocity[i](3));
    +      87        1268 :       state.setFromYawAcc(acceleration[i](3));
    +      88             :     }
    +      89             :     /* else if (trajectory.D() == 6) { */
    +      90             :     /*   // overactuated, write quaternion from interpolated rotation vector */
    +      91             :     /*   Eigen::Vector3d rot_vec, rot_vec_vel, rot_vec_acc; */
    +      92             :     /*   rot_vec = position[i].tail<3>(); */
    +      93             :     /*   rot_vec_vel  = velocity[i].tail<3>(); */
    +      94             :     /*   rot_vec_acc  = acceleration[i].tail<3>(); */
    +      95             :     /*   Eigen::Matrix3d rot_matrix; */
    +      96             :     /*   eth_mav_msgs::matrixFromRotationVector(rot_vec, &rot_matrix); */
    +      97             :     /*   state.orientation_W_B = Eigen::Quaterniond(rot_matrix); */
    +      98             :     /*   state.angular_velocity_W = eth_mav_msgs::omegaFromRotationVector(rot_vec, rot_vec_vel); */
    +      99             :     /*   state.angular_acceleration_W = eth_mav_msgs::omegaDotFromRotationVector(rot_vec, rot_vec_vel, rot_vec_acc); */
    +     100             :     /*   state.degrees_of_freedom = eth_mav_msgs::MavActuation::DOF6; */
    +     101             :     /* } */
    +     102             :   }
    +     103          10 :   return true;
    +     104             : }
    +     105             : 
    +     106             : //}
    +     107             : 
    +     108             : /* sampleTrajectoryStartDuration() //{ */
    +     109             : 
    +     110           0 : bool sampleTrajectoryStartDuration(const Trajectory& trajectory, double start_time, double duration, double sampling_interval,
    +     111             :                                    eth_mav_msgs::EigenTrajectoryPointVector* states) {
    +     112           0 :   return sampleTrajectoryInRange(trajectory, start_time, start_time + duration, sampling_interval, states);
    +     113             : }
    +     114             : 
    +     115             : //}
    +     116             : 
    +     117             : /* sampleWholeTrajectory() //{ */
    +     118             : 
    +     119          10 : bool sampleWholeTrajectory(const Trajectory& trajectory, double sampling_interval, eth_mav_msgs::EigenTrajectoryPoint::Vector* states) {
    +     120          10 :   const double min_time = trajectory.getMinTime();
    +     121          10 :   const double max_time = trajectory.getMaxTime();
    +     122             : 
    +     123          10 :   return sampleTrajectoryInRange(trajectory, min_time, max_time, sampling_interval, states);
    +     124             : }
    +     125             : 
    +     126             : //}
    +     127             : 
    +     128             : /* sampleSegmentAtTime() //{ */
    +     129             : 
    +     130           0 : bool sampleSegmentAtTime(const Segment& segment, double sample_time, eth_mav_msgs::EigenTrajectoryPoint* state) {
    +     131           0 :   CHECK_NOTNULL(state);
    +     132           0 :   if (sample_time < 0.0 || sample_time > segment.getTime()) {
    +     133           0 :     LOG(ERROR) << "Sample time should be within [" << 0.0 << " " << segment.getTime() << "] but is " << sample_time;
    +     134           0 :     return false;
    +     135             :   }
    +     136             : 
    +     137           0 :   return sampleFlatStateAtTime<Segment>(segment, sample_time, state);
    +     138             : }
    +     139             : 
    +     140             : //}
    +     141             : 
    +     142             : /* sampleFlatStateAtTime() //{ */
    +     143             : 
    +     144             : template <class T>
    +     145           0 : bool sampleFlatStateAtTime(const T& type, double sample_time, eth_mav_msgs::EigenTrajectoryPoint* state) {
    +     146           0 :   if (type.D() < 3) {
    +     147           0 :     LOG(ERROR) << "Dimension has to be 3, 4, or 6 but is " << type.D();
    +     148           0 :     return false;
    +     149             :   }
    +     150             : 
    +     151           0 :   Eigen::VectorXd position     = type.evaluate(sample_time, derivative_order::POSITION);
    +     152           0 :   Eigen::VectorXd velocity     = type.evaluate(sample_time, derivative_order::VELOCITY);
    +     153           0 :   Eigen::VectorXd acceleration = type.evaluate(sample_time, derivative_order::ACCELERATION);
    +     154             : 
    +     155             :   /* state->degrees_of_freedom = eth_mav_msgs::MavActuation::DOF4; */
    +     156           0 :   state->position_W     = position.head(3);
    +     157           0 :   state->velocity_W     = velocity.head(3);
    +     158           0 :   state->acceleration_W = acceleration.head(3);
    +     159           0 :   state->jerk_W         = type.evaluate(sample_time, derivative_order::JERK).head(3);
    +     160           0 :   state->snap_W         = type.evaluate(sample_time, derivative_order::SNAP).head(3);
    +     161             : 
    +     162           0 :   if (type.D() == 4) {
    +     163           0 :     state->setFromYaw(position(3));
    +     164           0 :     state->setFromYawRate(velocity(3));
    +     165           0 :     state->setFromYawAcc(acceleration(3));
    +     166             :   }
    +     167             :   /* else if (type.D() == 6) { */
    +     168             :   /*   // overactuated, write quaternion from interpolated rotation vector */
    +     169             :   /*   Eigen::Vector3d rot_vec, rot_vec_vel, rot_vec_acc; */
    +     170             :   /*   rot_vec  = position.tail(3); */
    +     171             :   /*   rot_vec_vel = velocity.tail(3); */
    +     172             :   /*   rot_vec_acc = acceleration.tail(3); */
    +     173             :   /*   Eigen::Matrix3d rot_matrix; */
    +     174             :   /*   eth_mav_msgs::matrixFromRotationVector(rot_vec, &rot_matrix); */
    +     175             :   /*   state->orientation_W_B = Eigen::Quaterniond(rot_matrix); */
    +     176             :   /*   state->angular_velocity_W = eth_mav_msgs::omegaFromRotationVector(rot_vec, rot_vec_vel); */
    +     177             :   /*   state->angular_acceleration_W = eth_mav_msgs::omegaDotFromRotationVector(rot_vec, rot_vec_vel, rot_vec_acc); */
    +     178             :   /*   state->degrees_of_freedom = eth_mav_msgs::MavActuation::DOF6; */
    +     179             :   /* } */
    +     180             : 
    +     181           0 :   state->time_from_start_ns = static_cast<int64_t>(sample_time * kNumNanosecondsPerSecond);
    +     182           0 :   return true;
    +     183             : }
    +     184             : 
    +     185             : //}
    +     186             : 
    +     187             : }  // namespace eth_trajectory_generation
    +
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    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generation - vertex.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:13527050.0 %
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::createRandomVertices(int, unsigned long, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, unsigned long)0
    eth_trajectory_generation::createSquareVertices(int, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double, int)0
    eth_trajectory_generation::createRandomVertices1D(int, unsigned long, double, double, unsigned long)0
    eth_trajectory_generation::computeTimeVelocityRamp(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, double, double)0
    eth_trajectory_generation::estimateSegmentTimesVelocityRamp(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, double, double, double)0
    eth_trajectory_generation::Vertex::removeConstraint(int)0
    eth_trajectory_generation::operator<<(std::basic_ostream<char, std::char_traits<char> >&, eth_trajectory_generation::Vertex const&)0
    eth_trajectory_generation::operator<<(std::basic_ostream<char, std::char_traits<char> >&, std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&)0
    eth_trajectory_generation::Vertex::isEqualTol(eth_trajectory_generation::Vertex const&, double) const0
    eth_trajectory_generation::Vertex::hasConstraint(int) const0
    eth_trajectory_generation::Vertex::getSubdimension(std::vector<unsigned long, std::allocator<unsigned long> > const&, int, eth_trajectory_generation::Vertex*) const0
    eth_trajectory_generation::estimateSegmentTimes(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, double, double, double, double, double, double, double, double)21
    eth_trajectory_generation::estimateSegmentTimesBaca(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, double, double, double, double, double, double, double, double)21
    eth_trajectory_generation::estimateSegmentTimesEuclidean(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, double, double, double, double, double, double, double, double)21
    eth_trajectory_generation::Vertex::makeStartOrEnd(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, int)30
    eth_trajectory_generation::Vertex::addConstraint(int, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)508
    eth_trajectory_generation::Vertex::getConstraint(int, Eigen::Matrix<double, -1, 1, 0, -1, 1>*) const2618
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    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generation - vertex.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:13527050.0 %
    Date:2024-04-17 23:52:03Functions:61735.3 %
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    Function Name Sort by function nameHit count Sort by hit count
    eth_trajectory_generation::createRandomVertices(int, unsigned long, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, unsigned long)0
    eth_trajectory_generation::createSquareVertices(int, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, double, int)0
    eth_trajectory_generation::estimateSegmentTimes(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, double, double, double, double, double, double, double, double)21
    eth_trajectory_generation::createRandomVertices1D(int, unsigned long, double, double, unsigned long)0
    eth_trajectory_generation::computeTimeVelocityRamp(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, double, double)0
    eth_trajectory_generation::estimateSegmentTimesBaca(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, double, double, double, double, double, double, double, double)21
    eth_trajectory_generation::estimateSegmentTimesEuclidean(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, double, double, double, double, double, double, double, double)21
    eth_trajectory_generation::estimateSegmentTimesVelocityRamp(std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&, double, double, double)0
    eth_trajectory_generation::Vertex::addConstraint(int, Eigen::Matrix<double, -1, 1, 0, -1, 1> const&)508
    eth_trajectory_generation::Vertex::makeStartOrEnd(Eigen::Matrix<double, -1, 1, 0, -1, 1> const&, int)30
    eth_trajectory_generation::Vertex::removeConstraint(int)0
    eth_trajectory_generation::operator<<(std::basic_ostream<char, std::char_traits<char> >&, eth_trajectory_generation::Vertex const&)0
    eth_trajectory_generation::operator<<(std::basic_ostream<char, std::char_traits<char> >&, std::vector<eth_trajectory_generation::Vertex, std::allocator<eth_trajectory_generation::Vertex> > const&)0
    eth_trajectory_generation::Vertex::isEqualTol(eth_trajectory_generation::Vertex const&, double) const0
    eth_trajectory_generation::Vertex::getConstraint(int, Eigen::Matrix<double, -1, 1, 0, -1, 1>*) const2618
    eth_trajectory_generation::Vertex::hasConstraint(int) const0
    eth_trajectory_generation::Vertex::getSubdimension(std::vector<unsigned long, std::allocator<unsigned long> > const&, int, eth_trajectory_generation::Vertex*) const0
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    Current view:top level - mrs_uav_trajectory_generation/src/eth_trajectory_generation - vertex.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:13527050.0 %
    Date:2024-04-17 23:52:03Functions:61735.3 %
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              Line data    Source code
    +
    +       1             : /*
    +       2             :  * Copyright (c) 2016, Markus Achtelik, ASL, ETH Zurich, Switzerland
    +       3             :  * Copyright (c) 2016, Michael Burri, ASL, ETH Zurich, Switzerland
    +       4             :  * Copyright (c) 2016, Helen Oleynikova, ASL, ETH Zurich, Switzerland
    +       5             :  * Copyright (c) 2016, Rik Bähnemann, ASL, ETH Zurich, Switzerland
    +       6             :  * Copyright (c) 2016, Marija Popovic, ASL, ETH Zurich, Switzerland
    +       7             :  *
    +       8             :  * Licensed under the Apache License, Version 2.0 (the "License");
    +       9             :  * you may not use this file except in compliance with the License.
    +      10             :  * You may obtain a copy of the License at
    +      11             :  *
    +      12             :  * http://www.apache.org/licenses/LICENSE-2.0
    +      13             :  *
    +      14             :  * Unless required by applicable law or agreed to in writing, software
    +      15             :  * distributed under the License is distributed on an "AS IS" BASIS,
    +      16             :  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    +      17             :  * See the License for the specific language governing permissions and
    +      18             :  * limitations under the License.
    +      19             :  */
    +      20             : 
    +      21             : #include <random>
    +      22             : #include <iostream>
    +      23             : 
    +      24             : #include <eth_trajectory_generation/vertex.h>
    +      25             : 
    +      26             : #include <mrs_lib/geometry/cyclic.h>
    +      27             : 
    +      28             : namespace eth_trajectory_generation
    +      29             : {
    +      30             : 
    +      31             : /* createRandomVertices() //{ */
    +      32             : 
    +      33           0 : Vertex::Vector createRandomVertices(int maximum_derivative, size_t n_segments, const Eigen::VectorXd& pos_min, const Eigen::VectorXd& pos_max, size_t seed) {
    +      34           0 :   CHECK_GE(static_cast<int>(n_segments), 1);
    +      35           0 :   CHECK_EQ(pos_min.size(), pos_max.size());
    +      36           0 :   CHECK_GE((pos_max - pos_min).norm(), 0.2);
    +      37           0 :   CHECK_GT(maximum_derivative, 0);
    +      38             : 
    +      39           0 :   Vertex::Vector                                      vertices;
    +      40           0 :   std::mt19937                                        generator(seed);
    +      41           0 :   std::vector<std::uniform_real_distribution<double>> distribution;
    +      42             : 
    +      43           0 :   const size_t dimension = pos_min.size();
    +      44             : 
    +      45           0 :   distribution.resize(dimension);
    +      46             : 
    +      47           0 :   for (size_t i = 0; i < dimension; ++i) {
    +      48           0 :     distribution[i] = std::uniform_real_distribution<double>(pos_min[i], pos_max[i]);
    +      49             :   }
    +      50             : 
    +      51           0 :   const double min_distance = 0.2;
    +      52           0 :   const size_t n_vertices   = n_segments + 1;
    +      53             : 
    +      54           0 :   Eigen::VectorXd last_pos(dimension);
    +      55           0 :   for (size_t i = 0; i < dimension; ++i) {
    +      56           0 :     last_pos[i] = distribution[i](generator);
    +      57             :   }
    +      58             : 
    +      59           0 :   vertices.reserve(n_segments + 1);
    +      60           0 :   vertices.push_back(Vertex(dimension));
    +      61             : 
    +      62           0 :   vertices.front().makeStartOrEnd(last_pos, maximum_derivative);
    +      63             : 
    +      64           0 :   for (size_t i = 1; i < n_vertices; ++i) {
    +      65           0 :     Eigen::VectorXd pos(dimension);
    +      66             : 
    +      67             :     while (true) {
    +      68           0 :       for (size_t d = 0; d < dimension; ++d) {
    +      69           0 :         pos[d] = distribution[d](generator);
    +      70             :       }
    +      71           0 :       if ((pos - last_pos).norm() > min_distance) {
    +      72           0 :         break;
    +      73             :       }
    +      74           0 :     }
    +      75             : 
    +      76           0 :     Vertex v(dimension);
    +      77           0 :     v.addConstraint(derivative_order::POSITION, pos);
    +      78           0 :     vertices.push_back(v);
    +      79           0 :     last_pos = pos;
    +      80             :   }
    +      81           0 :   vertices.back().makeStartOrEnd(last_pos, maximum_derivative);
    +      82             : 
    +      83           0 :   return vertices;
    +      84             : }
    +      85             : 
    +      86             : //}
    +      87             : 
    +      88             : /* createSquareVertices() //{ */
    +      89             : 
    +      90           0 : Vertex::Vector createSquareVertices(int maximum_derivative, const Eigen::Vector3d& center, double side_length, int rounds) {
    +      91           0 :   Vertex::Vector vertices;
    +      92           0 :   const size_t   dimension = center.size();
    +      93             : 
    +      94           0 :   Eigen::Vector3d pos1(center[0] - side_length / 2.0, center[1] - side_length / 2.0, center[2]);
    +      95           0 :   Vertex          v1(dimension);
    +      96           0 :   v1.addConstraint(derivative_order::POSITION, pos1);
    +      97           0 :   Eigen::Vector3d pos2(center[0] - side_length / 2.0, center[1] + side_length / 2.0, center[2]);
    +      98           0 :   Vertex          v2(dimension);
    +      99           0 :   v2.addConstraint(derivative_order::POSITION, pos2);
    +     100           0 :   Eigen::Vector3d pos3(center[0] + side_length / 2.0, center[1] + side_length / 2.0, center[2]);
    +     101           0 :   Vertex          v3(dimension);
    +     102           0 :   v3.addConstraint(derivative_order::POSITION, pos3);
    +     103           0 :   Eigen::Vector3d pos4(center[0] + side_length / 2.0, center[1] - side_length / 2.0, center[2]);
    +     104           0 :   Vertex          v4(dimension);
    +     105           0 :   v4.addConstraint(derivative_order::POSITION, pos4);
    +     106             : 
    +     107           0 :   vertices.reserve(4 * rounds);
    +     108           0 :   vertices.push_back(v1);
    +     109           0 :   vertices.front().makeStartOrEnd(pos1, maximum_derivative);
    +     110             : 
    +     111           0 :   for (int i = 0; i < rounds; ++i) {
    +     112           0 :     vertices.push_back(v2);
    +     113           0 :     vertices.push_back(v3);
    +     114           0 :     vertices.push_back(v4);
    +     115           0 :     vertices.push_back(v1);
    +     116             :   }
    +     117           0 :   vertices.back().makeStartOrEnd(pos1, maximum_derivative);
    +     118             : 
    +     119           0 :   return vertices;
    +     120             : }
    +     121             : 
    +     122             : //}
    +     123             : 
    +     124             : /* createRandomVertices1D() //{ */
    +     125             : 
    +     126           0 : Vertex::Vector createRandomVertices1D(int maximum_derivative, size_t n_segments, double pos_min, double pos_max, size_t seed) {
    +     127           0 :   return createRandomVertices(maximum_derivative, n_segments, Eigen::VectorXd::Constant(1, pos_min), Eigen::VectorXd::Constant(1, pos_max), seed);
    +     128             : }
    +     129             : 
    +     130             : //}
    +     131             : 
    +     132             : /* addConstraint() //{ */
    +     133             : 
    +     134         508 : void Vertex::addConstraint(int derivative_order, const Eigen::VectorXd& constraint) {
    +     135         508 :   CHECK_EQ(constraint.rows(), static_cast<long>(D_));
    +     136         508 :   constraints_[derivative_order] = constraint;
    +     137         508 : }
    +     138             : 
    +     139             : //}
    +     140             : 
    +     141             : /* removeConstraint() //{ */
    +     142             : 
    +     143           0 : bool Vertex::removeConstraint(int type) {
    +     144           0 :   Constraints::const_iterator it = constraints_.find(type);
    +     145           0 :   if (it != constraints_.end()) {
    +     146           0 :     constraints_.erase(it);
    +     147           0 :     return true;
    +     148             :   } else {
    +     149             :     // Constraint not found.
    +     150           0 :     return false;
    +     151             :   }
    +     152             : }
    +     153             : 
    +     154             : //}
    +     155             : 
    +     156             : /* makeStartOrEnd() //{ */
    +     157             : 
    +     158          30 : void Vertex::makeStartOrEnd(const Eigen::VectorXd& constraint, int up_to_derivative) {
    +     159          30 :   addConstraint(derivative_order::POSITION, constraint);
    +     160          90 :   for (int i = 1; i <= up_to_derivative; ++i) {
    +     161          60 :     constraints_[i] = ConstraintValue::Zero(static_cast<int>(D_));
    +     162             :   }
    +     163          30 : }
    +     164             : 
    +     165             : //}
    +     166             : 
    +     167             : /* getConstraint() //{ */
    +     168             : 
    +     169        2618 : bool Vertex::getConstraint(int derivative_order, Eigen::VectorXd* value) const {
    +     170        2618 :   CHECK_NOTNULL(value);
    +     171        2618 :   typename Constraints::const_iterator it = constraints_.find(derivative_order);
    +     172        2618 :   if (it != constraints_.end()) {
    +     173        1425 :     *value = it->second;
    +     174        1425 :     return true;
    +     175             :   } else
    +     176        1193 :     return false;
    +     177             : }
    +     178             : 
    +     179             : //}
    +     180             : 
    +     181             : /* hasConstraint() //{ */
    +     182             : 
    +     183           0 : bool Vertex::hasConstraint(int derivative_order) const {
    +     184           0 :   typename Constraints::const_iterator it = constraints_.find(derivative_order);
    +     185           0 :   return it != constraints_.end();
    +     186             : }
    +     187             : 
    +     188             : //}
    +     189             : 
    +     190             : /* isEqualTol() //{ */
    +     191             : 
    +     192           0 : bool Vertex::isEqualTol(const Vertex& rhs, double tol) const {
    +     193           0 :   if (constraints_.size() != rhs.constraints_.size())
    +     194           0 :     return false;
    +     195             :   // loop through lhs constraint map
    +     196           0 :   for (typename Constraints::const_iterator it = cBegin(); it != cEnd(); ++it) {
    +     197             :     // look for matching key
    +     198           0 :     typename Constraints::const_iterator rhs_it = rhs.constraints_.find(it->first);
    +     199           0 :     if (rhs_it == rhs.constraints_.end())
    +     200           0 :       return false;
    +     201             :     // check value
    +     202           0 :     if (!((it->second - rhs_it->second).isZero(tol)))
    +     203           0 :       return false;
    +     204             :   }
    +     205           0 :   return true;
    +     206             : }
    +     207             : 
    +     208             : //}
    +     209             : 
    +     210             : /* getSubdimension() //{ */
    +     211             : 
    +     212           0 : bool Vertex::getSubdimension(const std::vector<size_t>& subdimensions, int max_derivative_order, Vertex* subvertex) const {
    +     213           0 :   CHECK_NOTNULL(subvertex);
    +     214           0 :   *subvertex = Vertex(subdimensions.size());
    +     215             : 
    +     216             :   // Check if all subdimensions exist.
    +     217           0 :   for (size_t subdimension : subdimensions)
    +     218           0 :     if (subdimension >= D_)
    +     219           0 :       return false;
    +     220             : 
    +     221             :   // Copy constraints up to maximum derivative order.
    +     222           0 :   for (Constraints::const_iterator it = constraints_.begin(); it != constraints_.end(); ++it) {
    +     223           0 :     int derivative_order = it->first;
    +     224           0 :     if (derivative_order > max_derivative_order)
    +     225           0 :       continue;
    +     226           0 :     const ConstraintValue& original_constraint = it->second;
    +     227           0 :     ConstraintValue        subsconstraint(subvertex->D());
    +     228           0 :     for (size_t i = 0; i < subdimensions.size(); i++) {
    +     229           0 :       subsconstraint[i] = original_constraint[subdimensions[i]];
    +     230             :     }
    +     231           0 :     subvertex->addConstraint(derivative_order, subsconstraint);
    +     232             :   }
    +     233           0 :   return true;
    +     234             : }
    +     235             : 
    +     236             : //}
    +     237             : 
    +     238             : /* operator<<(std::ostream& stream, const Vertex& v) //{ */
    +     239             : 
    +     240           0 : std::ostream& operator<<(std::ostream& stream, const Vertex& v) {
    +     241           0 :   stream << "constraints: " << std::endl;
    +     242           0 :   Eigen::IOFormat format(4, 0, ", ", "\n", "[", "]");
    +     243           0 :   for (typename Vertex::Constraints::const_iterator it = v.cBegin(); it != v.cEnd(); ++it) {
    +     244           0 :     stream << "  type: " << positionDerivativeToString(it->first);
    +     245           0 :     stream << "  value: " << it->second.transpose().format(format) << std::endl;
    +     246             :   }
    +     247           0 :   return stream;
    +     248             : }
    +     249             : 
    +     250             : //}
    +     251             : 
    +     252             : /* operator<<(std::ostream& stream, const std::vector<Vertex>& vertices) //{ */
    +     253             : 
    +     254           0 : std::ostream& operator<<(std::ostream& stream, const std::vector<Vertex>& vertices) {
    +     255           0 :   for (const Vertex& v : vertices) {
    +     256           0 :     stream << v << std::endl;
    +     257             :   }
    +     258           0 :   return stream;
    +     259             : }
    +     260             : 
    +     261             : //}
    +     262             : 
    +     263             : /* estimateSegmentTimes() //{ */
    +     264             : 
    +     265          21 : std::vector<double> estimateSegmentTimes(const Vertex::Vector& vertices, const double v_max_horizontal, const double v_max_vertical,
    +     266             :                                          const double a_max_horizontal, const double a_max_vertical, const double j_max_horizontal, const double j_max_vertical,
    +     267             :                                          const double heading_speed_max, const double heading_acc_max) {
    +     268             : 
    +     269             :   return estimateSegmentTimesEuclidean(vertices, v_max_horizontal, v_max_vertical, a_max_horizontal, a_max_vertical, j_max_horizontal, j_max_vertical,
    +     270          21 :                                        heading_speed_max, heading_acc_max);
    +     271             : }
    +     272             : 
    +     273             : //}
    +     274             : 
    +     275             : /* estimateSegmentTimesVelocityRamp() //{ */
    +     276             : 
    +     277           0 : std::vector<double> estimateSegmentTimesVelocityRamp(const Vertex::Vector& vertices, double v_max, double a_max, double time_factor) {
    +     278           0 :   CHECK_GE(vertices.size(), 2);
    +     279           0 :   std::vector<double> segment_times;
    +     280             : 
    +     281           0 :   segment_times.reserve(vertices.size() - 1);
    +     282             : 
    +     283           0 :   constexpr double kMinSegmentTime = 0.1;
    +     284             : 
    +     285           0 :   for (size_t i = 0; i < vertices.size() - 1; ++i) {
    +     286           0 :     Eigen::VectorXd start, end;
    +     287           0 :     vertices[i].getConstraint(derivative_order::POSITION, &start);
    +     288           0 :     vertices[i + 1].getConstraint(derivative_order::POSITION, &end);
    +     289           0 :     double t = computeTimeVelocityRamp(start, end, v_max, a_max);
    +     290           0 :     t        = std::max(kMinSegmentTime, t);
    +     291           0 :     segment_times.push_back(t);
    +     292             :   }
    +     293             : 
    +     294           0 :   return segment_times;
    +     295             : }
    +     296             : 
    +     297             : //}
    +     298             : 
    +     299             : /* estimateSegmentTimesBaca() //{ */
    +     300             : 
    +     301          21 : std::vector<double> estimateSegmentTimesBaca(const Vertex::Vector& vertices, const double v_max_horizontal, const double v_max_vertical,
    +     302             :                                              const double a_max_horizontal, const double a_max_vertical, const double j_max_horizontal,
    +     303             :                                              const double j_max_vertical, const double heading_speed_max, const double heading_acc_max) {
    +     304             : 
    +     305          21 :   CHECK_GE(vertices.size(), 2);
    +     306          21 :   std::vector<double> segment_times;
    +     307          21 :   segment_times.reserve(vertices.size() - 1);
    +     308             : 
    +     309             :   // for each vertex in the path
    +     310         201 :   for (size_t i = 0; i < vertices.size() - 1; ++i) {
    +     311             : 
    +     312         360 :     Eigen::VectorXd start4d, end4d;
    +     313             : 
    +     314         180 :     vertices[i].getConstraint(derivative_order::POSITION, &start4d);
    +     315         180 :     vertices[i + 1].getConstraint(derivative_order::POSITION, &end4d);
    +     316             : 
    +     317         180 :     Eigen::Vector3d start     = start4d.head(3);
    +     318         180 :     Eigen::Vector3d end       = end4d.head(3);
    +     319         180 :     double          start_hdg = start4d(3);
    +     320         180 :     double          end_hdg   = end4d(3);
    +     321             : 
    +     322         180 :     double acceleration_time_1 = 0;
    +     323         180 :     double acceleration_time_2 = 0;
    +     324             : 
    +     325         180 :     double jerk_time_1 = 0;
    +     326         180 :     double jerk_time_2 = 0;
    +     327             : 
    +     328         180 :     double acc_1_coeff = 0;
    +     329         180 :     double acc_2_coeff = 0;
    +     330             : 
    +     331         180 :     double distance = (end - start).norm();
    +     332             : 
    +     333         180 :     double inclinator = atan2(end(2) - start(2), sqrt(pow(end(0) - start(0), 2) + pow(end(1) - start(1), 2)));
    +     334             : 
    +     335             :     double v_max, a_max, j_max;
    +     336             : 
    +     337         180 :     if (inclinator > atan2(v_max_vertical, v_max_horizontal) || inclinator < -atan2(v_max_vertical, v_max_horizontal)) {
    +     338           0 :       v_max = fabs(v_max_vertical / sin(inclinator));
    +     339             :     } else {
    +     340         180 :       v_max = fabs(v_max_horizontal / cos(inclinator));
    +     341             :     }
    +     342             : 
    +     343         180 :     if (inclinator > atan2(a_max_vertical, a_max_horizontal) || inclinator < -atan2(a_max_vertical, a_max_horizontal)) {
    +     344           0 :       a_max = fabs(a_max_vertical / sin(inclinator));
    +     345             :     } else {
    +     346         180 :       a_max = fabs(a_max_horizontal / cos(inclinator));
    +     347             :     }
    +     348             : 
    +     349         180 :     if (inclinator > atan2(j_max_vertical, j_max_horizontal) || inclinator < -atan2(j_max_vertical, j_max_horizontal)) {
    +     350           0 :       j_max = fabs(j_max_vertical / sin(inclinator));
    +     351             :     } else {
    +     352         180 :       j_max = fabs(j_max_horizontal / cos(inclinator));
    +     353             :     }
    +     354             : 
    +     355         180 :     if (i >= 1) {
    +     356             : 
    +     357         159 :       Eigen::VectorXd pre4d;
    +     358             : 
    +     359         159 :       vertices[i - 1].getConstraint(derivative_order::POSITION, &pre4d);
    +     360             : 
    +     361         159 :       Eigen::Vector3d pre = pre4d.head(3);
    +     362             : 
    +     363         159 :       Eigen::Vector3d vec1 = start - pre;
    +     364         159 :       Eigen::Vector3d vec2 = end - start;
    +     365             : 
    +     366         159 :       vec1.normalize();
    +     367         159 :       vec2.normalize();
    +     368             : 
    +     369         159 :       double scalar = vec1.dot(vec2) < 0 ? 0.0 : vec1.dot(vec2);
    +     370             : 
    +     371         159 :       acc_1_coeff = (1 - scalar);
    +     372             : 
    +     373         159 :       acceleration_time_1 = acc_1_coeff * ((v_max / a_max) + (a_max / j_max));
    +     374             : 
    +     375         159 :       jerk_time_1 = acc_1_coeff * (2 * (a_max / j_max));
    +     376             :     }
    +     377             : 
    +     378             :     // the first vertex
    +     379         180 :     if (i == 0) {
    +     380          21 :       acc_1_coeff         = 1.0;
    +     381          21 :       acceleration_time_1 = (v_max / a_max) + (a_max / j_max);
    +     382          21 :       jerk_time_1         = (2 * (a_max / j_max));
    +     383             :     }
    +     384             : 
    +     385             :     // last vertex
    +     386         180 :     if (i == vertices.size() - 2) {
    +     387          21 :       acc_2_coeff         = 1.0;
    +     388          21 :       acceleration_time_2 = (v_max / a_max) + (a_max / j_max);
    +     389          21 :       jerk_time_2         = (2 * (a_max / j_max));
    +     390             :     }
    +     391             : 
    +     392             :     // a vertex
    +     393         180 :     if (i < vertices.size() - 2) {
    +     394             : 
    +     395         159 :       Eigen::VectorXd post4d;
    +     396             : 
    +     397         159 :       vertices[i + 2].getConstraint(derivative_order::POSITION, &post4d);
    +     398             : 
    +     399         159 :       Eigen::Vector3d post = post4d.head(3);
    +     400             : 
    +     401         159 :       Eigen::Vector3d vec1 = end - start;
    +     402         159 :       Eigen::Vector3d vec2 = post - end;
    +     403             : 
    +     404         159 :       vec1.normalize();
    +     405         159 :       vec2.normalize();
    +     406             : 
    +     407         159 :       double scalar = vec1.dot(vec2) < 0 ? 0.0 : vec1.dot(vec2);
    +     408             : 
    +     409         159 :       acc_2_coeff = (1 - scalar);
    +     410             : 
    +     411         159 :       acceleration_time_2 = acc_2_coeff * ((v_max / a_max) + (a_max / j_max));
    +     412             : 
    +     413         159 :       jerk_time_2 = acc_2_coeff * (2 * (a_max / j_max));
    +     414             :     }
    +     415             : 
    +     416         180 :     if (acceleration_time_1 > sqrt(2 * distance / a_max)) {
    +     417          18 :       acceleration_time_1 = sqrt(2 * distance / a_max);
    +     418             :     }
    +     419             : 
    +     420         180 :     if (jerk_time_1 > sqrt(2 * v_max / j_max)) {
    +     421           0 :       jerk_time_1 = sqrt(2 * v_max / j_max);
    +     422             :     }
    +     423             : 
    +     424         180 :     if (acceleration_time_2 > sqrt(2 * distance / a_max)) {
    +     425          20 :       acceleration_time_2 = sqrt(2 * distance / a_max);
    +     426             :     }
    +     427             : 
    +     428         180 :     if (jerk_time_2 > sqrt(2 * v_max / j_max)) {
    +     429           0 :       jerk_time_2 = sqrt(2 * v_max / j_max);
    +     430             :     }
    +     431             : 
    +     432             :     double max_velocity_time;
    +     433             : 
    +     434         180 :     const double distance_due_acceleration = a_max * pow(acceleration_time_1, 2) + a_max * pow(acceleration_time_2, 2);
    +     435             : 
    +     436         180 :     if (distance > distance_due_acceleration) {
    +     437          79 :       max_velocity_time = ((distance - distance_due_acceleration) / v_max);
    +     438             :     } else {
    +     439         101 :       max_velocity_time = (distance_due_acceleration / v_max);
    +     440             :     }
    +     441             : 
    +     442         180 :     max_velocity_time = ((distance) / v_max);
    +     443             : 
    +     444             :     /* double t = max_velocity_time + acceleration_time_1 + acceleration_time_2 + jerk_time_1 + jerk_time_2; */
    +     445         180 :     double t = max_velocity_time + acceleration_time_1 + acceleration_time_2;
    +     446             : 
    +     447             :     /* printf("segment %d, [%.2f %.2f %.2f] - > [%.2f %.2f %.2f] = %.2f\n", i, start(0), start(1), start(2), end(0), end(1), end(2), distance); */
    +     448             :     /* printf("segment %d time %.2f, distance %.2f, %.2f, %.2f, %.2f, vmax: %.2f, amax: %.2f, jmax: %.2f\n", i, t, distance, max_velocity_time, */
    +     449             :     /*        acceleration_time_1, acceleration_time_2, v_max, a_max, j_max); */
    +     450             : 
    +     451         180 :     if (t < 0.01) {
    +     452           0 :       t = 0.01;
    +     453             :     }
    +     454             : 
    +     455             :     // | ------------- check the heading rotation time ------------ |
    +     456             : 
    +     457         180 :     double angular_distance = fabs(mrs_lib::geometry::radians::dist(start_hdg, end_hdg));
    +     458             : 
    +     459         180 :     double hdg_velocity_time     = 0;
    +     460         180 :     double hdg_acceleration_time = 0;
    +     461             : 
    +     462         180 :     if (heading_speed_max < std::numeric_limits<float>::max() && heading_acc_max < std::numeric_limits<float>::max()) {
    +     463             : 
    +     464         180 :       if (((angular_distance - (2 * (heading_speed_max * heading_speed_max) / heading_acc_max)) / heading_speed_max) < 0) {
    +     465         178 :         hdg_velocity_time = ((angular_distance) / heading_speed_max);
    +     466             :       } else {
    +     467           2 :         hdg_velocity_time = ((angular_distance - (2 * (heading_speed_max * heading_speed_max) / heading_acc_max)) / heading_speed_max);
    +     468             :       }
    +     469             : 
    +     470         180 :       if (angular_distance > M_PI / 4) {
    +     471          42 :         hdg_acceleration_time = 2 * (heading_speed_max / heading_acc_max);
    +     472             :       }
    +     473             :     }
    +     474             : 
    +     475             :     // what will take longer? to fix the lateral or the heading
    +     476         180 :     double heading_fix_time = 1.5 * (hdg_velocity_time + hdg_acceleration_time);
    +     477             : 
    +     478         180 :     if (heading_fix_time > t) {
    +     479           0 :       t = heading_fix_time;
    +     480             :     }
    +     481             : 
    +     482         180 :     segment_times.push_back(t);
    +     483             :   }
    +     484          21 :   return segment_times;
    +     485             : }
    +     486             : 
    +     487             : //}
    +     488             : 
    +     489             : /* estimateSegmentTimesEuclidean() //{ */
    +     490             : 
    +     491          21 : std::vector<double> estimateSegmentTimesEuclidean(const Vertex::Vector& vertices, const double v_max_horizontal, const double v_max_vertical,
    +     492             :                                                   const double a_max_horizontal, const double a_max_vertical, const double j_max_horizontal,
    +     493             :                                                   const double j_max_vertical, const double heading_speed_max, const double heading_acc_max) {
    +     494             : 
    +     495          21 :   double v_max = std::min(v_max_horizontal, v_max_vertical);
    +     496             : 
    +     497          21 :   CHECK_GE(vertices.size(), 2);
    +     498          21 :   std::vector<double> segment_times;
    +     499          21 :   segment_times.reserve(vertices.size() - 1);
    +     500             : 
    +     501             :   // for each vertex in the path
    +     502         201 :   for (size_t i = 0; i < vertices.size() - 1; ++i) {
    +     503             : 
    +     504         360 :     Eigen::VectorXd start4d, end4d;
    +     505             : 
    +     506         180 :     vertices[i].getConstraint(derivative_order::POSITION, &start4d);
    +     507         180 :     vertices[i + 1].getConstraint(derivative_order::POSITION, &end4d);
    +     508             : 
    +     509         180 :     Eigen::Vector3d start = start4d.head(3);
    +     510         180 :     Eigen::Vector3d end   = end4d.head(3);
    +     511             : 
    +     512         180 :     double inclinator = atan2(end(2) - start(2), sqrt(pow(end(0) - start(0), 2) + pow(end(1) - start(1), 2)));
    +     513             : 
    +     514             :     double v_max;
    +     515             : 
    +     516         180 :     if (inclinator > atan2(v_max_vertical, v_max_horizontal) || inclinator < -atan2(v_max_vertical, v_max_horizontal)) {
    +     517           0 :       v_max = fabs(v_max_vertical / sin(inclinator));
    +     518             :     } else {
    +     519         180 :       v_max = fabs(v_max_horizontal / cos(inclinator));
    +     520             :     }
    +     521             : 
    +     522         180 :     double start_hdg = start4d(3);
    +     523         180 :     double end_hdg   = end4d(3);
    +     524             : 
    +     525         180 :     double distance = (end - start).norm();
    +     526             : 
    +     527         180 :     double t = distance / v_max;
    +     528             : 
    +     529         180 :     if (t < 0.01) {
    +     530           0 :       t = 0.01;
    +     531             :     }
    +     532             : 
    +     533             :     // | ------------- check the heading rotation time ------------ |
    +     534             : 
    +     535             : 
    +     536         180 :     double angular_distance = fabs(mrs_lib::geometry::radians::dist(start_hdg, end_hdg));
    +     537             : 
    +     538         180 :     double hdg_velocity_time     = 0;
    +     539         180 :     double hdg_acceleration_time = 0;
    +     540             : 
    +     541         180 :     if (heading_speed_max < std::numeric_limits<float>::max() && heading_acc_max < std::numeric_limits<float>::max()) {
    +     542             : 
    +     543         180 :       if (((angular_distance - ((heading_speed_max * heading_speed_max) / heading_acc_max)) / heading_speed_max) < 0) {
    +     544         140 :         hdg_velocity_time = ((angular_distance) / heading_speed_max);
    +     545             :       } else {
    +     546          40 :         hdg_velocity_time = ((angular_distance - ((heading_speed_max * heading_speed_max) / heading_acc_max)) / heading_speed_max);
    +     547             :       }
    +     548             : 
    +     549         180 :       if (angular_distance > M_PI / 4) {
    +     550          42 :         hdg_acceleration_time = 2 * (heading_speed_max / heading_acc_max);
    +     551             :       }
    +     552             :     }
    +     553             : 
    +     554             :     // what will take longer? to fix the lateral or the heading
    +     555         180 :     double heading_fix_time = 1.5 * (hdg_velocity_time + hdg_acceleration_time);
    +     556             : 
    +     557         180 :     if (heading_fix_time > t) {
    +     558          22 :       t = heading_fix_time;
    +     559             :     }
    +     560             : 
    +     561         180 :     segment_times.push_back(t);
    +     562             :   }
    +     563             : 
    +     564          21 :   return segment_times;
    +     565             : }
    +     566             : 
    +     567             : //}
    +     568             : 
    +     569             : /* computeTimeVelocityRamp() //{ */
    +     570             : 
    +     571           0 : double computeTimeVelocityRamp(const Eigen::VectorXd& start, const Eigen::VectorXd& goal, double v_max, double a_max) {
    +     572             : 
    +     573           0 :   const double distance = (start - goal).norm();
    +     574             :   // Time to accelerate or decelerate to or from maximum velocity:
    +     575           0 :   const double acc_time = v_max / a_max;
    +     576             :   // Distance covered during complete acceleration or decelerate:
    +     577           0 :   const double acc_distance = 0.5 * v_max * acc_time;
    +     578             :   // Compute total segment time:
    +     579           0 :   if (distance < 2.0 * acc_distance) {
    +     580             :     // Case 1: Distance too small to accelerate to maximum velocity.
    +     581           0 :     return 2.0 * std::sqrt(distance / a_max);
    +     582             :   } else {
    +     583             :     // Case 2: Distance long enough to accelerate to maximum velocity.
    +     584           0 :     return 2.0 * acc_time + (distance - 2.0 * acc_distance) / v_max;
    +     585             :   }
    +     586             : }
    +     587             : 
    +     588             : //}
    +     589             : 
    +     590             : }  // namespace eth_trajectory_generation
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    Filename Sort by nameLine Coverage ( show details ) Sort by line coverageFunctions Sort by function coverage
    mrs_trajectory_generation.cpp +
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    Generated by: LCOV version 1.14
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    + + + diff --git a/mrs_uav_trajectory_generation/src/mrs_trajectory_generation.cpp.func-sort-c.html b/mrs_uav_trajectory_generation/src/mrs_trajectory_generation.cpp.func-sort-c.html new file mode 100644 index 0000000000..e845fa5729 --- /dev/null +++ b/mrs_uav_trajectory_generation/src/mrs_trajectory_generation.cpp.func-sort-c.html @@ -0,0 +1,168 @@ + + + + + + + LCOV - MRS UAV System - Test coverage report - mrs_uav_trajectory_generation/src/mrs_trajectory_generation.cpp - functions + + + + + + + + + + + + + + +
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    Current view:top level - mrs_uav_trajectory_generation/src - mrs_trajectory_generation.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:751109568.6 %
    Date:2024-04-17 23:52:03Functions:2222100.0 %
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    Function Name Sort by function nameHit count Sort by hit count
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::callbackPath(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>)1
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::callbackGetPathSrv(mrs_msgs::GetPathSrvRequest_<std::allocator<void> >&, mrs_msgs::GetPathSrvResponse_<std::allocator<void> >&)2
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::callbackPathSrv(mrs_msgs::PathSrvRequest_<std::allocator<void> >&, mrs_msgs::PathSrvResponse_<std::allocator<void> >&)3
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::trajectorySrv(mrs_msgs::TrajectoryReference_<std::allocator<void> > const&)4
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::transformPath(mrs_msgs::Path_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)6
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::findTrajectoryFallback(std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&, double const&, bool const&)6
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::getTrajectoryReference(std::vector<eth_mav_msgs::EigenTrajectoryPoint, Eigen::aligned_allocator<eth_mav_msgs::EigenTrajectoryPoint> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&, double const&)6
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::preprocessPath(std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&)11
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::prepareInitialCondition(ros::Time)11
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::optimize[abi:cxx11](std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&, std_msgs::Header_<std::allocator<void> > const&, bool, bool)11
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::findTrajectory(std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&, double const&, bool const&)15
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::findTrajectoryAsync(std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&, double const&, bool const&)15
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::timeLeft()15
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::validateTrajectorySpatial(std::vector<eth_mav_msgs::EigenTrajectoryPoint, Eigen::aligned_allocator<eth_mav_msgs::EigenTrajectoryPoint> > const&, std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&)16
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::checkNaN(Waypoint_t const&)24
    (anonymous namespace)::ProxyExec0::ProxyExec0()91
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::callbackDrs(mrs_uav_trajectory_generation::drsConfig&, unsigned int)91
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::onInit()91
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::interpolatePoint(Waypoint_t const&, Waypoint_t const&, double const&)895
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::distFromSegment(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)4202
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::overtime()9704
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::callbackUavState(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)154969
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    LCOV - code coverage report
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    Current view:top level - mrs_uav_trajectory_generation/src - mrs_trajectory_generation.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:751109568.6 %
    Date:2024-04-17 23:52:03Functions:2222100.0 %
    Legend: Lines: + hit + not hit +
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    Function Name Sort by function nameHit count Sort by hit count
    (anonymous namespace)::ProxyExec0::ProxyExec0()91
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::callbackDrs(mrs_uav_trajectory_generation::drsConfig&, unsigned int)91
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::callbackPath(boost::shared_ptr<mrs_msgs::Path_<std::allocator<void> > const>)1
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::trajectorySrv(mrs_msgs::TrajectoryReference_<std::allocator<void> > const&)4
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::transformPath(mrs_msgs::Path_<std::allocator<void> > const&, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)6
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::findTrajectory(std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&, double const&, bool const&)15
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::preprocessPath(std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&)11
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::callbackPathSrv(mrs_msgs::PathSrvRequest_<std::allocator<void> >&, mrs_msgs::PathSrvResponse_<std::allocator<void> >&)3
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::distFromSegment(Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&, Eigen::Matrix<double, 3, 1, 0, 3, 1> const&)4202
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::callbackUavState(boost::shared_ptr<mrs_msgs::UavState_<std::allocator<void> > const>)154969
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::interpolatePoint(Waypoint_t const&, Waypoint_t const&, double const&)895
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::callbackGetPathSrv(mrs_msgs::GetPathSrvRequest_<std::allocator<void> >&, mrs_msgs::GetPathSrvResponse_<std::allocator<void> >&)2
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::findTrajectoryAsync(std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&, double const&, bool const&)15
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::findTrajectoryFallback(std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&, double const&, bool const&)6
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::getTrajectoryReference(std::vector<eth_mav_msgs::EigenTrajectoryPoint, Eigen::aligned_allocator<eth_mav_msgs::EigenTrajectoryPoint> > const&, std::optional<mrs_msgs::TrackerCommand_<std::allocator<void> > > const&, double const&)6
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::prepareInitialCondition(ros::Time)11
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::validateTrajectorySpatial(std::vector<eth_mav_msgs::EigenTrajectoryPoint, Eigen::aligned_allocator<eth_mav_msgs::EigenTrajectoryPoint> > const&, std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&)16
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::onInit()91
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::checkNaN(Waypoint_t const&)24
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::optimize[abi:cxx11](std::vector<Waypoint_t, std::allocator<Waypoint_t> > const&, std_msgs::Header_<std::allocator<void> > const&, bool, bool)11
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::overtime()9704
    mrs_uav_trajectory_generation::MrsTrajectoryGeneration::timeLeft()15
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    Current view:top level - mrs_uav_trajectory_generation/src - mrs_trajectory_generation.cpp (source / functions)HitTotalCoverage
    Test:MRS UAV System - Test coverage reportLines:751109568.6 %
    Date:2024-04-17 23:52:03Functions:2222100.0 %
    Legend: Lines: + hit + not hit +
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    +
              Line data    Source code
    +
    +       1             : /* includes //{ */
    +       2             : 
    +       3             : #include <ros/ros.h>
    +       4             : #include <ros/package.h>
    +       5             : #include <nodelet/nodelet.h>
    +       6             : 
    +       7             : #include <mrs_msgs/TrajectoryReferenceSrv.h>
    +       8             : #include <mrs_msgs/TrajectoryReference.h>
    +       9             : 
    +      10             : #include <std_srvs/Trigger.h>
    +      11             : 
    +      12             : #include <geometry_msgs/Vector3Stamped.h>
    +      13             : 
    +      14             : #include <mrs_msgs/DynamicsConstraints.h>
    +      15             : #include <mrs_msgs/Path.h>
    +      16             : #include <mrs_msgs/PathSrv.h>
    +      17             : #include <mrs_msgs/GetPathSrv.h>
    +      18             : #include <mrs_msgs/TrackerCommand.h>
    +      19             : #include <mrs_msgs/MpcPredictionFullState.h>
    +      20             : #include <mrs_msgs/Reference.h>
    +      21             : #include <mrs_msgs/ControlManagerDiagnostics.h>
    +      22             : #include <mrs_msgs/UavState.h>
    +      23             : 
    +      24             : #include <eth_trajectory_generation/impl/polynomial_optimization_nonlinear_impl.h>
    +      25             : #include <eth_trajectory_generation/trajectory.h>
    +      26             : #include <eth_trajectory_generation/trajectory_sampling.h>
    +      27             : 
    +      28             : #include <mrs_lib/param_loader.h>
    +      29             : #include <mrs_lib/geometry/cyclic.h>
    +      30             : #include <mrs_lib/geometry/misc.h>
    +      31             : #include <mrs_lib/mutex.h>
    +      32             : #include <mrs_lib/batch_visualizer.h>
    +      33             : #include <mrs_lib/transformer.h>
    +      34             : #include <mrs_lib/utils.h>
    +      35             : #include <mrs_lib/scope_timer.h>
    +      36             : #include <mrs_lib/attitude_converter.h>
    +      37             : #include <mrs_lib/publisher_handler.h>
    +      38             : #include <mrs_lib/subscribe_handler.h>
    +      39             : 
    +      40             : #include <dynamic_reconfigure/server.h>
    +      41             : #include <mrs_uav_trajectory_generation/drsConfig.h>
    +      42             : 
    +      43             : #include <future>
    +      44             : 
    +      45             : //}
    +      46             : 
    +      47             : /* using //{ */
    +      48             : 
    +      49             : using vec2_t = mrs_lib::geometry::vec_t<2>;
    +      50             : using vec3_t = mrs_lib::geometry::vec_t<3>;
    +      51             : using mat3_t = Eigen::Matrix3Xd;
    +      52             : 
    +      53             : using radians  = mrs_lib::geometry::radians;
    +      54             : using sradians = mrs_lib::geometry::sradians;
    +      55             : 
    +      56             : //}
    +      57             : 
    +      58             : /* defines //{ */
    +      59             : 
    +      60             : #define FUTURIZATION_EXEC_TIME_FACTOR 0.5        // [0, 1]
    +      61             : #define FUTURIZATION_FIRST_WAYPOINT_FACTOR 0.50  // [0, 1]
    +      62             : #define OVERTIME_SAFETY_FACTOR 0.95              // [0, 1]
    +      63             : #define OVERTIME_SAFETY_OFFSET 0.01              // [s]
    +      64             : #define NLOPT_EXEC_TIME_FACTOR 0.95              // [0, 1]
    +      65             : 
    +      66             : typedef struct
    +      67             : {
    +      68             :   Eigen::Vector4d coords;
    +      69             :   bool            stop_at;
    +      70             : } Waypoint_t;
    +      71             : 
    +      72             : //}
    +      73             : 
    +      74             : namespace mrs_uav_trajectory_generation
    +      75             : {
    +      76             : 
    +      77             : /* class MrsTrajectoryGeneration //{ */
    +      78             : class MrsTrajectoryGeneration : public nodelet::Nodelet {
    +      79             : 
    +      80             : public:
    +      81             :   virtual void onInit();
    +      82             : 
    +      83             : private:
    +      84             :   ros::NodeHandle nh_;
    +      85             : 
    +      86             :   bool is_initialized_ = false;
    +      87             : 
    +      88             :   // | ----------------------- parameters ----------------------- |
    +      89             : 
    +      90             :   double _sampling_dt_;
    +      91             : 
    +      92             :   double _max_trajectory_len_factor_;
    +      93             :   double _min_trajectory_len_factor_;
    +      94             : 
    +      95             :   int _n_attempts_;
    +      96             : 
    +      97             :   double _min_waypoint_distance_;
    +      98             : 
    +      99             :   bool   _fallback_sampling_enabled_;
    +     100             :   double _fallback_sampling_speed_factor_;
    +     101             :   double _fallback_sampling_accel_factor_;
    +     102             :   double _fallback_sampling_stopping_time_;
    +     103             :   bool   _fallback_sampling_first_waypoint_additional_stop_;
    +     104             : 
    +     105             :   std::string _uav_name_;
    +     106             : 
    +     107             :   bool   _trajectory_max_segment_deviation_enabled_;
    +     108             :   double trajectory_max_segment_deviation_;
    +     109             :   int    _trajectory_max_segment_deviation_max_iterations_;
    +     110             : 
    +     111             :   bool   _path_straightener_enabled_;
    +     112             :   double _path_straightener_max_deviation_;
    +     113             :   double _path_straightener_max_hdg_deviation_;
    +     114             : 
    +     115             :   // | -------- variable parameters (come with the path) -------- |
    +     116             : 
    +     117             :   std::string frame_id_;
    +     118             :   bool        fly_now_                              = false;
    +     119             :   bool        use_heading_                          = false;
    +     120             :   bool        stop_at_waypoints_                    = false;
    +     121             :   bool        override_constraints_                 = false;
    +     122             :   bool        loop_                                 = false;
    +     123             :   double      override_max_velocity_horizontal_     = 0.0;
    +     124             :   double      override_max_velocity_vertical_       = 0.0;
    +     125             :   double      override_max_acceleration_horizontal_ = 0.0;
    +     126             :   double      override_max_acceleration_vertical_   = 0.0;
    +     127             :   double      override_max_jerk_horizontal_         = 0.0;
    +     128             :   double      override_max_jerk_vertical_           = 0.0;
    +     129             : 
    +     130             :   // | -------------- variable parameters (deduced) ------------- |
    +     131             : 
    +     132             :   double     max_execution_time_ = 0;
    +     133             :   std::mutex mutex_max_execution_time_;
    +     134             : 
    +     135             :   bool max_deviation_first_segment_;
    +     136             : 
    +     137             :   std::atomic<bool> dont_prepend_initial_condition_ = false;
    +     138             : 
    +     139             :   // | -------------------- the transformer  -------------------- |
    +     140             : 
    +     141             :   std::shared_ptr<mrs_lib::Transformer> transformer_;
    +     142             : 
    +     143             :   // | ------------------- scope timer logger ------------------- |
    +     144             : 
    +     145             :   bool                                       scope_timer_enabled_ = false;
    +     146             :   std::shared_ptr<mrs_lib::ScopeTimerLogger> scope_timer_logger_;
    +     147             : 
    +     148             :   // service client for input
    +     149             :   bool               callbackPathSrv(mrs_msgs::PathSrv::Request& req, mrs_msgs::PathSrv::Response& res);
    +     150             :   ros::ServiceServer service_server_path_;
    +     151             : 
    +     152             :   // service client for returning result to the user
    +     153             :   bool               callbackGetPathSrv(mrs_msgs::GetPathSrv::Request& req, mrs_msgs::GetPathSrv::Response& res);
    +     154             :   ros::ServiceServer service_server_get_path_;
    +     155             : 
    +     156             :   void                                      callbackPath(const mrs_msgs::Path::ConstPtr msg);
    +     157             :   mrs_lib::SubscribeHandler<mrs_msgs::Path> sh_path_;
    +     158             : 
    +     159             :   mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand>      sh_tracker_cmd_;
    +     160             :   mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints> sh_constraints_;
    +     161             : 
    +     162             :   void                                          callbackUavState(const mrs_msgs::UavState::ConstPtr msg);
    +     163             :   mrs_lib::SubscribeHandler<mrs_msgs::UavState> sh_uav_state_;
    +     164             : 
    +     165             :   mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics> sh_control_manager_diag_;
    +     166             : 
    +     167             :   // service client for publishing trajectory out
    +     168             :   ros::ServiceClient service_client_trajectory_reference_;
    +     169             : 
    +     170             :   // solve the whole problem
    +     171             :   std::tuple<bool, std::string, mrs_msgs::TrajectoryReference> optimize(const std::vector<Waypoint_t>& waypoints_in, const std_msgs::Header& waypoints_stamp,
    +     172             :                                                                         bool fallback_sampling, const bool relax_heading);
    +     173             : 
    +     174             :   std::tuple<std::optional<mrs_msgs::TrackerCommand>, bool, int> prepareInitialCondition(const ros::Time path_time);
    +     175             : 
    +     176             :   // batch vizualizer
    +     177             :   mrs_lib::BatchVisualizer bw_original_;
    +     178             :   mrs_lib::BatchVisualizer bw_final_;
    +     179             : 
    +     180             :   // transforming TrackerCommand
    +     181             :   std::optional<mrs_msgs::Path> transformPath(const mrs_msgs::Path& path, const std::string& target_frame);
    +     182             : 
    +     183             :   // | ------------------ trajectory validation ----------------- |
    +     184             : 
    +     185             :   /**
    +     186             :    * @brief validates samples of a trajectory agains a path of waypoints
    +     187             :    *
    +     188             :    * @param trajectory
    +     189             :    * @param segments
    +     190             :    *
    +     191             :    * @return <success, traj_fail_idx, path_fail_segment>
    +     192             :    */
    +     193             :   std::tuple<bool, int, std::vector<bool>, double> validateTrajectorySpatial(const eth_mav_msgs::EigenTrajectoryPoint::Vector& trajectory,
    +     194             :                                                                              const std::vector<Waypoint_t>&                    waypoints);
    +     195             : 
    +     196             :   std::optional<eth_mav_msgs::EigenTrajectoryPoint::Vector> findTrajectory(const std::vector<Waypoint_t>&                 waypoints,
    +     197             :                                                                            const std::optional<mrs_msgs::TrackerCommand>& initial_state,
    +     198             :                                                                            const double& sampling_dt, const bool& relax_heading);
    +     199             : 
    +     200             :   std::optional<eth_mav_msgs::EigenTrajectoryPoint::Vector> findTrajectoryFallback(const std::vector<Waypoint_t>& waypoints, const double& sampling_dt,
    +     201             :                                                                                    const bool& relax_heading);
    +     202             : 
    +     203             :   std::future<std::optional<eth_mav_msgs::EigenTrajectoryPoint::Vector>> future_trajectory_result_;
    +     204             :   std::atomic<bool>                                                      running_async_planning_ = false;
    +     205             : 
    +     206             :   std::optional<eth_mav_msgs::EigenTrajectoryPoint::Vector> findTrajectoryAsync(const std::vector<Waypoint_t>&                 waypoints,
    +     207             :                                                                                 const std::optional<mrs_msgs::TrackerCommand>& initial_state,
    +     208             :                                                                                 const double& sampling_dt, const bool& relax_heading);
    +     209             : 
    +     210             :   std::vector<Waypoint_t> preprocessPath(const std::vector<Waypoint_t>& waypoints_in);
    +     211             : 
    +     212             :   mrs_msgs::TrajectoryReference getTrajectoryReference(const eth_mav_msgs::EigenTrajectoryPoint::Vector& trajectory,
    +     213             :                                                        const std::optional<mrs_msgs::TrackerCommand>& initial_condition, const double& sampling_dt);
    +     214             : 
    +     215             :   Waypoint_t interpolatePoint(const Waypoint_t& a, const Waypoint_t& b, const double& coeff);
    +     216             : 
    +     217             :   bool checkNaN(const Waypoint_t& a);
    +     218             : 
    +     219             :   double distFromSegment(const vec3_t& point, const vec3_t& seg1, const vec3_t& seg2);
    +     220             : 
    +     221             :   bool trajectorySrv(const mrs_msgs::TrajectoryReference& msg);
    +     222             : 
    +     223             :   // | --------------- dynamic reconfigure server --------------- |
    +     224             : 
    +     225             :   boost::recursive_mutex                           mutex_drs_;
    +     226             :   typedef mrs_uav_trajectory_generation::drsConfig DrsParams_t;
    +     227             :   typedef dynamic_reconfigure::Server<DrsParams_t> Drs_t;
    +     228             :   boost::shared_ptr<Drs_t>                         drs_;
    +     229             :   void                                             callbackDrs(mrs_uav_trajectory_generation::drsConfig& params, uint32_t level);
    +     230             :   DrsParams_t                                      params_;
    +     231             :   std::mutex                                       mutex_params_;
    +     232             : 
    +     233             :   // | ------------ Republisher for the desired path ------------ |
    +     234             : 
    +     235             :   mrs_lib::PublisherHandler<mrs_msgs::Path> ph_original_path_;
    +     236             : 
    +     237             :   // | ------------- measuring the time of execution ------------ |
    +     238             : 
    +     239             :   ros::Time  start_time_total_;
    +     240             :   std::mutex mutex_start_time_total_;
    +     241             :   bool       overtime(void);
    +     242             :   double     timeLeft(void);
    +     243             : };
    +     244             : 
    +     245             : //}
    +     246             : 
    +     247             : /* onInit() //{ */
    +     248             : 
    +     249          91 : void MrsTrajectoryGeneration::onInit() {
    +     250             : 
    +     251             :   /* obtain node handle */
    +     252          91 :   nh_ = nodelet::Nodelet::getMTPrivateNodeHandle();
    +     253             : 
    +     254             :   /* waits for the ROS to publish clock */
    +     255          91 :   ros::Time::waitForValid();
    +     256             : 
    +     257             :   // | ----------------------- publishers ----------------------- |
    +     258             : 
    +     259          91 :   ph_original_path_ = mrs_lib::PublisherHandler<mrs_msgs::Path>(nh_, "original_path_out", 1);
    +     260             : 
    +     261             :   // | ----------------------- subscribers ---------------------- |
    +     262             : 
    +     263         182 :   mrs_lib::SubscribeHandlerOptions shopts;
    +     264          91 :   shopts.nh                 = nh_;
    +     265          91 :   shopts.node_name          = "TrajectoryGeneration";
    +     266          91 :   shopts.no_message_timeout = mrs_lib::no_timeout;
    +     267          91 :   shopts.threadsafe         = true;
    +     268          91 :   shopts.autostart          = true;
    +     269          91 :   shopts.queue_size         = 10;
    +     270          91 :   shopts.transport_hints    = ros::TransportHints().tcpNoDelay();
    +     271             : 
    +     272          91 :   sh_constraints_          = mrs_lib::SubscribeHandler<mrs_msgs::DynamicsConstraints>(shopts, "constraints_in");
    +     273          91 :   sh_tracker_cmd_          = mrs_lib::SubscribeHandler<mrs_msgs::TrackerCommand>(shopts, "tracker_cmd_in");
    +     274          91 :   sh_uav_state_            = mrs_lib::SubscribeHandler<mrs_msgs::UavState>(shopts, "uav_state_in", &MrsTrajectoryGeneration::callbackUavState, this);
    +     275          91 :   sh_control_manager_diag_ = mrs_lib::SubscribeHandler<mrs_msgs::ControlManagerDiagnostics>(shopts, "control_manager_diag_in");
    +     276             : 
    +     277          91 :   sh_path_ = mrs_lib::SubscribeHandler<mrs_msgs::Path>(shopts, "path_in", &MrsTrajectoryGeneration::callbackPath, this);
    +     278             : 
    +     279             :   // | --------------------- service servers -------------------- |
    +     280             : 
    +     281          91 :   service_server_path_ = nh_.advertiseService("path_in", &MrsTrajectoryGeneration::callbackPathSrv, this);
    +     282             : 
    +     283          91 :   service_server_get_path_ = nh_.advertiseService("get_path_in", &MrsTrajectoryGeneration::callbackGetPathSrv, this);
    +     284             : 
    +     285          91 :   service_client_trajectory_reference_ = nh_.serviceClient<mrs_msgs::TrajectoryReferenceSrv>("trajectory_reference_out");
    +     286             : 
    +     287             :   // | ----------------------- parameters ----------------------- |
    +     288             : 
    +     289         182 :   mrs_lib::ParamLoader param_loader(nh_, "MrsTrajectoryGeneration");
    +     290             : 
    +     291         182 :   std::string custom_config_path;
    +     292         182 :   std::string platform_config_path;
    +     293             : 
    +     294          91 :   param_loader.loadParam("custom_config", custom_config_path);
    +     295          91 :   param_loader.loadParam("platform_config", platform_config_path);
    +     296             : 
    +     297          91 :   if (custom_config_path != "") {
    +     298          91 :     param_loader.addYamlFile(custom_config_path);
    +     299             :   }
    +     300             : 
    +     301          91 :   if (platform_config_path != "") {
    +     302          91 :     param_loader.addYamlFile(platform_config_path);
    +     303             :   }
    +     304             : 
    +     305          91 :   param_loader.addYamlFileFromParam("private_config");
    +     306          91 :   param_loader.addYamlFileFromParam("public_config");
    +     307             : 
    +     308         182 :   const std::string yaml_prefix = "mrs_uav_trajectory_generation/";
    +     309             : 
    +     310          91 :   param_loader.loadParam("uav_name", _uav_name_);
    +     311             : 
    +     312          91 :   param_loader.loadParam(yaml_prefix + "sampling_dt", _sampling_dt_);
    +     313             : 
    +     314          91 :   param_loader.loadParam(yaml_prefix + "enforce_fallback_solver", params_.enforce_fallback_solver);
    +     315             : 
    +     316          91 :   param_loader.loadParam(yaml_prefix + "max_trajectory_len_factor", _max_trajectory_len_factor_);
    +     317          91 :   param_loader.loadParam(yaml_prefix + "min_trajectory_len_factor", _min_trajectory_len_factor_);
    +     318             : 
    +     319          91 :   param_loader.loadParam(yaml_prefix + "n_attempts", _n_attempts_);
    +     320          91 :   param_loader.loadParam(yaml_prefix + "fallback_sampling/enabled", _fallback_sampling_enabled_);
    +     321          91 :   param_loader.loadParam(yaml_prefix + "fallback_sampling/speed_factor", _fallback_sampling_speed_factor_);
    +     322          91 :   param_loader.loadParam(yaml_prefix + "fallback_sampling/accel_factor", _fallback_sampling_accel_factor_);
    +     323          91 :   param_loader.loadParam(yaml_prefix + "fallback_sampling/stopping_time", _fallback_sampling_stopping_time_);
    +     324          91 :   param_loader.loadParam(yaml_prefix + "fallback_sampling/first_waypoint_additional_stop", _fallback_sampling_first_waypoint_additional_stop_);
    +     325             : 
    +     326          91 :   param_loader.loadParam(yaml_prefix + "check_trajectory_deviation/enabled", _trajectory_max_segment_deviation_enabled_);
    +     327          91 :   param_loader.loadParam(yaml_prefix + "check_trajectory_deviation/max_deviation", params_.max_deviation);
    +     328          91 :   param_loader.loadParam(yaml_prefix + "check_trajectory_deviation/max_iterations", _trajectory_max_segment_deviation_max_iterations_);
    +     329             : 
    +     330          91 :   param_loader.loadParam(yaml_prefix + "path_straightener/enabled", _path_straightener_enabled_);
    +     331          91 :   param_loader.loadParam(yaml_prefix + "path_straightener/max_deviation", _path_straightener_max_deviation_);
    +     332          91 :   param_loader.loadParam(yaml_prefix + "path_straightener/max_hdg_deviation", _path_straightener_max_hdg_deviation_);
    +     333             : 
    +     334          91 :   param_loader.loadParam(yaml_prefix + "min_waypoint_distance", _min_waypoint_distance_);
    +     335             : 
    +     336             :   // | --------------------- tf transformer --------------------- |
    +     337             : 
    +     338          91 :   transformer_ = std::make_shared<mrs_lib::Transformer>(nh_, "TrajectoryGeneration");
    +     339          91 :   transformer_->setDefaultPrefix(_uav_name_);
    +     340          91 :   transformer_->retryLookupNewest(true);
    +     341             : 
    +     342             :   // | ------------------- scope timer logger ------------------- |
    +     343             : 
    +     344          91 :   param_loader.loadParam(yaml_prefix + "scope_timer/enabled", scope_timer_enabled_);
    +     345         273 :   const std::string scope_timer_log_filename = param_loader.loadParam2("scope_timer/log_filename", std::string(""));
    +     346          91 :   scope_timer_logger_                        = std::make_shared<mrs_lib::ScopeTimerLogger>(scope_timer_log_filename, scope_timer_enabled_);
    +     347             : 
    +     348             :   // | --------------------- service clients -------------------- |
    +     349             : 
    +     350          91 :   param_loader.loadParam(yaml_prefix + "time_penalty", params_.time_penalty);
    +     351          91 :   param_loader.loadParam(yaml_prefix + "soft_constraints_enabled", params_.soft_constraints_enabled);
    +     352          91 :   param_loader.loadParam(yaml_prefix + "soft_constraints_weight", params_.soft_constraints_weight);
    +     353          91 :   param_loader.loadParam(yaml_prefix + "time_allocation", params_.time_allocation);
    +     354          91 :   param_loader.loadParam(yaml_prefix + "equality_constraint_tolerance", params_.equality_constraint_tolerance);
    +     355          91 :   param_loader.loadParam(yaml_prefix + "inequality_constraint_tolerance", params_.inequality_constraint_tolerance);
    +     356          91 :   param_loader.loadParam(yaml_prefix + "max_iterations", params_.max_iterations);
    +     357          91 :   param_loader.loadParam(yaml_prefix + "derivative_to_optimize", params_.derivative_to_optimize);
    +     358             : 
    +     359          91 :   param_loader.loadParam(yaml_prefix + "max_time", params_.max_execution_time);
    +     360             : 
    +     361          91 :   max_execution_time_ = params_.max_execution_time;
    +     362             : 
    +     363          91 :   if (!param_loader.loadedSuccessfully()) {
    +     364           0 :     ROS_ERROR("[TrajectoryGeneration]: could not load all parameters!");
    +     365           0 :     ros::shutdown();
    +     366             :   }
    +     367             : 
    +     368             :   // | -------------------- batch visualizer -------------------- |
    +     369             : 
    +     370          91 :   bw_original_ = mrs_lib::BatchVisualizer(nh_, "markers/original", "");
    +     371             : 
    +     372          91 :   bw_original_.clearBuffers();
    +     373          91 :   bw_original_.clearVisuals();
    +     374             : 
    +     375          91 :   bw_final_ = mrs_lib::BatchVisualizer(nh_, "markers/final", "");
    +     376             : 
    +     377          91 :   bw_final_.clearBuffers();
    +     378          91 :   bw_final_.clearVisuals();
    +     379             : 
    +     380             :   // | --------------- dynamic reconfigure server --------------- |
    +     381             : 
    +     382          91 :   drs_.reset(new Drs_t(mutex_drs_, nh_));
    +     383          91 :   drs_->updateConfig(params_);
    +     384          91 :   Drs_t::CallbackType f = boost::bind(&MrsTrajectoryGeneration::callbackDrs, this, _1, _2);
    +     385          91 :   drs_->setCallback(f);
    +     386             : 
    +     387             :   // | --------------------- finish the init -------------------- |
    +     388             : 
    +     389          91 :   ROS_INFO_ONCE("[TrajectoryGeneration]: initialized");
    +     390             : 
    +     391          91 :   is_initialized_ = true;
    +     392          91 : }
    +     393             : 
    +     394             : //}
    +     395             : 
    +     396             : // | ---------------------- main routines --------------------- |
    +     397             : 
    +     398             : /*
    +     399             :  * 1. preprocessPath(): preprocessing the incoming path
    +     400             :  *    - throughs away too close waypoints
    +     401             :  *    - straightness path by neglecting waypoints close to segments
    +     402             :  * 2. optimize(): solves the whole problem including
    +     403             :  *    - subdivision for satisfying max deviation
    +     404             :  * 3. findTrajectory(): solves single instance by the ETH tool
    +     405             :  * 4. findTrajectoryFallback(): Baca's sampling for backup solution
    +     406             :  * 5. validateTrajectorySpatial(): checks for the spatial soundness of a trajectory vs. the original path
    +     407             :  */
    +     408             : 
    +     409             : /* preprocessPath() //{ */
    +     410             : 
    +     411          11 : std::vector<Waypoint_t> MrsTrajectoryGeneration::preprocessPath(const std::vector<Waypoint_t>& waypoints_in) {
    +     412             : 
    +     413          33 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("MrsTrajectoryGeneration::preprocessPath", scope_timer_logger_, scope_timer_enabled_);
    +     414             : 
    +     415          11 :   std::vector<Waypoint_t> waypoints;
    +     416             : 
    +     417          11 :   size_t last_added_idx = 0;  // in "waypoints_in"
    +     418             : 
    +     419          62 :   for (size_t i = 0; i < waypoints_in.size(); i++) {
    +     420             : 
    +     421          51 :     double x       = waypoints_in.at(i).coords[0];
    +     422          51 :     double y       = waypoints_in.at(i).coords[1];
    +     423          51 :     double z       = waypoints_in.at(i).coords[2];
    +     424          51 :     double heading = waypoints_in.at(i).coords[3];
    +     425             : 
    +     426          51 :     bw_original_.addPoint(vec3_t(x, y, z), 1.0, 0.0, 0.0, 1.0);
    +     427             : 
    +     428          51 :     if (_path_straightener_enabled_ && waypoints_in.size() >= 3 && i > 0 && i < (waypoints_in.size() - 1)) {
    +     429             : 
    +     430           0 :       vec3_t first(waypoints_in.at(last_added_idx).coords[0], waypoints_in.at(last_added_idx).coords[1], waypoints_in.at(last_added_idx).coords[2]);
    +     431           0 :       vec3_t last(waypoints_in.at(i + 1).coords[0], waypoints_in.at(i + 1).coords[1], waypoints_in.at(i + 1).coords[2]);
    +     432             : 
    +     433           0 :       double first_hdg = waypoints_in.at(last_added_idx).coords[3];
    +     434           0 :       double last_hdg  = waypoints_in.at(i + 1).coords[3];
    +     435             : 
    +     436           0 :       size_t next_point = last_added_idx + 1;
    +     437             : 
    +     438           0 :       bool segment_is_ok = true;
    +     439             : 
    +     440           0 :       for (size_t j = next_point; j < i + 1; j++) {
    +     441             : 
    +     442           0 :         vec3_t mid(waypoints_in.at(j).coords[0], waypoints_in.at(j).coords[1], waypoints_in.at(j).coords[2]);
    +     443           0 :         double mid_hdg = waypoints_in.at(j).coords[3];
    +     444             : 
    +     445           0 :         double dist_from_segment = distFromSegment(mid, first, last);
    +     446             : 
    +     447           0 :         if (dist_from_segment > _path_straightener_max_deviation_ || fabs(radians::diff(first_hdg, mid_hdg) > _path_straightener_max_hdg_deviation_) ||
    +     448           0 :             fabs(radians::diff(last_hdg, mid_hdg) > _path_straightener_max_hdg_deviation_)) {
    +     449           0 :           segment_is_ok = false;
    +     450           0 :           break;
    +     451             :         }
    +     452             :       }
    +     453             : 
    +     454           0 :       if (segment_is_ok) {
    +     455           0 :         continue;
    +     456             :       }
    +     457             :     }
    +     458             : 
    +     459          51 :     if (i > 0 && i < (waypoints_in.size() - 1)) {
    +     460             : 
    +     461          29 :       vec3_t first(waypoints_in.at(last_added_idx).coords[0], waypoints_in.at(last_added_idx).coords[1], waypoints_in.at(last_added_idx).coords[2]);
    +     462          29 :       vec3_t last(waypoints_in.at(i).coords[0], waypoints_in.at(i).coords[1], waypoints_in.at(i).coords[2]);
    +     463             : 
    +     464          29 :       if (mrs_lib::geometry::dist(first, last) < _min_waypoint_distance_) {
    +     465           0 :         ROS_INFO("[TrajectoryGeneration]: waypoint #%d too close (< %.3f m) to the previous one (#%d), throwing it away", int(i), _min_waypoint_distance_,
    +     466             :                  int(last_added_idx));
    +     467           0 :         continue;
    +     468             :       }
    +     469             :     }
    +     470             : 
    +     471          51 :     Waypoint_t wp;
    +     472          51 :     wp.coords  = Eigen::Vector4d(x, y, z, heading);
    +     473          51 :     wp.stop_at = waypoints_in.at(i).stop_at;
    +     474          51 :     waypoints.push_back(wp);
    +     475             : 
    +     476          51 :     last_added_idx = i;
    +     477             :   }
    +     478             : 
    +     479          22 :   return waypoints;
    +     480             : }
    +     481             : 
    +     482             : //}
    +     483             : 
    +     484             : /* prepareInitialCondition() //{ */
    +     485             : 
    +     486          11 : std::tuple<std::optional<mrs_msgs::TrackerCommand>, bool, int> MrsTrajectoryGeneration::prepareInitialCondition(const ros::Time path_time) {
    +     487             : 
    +     488          11 :   if (dont_prepend_initial_condition_) {
    +     489           0 :     return {{}, false, 0};
    +     490             :   }
    +     491             : 
    +     492          11 :   if (!sh_tracker_cmd_.hasMsg()) {
    +     493           8 :     return {{}, false, 0};
    +     494             :   }
    +     495             : 
    +     496          14 :   auto tracker_cmd = sh_tracker_cmd_.getMsg();
    +     497             : 
    +     498             :   // | ------------- prepare the initial conditions ------------- |
    +     499             : 
    +     500          14 :   mrs_msgs::TrackerCommand initial_condition;
    +     501             : 
    +     502           7 :   bool path_from_future = false;
    +     503             : 
    +     504             :   // positive = in the future
    +     505           7 :   double path_time_offset = 0;
    +     506             : 
    +     507           7 :   if (path_time != ros::Time(0)) {
    +     508           0 :     path_time_offset = (path_time - ros::Time::now()).toSec();
    +     509             :   }
    +     510             : 
    +     511           7 :   int path_sample_offset = 0;
    +     512             : 
    +     513             :   // if the desired path starts in the future, more than one MPC step ahead
    +     514           7 :   if (path_time_offset > 0.2) {
    +     515             : 
    +     516           0 :     ROS_INFO("[TrajectoryGeneration]: desired path is from the future by %.2f s", path_time_offset);
    +     517             : 
    +     518             :     // calculate the offset in samples in the predicted trajectory
    +     519             :     // 0.01 is subtracted for the first sample, which is smaller
    +     520             :     // +1 is added due to the first sample, which was subtarcted
    +     521           0 :     path_sample_offset = int(ceil((path_time_offset * FUTURIZATION_FIRST_WAYPOINT_FACTOR - 0.01) / 0.2)) + 1;
    +     522             : 
    +     523           0 :     if (path_sample_offset > (int(tracker_cmd->full_state_prediction.position.size()) - 1)) {
    +     524             : 
    +     525           0 :       ROS_ERROR("[TrajectoryGeneration]: can not extrapolate into the waypoints, using tracker_cmd instead");
    +     526           0 :       initial_condition = *tracker_cmd;
    +     527             : 
    +     528             :     } else {
    +     529             : 
    +     530             :       // copy the sample from the current prediction into TrackerCommand, so that we can easily transform it
    +     531           0 :       mrs_msgs::TrackerCommand full_state;
    +     532             : 
    +     533           0 :       full_state.header = tracker_cmd->full_state_prediction.header;
    +     534             : 
    +     535           0 :       full_state.position     = tracker_cmd->full_state_prediction.position[path_sample_offset];
    +     536           0 :       full_state.velocity     = tracker_cmd->full_state_prediction.velocity[path_sample_offset];
    +     537           0 :       full_state.acceleration = tracker_cmd->full_state_prediction.acceleration[path_sample_offset];
    +     538           0 :       full_state.jerk         = tracker_cmd->full_state_prediction.jerk[path_sample_offset];
    +     539             : 
    +     540           0 :       full_state.heading              = tracker_cmd->full_state_prediction.heading[path_sample_offset];
    +     541           0 :       full_state.heading_rate         = tracker_cmd->full_state_prediction.heading_rate[path_sample_offset];
    +     542           0 :       full_state.heading_acceleration = tracker_cmd->full_state_prediction.heading_acceleration[path_sample_offset];
    +     543           0 :       full_state.heading_jerk         = tracker_cmd->full_state_prediction.heading_jerk[path_sample_offset];
    +     544             : 
    +     545           0 :       ROS_INFO("[TrajectoryGeneration]: getting initial condition from the %d-th sample of the MPC prediction", path_sample_offset);
    +     546             : 
    +     547           0 :       initial_condition.header = full_state.header;
    +     548             : 
    +     549           0 :       initial_condition.position     = full_state.position;
    +     550           0 :       initial_condition.velocity     = full_state.velocity;
    +     551           0 :       initial_condition.acceleration = full_state.acceleration;
    +     552           0 :       initial_condition.jerk         = full_state.jerk;
    +     553             : 
    +     554           0 :       initial_condition.heading              = full_state.heading;
    +     555           0 :       initial_condition.heading_rate         = full_state.heading_rate;
    +     556           0 :       initial_condition.heading_acceleration = full_state.heading_acceleration;
    +     557           0 :       initial_condition.heading_jerk         = full_state.heading_jerk;
    +     558             : 
    +     559           0 :       path_from_future = true;
    +     560             :     }
    +     561             : 
    +     562             :   } else {
    +     563             : 
    +     564           7 :     ROS_INFO("[TrajectoryGeneration]: desired path is NOT from the future, using tracker_cmd as the initial condition");
    +     565             : 
    +     566           7 :     initial_condition = *tracker_cmd;
    +     567             :   }
    +     568             : 
    +     569           7 :   auto control_manager_diag = sh_control_manager_diag_.getMsg();
    +     570             : 
    +     571           7 :   if (path_time == ros::Time(0)) {
    +     572           7 :     if (!control_manager_diag->tracker_status.have_goal) {
    +     573           3 :       initial_condition.header.stamp = ros::Time(0);
    +     574             :     }
    +     575             :   }
    +     576             : 
    +     577           7 :   return {{initial_condition}, path_from_future, path_sample_offset};
    +     578             : }
    +     579             : 
    +     580             : //}
    +     581             : 
    +     582             : /* optimize() //{ */
    +     583             : 
    +     584          11 : std::tuple<bool, std::string, mrs_msgs::TrajectoryReference> MrsTrajectoryGeneration::optimize(const std::vector<Waypoint_t>& waypoints_in,
    +     585             :                                                                                                const std_msgs::Header&        waypoints_header,
    +     586             :                                                                                                const bool fallback_sampling, const bool relax_heading) {
    +     587             : 
    +     588          33 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("MrsTrajectoryGeneration::optimize", scope_timer_logger_, scope_timer_enabled_);
    +     589             : 
    +     590          11 :   ros::Time optimize_time_start = ros::Time::now();
    +     591             : 
    +     592             :   // | ---------------- reset the visual markers ---------------- |
    +     593             : 
    +     594          11 :   bw_original_.clearBuffers();
    +     595          11 :   bw_original_.clearVisuals();
    +     596          11 :   bw_final_.clearBuffers();
    +     597          11 :   bw_final_.clearVisuals();
    +     598             : 
    +     599          11 :   bw_original_.setParentFrame(transformer_->resolveFrame(frame_id_));
    +     600          11 :   bw_final_.setParentFrame(transformer_->resolveFrame(frame_id_));
    +     601             : 
    +     602          11 :   bw_original_.setPointsScale(0.4);
    +     603          11 :   bw_final_.setPointsScale(0.35);
    +     604             : 
    +     605             :   // empty path is invalid
    +     606          11 :   if (waypoints_in.size() == 0) {
    +     607           0 :     std::stringstream ss;
    +     608           0 :     ss << "the path is empty (before postprocessing)";
    +     609           0 :     ROS_ERROR_STREAM("[TrajectoryGeneration]: " << ss.str());
    +     610           0 :     return std::tuple(false, ss.str(), mrs_msgs::TrajectoryReference());
    +     611             :   }
    +     612             : 
    +     613          22 :   std::vector<Waypoint_t> waypoints_in_with_init = waypoints_in;
    +     614             : 
    +     615          11 :   double path_time_offset = (waypoints_header.stamp - ros::Time::now()).toSec();
    +     616             : 
    +     617          11 :   if (path_time_offset > 0.2 && waypoints_in_with_init.size() >= 2) {
    +     618           0 :     waypoints_in_with_init.erase(waypoints_in_with_init.begin());
    +     619             :   }
    +     620             : 
    +     621          22 :   auto [initial_condition, path_from_future, path_sample_offset] = prepareInitialCondition(waypoints_header.stamp);
    +     622             : 
    +     623             :   // prepend the initial condition
    +     624          11 :   if (initial_condition) {
    +     625             : 
    +     626           7 :     Waypoint_t initial_waypoint;
    +     627             :     initial_waypoint.coords =
    +     628           7 :         Eigen::Vector4d(initial_condition->position.x, initial_condition->position.y, initial_condition->position.z, initial_condition->heading);
    +     629           7 :     initial_waypoint.stop_at = false;
    +     630           7 :     waypoints_in_with_init.insert(waypoints_in_with_init.begin(), initial_waypoint);
    +     631             : 
    +     632             :   } else {
    +     633           4 :     if (!dont_prepend_initial_condition_) {
    +     634           4 :       fly_now_ = false;
    +     635             :     }
    +     636             :   }
    +     637             : 
    +     638          22 :   std::vector<Waypoint_t> waypoints = preprocessPath(waypoints_in_with_init);
    +     639             : 
    +     640          11 :   if (waypoints.size() <= 1) {
    +     641           0 :     std::stringstream ss;
    +     642           0 :     ss << "the path is empty (after postprocessing)";
    +     643           0 :     ROS_ERROR_STREAM("[TrajectoryGeneration]: " << ss.str());
    +     644           0 :     return std::tuple(false, ss.str(), mrs_msgs::TrajectoryReference());
    +     645             :   }
    +     646             : 
    +     647          11 :   bool              safe = false;
    +     648             :   int               traj_idx;
    +     649          22 :   std::vector<bool> segment_safeness;
    +     650          11 :   double            max_deviation = 0;
    +     651             : 
    +     652          22 :   eth_mav_msgs::EigenTrajectoryPoint::Vector trajectory;
    +     653             : 
    +     654          11 :   double sampling_dt = 0;
    +     655             : 
    +     656          11 :   if (path_from_future) {
    +     657           0 :     ROS_INFO("[TrajectoryGeneration]: changing dt = 0.2, cause the path is from the future");
    +     658           0 :     sampling_dt = 0.2;
    +     659             :   } else {
    +     660          11 :     sampling_dt = _sampling_dt_;
    +     661             :   }
    +     662             : 
    +     663          11 :   std::optional<eth_mav_msgs::EigenTrajectoryPoint::Vector> result;
    +     664             : 
    +     665          22 :   auto params = mrs_lib::get_mutexed(mutex_params_, params_);
    +     666             : 
    +     667          11 :   if (params.enforce_fallback_solver) {
    +     668           0 :     ROS_WARN("[TrajectoryGeneration]: fallback sampling enforced");
    +     669           0 :     result = findTrajectoryFallback(waypoints, sampling_dt, relax_heading);
    +     670          11 :   } else if (fallback_sampling) {
    +     671           0 :     ROS_WARN("[TrajectoryGeneration]: executing fallback sampling");
    +     672           0 :     result = findTrajectoryFallback(waypoints, sampling_dt, relax_heading);
    +     673          11 :   } else if (running_async_planning_) {
    +     674           5 :     ROS_WARN("[TrajectoryGeneration]: executing fallback sampling, the previous async task is still running");
    +     675           5 :     result = findTrajectoryFallback(waypoints, sampling_dt, relax_heading);
    +     676           6 :   } else if (overtime()) {
    +     677           1 :     ROS_WARN("[TrajectoryGeneration]: executing fallback sampling, we are running over time");
    +     678           1 :     result = findTrajectoryFallback(waypoints, sampling_dt, relax_heading);
    +     679             :   } else {
    +     680             : 
    +     681           5 :     result = findTrajectoryAsync(waypoints, initial_condition, sampling_dt, relax_heading);
    +     682             :   }
    +     683             : 
    +     684          11 :   if (result) {
    +     685          10 :     trajectory = result.value();
    +     686             :   } else {
    +     687           1 :     std::stringstream ss;
    +     688           1 :     ss << "failed to find trajectory";
    +     689           1 :     ROS_ERROR_STREAM("[TrajectoryGeneration]: " << ss.str());
    +     690           1 :     return std::tuple(false, ss.str(), mrs_msgs::TrajectoryReference());
    +     691             :   }
    +     692             : 
    +     693          16 :   for (int k = 0; k < _trajectory_max_segment_deviation_max_iterations_; k++) {
    +     694             : 
    +     695          16 :     ROS_DEBUG("[TrajectoryGeneration]: revalidation cycle #%d", k);
    +     696             : 
    +     697          16 :     std::tie(safe, traj_idx, segment_safeness, max_deviation) = validateTrajectorySpatial(trajectory, waypoints);
    +     698             : 
    +     699          16 :     if (_trajectory_max_segment_deviation_enabled_ && !safe) {
    +     700             : 
    +     701          10 :       ROS_DEBUG("[TrajectoryGeneration]: trajectory is not safe, max deviation %.3f m", max_deviation);
    +     702             : 
    +     703          10 :       std::vector<Waypoint_t>::iterator waypoint = waypoints.begin();
    +     704          10 :       std::vector<bool>::iterator       safeness = segment_safeness.begin();
    +     705             : 
    +     706         104 :       for (; waypoint < waypoints.end() - 1; waypoint++) {
    +     707             : 
    +     708          94 :         if (!(*safeness)) {
    +     709             : 
    +     710          46 :           if (waypoint > waypoints.begin() || max_deviation_first_segment_ || int(waypoints.size()) <= 2) {
    +     711          46 :             Waypoint_t midpoint2 = interpolatePoint(*waypoint, *(waypoint + 1), 0.5);
    +     712          46 :             waypoint             = waypoints.insert(waypoint + 1, midpoint2);
    +     713             :           }
    +     714             :         }
    +     715             : 
    +     716          94 :         safeness++;
    +     717             :       }
    +     718             : 
    +     719          10 :       if (params.enforce_fallback_solver) {
    +     720           0 :         ROS_WARN("[TrajectoryGeneration]: fallback sampling enforced");
    +     721           0 :         result = findTrajectoryFallback(waypoints, sampling_dt, relax_heading);
    +     722          10 :       } else if (fallback_sampling) {
    +     723           0 :         ROS_WARN("[TrajectoryGeneration]: executing fallback sampling");
    +     724           0 :         result = findTrajectoryFallback(waypoints, sampling_dt, relax_heading);
    +     725          10 :       } else if (running_async_planning_) {
    +     726           0 :         ROS_WARN("[TrajectoryGeneration]: executing fallback sampling, the previous async task is still running");
    +     727           0 :         result = findTrajectoryFallback(waypoints, sampling_dt, relax_heading);
    +     728          10 :       } else if (overtime()) {
    +     729           0 :         ROS_WARN("[TrajectoryGeneration]: executing fallback sampling, we are running over time");
    +     730           0 :         result = findTrajectoryFallback(waypoints, sampling_dt, relax_heading);
    +     731             :       } else {
    +     732          10 :         result = findTrajectoryAsync(waypoints, initial_condition, sampling_dt, relax_heading);
    +     733             :       }
    +     734             : 
    +     735          10 :       if (result) {
    +     736           6 :         trajectory = result.value();
    +     737             :       } else {
    +     738           4 :         std::stringstream ss;
    +     739           4 :         ss << "failed to find trajectory";
    +     740           4 :         ROS_WARN_STREAM("[TrajectoryGeneration]: " << ss.str());
    +     741           4 :         return std::tuple(false, ss.str(), mrs_msgs::TrajectoryReference());
    +     742           6 :       }
    +     743             : 
    +     744             :     } else {
    +     745           6 :       ROS_DEBUG("[TrajectoryGeneration]: trajectory is safe (%.2f)", max_deviation);
    +     746           6 :       safe = true;
    +     747           6 :       break;
    +     748             :     }
    +     749             :   }
    +     750             : 
    +     751           6 :   ROS_INFO("[TrajectoryGeneration]: final max trajectory-path deviation: %.2f m, total trajectory time: %.2fs ", max_deviation,
    +     752             :            trajectory.size() * sampling_dt);
    +     753             : 
    +     754             :   // prepare rviz markers
    +     755          34 :   for (int i = 0; i < int(waypoints.size()); i++) {
    +     756          28 :     bw_final_.addPoint(vec3_t(waypoints.at(i).coords[0], waypoints.at(i).coords[1], waypoints.at(i).coords[2]), 0.0, 1.0, 0.0, 1.0);
    +     757             :   }
    +     758             : 
    +     759          12 :   mrs_msgs::TrajectoryReference mrs_trajectory;
    +     760             : 
    +     761             :   // convert the optimized trajectory to mrs_msgs::TrajectoryReference
    +     762           6 :   mrs_trajectory = getTrajectoryReference(trajectory, initial_condition, sampling_dt);
    +     763             : 
    +     764             :   // insert part of the MPC prediction in the front of the generated trajectory to compensate for the future
    +     765           6 :   if (path_from_future) {
    +     766             : 
    +     767           0 :     auto current_prediction = sh_tracker_cmd_.getMsg()->full_state_prediction;
    +     768             : 
    +     769             :     // calculate the starting idx that we will use from the current_prediction
    +     770           0 :     double path_time_offset_2   = (ros::Time::now() - current_prediction.header.stamp).toSec();  // = how long did it take to optimize
    +     771           0 :     int    path_sample_offset_2 = int(floor((path_time_offset_2 - 0.01) / 0.2)) + 1;
    +     772             : 
    +     773             :     // if there is anything to insert
    +     774           0 :     if (path_sample_offset > path_sample_offset_2) {
    +     775             : 
    +     776           0 :       ROS_INFO("[TrajectoryGeneration]: inserting pre-trajectory from the prediction, idxs %d to %d", path_sample_offset_2, path_sample_offset);
    +     777             : 
    +     778           0 :       for (int i = path_sample_offset - 1; i >= 0; i--) {
    +     779             : 
    +     780           0 :         ROS_DEBUG("[TrajectoryGeneration]: inserting idx %d", i);
    +     781             : 
    +     782           0 :         mrs_msgs::ReferenceStamped reference;
    +     783             : 
    +     784           0 :         reference.header = current_prediction.header;
    +     785             : 
    +     786           0 :         reference.reference.heading  = current_prediction.heading[i];
    +     787           0 :         reference.reference.position = current_prediction.position[i];
    +     788             : 
    +     789           0 :         auto res = transformer_->transformSingle(reference, waypoints_header.frame_id);
    +     790             : 
    +     791           0 :         if (res) {
    +     792           0 :           reference = res.value();
    +     793             :         } else {
    +     794           0 :           std::stringstream ss;
    +     795           0 :           ss << "could not transform reference to the path frame";
    +     796           0 :           ROS_ERROR_STREAM("[TrajectoryGeneration]: " << ss.str());
    +     797           0 :           return std::tuple(false, ss.str(), mrs_msgs::TrajectoryReference());
    +     798             :         }
    +     799             : 
    +     800           0 :         mrs_trajectory.points.insert(mrs_trajectory.points.begin(), reference.reference);
    +     801             :       }
    +     802             :     }
    +     803             :   }
    +     804             : 
    +     805           6 :   bw_original_.publish();
    +     806           6 :   bw_final_.publish();
    +     807             : 
    +     808           6 :   std::stringstream ss;
    +     809           6 :   ss << "trajectory generated";
    +     810             : 
    +     811           6 :   ROS_DEBUG("[TrajectoryGeneration]: trajectory generated, took %.3f s", (ros::Time::now() - optimize_time_start).toSec());
    +     812             : 
    +     813           6 :   return std::tuple(true, ss.str(), mrs_trajectory);
    +     814             : }
    +     815             : 
    +     816             : //}
    +     817             : 
    +     818             : /* findTrajectory() //{ */
    +     819             : 
    +     820          15 : std::optional<eth_mav_msgs::EigenTrajectoryPoint::Vector> MrsTrajectoryGeneration::findTrajectory(const std::vector<Waypoint_t>&                 waypoints,
    +     821             :                                                                                                   const std::optional<mrs_msgs::TrackerCommand>& initial_state,
    +     822             :                                                                                                   const double& sampling_dt, const bool& relax_heading) {
    +     823             : 
    +     824          45 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("MrsTrajectoryGeneration::findTrajectory", scope_timer_logger_, scope_timer_enabled_);
    +     825             : 
    +     826          30 :   mrs_lib::AtomicScopeFlag unset_running(running_async_planning_);
    +     827             : 
    +     828          15 :   ROS_DEBUG("[TrajectoryGeneration]: findTrajectory() started");
    +     829             : 
    +     830          15 :   ros::Time find_trajectory_time_start = ros::Time::now();
    +     831             : 
    +     832          30 :   auto params      = mrs_lib::get_mutexed(mutex_params_, params_);
    +     833          30 :   auto constraints = sh_constraints_.getMsg();
    +     834             : 
    +     835          30 :   auto control_manager_diag = sh_control_manager_diag_.getMsg();
    +     836             : 
    +     837          15 :   if (initial_state && (initial_state->header.stamp - ros::Time::now()).toSec() < 0.2 && control_manager_diag->tracker_status.have_goal) {
    +     838           3 :     max_deviation_first_segment_ = false;
    +     839             :   } else {
    +     840          12 :     max_deviation_first_segment_ = true;
    +     841             :   }
    +     842             : 
    +     843             :   // optimizer
    +     844             : 
    +     845          15 :   eth_trajectory_generation::NonlinearOptimizationParameters parameters;
    +     846             : 
    +     847          15 :   parameters.f_rel                  = 0.05;
    +     848          15 :   parameters.x_rel                  = 0.1;
    +     849          15 :   parameters.time_penalty           = params.time_penalty;
    +     850          15 :   parameters.use_soft_constraints   = params.soft_constraints_enabled;
    +     851          15 :   parameters.soft_constraint_weight = params.soft_constraints_weight;
    +     852          15 :   parameters.time_alloc_method      = static_cast<eth_trajectory_generation::NonlinearOptimizationParameters::TimeAllocMethod>(params.time_allocation);
    +     853          15 :   if (params.time_allocation == 2) {
    +     854          15 :     parameters.algorithm = nlopt::LD_LBFGS;
    +     855             :   }
    +     856          15 :   parameters.initial_stepsize_rel            = 0.1;
    +     857          15 :   parameters.inequality_constraint_tolerance = params.inequality_constraint_tolerance;
    +     858          15 :   parameters.equality_constraint_tolerance   = params.equality_constraint_tolerance;
    +     859          15 :   parameters.max_iterations                  = params.max_iterations;
    +     860             : 
    +     861             :   // let's tell the solver tha it is more time then it thinks, to not stop prematurely
    +     862          15 :   parameters.max_time = 2 * (NLOPT_EXEC_TIME_FACTOR * timeLeft());
    +     863             : 
    +     864          30 :   eth_trajectory_generation::Vertex::Vector vertices;
    +     865          15 :   const int                                 dimension = 4;
    +     866             : 
    +     867          15 :   int derivative_to_optimize = eth_trajectory_generation::derivative_order::ACCELERATION;
    +     868             : 
    +     869          15 :   switch (params.derivative_to_optimize) {
    +     870          15 :     case 0: {
    +     871          15 :       derivative_to_optimize = eth_trajectory_generation::derivative_order::ACCELERATION;
    +     872          15 :       break;
    +     873             :     }
    +     874           0 :     case 1: {
    +     875           0 :       derivative_to_optimize = eth_trajectory_generation::derivative_order::JERK;
    +     876           0 :       break;
    +     877             :     }
    +     878           0 :     case 2: {
    +     879           0 :       derivative_to_optimize = eth_trajectory_generation::derivative_order::SNAP;
    +     880           0 :       break;
    +     881             :     }
    +     882             :   }
    +     883             : 
    +     884             :   // | --------------- add constraints to vertices -------------- |
    +     885             : 
    +     886             :   double last_heading;
    +     887             : 
    +     888          15 :   if (initial_state) {
    +     889          11 :     last_heading = initial_state->heading;
    +     890             :   } else {
    +     891           4 :     last_heading = waypoints.at(0).coords[3];
    +     892             :   }
    +     893             : 
    +     894         188 :   for (size_t i = 0; i < waypoints.size(); i++) {
    +     895         173 :     double x       = waypoints.at(i).coords[0];
    +     896         173 :     double y       = waypoints.at(i).coords[1];
    +     897         173 :     double z       = waypoints.at(i).coords[2];
    +     898         173 :     double heading = sradians::unwrap(waypoints.at(i).coords[3], last_heading);
    +     899         173 :     last_heading   = heading;
    +     900             : 
    +     901         346 :     eth_trajectory_generation::Vertex vertex(dimension);
    +     902             : 
    +     903         173 :     if (i == 0) {
    +     904             : 
    +     905          15 :       vertex.makeStartOrEnd(Eigen::Vector4d(x, y, z, heading), derivative_to_optimize);
    +     906             : 
    +     907          15 :       vertex.addConstraint(eth_trajectory_generation::derivative_order::POSITION, Eigen::Vector4d(x, y, z, heading));
    +     908             : 
    +     909          15 :       if (initial_state) {
    +     910             : 
    +     911          11 :         vertex.addConstraint(eth_trajectory_generation::derivative_order::VELOCITY,
    +     912          11 :                              Eigen::Vector4d(initial_state->velocity.x, initial_state->velocity.y, initial_state->velocity.z, initial_state->heading_rate));
    +     913             : 
    +     914          11 :         vertex.addConstraint(
    +     915             :             eth_trajectory_generation::derivative_order::ACCELERATION,
    +     916          11 :             Eigen::Vector4d(initial_state->acceleration.x, initial_state->acceleration.y, initial_state->acceleration.z, initial_state->heading_acceleration));
    +     917             : 
    +     918          11 :         vertex.addConstraint(eth_trajectory_generation::derivative_order::JERK,
    +     919          22 :                              Eigen::Vector4d(initial_state->jerk.x, initial_state->jerk.y, initial_state->jerk.z, initial_state->heading_jerk));
    +     920             :       }
    +     921             : 
    +     922         158 :     } else if (i == (waypoints.size() - 1)) {  // the last point
    +     923             : 
    +     924          15 :       vertex.makeStartOrEnd(Eigen::Vector4d(x, y, z, heading), derivative_to_optimize);
    +     925             : 
    +     926          15 :       vertex.addConstraint(eth_trajectory_generation::derivative_order::POSITION, Eigen::Vector4d(x, y, z, heading));
    +     927             : 
    +     928             :     } else {  // mid points
    +     929             : 
    +     930         143 :       vertex.addConstraint(eth_trajectory_generation::derivative_order::POSITION, Eigen::Vector4d(x, y, z, heading));
    +     931             : 
    +     932         143 :       if (waypoints.at(i).stop_at) {
    +     933           0 :         vertex.addConstraint(eth_trajectory_generation::derivative_order::VELOCITY, Eigen::Vector4d(0, 0, 0, 0));
    +     934           0 :         vertex.addConstraint(eth_trajectory_generation::derivative_order::ACCELERATION, Eigen::Vector4d(0, 0, 0, 0));
    +     935           0 :         vertex.addConstraint(eth_trajectory_generation::derivative_order::JERK, Eigen::Vector4d(0, 0, 0, 0));
    +     936             :       }
    +     937             :     }
    +     938             : 
    +     939         173 :     vertices.push_back(vertex);
    +     940             :   }
    +     941             : 
    +     942             :   // | ---------------- compute the segment times --------------- |
    +     943             : 
    +     944             :   double v_max_horizontal, a_max_horizontal, j_max_horizontal;
    +     945             :   double v_max_vertical, a_max_vertical, j_max_vertical;
    +     946             : 
    +     947             :   // use the small of the ascending/descending values
    +     948          15 :   double vertical_speed_lim        = std::min(constraints->vertical_ascending_speed, constraints->vertical_descending_speed);
    +     949          15 :   double vertical_acceleration_lim = std::min(constraints->vertical_ascending_acceleration, constraints->vertical_descending_acceleration);
    +     950             : 
    +     951          15 :   v_max_horizontal = constraints->horizontal_speed;
    +     952          15 :   a_max_horizontal = constraints->horizontal_acceleration;
    +     953             : 
    +     954          15 :   v_max_vertical = vertical_speed_lim;
    +     955          15 :   a_max_vertical = vertical_acceleration_lim;
    +     956             : 
    +     957          15 :   j_max_horizontal = constraints->horizontal_jerk;
    +     958          15 :   j_max_vertical   = std::min(constraints->vertical_ascending_jerk, constraints->vertical_descending_jerk);
    +     959             : 
    +     960          15 :   if (override_constraints_) {
    +     961             : 
    +     962           0 :     bool can_change = true;
    +     963             : 
    +     964             : 
    +     965           0 :     if (initial_state) {
    +     966           0 :       can_change = (hypot(initial_state->velocity.x, initial_state->velocity.y) < override_max_velocity_horizontal_) &&
    +     967           0 :                    (hypot(initial_state->acceleration.x, initial_state->acceleration.y) < override_max_acceleration_horizontal_) &&
    +     968           0 :                    (hypot(initial_state->jerk.x, initial_state->jerk.y) < override_max_jerk_horizontal_) &&
    +     969           0 :                    (fabs(initial_state->velocity.z) < override_max_velocity_vertical_) &&
    +     970           0 :                    (fabs(initial_state->acceleration.z) < override_max_acceleration_vertical_) && (fabs(initial_state->jerk.z) < override_max_jerk_vertical_);
    +     971             :     }
    +     972             : 
    +     973           0 :     if (can_change) {
    +     974             : 
    +     975           0 :       v_max_horizontal = override_max_velocity_horizontal_;
    +     976           0 :       a_max_horizontal = override_max_acceleration_horizontal_;
    +     977           0 :       j_max_horizontal = override_max_jerk_horizontal_;
    +     978             : 
    +     979           0 :       v_max_vertical = override_max_velocity_vertical_;
    +     980           0 :       a_max_vertical = override_max_acceleration_vertical_;
    +     981           0 :       j_max_vertical = override_max_jerk_vertical_;
    +     982             : 
    +     983           0 :       ROS_DEBUG("[TrajectoryGeneration]: overriding constraints by a user");
    +     984             : 
    +     985             :     } else {
    +     986             : 
    +     987           0 :       ROS_WARN("[TrajectoryGeneration]: overrifing constraints refused due to possible infeasibility");
    +     988             :     }
    +     989             :   }
    +     990             : 
    +     991             :   double v_max_heading, a_max_heading, j_max_heading;
    +     992             : 
    +     993          15 :   if (relax_heading) {
    +     994           0 :     v_max_heading = std::numeric_limits<float>::max();
    +     995           0 :     a_max_heading = std::numeric_limits<float>::max();
    +     996           0 :     j_max_heading = std::numeric_limits<float>::max();
    +     997             :   } else {
    +     998          15 :     v_max_heading = constraints->heading_speed;
    +     999          15 :     a_max_heading = constraints->heading_acceleration;
    +    1000          15 :     j_max_heading = constraints->heading_jerk;
    +    1001             :   }
    +    1002             : 
    +    1003          15 :   ROS_DEBUG("[TrajectoryGeneration]: using constraints:");
    +    1004          15 :   ROS_DEBUG("[TrajectoryGeneration]: horizontal: vel = %.2f, acc = %.2f, jerk = %.2f", v_max_horizontal, a_max_horizontal, j_max_horizontal);
    +    1005          15 :   ROS_DEBUG("[TrajectoryGeneration]: vertical: vel = %.2f, acc = %.2f, jerk = %.2f", v_max_vertical, a_max_vertical, j_max_vertical);
    +    1006          15 :   ROS_DEBUG("[TrajectoryGeneration]: heading: vel = %.2f, acc = %.2f, jerk = %.2f", v_max_heading, a_max_heading, j_max_heading);
    +    1007             : 
    +    1008          30 :   std::vector<double> segment_times, segment_times_baca;
    +    1009          30 :   segment_times      = estimateSegmentTimes(vertices, v_max_horizontal, v_max_vertical, a_max_horizontal, a_max_vertical, j_max_horizontal, j_max_vertical,
    +    1010          15 :                                        v_max_heading, a_max_heading);
    +    1011          30 :   segment_times_baca = estimateSegmentTimesBaca(vertices, v_max_horizontal, v_max_vertical, a_max_horizontal, a_max_vertical, j_max_horizontal, j_max_vertical,
    +    1012          15 :                                                 v_max_heading, a_max_heading);
    +    1013             : 
    +    1014          15 :   double initial_total_time      = 0;
    +    1015          15 :   double initial_total_time_baca = 0;
    +    1016         173 :   for (int i = 0; i < int(segment_times_baca.size()); i++) {
    +    1017         158 :     initial_total_time += segment_times[i];
    +    1018         158 :     initial_total_time_baca += segment_times_baca[i];
    +    1019             :   }
    +    1020             : 
    +    1021          15 :   ROS_DEBUG("[TrajectoryGeneration]: initial total time (Euclidean): %.2f", initial_total_time);
    +    1022          15 :   ROS_DEBUG("[TrajectoryGeneration]: initial total time (Baca): %.2f", initial_total_time_baca);
    +    1023             : 
    +    1024             :   // | --------- create an optimizer object and solve it -------- |
    +    1025             : 
    +    1026          15 :   const int                                                     N = 10;
    +    1027          30 :   eth_trajectory_generation::PolynomialOptimizationNonLinear<N> opt(dimension, parameters);
    +    1028          15 :   opt.setupFromVertices(vertices, segment_times, derivative_to_optimize);
    +    1029             : 
    +    1030          15 :   opt.addMaximumMagnitudeConstraint(0, eth_trajectory_generation::derivative_order::VELOCITY, v_max_horizontal);
    +    1031          15 :   opt.addMaximumMagnitudeConstraint(0, eth_trajectory_generation::derivative_order::ACCELERATION, a_max_horizontal);
    +    1032          15 :   opt.addMaximumMagnitudeConstraint(0, eth_trajectory_generation::derivative_order::JERK, j_max_horizontal);
    +    1033             : 
    +    1034          15 :   opt.addMaximumMagnitudeConstraint(1, eth_trajectory_generation::derivative_order::VELOCITY, v_max_horizontal);
    +    1035          15 :   opt.addMaximumMagnitudeConstraint(1, eth_trajectory_generation::derivative_order::ACCELERATION, a_max_horizontal);
    +    1036          15 :   opt.addMaximumMagnitudeConstraint(1, eth_trajectory_generation::derivative_order::JERK, j_max_horizontal);
    +    1037             : 
    +    1038          15 :   opt.addMaximumMagnitudeConstraint(2, eth_trajectory_generation::derivative_order::VELOCITY, v_max_vertical);
    +    1039          15 :   opt.addMaximumMagnitudeConstraint(2, eth_trajectory_generation::derivative_order::ACCELERATION, a_max_vertical);
    +    1040          15 :   opt.addMaximumMagnitudeConstraint(2, eth_trajectory_generation::derivative_order::JERK, j_max_vertical);
    +    1041             : 
    +    1042          15 :   opt.addMaximumMagnitudeConstraint(3, eth_trajectory_generation::derivative_order::VELOCITY, v_max_heading);
    +    1043          15 :   opt.addMaximumMagnitudeConstraint(3, eth_trajectory_generation::derivative_order::ACCELERATION, a_max_heading);
    +    1044          15 :   opt.addMaximumMagnitudeConstraint(3, eth_trajectory_generation::derivative_order::JERK, j_max_heading);
    +    1045             : 
    +    1046          15 :   opt.optimize();
    +    1047             : 
    +    1048          15 :   if (overtime()) {
    +    1049           5 :     return {};
    +    1050             :   }
    +    1051             : 
    +    1052          20 :   std::string result_str;
    +    1053             : 
    +    1054          10 :   switch (opt.getOptimizationInfo().stopping_reason) {
    +    1055           4 :     case nlopt::FAILURE: {
    +    1056           4 :       result_str = "generic failure";
    +    1057           4 :       break;
    +    1058             :     }
    +    1059           0 :     case nlopt::INVALID_ARGS: {
    +    1060           0 :       result_str = "invalid args";
    +    1061           0 :       break;
    +    1062             :     }
    +    1063           0 :     case nlopt::OUT_OF_MEMORY: {
    +    1064           0 :       result_str = "out of memory";
    +    1065           0 :       break;
    +    1066             :     }
    +    1067           0 :     case nlopt::ROUNDOFF_LIMITED: {
    +    1068           0 :       result_str = "roundoff limited";
    +    1069           0 :       break;
    +    1070             :     }
    +    1071           0 :     case nlopt::FORCED_STOP: {
    +    1072           0 :       result_str = "forced stop";
    +    1073           0 :       break;
    +    1074             :     }
    +    1075           0 :     case nlopt::STOPVAL_REACHED: {
    +    1076           0 :       result_str = "stopval reached";
    +    1077           0 :       break;
    +    1078             :     }
    +    1079           2 :     case nlopt::FTOL_REACHED: {
    +    1080           2 :       result_str = "ftol reached";
    +    1081           2 :       break;
    +    1082             :     }
    +    1083           2 :     case nlopt::XTOL_REACHED: {
    +    1084           2 :       result_str = "xtol reached";
    +    1085           2 :       break;
    +    1086             :     }
    +    1087           2 :     case nlopt::MAXEVAL_REACHED: {
    +    1088           2 :       result_str = "maxeval reached";
    +    1089           2 :       break;
    +    1090             :     }
    +    1091           0 :     case nlopt::MAXTIME_REACHED: {
    +    1092           0 :       result_str = "maxtime reached";
    +    1093           0 :       break;
    +    1094             :     }
    +    1095           0 :     default: {
    +    1096           0 :       result_str = "UNKNOWN FAILURE CODE";
    +    1097           0 :       break;
    +    1098             :     }
    +    1099             :   }
    +    1100             : 
    +    1101          10 :   if (opt.getOptimizationInfo().stopping_reason >= 1 && opt.getOptimizationInfo().stopping_reason != 6) {
    +    1102           6 :     ROS_DEBUG("[TrajectoryGeneration]: optimization finished successfully with code %d, '%s'", opt.getOptimizationInfo().stopping_reason, result_str.c_str());
    +    1103             : 
    +    1104           4 :   } else if (opt.getOptimizationInfo().stopping_reason == -1) {
    +    1105           4 :     ROS_DEBUG("[TrajectoryGeneration]: optimization finished with a generic error code %d, '%s'", opt.getOptimizationInfo().stopping_reason,
    +    1106             :               result_str.c_str());
    +    1107             : 
    +    1108             :   } else {
    +    1109           0 :     ROS_WARN("[TrajectoryGeneration]: optimization failed with code %d, '%s', took %.3f s", opt.getOptimizationInfo().stopping_reason, result_str.c_str(),
    +    1110             :              (ros::Time::now() - find_trajectory_time_start).toSec());
    +    1111           0 :     return {};
    +    1112             :   }
    +    1113             : 
    +    1114             :   // | ------------- obtain the polynomial segments ------------- |
    +    1115             : 
    +    1116          20 :   eth_trajectory_generation::Segment::Vector segments;
    +    1117          10 :   opt.getPolynomialOptimizationRef().getSegments(&segments);
    +    1118             : 
    +    1119          10 :   if (overtime()) {
    +    1120           0 :     return {};
    +    1121             :   }
    +    1122             : 
    +    1123             :   // | --------------- create the trajectory class -------------- |
    +    1124             : 
    +    1125          20 :   eth_trajectory_generation::Trajectory trajectory;
    +    1126          10 :   opt.getTrajectory(&trajectory);
    +    1127             : 
    +    1128          20 :   eth_mav_msgs::EigenTrajectoryPoint::Vector states;
    +    1129             : 
    +    1130          10 :   ROS_DEBUG("[TrajectoryGeneration]: starting eth sampling with dt = %.2f s ", sampling_dt);
    +    1131             : 
    +    1132          10 :   bool success = eth_trajectory_generation::sampleWholeTrajectory(trajectory, sampling_dt, &states);
    +    1133             : 
    +    1134          10 :   if (overtime()) {
    +    1135           0 :     return {};
    +    1136             :   }
    +    1137             : 
    +    1138             :   // validate the temporal sampling of the trajectory
    +    1139             : 
    +    1140             :   // only check this if the trajectory is > 1.0 sec, this check does not make much sense for the short ones
    +    1141          10 :   if ((states.size() * sampling_dt) > 1.0 && (states.size() * sampling_dt) > (_max_trajectory_len_factor_ * initial_total_time_baca)) {
    +    1142           0 :     ROS_ERROR("[TrajectoryGeneration]: the final trajectory sampling is too long = %.2f, initial 'baca' estimate = %.2f, allowed factor %.2f, aborting",
    +    1143             :               (states.size() * sampling_dt), initial_total_time_baca, _max_trajectory_len_factor_);
    +    1144             : 
    +    1145           0 :     std::stringstream ss;
    +    1146           0 :     ss << "trajectory sampling failed";
    +    1147           0 :     ROS_ERROR_STREAM("[TrajectoryGeneration]: " << ss.str());
    +    1148           0 :     return {};
    +    1149             : 
    +    1150          10 :   } else if ((states.size() * sampling_dt) > 1.0 && (states.size() * sampling_dt) < (_min_trajectory_len_factor_ * initial_total_time_baca)) {
    +    1151           0 :     ROS_ERROR("[TrajectoryGeneration]: the final trajectory sampling is too short = %.2f, initial 'baca' estimate = %.2f, allowed factor %.2f, aborting",
    +    1152             :               (states.size() * sampling_dt), initial_total_time_baca, _min_trajectory_len_factor_);
    +    1153             : 
    +    1154           0 :     std::stringstream ss;
    +    1155           0 :     ss << "trajectory sampling failed";
    +    1156           0 :     ROS_ERROR_STREAM("[TrajectoryGeneration]: " << ss.str());
    +    1157           0 :     return {};
    +    1158             : 
    +    1159             :   } else {
    +    1160          10 :     ROS_DEBUG("[TrajectoryGeneration]: estimated/final trajectory length ratio (final/estimated) %.2f",
    +    1161             :               (states.size() * sampling_dt) / initial_total_time_baca);
    +    1162             :   }
    +    1163             : 
    +    1164          10 :   if (success) {
    +    1165          10 :     ROS_DEBUG("[TrajectoryGeneration]: eth sampling finished, took %.3f s", (ros::Time::now() - find_trajectory_time_start).toSec());
    +    1166          10 :     return std::optional(states);
    +    1167             : 
    +    1168             :   } else {
    +    1169           0 :     ROS_ERROR("[TrajectoryGeneration]: eth could not sample the trajectory, took %.3f s", (ros::Time::now() - find_trajectory_time_start).toSec());
    +    1170           0 :     return {};
    +    1171             :   }
    +    1172             : }
    +    1173             : 
    +    1174             : //}
    +    1175             : 
    +    1176             : /* findTrajectoryFallback() //{ */
    +    1177             : 
    +    1178           6 : std::optional<eth_mav_msgs::EigenTrajectoryPoint::Vector> MrsTrajectoryGeneration::findTrajectoryFallback(const std::vector<Waypoint_t>& waypoints,
    +    1179             :                                                                                                           const double&                  sampling_dt,
    +    1180             :                                                                                                           const bool&                    relax_heading) {
    +    1181             : 
    +    1182          18 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("MrsTrajectoryGeneration::findTrajectoryFallback", scope_timer_logger_, scope_timer_enabled_);
    +    1183             : 
    +    1184           6 :   ros::Time time_start = ros::Time::now();
    +    1185             : 
    +    1186           6 :   ROS_WARN("[TrajectoryGeneration]: fallback sampling started");
    +    1187             : 
    +    1188          12 :   auto params      = mrs_lib::get_mutexed(mutex_params_, params_);
    +    1189          12 :   auto constraints = sh_constraints_.getMsg();
    +    1190             : 
    +    1191          12 :   eth_trajectory_generation::Vertex::Vector vertices;
    +    1192           6 :   const int                                 dimension = 4;
    +    1193             : 
    +    1194             :   // | --------------- add constraints to vertices -------------- |
    +    1195             : 
    +    1196           6 :   double last_heading = waypoints.at(0).coords[3];
    +    1197             : 
    +    1198          34 :   for (size_t i = 0; i < waypoints.size(); i++) {
    +    1199             : 
    +    1200          28 :     double x       = waypoints.at(i).coords[0];
    +    1201          28 :     double y       = waypoints.at(i).coords[1];
    +    1202          28 :     double z       = waypoints.at(i).coords[2];
    +    1203          28 :     double heading = sradians::unwrap(waypoints.at(i).coords[3], last_heading);
    +    1204          28 :     last_heading   = heading;
    +    1205             : 
    +    1206          56 :     eth_trajectory_generation::Vertex vertex(dimension);
    +    1207             : 
    +    1208          28 :     vertex.addConstraint(eth_trajectory_generation::derivative_order::POSITION, Eigen::Vector4d(x, y, z, heading));
    +    1209             : 
    +    1210          28 :     vertices.push_back(vertex);
    +    1211             :   }
    +    1212             : 
    +    1213             :   // | ---------------- compute the segment times --------------- |
    +    1214             : 
    +    1215             :   double v_max_horizontal, a_max_horizontal, j_max_horizontal;
    +    1216             :   double v_max_vertical, a_max_vertical, j_max_vertical;
    +    1217             : 
    +    1218             :   // use the small of the ascending/descending values
    +    1219           6 :   double vertical_speed_lim        = std::min(constraints->vertical_ascending_speed, constraints->vertical_descending_speed);
    +    1220           6 :   double vertical_acceleration_lim = std::min(constraints->vertical_ascending_acceleration, constraints->vertical_descending_acceleration);
    +    1221             : 
    +    1222           6 :   if (override_constraints_) {
    +    1223             : 
    +    1224           0 :     v_max_horizontal = override_max_velocity_horizontal_;
    +    1225           0 :     a_max_horizontal = override_max_acceleration_horizontal_;
    +    1226           0 :     j_max_horizontal = override_max_jerk_horizontal_;
    +    1227             : 
    +    1228           0 :     v_max_vertical = override_max_velocity_vertical_;
    +    1229           0 :     a_max_vertical = override_max_acceleration_vertical_;
    +    1230           0 :     j_max_vertical = override_max_jerk_vertical_;
    +    1231             : 
    +    1232           0 :     ROS_DEBUG("[TrajectoryGeneration]: overriding constraints by a user");
    +    1233             :   } else {
    +    1234             : 
    +    1235           6 :     v_max_horizontal = constraints->horizontal_speed;
    +    1236           6 :     a_max_horizontal = constraints->horizontal_acceleration;
    +    1237             : 
    +    1238           6 :     v_max_vertical = vertical_speed_lim;
    +    1239           6 :     a_max_vertical = vertical_acceleration_lim;
    +    1240             : 
    +    1241           6 :     j_max_horizontal = constraints->horizontal_jerk;
    +    1242           6 :     j_max_vertical   = std::min(constraints->vertical_ascending_jerk, constraints->vertical_descending_jerk);
    +    1243             :   }
    +    1244             : 
    +    1245             : 
    +    1246             :   double v_max_heading, a_max_heading, j_max_heading;
    +    1247             : 
    +    1248           6 :   if (relax_heading) {
    +    1249           0 :     v_max_heading = std::numeric_limits<float>::max();
    +    1250           0 :     a_max_heading = std::numeric_limits<float>::max();
    +    1251           0 :     j_max_heading = std::numeric_limits<float>::max();
    +    1252             :   } else {
    +    1253           6 :     v_max_heading = constraints->heading_speed;
    +    1254           6 :     a_max_heading = constraints->heading_acceleration;
    +    1255           6 :     j_max_heading = constraints->heading_jerk;
    +    1256             :   }
    +    1257             : 
    +    1258           6 :   v_max_horizontal *= _fallback_sampling_speed_factor_;
    +    1259           6 :   v_max_vertical *= _fallback_sampling_speed_factor_;
    +    1260             : 
    +    1261           6 :   a_max_horizontal *= _fallback_sampling_accel_factor_;
    +    1262           6 :   a_max_vertical *= _fallback_sampling_accel_factor_;
    +    1263             : 
    +    1264           6 :   ROS_DEBUG("[TrajectoryGeneration]: using constraints:");
    +    1265           6 :   ROS_DEBUG("[TrajectoryGeneration]: horizontal: vel = %.2f, acc = %.2f, jerk = %.2f", v_max_horizontal, a_max_horizontal, j_max_horizontal);
    +    1266           6 :   ROS_DEBUG("[TrajectoryGeneration]: vertical: vel = %.2f, acc = %.2f, jerk = %.2f", v_max_vertical, a_max_vertical, j_max_vertical);
    +    1267           6 :   ROS_DEBUG("[TrajectoryGeneration]: heading: vel = %.2f, acc = %.2f, jerk = %.2f", v_max_heading, a_max_heading, j_max_heading);
    +    1268             : 
    +    1269          12 :   std::vector<double> segment_times, segment_times_baca;
    +    1270          12 :   segment_times      = estimateSegmentTimes(vertices, v_max_horizontal, v_max_vertical, a_max_horizontal, a_max_vertical, j_max_horizontal, j_max_vertical,
    +    1271           6 :                                        v_max_heading, a_max_heading);
    +    1272          12 :   segment_times_baca = estimateSegmentTimesBaca(vertices, v_max_horizontal, v_max_vertical, a_max_horizontal, a_max_vertical, j_max_horizontal, j_max_vertical,
    +    1273           6 :                                                 v_max_heading, a_max_heading);
    +    1274             : 
    +    1275           6 :   double initial_total_time      = 0;
    +    1276           6 :   double initial_total_time_baca = 0;
    +    1277          28 :   for (int i = 0; i < int(segment_times_baca.size()); i++) {
    +    1278          22 :     initial_total_time += segment_times[i];
    +    1279          22 :     initial_total_time_baca += segment_times_baca[i];
    +    1280             : 
    +    1281          22 :     ROS_DEBUG("[TrajectoryGeneration]: segment time [%d] = %.2f", i, segment_times_baca[i]);
    +    1282             :   }
    +    1283             : 
    +    1284           6 :   ROS_WARN("[TrajectoryGeneration]: fallback: initial total time (Euclidean): %.2f", initial_total_time);
    +    1285           6 :   ROS_WARN("[TrajectoryGeneration]: fallback: initial total time (Baca): %.2f", initial_total_time_baca);
    +    1286             : 
    +    1287          12 :   eth_mav_msgs::EigenTrajectoryPoint::Vector states;
    +    1288             : 
    +    1289             :   // interpolate each segment
    +    1290          28 :   for (size_t i = 0; i < waypoints.size() - 1; i++) {
    +    1291             : 
    +    1292          44 :     Eigen::VectorXd start, end;
    +    1293             : 
    +    1294          22 :     const double segment_time = segment_times_baca[i];
    +    1295             : 
    +    1296             :     int    n_samples;
    +    1297             :     double interp_step;
    +    1298             : 
    +    1299          22 :     if (segment_time > 1e-1) {
    +    1300             : 
    +    1301          22 :       n_samples = ceil(segment_time / sampling_dt);
    +    1302             : 
    +    1303             :       // important
    +    1304          22 :       if (n_samples > 0) {
    +    1305          22 :         interp_step = 1.0 / double(n_samples);
    +    1306             :       } else {
    +    1307           0 :         interp_step = 0.5;
    +    1308             :       }
    +    1309             : 
    +    1310             :     } else {
    +    1311           0 :       n_samples   = 0;
    +    1312           0 :       interp_step = 0;
    +    1313             :     }
    +    1314             : 
    +    1315          22 :     ROS_DEBUG("[TrajectoryGeneration]: segment n_samples [%lu] = %d", i, n_samples);
    +    1316             : 
    +    1317             :     // for the last segment, hit the last waypoint completely
    +    1318             :     // otherwise, it is hit as the first sample of the following segment
    +    1319          22 :     if (n_samples > 0 && i == waypoints.size() - 2) {
    +    1320           6 :       n_samples++;
    +    1321             :     }
    +    1322             : 
    +    1323         871 :     for (int j = 0; j < n_samples; j++) {
    +    1324             : 
    +    1325         849 :       Waypoint_t point = interpolatePoint(waypoints[i], waypoints[i + 1], j * interp_step);
    +    1326             : 
    +    1327         849 :       eth_mav_msgs::EigenTrajectoryPoint eth_point;
    +    1328         849 :       eth_point.position_W[0] = point.coords[0];
    +    1329         849 :       eth_point.position_W[1] = point.coords[1];
    +    1330         849 :       eth_point.position_W[2] = point.coords[2];
    +    1331         849 :       eth_point.setFromYaw(point.coords[3]);
    +    1332             : 
    +    1333         849 :       states.push_back(eth_point);
    +    1334             : 
    +    1335         849 :       if (j == 0 && i > 0 && waypoints[i].stop_at) {
    +    1336             : 
    +    1337           0 :         int insert_samples = int(round(_fallback_sampling_stopping_time_ / sampling_dt));
    +    1338             : 
    +    1339           0 :         for (int k = 0; k < insert_samples; k++) {
    +    1340           0 :           states.push_back(eth_point);
    +    1341             :         }
    +    1342             :       }
    +    1343             :     }
    +    1344             :   }
    +    1345             : 
    +    1346           6 :   bool success = true;
    +    1347             : 
    +    1348           6 :   ROS_WARN("[TrajectoryGeneration]: fallback: sampling finished, took %.3f s", (ros::Time::now() - time_start).toSec());
    +    1349             : 
    +    1350             :   // | --------------- create the trajectory class -------------- |
    +    1351             : 
    +    1352           6 :   if (success) {
    +    1353           6 :     return std::optional(states);
    +    1354             :   } else {
    +    1355           0 :     ROS_ERROR("[TrajectoryGeneration]: fallback: sampling failed");
    +    1356           0 :     return {};
    +    1357             :   }
    +    1358             : }
    +    1359             : 
    +    1360             : //}
    +    1361             : 
    +    1362             : /* validateTrajectorySpatial() //{ */
    +    1363             : 
    +    1364          16 : std::tuple<bool, int, std::vector<bool>, double> MrsTrajectoryGeneration::validateTrajectorySpatial(
    +    1365             :     const eth_mav_msgs::EigenTrajectoryPoint::Vector& trajectory, const std::vector<Waypoint_t>& waypoints) {
    +    1366             : 
    +    1367          48 :   mrs_lib::ScopeTimer timer = mrs_lib::ScopeTimer("MrsTrajectoryGeneration::validateTrajectorySpatial", scope_timer_logger_, scope_timer_enabled_);
    +    1368             : 
    +    1369             :   // prepare the output
    +    1370             : 
    +    1371          16 :   std::vector<bool> segments;
    +    1372         132 :   for (size_t i = 0; i < waypoints.size() - 1; i++) {
    +    1373         116 :     segments.push_back(true);
    +    1374             :   }
    +    1375             : 
    +    1376          16 :   int waypoint_idx = 0;
    +    1377             : 
    +    1378          16 :   bool   is_safe       = true;
    +    1379          16 :   double max_deviation = 0;
    +    1380             : 
    +    1381        2117 :   for (size_t i = 0; i < trajectory.size() - 1; i++) {
    +    1382             : 
    +    1383             :     // the trajectory sample
    +    1384        2101 :     const vec3_t sample = vec3_t(trajectory[i].position_W[0], trajectory[i].position_W[1], trajectory[i].position_W[2]);
    +    1385             : 
    +    1386             :     // next sample
    +    1387        2101 :     const vec3_t next_sample = vec3_t(trajectory[i + 1].position_W[0], trajectory[i + 1].position_W[1], trajectory[i + 1].position_W[2]);
    +    1388             : 
    +    1389             :     // segment start
    +    1390        2101 :     const vec3_t segment_start = vec3_t(waypoints.at(waypoint_idx).coords[0], waypoints.at(waypoint_idx).coords[1], waypoints.at(waypoint_idx).coords[2]);
    +    1391             : 
    +    1392             :     // segment end
    +    1393             :     const vec3_t segment_end =
    +    1394        2101 :         vec3_t(waypoints.at(waypoint_idx + 1).coords[0], waypoints.at(waypoint_idx + 1).coords[1], waypoints.at(waypoint_idx + 1).coords[2]);
    +    1395             : 
    +    1396        2101 :     const double distance_from_segment = distFromSegment(sample, segment_start, segment_end);
    +    1397             : 
    +    1398        2101 :     const double segment_end_dist = distFromSegment(segment_end, sample, next_sample);
    +    1399             : 
    +    1400        2101 :     if (waypoint_idx > 0 || max_deviation_first_segment_ || int(waypoints.size()) <= 2) {
    +    1401             : 
    +    1402        1946 :       if (distance_from_segment > max_deviation) {
    +    1403         312 :         max_deviation = distance_from_segment;
    +    1404             :       }
    +    1405             : 
    +    1406        1946 :       if (distance_from_segment > trajectory_max_segment_deviation_) {
    +    1407         714 :         segments.at(waypoint_idx) = false;
    +    1408         714 :         is_safe                   = false;
    +    1409             :       }
    +    1410             :     }
    +    1411             : 
    +    1412        2101 :     if (segment_end_dist < 0.05 && waypoint_idx < (int(waypoints.size()) - 2)) {
    +    1413         100 :       waypoint_idx++;
    +    1414             :     }
    +    1415             :   }
    +    1416             : 
    +    1417          48 :   return std::tuple(is_safe, trajectory.size(), segments, max_deviation);
    +    1418             : }
    +    1419             : 
    +    1420             : //}
    +    1421             : 
    +    1422             : // | --------------------- minor routines --------------------- |
    +    1423             : 
    +    1424             : /* findTrajectoryAsync() //{ */
    +    1425             : 
    +    1426          15 : std::optional<eth_mav_msgs::EigenTrajectoryPoint::Vector> MrsTrajectoryGeneration::findTrajectoryAsync(
    +    1427             :     const std::vector<Waypoint_t>& waypoints, const std::optional<mrs_msgs::TrackerCommand>& initial_state, const double& sampling_dt,
    +    1428             :     const bool& relax_heading) {
    +    1429             : 
    +    1430          15 :   ROS_DEBUG("[TrajectoryGeneration]: starting the async planning task");
    +    1431             : 
    +    1432             :   future_trajectory_result_ =
    +    1433          15 :       std::async(std::launch::async, &MrsTrajectoryGeneration::findTrajectory, this, waypoints, initial_state, sampling_dt, relax_heading);
    +    1434             : 
    +    1435        9663 :   while (ros::ok() && future_trajectory_result_.wait_for(std::chrono::milliseconds(1)) != std::future_status::ready) {
    +    1436             : 
    +    1437        9653 :     if (overtime()) {
    +    1438           5 :       ROS_WARN("[TrajectoryGeneration]: async task planning timeout, breaking");
    +    1439           5 :       return {};
    +    1440             :     }
    +    1441             :   }
    +    1442             : 
    +    1443          10 :   ROS_DEBUG("[TrajectoryGeneration]: async planning task finished successfully");
    +    1444             : 
    +    1445          10 :   return future_trajectory_result_.get();
    +    1446             : }
    +    1447             : 
    +    1448             : //}
    +    1449             : 
    +    1450             : /* distFromSegment() //{ */
    +    1451             : 
    +    1452        4202 : double MrsTrajectoryGeneration::distFromSegment(const vec3_t& point, const vec3_t& seg1, const vec3_t& seg2) {
    +    1453             : 
    +    1454        4202 :   vec3_t segment_vector = seg2 - seg1;
    +    1455        4202 :   double segment_len    = segment_vector.norm();
    +    1456             : 
    +    1457        4202 :   vec3_t segment_vector_norm = segment_vector;
    +    1458        4202 :   segment_vector_norm.normalize();
    +    1459             : 
    +    1460        4202 :   double point_coordinate = segment_vector_norm.dot(point - seg1);
    +    1461             : 
    +    1462        4202 :   if (point_coordinate < 0) {
    +    1463          18 :     return (point - seg1).norm();
    +    1464        4184 :   } else if (point_coordinate > segment_len) {
    +    1465        2041 :     return (point - seg2).norm();
    +    1466             :   } else {
    +    1467             : 
    +    1468        2143 :     mat3_t segment_projector = segment_vector_norm * segment_vector_norm.transpose();
    +    1469        2143 :     vec3_t projection        = seg1 + segment_projector * (point - seg1);
    +    1470             : 
    +    1471        2143 :     return (point - projection).norm();
    +    1472             :   }
    +    1473             : }
    +    1474             : 
    +    1475             : //}
    +    1476             : 
    +    1477             : /* getTrajectoryReference() //{ */
    +    1478             : 
    +    1479           6 : mrs_msgs::TrajectoryReference MrsTrajectoryGeneration::getTrajectoryReference(const eth_mav_msgs::EigenTrajectoryPoint::Vector& trajectory,
    +    1480             :                                                                               const std::optional<mrs_msgs::TrackerCommand>&    initial_condition,
    +    1481             :                                                                               const double&                                     sampling_dt) {
    +    1482             : 
    +    1483           6 :   mrs_msgs::TrajectoryReference msg;
    +    1484             : 
    +    1485           6 :   if (initial_condition) {
    +    1486           4 :     msg.header.stamp = initial_condition->header.stamp;
    +    1487             :   } else {
    +    1488           2 :     msg.header.stamp = ros::Time::now();
    +    1489             :   }
    +    1490             : 
    +    1491           6 :   msg.header.frame_id = frame_id_;
    +    1492           6 :   msg.fly_now         = fly_now_;
    +    1493           6 :   msg.loop            = loop_;
    +    1494           6 :   msg.use_heading     = use_heading_;
    +    1495           6 :   msg.dt              = sampling_dt;
    +    1496             : 
    +    1497         855 :   for (size_t it = 0; it < trajectory.size(); it++) {
    +    1498             : 
    +    1499         849 :     mrs_msgs::Reference point;
    +    1500         849 :     point.heading    = 0;
    +    1501         849 :     point.position.x = trajectory[it].position_W[0];
    +    1502         849 :     point.position.y = trajectory[it].position_W[1];
    +    1503         849 :     point.position.z = trajectory[it].position_W[2];
    +    1504         849 :     point.heading    = trajectory[it].getYaw();
    +    1505             : 
    +    1506         849 :     msg.points.push_back(point);
    +    1507             :   }
    +    1508             : 
    +    1509           6 :   return msg;
    +    1510             : }
    +    1511             : 
    +    1512             : //}
    +    1513             : 
    +    1514             : /* interpolatePoint() //{ */
    +    1515             : 
    +    1516         895 : Waypoint_t MrsTrajectoryGeneration::interpolatePoint(const Waypoint_t& a, const Waypoint_t& b, const double& coeff) {
    +    1517             : 
    +    1518         895 :   Waypoint_t      out;
    +    1519         895 :   Eigen::Vector4d diff = b.coords - a.coords;
    +    1520             : 
    +    1521         895 :   out.coords[0] = a.coords[0] + coeff * diff[0];
    +    1522         895 :   out.coords[1] = a.coords[1] + coeff * diff[1];
    +    1523         895 :   out.coords[2] = a.coords[2] + coeff * diff[2];
    +    1524         895 :   out.coords[3] = radians::interp(a.coords[3], b.coords[3], coeff);
    +    1525             : 
    +    1526         895 :   out.stop_at = false;
    +    1527             : 
    +    1528        1790 :   return out;
    +    1529             : }
    +    1530             : 
    +    1531             : //}
    +    1532             : 
    +    1533             : /* checkNaN() //{ */
    +    1534             : 
    +    1535          24 : bool MrsTrajectoryGeneration::checkNaN(const Waypoint_t& a) {
    +    1536             : 
    +    1537          24 :   if (!std::isfinite(a.coords[0])) {
    +    1538           0 :     ROS_ERROR("NaN detected in variable \"a.coords[0]\"!!!");
    +    1539           0 :     return false;
    +    1540             :   }
    +    1541             : 
    +    1542          24 :   if (!std::isfinite(a.coords[1])) {
    +    1543           0 :     ROS_ERROR("NaN detected in variable \"a.coords[1]\"!!!");
    +    1544           0 :     return false;
    +    1545             :   }
    +    1546             : 
    +    1547          24 :   if (!std::isfinite(a.coords[2])) {
    +    1548           0 :     ROS_ERROR("NaN detected in variable \"a.coords[2]\"!!!");
    +    1549           0 :     return false;
    +    1550             :   }
    +    1551             : 
    +    1552          24 :   if (!std::isfinite(a.coords[3])) {
    +    1553           0 :     ROS_ERROR("NaN detected in variable \"a.coords[3]\"!!!");
    +    1554           0 :     return false;
    +    1555             :   }
    +    1556             : 
    +    1557          24 :   return true;
    +    1558             : }
    +    1559             : 
    +    1560             : //}
    +    1561             : 
    +    1562             : /* trajectorySrv() //{ */
    +    1563             : 
    +    1564           4 : bool MrsTrajectoryGeneration::trajectorySrv(const mrs_msgs::TrajectoryReference& msg) {
    +    1565             : 
    +    1566           8 :   mrs_msgs::TrajectoryReferenceSrv srv;
    +    1567           4 :   srv.request.trajectory = msg;
    +    1568             : 
    +    1569           4 :   bool res = service_client_trajectory_reference_.call(srv);
    +    1570             : 
    +    1571           4 :   if (res) {
    +    1572             : 
    +    1573           4 :     if (!srv.response.success) {
    +    1574           0 :       ROS_WARN("[TrajectoryGeneration]: service call for trajectory_reference returned: '%s'", srv.response.message.c_str());
    +    1575             :     }
    +    1576             : 
    +    1577           4 :     return srv.response.success;
    +    1578             : 
    +    1579             :   } else {
    +    1580             : 
    +    1581           0 :     ROS_ERROR("[TrajectoryGeneration]: service call for trajectory_reference failed!");
    +    1582             : 
    +    1583           0 :     return false;
    +    1584             :   }
    +    1585             : }
    +    1586             : 
    +    1587             : //}
    +    1588             : 
    +    1589             : /* transformTrackerCmd() //{ */
    +    1590             : 
    +    1591           6 : std::optional<mrs_msgs::Path> MrsTrajectoryGeneration::transformPath(const mrs_msgs::Path& path_in, const std::string& target_frame) {
    +    1592             : 
    +    1593             :   // if we transform to the current control frame, which is in fact the same frame as the tracker_cmd is in
    +    1594           6 :   if (target_frame == path_in.header.frame_id) {
    +    1595           6 :     return path_in;
    +    1596             :   }
    +    1597             : 
    +    1598             :   // find the transformation
    +    1599           0 :   auto tf = transformer_->getTransform(path_in.header.frame_id, target_frame, path_in.header.stamp);
    +    1600             : 
    +    1601           0 :   if (!tf) {
    +    1602           0 :     ROS_ERROR("[TrajectoryGeneration]: could not find transform from '%s' to '%s' in time %f", path_in.header.frame_id.c_str(), target_frame.c_str(),
    +    1603             :               path_in.header.stamp.toSec());
    +    1604           0 :     return {};
    +    1605             :   }
    +    1606             : 
    +    1607           0 :   mrs_msgs::Path path_out = path_in;
    +    1608             : 
    +    1609           0 :   path_out.header.stamp    = tf.value().header.stamp;
    +    1610           0 :   path_out.header.frame_id = transformer_->frame_to(tf.value());
    +    1611             : 
    +    1612           0 :   for (size_t i = 0; i < path_in.points.size(); i++) {
    +    1613             : 
    +    1614           0 :     mrs_msgs::ReferenceStamped waypoint;
    +    1615             : 
    +    1616           0 :     waypoint.header    = path_in.header;
    +    1617           0 :     waypoint.reference = path_in.points[i];
    +    1618             : 
    +    1619           0 :     if (auto ret = transformer_->transform(waypoint, tf.value())) {
    +    1620             : 
    +    1621           0 :       path_out.points[i] = ret.value().reference;
    +    1622             : 
    +    1623             :     } else {
    +    1624           0 :       return {};
    +    1625             :     }
    +    1626             :   }
    +    1627             : 
    +    1628           0 :   return path_out;
    +    1629             : }
    +    1630             : 
    +    1631             : //}
    +    1632             : 
    +    1633             : /* overtime() //{ */
    +    1634             : 
    +    1635        9704 : bool MrsTrajectoryGeneration::overtime(void) {
    +    1636             : 
    +    1637        9704 :   auto start_time_total   = mrs_lib::get_mutexed(mutex_start_time_total_, start_time_total_);
    +    1638        9704 :   auto max_execution_time = mrs_lib::get_mutexed(mutex_max_execution_time_, max_execution_time_);
    +    1639             : 
    +    1640        9704 :   double overtime = (ros::Time::now() - start_time_total).toSec();
    +    1641             : 
    +    1642        9704 :   if (overtime > (OVERTIME_SAFETY_FACTOR * max_execution_time - OVERTIME_SAFETY_OFFSET)) {
    +    1643          11 :     return true;
    +    1644             :   }
    +    1645             : 
    +    1646        9693 :   return false;
    +    1647             : }
    +    1648             : 
    +    1649             : //}
    +    1650             : 
    +    1651             : /* timeLeft() //{ */
    +    1652             : 
    +    1653          15 : double MrsTrajectoryGeneration::timeLeft(void) {
    +    1654             : 
    +    1655          15 :   auto start_time_total   = mrs_lib::get_mutexed(mutex_start_time_total_, start_time_total_);
    +    1656          15 :   auto max_execution_time = mrs_lib::get_mutexed(mutex_max_execution_time_, max_execution_time_);
    +    1657             : 
    +    1658          15 :   double current_execution_time = (ros::Time::now() - start_time_total).toSec();
    +    1659             : 
    +    1660          15 :   if (current_execution_time >= max_execution_time) {
    +    1661           0 :     return 0;
    +    1662             :   } else {
    +    1663          15 :     return max_execution_time - current_execution_time;
    +    1664             :   }
    +    1665             : }
    +    1666             : 
    +    1667             : //}
    +    1668             : 
    +    1669             : // | ------------------------ callbacks ----------------------- |
    +    1670             : 
    +    1671             : /* callbackPath() //{ */
    +    1672             : 
    +    1673           1 : void MrsTrajectoryGeneration::callbackPath(const mrs_msgs::Path::ConstPtr msg) {
    +    1674             : 
    +    1675           1 :   if (!is_initialized_) {
    +    1676           0 :     return;
    +    1677             :   }
    +    1678             : 
    +    1679             :   /* preconditions //{ */
    +    1680             : 
    +    1681           1 :   if (!sh_constraints_.hasMsg()) {
    +    1682           0 :     std::stringstream ss;
    +    1683           0 :     ss << "missing constraints";
    +    1684           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    1685           0 :     return;
    +    1686             :   }
    +    1687             : 
    +    1688           1 :   if (!sh_control_manager_diag_.hasMsg()) {
    +    1689           0 :     std::stringstream ss;
    +    1690           0 :     ss << "missing control manager diagnostics";
    +    1691           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    1692           0 :     return;
    +    1693             :   }
    +    1694             : 
    +    1695           1 :   if (!sh_uav_state_.hasMsg()) {
    +    1696           0 :     std::stringstream ss;
    +    1697           0 :     ss << "missing UAV state";
    +    1698           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    1699           0 :     return;
    +    1700             :   }
    +    1701             : 
    +    1702             :   //}
    +    1703             : 
    +    1704             :   {
    +    1705           2 :     std::scoped_lock lock(mutex_start_time_total_);
    +    1706             : 
    +    1707           1 :     start_time_total_ = ros::Time::now();
    +    1708             :   }
    +    1709             : 
    +    1710           1 :   double path_time_offset = 0;
    +    1711             : 
    +    1712           1 :   if (msg->header.stamp != ros::Time(0)) {
    +    1713           0 :     path_time_offset = (msg->header.stamp - ros::Time::now()).toSec();
    +    1714             :   }
    +    1715             : 
    +    1716           1 :   if (path_time_offset > 1e-3) {
    +    1717             : 
    +    1718           0 :     std::scoped_lock lock(mutex_max_execution_time_);
    +    1719             : 
    +    1720           0 :     max_execution_time_ = std::min(FUTURIZATION_EXEC_TIME_FACTOR * path_time_offset, params_.max_execution_time);
    +    1721             : 
    +    1722           0 :     ROS_INFO("[TrajectoryGeneration]: setting the max execution time to %.3f s = %.1f * %.3f", max_execution_time_, FUTURIZATION_EXEC_TIME_FACTOR,
    +    1723             :              path_time_offset);
    +    1724             :   } else {
    +    1725             : 
    +    1726           1 :     std::scoped_lock lock(mutex_max_execution_time_, mutex_params_);
    +    1727             : 
    +    1728           1 :     max_execution_time_ = params_.max_execution_time;
    +    1729             :   }
    +    1730             : 
    +    1731           1 :   ROS_INFO("[TrajectoryGeneration]: got path from message");
    +    1732             : 
    +    1733           1 :   ph_original_path_.publish(msg);
    +    1734             : 
    +    1735           1 :   if (msg->points.empty()) {
    +    1736           0 :     std::stringstream ss;
    +    1737           0 :     ss << "received an empty message";
    +    1738           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    1739           0 :     return;
    +    1740             :   }
    +    1741             : 
    +    1742           2 :   auto transformed_path = transformPath(*msg, "");
    +    1743             : 
    +    1744           1 :   if (!transformed_path) {
    +    1745           0 :     std::stringstream ss;
    +    1746           0 :     ss << "could not transform the path to the current control frame";
    +    1747           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    1748           0 :     return;
    +    1749             :   }
    +    1750             : 
    +    1751           1 :   fly_now_                              = transformed_path->fly_now;
    +    1752           1 :   use_heading_                          = transformed_path->use_heading;
    +    1753           1 :   frame_id_                             = transformed_path->header.frame_id;
    +    1754           1 :   override_constraints_                 = transformed_path->override_constraints;
    +    1755           1 :   loop_                                 = transformed_path->loop;
    +    1756           1 :   override_max_velocity_horizontal_     = transformed_path->override_max_velocity_horizontal;
    +    1757           1 :   override_max_velocity_vertical_       = transformed_path->override_max_velocity_vertical;
    +    1758           1 :   override_max_acceleration_horizontal_ = transformed_path->override_max_acceleration_horizontal;
    +    1759           1 :   override_max_acceleration_vertical_   = transformed_path->override_max_acceleration_vertical;
    +    1760           1 :   override_max_jerk_horizontal_         = transformed_path->override_max_jerk_horizontal;
    +    1761           1 :   override_max_jerk_vertical_           = transformed_path->override_max_jerk_horizontal;
    +    1762           1 :   stop_at_waypoints_                    = transformed_path->stop_at_waypoints;
    +    1763             : 
    +    1764           1 :   auto params = mrs_lib::get_mutexed(mutex_params_, params_);
    +    1765             : 
    +    1766           1 :   if (transformed_path->max_execution_time > 0) {
    +    1767             : 
    +    1768           0 :     std::scoped_lock lock(mutex_max_execution_time_);
    +    1769             : 
    +    1770           0 :     max_execution_time_ = transformed_path->max_execution_time;
    +    1771             : 
    +    1772             :   } else {
    +    1773             : 
    +    1774           1 :     std::scoped_lock lock(mutex_max_execution_time_);
    +    1775             : 
    +    1776           1 :     max_execution_time_ = params.max_execution_time;
    +    1777             :   }
    +    1778             : 
    +    1779           1 :   if (transformed_path->max_deviation_from_path > 0) {
    +    1780           0 :     trajectory_max_segment_deviation_ = transformed_path->max_deviation_from_path;
    +    1781             :   } else {
    +    1782           1 :     trajectory_max_segment_deviation_ = params.max_deviation;
    +    1783             :   }
    +    1784             : 
    +    1785           1 :   dont_prepend_initial_condition_ = transformed_path->dont_prepend_current_state;
    +    1786             : 
    +    1787           1 :   std::vector<Waypoint_t> waypoints;
    +    1788             : 
    +    1789           5 :   for (size_t i = 0; i < transformed_path->points.size(); i++) {
    +    1790             : 
    +    1791           4 :     double x       = transformed_path->points[i].position.x;
    +    1792           4 :     double y       = transformed_path->points[i].position.y;
    +    1793           4 :     double z       = transformed_path->points[i].position.z;
    +    1794           4 :     double heading = transformed_path->points[i].heading;
    +    1795             : 
    +    1796           4 :     Waypoint_t wp;
    +    1797           4 :     wp.coords  = Eigen::Vector4d(x, y, z, heading);
    +    1798           4 :     wp.stop_at = stop_at_waypoints_;
    +    1799             : 
    +    1800           4 :     if (!checkNaN(wp)) {
    +    1801           0 :       ROS_ERROR("[TrajectoryGeneration]: NaN detected in waypoint #%d", int(i));
    +    1802           0 :       return;
    +    1803             :     }
    +    1804             : 
    +    1805           4 :     waypoints.push_back(wp);
    +    1806             :   }
    +    1807             : 
    +    1808           1 :   if (loop_) {
    +    1809           0 :     waypoints.push_back(waypoints[0]);
    +    1810             :   }
    +    1811             : 
    +    1812           1 :   bool                          success = false;
    +    1813           2 :   std::string                   message;
    +    1814           2 :   mrs_msgs::TrajectoryReference trajectory;
    +    1815             : 
    +    1816           2 :   for (int i = 0; i < _n_attempts_; i++) {
    +    1817             : 
    +    1818             :     // the last iteration and the fallback sampling is enabled
    +    1819           2 :     bool fallback_sampling = (_n_attempts_ > 1) && (i == (_n_attempts_ - 1)) && _fallback_sampling_enabled_;
    +    1820             : 
    +    1821           2 :     std::tie(success, message, trajectory) = optimize(waypoints, transformed_path->header, fallback_sampling, transformed_path->relax_heading);
    +    1822             : 
    +    1823           2 :     if (success) {
    +    1824           1 :       break;
    +    1825             :     } else {
    +    1826           1 :       if (i < _n_attempts_) {
    +    1827           1 :         ROS_WARN("[TrajectoryGeneration]: failed to calculate a feasible trajectory, trying again with different initial conditions!");
    +    1828             :       } else {
    +    1829           0 :         ROS_WARN("[TrajectoryGeneration]: failed to calculate a feasible trajectory");
    +    1830             :       }
    +    1831             :     }
    +    1832             :   }
    +    1833             : 
    +    1834           1 :   double total_time = (ros::Time::now() - start_time_total_).toSec();
    +    1835             : 
    +    1836           1 :   auto max_execution_time = mrs_lib::get_mutexed(mutex_max_execution_time_, max_execution_time_);
    +    1837             : 
    +    1838           1 :   if (total_time > max_execution_time) {
    +    1839           0 :     ROS_ERROR("[TrajectoryGeneration]: trajectory ready, took %.3f s in total (exceeding maxtime %.3f s by %.3f s)", total_time, max_execution_time,
    +    1840             :               total_time - max_execution_time);
    +    1841             :   } else {
    +    1842           1 :     ROS_INFO("[TrajectoryGeneration]: trajectory ready, took %.3f s in total (out of %.3f)", total_time, max_execution_time);
    +    1843             :   }
    +    1844             : 
    +    1845           1 :   trajectory.input_id = transformed_path->input_id;
    +    1846             : 
    +    1847           1 :   if (success) {
    +    1848             : 
    +    1849           1 :     bool published = trajectorySrv(trajectory);
    +    1850             : 
    +    1851           1 :     if (published) {
    +    1852             : 
    +    1853           1 :       ROS_INFO("[TrajectoryGeneration]: trajectory successfully published");
    +    1854             : 
    +    1855             :     } else {
    +    1856             : 
    +    1857           0 :       ROS_ERROR("[TrajectoryGeneration]: could not publish the trajectory");
    +    1858             :     }
    +    1859             : 
    +    1860             :   } else {
    +    1861             : 
    +    1862           0 :     ROS_ERROR("[TrajectoryGeneration]: failed to calculate a feasible trajectory, no publishing a result");
    +    1863             :   }
    +    1864             : }
    +    1865             : 
    +    1866             : //}
    +    1867             : 
    +    1868             : /* callbackPathSrv() //{ */
    +    1869             : 
    +    1870           3 : bool MrsTrajectoryGeneration::callbackPathSrv(mrs_msgs::PathSrv::Request& req, mrs_msgs::PathSrv::Response& res) {
    +    1871             : 
    +    1872           3 :   if (!is_initialized_) {
    +    1873           0 :     return false;
    +    1874             :   }
    +    1875             : 
    +    1876             :   /* preconditions //{ */
    +    1877             : 
    +    1878           3 :   if (!sh_constraints_.hasMsg()) {
    +    1879           0 :     std::stringstream ss;
    +    1880           0 :     ss << "missing constraints";
    +    1881           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    1882             : 
    +    1883           0 :     res.message = ss.str();
    +    1884           0 :     res.success = false;
    +    1885           0 :     return true;
    +    1886             :   }
    +    1887             : 
    +    1888           3 :   if (!sh_control_manager_diag_.hasMsg()) {
    +    1889           0 :     std::stringstream ss;
    +    1890           0 :     ss << "missing control manager diagnostics";
    +    1891           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    1892             : 
    +    1893           0 :     res.message = ss.str();
    +    1894           0 :     res.success = false;
    +    1895           0 :     return true;
    +    1896             :   }
    +    1897             : 
    +    1898           3 :   if (!sh_uav_state_.hasMsg()) {
    +    1899           0 :     std::stringstream ss;
    +    1900           0 :     ss << "missing UAV state";
    +    1901           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    1902             : 
    +    1903           0 :     res.message = ss.str();
    +    1904           0 :     res.success = false;
    +    1905           0 :     return true;
    +    1906             :   }
    +    1907             : 
    +    1908             :   //}
    +    1909             : 
    +    1910             :   {
    +    1911           6 :     std::scoped_lock lock(mutex_start_time_total_);
    +    1912             : 
    +    1913           3 :     start_time_total_ = ros::Time::now();
    +    1914             :   }
    +    1915             : 
    +    1916           3 :   double path_time_offset = 0;
    +    1917             : 
    +    1918           3 :   if (req.path.header.stamp != ros::Time(0)) {
    +    1919           0 :     path_time_offset = (req.path.header.stamp - ros::Time::now()).toSec();
    +    1920             :   }
    +    1921             : 
    +    1922           3 :   if (path_time_offset > 1e-3) {
    +    1923             : 
    +    1924           0 :     std::scoped_lock lock(mutex_max_execution_time_);
    +    1925             : 
    +    1926           0 :     max_execution_time_ = std::min(FUTURIZATION_EXEC_TIME_FACTOR * path_time_offset, params_.max_execution_time);
    +    1927             : 
    +    1928           0 :     ROS_INFO("[TrajectoryGeneration]: setting the max execution time to %.3f s = %.1f * %.3f", max_execution_time_, FUTURIZATION_EXEC_TIME_FACTOR,
    +    1929             :              path_time_offset);
    +    1930             :   } else {
    +    1931             : 
    +    1932           3 :     std::scoped_lock lock(mutex_max_execution_time_, mutex_params_);
    +    1933             : 
    +    1934           3 :     max_execution_time_ = params_.max_execution_time;
    +    1935             :   }
    +    1936             : 
    +    1937           3 :   ROS_INFO("[TrajectoryGeneration]: got path from service");
    +    1938             : 
    +    1939           3 :   ph_original_path_.publish(req.path);
    +    1940             : 
    +    1941           3 :   if (req.path.points.empty()) {
    +    1942           0 :     std::stringstream ss;
    +    1943           0 :     ss << "received an empty message";
    +    1944           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    1945             : 
    +    1946           0 :     res.message = ss.str();
    +    1947           0 :     res.success = false;
    +    1948           0 :     return true;
    +    1949             :   }
    +    1950             : 
    +    1951           9 :   auto transformed_path = transformPath(req.path, "");
    +    1952             : 
    +    1953           3 :   if (!transformed_path) {
    +    1954           0 :     std::stringstream ss;
    +    1955           0 :     ss << "could not transform the path to the current control frame";
    +    1956           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    1957             : 
    +    1958           0 :     res.message = ss.str();
    +    1959           0 :     res.success = false;
    +    1960           0 :     return true;
    +    1961             :   }
    +    1962             : 
    +    1963           3 :   fly_now_                              = transformed_path->fly_now;
    +    1964           3 :   use_heading_                          = transformed_path->use_heading;
    +    1965           3 :   frame_id_                             = transformed_path->header.frame_id;
    +    1966           3 :   override_constraints_                 = transformed_path->override_constraints;
    +    1967           3 :   loop_                                 = transformed_path->loop;
    +    1968           3 :   override_max_velocity_horizontal_     = transformed_path->override_max_velocity_horizontal;
    +    1969           3 :   override_max_velocity_vertical_       = transformed_path->override_max_velocity_vertical;
    +    1970           3 :   override_max_acceleration_horizontal_ = transformed_path->override_max_acceleration_horizontal;
    +    1971           3 :   override_max_acceleration_vertical_   = transformed_path->override_max_acceleration_vertical;
    +    1972           3 :   override_max_jerk_horizontal_         = transformed_path->override_max_jerk_horizontal;
    +    1973           3 :   override_max_jerk_vertical_           = transformed_path->override_max_jerk_horizontal;
    +    1974           3 :   stop_at_waypoints_                    = transformed_path->stop_at_waypoints;
    +    1975             : 
    +    1976           6 :   auto params = mrs_lib::get_mutexed(mutex_params_, params_);
    +    1977             : 
    +    1978           3 :   if (transformed_path->max_execution_time > 0) {
    +    1979             : 
    +    1980           0 :     std::scoped_lock lock(mutex_max_execution_time_);
    +    1981             : 
    +    1982           0 :     max_execution_time_ = transformed_path->max_execution_time;
    +    1983             : 
    +    1984             :   } else {
    +    1985             : 
    +    1986           3 :     std::scoped_lock lock(mutex_max_execution_time_);
    +    1987             : 
    +    1988           3 :     max_execution_time_ = params.max_execution_time;
    +    1989             :   }
    +    1990             : 
    +    1991           3 :   if (transformed_path->max_deviation_from_path > 0) {
    +    1992           0 :     trajectory_max_segment_deviation_ = transformed_path->max_deviation_from_path;
    +    1993             :   } else {
    +    1994           3 :     trajectory_max_segment_deviation_ = params.max_deviation;
    +    1995             :   }
    +    1996             : 
    +    1997           3 :   dont_prepend_initial_condition_ = transformed_path->dont_prepend_current_state;
    +    1998             : 
    +    1999           6 :   std::vector<Waypoint_t> waypoints;
    +    2000             : 
    +    2001          15 :   for (size_t i = 0; i < req.path.points.size(); i++) {
    +    2002             : 
    +    2003          12 :     double x       = transformed_path->points[i].position.x;
    +    2004          12 :     double y       = transformed_path->points[i].position.y;
    +    2005          12 :     double z       = transformed_path->points[i].position.z;
    +    2006          12 :     double heading = transformed_path->points[i].heading;
    +    2007             : 
    +    2008          12 :     Waypoint_t wp;
    +    2009          12 :     wp.coords  = Eigen::Vector4d(x, y, z, heading);
    +    2010          12 :     wp.stop_at = stop_at_waypoints_;
    +    2011             : 
    +    2012          12 :     if (!checkNaN(wp)) {
    +    2013           0 :       ROS_ERROR("[TrajectoryGeneration]: NaN detected in waypoint #%d", int(i));
    +    2014           0 :       res.success = false;
    +    2015           0 :       res.message = "invalid path";
    +    2016           0 :       return true;
    +    2017             :     }
    +    2018             : 
    +    2019          12 :     waypoints.push_back(wp);
    +    2020             :   }
    +    2021             : 
    +    2022           3 :   if (loop_) {
    +    2023           0 :     waypoints.push_back(waypoints[0]);
    +    2024             :   }
    +    2025             : 
    +    2026           3 :   bool                          success = false;
    +    2027           6 :   std::string                   message;
    +    2028           3 :   mrs_msgs::TrajectoryReference trajectory;
    +    2029             : 
    +    2030           5 :   for (int i = 0; i < _n_attempts_; i++) {
    +    2031             : 
    +    2032             :     // the last iteration and the fallback sampling is enabled
    +    2033           5 :     bool fallback_sampling = (_n_attempts_ > 1) && (i == (_n_attempts_ - 1)) && _fallback_sampling_enabled_;
    +    2034             : 
    +    2035           5 :     std::tie(success, message, trajectory) = optimize(waypoints, transformed_path->header, fallback_sampling, transformed_path->relax_heading);
    +    2036             : 
    +    2037           5 :     if (success) {
    +    2038           3 :       break;
    +    2039             :     } else {
    +    2040           2 :       if (i < _n_attempts_) {
    +    2041           2 :         ROS_WARN("[TrajectoryGeneration]: failed to calculate a feasible trajectory, trying again with different initial conditions!");
    +    2042             :       } else {
    +    2043           0 :         ROS_WARN("[TrajectoryGeneration]: failed to calculate a feasible trajectory");
    +    2044             :       }
    +    2045             :     }
    +    2046             :   }
    +    2047             : 
    +    2048           3 :   double total_time = (ros::Time::now() - start_time_total_).toSec();
    +    2049             : 
    +    2050           3 :   auto max_execution_time = mrs_lib::get_mutexed(mutex_max_execution_time_, max_execution_time_);
    +    2051             : 
    +    2052           3 :   if (total_time > max_execution_time) {
    +    2053           1 :     ROS_ERROR("[TrajectoryGeneration]: trajectory ready, took %.3f s in total (exceeding maxtime %.3f s by %.3f s)", total_time, max_execution_time,
    +    2054             :               total_time - max_execution_time);
    +    2055             :   } else {
    +    2056           2 :     ROS_INFO("[TrajectoryGeneration]: trajectory ready, took %.3f s in total (out of %.3f)", total_time, max_execution_time);
    +    2057             :   }
    +    2058             : 
    +    2059           3 :   trajectory.input_id = transformed_path->input_id;
    +    2060             : 
    +    2061           3 :   if (success) {
    +    2062             : 
    +    2063           3 :     bool published = trajectorySrv(trajectory);
    +    2064             : 
    +    2065           3 :     if (published) {
    +    2066             : 
    +    2067           3 :       res.success = success;
    +    2068           3 :       res.message = message;
    +    2069             : 
    +    2070             :     } else {
    +    2071             : 
    +    2072           0 :       std::stringstream ss;
    +    2073           0 :       ss << "could not publish the trajectory";
    +    2074             : 
    +    2075           0 :       res.success = false;
    +    2076           0 :       res.message = ss.str();
    +    2077             : 
    +    2078           0 :       ROS_ERROR_STREAM("[TrajectoryGeneration]: " << ss.str());
    +    2079             :     }
    +    2080             : 
    +    2081             :   } else {
    +    2082             : 
    +    2083           0 :     ROS_ERROR("[TrajectoryGeneration]: failed to calculate a feasible trajectory, not publishing a result");
    +    2084             : 
    +    2085           0 :     res.success = success;
    +    2086           0 :     res.message = message;
    +    2087             :   }
    +    2088             : 
    +    2089           3 :   return true;
    +    2090             : }
    +    2091             : 
    +    2092             : //}
    +    2093             : 
    +    2094             : /* callbackGetPathSrv() //{ */
    +    2095             : 
    +    2096           2 : bool MrsTrajectoryGeneration::callbackGetPathSrv(mrs_msgs::GetPathSrv::Request& req, mrs_msgs::GetPathSrv::Response& res) {
    +    2097             : 
    +    2098           2 :   if (!is_initialized_) {
    +    2099           0 :     return false;
    +    2100             :   }
    +    2101             : 
    +    2102             :   /* preconditions //{ */
    +    2103             : 
    +    2104           2 :   if (!sh_constraints_.hasMsg()) {
    +    2105           0 :     std::stringstream ss;
    +    2106           0 :     ss << "missing constraints";
    +    2107           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    2108             : 
    +    2109           0 :     res.message = ss.str();
    +    2110           0 :     res.success = false;
    +    2111           0 :     return true;
    +    2112             :   }
    +    2113             : 
    +    2114           2 :   if (!sh_control_manager_diag_.hasMsg()) {
    +    2115           0 :     std::stringstream ss;
    +    2116           0 :     ss << "missing control manager diagnostics";
    +    2117           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    2118             : 
    +    2119           0 :     res.message = ss.str();
    +    2120           0 :     res.success = false;
    +    2121           0 :     return true;
    +    2122             :   }
    +    2123             : 
    +    2124           2 :   if (!sh_uav_state_.hasMsg()) {
    +    2125           0 :     std::stringstream ss;
    +    2126           0 :     ss << "missing UAV state";
    +    2127           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    2128             : 
    +    2129           0 :     res.message = ss.str();
    +    2130           0 :     res.success = false;
    +    2131           0 :     return true;
    +    2132             :   }
    +    2133             : 
    +    2134             :   //}
    +    2135             : 
    +    2136             :   {
    +    2137           4 :     std::scoped_lock lock(mutex_start_time_total_);
    +    2138             : 
    +    2139           2 :     start_time_total_ = ros::Time::now();
    +    2140             :   }
    +    2141             : 
    +    2142           2 :   double path_time_offset = 0;
    +    2143             : 
    +    2144           2 :   if (req.path.header.stamp != ros::Time(0)) {
    +    2145           0 :     path_time_offset = (req.path.header.stamp - ros::Time::now()).toSec();
    +    2146             :   }
    +    2147             : 
    +    2148           2 :   if (path_time_offset > 1e-3) {
    +    2149             : 
    +    2150           0 :     std::scoped_lock lock(mutex_max_execution_time_);
    +    2151             : 
    +    2152           0 :     max_execution_time_ = FUTURIZATION_EXEC_TIME_FACTOR * path_time_offset;
    +    2153             : 
    +    2154           0 :     ROS_INFO("[TrajectoryGeneration]: setting the max execution time to %.3f s = %.1f * %.3f", max_execution_time_, FUTURIZATION_EXEC_TIME_FACTOR,
    +    2155             :              path_time_offset);
    +    2156             :   } else {
    +    2157             : 
    +    2158           2 :     std::scoped_lock lock(mutex_max_execution_time_, mutex_params_);
    +    2159             : 
    +    2160           2 :     max_execution_time_ = params_.max_execution_time;
    +    2161             :   }
    +    2162             : 
    +    2163           2 :   ROS_INFO("[TrajectoryGeneration]: got path from service");
    +    2164             : 
    +    2165           2 :   ph_original_path_.publish(req.path);
    +    2166             : 
    +    2167           2 :   if (req.path.points.empty()) {
    +    2168           0 :     std::stringstream ss;
    +    2169           0 :     ss << "received an empty message";
    +    2170           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    2171             : 
    +    2172           0 :     res.message = ss.str();
    +    2173           0 :     res.success = false;
    +    2174           0 :     return true;
    +    2175             :   }
    +    2176             : 
    +    2177           6 :   auto transformed_path = transformPath(req.path, "");
    +    2178             : 
    +    2179           2 :   if (!transformed_path) {
    +    2180           0 :     std::stringstream ss;
    +    2181           0 :     ss << "could not transform the path to the current control frame";
    +    2182           0 :     ROS_ERROR_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    2183             : 
    +    2184           0 :     res.message = ss.str();
    +    2185           0 :     res.success = false;
    +    2186           0 :     return true;
    +    2187             :   }
    +    2188             : 
    +    2189           2 :   fly_now_                              = transformed_path->fly_now;
    +    2190           2 :   use_heading_                          = transformed_path->use_heading;
    +    2191           2 :   frame_id_                             = transformed_path->header.frame_id;
    +    2192           2 :   override_constraints_                 = transformed_path->override_constraints;
    +    2193           2 :   loop_                                 = transformed_path->loop;
    +    2194           2 :   override_max_velocity_horizontal_     = transformed_path->override_max_velocity_horizontal;
    +    2195           2 :   override_max_velocity_vertical_       = transformed_path->override_max_velocity_vertical;
    +    2196           2 :   override_max_acceleration_horizontal_ = transformed_path->override_max_acceleration_horizontal;
    +    2197           2 :   override_max_acceleration_vertical_   = transformed_path->override_max_acceleration_vertical;
    +    2198           2 :   override_max_jerk_horizontal_         = transformed_path->override_max_jerk_horizontal;
    +    2199           2 :   override_max_jerk_vertical_           = transformed_path->override_max_jerk_horizontal;
    +    2200           2 :   stop_at_waypoints_                    = transformed_path->stop_at_waypoints;
    +    2201             : 
    +    2202           4 :   auto params = mrs_lib::get_mutexed(mutex_params_, params_);
    +    2203             : 
    +    2204           2 :   if (transformed_path->max_execution_time > 0) {
    +    2205             : 
    +    2206           0 :     std::scoped_lock lock(mutex_max_execution_time_);
    +    2207             : 
    +    2208           0 :     max_execution_time_ = transformed_path->max_execution_time;
    +    2209             : 
    +    2210             :   } else {
    +    2211             : 
    +    2212           2 :     std::scoped_lock lock(mutex_max_execution_time_);
    +    2213             : 
    +    2214           2 :     max_execution_time_ = params.max_execution_time;
    +    2215             :   }
    +    2216             : 
    +    2217           2 :   if (transformed_path->max_deviation_from_path > 0) {
    +    2218           0 :     trajectory_max_segment_deviation_ = transformed_path->max_deviation_from_path;
    +    2219             :   } else {
    +    2220           2 :     trajectory_max_segment_deviation_ = params.max_deviation;
    +    2221             :   }
    +    2222             : 
    +    2223           2 :   dont_prepend_initial_condition_ = transformed_path->dont_prepend_current_state;
    +    2224             : 
    +    2225           4 :   std::vector<Waypoint_t> waypoints;
    +    2226             : 
    +    2227          10 :   for (size_t i = 0; i < transformed_path->points.size(); i++) {
    +    2228             : 
    +    2229           8 :     double x       = transformed_path->points[i].position.x;
    +    2230           8 :     double y       = transformed_path->points[i].position.y;
    +    2231           8 :     double z       = transformed_path->points[i].position.z;
    +    2232           8 :     double heading = transformed_path->points[i].heading;
    +    2233             : 
    +    2234           8 :     Waypoint_t wp;
    +    2235           8 :     wp.coords  = Eigen::Vector4d(x, y, z, heading);
    +    2236           8 :     wp.stop_at = stop_at_waypoints_;
    +    2237             : 
    +    2238           8 :     if (!checkNaN(wp)) {
    +    2239           0 :       ROS_ERROR("[TrajectoryGeneration]: NaN detected in waypoint #%d", int(i));
    +    2240           0 :       res.success = false;
    +    2241           0 :       res.message = "invalid path";
    +    2242           0 :       return true;
    +    2243             :     }
    +    2244             : 
    +    2245           8 :     waypoints.push_back(wp);
    +    2246             :   }
    +    2247             : 
    +    2248           2 :   if (loop_) {
    +    2249           0 :     waypoints.push_back(waypoints[0]);
    +    2250             :   }
    +    2251             : 
    +    2252           2 :   bool                          success = false;
    +    2253           4 :   std::string                   message;
    +    2254           2 :   mrs_msgs::TrajectoryReference trajectory;
    +    2255             : 
    +    2256           4 :   for (int i = 0; i < _n_attempts_; i++) {
    +    2257             : 
    +    2258             :     // the last iteration and the fallback sampling is enabled
    +    2259           4 :     bool fallback_sampling = (_n_attempts_ > 1) && (i == (_n_attempts_ - 1)) && _fallback_sampling_enabled_;
    +    2260             : 
    +    2261           4 :     std::tie(success, message, trajectory) = optimize(waypoints, transformed_path->header, fallback_sampling, transformed_path->relax_heading);
    +    2262             : 
    +    2263           4 :     if (success) {
    +    2264           2 :       break;
    +    2265             :     } else {
    +    2266           2 :       if (i < _n_attempts_) {
    +    2267           2 :         ROS_WARN("[TrajectoryGeneration]: failed to calculate a feasible trajectory, trying again with different initial conditions!");
    +    2268             :       } else {
    +    2269           0 :         ROS_WARN("[TrajectoryGeneration]: failed to calculate a feasible trajectory");
    +    2270             :       }
    +    2271             :     }
    +    2272             :   }
    +    2273             : 
    +    2274           2 :   double total_time = (ros::Time::now() - start_time_total_).toSec();
    +    2275             : 
    +    2276           2 :   auto max_execution_time = mrs_lib::get_mutexed(mutex_max_execution_time_, max_execution_time_);
    +    2277             : 
    +    2278           2 :   if (total_time > max_execution_time) {
    +    2279           0 :     ROS_ERROR("[TrajectoryGeneration]: trajectory ready, took %.3f s in total (exceeding maxtime %.3f s by %.3f s)", total_time, max_execution_time,
    +    2280             :               total_time - max_execution_time);
    +    2281             :   } else {
    +    2282           2 :     ROS_INFO("[TrajectoryGeneration]: trajectory ready, took %.3f s in total (out of %.3f)", total_time, max_execution_time);
    +    2283             :   }
    +    2284             : 
    +    2285           2 :   if (success) {
    +    2286             : 
    +    2287           6 :     std::optional<geometry_msgs::TransformStamped> tf_traj_state = transformer_->getTransform("", req.path.header.frame_id, ros::Time::now());
    +    2288             : 
    +    2289           4 :     std::stringstream ss;
    +    2290             : 
    +    2291           2 :     if (!tf_traj_state) {
    +    2292           0 :       ss << "could not create TF transformer for the trajectory to the requested frame";
    +    2293           0 :       ROS_WARN_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    2294           0 :       res.success = false;
    +    2295           0 :       res.message = ss.str();
    +    2296             :     }
    +    2297             : 
    +    2298           2 :     trajectory.header.frame_id = transformer_->frame_to(*tf_traj_state);
    +    2299             : 
    +    2300         271 :     for (unsigned long i = 0; i < trajectory.points.size(); i++) {
    +    2301             : 
    +    2302         538 :       mrs_msgs::ReferenceStamped trajectory_point;
    +    2303         269 :       trajectory_point.header    = trajectory.header;
    +    2304         269 :       trajectory_point.reference = trajectory.points[i];
    +    2305             : 
    +    2306         538 :       auto ret = transformer_->transform(trajectory_point, *tf_traj_state);
    +    2307             : 
    +    2308         269 :       if (!ret) {
    +    2309             : 
    +    2310           0 :         ss << "trajectory cannnot be transformed to the requested frame";
    +    2311           0 :         ROS_WARN_STREAM_THROTTLE(1.0, "[TrajectoryGeneration]: " << ss.str());
    +    2312           0 :         res.success = false;
    +    2313           0 :         res.message = ss.str();
    +    2314             : 
    +    2315             :       } else {
    +    2316             : 
    +    2317             :         // transform the points in the trajectory to the current frame
    +    2318         269 :         trajectory.points[i] = ret.value().reference;
    +    2319             :       }
    +    2320             :     }
    +    2321             : 
    +    2322           2 :     res.trajectory = trajectory;
    +    2323           2 :     res.success    = success;
    +    2324           2 :     res.message    = message;
    +    2325             : 
    +    2326             :   } else {
    +    2327             : 
    +    2328           0 :     ROS_ERROR("[TrajectoryGeneration]: failed to calculate a feasible trajectory");
    +    2329             : 
    +    2330           0 :     res.success = success;
    +    2331           0 :     res.message = message;
    +    2332             :   }
    +    2333             : 
    +    2334           2 :   return true;
    +    2335             : }
    +    2336             : 
    +    2337             : //}
    +    2338             : 
    +    2339             : /* callbackUavState() //{ */
    +    2340             : 
    +    2341      154969 : void MrsTrajectoryGeneration::callbackUavState(const mrs_msgs::UavState::ConstPtr msg) {
    +    2342             : 
    +    2343      154969 :   if (!is_initialized_) {
    +    2344           0 :     return;
    +    2345             :   }
    +    2346             : 
    +    2347      154969 :   ROS_INFO_ONCE("[TrajectoryGeneration]: getting uav state");
    +    2348             : 
    +    2349      154969 :   transformer_->setDefaultFrame(msg->header.frame_id);
    +    2350             : }
    +    2351             : 
    +    2352             : //}
    +    2353             : 
    +    2354             : /* //{ callbackDrs() */
    +    2355             : 
    +    2356          91 : void MrsTrajectoryGeneration::callbackDrs(mrs_uav_trajectory_generation::drsConfig& params, [[maybe_unused]] uint32_t level) {
    +    2357             : 
    +    2358          91 :   mrs_lib::set_mutexed(mutex_params_, params, params_);
    +    2359             : 
    +    2360             :   {
    +    2361          91 :     std::scoped_lock lock(mutex_max_execution_time_);
    +    2362             : 
    +    2363          91 :     max_execution_time_ = params.max_execution_time;
    +    2364             :   }
    +    2365             : 
    +    2366          91 :   ROS_INFO("[TrajectoryGeneration]: DRS updated");
    +    2367          91 : }
    +    2368             : 
    +    2369             : //}
    +    2370             : 
    +    2371             : }  // namespace mrs_uav_trajectory_generation
    +    2372             : 
    +    2373             : #include <pluginlib/class_list_macros.h>
    +    2374          91 : PLUGINLIB_EXPORT_CLASS(mrs_uav_trajectory_generation::MrsTrajectoryGeneration, nodelet::Nodelet);
    +
    +
    +
    + + + + +
    Generated by: LCOV version 1.14
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    + Overview +
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